| 1 |
IS 1786 (2008) |
High strength deformed steel bars and wires for concretere inforcement - Specification (Fourth Revision) |
- |
21500 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4.1(Carbon %) |
- |
3000 |
|
- |
| 4.1(Manganese %) |
- |
3000 |
|
- |
| 4.1(Phosphorus %) |
- |
3000 |
|
- |
| 4.1(Sulphur %) |
- |
3000 |
|
- |
| 4.1(Silicon %) |
- |
3000 |
|
- |
| 4.1( Copper %) |
- |
3000 |
|
- |
| 4.1(Cr) |
- |
3000 |
|
- |
| 4.1(Mo) |
- |
3000 |
|
- |
| 4.1(Ni) |
- |
3000 |
|
- |
| 4.1( Nitrogen%) |
- |
3000 |
|
- |
| 4.1(CE) |
- |
3000 |
|
- |
| 4.1(Sulphur and phosphorous) |
- |
3000 |
|
- |
| Cl.4.2 of IS 1786 (Grade:- Fe 415,Fe 415D,Fe 415S,Fe 500,Fe 500D,Fe 500S,Fe 550,Fe 550D,Fe600,Fe 650,Fe 700)(Carbon-IS 228) |
- |
3000 |
|
- |
| Cl.4.2 of IS 1786 (Grade:- Fe 415,Fe 415D,Fe 415S,Fe 500,Fe 500D,Fe 500S,Fe 550,Fe 550D,Fe600,Fe 650,Fe 700)(Sulphur-IS 228) |
- |
3000 |
|
- |
| Cl.4.2 of IS 1786 (Grade:- Fe 415,Fe 415D,Fe 415S,Fe 500,Fe 500D,Fe 500S,Fe 550,Fe 550D,Fe600,Fe 650,Fe 700)(Phosphorous- IS 228) |
- |
3000 |
|
- |
| Cl.4.2 of IS 1786 (Grade:- Fe 415,Fe 415D,Fe 415S,Fe 500,Fe 500D,Fe 500S,Fe 550,Fe 550D,Fe600,Fe 650,Fe 700)(Sulphur & Phosphorous) |
- |
3000 |
|
- |
| Cl.4.2 of IS 1786 (Grade:- Fe 415D,Fe 415S, Fe 500D,Fe 500S,Fe 550D)(Carbon Equivalent) |
- |
3000 |
|
- |
| Cl.4.2 of IS 1786 (Manganese- IS 228 and relevant parts or any other established Instrumental/Chemical method.) |
- |
3000 |
|
- |
| Cl.4.2 of IS 1786 (Nitrogen- IS 228 and relevant parts or any other established Instrumental/Chemical method.) |
- |
3000 |
|
- |
| Cl.4.2 of IS 1786 (Copper- IS 228 and relevant parts or any other established Instrumental/Chemical method.) |
- |
3000 |
|
- |
| Cl.4.2 of IS 1786 (Nickel- IS 228 and relevant parts or any other established Instrumental/Chemical method.) |
- |
3000 |
|
- |
| Cl.4.2 of IS 1786 (Chromium- IS 228 and relevant parts or any other established Instrumental/Chemical method.) |
- |
3000 |
|
- |
| Cl.4.2 of IS 1786 (Molybdenum- IS 228 and relevant parts or any other established Instrumental/Chemical method.) |
- |
3000 |
|
- |
| Clause - 4.2 & 4.2.1(Fe- 415, Fe- 415D, Fe-500, Fe-500D, Fe-550, Fe-550D, Fe-600 CARBON ) |
- |
3000 |
|
- |
| Clause - 4.2 & 4.2.1(Fe- 415, Fe- 415D, Fe-500, Fe-500D, Fe-550, Fe-550D, Fe-600 SULPHUR) |
- |
3000 |
|
- |
| Clause - 4.2 & 4.2.1(Fe- 415, Fe- 415D, Fe-500, Fe-500D, Fe-550, Fe-550D, Fe-600 PHOSPHURS) |
- |
3000 |
|
- |
| Clause - 4.2 & 4.2.1(Fe- 415, Fe- 415D, Fe-500, Fe-500D, Fe-550, Fe-550D, Fe-600 NITROGEN) |
- |
3000 |
|
- |
| Clause - 4.2 & 4.2.1(Fe- 415, Fe- 415D, Fe-500, Fe-500D, Fe-550, Fe-550D, Fe-600 MANGANESE) |
- |
3000 |
|
- |
| Clause - 4.2 & 4.2.1(Fe- 415, Fe- 415D, Fe-500, Fe-500D, Fe-550, Fe-550D, Fe-600 SULPHUR+PHOSPHUR) |
- |
3000 |
|
- |
| Cl 5(Deformations and Surface Characteristics) |
- |
500 |
|
- |
| Cl. 5 (Cl.5 Mean area of ribs/unit length (Ar), ) |
- |
500 |
|
- |
| Cl. 5 (Cl. 5 - Mean projected area of transverse ribs (1/3 of Ar)) |
- |
1000 |
|
- |
| Cl 6.1(Length, Width & Thickness) |
- |
500 |
|
- |
| Cl 7.2(Weight) |
- |
500 |
|
- |
| Cl 9.4(Load In Other Direction From Bend) |
- |
3000 |
|
- |
| Cl. 8.1 Table 3(Elongation, percentage) |
- |
4000 |
|
- |
| Cl. 8.1 Table 3(TS/YS ratio) |
- |
4000 |
|
- |
| Cl. 8.1 Table 3(Tensile Strength (TS)) |
- |
4000 |
|
- |
| Cl. 8.1 Table 3(Yield Stress (YS)) |
- |
4000 |
|
- |
| Cl 9.3(Load In One Direction) |
- |
3000 |
|
- |
| Cl. 9.3, Table 4(Bend Test ) |
- |
2500 |
|
- |
| Cl.9.4 & Cl. 9.4.1(Rebend test) |
- |
3000 |
|
- |
| 5.7(PullOut (Bond Test)) |
- |
5000 |
|
- |
|
26 Jul, 2027 |
- - |
| 2 |
IS 10773 (1995) |
Wrought copper tubes for refrigeration and air - Conditioning purposes - Specification (First Revision) |
Wrought copper tubes for refrigeration and air |
14000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 7(Freedom from defect) |
- |
200 |
|
- |
| 8(Dimension and Tolerance) |
- |
200 |
|
- |
| 9.1 - 1(Copper) |
- |
450 |
|
- |
| 9.1 - 1(Arsenic) |
- |
450 |
|
- |
| 9.1 - 1(Iron) |
- |
450 |
|
- |
| 9.1 - 1(Lead) |
- |
450 |
|
- |
| 9.1 - 1(Nickel) |
- |
450 |
|
- |
| 9.1 - 1(Tin) |
- |
450 |
|
- |
| 9.1 - 1(Phosphorus) |
- |
450 |
|
- |
| 9.1 - 1(Total impurities) |
- |
500 |
|
- |
| 9.1 - 1(Manganese) |
- |
450 |
|
- |
| 9.1 - 1(Aluminium) |
- |
450 |
|
- |
| 9.1 - 1(Zinc) |
- |
450 |
|
- |
| 10.1.1 - 2(Tensile Test) |
- |
425 |
|
- |
| 10.1.1 - 2(0.2 Proof stress) |
- |
425 |
|
- |
| 10.1.1 - 2(Percentage elongation on 50mm gauge length) |
- |
450 |
|
- |
| 10.2(Flattening Test) |
- |
450 |
|
- |
| 10.3(Drift Expanding Test) |
- |
450 |
|
- |
| 10.4.2(Hydrostatic Test) |
- |
450 |
|
- |
| 10.4.3(Pneumatic Test) |
- |
450 |
|
- |
| 10.5(Microscopic Examination) |
- |
2000 |
|
- |
| 10.6(Hydrogen Embrittlement Test) |
- |
3500 |
|
- |
| 11.1(Residue Test Or cleanliness test) |
- |
0 |
|
- |
| Cl-11.2(Residue Test Or cleanliness test) |
- |
0 |
|
- |
|
26 Jul, 2027 |
- - |
| 3 |
IS 513 : Part 1 (2016) |
Cold reduced carbon steel sheet and strip: Part 1 cold forming and drawing purpose (Sixth Revision) |
- |
7500 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 7(Chemical Composition) |
- |
500 |
|
- |
| 8(Mechanical and Physical Properties) |
- |
0 |
|
- |
| Cl 8(UTM) |
- |
0 |
|
- |
| Cl 9(Workmanship) |
- |
0 |
|
- |
| Cl 9.6(Workmanship) |
- |
0 |
|
- |
| Cl 10(Workmanship) |
- |
0 |
|
- |
| Cl 11(Length, Width & Thickness) |
- |
500 |
|
- |
| Cl 8(UTM) |
- |
0 |
|
- |
| Cl 9.5(Workmanship) |
- |
0 |
|
- |
| Cl 9.6(Workmanship) |
- |
0 |
|
- |
| Cl 10(Workmanship) |
- |
0 |
|
- |
| Cl 11(Length, Width & Thickness) |
- |
0 |
|
- |
| Cl 8(UTM) |
- |
0 |
|
- |
| Cl 9(Workmanship) |
- |
0 |
|
- |
| Cl 9.6(Workmanship) |
- |
0 |
|
- |
| Cl 10(Workmanship) |
- |
0 |
|
- |
| Cl 11(Length, Width & Thickness) |
- |
0 |
|
- |
| 7.0(ALUMINIUM) |
- |
0 |
|
- |
| 7.0(MICRO ALLOYS) |
- |
0 |
|
- |
| 7.0(NITROGEN) |
- |
0 |
|
- |
| 7.0(SILICON) |
- |
500 |
|
- |
| 7.0(MANGANESE) |
- |
500 |
|
- |
| 7.0(PHOSPHORUS) |
- |
500 |
|
- |
| 7.0(SULPHUR) |
- |
500 |
|
- |
| 7.0(CARBON) |
- |
500 |
|
- |
| Cl. 11(Out of square) |
- |
0 |
|
- |
| Cl. 11(Flatness) |
- |
0 |
|
- |
| Cl. 11(Camber) |
- |
0 |
|
- |
| Cl. 11(Width) |
- |
0 |
|
- |
| Cl. 11(Thickness) |
- |
0 |
|
- |
| Cl. 8.7(Bake Hardening Index) |
- |
400 |
|
- |
| Cl. 8.6
Table 5A, 5B & 5C(Tensile Strain Hardening Component
(n-Value)) |
- |
400 |
|
- |
| Cl. 8.5
Table 5A, 5B & 5C(Plastic Strain Ratio
(r bar/r-90)) |
- |
500 |
|
- |
| Cl. 8.4(Bend Test) |
- |
500 |
|
- |
| Cl. 8.3 Table 6(Hardness Test
( Only for CR0 & CR1)) |
- |
500 |
|
- |
| Cl. 8.2(Cupping Test(Only for sheet and coils CR2, CR3, CR4(having thickness 0.5 mm-2.0 mm)) |
- |
500 |
|
- |
| Cl. 8.1 & Table
5A, 5B & 5C(Elongation at 80 mm gauge length) |
- |
400 |
|
- |
| Cl. 8.1 & Table
5A, 5B & 5C(Elongation at 50 mm gauge length) |
- |
0 |
|
- |
| Cl. 8.1 & Table
5A, 5B & 5C(Yield Stress) |
- |
400 |
|
- |
| Cl. 9 Table 8(Surface roughness) |
- |
500 |
|
- |
| Cl 11(Length, Width & Thickness) |
- |
0 |
|
- |
| Cl 10(Workmanship) |
- |
0 |
|
- |
| Cl 9.6(Workmanship) |
- |
0 |
|
- |
| Cl 9(Workmanship) |
- |
0 |
|
- |
| Cl 8(UTM) |
- |
0 |
|
- |
| Cl 8(UTM) |
- |
0 |
|
- |
| Cl 9(Workmanship) |
- |
0 |
|
- |
| Cl 9.6(Workmanship) |
- |
0 |
|
- |
| Cl 10(Workmanship) |
- |
0 |
|
- |
| Cl 11(Thickness (08)) |
- |
0 |
|
- |
| Cl 7(UTM) |
- |
0 |
|
- |
| 8.1(Mechanical) |
- |
0 |
|
- |
| 8.2(Cupping test) |
- |
0 |
|
- |
| 8.3(Hardness HRB/HV) |
- |
500 |
|
- |
| 8.4(Bend Test) |
- |
0 |
|
- |
| 8.5(Plastic strain ratio) |
- |
500 |
|
- |
| 8.6(Tensile strain Hardening component) |
- |
0 |
|
- |
| 8.7(Black Hardening Index) |
- |
400 |
|
- |
| 9(Surface finish) |
- |
0 |
|
- |
| 10(Freedom from defects) |
- |
200 |
|
- |
| 13(Marking) |
- |
200 |
|
- |
| Cl. 7.3(Carbon) |
- |
0 |
|
- |
| Cl. 7.3(Manganese) |
- |
0 |
|
- |
| Cl. 7.3(Suphur) |
- |
0 |
|
- |
| Cl. 7.3(Phosphorus) |
- |
0 |
|
- |
| Cl. 7.3(Silicon) |
- |
0 |
|
- |
|
26 Jul, 2027 |
- Included w.e.f. 12.11.2025 |
| 4 |
IS 3074 (2013) |
Steel tubes for automotive purposes - Specification (Third Revision) |
- |
10000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 5.1(Workmanship) |
- |
500 |
|
- |
| 6(STRAIGHTNESS) |
- |
500 |
|
- |
| 7, 20,Table 1,2,4 &6( C) |
- |
700 |
|
- |
| 7, Table 1,2,4 &6(Mn) |
- |
700 |
|
- |
| 7, Table 1,2,4 &6(S) |
- |
700 |
|
- |
| 7, Table 1,2,4 &6(P) |
- |
700 |
|
- |
| 7, Table 1,2,4 &6(Si) |
- |
700 |
|
- |
| 7, Table 1,2,4 &6(Ni) |
- |
700 |
|
- |
| 7, Table 1,2,4 &6(Cr) |
- |
700 |
|
- |
| 7, Table 1,2,4 &6(Mo) |
- |
700 |
|
- |
| 7, Table 1,2,4 &6(Mo) |
- |
0 |
|
- |
| 8.2,15,17,22, Table 3,5 &7(Tensile Tests,IS 1608 Part 1) |
- |
1000 |
|
- |
| 8.3,18,(Flattening Test) |
- |
500 |
|
- |
| 8.4(Crushing Test) |
- |
500 |
|
- |
| 8.5(Drift Test) |
- |
500 |
|
- |
| 5.1(Workmanship) |
- |
0 |
|
- |
| 6(STRAIGHTNESS) |
- |
0 |
|
- |
| 7, 20,Table 1,2,4 &6( C) |
- |
0 |
|
- |
| 7, Table 1,2,4 &6(Mn) |
- |
0 |
|
- |
| 7, Table 1,2,4 &6(S) |
- |
0 |
|
- |
| 7, Table 1,2,4 &6(P) |
- |
0 |
|
- |
| 7, Table 1,2,4 &6(Si) |
- |
0 |
|
- |
| 7, Table 1,2,4 &6(Ni) |
- |
0 |
|
- |
| 7, Table 1,2,4 &6(Cr) |
- |
0 |
|
- |
| 7, Table 1,2,4 &6(Mo) |
- |
0 |
|
- |
| 8.2,15,17,22, Table 3,5 &7(Tensile Tests,IS 1608 Part 1) |
- |
0 |
|
- |
| 8.3,18,(Flattening Test) |
- |
0 |
|
- |
| 8.4(Crushing Test) |
- |
0 |
|
- |
| 8.5(Drift Test) |
- |
0 |
|
- |
| 10(Surface protection) |
- |
500 |
|
- |
| 21(Condition) |
- |
0 |
|
- |
| 3.2.1(Height of internal fin) |
- |
0 |
|
- |
| 7, Table 1,2,4 &6(Micro Alloying element (Nb, V, Ti, B)) |
- |
0 |
|
- |
| Cl-9(Dimensions & Tolerances) |
- |
500 |
|
- |
| Cl-23.1(Leak Tightness Test- the purchaser each tube) |
- |
500 |
|
- |
| Cl-28(Leak Tightness Test) |
- |
0 |
|
- |
| Cl-23.2(Leak Tightness Test- hydraulic test pressure) |
- |
0 |
|
- |
|
26 Jul, 2027 |
- Included w.e.f. 12.11.2025 |
| 5 |
IS 2039 : Part 1 to 3 (1991) |
Steel tubes for bicycle and cycle rickshaws - Specification (Second Revision) |
- |
22500 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl. 5.1 Table 1(Carbon) |
- |
2000 |
|
- |
| Cl. 5.1 Table 1(Silicon) |
- |
2000 |
|
- |
| Cl. 5.1 Table 1(Manganese) |
- |
2000 |
|
- |
| Cl. 5.1 Table 1(Phosphorous) |
- |
2000 |
|
- |
| Cl. 5.1 Table 1(Sulphur) |
- |
2000 |
|
- |
| Cl. 6.1(Workmanship) |
- |
1000 |
|
- |
| Cl. 6.2(Fin Height) |
- |
0 |
|
- |
| Cl. 6.3(Straightness) |
- |
0 |
|
- |
| Cl. 8.1(Tensile Strength) |
- |
2000 |
|
- |
| Cl. 8.1(Yield Strength) |
- |
2000 |
|
- |
| Cl. 8.1(Elongation) |
- |
2000 |
|
- |
| Cl. 8.2(Drift Expansion Test- IS 2335) |
- |
2000 |
|
- |
| Cl. 8.3(Flattening Test-IS 2338) |
- |
2000 |
|
- |
| Cl. 9(Diameter) |
- |
1499.99 |
|
- |
| Cl. 9(Thickness) |
- |
0 |
|
- |
| Cl. 3.2.1, Table 4(Yield Stress) |
- |
0 |
|
- |
| Cl. 3.2.1, Table 4(UTS) |
- |
0 |
|
- |
| Cl. 3.2.1, Table 4(Elongation) |
- |
0 |
|
- |
| Cl. 3.2.2, Table 2(Drift Expansion Test- IS 2335) |
- |
0 |
|
- |
| Cl. 3.2.3, Table 3(Flattening Test-IS 2338) |
- |
0 |
|
- |
| Cl. 4.2.1(Diameter) |
- |
0 |
|
- |
| Cl. 4.2.2(Thickness) |
- |
0 |
|
- |
| Cl. 4.2.3(Length) |
- |
0 |
|
- |
| Cl. 3.1(Carbon) |
- |
0 |
|
- |
| Cl. 3.1(Silicon) |
- |
0 |
|
- |
| Cl. 3.1(Manganese) |
- |
0 |
|
- |
| Cl. 3.1(Phosphorous) |
- |
0 |
|
- |
| Cl. 3.1(Sulphur) |
- |
0 |
|
- |
| Cl. 4.2.1, Table 7(Yield Stress) |
- |
0 |
|
- |
| Cl. 4.2.1, Table 7(UTS) |
- |
0 |
|
- |
| Cl. 4.2.1, Table 7(Crushing) |
- |
0 |
|
- |
| Cl. 4.2.2, Table 8(Drift Expansion Test- IS 2335) |
- |
0 |
|
- |
| Cl. 4.2.3, Table 9(Flattening Test-IS 2338) |
- |
0 |
|
- |
| Cl. 5.2.1, Table 10(Diameter) |
- |
0 |
|
- |
| Cl. 5.2.2(Mean Thickness) |
- |
0 |
|
- |
| Cl. 5.2.3, Table 6(Length) |
- |
0 |
|
- |
| CL 5.1 TABLE 1(Carbon- IS 228(Part 1)) |
- |
0 |
|
- |
| CL 5.1 TABLE 1(Sulphur- IS 228(Part 9)) |
- |
0 |
|
- |
| CL 5.1 TABLE 1(Phosphorous- IS 228(Part 3)) |
- |
0 |
|
- |
| CL 5.1 TABLE 1(Manganese- IS 228(Part 2)) |
- |
0 |
|
- |
| CL 5.1 TABLE 1(Silicon- IS 228(Part 2)) |
- |
0 |
|
- |
| 2.1(General requirements) |
- |
0 |
|
- |
| 3.2.1(Tensile properties) |
- |
0 |
|
- |
| 3.2.2(Drift expansion test) |
- |
0 |
|
- |
| 3.2.3(Flattening test) |
- |
0 |
|
- |
| 4.1(Dimensions of tubes) |
- |
0 |
|
- |
| 4.2(4.2) |
- |
0 |
|
- |
| 2.1(General requirements) |
- |
0 |
|
- |
| 5.1, table 1(C
Si
Mn
P
S) |
- |
0 |
|
- |
| 4.2.1(Tensile properties) |
- |
0 |
|
- |
| 4.2.2(Drift expansion test) |
- |
0 |
|
- |
| 4.2.3(Flattening test) |
- |
0 |
|
- |
| 5.1(Dimenion of tube) |
- |
0 |
|
- |
| 5.2(Tolerances) |
- |
0 |
|
- |
| 3.1(General requirements) |
- |
0 |
|
- |
| 5.1, table 1(C
Si
Mn
P
S) |
- |
0 |
|
- |
| 6(Workmanship) |
- |
0 |
|
- |
| 7(Inspection) |
- |
0 |
|
- |
| 8.1(Tensile test) |
- |
0 |
|
- |
| 8.2(Drift expansion test) |
- |
0 |
|
- |
| 8.3(Flattening test) |
- |
0 |
|
- |
| 10(Selection of tubes for testing) |
- |
0 |
|
- |
| 11(Test certificate & Marking) |
- |
0 |
|
- |
|
26 Jul, 2027 |
- Included w.e.f. 12.11.2025 |
| 6 |
IS 18427 (2024) |
Three piece round open top metal cans for foods and beverages -- Specification |
- |
40000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl-5.1.1(C) |
- |
700 |
|
- |
| Cl-5.1.1(Si) |
- |
700 |
|
- |
| Cl-5.1.1(Mn) |
- |
700 |
|
- |
| Cl-5.1.1(P) |
- |
700 |
|
- |
| Cl-5.1.1(S) |
- |
700 |
|
- |
| Cl-5.1.2, Table-1("Tinplate Nominal Thickness- Flattened
Body") |
- |
400 |
|
- |
| Cl-5.1.2, Table-1(Built-up Can Body- Beaded) |
- |
0 |
|
- |
| Cl-5.1.2, Table-1(Built-up Can Body- Un-beaded) |
- |
0 |
|
- |
| Cl-5.1.2, Table-1(Tinplate Nominal Thickness- NEO Ends) |
- |
0 |
|
- |
| Cl-5.1.2, Table-2(Tinplate Nominal Thickness- Un-beaded Body) |
- |
400 |
|
- |
| Cl-5.1.2, Table-2(Tinplate Nominal Thickness- Beaded Body) |
- |
0 |
|
- |
| Cl-5.1.2, Table-2(Tinplate Nominal Thickness- NEO End) |
- |
0 |
|
- |
| Cl-5.1.2, Table-2(Tinplate Nominal Thickness- Ring) |
- |
0 |
|
- |
| Cl-5.1.2, Table-2(Tinplate Nominal Thickness- Lid) |
- |
0 |
|
- |
| Cl-5.1.3, Table-3 (i)(Mango pulp – Body and ends) |
- |
400 |
|
- |
| Cl-5.1.3, Table-3 (ii)(Pineapple – Body and ends) |
- |
400 |
|
- |
| Cl-5.1.3, Table-3 (iii)(All other thermally processed cans – Body and ends) |
- |
400 |
|
- |
