| 11101 |
International Testing Centre, MSME Technology Development Centre, Meerut
| 8177804
| IS 10702 (2023) |
Hawai Chappal-Specification |
- |
39000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4.1(Material) |
- |
1000 |
|
- |
| 4.2(Length) |
- |
300 |
|
- |
| 4.3(Thickness) |
- |
300 |
|
- |
| 4.4 , Table No. 1 , i)(Density) |
- |
300 |
|
- |
| 4.4 , Table No. 1 , ii)(2Compression set at constant stress) |
- |
500 |
|
- |
| 4.4 , Table No. 1 , iii)(3Split tear strength) |
- |
500 |
|
- |
| 4.4 , Table No. 1 , iv)("Shrinkage at 50 ºC ± 1 ºC for 24 h for polymeric material,
Shrinkage at 100 ºC ± 1 ºC for 1 h for rubber") |
- |
500 |
|
- |
| 4.4 , Table No. 1 , v)(5Abrasion resistance at applied force) |
- |
500 |
|
- |
| 4.4 , Table No. 1 , vi)(Flexing resistance: Maximum cut growth at 50 000 flexes) |
- |
500 |
|
- |
| 4.4 , Table No. 1 , vii)(7 Hydrolysis resistance, Maximum cut growth at 50 000 flexes) |
- |
1500 |
|
- |
| 4.4 , Table No . 2 , i)(Density , Solid strap, Cellular strap) |
- |
300 |
|
- |
| 4.4 , Table No . 2 , ii)("Breaking strength , Strap to strap and
Toe portion to strap , Elongation at break") |
- |
500 |
|
- |
| 4.4 , Table No . 2 , iii)(Minimum cross section of the stud) |
- |
300 |
|
- |
| 4.4 , Table No . 3 , i)(Toe post attachment strength) |
- |
500 |
|
- |
| 4.4 , Table No . 3 , ii)(Attachment strength of rear strap) |
- |
500 |
|
- |
| 4.4 , Table No . 3 , iii)(Inter layer bond strength) |
- |
500 |
|
- |
| 5(CHEMICAL REQUIREMENT FOR HAWAI CHAPPAL) |
- |
35000 |
|
- |
| Cl. No.5.1,Table no.1 of IS 17011(i)(Allergenic and carcinogenic disperse dyes) |
- |
8000 |
|
- |
| Cl. No.5.1,Table no.1 of IS 17011(ii)(Aromatic amines released from Azo dyes (each individual amine)) |
- |
8000 |
|
- |
| Cl. No.5.1,Table no.1 of IS 17011(iii)(Aromatic amines released from Azo dyes (each individual amine)) |
- |
8000 |
|
- |
| Cl. No.5.1,Table no.1 of IS 17011(iv)(Chromium (VI)) |
- |
1000 |
|
- |
| Cl. No.5.1,Table no.1 of IS 17011(v)(Dimethyl fumarate (DMFU)) |
- |
5000 |
|
- |
| Cl. No.5.1,Table no.1 of IS 17011(vi)(Formaldehyde (free or released by partial hydrolysis)) |
- |
800 |
|
- |
| Cl. No.5.1,Table no.1 of IS 17011(vii)(Formaldehyde) |
- |
800 |
|
- |
| Cl. No.5.1,Table no.1 of IS 17011(viii)(Organotin compounds) |
- |
4500 |
|
- |
| Cl. No.5.1,Table no.1 of IS 17011(ix)(PCP-TeCP-TriCP polychlorophenols) |
- |
4500 |
|
- |
| Cl. No.5.1,Table no.1 of IS 17011(x)(pH) |
- |
500 |
|
- |
| Cl. No.5.1,Table no.1 of IS 17011(xi)(Phthalates (each individual phthalate)) |
- |
4500 |
|
- |
| Cl. No.5.1,Table no.1 of IS 17011(xii)(Nickel, on skin contact 2-(thiocyanomethylthio) -benzothiazole (TCMTB)) |
- |
800 |
|
- |
| Cl.No. 5.2(lead content) |
- |
1000 |
|
- |
| Clause 4.1 - 4.1.1(Bottom Material) |
- |
1500 |
|
- |
| Clause 4.1 - 4.1.2(Strap Material) |
- |
1000 |
|
- |
| Clause 4.1 - 4.1.3(Material) |
- |
1000 |
|
- |
| Clause 4.1 - 4.1.4(Material) |
- |
1000 |
|
- |
| Clause 4.2(Material) |
- |
1000 |
|
- |
| Clause 4.3 - 4.3.1(Thickness) |
- |
300 |
|
- |
| Clause 4.3 - 4.3.2(Thickness) |
- |
300 |
|
- |
| Clause 4.4 Table 1 -i)(Density, g/cm3, Min) |
- |
300 |
|
- |
| Clause 4.4 Table 1 -iii)(Split tear strength, kg, Min) |
- |
500 |
|
- |
| Clause 4.4 Table 1 -iv) - a("Shrinkage at 50 ºC ± 1 ºC for 24 h for polymeric material, percent,
Max") |
- |
500 |
|
- |
| Clause 4.4 Table 1 -iv) - b(Shrinkage at 100 ºC ± 1 ºC for 1 h for rubber, percent, Max) |
- |
500 |
|
- |
| Clause 4.4 Table 1 -v)(Abrasion resistance at applied force 5 N) |
- |
800 |
|
- |
| Clause 4.4 Table 2 -i) - a("Density, g/cm3
Solid strap
") |
- |
300 |
|
- |
| Clause 4.4 Table 2 -i) - b(Density, g/cm3 Cellular strap) |
- |
300 |
|
- |
| Clause 4.4 Table 2 -ii) - a - 1("Breaking strength, kgf, Min
Strap to strap(Solid Strap)") |
- |
500 |
|
- |
| Clause 4.4 Table 2 -ii) - a - 2("Breaking strength, kgf, Min
Strap to strap(Cellular Strap)") |
- |
500 |
|
- |
| Clause 4.4 Table 2 -ii) - a - 3("Breaking strength, kgf, Min
Toe portion to strap(Solid Strap)") |
- |
500 |
|
- |
| Clause 4.4 Table 2 -ii) - a - 4("Breaking strength, kgf, Min
Toe portion to strap(Cellular Strap)") |
- |
500 |
|
- |
| Clause 4.4 Table 2 -ii) - b - 1("Elongation at break, percent
(Applicable to strap to strap
(V shape) Solid Strap") |
- |
500 |
|
- |
| Clause 4.4 Table 2 -ii) - b - 2("Elongation at break, percent
(Applicable to strap to strap
(V shape) Cellular Strap") |
- |
500 |
|
- |
| Clause 4.4 Table 2 -iii) - a("Minimum cross section of the
stud, mm,
Size 1 to 13 (Adult)") |
- |
500 |
|
- |
| Clause 4.4 Table 2 -iii) - b("Minimum cross section of the
stud, mm,
Size 3 to 13 (Children)") |
- |
500 |
|
- |
| Clause 4.4 Table 2 -iv) - a("Stud bolt, mm
Diameter/edge to edge length") |
- |
300 |
|
- |
| Clause 4.4 Table 2 -iv) - b("Stud bolt, mm
Thickness") |
- |
300 |
|
- |
| Clause 4.4 Table 3 -i)("Toe post attachment strength, N,
Min") |
- |
500 |
|
- |
| Clause 4.4 Table 3 -ii)("Attachment strength of rear strap,
N, Min") |
- |
500 |
|
- |
| Clause 4.4 Table 3 -iii)("Inter layer bond strength, N/mm,
Min") |
- |
500 |
|
- |
|
15 Apr, 2027 |
- - |
| 11102 |
Central Institute of Petrochemicals Engineering & Technology (CIPET), CSTS - Dehradun
| 9178004
| IS 16205 : Part 24 (2017) |
Conduit Systems for Cable Management part 24 Particular Requirements Conduit Systems Buried Under Ground |
- |
20350.00 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 6.1.1(Classification - Resistance to Compression) |
- |
1600.00 |
|
Test Charge- 1100.00
specimen Charge- 500.00 |
| 6.1.2(Classification - Resistance to Impact) |
- |
1600.00 |
|
Test Charge- 1100.00
specimen Charge- 500.00 |
| 6.1.3(Classification - Resistance to Bending) |
- |
2000.00 |
|
- |
| 6.5 of IS 16205 (Part 1) : 2017(Classification - According to Resistance to Flame Propogation) |
- |
3650.00 |
|
Spread of Fire 750
Spread of Fire Glow Wire 2900 |
| 14.0(External Influences) |
- |
10000.00 |
|
- |
| 15.0(Electromagnetic Compatibility) |
- |
500.00 |
|
- |
| 8 Table 101(Dimensions) |
- |
500.00 |
|
- |
| 9.1 of IS 16205 (Part 1) : 2017(Construction) |
- |
500 |
|
- |
| 6.1.4 of IS 16205 (Part 1) : 2017(Classification - Tensile Strength) |
- |
0.00 |
|
- |
| 6.1.5 of IS 16205 (Part 1) : 2017(Classification - Suspended Load Capacity) |