| Cl-5.1.3, Table-3 (iv)(Non-thermally processed can – Body and ends) |
- |
0 |
|
- |
| Cl-5.1.3, Table-3 (v)(Ring and lid) |
- |
0.01 |
|
- |
| Cl-5.1.3, Table-3 (vi)(POE ring) |
- |
500 |
|
- |
| Cl-5.1.4(Surface Finish) |
- |
400 |
|
- |
| Cl-5.1.5(Tin Grain Size) |
- |
400 |
|
- |
| Cl-5.1.6(Iron Solution Value) |
- |
400 |
|
- |
| Cl-5.1.7(Surface Oil) |
- |
0 |
|
- |
| Cl-5.1.8(Passivation Treatment) |
- |
0 |
|
- |
| Cl-5.1.9(Edge Camber and Out-of-Squareness) |
- |
400 |
|
- |
| Cl-5.1.10(Mechanical Properties) |
- |
500 |
|
- |
| Cl-5.2(Lacquers and Decorative Coatings) |
- |
3000 |
|
- |
| Cl-5.3(Inks) |
- |
1000 |
|
- |
| Cl-5.4(Lining Compound/Can End Sealants) |
- |
0 |
|
- |
| Cl-5.5(Side Stripe Systems) |
- |
500 |
|
- |
| Cl-5.6(Easy Open End) |
- |
0 |
|
- |
| Cl-5.7(Aluminium Tagger) |
- |
500 |
|
- |
| Cl-5.8(Peel Off Ends (POE)) |
- |
500 |
|
- |
| Cl-5.9(Surface Lubrications and Rust Prevention Oils) |
- |
2000 |
|
- |
| Cl-6.1, Table-5(Internal Diameter) |
- |
0 |
|
- |
| Cl-6.1, Table-5(Necked-In Side Trade Size) |
- |
0 |
|
- |
| Cl-6.1, Table-5(Necked-In Side Nominal Diameter) |
- |
0 |
|
- |
| Cl-6.2(Capacities) |
- |
1000.02 |
|
- |
| Cl-7(Manufacture) |
- |
500.01 |
|
- |
| Cl-8.1, Table-9 (i)(Thermally processed food cans) |
- |
0.01 |
|
- |
| Cl-8.1, Table-9 (ii)(Nonthermally processed food cans) |
- |
1000.01 |
|
- |
| Cl-8.2(Vacuum Test) |
- |
1000.01 |
|
- |
| Cl-8.3(Migration Test) |
- |
1500.02 |
|
- |
| Cl-8.4(Specific Migration Limit (SML) |
- |
1500.02 |
|
- |
| Cl-10.1(Marking) |
- |
200 |
|
- |
|
26 Jul, 2027 |
- included w.e.f 09-12-2025. |
| 7 |
IS 17439 (2020) |
Polyphosphoric Acid - Specification |
- |
19499.99 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4.1(General requirement) |
- |
300 |
|
- |
| 4.2, Table 1(i) Relative density) |
- |
1000 |
|
- |
| 4.2, Table 1(ii) H3PO4) |
- |
2100 |
|
- |
| 4.2, Table 1(iii) P2O5) |
- |
2000 |
|
- |
| 4.2, Table 1(iv) Fe) |
- |
950 |
|
- |
| 4.2, Table 1(v) Cl) |
- |
950 |
|
- |
| 4.2, Table 1(vii) SO4 ^2-) |
- |
950 |
|
- |
| 4.2, Table 1(viii) As) |
- |
950 |
|
- |
| 4.2, Table 1(ix) Pb) |
- |
950 |
|
- |
| 4.2, Table 1(x) Nitrates) |
- |
1000 |
|
- |
| 4.2, Table 1(xi) Antimony) |
- |
950 |
|
- |
| 4.2, Table 1(xii) Manganese) |
- |
950 |
|
- |
| 4.2, Table 1(xiii) Molybedenum) |
- |
950 |
|
- |
| 4.2, Table 1(xiv) Mercury) |
- |
950 |
|
- |
| 4.2, Table 1(xv) Aluminium) |
- |
950 |
|
- |
| 4.2, Table 1(xvi) Calcium and Magnesium) |
- |
1700 |
|
- |
| 4.2, Table 1(xvii) Silica as SiO2) |
- |
1850 |
|
- |
| 5.1(Packing) |
- |
0 |
|
- |
| 5.2(Marking) |
- |
50 |
|
- |
|
26 Jul, 2027 |
- included w.e.f 26.11.2025 |
| 8 |
IS 903 (2025) |
Fire Hose Delivery Couplings, Branch Pipe, Nozzles and Nozzle Spanner - Specification (Fifth Revision) |
- |
25000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| As per Clause 5.2, 6.2, 7.2, 10.2(Dimensions & Tolerances) |
- |
3000 |
|
- |
| As per Clause 9.1(Hydraulic test) |
- |
5000 |
|
- |
| As per Clause 10.4(Deflection test requirement) |
- |
4000 |
|
- |
| Cl. 10.4(Deflection test requirement) |
- |
4000 |
|
- |
| Cl. 4(WORKMANSHIP AND FINISH) |
- |
1000 |
|
- |
| Cl. 5("INSTANTANEOUS DELIVERY HOSE
COUPLINGS") |
- |
0 |
|
- |
| Cl. 5.1(Design) |
- |
1000 |
|
- |
| Cl. 5.3(Materials) |
- |
0 |
|
- |
| Cl. 6(BRANCH PIPE) |
- |
2000 |
|
- |
| Cl. 6.3(Materials) |
- |
6000 |
|
- |
| Cl. 7(NOZZLES) |
- |
1000 |
|
- |
| Cl. 7.3(Materials) |
- |
6000 |
|
- |
| Cl. 8(Materials) |
- |
6000 |
|
- |
| Cl. 9.1(PERFORMANCE TEST) |
- |
5000 |
|
- |
| Cl. 9.1(Hydraulic Test) |
- |
5000.01 |
|
- |
| Cl. 10(NOZZLE SPANNER) |
- |
1000 |
|
- |
| Cl. 11(MARKING) |
- |
400 |
|
- |
| Cl-4(Workmanship and Finish) |
- |
1000 |
|
- |
| Cl-5.4(DELIVERY HOSE COUPLINGS- Hydraulic test) |
- |
5000 |
|
- |
| Cl-6.1(BRANCH PIPE -Design) |
- |
2000 |
|
- |
| Cl-6.4(BRANCH PIPE -Hydraulic test) |
- |
2000 |
|
- |
| Cl-7.1(NOZZLES -Design) |
- |
1000 |
|
- |
| Cl-7.4(NOZZLES -Hydraulic test) |
- |
1000 |
|
- |
| Cl-10.1(NOZZLE SPANNER - Material) |
- |
1000.01 |
|
- |
| Cl-10.3(NOZZLE SPANNER - Anti-corrosive treatment) |
- |
1000 |
|
- |
| Cl. 5.4(Testing) |
- |
0 |
|
- |
| Cl. 6.4(Testing) |
- |
0 |
|
- |
| Cl. 7.4(Testing) |
- |
0 |
|
- |
|
26 Jul, 2027 |
- included w.e.f 26.11.2025 |
| 9 |
IS 884 (2025) |
First-Aid Hose-Reel for Fire Fighting - Specification (Second Revision) |
- |
25000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl. 4(Dimensions) |
- |
1500 |
|
- |
| Cl. 7(PERFORMANCE REQUIREMENT) |
- |
0 |
|
- |
| Cl. 7.1(Hydrostatic pressure test) |
- |
3500 |
|
- |
| Cl. 7.2(Resistance to leakage) |
- |
2000 |
|
- |
| Cl. 7.3(Strength) |
- |
2000 |
|
- |
| Cl. 7.3.1(Impact resistance test) |
- |
2000 |
|
- |
| Cl. 7.3.2(Load Resistance Test) |
- |
2000 |
|
- |
| Cl. 7.4(Range and Water flow rate) |
- |
1000 |
|
- |
| Cl. 7.5(Swinging Arrangement) |
- |
1000 |
|
- |
| Cl. 7.6(Reel Action) |
- |
500 |
|
- |
| Cl. 8(WORKMANSHIP AND FINISH) |
- |
600 |
|
- |
| Cl. 8.2(Painting) |
- |
0 |
|
- |
| Cl. 7.7(Resistance to impact test for nozzle) |
- |
2000 |
|
- |
| Cl. 7.8("Ageing test for plastic made
nozzle") |
- |
2000 |
|
- |
| Cl. 7.9("Resistance to external corrosion
test") |
- |
2500 |
|
- |
| Cl. 5(MATERIAL) |
- |
3000 |
|
- |
| Cl. 6(CONSTRUCTION) |
- |
1000 |
|
- |
| Cl. 9(CRITERIA FOR CONFORMITY) |
- |
0 |
|
- |
| Cl. 10(MARKING) |
- |
300 |
|
- |
|
26 Jul, 2027 |
- Included w.e.f.29.09.2025 |
| 10 |
IS 21 (2025) |
Wrought Aluminium and Aluminium Alloys for Manufacture of Utensils - Specification (Fifth Revision) |
- |
9999.99 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl-4(General requirements) |
- |
0 |
|
- |
| Cl-5.1(Material) |
- |
4000 |
|
- |
| Cl-5.2(Chemical composition and mechanical properties of grades in Cl 5.1) |
- |
500 |
|
- |
| Cl-5.3.1 a("Wrought Aluminium (with Minimum
99 Percent Al Content)- Iron+ Silicon") |
- |
0 |
|
- |
| Cl-5.3.1 b("Wrought Aluminium (with Minimum
99 Percent Al Content)- Chromium") |
- |
0 |
|
- |
| Cl-5.3.1 b("Wrought Aluminium (with Minimum
99 Percent Al Content)- Magnesium") |
- |
0 |
|
- |
| Cl-5.3.1 b("Wrought Aluminium (with Minimum
99 Percent Al Content)- Manganese") |
- |
0 |
|
- |
| Cl-5.3.1 b("Wrought Aluminium (with Minimum
99 Percent Al Content)- Nickel") |
- |
0.01 |
|
- |
| Cl-5.3.1 b("Wrought Aluminium (with Minimum
99 Percent Al Content)- Zinc") |
- |
0.01 |
|
- |
| Cl-5.3.1 b("Wrought Aluminium (with Minimum
99 Percent Al Content)- Titanium") |
- |
0 |
|
- |
| Cl-5.3.1 c("Wrought Aluminium (with Minimum
99 Percent Al Content)- Copper") |
- |
0 |
|
- |
| Cl-5.3.1 Note 1("Wrought Aluminium (with Minimum
99 Percent Al Content)- Aluminium") |
- |
0 |
|
- |
| Cl-5.3.1 d("Wrought Aluminium (with Minimum
99 Percent Al Content)- Others") |
- |
0 |
|
- |
| Cl-5.3.2, Table-1 (i)(Wrought Aluminium Alloys-Silicon) |
- |
500 |
|
- |
| Cl-5.3.2, Table-1 (ii)(Wrought Aluminium Alloys-Iron) |
- |
500 |
|
- |
| Cl-5.3.1 b("Wrought Aluminium (with Minimum
99 Percent Al Content)- Tin") |
- |
0 |
|
- |
| Cl-5.3.2, Table-1 (iii)(Wrought Aluminium Alloys-Copper) |
- |
500 |
|
- |
| Cl-5.3.2, Table-1 (iv)(Wrought Aluminium Alloys-Manganese) |
- |
500.01 |
|
- |
| Cl-5.3.2, Table-1 (v)(Wrought Aluminium Alloys-Magnesium) |
- |
500.01 |
|
- |
| Cl-5.3.2, Table-1 (vi)(Wrought Aluminium Alloys-Chromium) |
- |
500 |
|
- |
| Cl-5.3.2, Table-1 (vii)(Wrought Aluminium Alloys-Nickel) |
- |
500 |
|
- |
| Cl-5.3.2, Table-1 (viii)(Wrought Aluminium Alloys-Zinc) |
- |
500.01 |
|
- |
| Cl-5.3.2, Table-1 (ix)(Wrought Aluminium Alloys -Zirconium) |
- |
0 |
|
- |
| Cl-5.3.2, Table-1 (x)(Wrought Aluminium Alloys - Titanium) |
- |
500 |
|
- |
| Cl-5.3.2, Table-1 (Note 3)(Wrought Aluminium Alloys- Aluminium) |
- |
500.01 |
|
- |
| Cl-5.3.2, Table-1 (xi)(Wrought Aluminium Alloys- Others) |
- |
0 |
|
- |
| Cl 5.4(Lead) |
- |
500.02 |
|
- |
| Cl 5.4(Cadmium) |
- |
0 |
|
- |
| Cl 5.4(Arsenic) |
- |
0 |
|
- |
| Cl-7(Dimension) |
- |
800 |
|
- |
| Cl-8(EARING TEST (OPTIONAL TEST)) |
- |
200 |
|
- |
|
26 Jul, 2027 |
- Included w.e.f. 12.11.2025 |
| 11 |
IS 16440 (2016) |
Stainless steel milk cans - Specification |
- |
20000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 5.2(Carbon) |
- |
500 |
|
- |
| 5.2(Sulphur) |
- |
500 |
|
- |
| 5.2(phosphorus) |
- |
500 |
|
- |
| 5.2(Manganese) |
- |
500 |
|
- |
| 5.2(Silicon) |
- |
500 |
|
- |
| 5.2(Chromium) |
- |
500 |
|
- |
| 5.2(Nickel) |
- |
500 |
|
- |
| 5.2(molybdenum) |
- |
500 |
|
- |
| 3.0(Capacity test) |
- |
1000 |
|
- |
| 6.3(Hardness test) |
- |
1500 |
|
- |
| 6.1(Pressure check for leakage and bulging) |
- |
1500 |
|
- |
| 6.2(Drop test) |
- |
1500 |
|
- |
| 6.4(Dye penetration test) |
- |
2500 |
|
- |
| "As per Clause 4 & Table 1"(Shape & Dimensions) |
- |
1500 |
|
- |
| As per Clause 5.4(Thickness of parts) |
- |
500 |
|
- |
| As per Clause 5.5(Mass of can (Weight)) |
- |
500 |
|
- |
| As per Clause 5.6(Construction) |
- |
1000 |
|
- |
| Clause 5.6.1(Body) |
- |
0 |
|
- |
| As per Clause 5.6.2(Handle) |
- |
0 |
|
- |
| Clause 5.6.3(Bottom ring) |
- |
0 |
|
- |
| Clause 5.6.4(Lid) |
- |
0 |
|
- |
| Clause 5.6.6(Finish) |
- |
0 |
|
- |
| Clause 5.6.7(Heat treatment and Passivation) |
- |
0 |
|
- |
| Clause 6.5(Leakage test) |
- |
1000 |
|
- |
| Clause 4 & Table 1"(Shape & Dimensions) |
- |
1500 |
|
- |
| Clause 5.4(Thickness of parts) |
- |
0 |
|
- |
| Clause 5.5(Mass of can (Weight)) |
- |
500 |
|
- |
| Clause 5.6(Construction) |
- |
1000 |
|
- |
| Clause 5.6.1(Body) |
- |
0 |
|
- |
| Clause 5.6.2(Handle) |
- |
0 |
|
- |
| Clause 5.6.3(Bottom ring) |
- |
0 |
|
- |
| Clause 5.6.6(Finish) |
- |
0 |
|
- |
| Clause 5.6.7(Heat treatment and Passivation) |
- |
0 |
|
- |
| Clause 6.5(Leakage test) |
- |
1000 |
|
- |
| 5.2(Carbon) |
- |
0 |
|
- |
| 5.2(Sulphur) |
- |
0 |
|
- |
| 5.2(phosphorus) |
- |
0 |
|
- |
| 5.2(Manganese) |
- |
0 |
|
- |
| 5.2(Silicon) |
- |
0 |
|
- |
| 5.2(Chromium) |
- |
0 |
|
- |
| 5.2(Nickel) |
- |
0 |
|
- |
| 5.2(molybdenum) |
- |
0 |
|
- |
| 3.0(Capacity test) |
- |
0 |
|
- |
| 6.3(Hardness test) |
- |
0 |
|
- |
| 6.1(Pressure check for leakage and bulging) |
- |
0 |
|
- |
| 6.2(Drop test) |
- |
0 |
|
- |
| 6.4(Dye penetration test) |
- |
0 |
|
- |
| "As per Clause 4 & Table 1"(Shape & Dimensions) |
- |
0 |
|
- |
| As per Clause 5.4(Thickness of parts) |
- |
0 |
|
- |
| As per Clause 5.5(Mass of can (Weight)) |
- |
0 |
|
- |
| As per Clause 5.6(Construction) |
- |
0 |
|
- |
| Clause 5.6.1(Body) |
- |
0 |
|
- |
| As per Clause 5.6.2(Handle) |
- |
0 |
|
- |
| Clause 5.6.3(Bottom ring) |
- |
0 |
|
- |
| Clause 5.6.4(Lid) |
- |
0 |
|
- |
| Clause 5.6.6(Finish) |
- |
0 |
|
- |
| Clause 5.6.7(Heat treatment and Passivation) |
- |
0 |
|
- |
| Clause 6.5(Leakage test) |
- |
0 |
|
- |
| Clause 4 & Table 1"(Shape & Dimensions) |
- |
0 |
|
- |
| Clause 5.4(Thickness of parts) |
- |
0 |
|
- |
| Clause 5.5(Mass of can (Weight)) |
- |
0 |
|
- |
| Clause 5.6(Construction) |
- |
0 |
|
- |
| Clause 5.6.1(Body) |
- |
0 |
|
- |
| Clause 5.6.2(Handle) |
- |
0 |
|
- |
| Clause 5.6.3(Bottom ring) |
- |
0 |
|
- |
| Clause 5.6.6(Finish) |
- |
0 |
|
- |
| Clause 5.6.7(Heat treatment and Passivation) |
- |
0 |
|
- |
| Clause 6.5(Leakage test) |
- |
0 |
|
- |
|
26 Jul, 2027 |
- included w.e.f 26.11.2025 |
| 12 |
IS 4246 (2025) |
DOMESTIC GAS STOVE AND BUILT IN HOB FOR USE WITH LPG SPECIFICATION (Sixth Revision ) |
- |
30000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4.1(General - IS 4246 : 2025) |
- |
500 |
|
- |
| 4.1(General - IS 4246 : 2025) |
- |
0 |
|
- |
| 4.1.1(General - IS 4246 : 2025) |
- |
0 |
|
- |
| 5(Materials - Cl. 5 of IS 5116) |
- |
1000 |
|
- |
| 5.1.1(Materials - Toughened glass, if provided,) |
- |
0 |
|
- |
| 5.1.1(Materials - Toughened glass, if provided,) |
- |
0 |
|
- |
| 5.1.1(Materials - Toughened glass, if provided,) |
- |
0 |
|
- |
| 5.1.1(Materials - Toughened glass, if provided,) |
- |
0 |
|
- |
| 5.1.1(Materials - Toughened glass, if provided,) |
- |
0 |
|
- |
| 5.1.1(Materials - Toughened glass, if provided,) |
- |
0 |
|
- |
| 5.1.1(Materials - Toughened glass, if provided,) |
- |
0 |
|
- |
| 5.1.1(Materials - Toughened glass, if provided,) |
- |
0 |
|
- |
| 5.1.1(Materials - Toughened glass, if provided,) |
- |
0 |
|
- |
| 5.1(Materials - IS 5116) |
- |
0 |
|
- |
| 5.1(Materials - IS 5116) |
- |
0 |
|
- |
| 5.1.1(Materials - IS 5116) |
- |
0 |
|
- |
| 5.1.1(Materials - IS 5116) |
- |
500 |
|
- |
| 5.2(Materials - IS 5116) |
- |
0 |
|
- |
| 5.2(Materials - IS 5116) |
- |
1000 |
|
- |
| 5.3(Materials - IS 5116) |
- |
500 |
|
- |
| 5.5(Materials - IS 5116) |
- |
500 |
|
- |
| 5.5(Materials - IS 5116) |
- |
0 |
|
- |
| 5.5(Materials - IS 5116) |
- |
0 |
|
- |
| 5.7(Materials - IS 5116) |
- |
500 |
|
- |
| 6.1(Design for Maintainance) |
- |
500 |
|
- |
| 6.1(Design for Maintainance) |
- |
0 |
|
- |
| 6.2(Design for Maintainance) |
- |
0 |
|
- |
| 6.2(Design for Maintainance) |
- |
0 |
|
- |
| 6.3(Design for Maintainance) |
- |
0 |
|
- |
| 6.4(Design for Maintainance) |
- |
0 |
|
- |
| 6.5(Design for Maintainance) |
- |
0 |
|
- |
| 6.6(Design for Maintainance) |
- |
0 |
|
- |
| 7.0(Rigidity and Stability) |
- |
500 |
|
- |
| 7.1(Rigidity and Stability) |
- |
0 |
|
- |
| 7.2(Rigidity and Stability) |
- |
0 |
|
- |
| 7.3(Rigidity and Stability) |
- |
0 |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
500 |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
0 |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
0 |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
0 |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
1000 |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
1000 |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
1000 |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
1000 |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
0 |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
0 |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
0 |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
0 |
|
- |
| 8.2(Workmanship and Finish -) |
- |
500 |
|
- |
| 8.3(Workmanship and Finish -) |
- |
800 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
900 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
0 |
|
- |
| 10(Injector Jets) |
- |
900 |
|
- |
| 10(Injector Jets) |
- |
0 |
|
- |
| 10(Injector Jets) |
- |