- |
0.00 |
|
- |
| 6.3 of IS 16205 (Part 1) : 2017(Classification - According to Electrical Characteristics) |
- |
0.00 |
|
- |
| 6.4 of IS 16205 (Part 1) : 2017(Classification - According to Resistance to External Influences) |
- |
0.00 |
|
- |
| 7.1(Marking and Documentation) |
- |
0.00 |
|
- |
| 7.1.2(Marking and Documentation) |
- |
0.00 |
|
- |
| 7.1.3(Marking and Documentation) |
- |
0.00 |
|
- |
| 7.1.101(Marking and Documentation) |
- |
0.00 |
|
- |
| 7.2(Marking and Documentation) |
- |
0.00 |
|
- |
| 7.5 of IS 16205 (Part 1) : 2017(Marking and Documentation) |
- |
0.00 |
|
- |
| 7.6 of IS 16205 (Part 1) : 2017(Marking and Documentation) |
- |
0.00 |
|
- |
| 7.101(Marking and Documentation) |
- |
0.00 |
|
- |
| 7.102(Marking and Documentation) |
- |
0.00 |
|
- |
| 8 Table 101(Dimensions) |
- |
0.00 |
|
- |
| 9.2 of IS 16205 (Part 1) : 2017(Construction) |
- |
0.00 |
|
- |
| 9.4 of IS 16205 (Part 1) : 2017(Construction) |
- |
0.00 |
|
- |
| 9.5 of IS 16205 (Part 1) : 2017(Construction) |
- |
0.00 |
|
- |
| 9.6 of IS 16205 (Part 1) : 2017(Construction) |
- |
0.00 |
|
- |
| 10.1(Mechanical Strength) |
- |
0.00 |
|
- |
| 10.2(Compression Test) |
- |
0.00 |
|
- |
| 10.3(Impact Test) |
- |
0.00 |
|
- |
| 10.4(Bending Test) |
- |
0.00 |
|
- |
| 13.1.3(Spread of fire) |
- |
0.00 |
|
- |
| 13.1.3.1(Spread of fire) |
- |
0.00 |
|
- |
| 13.1.3.2(Spread of fire) |
- |
0.00 |
|
- |
| 14.2 of IS 16205 (Part 1) : 2017(Resistance against corrosion) |
- |
0.00 |
|
- |
| 15(Mech)(Electromagnetic Compatibility) |
- |
0.00 |
|
- |
| 14.2 of IS 16205 (Part 1) : 2017(Mech)(Resistance against corrosion) |
- |
0.00 |
|
- |
| 14(Mech)(External Influences) |
- |
0.00 |
|
- |
| 13.1.3.2(Mech)(Spread of fire) |
- |
0.00 |
|
- |
| 13.1.3.1(Mech)(Spread of fire) |
- |
0.00 |
|
- |
| 10.4(Mech)(Bending Test) |
- |
0.00 |
|
- |
| 10.3(Mech)(Impact Test) |
- |
0.00 |
|
- |
| 10.2(Mech)(Compression Test) |
- |
0.00 |
|
- |
| 10.1(Mech)(Mechanical Strength ) |
- |
0.00 |
|
- |
| 9.6 of IS 16205 (Part 1) : 2017(Mech)(Construction) |
- |
0.00 |
|
- |
| 9.5 of IS 16205 (Part 1) : 2017(Mech)(Construction) |
- |
0.00 |
|
- |
| 9.4 of IS 16205 (Part 1) : 2017(Mech)(Construction) |
- |
0.00 |
|
- |
| 9.2 of IS 16205 (Part 1) : 2017(Mech)(Construction) |
- |
0.00 |
|
- |
| 9.1 of IS 16205 (Part 1) : 2017(Mech)(Construction) |
- |
0.00 |
|
- |
| 8 Table 101(Mech)(Dimensions) |
- |
0.00 |
|
- |
| 8 Table 101(Mech)(Dimensions) |
- |
0.00 |
|
- |
| 7.102(Mech)(Marking and Documentation) |
- |
0.00 |
|
- |
| 7.5 of IS 16205 (Part 1) : 2017(Mech)(Marking and Documentation) |
- |
0.00 |
|
- |
| 7.2(Mech)(Marking and Documentation) |
- |
0.00 |
|
- |
| 7.1.101(Mech)(Marking and Documentation) |
- |
0.00 |
|
- |
| 7.1.3(Mech)(Marking and Documentation) |
- |
0.00 |
|
- |
| 7.1.2(Mech)(Marking and Documentation) |
- |
0.00 |
|
- |
| 7.1(Mech)(Marking and Documentation) |
- |
0.00 |
|
- |
| 6.5 of IS 16205 (Part 1) : 2017(Mech)(Classification - According to Resistance to Flame Propogation) |
- |
0.00 |
|
- |
| 6.4 of IS 16205 (Part 1) : 2017(Mech)(Classification - According to Resistance to External Influences) |
- |
0.00 |
|
- |
| 6.3 of IS 16205 (Part 1) : 2017(Mech)(Classification - According to Electrical Characteristics) |
- |
0.00 |
|
- |
| 6.1.5 of IS 16205 (Part 1) : 2017(Mech)(Classification - Suspended Load Capacity) |
- |
0.00 |
|
- |
| 6.1.4 of IS 16205 (Part 1) : 2017(Mech)(Classification - Tensile Strength) |
- |
0.00 |
|
- |
| 6.1.3(Mech)(Classification - Resistance to Bending) |
- |
0.00 |
|
- |
| 6.1.2(Mech)(Classification - Resistance to Impact) |
- |
0.00 |
|
- |
| 6.1.1 (Mech)(Classification - Resistance to Compression) |
- |
0.00 |
|
- |
| 13.1.3(Mech)(Spread of fire) |
- |
0.00 |
|
- |
| 7.101(Mech)(Marking and Documentation) |
- |
0.00 |
|
- |
| 7.6 of IS 16205 (Part 1) : 2017(Mech)(Marking and Documentation) |
- |
0.00 |
|
- |
|
24 Apr, 2027 |
- - |
| 11103 |
BIS, Eastern Regional Laboratory (ERL)
| None
| IS 17043 (2018) |
Derby shoes - Specification |
- |
- View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4.5.5.1 (Electrical Properties Antistatic ) |
- |
|
|
|
| 5.0 (Innocuosness test IS 17011) |
- |
|
|
|
|
- |
- Chem - Excluding Allergenic & Carcinogenic Dyes, Organotin Compounds, Polychlorophenols
Mech- Tag retention (Cl 4.15.2), Pull out test of eyelet (Cl 4.14) |
| 11104 |
BIS, Eastern Regional Laboratory (ERL)
| None
| IS 17012 (2018) |
High ankle tactical boots with pu - Rubber sole - Specification |
For all design and size |
20000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4.5.5 (Antistatic test) |
- |
|
|
|
| 5.0 (Innocuousness Test IS 17011) |
- |
|
|
|
| 4.2 (Design ) |
- |
|
|
|
| 4.3.1 (Size) |
- |
|
|
|
| 4.3.2 (Weight) |
- |
|
|
|
| 4.4 (Height of upper ) |
- |
|
|
|
| 4.5.1 (Construction) |
- |
|
|
|
| 4.5.2 (Ergonomic Feature) |
- |
|
|
|
| 4.5.3.1 (Upper/outsole bond strength) |
- |
|
|
|
| 4.5.3.2 (Interayer bond strength) |
- |
|
|
|
| 4.6.1 (Thickness ) |
- |
|
|
|
| 4.6.2 (Tear Strength) |
- |
|
|
|
| 4.6.3 (Water Penetration and water absorption ) |
- |
|
|
|
| 4.7.1 (Material vamp & Quarter) |
- |
|
|
|
| 4.7.3 (Tear Strength) |
- |
|
|
|
| 4.7.4 (Abrasion resistance ) |
- |
|
|
|
| 4.7.5 (Water Vapour permeability & coefficient ) |
- |
|
|
|
| 4.8 (Thickness Toe puff & counter stiffener) |
- |
|
|
|
| 4.9.1 (Thickness) |
- |
|
|
|
| 4.9.2 (Abrasion resistance ) |
- |
|
|
|
| 4.9.3 (Water absorption & desorption percent) |
- |
|
|
|
| 4.10.2 (Abrasion resistance ) |
- |
|
|
|
| 4.10.3 (Water absorption & desorption percent) |
- |
|
|
|
| 4.11.1 (Thickness ) |
- |
|
|
|
| 4.11.2 (Tear Strength) |
- |
|
|
|
| 4.12.1 (Thickness ) |
- |
|
|
|
| 4.12.2 (Tear Strength) |
- |
|
|
|
| 4.13 (Breaking Strength of thread ) |
- |
|
|
|
| 4.14.2 (Thickness) |
- |
|
|
|
| 4.14.3 (Sole Density ) |
- |
|
|
|
| 4.14.4 (Tear Strength) |
- |
|
|
|
| 4.14.5 (Abrasion resistance ) |
- |
|
|
|
| 4.14.6 (Hardness (IRHD)) |
- |
|
|
|
| 4.14.7 (Ageing test) |
- |
|
|
|
| 4.14.8 (Flexing resistance ) |
- |
|
|
|
| 4.14.9 (Resistance to hot contact ) |
- |
|
|
|
| 4.15 (D-ring & Hooks ) |
- |
|
|
|
| 4.16.1 (Length of lace ) |
- |
|
|
|
| 4.16.2 (Breaking Strength of lace ) |
- |
|
|
|