0 |
|
- |
| 10(Injector Jets) |
- |
0 |
|
- |
| 10(Injector Jets) |
- |
0 |
|
- |
| 10(Injector Jets) |
- |
0 |
|
- |
| 11.1(Burners- Cl. 10 of IS 5116) |
- |
0 |
|
- |
| 11.1(Burners- Cl. 10 of IS 5116) |
- |
700 |
|
- |
| 11.1(Burners- Cl. 10 of IS 5116) |
- |
0 |
|
- |
| 11.1(Burners- Cl. 10 of IS 5116) |
- |
0 |
|
- |
| 11.1(Burners- Cl. 10 of IS 5116) |
- |
0 |
|
- |
| 11.2(Burners) |
- |
0 |
|
- |
| 11.3(Burners) |
- |
0 |
|
- |
| 11.4(Burners) |
- |
0 |
|
- |
| 12.1(Burner Pan Support) |
- |
700 |
|
- |
| 12.2(Burner Pan Support) |
- |
0 |
|
- |
| 12.3(Burner Pan Support) |
- |
0 |
|
- |
| 13.1(Gas Soundness Test - Cl. 16 of IS 5116) |
- |
700 |
|
- |
| 13,2(Gas Soundness Test) |
- |
0 |
|
- |
| 13.2(Gas Leak Detector) |
- |
0 |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
900 |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
0 |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
0 |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
0 |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
0 |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
0 |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
0 |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
0 |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
0 |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
0 |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
0 |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
0 |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
0 |
|
- |
| 14.2(Gas Inlet Connection) |
- |
500 |
|
- |
| 14.2(Gas Inlet Connection) |
- |
0 |
|
- |
| 14.2(Gas Inlet Connection) |
- |
0 |
|
- |
| 14.2(Gas Inlet Connection) |
- |
0 |
|
- |
| 14.3(Gas Inlet Connection) |
- |
0 |
|
- |
| 14.4(Gas Inlet Connection) |
- |
0 |
|
- |
| 14.5(Gas Inlet Connection - Cl. 17.3 of IS 5116) |
- |
0 |
|
- |
| 14.6(Gas Inlet Connection) |
- |
0 |
|
- |
| 15.0(Strength and Rigidity) |
- |
600 |
|
- |
| 15.0(Strength and Rigidity) |
- |
0 |
|
- |
| 15.0(Strength and Rigidity) |
- |
0 |
|
- |
| 15.0(Strength and Rigidity) |
- |
0 |
|
- |
| 17.0(Gas Consumption Test) |
- |
1200 |
|
- |
| 17.0(Gas Consumption Test) |
- |
0 |
|
- |
| 17.0(Gas Consumption Test) |
- |
0 |
|
- |
| 17.0(Gas Consumption Test) |
- |
0 |
|
- |
| 17.0(Gas Consumption Test) |
- |
0 |
|
- |
| 17.0(Gas Consumption Test) |
- |
0 |
|
- |
| 17.2(Gas Consumption Test - For Gas Stoves) |
- |
0 |
|
- |
| 17.2 (a)(Gas Consumption Test - For Gas Stoves) |
- |
0 |
|
- |
| 17.2 (b)(Gas Consumption Test - For Gas Stoves) |
- |
0 |
|
- |
| 17.2 (c)(Gas Consumption Test - For Gas Stoves) |
- |
0 |
|
- |
| 17.3(Gas Consumption Test - For Built in Hobs) |
- |
0 |
|
- |
| 17.3.1(Gas Consumption Test - For Built in Hobs) |
- |
0 |
|
- |
| 17.3.2(Gas Consumption Test - For Built in Hobs) |
- |
0 |
|
- |
| 18.1(Ignition and Flame Travel) |
- |
1000 |
|
- |
| 18.1(Ignition and Flame Travel) |
- |
0 |
|
- |
| 18.2(Ignition and Flame Travel) |
- |
0 |
|
- |
| 18.3(Ignition and Flame Travel) |
- |
0 |
|
- |
| 18.4(Ignition and Flame Travel - Cl. 14 of IS 5116) |
- |
0 |
|
- |
| 18.4(Ignition and Flame Travel - Cl. 14 of IS 5116) |
- |
0 |
|
- |
| 18.4(Ignition and Flame Travel - Cl. 14 of IS 5116) |
- |
0 |
|
- |
| 18.4(Ignition and Flame Travel - Cl. 14 of IS 5116) |
- |
0 |
|
- |
| 18.4(Ignition and Flame Travel - Cl. 14 of IS 5116) |
- |
0 |
|
- |
| 18.4(Ignition and Flame Travel - Cl. 14 of IS 5116) |
- |
0 |
|
- |
| 19.1(Flame Stability) |
- |
500 |
|
- |
| 19.1.1(Flame Stability) |
- |
0 |
|
- |
| 19.2(Flame Stability) |
- |
0 |
|
- |
| 19.3(Flame Stability) |
- |
0 |
|
- |
| 20(Noise Control) |
- |
500 |
|
- |
| 21(Flash Back) |
- |
500 |
|
- |
| 22(Formation of Soot) |
- |
500 |
|
- |
| 23(Resistance to Draught) |
- |
500 |
|
- |
| 24.1(Combustion) |
- |
500 |
|
- |
| 24.1(Combustion) |
- |
0 |
|
- |
| 24.2(Combustion) |
- |
0 |
|
- |
| 25.1(Fire Hazard and Limiting Temperatures) |
- |
1000 |
|
- |
| 25.1(Fire Hazard and Limiting Temperatures) |
- |
0 |
|
- |
| 25.1(Fire Hazard and Limiting Temperatures) |
- |
0 |
|
- |
| 25.1(Fire Hazard and Limiting Temperatures) |
- |
0 |
|
- |
| 25.2(Fire Hazard and Limiting Temperatures) |
- |
0 |
|
- |
| 26.1(Thermal Efficiency- Gas Stoves) |
- |
2000 |
|
- |
| 26.1(Thermal Efficiency- Gas Stoves) |
- |
0 |
|
- |
| 26.1(Thermal Efficiency- Gas Stoves) |
- |
0 |
|
- |
| 26.1(Thermal Efficiency- Gas Stoves) |
- |
0 |
|
- |
| 26.1(Thermal Efficiency- Gas Stoves) |
- |
0 |
|
- |
| 26.2(Thermal Efficiency- For Built in Hobs) |
- |
0 |
|
- |
| 26.2(Thermal Efficiency- For Built in Hobs) |
- |
0 |
|
- |
| 26.2(Thermal Efficiency- For Built in Hobs) |
- |
0 |
|
- |
| 26.2(Thermal Efficiency- For Built in Hobs) |
- |
0 |
|
- |
| 26.2(Thermal Efficiency- For Built in Hobs) |
- |
0 |
|
- |
| 4.1(General - IS 4246 : 2025) |
- |
- |
|
- |
| 4.1(General - IS 4246 : 2025) |
- |
- |
|
- |
| 4.1.1(General - IS 4246 : 2025) |
- |
- |
|
- |
| 5(Materials - Cl. 5 of IS 5116) |
- |
- |
|
- |
| 5.1.1(Materials - Toughened glass, if provided,) |
- |
- |
|
- |
| 5.1.1(Materials - Toughened glass, if provided,) |
- |
- |
|
- |
| 5.1.1(Materials - Toughened glass, if provided,) |
- |
- |
|
- |
| 5.1.1(Materials - Toughened glass, if provided,) |
- |
- |
|
- |
| 5.1.1(Materials - Toughened glass, if provided,) |
- |
- |
|
- |
| 5.1.1(Materials - Toughened glass, if provided,) |
- |
- |
|
- |
| 5.1.1(Materials - Toughened glass, if provided,) |
- |
- |
|
- |
| 5.1.1(Materials - Toughened glass, if provided,) |
- |
- |
|
- |
| 5.1.1(Materials - Toughened glass, if provided,) |
- |
- |
|
- |
| 5.1(Materials - IS 5116) |
- |
- |
|
- |
| 5.1(Materials - IS 5116) |
- |
- |
|
- |
| 5.1.1(Materials - IS 5116) |
- |
- |
|
- |
| 5.1.1(Materials - IS 5116) |
- |
- |
|
- |
| 5.2(Materials - IS 5116) |
- |
- |
|
- |
| 5.2(Materials - IS 5116) |
- |
- |
|
- |
| 5.3(Materials - IS 5116) |
- |
- |
|
- |
| 5.5(Materials - IS 5116) |
- |
- |
|
- |
| 5.5(Materials - IS 5116) |
- |
- |
|
- |
| 5.5(Materials - IS 5116) |
- |
- |
|
- |
| 5.7(Materials - IS 5116) |
- |
- |
|
- |
| 6.1(Design for Maintainance) |
- |
- |
|
- |
| 6.1(Design for Maintainance) |
- |
- |
|
- |
| 6.2(Design for Maintainance) |
- |
- |
|
- |
| 6.2(Design for Maintainance) |
- |
- |
|
- |
| 6.3(Design for Maintainance) |
- |
- |
|
- |
| 6.4(Design for Maintainance) |
- |
- |
|
- |
| 6.5(Design for Maintainance) |
- |
- |
|
- |
| 6.6(Design for Maintainance) |
- |
- |
|
- |
| 7.0(Rigidity and Stability) |
- |
- |
|
- |
| 7.1(Rigidity and Stability) |
- |
- |
|
- |
| 7.2(Rigidity and Stability) |
- |
- |
|
- |
| 7.3(Rigidity and Stability) |
- |
- |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
- |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
- |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
- |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
- |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
- |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
- |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
- |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
- |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
- |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
- |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
- |
|
- |
| 8.1(Workmanship and Finish - Cl. 7 of IS 5116) |
- |
- |
|
- |
| 8.2(Workmanship and Finish -) |
- |
- |
|
- |
| 8.3(Workmanship and Finish -) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 9(Gas Taps- Cl. 8 of IS 5116 (Except 8.7 and 8.11.1)) |
- |
- |
|
- |
| 10(Injector Jets) |
- |
- |
|
- |
| 10(Injector Jets) |
- |
- |
|
- |
| 10(Injector Jets) |
- |
- |
|
- |
| 10(Injector Jets) |
- |
- |
|
- |
| 10(Injector Jets) |
- |
- |
|
- |
| 10(Injector Jets) |
- |
- |
|
- |
| 11.1(Burners- Cl. 10 of IS 5116) |
- |
- |
|
- |
| 11.1(Burners- Cl. 10 of IS 5116) |
- |
- |
|
- |
| 11.1(Burners- Cl. 10 of IS 5116) |
- |
- |
|
- |
| 11.1(Burners- Cl. 10 of IS 5116) |
- |
- |
|
- |
| 11.1(Burners- Cl. 10 of IS 5116) |
- |
- |
|
- |
| 11.2(Burners) |
- |
- |
|
- |
| 11.3(Burners) |
- |
- |
|
- |
| 11.4(Burners) |
- |
- |
|
- |
| 12.1(Burner Pan Support) |
- |
- |
|
- |
| 12.2(Burner Pan Support) |
- |
- |
|
- |
| 12.3(Burner Pan Support) |
- |
- |
|
- |
| 13.1(Gas Soundness Test - Cl. 16 of IS 5116) |
- |
- |
|
- |
| 13,2(Gas Soundness Test) |
- |
- |
|
- |
| 13.2(Gas Leak Detector) |
- |
- |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
- |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
- |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
- |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
- |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
- |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
- |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
- |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
- |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
- |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
- |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
- |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
- |
|
- |
| 14.1(Gas Inlet Connection - Cl. 18 of IS 5116) |
- |
- |
|
- |
| 14.2(Gas Inlet Connection) |
- |
- |
|
- |
| 14.2(Gas Inlet Connection) |
- |
- |
|
- |
| 14.2(Gas Inlet Connection) |
- |
- |
|
- |
| 14.2(Gas Inlet Connection) |
- |
- |
|
- |
| 14.3(Gas Inlet Connection) |
- |
- |
|
- |
| 14.4(Gas Inlet Connection) |
- |
- |
|
- |
| 14.5(Gas Inlet Connection - Cl. 17.3 of IS 5116) |
- |
- |
|
- |
| 14.6(Gas Inlet Connection) |
- |
- |
|
- |
| 15.0(Strength and Rigidity) |
- |
- |
|
- |
| 15.0(Strength and Rigidity) |
- |
- |
|
- |
| 15.0(Strength and Rigidity) |
- |
- |
|
- |
| 15.0(Strength and Rigidity) |
- |
- |
|
- |
| 17.0(Gas Consumption Test) |
- |
- |
|
- |
| 17.0(Gas Consumption Test) |
- |
- |
|
- |
| 17.0(Gas Consumption Test) |
- |
- |
|
- |
| 17.0(Gas Consumption Test) |
- |
- |
|
- |
| 17.0(Gas Consumption Test) |
- |
- |
|
- |
| 17.0(Gas Consumption Test) |
- |
- |
|
- |
| 17.2(Gas Consumption Test - For Gas Stoves) |
- |
- |
|
- |
| 17.2 (a)(Gas Consumption Test - For Gas Stoves) |
- |
- |
|
- |
| 17.2 (b)(Gas Consumption Test - For Gas Stoves) |
- |
- |
|
- |
| 17.2 (c)(Gas Consumption Test - For Gas Stoves) |
- |
- |
|
- |
| 17.3(Gas Consumption Test - For Built in Hobs) |
- |
- |
|
- |
| 17.3.1(Gas Consumption Test - For Built in Hobs) |
- |
- |
|
- |
| 17.3.2(Gas Consumption Test - For Built in Hobs) |
- |
- |
|
- |
| 18.1(Ignition and Flame Travel) |
- |
- |
|
- |
| 18.1(Ignition and Flame Travel) |
- |
- |
|
- |
| 18.2(Ignition and Flame Travel) |
- |
- |
|
- |
| 18.3(Ignition and Flame Travel) |
- |
- |
|
- |
| 18.4(Ignition and Flame Travel - Cl. 14 of IS 5116) |
- |
- |
|
- |
| 18.4(Ignition and Flame Travel - Cl. 14 of IS 5116) |
- |
- |
|
- |
| 18.4(Ignition and Flame Travel - Cl. 14 of IS 5116) |
- |
- |
|
- |
| 18.4(Ignition and Flame Travel - Cl. 14 of IS 5116) |
- |
- |
|
- |
| 18.4(Ignition and Flame Travel - Cl. 14 of IS 5116) |
- |
- |
|
- |
| 18.4(Ignition and Flame Travel - Cl. 14 of IS 5116) |
- |
- |
|
- |
| 19.1(Flame Stability) |
- |
- |
|
- |
| 19.1.1(Flame Stability) |
- |
- |
|
- |
| 19.2(Flame Stability) |
- |
- |
|
- |
| 19.3(Flame Stability) |
- |
- |
|
- |
| 20(Noise Control) |
- |
- |
|
- |
| 21(Flash Back) |
- |
- |
|
- |
| 22(Formation of Soot) |
- |
- |
|
- |
| 23(Resistance to Draught) |
- |
- |
|
- |
| 24.1(Combustion) |
- |
- |
|
- |
| 24.1(Combustion) |
- |
- |
|
- |
| 24.2(Combustion) |
- |
- |
|
- |
| 25.1(Fire Hazard and Limiting Temperatures) |
- |
- |
|
- |
| 25.1(Fire Hazard and Limiting Temperatures) |
- |
- |
|
- |
| 25.1(Fire Hazard and Limiting Temperatures) |
- |
- |
|
- |
| 25.1(Fire Hazard and Limiting Temperatures) |
- |
- |
|
- |
| 25.2(Fire Hazard and Limiting Temperatures) |
- |
- |
|
- |
| 26.1(Thermal Efficiency- Gas Stoves) |
- |
- |
|
- |
| 26.1(Thermal Efficiency- Gas Stoves) |
- |
- |
|
- |
| 26.1(Thermal Efficiency- Gas Stoves) |
- |
- |
|
- |
| 26.1(Thermal Efficiency- Gas Stoves) |
- |
- |
|
- |
| 26.1(Thermal Efficiency- Gas Stoves) |
- |
- |
|
- |
| 26.2(Thermal Efficiency- For Built in Hobs) |
- |
- |
|
- |
| 26.2(Thermal Efficiency- For Built in Hobs) |
- |
- |
|
- |
| 26.2(Thermal Efficiency- For Built in Hobs) |
- |
- |
|
- |
| 26.2(Thermal Efficiency- For Built in Hobs) |
- |
- |
|
- |
| 26.2(Thermal Efficiency- For Built in Hobs) |
- |
- |
|
- |
|
26 Jul, 2027 |
- Included w.e.f 13.11.2025 |
| 13 |
IS 16172 (2023) |
Reinforcement Couplers for Mechanical Splices of Steel Bars in Concrete ? Specification (first revision) |
- |
25000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 5(Classification) |
- |
900 |
|
- |
| 6(Manufacture) |
- |
100 |
|
- |
| 7(Workmanship and Finish) |
- |
500 |
|
- |
| 8(Nominal Sizes) |
- |
1000 |
|
- |
| 9.2.1(Tensile Strength) |
- |
5000 |
|
- |
| 9.2.1.1(Disengagement test for threaded couplers) |
- |
0 |
|
- |
| 9.2.2(Percentage Elongation) |
- |
2500 |
|
- |
| 9.3(Slip Test) |
- |
5000 |
|
- |
| 9.4(Cyclic Tensile Test) |
- |
5000 |
|
- |
| 9.5.1(Low cycle Fatigue Test) |
- |
2500 |
|
- |
| 9.5.2(High Cycle Fatigue test) |
- |
2500 |
|
- |
|
26 Jul, 2027 |
- - |
| 14 |
IS 17153 (2019) |
Domestic gas stoves for use with piped natural gas (PNG) - Specification |
- |
37500 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 26(Burner-5) |
- |
2000 |
|
- |
| 26(Burner-4) |
- |
2000 |
|
- |
| 26(Burner-3) |
- |
0 |
|
- |
| 26(Burner-2) |
- |
0 |
|
- |
| 26(Burner-1) |
- |
0 |
|
- |
| 25.2(With the Burner lighted on full on, the flame temperature at a height of H+20 mm) |
- |
0 |
|
- |
| 25.1(Temperature of synthetic rubber diaphragm in gas carrying components) |
- |
1000 |
|
- |
| 25.1(Temperature of the surface in normal use) |
- |
0 |
|
- |
| 25.1(Temperature of the portion of the surface other than the working surface likely to be touched accidentally.) |
- |
0 |
|
- |
| 25.1(Rise of Temperature above room temperature in (Wall, Floor, Ceiling), after two hours of operation) |
- |
0 |
|
- |
| 24(Burner-5) |
- |
0 |
|
- |
| 24(Burner-4) |
- |
1000 |
|
- |
| 24(Burner-3) |
- |
0 |
|
- |
| 24(Burner-2) |
- |
0 |
|
- |
| 24(Burner-1) |
- |
0 |
|
- |
| 23(When operated at pressure 20-25 gf/cm2 , there shall be no extinction of flame on any of the burneroperating at the max of the burner, when the appliance is placed in normal current of air with velocity of 2 m/s.) |
- |
1000 |
|
- |
| 22(When operated at pressure 20-25 gf/cm2 , for one at full on position, no soot shall be deposited on burner or on the bottom of the vessel.) |
- |
1000 |
|
- |
| 21(When operated at pressure 20-25 gf/cm2 for half an hour flame shall be reduced to simmer and then brought back to full on, operation shall be repeated five times, no flash back shall occur during the test.) |
- |
0 |
|
- |
| 20(Ignition of Burner flame, their operation and turning off shall not give rise to undue excessive noise during the operation.) |
- |
1400 |
|
- |
| 19.3(Fixed Min Pilot flame shall be sufficient to relight the main burner at the 21 mbar gas inlet pressure.) |
- |
0 |
|
- |
| 19.2(Pilot Flame shall be Stable without lifting or soot deposition at gas inlet pressure from 20-25 gf/cm2) |
- |
0 |
|
- |
| 19.1.1(When the gas consumption of the burner is reduced to simmer after operating half an hour on full ON flame shall not extinguish, blow off, strike back or form soot at 21 mbar gas inlet pressure.) |
- |
0 |
|
- |
| 19.1(It shall be possible to operate stove with taps fully open at gas inlet pressure , without the flame extinguishing, blowing off or striking back and without the formation of soot.) |
- |
0 |
|
- |
| 18.4.1(The flame failure device if provided shall confirm to IS:5116) |
- |
0 |
|
- |
| 18.3(When the burner is ignited from a pilot flame and/or by an electric/electronic method, the ignition and flame travel shall be smooth at pressure……..) |
- |
0 |
|
- |
| 18.2(if the flame is applied to any of the outer row of the burner ports when the gas is flowing , flame travel shall be complete……..) |
- |
0 |
|
- |
| 18.1(Where the burner or burners are lighted by automatic ignition (Battery of flint operated or by a pilot flame , it shall not be possible for gas to be admitted to the main burner without being smoothly ignited by the pilot flame. Each burner should be at room temperature at the begining of the test and should be tested in turn. ) |
- |
0 |
|
- |
| 18.1(There shall be easy and safe access of lighting each burner by matchstick and it shall be easy to see that the burner is lighted) |
- |
0 |
|
- |
| 17.3(When the gas consumption of the burner is reduced to simmer, the flame shall not extinguish, blow off, strike back or form soot, when tested with commercial PNG at 21 mbar gas inlet pressure.) |
- |
0 |
|
- |
| 17.2(Burner-5) |
- |
0 |
|
- |
| 17.2(Burner-4) |
- |
0 |
|
- |
| 17.2(Burner-3) |
- |
0 |
|
- |
| 17.2(Burner-2) |
- |
0 |
|
- |
| 17.2(Burner-1) |
- |
0 |
|
- |
| 17.2(Sim Rating Declared) |
- |
0 |
|
- |
| 17.1.2(Total Gas Consumption) |
- |
2000 |
|
- |
| 17.1(Burner-5) |
- |
0 |
|
- |
| 17.1(Burner-4) |
- |
0 |
|
- |
| 17.1( Burner-3) |
- |
0 |
|
- |
| 17.1( Burner-2) |
- |
0 |
|
- |
| 17.1( Burner-1) |
- |
1000 |
|
- |
| 17.1(Rating Declared) |
- |
0 |
|
- |
| 15.2(Fragmentation test of the toughened glass to ) |
- |
1000 |
|
- |
| 15.1(Verification of the strength of the gas stove surface of the toughened glass top against thermal stress) |
- |
1000 |
|
- |
| 15(Width wise deflection) |
- |
0 |
|
- |
| 15(Length wise deflection) |
- |
0 |
|
- |
| 15(Vertical Deflection) |
- |
0 |
|
- |
| 14.5(The position of the gas inlet shall allow connection to a gas supply on either side of the appliances, the rear end or bottom is also permitted. It shall be possible to change gas inlet from one side to other side easily by standard tools.) |
- |
0 |
|
- |
| 14.4(Any other connection made from the main gas rail shall be only metallic.) |
- |
0 |
|
- |
| 14.4(The external surface of the gas rail shall be treated to resist corrosion) |
- |
0 |
|
- |
| 14.4(The wall thickness of main gas rail) |
- |
0 |
|
- |
| 14.4(The pipe/tube used for main gas rail shall be of mild steel) |
- |
0 |
|
- |
| 14.3(Screwed gas Inlet and outlet connections shall confirm to IS:554, Declared by party) |
- |
0 |
|
- |
| 14.2((e)) |
- |
0 |
|
- |
| 14.2((d)) |
- |
0 |
|
- |
| 14.2(( c)) |
- |
0 |
|
- |
| 14.2((b)) |
- |
0 |
|
- |
| 14.2(Shape of Nozzles as per fig. 3 : (a)) |
- |
0 |
|
- |
| 14.2(Where Nozzles for flexible tubing are fitted, they shall be so positioned as to facilitate fitting of the tubing and also to prevent heating of the tubing to more than 60°C) |
- |
0 |
|
- |
| 14.1(Nozzle shall be machined from free cutting brass, MS, SS, Zinc) |
- |
0 |
|
- |
| 13(All gas carrying parts of the appliances should be sound and these parts when connected to form complete assembly shall also be sound against any gas leakage. The complete assembly shall be checked at 14.71 kN/m²) |
- |
0 |
|
- |
| 12.1.2(The material of the pan support shall be metallic.) |
- |
0 |
|
- |
| 12.1.1(Loose Pan support shall be so designed that it is not possible to place them firmly in other than proper position) |
- |
0 |
|
- |
| 12.1(Prongs of the Support shall have suitable taper to accommodate round bottom pans.) |
- |
0 |
|
- |
| 12.1(The design of the pan supports shall be such that it is practicable to support a pan of 100 mm diameter over at least one top burner without the use of loose rings and such that 125 mm diameter vessel remains stable over each burner. ) |
- |
0 |
|
- |
| 11.7(The appliance comprising two or more burners shall include one burner having a rating of at least 1450 kCal/hr, based on net calorific value of the gas (When using domestic PNG)) |
- |
0 |
|
- |
| 11.6(For Burners having centre flame, provision shall be made to protect the centre flame from pan resting directly on burner top and smothering the centre flame. ) |
- |
0 |
|
- |
| 11.5(If the burner is made and assembled in two or more parts they shall be so designed to provide proper self locating arrangement so that they are always reassembled to its original design preventing any maladjustment in their assembly. This shall also be applicable for primary air regulators.) |
- |
0 |
|
- |
| 11.4(If primary air regulators are used, they shall be so designed that they are not easily maladjusted by the user and the construction shall be such that primary air adjustment can be made with the burner in place.) |
- |
0 |
|
- |
| 11.3(The tightness of the joints in the burner assembly shall not be depended upon adhesives or any kind of packing.) |
- |
0 |
|
- |
| 11.2(The Burner supports shall be rigid and shall be fixed in their place. Their construction shall ensure the stability of the burners and shall prevent their undue movement in a horizontal plane.) |
- |
0 |
|
- |
| 11.1(The construction of the burners and the assembly shall allow their dismantling from the supports easily with or without the use of tools) |
- |
0 |
|
- |
| 10.2(The Size of the jet in Litres per hour of flow of PNG at STP conditions shall be impressed upon it.) |
- |
0 |
|
- |
| 10.1.1(Injector Jet shall be made of metal , with or without ceramic tip. The melting point of the metal shall not be less than 650°C) |
- |
1000 |
|
- |
| 10.1(Dimension- Threads) |
- |
0 |
|
- |
| 10.1(Dimension- Projection from the face of mounting, Nominal) |
- |
0 |
|
- |
| 10.1(Dimension- Across Flats) |
- |
0 |
|
- |
| 10.1(The Injector Jets shall be fixed calibrated type and it shall not be possible to loosen them without the use of tools.) |
- |
0 |
|
- |
| 9.12(The noting means adopted shall be sufficiently robust to withstand normal use without distortion or damage.) |
- |
0 |
|
- |
| 9.11.1(Simmer flame shall be obtained by fixed simmer orifice.) |
- |
1000 |
|
- |
| 9.11(Taps having an 'OFF' position shall have positive stops at the 'OFF' and simmer position except that special purpose taps (for appliance incorporating auto or self ignition device)) |
- |
0 |
|
- |
| 9.1(Screw-down valves shall be so designed that it is impossible to withdraw completely the valve stem in the normal operation of the tap.) |
- |
0 |
|
- |
| 9.9(Screws nuts etc., which regulate the tension of taps valve or springs shall not loosen in operation of the appliance. It shall not be possible to cause a leak during normal manual operation of tap.) |
- |
0 |
|
- |
| 9.8(All controls or taps shall be easy to operate at all temperatures normally attained in use) |
- |
0 |
|
- |
| 9.7(C1) |
- |
0 |
|
- |
| 9.7(B1) |
- |
0 |
|
- |
| 9.7(A1) |
- |
0 |
|
- |
| 9.7(D) |
- |
0 |
|
- |
| 9.7(C) |
- |
0 |
|
- |
| 9.7(B) |
- |
0 |
|
- |
| 9.7(A) |
- |
0 |
|
- |
| 9.7(Dimension of Taper plugs in off position:) |
- |
0 |
|
- |
| 9.6(Each taper plug tap shall be spring loaded to maintain a gas tight fit. Helical springs fitted in taps and valves shall have flattened ends, which shall be rounded before fitting.) |
- |
0 |
|
- |
| 9.5.1(Taps shall be lubricated with suitable grease, resistant to the action of the gas and capable of operating at the maximum temperature of 110°C.) |
- |
0 |
|
- |
| 9.5(Taps shall be so made that in normal use and reasonable application of lubricant, the gas passages do not become blocked.) |
- |
0 |
|
- |
| 9.4(Preferably all taps (Excluding pilot taps) should lock in the off position, but in all cases it shall be impossible to handle or tap to move accidentally…. ) |
- |
0 |
|
- |
| 9.3(When Taps are fitted with adjustable stops, there shall be means of looking the stops in position. If screws are used for this purpose, they shall not lead into gas passages.) |
- |
0 |
|
- |
| 9.2(Taps shall be designed so that when placed in any position and viewed from a distance of 3 m, will definitely indicate whether the valve is open, closed or in intermediate position.) |
- |
0 |
|
- |
| 9.2(All Taps shall close in the same direction. The direction of rotation of knob from off-on-simmer shall be anti-clockwise.) |
- |
0 |
|
- |
| 9.2(The 'ON' "OFF" and any fixed position of tap handles shall be clearly and durably indicated or shall be obvious by design or position else some indication shall be provided.) |
- |
0 |
|
- |
| 9.1(The Appliance shall have at least one tap for each burner) |
- |
0 |
|
- |
| 8.7(The external Finished surfaces shall be easily cleanable.) |
- |
0 |
|
- |
| 8.6(All springs, screws, nuts and bolts which are visible or to be removed for maintenance, shall be of corrosion-resistant material or treated to resist corrosion.) |
- |
1000 |
|
- |
| 8.5(Concealed Gas Supplies: Concealed tubular fittings liable to corrode shall be protected by bituminous paint or other equally protective material.) |
- |
500 |
|
- |
| 8.4 (b)(Resistance to Heating) |
- |
1000 |
|
- |
| 8.4 (a)(Resistance to Abrasion) |
- |
1000 |
|
- |
| 8.3.3(Corrosion Resistance test) |
- |
1000 |
|
- |
| 8.3.2(Adhesion Test) |
- |
1000 |
|
- |
| 8.3.1(Thickness of Chromium coating) |
- |
100 |
|
- |
| 8.3(Thickness of Nickel coating of the top flat surface of the body of electroplated stove.) |
- |
0 |
|
- |
| 8.2(Vitreous enameled component shall meet the requirement when tested in accordance with Annex E of IS:5116) |
- |
0 |
|
- |
| 8.1(The finishes shall, on visual examination, show no defects, such as pin-holes, blisters, roughness or exposed area of metal, which give rise to undualy rapid deterioration in use.) |
- |
0 |
|
- |
| 8.1(Parts, which will come in contact with the foodstuff, shall be capable of being hygienically cleaned.) |
- |
0 |
|
- |
| 8.1(The Finish of exposed parts shall be durable, easy to clean and not subject to excessive deterioration in normal use.) |
- |
0 |
|
- |
| 7(Rigidity and Stability : The appliance shall be so designed that it remains stable and shall not be easily overturned.) |
- |
1500 |
|
- |
| 6.7(Thickness of Sheet) |
- |
2500 |
|
- |
| 6.6(All nuts, bolts and fittings having spanner flats shall be capable of being moved by suitable spanner or be readily accessible to an adjustable spanner.) |
- |
0 |
|
- |
| 6.5(Parts, which are intented to be removable by the user, shall be easy to replace correctly and difficult to assemble incorrectly.) |
- |
0 |
|
- |
| 6.4(Burners and parts of Burner only of same rating , model and make shall be interchangeable or replaceable without effecting performance.) |
- |
0 |
|
- |
| 6.3(Burner ports shall be so designed and located that in normal use spilage of food shall not cause internal fouling of mixing tube and or blockage of injector jet.) |
- |
0 |
|
- |
| 6.2(The relative distance between the centres of the adjoining burner-) |
- |
0 |
|
- |
| 6.2(the parts of the burner shall not become disconnected during operation of the appliance.) |
- |
0 |
|
- |
| 6.1(The appliance, including all the component parts, shall be easy to clean and maintain in good working order, there shall be easy access to the accessories and controls for maintenance and adjustment.) |
- |
0 |
|
- |
| 5.8.3(The number of glass fragments contained in a 50 mm side square, when tested as Cl. 15.2) |
- |
2000 |
|
- |
| 5.8.3(Toughened glass shall fragment into small particles.) |
- |
0 |
|
- |
| 5.8.2(Pan support for an uncovered burner in contact with the glass ceramic surface.The surface area of the pan support in contact with the glass ceramic) |
- |
0 |
|
- |
| 5.8.2(The toughened glass top shall ensure durability against damage in normal use) |
- |
0 |
|
- |
| 5.8.2(The means to hold the glass top of the gas stove shall not allow any stress or risk of mechanical change to the glass top.) |
- |
0 |
|
- |
| 5.8.1(Toughened glass top including their edges or corners shall not have fissures or scratches) |
- |
0 |
|
- |
| 5.7(Drip tray if provided shall be made of non-corrosive material) |
- |
0 |
|
- |
| 5.6(Meltiing poin of metal used in oven, griller or auxilliary or anyother combination) |
- |
0 |
|
- |
| 5.6(Melting point of metal for burner top) |
- |
0 |
|
- |
| 5.5(The main body of the burner including mixer head, mixing tube and burner head shall be of substantial and durable construction) |
- |
0 |
|
- |
| 5.4(Change in weight or volume of a non metallic material, when immerse in n-Pentane or PNG for 72 hours) |
- |
0 |
|
- |
| 5.3(Mercurous Nitrate test for copper and copper alloy Parts) |
- |
0 |
|
- |
| 5.2(The burner parts shall not melt or distort when burner is operated with flames flashed back for half an hour in the mixing tube.) |
- |
0 |
|
- |