| 4.5.4 (Slip Resitance) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl I) (Aromatic Amines: 4-aminobiphenyl) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl II) (Aromatic Amines: Benzidine) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl III) (Aromatic Amines: 4-chloro-o-toluidine) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl IV) (Aromatic Amines: 2-naphthylamine) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl V) (Aromatic Amines :o-aminoazotoluene) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl VI) (Aromatic Amines: 2-amino-4-nitrotoluenem) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl VII) (Aromatic Amines: p-chloroaniline) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl VIII) (Aromatic Amines: 2,4-diaminoanisole) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl IX) (Aromatic Amines : 4,4’- diaminodiphenylmethane:) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl X) (Aromatic Amines : 3,3’-dichlorobenzidine) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl XI) (Aromatic Amines : 3,3’-dimethoxybenzidine) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl XII) (Aromatic Amines : 3,3’-dimethylbenzidine) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl XIII) (Aromatic Amines: 3,3’-dimethyl-4,4’-diaminodiphenylmethane) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl XIV) (Aromatic Amines : p-cresidine) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl XV) (Aromatic Amines : 4,4’-methylene-bis(2-chloroaniline):) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl XVI) (Aromatic Amines :4,4’-oxydianiline) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl XVII) (Aromatic Amines:4,4’-thiodianiline) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl XVIII) (Aromatic Amines :o-toluidine:) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl XIX) (Aromatic Amines: 2,4-toluylendiamine) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl XX) (Aromatic Amines: 2,4,5-trimethylaniline) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl XXI) (Aromatic Amines :2,4-dimethylaniline) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl XXII) (Aromatic Amines: 2,6-dimethylaniline:) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl XXIII) (Aromatic Amines :2-methoxyaniline) |
- |
|
|
|
| Cl.4.1 (Table B-1 Sl XXIV) (Aromatic Amines :4-aminoazobenzene) |
- |
|
|
|
| Cl.4.1 (Table B-11) (PCP-TeCP-TriCP polychlorophenols) |
- |
|
|
|
| Cl.1.4.1 of IS 17011 (DMFU) |
- |
|
|
|
| Cl.1.4.1 of IS 17011 (Table B Sl I ) (Phthalate: DINP) |
- |
|
|
|
| Cl.1.4.1 of IS 17011 (Table B Sl II ) (Phthalate:: DNOP) |
- |
|
|
|
| Cl.1.4.1 of IS 17011 (Table B Sl III ) (Phthalate: DEHP) |
- |
|
|
|
| Cl.1.4.1 of IS 17011 (Table B Sl IV ) (Phthalate: DIDP) |
- |
|
|
|
| Cl.1.4.1 of IS 17011 (Table B Sl V) (Phthalate: BBP) |
- |
|
|
|
| Cl.1.4.1 of IS 17011 (Table B Sl VI ) (Phthalate:DBP) |
- |
|
|
|
| Cl.1.4.1 of IS 17011 (Table B Sl VII ) (Phthalate: DIBP) |
- |
|
|
|
| Cl.4.1 (Annex-A Sl I ) (Organotin: Dibutyltin) |
- |
|
|
|
| Cl.4.1 (Annex-A Sl II ) (Organotin: Dibutyltin Dichloride) |
- |
|
|
|
| Cl.4.1 (Annex-A Sl III ) (Organotin: Dioctyltin) |
- |
|
|
|
| Cl.4.1 (Annex-A Sl IV) (Organotin: Monobutyltin) |
- |
|
|
|
| Cl.4.1 (Annex-A Sl V ) (Organotin: Tributyltin) |
- |
|
|
|
| Cl.4.1 (Annex-A Sl VI) (Organotin: Triphenyltin) |
- |
|
|
|
| Cl.4.1 (Annex-A Sl VII ) (Organotin: Monoctyltin) |
- |
|
|
|
| Cl.4.1 (Annex-A Sl VIII) (Organotin: Bis (tributyltin) oxide) |
- |
|
|
|
| Cl.1.4.1 of IS 17011 (pH) |
- |
|
|
|
| Cl. No.8.6.1,Table 1 of IS 17011 (Chromium (VI)) |
- |
|
|
|
| Cl. No.8.6.1,Table 1 of IS 17011 (Formaldehyde (free or released by partial hydrolysis)) |
- |
|
|
|
| Cl. No.8.6.1,Table 1 of IS 17011 (Nickel, on skin contact 2-(thiocyanomethylthio) -benzothiazole (TCMTB)) |
- |
|
|
|
| Cl.8 - Table No 1 (Lead Content (as Pb) (applicable for PVC only) - IS 12240 (Part 5) : 1988) |
- |
|
|
|
| Cl.4.1 (Table B-3) (Allergenic and Carcinogenic Disperse Dyes) |
- |
|
|
|
|
- |
- Mech Quantity:- 5 Pairs + Raw material of upper, Lining, Insole, Toe puff, Counter stiffener, closing thread, outsole, midsole, collar
Chem- Material declaration required for Innocuousness test. |
| 11105 |
PIONEER TESTING LABORATORY PRIVATE LIMITED
| 8176806
| IS 446 (2017) |
Rubber hoses, textile - Reinforced, for compressed air - Specification (Fifth Revision) |
All Type |
14800 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 5.3(Cut Lengths) |
- |
300 |
|
- |
| 5.2(Thickness of Cover) |
- |
300 |
|
- |
| 5.2(Thickness of Lining) |
- |
300 |
|
- |
| 5.1, Table-1(Internal Diameter) |
- |
300 |
|
- |
| 7.2, Table 3(Low temperature Flexibility) |
- |
2000 |
|
- |
| 7.2, Table 3(Flexibility at 23°C) |
- |
1500 |
|
- |
| 7.2, Table 3(Ozone Resistance) |
- |
2500 |
|
- |
| 7.2, Table 3(Adhesion between Components- Cover and Reinforcement) |
- |
1000 |
|
- |
| 7.2, Table 3(Adhesion between Components- Reinforcement layers) |
- |
1000 |
|
- |
| 7.2, Table 3(Adhesion between Components- Lining and Reinforcement) |
- |
1000 |
|
- |
| 7.2, Table 3(Minimum Bursting Pressure for type 3) |
- |
2000 |
|
- |
| 7.2, Table 3(Minimum Bursting Pressure for type 2) |
- |
2000 |
|
- |
| 7.2, Table 3(Minimum Bursting Pressure for type 1) |
- |
2000 |
|
- |
| 7.2, Table 3(Change in Diameeter at Maximum working Pressure) |
- |
2000 |
|
- |
| 7.2, Table 3(Change in Length at Maximum working Pressure) |
- |
2000 |
|
- |
| 7.2, Table 3(Proof Pressure at 23°C for type 3) |
- |
2000 |
|
- |
| 7.2, Table 3(Proof Pressure at 23°C for type 2) |
- |
2000 |
|
- |
| 7.2, Table 3(Proof Pressure at 23°C for type 1) |
- |
2000 |
|
- |
| 7.1, Table 2(Resistance to Liquid , Increase in Volume (Class C only)-Cover) |
- |
750 |
|
- |
| 7.1, Table 2(Resistance to Liquid , Increase in Volume (Class C only)-Lining) |
- |
750 |
|
- |
| 7.1, Table 2(Resistance to Liquid , Increase in Volume (Class B only)-Lining) |
- |
750 |
|
- |
| 7.1, Table 2(Accelerated Ageing for all types: Change in Elongation of Cover of its original value) |
- |
2000 |
|
- |
| 7.1, Table 2(Accelerated Ageing for all types: Change in Elongation of Lining of its original value) |
- |
2000 |
|
- |