| 5.1.1(Plastic components which are liable to heating (For example, tap handles push buttons etc.) shall be free of fissures, distortion, blemishes and discolouration) |
- |
0 |
|
- |
| 5.1(The use of low pressure rubber or plastic tubing fitted or pushed on nozzle is not recommended.) |
- |
0 |
|
- |
| 5.1(If flexible tubing is used, it shall not be fitted on the outlet side of any control which is capable of cutting of the gas completely, except where screwed metal connection are fitted.) |
- |
0 |
|
- |
| 5.1(The appliance shall be free from swarf, grit and other foreign matters.) |
- |
0 |
|
- |
| 4.3(No pressure regulator shall be included as part of the stove.) |
- |
0 |
|
- |
| 4.2(Rivets, Fastening screws and plugs , etc. shall not lead into gas passages.) |
- |
0 |
|
- |
| 4.1(The construction of all the parts of equipment shall be sound and of high standard of workmanship and appropriate finish. The construction shall ensure durability and shall comply with the safety requirements.) |
- |
0 |
|
- |
| 4.1(General) |
- |
2000 |
|
- |
| 4.2(General) |
- |
0 |
|
- |
| 4.3(General) |
- |
0 |
|
- |
| 5.1(Materials) |
- |
2000 |
|
- |
| 5.1(Materials) |
- |
0 |
|
- |
| 5.1(Materials) |
- |
0 |
|
- |
| 5.1(Materials) |
- |
0 |
|
- |
| 5.1.1(Materials) |
- |
0 |
|
- |
| 5.2(Materials) |
- |
0 |
|
- |
| 5.3(Materials) |
- |
0 |
|
- |
| 5.4(Materials) |
- |
0 |
|
- |
| 5.5(Materials) |
- |
0 |
|
- |
| 5.5(Materials) |
- |
0 |
|
- |
| 5.5(Materials) |
- |
0 |
|
- |
| 5.7(Materials) |
- |
0 |
|
- |
| 5.8.1(Materials) |
- |
0 |
|
- |
| 26(Thermal Efficiency) |
- |
2500 |
|
- |
| 5.8.2 (a)(Materials) |
- |
0 |
|
- |
| 5.8.2 (a)(Materials) |
- |
0 |
|
- |
| 5.8.2 (a)(Materials) |
- |
0 |
|
- |
| 26(Thermal Efficiency) |
- |
0 |
|
- |
| 5.8.2 (a)(Materials) |
- |
0 |
|
- |
| 5.8.2 (a)(Materials) |
- |
0 |
|
- |
| 26(Thermal Efficiency) |
- |
0 |
|
- |
| 5.8.2 (a)(Materials) |
- |
0 |
|
- |
| 26(Thermal Efficiency) |
- |
0 |
|
- |
| 5.8.2 (b)(Materials) |
- |
0 |
|
- |
| 26(Thermal Efficiency) |
- |
0 |
|
- |
| 5.8.2 (c )(Materials) |
- |
0 |
|
- |
| 25.2(Fire Hazard and Limiting Temperature) |
- |
0 |
|
- |
| 5.8.2 (d)(Materials) |
- |
0 |
|
- |
| 25.1(Fire Hazard and Limiting Temperature) |
- |
0 |
|
- |
| 5.8.2 (d)(Materials) |
- |
0 |
|
- |
| 25.1(Fire Hazard and Limiting Temperature) |
- |
0 |
|
- |
| 25.1(Fire Hazard and Limiting Temperature) |
- |
0 |
|
- |
| 5.8.2 (e)(Materials) |
- |
0 |
|
- |
| 25.1(Fire Hazard and Limiting Temperature) |
- |
0 |
|
- |
| 5.8.2 (e)(Materials) |
- |
0 |
|
- |
| 5.8.2 (e)(Materials) |
- |
0 |
|
- |
| 24.2(Combustion) |
- |
0 |
|
- |
| 5.8.2 (e)(Materials) |
- |
0 |
|
- |
| 24.1(Combustion) |
- |
0 |
|
- |
| 5.8.2 (e)(Materials) |
- |
0 |
|
- |
| 24.1(Combustion) |
- |
0 |
|
- |
| 5.8.3 (a)(Materials) |
- |
0 |
|
- |
| 23(Resistance to Draught) |
- |
0 |
|
- |
| 5.8.3 (b)(Materials) |
- |
0 |
|
- |
| 5.8.3 (c)(Materials) |
- |
0 |
|
- |
| 22(Formation of soot) |
- |
1000 |
|
- |
| 21(Flash Back) |
- |
1000 |
|
- |
| 5.8.3 (d)(Materials) |
- |
0 |
|
- |
| 20(Noise Control) |
- |
1000 |
|
- |
| 5.8.3 (e)(Materials) |
- |
0 |
|
- |
| 5.8.3 (f)(Materials) |
- |
0 |
|
- |
| 19.3(Flame Stability) |
- |
1000 |
|
- |
| 6.1(Design for Maintenance) |
- |
0 |
|
- |
| 19.2(Flame Stability) |
- |
0 |
|
- |
| 6.1(Design for Maintenance) |
- |
0 |
|
- |
| 19.1.1(Flame Stability) |
- |
0 |
|
- |
| 6.2(Design for Maintenance) |
- |
0 |
|
- |
| 6.2(Design for Maintenance) |
- |
0 |
|
- |
| 19.1(Flame Stability) |
- |
0 |
|
- |
| 6.3(Design for Maintenance) |
- |
0 |
|
- |
| 18.4(Ignition and Flame Travel) |
- |
0 |
|
- |
| 6.4(Design for Maintenance) |
- |
0 |
|
- |
| 18.3(Ignition and Flame Travel) |
- |
0 |
|
- |
| 6.5(Design for Maintenance) |
- |
0 |
|
- |
| 18.2(Ignition and Flame Travel) |
- |
0 |
|
- |
| 18.1(Ignition and Flame Travel) |
- |
0 |
|
- |
| 18.1(Ignition and Flame Travel) |
- |
0 |
|
- |
| 6.6(Design for Maintenance) |
- |
0 |
|
- |
| 17.0(Gas Consumption) |
- |
0 |
|
- |
| 6.7(Design for Maintenance) |
- |
0 |
|
- |
| 17.0(Gas Consumption) |
- |
0 |
|
- |
| 17.0(Gas Consumption) |
- |
0 |
|
- |
| 17.0(Gas Consumption) |
- |
0 |
|
- |
| 17.0(Gas Consumption) |
- |
0 |
|
- |
| 17.0(Gas Consumption) |
- |
0 |
|
- |
| 17.0(Gas Consumption) |
- |
0 |
|
- |
| 17.0(Gas Consumption) |
- |
0 |
|
- |
| 17.0(Gas Consumption) |
- |
0 |
|
- |
| 9.11(Gas Taps) |
- |
0 |
|
- |
| 7.1(Rigidity and Stability) |
- |
0 |
|
- |
| 7.2(Rigidity and Stability) |
- |
0 |
|
- |
| 7.3(Rigidity and Stability) |
- |
0 |
|
- |
| 8.1(Workmanship and Finish) |
- |
0 |
|
- |
| 8.1(Workmanship and Finish) |
- |
0 |
|
- |
| 8.2 & 8.2.1(Workmanship and Finish) |
- |
0 |
|
- |
| 8.3(Workmanship and Finish) |
- |
0 |
|
- |
| 8.3(Workmanship and Finish) |
- |
0 |
|
- |
| 8.3.2(Workmanship and Finish) |
- |
0 |
|
- |
| 8.4 (a)(Workmanship and Finish) |
- |
0 |
|
- |
| 8.4 (b)(Workmanship and Finish) |
- |
0 |
|
- |
| 8.5(Workmanship and Finish) |
- |
0 |
|
- |
| 8.6(Workmanship and Finish) |
- |
0 |
|
- |
| 8.7(Workmanship and Finish) |
- |
0 |
|
- |
| 9.1(Gas Taps) |
- |
0 |
|
- |
| 9.2(Gas Taps) |
- |
0 |
|
- |
| 9.2(Gas Taps) |
- |
0 |
|
- |
| 9.2(Gas Taps) |
- |
1000 |
|
- |
| 9.3(Gas Taps) |
- |
0 |
|
- |
| 9.4(Gas Taps) |
- |
0 |
|
- |
| 9.5(Gas Taps) |
- |
0 |
|
- |
| 9.11.1(Gas Taps) |
- |
0 |
|
- |
| 9.12(Gas Taps) |
- |
0 |
|
- |
| 10.1(Injector Jets) |
- |
1000 |
|
- |
| 10.1 (a)(Injector Jets) |
- |
0 |
|
- |
| 10.1 (b)(Injector Jets) |
- |
0 |
|
- |
| 10.1 (c )(Injector Jets) |
- |
0 |
|
- |
| 10.1.1(Injector Jets) |
- |
0 |
|
- |
| 9.5.1(Gas Taps) |
- |
0 |
|
- |
| 10.2(Injector Jets) |
- |
0 |
|
- |
| 9.6(Gas Taps) |
- |
0 |
|
- |
| 11.1(Burners) |
- |
0 |
|
- |
| 9.7(Gas Taps) |
- |
0 |
|
- |
| 11.2(Burners) |
- |
0 |
|
- |
| 9.7(Gas Taps) |
- |
0 |
|
- |
| 11.3(Burners) |
- |
0 |
|
- |
| 9.7(Gas Taps) |
- |
0 |
|
- |
| 11.4(Burners) |
- |
0 |
|
- |
| 9.7(Gas Taps) |
- |
0 |
|
- |
| 9.7(Gas Taps) |
- |
0 |
|
- |
| 11.5(Burners) |
- |
0 |
|
- |
| 9.7(Gas Taps) |
- |
0 |
|
- |
| 11.6(Burners) |
- |
0 |
|
- |
| 9.7(Gas Taps) |
- |
0 |
|
- |
| 11.7(Burners) |
- |
0 |
|
- |
| 9.7(Gas Taps) |
- |
0 |
|
- |
| 9.8(Gas Taps) |
- |
0 |
|
- |
| 9.9(Gas Taps) |
- |
0 |
|
- |
| 9.10(Gas Taps) |
- |
0 |
|
- |
| 12.1(Pan Supports) |
- |
1000 |
|
- |
| 12.1.1(Pan Supports) |
- |
0 |
|
- |
| 12.1.2(Pan Supports) |
- |
0 |
|
- |
| 13.1(Gas Soundness) |
- |
1500 |
|
- |
| 14.1(Gas Inlet Connection) |
- |
1000 |
|
- |
| 14.2(Gas Inlet Connection) |
- |
1000 |
|
- |
| 14.2(Gas Inlet Connection) |
- |
0 |
|
- |
| 14.2(Gas Inlet Connection) |
- |
0 |
|
- |
| 14.2(Gas Inlet Connection) |
- |
0 |
|
- |
| 14.2(Gas Inlet Connection) |
- |
0 |
|
- |
| 14.2(Gas Inlet Connection) |
- |
0 |
|
- |
| 14.2(Gas Inlet Connection) |
- |
0 |
|
- |
| 14.3(Gas Inlet Connection) |
- |
0 |
|
- |
| 14.4(Gas Inlet Connection) |
- |
0 |
|
- |
| 14.4(Gas Inlet Connection) |
- |
0 |
|
- |
| 14.4(Gas Inlet Connection) |
- |
0 |
|
- |
| 14.4(Gas Inlet Connection) |
- |
0 |
|
- |
| 14.5(Gas Inlet Connection) |
- |
0 |
|
- |
| 14.5(Gas Inlet Connection) |
- |
0 |
|
- |
| 14.5(Gas Inlet Connection) |
- |
0 |
|
- |
| 15.0(Strength and Rigidity) |
- |
1500 |
|
- |
| 15.0(Strength and Rigidity) |
- |
0 |
|
- |
| 15.0(Strength and Rigidity) |
- |
0 |
|
- |
| 15.0(Strength and Rigidity) |
- |
0 |
|
- |
| 17.0(Gas Consumption) |
- |
0 |
|
- |
| 17.0(Gas Consumption) |
- |
0 |
|
- |
|
26 Jul, 2027 |
- included w.e.f 09-12-2025. |
| 15 |
IS 444 (2025) |
Rubber Hoses, Textile-Reinforced, for General-Purpose Water Applications - Specification (Sixth Revision) |
- |
12000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl-5(Material and Construction) |
- |
2000 |
|
- |
| Cl-6.1(Internal diameters and tolerances) |
- |
1500 |
|
- |
| Cl-6.2(Concentricity) |
- |
1500 |
|
- |
| Cl-6.3(Tolerance of length) |
- |
1500 |
|
- |
| Cl-6.4(Minimum thickness of lining and cover) |
- |
1500 |
|
- |
| Cl-7.1, Table-2 (i)(Minimum tensile strength) |
- |
1000 |
|
- |
| Cl-7.1, Table-2 (ii)(Minimum elongation at break) |
- |
1000 |
|
- |
| Cl-7.1, Table-2 (iii)("Resistance to ageing:
Change in tensile strength from original value (max) . Change in elongation at break from original value (max)") |
- |
1200 |
|
- |
| Cl-7.2, Table-3 (i)(Proof pressure at 23 0 C) |
- |
500 |
|
- |
| Cl-7.2, Table-3 (ii)(Change in length at proof pressure) |
- |
500 |
|
- |
| Cl-7.2, Table-3 (iii)(Minimum burst pressure) |
- |
500 |
|
- |
| Cl-7.2, Table-3 (iv)(Adhesion between component) |
- |
500 |
|
- |
| Cl-7.2, Table-3 (v)(Ozone resistance) |
- |
1000 |
|
- |
| Cl-7.2, Table-3 (vi)(Flexibility at 23ºC) |
- |
500 |
|
- |
| Cl-7.2, Table-3 (vii)(Low-temperature flexibility) |
- |
1000 |
|
- |
| Cl-8(Marking) |
- |
300 |
|
- |
| Cl-5(Material and Construction) |
- |
2000 |
|
- |
| Cl-6.1(Internal diameters and tolerances) |
- |
1500 |
|
- |
| Cl-6.2(Concentricity) |
- |
1500 |
|
- |
| Cl-6.3(Tolerance of length) |
- |
1500 |
|
- |
| Cl-6.4(Minimum thickness of lining and cover) |
- |
1500 |
|
- |
| Cl-7.1, Table-2 (i)(Minimum tensile strength) |
- |
1000 |
|
- |
| Cl-7.1, Table-2 (ii)(Minimum elongation at break) |
- |
1000 |
|
- |
| Cl-7.1, Table-2 (iii)("Resistance to ageing:
Change in tensile strength from original value (max) . Change in elongation at break from original value (max)") |
- |
1200 |
|
- |
| Cl-7.2, Table-3 (i)(Proof pressure at 23 0 C) |
- |
500 |
|
- |
| Cl-7.2, Table-3 (ii)(Change in length at proof pressure) |
- |
500 |
|
- |
| Cl-7.2, Table-3 (iii)(Minimum burst pressure) |
- |
500 |
|
- |
| Cl-7.2, Table-3 (iv)(Adhesion between component) |
- |
500 |
|
- |
| Cl-7.2, Table-3 (v)(Ozone resistance) |
- |
1000 |
|
- |
| Cl-7.2, Table-3 (vi)(Flexibility at 23ºC) |
- |
500 |
|
- |
| Cl-7.2, Table-3 (vii)(Low-temperature flexibility) |
- |
1000 |
|
- |
| Cl-8(Marking) |
- |
300 |
|
- |
|
26 Jul, 2027 |
- Included w.e.f 15.10.2025 |
| 16 |
IS 13213 (2018) |
Polyurethane full gloss enamel (Two Pack) - Specification (First Revision) |
- |
30000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl. 4.4, Table-1, Sr.no. 1(Consistancy) |
- |
500 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 2(Drying time, Max) |
- |
1000 |
|
- |
| Table-1(Surface dry) |
- |
1000100 |
|
- |
| Table-1(hard dry) |
- |
1000 |
|
- |
| Table-1(hard dry, 70oC) |
- |
1000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 3(Finish) |
- |
500 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 4(Gloss 60o, ) |
- |
1000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 5(Colour) |
- |
500 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 6(Dry film thickness per coat, Min) |
- |
500 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 7(Volume Solids) |
- |
1500 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 8(Flexibility and adhesion) |
- |
1000 |
|
- |
| Table-1(Bend test (with 6.25 mm dia mandrel with type 1 apparatus) |
- |
1000 |
|
- |
| Table-1(Scratch hardness after 1500 g) |
- |
0 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 9(Flash point( for each component)) |
- |
1000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 10(fineness of grind) |
- |
1000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 11(Pot life) |
- |
1000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 12(Mass ) |
- |
800 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 13(Accelerated test) |
- |
1500 |
|
- |
| Table-1(Resistance to acid) |
- |
1500 |
|
- |
| Table-1(Resistance to alkali) |
- |
1500 |
|
- |
| Table-1(Resistance to oil) |
- |
1500 |
|
- |
| Table-1(Resistance to solvents) |
- |
1500 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 14(Durability test) |
- |
13000 |
|
- |
| Table-1(Out door exposure) |
- |
1500 |
|
- |
| Table-1(Accelerated weathering test( for registered sample apply both a) and b) and for bulk supply sample apply only b) ) |
- |
1500 |
|
- |
| Table-1(Colur Change) |
- |
500 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 15(Gloss retention ) |
- |
1000 |
|
- |
| Table-1(Corrosion ) |
- |
1000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 16(Keeping properties ) |
- |
3000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 1(Consistancy) |
- |
500 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 2(Drying time, Max) |
- |
1000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 2(Surface dry) |
- |
1000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 2(hard dry) |
- |
1000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 2(hard dry, 70oC) |
- |
1000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 3(Finish) |
- |
500 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 4(Gloss 60o, ) |
- |
1000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 5(Colour) |
- |
500 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 6(Dry film thickness per coat, Min) |
- |
1000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 7(Volume Solids) |
- |
1500 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 8(Flexibility and adhesion) |
- |
1000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 8(Bend test (with 6.25 mm dia mandrel with type 1 apparatus) |
- |
1000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 8(Scratch hardness after 1500 g) |
- |
0 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 9(Flash point( for each component)) |
- |
1000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 10(fineness of grind) |
- |
1000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 11(Pot life) |
- |
1000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 12(Mass ) |
- |
800 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 13(Accelerated test) |
- |
1500 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 13(Resistance to acid) |
- |
1500 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 13(Resistance to alkali) |
- |
1500 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 13(Resistance to oil) |
- |
1500 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 13(Resistance to solvents) |
- |
1500 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 14(Durability test) |
- |
13000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 14(Out door exposure) |
- |
1000 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 14(Accelerated weathering test( for registered sample apply both a) and b) and for bulk supply sample apply only b) ) |
- |
1500 |
|
- |
| Cl. 4.4, Table-1, Sr.no. 14(Colur Change) |
- |
- |
|
- |
| Cl. 4.4, Table-1, Sr.no. 15(Gloss retention ) |
- |
- |
|
- |
| Cl. 4.4, Table-1, Sr.no. 15(Corrosion ) |
- |
- |
|
- |
| Cl. 4.4, Table-1, Sr.no. 16(Keeping properties ) |
- |
- |
|
- |
|
26 Jul, 2027 |
- Included w.e.f 16.09.2025 |
| 17 |
IS 13713 (2021) |
Plastic Chairs for General Purposes - Specification ( First Revision ) |
- |
23500 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4(Material) |
- |
500 |
|
- |
| 5(Design) |
- |
400 |
|
- |
| 6(Dimensions) |
- |
400 |
|
- |
| 6 Table 1i a(Seat: Seat height) |
- |
400 |
|
- |
| 6 Table 1i b(Seat: Effective seat depth) |
- |
400 |
|
- |
| 6 Table 1i c(Seat: Seat width) |
- |
400 |
|
- |
| 6 Table 1ii(Total height) |
- |
400 |
|
- |
| 6 Table 1iii a(Total width (For chair with arms)) |
- |
400 |
|
- |
| 6 Table 1iii b(Total width (For chair without arms)) |
- |
400 |
|
- |
| 6 Table 1iv a(Total depth (For chair with arms)) |
- |
400 |
|
- |
| 6 Table 1iv b(Total depth (For chair without arms)) |
- |
400 |
|
- |
| 7(Mass) |
- |
300 |
|
- |
| 8(Workmanship and finish) |
- |
300 |
|
- |
| 9.1.1(Strength Test-static test) |
- |
1500 |
|
- |
| 9.1.1(Strength Test-fatigue test) |
- |
1500 |
|
- |
| 9.1.1(Strength Test-Impact test) |
- |
1500 |
|
- |
| 9.1.2(Stability Test) |
- |
2500 |
|
- |
| 9.1.3(Free Fall Drop Test) |
- |
1500 |
|
- |
| 9.1.4(Static Load Test for Leg Slippage and Distortion) |
- |
2500 |
|
- |
| 9.1.5(Handle Impact Test) |
- |
1800 |
|
- |
| 9.1.6(Vibration Test) |
- |
2800 |
|
- |
| 9.1.7(Rigidity Test for Chair Shell) |
- |
2000 |
|
- |
| 9.1.8(Colour Fastness to Daylight) |
- |
2500 |
|
- |
| 9.1.9(Determination of Flammability by Oxygen Index) |
- |
2000 |
|
- |
|
26 Jul, 2027 |
- Included w.e.f.12.09.2025 |
| 18 |
IS 14932 (2001) |
Sulfamic acid - Specification |
- |
18000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4.1(Description) |
- |
1000 |
|
- |
| 4.2-Table 1-(i)(Matter insoluble in water, percent by mass,Max) |
- |
3000 |
|
- |
| 4.2-Table 1-(ii)(Sulphates percent by mass Max) |
- |
3000 |
|
- |
| 4.2-Table 1-(iii)(Lead percent by mass, Max) |
- |
3000 |
|
- |
| 4.2-Table 1-(iv)(Sulfamic acid percent by mass, Min) |
- |
3000 |
|
- |
| 4.2-Table 1-(v)(Iron percent by mass,Max) |
- |
2000 |
|
- |
| 4.2-Table 1-(vi)(Free moisture percent by mass, Max) |
- |
2500 |
|
- |
| 5(Safety Precautions in Handling Sulfamic Acid) |
- |
3000 |
|
- |
| 6.1(Packing) |
- |
500 |
|
- |
| 6.2(Marking) |
- |
500 |
|
- |
|
26 Jul, 2027 |
- Included w.e.f 28.08.2025 |
| 19 |
IS 14333 (2022) |
Polyethylene Pipes for Sewerage and Industrial Chemicals and Effluent � Specification (First Revision) |
- |
35000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 5.2.1,T2("Base Density
(At 27°C Temp.)-IS 7328:2020 ") |
- |
1000 |
|
- |
| 5.2.1,T2(Melt Flow Rate (At 190°C /5kg)-IS 2530:1963) |
- |
1000 |
|
- |
| 5.2.1,T2(Thermal Stability(Oxidation Induction Time)-IS 4984:2016(Annexure-B)) |
- |
1000 |
|
- |
| 5.2.1,T2("Volatile Matter- IS 4984:2016
(Annexure-C)") |
- |
1000 |
|
- |
| 5.2.1,T2("Water Content-IS 4984:2016
(Annexure-D)") |
- |
1000 |
|
- |
| 5.2.1.1, T2(Compound Density-IS 7328:2020) |
- |
1000 |
|
- |
| 5.2.1.1, T2("Compound carbon black -IS 2530:1963
content") |
- |
1000 |
|
- |
| 5.2.1.1, T2(Compound Toluene extract - Any Method) |
- |
1000 |
|
- |
| 5.2.1.1, T2(Compound maximum volatile matter -IS 4984:2016 (Annexure-C)) |
- |
1000 |
|
- |
| 5.2.1.1, T2(Compound carbon black particle size- Any Method) |
- |
1000 |
|
- |
| 5.2.1.1, T2(Compound ash content - Any Method) |
- |
1000 |
|
- |
| 5.2.1.1, T2("Compound carbon black -IS 2530:1963
dispersion") |
- |
1000 |
|
- |
| 5.3(Density of Higher olefin - IS 7328:2020) |
- |
1000 |
|
- |
| 5.3(Olefin Constituents- 14333-2022) |
- |
1000 |
|
- |
| 5.3(Loading of Carbon Black - IS 2530:1963) |
- |
1000 |
|
- |
| 5.3(Ash content- Any Method) |
- |
1000 |
|
- |
| 5.3(Toluene extract - Any Method) |
- |
1000 |
|
- |
| 5.3("Maximum volatile matter -IS 4984:2016
(Annexure-C)") |
- |
1000 |
|
- |
| 5.3(Carbon black particle size - Any Method) |
- |
1000 |
|
- |
| 5.4(Antioxidant - Any Method) |
- |
1000 |
|
- |
| 6(Pipe Description - IS 14333-2022) |
- |
2500 |
|
- |
| 6.2(Colour- IS 14333-2022) |
- |
2500 |
|
- |
| 7.1(Visual Appearance- IS 14333-2022) |
- |
1000 |
|
- |
| 7.2(Length- IS 14333-2022) |
- |
1000 |
|
- |
| 7.3(Coiling- IS 14333-2022) |
- |
1500 |
|
- |
| 7.4,T3 of IS 4984(Outside Diameter-IS 4984-2016) |
- |
1500 |
|
- |
| 7.4,T4 of IS 4984(wall Thickness-IS 4984-2016) |
- |
1500 |
|
- |
| 7.4,T3 of IS 4984(Ovality-IS 4984-2016) |
- |
1500 |
|
- |
| 8.1.1, T4(Internal Pressure creep Rupture test, Temperature - 27 oC , Test Period - 100 hrs.-IS 4984-2016 (Annexure-E)) |
- |
2500 |
|
- |
| 8.1.1, T4(Internal Pressure creep Rupture test, Temperature - 80 oC , Test Period - 48 hrs.-IS 4984-2016 (Annexure-E)) |
- |
2500 |
|
- |
| 8.1.1, T4(Internal Pressure creep Rupture test, Temperature - 80 oC , Test Period - 165 hrs.-IS 4984-2016 (Annexure-E)) |
- |
2500 |
|
- |
| 8.1.1, T4(Internal Pressure creep Rupture test, Temperature - 80 oC , Test Period - 1000 hrs.-IS 4984-2016 (Annexure-E)) |
- |
2500 |
|
- |
| 8.1.2, T4(Internal Pressure creep Rupture test, Temperature - 80 oC , Test Period - 48 hrs.-IS 4984-2016 (Annexure-E)) |
- |
3000 |
|
- |
| 8.2("Longitudinal Reversion Test - IS 4984-2016
(Annexure-F)") |
- |
3000 |
|
- |
| 8.3(Carbon black content- IS 2530-1963) |
- |
5000 |
|
- |
| 8.3(Carbon black content Dispersion- IS 2530-1963) |
- |
5000 |
|
- |
| 8.4(Melt Flow rate(Temperature - 190oC,Mass 5kg)-IS 2530-1963) |
- |
2000 |
|
- |
| 8.5(Oxidation Induction Time -IS 4984:2016(Annexure-B)) |
- |
3000 |
|
- |
| 8.6(Density-IS 7328:2020) |
- |
1000 |
|
- |
| 8.7("Tensile Strength for Butt Fusion - IS 4984-2016
(Annexure-G)") |
- |
2000 |
|
- |
| 8.8,T5("Tensile - IS 4984-2016
(Annexure-H)") |
- |
2500 |
|
- |
| 8.8,T5("Elongation -IS 4984-2016
(Annexure-H)") |
- |
2500 |
|
- |
| 8.9(Slow Crack Growth Rate{Internal Pressure creep Rupture test, Temperature - 80±1 oC , Test Pressure – 0.80MPa, Test Period - 500 hrs.-IS 4984-2016 (Annexure-E &J)) |
- |
5000 |
|
- |
|
26 Jul, 2027 |
- Included w.e.f. 09.10.2025 |
| 20 |
IS 13488 (2008) |
Irrigation equipment - Emitting pipe systems - Specification (First Revision) |
- |
9000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 5.1(Materials - shall be resistant to fertilizers and
chemicals commonly employed in irrigation, and shall
be suitable for use with water at temperatures up to
60°C and at pressures designed for the emitting pipe) |
- |
500 |
|
- |
| 5.1.2 (Ref. Cl 4.1.a of IS 12786 : 1989)(Potyethylene - higher olefins constituent ) |
- |
0 |
|
- |
| 5.1.2 (Ref. Cl 4.1.b of IS 12786 : 1989)(Potyethylene - anti-oxidant) |
- |
0 |
|
- |
| 5.1.2 (Ref. Cl 4.1.c.i of IS 12786 : 1989)(Density) |
- |
0 |
|
- |
| 5.1.2 (Ref. Cl 4.1.c.ii of IS 12786 : 1989)(Toluene extract - Annex A of IS 12786:1989) |
- |
0 |
|
- |
| 5.1.2 (Ref. Cl 4.1.c.iii of IS 12786 : 1989)(Volatile matter - Annex B of IS 12786:1989) |
- |
0 |
|
- |
| 5.1.2 (Ref. Cl 4.1.c & 4.2.a of IS 12786 : 1989)(Carbon Black content - IS 2530 : 1963) |
- |
0 |
|
- |
| 5.1.2 (Ref. Cl 4.2.b of IS 12786 : 1989)(The dispersion of Carbon Black content shall be satisfactory - IS 2530 : 1963) |
- |
0 |
|
- |
| 5.1.2 (Ref. Cl 4.3 of IS 12786 : 1989)(Addition of not more than 10 percent of the manufactures own rework material produced during the manufacture and works testing of pipe complying with this standard is permitted. No other rework material shall be used) |
- |
0 |
|
- |
| 6.2.2(Fittings) |
- |
500 |
|
- |
| 6.3(General) |
- |
0 |
|
- |
| 6.3(General) |
- |
0 |
|
- |
| 8.1.2(Uniformity of Emission Rate for Unregulated Emitting Pipes) |
- |
1000 |
|
- |
| 8.1.3(Uniformity of Emission Rate for Regulated Emitting Pipes) |
- |
0 |
|
- |
| 8.2(Emission Rate of Emitting Unit as a Function of Inlet Pressure) |
- |
1000 |
|
- |
| 8.2.1(Unregu/Qt~d Emining Pipe) |
- |
0 |
|
- |
| 8.2.2(Regulated Emitting Pipes) |
- |
0 |
|
- |
| 8.3.1(Wall Thickness ofEmitting Pipe) |
- |
300 |
|
- |
| 8.3.2(Inside Diameter ofEmitting Pipe) |
- |
0 |
|
- |
| 8.3.3(Flow Paths in Emitting Unit) |
- |
0 |
|
- |
| 8.3.4(Spacing ofEmitter Units) |
- |
0 |
|
- |
| 8.4.1(Resistance to Hydrostatic Pressure at Ambient Temperature) |
- |
1000 |
|
- |
| 8.4.2(Resistance to Hydrostatic Pressure at Elevated Temperature) |
- |
1000 |
|
- |
| 8.5(Resistance to Tension at Elevated Temperature) |
- |
500 |
|
- |
| 8.5(Resistance to Tension at Elevated Temperature) |
- |
0 |
|
- |
| 8.5(Resistance to Tension at Elevated Temperature) |
- |
0 |
|
- |
| 8.6(Resistance to Pull Out of Joints Between Fitting and Emitting
IS 13479) |
- |
500 |
|
- |
| 8.7.1(Resistance of PE Emitting Pipe to
Environmental Stress Cracking -Acceptance Test
Annex D of IS 12786) |
- |
1000 |
|
- |
| 8.7.2(Resistance of PE Emitting Pipe to
Environmental Stress Cracking - Type Test
Annex D of IS 12786) |
- |
0 |
|
- |
| 8.8(Determination of Emitting Unit Exponent) |
- |
700 |
|
- |
| 9.1(DESIGNATION - Non regulated Emitting Pipe) |
- |
0 |
|
- |
| 9.2(DESIGNATION - Regulated Emitting Pipe) |
- |
0 |
|
- |
| 4.1 a(Identification) |
- |
500 |
|
- |
| 4.1 a(Identification) |
- |
0 |
|
- |
| 4.1 c(Volatile matter Extract) |
- |
0 |
|
- |
| 4.1 d(Density) |
- |
0 |
|
- |
| 4.1 d(MFI @ 1900C/2.16 Kg) |
- |
0 |
|
- |
| 4.2(Carbon black content) |
- |
0 |
|
- |
| 4.2(Carbon black dispersion) |
- |
0 |
|
- |
| 5.1(Materials) |
- |
0 |
|
- |
| 6.1.1, Table 1,(i)(Nominal Diameter) |
- |
0 |
|
- |
| 6.1.1, Table 1,(ii)(Inside Diameter) |
- |
0 |
|
- |
| 6.1.1, Table 1,(iii)(Tolerance on I.D) |
- |
0 |
|
- |
| 6.1.1, Table 1,(iv)(Wall Thickness) |
- |
0 |
|
- |
| 6.2(Fittings) |
- |
0 |
|
- |
| 6.3(General) |
- |
0 |
|
- |
| 7.1(Test Specimens) |
- |
0 |
|
- |
| 7.2(Order of Tests) |
- |
0 |
|
- |
| 7.3(Testing Conditions) |
- |
0 |
|
- |
| 7.4(Accuracy of Measuring Devices) |
- |
0 |
|
- |
| 8.1(Uniformity of Emission Rate) |
- |
0 |
|
- |
| 8.1.2(Unregulated Emitting Pipes) |
- |
0 |
|
- |
| 8.1.3(Regulated Emitting Pipes) |
- |
0 |
|
- |
| 8.2(Emission Rate of Emitting Unit as a Function
of Inlet Pressure) |
- |
0 |
|
- |
| 8.2.1(Unregulated Emitting Pipes) |
- |
0 |
|
- |
| 8.2.2(Regulated Emitting Pipes) |
- |
0 |
|
- |
| 8.3.1(Wall Thickness ofEmitting Pipe) |
- |
0 |
|
- |
| 8.3.2(Inside Diameter ofEmitting Pipe) |
- |
0 |
|
- |
| 8.3.3(Flow Paths in Emitting Unit) |
- |
0 |
|
- |
| 8.3.4(Spacing of Emitter Units) |
- |
0 |
|
- |
| 8.4(Resistance of Emitting Pipes to Hydrostatic
Pressure) |
- |
0 |
|
- |
| 8.5(Resistance to Tension at Elevated Temperature) |
- |
0 |
|
- |
| 8.6(Resistance to Pull Out ofJoints Between Fitting
and Emitting) |
- |
0 |
|
- |
| 8.7.1(Acceptance Test) |
- |
0 |
|
- |
| 8.7.2(Type Test) |
- |
0 |
|
- |
| 8.8(Determination of Emitting Unit Exponen) |
- |
0 |
|
- |
| 9.1(Non-regulated Emitting Pipe) |
- |
0 |
|
- |
| 9.2(Regulated Emitting Pipe) |
- |
0 |
|
- |
| 10.1(Marking) |
- |
500 |
|
- |
|
26 Jul, 2027 |
- Included w.e.f 04.11.2025 |
| 21 |
IS 12786 (2024) |
Irrigation equipment - Polyethylene pipes for irrigation laterals - Specification (first revision) |
- |
22000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl-4.1(Material) |
- |
500 |
|
- |
| Cl-4.2(Carbon content of finished PE lateral pipe) |
- |
500 |
|
- |
| Cl-5.1(Dimensions of pipes and wall thicknesses) |
- |
500 |
|
- |
| Cl-6.0(Visual Appearance) |
- |
500 |
|
- |
| Cl-7.1(Hydraulic Characteristics- Internal pressure creep rupture test) |
- |
2500 |
|
- |
| Cl-7.1(Hydraulic Characteristics- quality acceptance test) |
- |
2500 |
|
- |
| Cl-7.2(Reversion Test) |
- |
2000 |
|
- |
| Cl-7.3(Tensile Test) |
- |
2000 |
|
- |
| Cl-7.3.1(Test Piece) |
- |
0 |
|
- |
| Cl-7.3.2(Procedure) |
- |
0 |
|
- |
| Cl-7.4(Susceptibility to Environmental Stress Cracking) |
- |
3000 |
|
- |
| Cl-8.0(Supply of pipes) |
- |
5000 |
|
- |
| Cl-9.0(Coiling) |
- |
1000 |
|
- |
| Cl-10.0(Sampling and criteria for conformity) |
- |
0 |
|
- |
| Cl-11(Marking) |
- |
500 |
|
- |
| 3(Class of Pipe) |
- |
2500 |
|
- |
| 5.1 & Table 1(Dimensions of Pipes - Outside diameters) |
- |
500 |
|
- |
| 5.1 & Table 1(Dimensions of Pipes - Wall thickness) |
- |
500 |
|
- |
| 6(Visual Appearance) |
- |
500 |
|
- |
| 7.1 & Table 2(Hydraulic Characteristics) |
- |
2500 |
|
- |
| 7.1 & Table 2(Hydraulic Characteristics) |
- |
2500 |
|
- |
| 7.2(Reversion Test) |
- |
2000 |
|
- |
| 7.3(Tensile Strength) |
- |
2000 |
|
- |
| 7.3(Elongation at Break) |
- |
2000 |
|
- |
| 7.4(SusceptibiIity to Environmental Stress Cracking) |
- |
3000 |
|
- |
| 4.2(a)(Carbon Black Content-IS 2530) |
- |
500 |
|
- |
| 4.2(b)(Carbon Black Dispersion-IS 2530) |
- |
500 |
|
- |
|
26 Jul, 2027 |
- Included w.e.f. 09.10.2025 |
| 22 |
IS 12818 (2010) |
Unplasticized polyvinyl chloride (Pvc - U) screen and casing pipes for bore/tubewells - Specification (Second Revision) |
- |
22000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 9.6(Vicat Softening Temperature
IS 12235 (Part 2).) |
- |
1000 |
|
- |
| 9.5(Tensile Strength
IS 12235(Part 13)) |
- |
1500 |
|
- |
| 9.4 and Table 14(Resistance to External Blows at 0 ?C
IS 12235 (Part 9)) |
- |
1000 |
|
- |
| 9.3(Density
IS 12235 (Part 14)) |
- |
800 |
|
- |
| 9.2(Internal Diameter) |
- |
500 |
|
- |
| 9.1( Visual Appearance) |
- |
500 |
|
- |
| 9.1(Visual Appearance) |
- |
500 |
|
- |
| 8.4.1 and Table 13
Fig 3B & 4B(Dimensions of sealing elements) |
- |
1000 |
|
- |
| 8.4.1 and Table 13
Fig 3B & 4B(Dimensions of sealing elements) |
- |
1000 |
|
- |
| 8.4.1 and Table 13
Fig 3B & 4B(Dimensions of sealing elements) |
- |
1000 |
|
- |
| 8.4.1 and Table 13
Fig 3B & 4B(Dimensions of sealing elements) |
- |
1000 |
|
- |
| 8.4.1 and Table 13
Fig 3B & 4B(Dimensions of sealing elements) |
- |
1000 |
|
- |
| 8.4.1 and Table 13
Fig 3B & 4B(Dimensions of sealing elements) |
- |
1000 |
|
- |
| 8.4.1 and Table 13
Fig 3B & 4B(Dimensions of sealing elements) |
- |
1000 |
|
- |
| 8.4(Sealing rings - Hardness) |
- |
1000 |
|
- |
| 8.1 to 8.3 and Table 11 &12
Fig 3A & 4A(THREADING OF SCREEN ANDCASING PIPES.