| 7.1, Table 2(Accelerated Ageing for all types: Change in Tensile Strength of Cover of its original value) |
- |
2000 |
|
- |
| 7.1, Table 2(Accelerated Ageing for all types: Change in Tensile Strength of Lining of its original value) |
- |
2000 |
|
- |
| 7.1, Table 2(Elongation at Break of Cover of all types) |
- |
1000 |
|
- |
| 7.1, Table 2(Elongation at Break of Lining of all types) |
- |
1000 |
|
- |
| 7.1, Table 2(Tensile Strength of Cover) |
- |
1000 |
|
- |
| 7.1, Table 2(Tensile Strength of Lining) |
- |
1000 |
|
- |
| 6, Dimensions(Thickness of Cover of Type 3) |
- |
300 |
|
- |
| 6, Dimensions(Thickness of Cover of Type 2) |
- |
300 |
|
- |
| 6, Dimensions(Thickness of Cover of Type 1) |
- |
300 |
|
- |
| 6, Dimensions(Thickness of Lining of Type 3) |
- |
300 |
|
- |
| 6, Dimensions(Thickness of Lining of Type 2) |
- |
300 |
|
- |
| 6, Dimensions(Thickness of Lining of Type 1) |
- |
300 |
|
- |
| 6, Dimensions(Tolerance on Length) |
- |
300 |
|
- |
| 6, Dimensions(Concentricity) |
- |
300 |
|
- |
| 6, Dimensions(Internal Diameter) |
- |
300 |
|
- |
| 5(Material and Construction) |
- |
1000 |
|
- |
| Cl 4(Classification) |
- |
500 |
|
- |
|
10 Mar, 2027 |
- - |
| 11106 |
PIONEER TESTING LABORATORY PRIVATE LIMITED
| 8176806
| IS 937 (1981) |
Specification for Washers For Water Fittings For Fire Fighting Purposes |
All Type |
9600 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 2.1(Hardness of Rubber before & after Ageing) |
- |
2000 |
|
- |
| 2.1(Elongation at Break before & after Ageing) |
- |
4500 |
|
- |
| 2.1() |
- |
4500 |
|
- |
| 2.1(Acid & Alkali Resistant Test) |
- |
2500 |
|
- |
| 4.1(Size & Dimension) |
- |
200 |
|
- |
| 5.1(Workmanship and Finish) |
- |
200 |
|
- |
| 6.1(Marking) |
- |
200 |
|
- |
| 2.2(Leather - IS 581) |
- |
0 |
|
- |
|
10 Mar, 2027 |
- - |
| 11107 |
PIONEER TESTING LABORATORY PRIVATE LIMITED
| 8176806
| IS 291 (1989) |
Naval brass rods and sections for machining purposes - Specification (Third Revision) |
All Type |
6000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl. No.5(CONDITION) |
- |
200 |
|
- |
| Cl. No.6(FREEDOM FROM DEFECTS) |
- |
500 |
|
- |
| Cl. No.7.1(Sizes) |
- |
500 |
|
- |
| Cl. No.7.2(Tolerances) |
- |
200 |
|
- |
| Cl. No.8, Table no. 1(CHEMICAL COMPOSITION) |
- |
2400 |
|
- |
| Cl. No.9, Table no. 2(Tensile properties) |
- |
1500 |
|
- |
| Cl. No.10(MERCUROUS NITRATE TEST) |
- |
700 |
|
- |
| Cl. No.14(MARKING) |
- |
200 |
|
- |
|
10 Mar, 2027 |
- - |
| 11108 |
BIS, Central Laboratory (CL)
| None
| IS 648 (2022) |
Cold rolled non-oriented electrical steel sheet and strip - Fully processed type - Specification Sixth Revision |
- |
- View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl. No. 8.1 (Thickness for CRNO Strips) |
- |
|
|
|
| Cl. No. 8.2 (Width Tolerance for CRNO strips) |
- |
|
|
|
| Cl. No. 8.3 (Length Tolerance for CRNO strips) |
- |
|
|
|
| Cl. No. 8.6 (Flatness (Wavefactor) for CRNO strips) |
- |
|
|
|
| Cl. No. 9.2 & Table-1 (Ductility (Bend test) for CRNO Strips) |
- |
|
|
|
| Cl. No. 8.1 (Thickness for CRNO Strips) |
- |
|
|
|
|
- |
- Grade/Designation or Element to be tested may be declared with specified requirement.