IS 554.) |
- |
1000 |
|
- |
| 8.1 to 8.3 and Table 11 &12
Fig 3A & 4A(THREADING OF SCREEN ANDCASING PIPES.
IS 554.) |
- |
1000 |
|
- |
| 7.5 and Table 10
Fig 2A & 2B(Approximate Free Passage Area, in Percent (Mean Value) for Width of Slot (w)) |
- |
1000 |
|
- |
| 7.5 and Table 10
Fig 2A & 2B(Minimum number of slots on the circumference of the cross-section.) |
- |
1000 |
|
- |
| 7.5 and Table 10
Fig 2A & 2B(Summation of slot lengths over internal circumference of the cross- section.) |
- |
1000 |
|
- |
| 7.4 Table 8 & 9 Fig 1(Segmental length for Spigot (average of 4.0)) |
- |
1000 |
|
- |
| 7.4 Table 8 & 9 Fig 1(Segmental length,mm for socket (average of 4.0)) |
- |
1000 |
|
- |
| 7.4 Table 8 & 9
Fig 1(Segmental length, l3) |
- |
1000 |
|
- |
| 7.4 Table 8 & 9
Fig 1(Effective length, l2) |
- |
1000 |
|
- |
| 7.3.2(Rib height) |
- |
1000 |
|
- |
| 7.3.1(No.of Ribs) |
- |
1000 |
|
- |
| 7.2 and Table 5, 6 & 7
Fig 1B(Wall thickness, Max) |
- |
1000 |
|
- |
| 7.2 and Table 5, 6 & 7
Fig 1B(Wall thickness, Min) |
- |
1000 |
|
- |
| 7.1, 7.2 and Table 5, 6 & 7 Fig 1B(Mean outside dia over connection,mm (Take 4 reading and maximum valu reported)) |
- |
1000 |
|
- |
| 7.1, 7.2 and Table 5, 6 & 7 Fig 1B(Outer Diameter at any point, Max) |
- |
1000 |
|
- |
| 7.1, 7.2 and Table 5, 6 & 7 Fig 1B(Outer Diameter at any point , Min) |
- |
1000 |
|
- |
| 7.2 and Table 5, 6 & 7
Fig 1B(Mean Outer Diameter of Pipe , Max) |
- |
1000 |
|
- |
| 7.2 and Table 5, 6 & 7
Fig 1B(Mean Outer Diameter of Pipe, Min) |
- |
1000 |
|
- |
| 7.2 and Table 5, 6 & 7
Fig 1B(Nominal Diameter) |
- |
1000 |
|
- |
| 7.2 and Table 5, 6 & 7
Fig 1B(DIMENSIONS - Casing Pipes) |
- |
1000 |
|
- |
| 7.1 and Table 1, 2, 3, & 4
Fig 1A & 1B(Wall thickness) |
- |
1000 |
|
- |
| 7.1 and Table 1, 2, 3, & 4
Fig 1A & 1B(Mean Outer Diameter over Connection) |
- |
1000 |
|
- |
| 7.1 and Table 1, 2, 3, & 4
Fig 1A & 1B(Outer Diameter at any point ) |
- |
1000 |
|
- |
| 7.1 and Table 1, 2, 3, & 4
Fig 1A & 1B(Mean Outer Diameter of Pipe) |
- |
- |
|
- |
| 7.1 and Table 1, 2, 3, & 4
Fig 1A & 1B(Nominal Diameter) |
- |
- |
|
- |
| 4.1.1 (Ref. 3.4.1. of IS 10151)(Composition - The monomer content (VCM content) in the
resin - Annex A ofIS 10151) |
- |
- |
|
- |
| 5(COLOUR) |
- |
- |
|
- |
| 8.4(Sealing elements
a. Elastomeric material
b. Shore A hardness of sealing Elements
) |
- |
- |
|
- |
| 8.4(Width b) |
- |
- |
|
- |
| 8.3.1
&
8.3.2
(Threading of casing pipe (from 100 to 200 DN Table – 11 & Fig. 3A) & (from 250 to 400 DN Table – 12 & Fig. 4A)
Outside diameter
d1(+0, -0.3)
d2
d3
D1 (+0.3, -0)
D2
D4
D5 (+0.3, -0)
Z
h3 (+0, -0.1)
H4 (+0, -0.1)
) |
- |
- |
|
- |
| 8.2(Threading of casing pipe As per IS 554 (from 40 to 80mm DN)
Number of threads in 25.4mm
Pitch (P)
Height of thread (h)
Major (Gauge Diameter) d
Pitch(d2)
Minor (d1)
External Thread gauge length
Nominal
No. of turns of thread
max
min
) |
- |
- |
|
- |
| 7.5.1
7.5.2
(Slot Dimension (Table 10) Fig 2A & 2B
a. Minimum number of slot on the circumference
b. Σa±5%
c. Mean value of approximate free passage area (%) for width of slot (w)
d. Tolerance on width of slot (w)
e. Width of material between slot (b)) |
- |
- |
|
- |
| 5.0(Colour of Pipes) |
- |
- |
|
- |
| 9.7(Effect on Water
a) Lead (first extraction)
b) Lead (Third extraction)
c) Dialkyl Tin C4 & higher homologues measured as Tin (Third extraction)
d) Cadmium (All three extracts)
e) Mercury (All three extracts)
f) Other Toxic Substances
) |
- |
- |
|
- |
| 4.1.2(K-Value as per IS-4669) |
- |
- |
|
- |
| 4.1.1
(VCM Content as per IS 10151 (Annex A)) |
- |
- |
|
- |
| 7.1(Screen Pipes) |
- |
- |
|
- |
| 11(Marking) |
- |
- |
|
- |
| 8(Packing) |
- |
- |
|
- |
| 4.1.3(Cross Chain Length) |
- |
- |
|
- |
| 7.2(Link Twisted (Cross chain)) |
- |
- |
|
- |
| 7.3(The Basic chains) |
- |
- |
|
- |
| 7.9(Case Depth) |
- |
- |
|
- |
| 8(Marking) |
- |
- |
|
- |
| Cl 9.7(Effect on Water Lead (first extraction)) |
- |
- |
|
- |
| Cl 9.7(Effect on Water Lead (third extraction)) |
- |
- |
|
- |
| Cl 9.7(Effect on Water Dialkyl tin C4 and higher homologues(measuredas tin )(third extraction )) |
- |
- |
|
- |
| Cl 9.7(Effect on Water Cadmium (mean of first extraction, second extraction and third extraction)) |
- |
- |
|
- |
| Cl 9.7(Effect on Water Mercury (mean of first extraction, second extraction and third extraction)) |
- |
- |
|
- |
| 4.1.2 (Ref. Cl 11 of IS 4669)(Composition -Sulphated ash content ) |
- |
- |
|
- |
| 4.1.2 (Ref. Cl 5.1. of IS 4669)(Composition - Loss on heating ) |
- |
- |
|
- |
| 5.1(Materials) |
- |
- |
|
- |
|
26 Jul, 2027 |
- Included w.e.f 15.10.2025 |
| 23 |
IS 3513 : Part 3 (1989) |
Resin Treated Compressed Wood Laminates (Compregs) - Specification Part 3 : For General Purposes |
- |
14000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4.1(GRADES) |
- |
0 |
|
- |
| 4.2(Type) |
- |
0 |
|
- |
| 6.3(MANUFACTURE-Curing and bonding Pressure) |
- |
1000 |
|
- |
| 6.4(MANUFACTURE-thickness ) |
- |
700 |
|
- |
| 6.4(MANUFACTURE-thickness Variation) |
- |
700 |
|
- |
| 7.1.1(DIMENSIONS AND TOLERANCES-Boards-Size) |
- |
500 |
|
- |
| 7.1.2(DIMENSIONS AND TOLERANCES-Boards-Thickness) |
- |
500 |
|
- |
| 7.2(DIMENSIONS AND TOLERANCES-Rods-Length) |
- |
500 |
|
- |
| 7.2(DIMENSIONS AND TOLERANCES-Rods-Dia) |
- |
500 |
|
- |
| 8-Table 1(1)(Physical and Mechanical Properties-Specifc gravity) |
- |
1500 |
|
- |
| 8-Table 1(2)(Physical and Mechanical Properties-Moisture contcnt and volatile matte) |
- |
1800 |
|
- |
| 8-Table 2(2)(Physical and Mechanical Properties- Static bending Strength) |
- |
1800 |
|
- |
| 8-Table 2(3)-a(Physical and Mechanical Properties- Compressive Strength-Parallel to laminae) |
- |
2000 |
|
- |
| 8-Table 2(3)-b(Physical and Mechanical Properties- Compressive Strength-Perpendicular to laminae) |
- |
2000 |
|
- |
| 8-Table 2(4)-a(Physical and Mechanical Properties- Shear strength-Parallel to Grain and laminae(edgewise)) |
- |
2000 |
|
- |
| 8-Table 2(4)-b(Physical and Mechanical Properties- Shear strength-Flatwise) |
- |
2000 |
|
- |
| 8-Table 2(5)(Physical and Mechanical Properties- Hardness) |
- |
1000 |
|
- |
| 8-Table 2(6)-a(Physical and Mechanical Properties- Impact Strngth-Parallel to laminae) |
- |
2000 |
|
- |
| 8-Table 2(6)-b(Physical and Mechanical Properties- Impact Strngth-Perpendicular to laminae) |
- |
2000 |
|
- |
| 8-Table 2(1)(Physical and Mechanical Properties- Tensile Strength) |
- |
500 |
|
- |
|
26 Jul, 2027 |
- Included w.e.f. 21.08.2025 |
| 24 |
IS 3513 : Part 2 (1989) |
Resin treated compressed wood laminates (compregs) - Specification Part 2 For chemical purposes |
- |
26000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 7(DIMENSIONS AND TOLERANCES) |
- |
500 |
|
- |
| Clause 8.1, Table 1(1) Specific Gravity) |
- |
2000 |
|
- |
| Clause 8.1, Table 1(2) Moisture content and volatile matter) |
- |
2000 |
|
- |
| Clause 8.1, Table 1(3) Water absorption at 27 ± 2°C) |
- |
1000 |
|
- |
| Clause 8.1, Table 1(4) Sporadic working temperature) |
- |
1000 |
|
- |
| Clause 8.2, Table 2(1) Minimum tensile strength ( MPa )) |
- |
2000 |
|
- |
| Clause 8.2, Table 2(2) Minimum static bending strength (MPa)) |
- |
2000 |
|
- |
| Clause 8.2, Table 2(3) Minimum compressive strength ( MPa ) (Specimen 20 mm x 20 mm x 20 mm)
a) Parallel to laminae) |
- |
3000 |
|
- |
| Clause 8.2, Table 2(3) Minimum compressive strength ( MPa ) (Specimen 20 mm x 20 mm x 20 mm)
b) Perpendicular to laminae) |
- |
3000 |
|
- |
| Clause 8.2, Table 2(4) Minimum shear strength ( MPa )
a) Parallel to grain and laminae (edgewise)) |
- |
2500 |
|
- |
| Clause 8.2, Table 2(4) Minimum shear strength ( MPa )
b) Perpendicular to grain and perpendicular to laminae ( ftatwise )) |
- |
2500 |
|
- |
| Clause 8.2, Table 2(5) Minimum hardness ( Rockwell H scale)) |
- |
2000 |
|
- |
| Clause 8.2, Table 2(6 Minimum impact strength (lzod) ( un-notched sample) kg m/cm·
a) Perpendicular to laminae) |
- |
3000 |
|
- |
| Clause 8.2, Table 2(6 Minimum impact strength (lzod) ( un-notched sample) kg m/cm·
b) Parallel to laminae) |
- |
3000 |
|
- |
| Clause 9(WORKMANSHIP AND FINISH) |
- |
500 |
|
- |
|
26 Jul, 2027 |
- Included w.e.f. 21.08.2025 |
| 25 |
IS 3513 : Part 1 (1989) |
Resin treated compressed wood laminates (compregs) - Specification Part 1 For electrical purposes |
- |
20000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 5(MATERIALS) |
- |
5000 |
|
- |
| 7(DIMENSIONS AND TOLERANCES) |
- |
2000 |
|
- |
| 8.2 Table 2(j) Insulation resistance after immersion in water at 27:1:2°C) |
- |
0 |
|
- |
| 8.2 Table 2(ii) Volume and surface resistivity ohm-em) |
- |
0 |
|
- |
| 8.2 Table 2(iii) Flatwise electric strength in oil at 90 ± 2c) |
- |
0 |
|
- |
| 8.2 Table 2(iv) Edgewise electric strenlth in oil at 90°C) |
- |
0 |
|
- |
| 8.2 Table 2(v) Power factor ( tan 3 )) |
- |
0 |
|
- |
| 8.2 Table 2(vi) Comparative tracking index (or varnished components) |
- |
0 |
|
- |
| 8.3 Table 3(1) Minimum tensile streDlth ( MPa)) |
- |
2000 |
|
- |
| 8.3 Table 3(2) Minimum static bending strength ( MPa )) |
- |
2500 |
|
- |
| 8.3 Table 3(3) Minimum compressive strenath ( MPa )) |
- |
3000 |
|
- |
| 8.3 Table 3(3 Minimum compressive strenath ( MPa ) (a) Parallel to laminae) |
- |
0 |
|
- |
| 8.3 Table 3(3) Minimum compressive strenath ( MPa )
(b) Perpendicular to grain and perpendicular 60 to laminae ( flatwise)) |
- |
0 |
|
- |
| 8.3 Table 3(5) Minimum hardness Rockwell M Scale) |
- |
3000 |
|
- |
| 8.3 Table 3(6 Minimum impact strength ( Izod ) Unnotched sample ( kg.m/m') (a) Perpendicular to laminae) |
- |
2500 |
|
- |
| 8.3 Table 3(6 Minimum impact strength ( Izod ) Unnotched sample ( kg.m/m') (b) Parallel to laminae) |
- |
0 |
|
- |
| 5(MATERIALS) |
- |
0 |
|
- |
| 7(DIMENSIONS AND TOLERANCES) |
- |
0 |
|
- |
| 8.2 Table 2(j) Insulation resistance after immersion in water at 27:1:2°C) |
- |
0 |
|
- |
| 8.2 Table 2(ii) Volume and surface resistivity ohm-em) |
- |
0 |
|
- |
| 8.2 Table 2(iii) Flatwise electric strength in oil at 90 ± 2c) |
- |
0 |
|
- |
| 8.2 Table 2(iv) Edgewise electric strenlth in oil at 90°C) |
- |
0 |
|
- |
| 8.2 Table 2(v) Power factor ( tan 3 )) |
- |
0 |
|
- |
| 8.2 Table 2(vi) Comparative tracking index (or varnished components) |
- |
0 |
|
- |
| 8.3 Table 3(1) Minimum tensile streDlth ( MPa)) |
- |
0 |
|
- |
| 8.3 Table 3(2) Minimum static bending strength ( MPa )) |
- |
0 |
|
- |
| 8.3 Table 3(3) Minimum compressive strenath ( MPa )) |
- |
0 |
|
- |
| 8.3 Table 3(3 Minimum compressive strenath ( MPa ) (a) Parallel to laminae) |
- |
0 |
|
- |
| 8.3 Table 3(3) Minimum compressive strenath ( MPa )
(b) Perpendicular to grain and perpendicular 60 to laminae ( flatwise)) |
- |
0 |
|
- |
| 8.3 Table 3(5) Minimum hardness Rockwell M Scale) |
- |
0 |
|
- |
| 8.3 Table 3(6 Minimum impact strength ( Izod ) Unnotched sample ( kg.m/m') (a) Perpendicular to laminae) |
- |
0 |
|
- |
| 8.3 Table 3(6 Minimum impact strength ( Izod ) Unnotched sample ( kg.m/m') (b) Parallel to laminae) |
- |
0 |
|
- |
| 5(MATERIALS) |
- |
0 |
|
- |
| 7(DIMENSIONS AND TOLERANCES) |
- |
0 |
|
- |
| 8.2 Table 2(j) Insulation resistance after immersion in water at 27:1:2°C) |
- |
0 |
|
- |
| 8.2 Table 2(ii) Volume and surface resistivity ohm-em) |
- |
0 |
|
- |
| 8.2 Table 2(iii) Flatwise electric strength in oil at 90 ± 2c) |
- |
0 |
|
- |
| 8.2 Table 2(iv) Edgewise electric strenlth in oil at 90°C) |
- |
0 |
|
- |
| 8.2 Table 2(v) Power factor ( tan 3 )) |
- |
0 |
|
- |
| 8.2 Table 2(vi) Comparative tracking index (or varnished components) |
- |
0 |
|
- |
| 8.3 Table 3(1) Minimum tensile streDlth ( MPa)) |
- |
0 |
|
- |
| 8.3 Table 3(2) Minimum static bending strength ( MPa )) |
- |
0 |
|
- |
| 8.3 Table 3(3) Minimum compressive strenath ( MPa )) |
- |
0 |
|
- |
| 8.3 Table 3(3 Minimum compressive strenath ( MPa ) (a) Parallel to laminae) |
- |
0 |
|
- |
| 8.3 Table 3(3) Minimum compressive strenath ( MPa )
(b) Perpendicular to grain and perpendicular 60 to laminae ( flatwise)) |
- |
0 |
|
- |
| 5(MATERIALS) |
- |
0 |
|
- |
| 7(DIMENSIONS AND TOLERANCES) |
- |
0 |
|
- |
| 8.2 Table 2(j) Insulation resistance after immersion in water at 27:1:2°C) |
- |
0 |
|
- |
| 8.2 Table 2(ii) Volume and surface resistivity ohm-em) |
- |
0 |
|
- |
| 8.2 Table 2(iii) Flatwise electric strength in oil at 90 ± 2c) |
- |
0 |
|
- |
| 8.2 Table 2(iv) Edgewise electric strenlth in oil at 90°C) |
- |
0 |
|
- |
| 8.2 Table 2(v) Power factor ( tan 3 )) |
- |
0 |
|
- |
| 8.2 Table 2(vi) Comparative tracking index (or varnished components) |
- |
0 |
|
- |
| 8.3 Table 3(1) Minimum tensile streDlth ( MPa)) |
- |
0 |
|
- |
| 8.3 Table 3(2) Minimum static bending strength ( MPa )) |
- |
0 |
|
- |
| 8.3 Table 3(3) Minimum compressive strenath ( MPa )) |
- |
0 |
|
- |
| 8.3 Table 3(3 Minimum compressive strenath ( MPa ) (a) Parallel to laminae) |
- |
0 |
|
- |
| 8.3 Table 3(3) Minimum compressive strenath ( MPa )
(b) Perpendicular to grain and perpendicular 60 to laminae ( flatwise)) |
- |
0 |
|
- |
| 8.3 Table 3(5) Minimum hardness Rockwell M Scale) |
- |
0 |
|
- |
| 8.3 Table 3(6 Minimum impact strength ( Izod ) Unnotched sample ( kg.m/m') (a) Perpendicular to laminae) |
- |
0 |
|
- |
| 8.3 Table 3(6 Minimum impact strength ( Izod ) Unnotched sample ( kg.m/m') (b) Parallel to laminae) |
- |
0 |
|
- |
| 5(MATERIALS) |
- |
0 |
|
- |
| 7(DIMENSIONS AND TOLERANCES) |
- |
0 |
|
- |
| 8.3 Table 3(1) Minimum tensile streDlth ( MPa)) |
- |
0 |
|
- |
| 8.3 Table 3(2) Minimum static bending strength ( MPa )) |
- |
0 |
|
- |
| 8.3 Table 3(3) Minimum compressive strenath ( MPa )) |
- |
0 |
|
- |
| 8.3 Table 3(3 Minimum compressive strenath ( MPa ) (a) Parallel to laminae) |
- |
0 |
|
- |
| 8.3 Table 3(3) Minimum compressive strenath ( MPa )
(b) Perpendicular to grain and perpendicular 60 to laminae ( flatwise)) |
- |
0 |
|
- |
| 8.3 Table 3(5) Minimum hardness Rockwell M Scale) |
- |
0 |
|
- |
| 8.3 Table 3(6 Minimum impact strength ( Izod ) Unnotched sample ( kg.m/m') (a) Perpendicular to laminae) |
- |
0 |
|
- |
| 8.3 Table 3(6 Minimum impact strength ( Izod ) Unnotched sample ( kg.m/m') (b) Parallel to laminae) |
- |
0 |
|
- |
| 5(MATERIALS) |
- |
0 |
|
- |
| 7(DIMENSIONS AND TOLERANCES) |
- |
0 |
|
- |
| 8.3 Table 3(1) Minimum tensile streDlth ( MPa)) |
- |
0 |
|
- |
| 8.3 Table 3(2) Minimum static bending strength ( MPa )) |
- |
0 |
|
- |
| 8.3 Table 3(3) Minimum compressive strenath ( MPa )) |
- |
0 |
|
- |
| 8.3 Table 3(3 Minimum compressive strenath ( MPa ) (a) Parallel to laminae) |
- |
0 |
|
- |
| 8.3 Table 3(3) Minimum compressive strenath ( MPa )
(b) Perpendicular to grain and perpendicular 60 to laminae ( flatwise)) |
- |
0 |
|
- |
| 8.3 Table 3(5) Minimum hardness Rockwell M Scale) |
- |
0 |
|
- |
| 8.3 Table 3(6 Minimum impact strength ( Izod ) Unnotched sample ( kg.m/m') (a) Perpendicular to laminae) |
- |
0 |
|
- |
| 8.3 Table 3(6 Minimum impact strength ( Izod ) Unnotched sample ( kg.m/m') (b) Parallel to laminae) |
- |
0 |
|
- |
|
26 Jul, 2027 |
- Included w.e.f 16.09.2025
Excluding: Cl 8.2 Table 2 (ii) Volume and surface resistivity ohm-em), 8.2 Table 2 (iii) Flatwise electric strength in oil at 90 ± 2c) , 8.2 Table 2 (iv) Edgewise electric strenlth in oil at 90°C), 8.2 Table 2 (v) Power factor ( tan 3 )), 8.2 Table 2 (vi) Comparative tracking index (or varnished components), 8.2 Table 2 (j) Insulation resistance after immersion in water at 27:1:2°C) |
| 26 |
IS 2619 (2018) |
Glass beakers - Specification (Third Revision) |
- |
17000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl.5 Capacity
(a)overflow of capacity of a beaker shall exceed the nominal capacity by at least 5 %;) |
- |
2000 |
|
- |
| Cl.5 Capacity
(b) Distance between the levels corresponding to the nominal and overflow capacities shall be at least
10 mm.) |
- |
2000 |
|
- |
| Cl.6 Material(Beakers shall be made of borosilicate glass 3.3 in accordance with ISO 3585. The glass shall be
reasonably free from residual strain and from visible glass defects which might impair the safety and
performance of the beaker.) |
- |
2000 |
|
- |
| Cl.7.1 Dimensions(Low-form and tall-form beakers shall observe the dimensions specified in Table 1 and thick-walled
beakers the dimensions specifed in Table 2. The tolerances on the external diameter shall be ±5 % of
the value given in the tables.) |
- |
5000 |
|
- |
| Cl.7.2 Radius at base(Beakers having a nominal capacity of 250 ml or greater shall have an external radius at the junction
between the base and the side of 10 % to 20 % of the external diameter.) |
- |
5000 |
|
- |
| Cl.7.2 Radius at base(Beakers having a nominal capacity less than 250 ml shall have a minimum radius at the junction
between the base and the side of 5 % of the external diameter.) |
- |
5000 |
|
- |
| Cl.7.3 Wall thickness(Substantial local irregularities from the minimum values for wall thickness given in the tables shall
be avoided. That means, the minimum wall thickness shall fall at no place below the values given in
Table 1 and Table 2 and the beakers shall comply with the requirement for thermal shock endurance
specified in 8.5.) |
- |
5000 |
|
- |
| Cl.8.1 Base(The design of the base shall enable the beaker to stand vertically on a plane horizontal surface without
spinning or rocking) |
- |
1000 |
|
- |
| 8.2 Upper edge(The side of the beaker shall be slightly flared near the brim in a smooth and regular curve. The diameter
of the brim shall be of the order of 5 % to 15 % greater than the diameter of the body. The edge of the
brim shall be finished in a plane parallel with that of the horizontal base.) |
- |
1000 |
|
- |
| Cl. 8.3 Spout(The spout shall be shaped so that, when the beaker is filled with water, the water may be poured in a
regular stream clear of the side of the beaker. When the beaker is placed on a horizontal surface and
filling is continued beyond its overflow capacity, the water shall first overflow from the spout and not
from any other part of the brim.) |
- |
1000 |
|
- |
| Cl.8.4 Scale(Beakers may be provided with a scale, which should approximately indicate the volume contained
in the beaker.) |
- |
1000 |
|
- |
| Cl.8.5 Thermal shock resistance(Beakers shall have a thermal shock resistance of 160 °C when tested in accordance with ISO 718.) |
- |
1000 |
|
- |
| Cl.5 Capacity
(a)overflow of capacity of a beaker shall exceed the nominal capacity by at least 5 %;) |
- |
2000 |
|
- |
| Cl.5 Capacity
(b) Distance between the levels corresponding to the nominal and overflow capacities shall be at least
10 mm.) |
- |
2000 |
|
- |
| Cl.6 Material(Beakers shall be made of borosilicate glass 3.3 in accordance with ISO 3585. The glass shall be
reasonably free from residual strain and from visible glass defects which might impair the safety and
performance of the beaker.) |
- |
2000 |
|
- |
| Cl.7.1 Dimensions(Low-form and tall-form beakers shall observe the dimensions specified in Table 1 and thick-walled
beakers the dimensions specifed in Table 2. The tolerances on the external diameter shall be ±5 % of
the value given in the tables.) |
- |
5000 |
|
- |
| Cl.7.2 Radius at base(Beakers having a nominal capacity of 250 ml or greater shall have an external radius at the junction
between the base and the side of 10 % to 20 % of the external diameter.) |
- |
5000 |
|
- |
| Cl.7.2 Radius at base(Beakers having a nominal capacity less than 250 ml shall have a minimum radius at the junction
between the base and the side of 5 % of the external diameter.) |
- |
5000 |
|
- |
| Cl.7.3 Wall thickness(Substantial local irregularities from the minimum values for wall thickness given in the tables shall
be avoided. That means, the minimum wall thickness shall fall at no place below the values given in
Table 1 and Table 2 and the beakers shall comply with the requirement for thermal shock endurance
specified in 8.5.) |
- |
5000 |
|
- |
| Cl.8.1 Base(The design of the base shall enable the beaker to stand vertically on a plane horizontal surface without
spinning or rocking) |
- |
1000 |
|
- |
| 8.2 Upper edge(The side of the beaker shall be slightly flared near the brim in a smooth and regular curve. The diameter
of the brim shall be of the order of 5 % to 15 % greater than the diameter of the body. The edge of the
brim shall be finished in a plane parallel with that of the horizontal base.) |
- |
1000 |
|
- |
| Cl. 8.3 Spout(The spout shall be shaped so that, when the beaker is filled with water, the water may be poured in a
regular stream clear of the side of the beaker. When the beaker is placed on a horizontal surface and
filling is continued beyond its overflow capacity, the water shall first overflow from the spout and not
from any other part of the brim.) |
- |
1000 |
|
- |
| Cl.8.4 Scale(Beakers may be provided with a scale, which should approximately indicate the volume contained
in the beaker.) |
- |
- |
|
- |
| Cl.8.5 Thermal shock resistance(Beakers shall have a thermal shock resistance of 160 °C when tested in accordance with ISO 718.) |
- |
- |
|
- |
| Cl.5 Capacity
(a)overflow of capacity of a beaker shall exceed the nominal capacity by at least 5 %;) |
- |
- |
|
- |
| Cl.5 Capacity
(b) Distance between the levels corresponding to the nominal and overflow capacities shall be at least
10 mm.) |
- |
- |
|
- |
| Cl.6 Material(Beakers shall be made of borosilicate glass 3.3 in accordance with ISO 3585. The glass shall be
reasonably free from residual strain and from visible glass defects which might impair the safety and
performance of the beaker.) |
- |
- |
|
- |
| Cl.7.1 Dimensions(Low-form and tall-form beakers shall observe the dimensions specified in Table 1 and thick-walled
beakers the dimensions specifed in Table 2. The tolerances on the external diameter shall be ±5 % of
the value given in the tables.) |
- |
- |
|
- |
| Cl.7.2 Radius at base(Beakers having a nominal capacity of 250 ml or greater shall have an external radius at the junction
between the base and the side of 10 % to 20 % of the external diameter.) |
- |
- |
|
- |
| Cl.7.2 Radius at base(Beakers having a nominal capacity less than 250 ml shall have a minimum radius at the junction
between the base and the side of 5 % of the external diameter.) |
- |
- |
|
- |
| Cl.7.3 Wall thickness(Substantial local irregularities from the minimum values for wall thickness given in the tables shall
be avoided. That means, the minimum wall thickness shall fall at no place below the values given in
Table 1 and Table 2 and the beakers shall comply with the requirement for thermal shock endurance
specified in 8.5.) |
- |
- |
|
- |
| Cl.8.1 Base(The design of the base shall enable the beaker to stand vertically on a plane horizontal surface without
spinning or rocking) |
- |
- |
|
- |
| 8.2 Upper edge(The side of the beaker shall be slightly flared near the brim in a smooth and regular curve. The diameter
of the brim shall be of the order of 5 % to 15 % greater than the diameter of the body. The edge of the
brim shall be finished in a plane parallel with that of the horizontal base.) |
- |
- |
|
- |
| Cl. 8.3 Spout(The spout shall be shaped so that, when the beaker is filled with water, the water may be poured in a
regular stream clear of the side of the beaker. When the beaker is placed on a horizontal surface and
filling is continued beyond its overflow capacity, the water shall first overflow from the spout and not
from any other part of the brim.) |
- |
- |
|
- |
| Cl.8.4 Scale(Beakers may be provided with a scale, which should approximately indicate the volume contained
in the beaker.) |
- |
- |
|
- |
| Cl.8.5 Thermal shock resistance(Beakers shall have a thermal shock resistance of 160 °C when tested in accordance with ISO 718.) |
- |
- |
|
- |
|
26 Jul, 2027 |
- Included w.e.f. 12.11.2025 |
| 27 |
IS 2618 (2016) |
Laboratory glassware - Test tubes (Third Revision) |
- |
17000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl. No. 4, Table no. 1(i)("Water resistance
") |
- |
5000 |
|
- |
| Cl. No. 4, Table no. 1(ii)(Acid resistance) |
- |
5000 |
|
- |
| Cl. No. 4, Table no. 1(ii)(Alkali resistance) |
- |
5000 |
|
- |
| Cl. No. 5, Table no.2 to 4(Construction and dimensions) |
- |
7000 |
|
- |
| Cl. No. 6("Marking
") |
- |
5000 |
|
- |
|
26 Jul, 2027 |
- Included w.e.f. 12.11.2025 |
| 28 |
IS 1381 : Part 2 (2019) |
Laboratory glassware - Boiling flasks: Part 2 boiling flasks with conical ground joints (Third Revision) |
- |
15000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 3(Type) |
- |
1500 |
|
- |
| 4(Series of capacities) |
- |
3500 |
|
- |
| 5(Material) |
- |
2500 |
|
- |
| 5(Material) |
- |
2500 |
|
- |
| 6(Dimensions) |
- |
3000 |
|
- |
| 6(Dimensions) |
- |
3000 |
|
- |
| 6(Dimensions) |
- |
3000 |
|
- |
| 6(Dimensions) |
- |
3000 |
|
- |
| 7(Ground glass joints) |
- |
1500 |
|
- |
| 8(Thermal shock endurance) |
- |
2500 |
|
- |
| 9(Marking) |
- |
500 |
|
- |
| 9(Marking) |
- |
500 |
|
- |
| 9(Marking) |
- |
500 |
|
- |
| 9(Marking) |
- |
500 |
|
- |
|
26 Jul, 2027 |
- Included w.e.f 04.11.2025 |
| 29 |
IS 1381 : Part 1 (2003) |
Laboratory glassware - Narrow - Necked boiling flasks (Second Revision) |
- |
15000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 3, 4(Type of Flask) |
- |
1000 |
|
- |
| 3.1, 4.1(Series of Nominal Capacity) |
- |
1000 |
|
- |
| 3.2, 4.2(Nominal Capacity
) |
- |
500 |
|
- |
| 3.3, 4.3(Material
) |
- |
500 |
|
- |
| 3.4, 3.4.1 & 4.4, 4.4.1(Construction- a) Stability
) |
- |
500 |
|
- |
| 3.4, 3.4.2 & 4.4, 4.4.2(Construction- b) Neck
) |
- |
1000 |
|
- |
| 3.5, 4.5(Dimensions (in mm) (Table 1&2)) |
- |
1500 |
|
- |
| 3.5.2(Neck Length) |
- |
1000 |
|
- |
| 3.5.3, 4.5.2(Dimensions of base ) |
- |
1500 |
|
- |
| 3.5.4, 4.5.3(Wall thickness) |
- |
1000 |
|
- |
| 5(Marking ) |
- |
500 |
|
- |
|
26 Jul, 2027 |
- Included w.e.f. 09.10.2025 |
| 30 |
IS 915 (2012) |
Laboratory glassware - One - Mark volumetric flasks (Third Revision) |
- |
10000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Table 1(Nominal Capacity) |
- |
1000 |
|
- |
| Table 1(Internal Neck Diameter) |
- |
1500 |
|
- |
| 8.1(Material) |
- |
500 |
|
- |
| Table 1(Distance of graduation line) |
- |
500 |
|
- |
| Table 1(Overall Height) |
- |
1500 |
|
- |
| Table 1(Bulb Diameter) |
- |
1500 |
|
- |
| Table 1(Base Diameter) |
- |
1500 |
|
- |
| Table 1(Wall Thickness) |
- |
500 |
|
- |
| Table 1(Ground joint k4) |
- |
1000 |
|
- |
| Table 1(Ground joint k6) |
- |
1000 |
|
- |
| 8.3(Shape) |
- |
1000 |
|
- |
| 8.4(Neck) |
- |
800 |
|
- |
| 8.5(Stopper) |
- |
700 |
|
- |
| 8.6(Dimensions) |
- |
1500 |
|
- |
| 9.0(Graduation Line) |
- |
500 |
|
- |
| Table-2(Nominal capacity) |
- |
1000 |
|
- |
| Table-2(Internal neck diameter) |
- |
1500 |
|
- |
| Table-2(Distance of graduation line 1)) |
- |
1500 |
|
- |
| Table-2(Overall height 2)) |
- |
1500 |
|
- |
| Table-2(Bulb diameter) |
- |
1500 |
|
- |
| Table-2(Base diameter) |
- |
1500 |
|
- |
| Table-2(Wall thickness) |
- |
500 |
|
- |
| Table-2(Ground joint 3) k4) |
- |
1000 |
|
- |
| Table-2(Ground joint 3) k6) |
- |
1000 |
|
- |
| 12.1(Visibility of graduation line, figures and marking) |
- |
500 |
|
- |
| 12.2(Visibility of graduation line, figures and marking) |
- |
500 |
|
- |
| Clause. 7.0(Accuracy) |
- |
1000 |
|
- |
|
26 Jul, 2027 |
- Included w.e.f. 21.08.2025 |