Exclusion : All Except Dimension |
| 11109 |
Central Institute of Petrochemicals Engineering & Technology (CIPET), CSTS - Dehradun
| 9178004
| IS 11652 (2017) |
Textiles – High density polyethylene (HDPE)/ polypropylene (PP) woven sacks for packaging of 50 kg cement – Specification (third revision) |
- |
27680.00 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4.2
(width of tape, 2.5 mm ± 0.1 mm) |
- |
500.00 |
|
- |
| 4.1(Raw Material
) |
- |
1050.00 |
|
Optional ( Applicable on Raw material) |
| 4.2
(Linear Density, 900 denier) |
- |
500.00 |
|
Optional ( Applicable on Raw material) |
| 4.3(Sacks) |
- |
500.00 |
|
- |
| 4.4(Seam
) |
- |
1850.00 |
|
Visual 300
Dimensions 250
Material identification 1050
Denier of stitching material 250 |
| 4.5(Lamination ) |
- |
1350.00 |
|
Visual 300
Material identification 1050 |
| 4.6(Capacity The sack shall have the nominal filling capacity of 50 kg) |
- |
500.00 |
|
- |
| 4.7(Valve for Filling of Sacks) |
- |
500.00 |
|
- |
| Fig. 1- Table 1- Sr. no. i
(Dimensions, mm (see Note )- Annex B
c) Width of gusset (e) 76 ± 10 mm
) |
- |
500.00 |
|
- |
| Fig. 1- Table 1- Sr. no. ii
(Ends per dm - Annex B 40 ± 2 ) |
- |
500.00 |
|
- |
| 5/5.1-Table 1-Sr. no. iv(Requirements, Mass of Sack- IS 1964
a) Non-gusseted type 70 + 6%) |
- |
500.00 |
|
- |
| 5/5.3-Table 1-Sr. no.v(Average breaking strength of fabric [Ravelled strip method, 325 mm × 70 mm] Min, N(kgf): -1969 (Part 1) a) Lengthwise , 900 (91.8) ) |
- |
2200.00 |
|
- |
| 5/5.3-Table 1-Sr. no.vi(Breaking strength of bottom seam (Ravelled strip method), Min, - IS 9030 N (kgf) 400 (40.8)) |
- |
2200.00 |
|
- |
| 5/5.3-Table 1-Sr. no.vii(Elongation at break of fabric (Ravelled strip method), percent : - IS 1969 (Part1 ) a) Lengthwise 15 to 25) |
- |
0.00 |
|
Breaking strength & Elongation have shingle Charge. |
| 5/5.4-Table 1-Sr. no.viii(Drop impact strength - Annex C No failure) |
- |
1100.00 |
|
- |
| 5/5.5-Table 1-Sr. no.viii(Ash content Max percent- Annex D a) For UV stabilized sacks 2.2
) |
- |
1200.00 |
|
- |
| 5/5.6 (UV Resistance, The UV stabilized woven fabric shall have at least 50 percent retention of the original breaking strength when tested after the same has been exposed
to b) Accelerated Weathering - Annex F ) |
- |
12380.00 |
|
Testing Charge- 2200.00
Conditioning Charge- 10180 |
| Fig. 1- Table 1-Sr. no. iii
(Picks per dm-Annex B 40 ± 2 ) |
- |
500.00 |
|
- |
| Fig. 1- Table 1- Sr. no. i
(Dimensions, mm (see Note )- Annex B
c) Width of gusset (e) 76 ± 10 mm
) |
- |
0.00 |
|
- |
| Fig. 1- Table 1- Sr. no. i
(Dimensions, mm (see Note ) -Annex B
d) Width of valve (v) 100, + 10/-5 mm
) |
- |
0.00 |
|
- |
| Fig. 1- Table 1-Sr. no. i
(Dimensions, mm (see Note )- Annex B
b) Width of sack (w) 480 ± 10 mm
) |
- |
0.00 |
|
- |
| Fig. 1, Table 1
(i) Dimensions, mm (see Note ) -Annex B
a) Length of sack, inside (l), 710 ± 10 mm
) |
- |
0.00 |
|
- |
| 4.5(and the remaining overhang shall not be more than 5 mm after trimming.) |
- |
0.00 |
|
- |
| 4.2
(Fabric) |
- |
0.00 |
|
- |
| 4.2
(The woven fabric shall be
of mesh, 10 × 10 per inch) |
- |
0.00 |
|
- |
| 4.2
(The woven fabric shall be
of weight, 79 g/m2 ) |
- |
0.00 |
|
- |
| 4.2
(The
denier of HDPE/ PP tape used in the manufacture of
woven fabric shall be subjected to the
tolerances: a) ± 10 percent on individual value, and
) |
- |
0.00 |
|
- |
| 4.2
(The
denier of HDPE/ PP tape used in the manufacture of
woven fabric shall be subjected to the
tolerances:
b) ± 5 percent on average.
) |
- |
0.00 |
|
- |
| Fig. 1- Table 1- Sr. no. i
(Dimensions, mm (see Note ) -Annex B
e) Depth of valve (f), Min, The depth of the valve (f) shall not be less than 2 times the width of the valve (v) in case of gusseted sacks and not less than 2.3 times the width of the valve (v) in case of non-gusseted sacks.
) |
- |
0.00 |
|
- |
| Fig. 1- Table 1- Sr. no. i
(Dimensions, mm (see Note ) -Annex B
e) Depth of valve (f), Min, The depth of the valve (f) shall not be less than 2.3 times the width of the valve (v) in case of non-gusseted sacks.
) |
- |
0.00 |
|
- |
| 4.4(Seam
) |
- |
0.00 |
|
- |
| 4.4(Seam The two rows of stitches shall be separated from each other by minimum 5 mm and ) |
- |
0.00 |
|
- |
| 4.4(Seam The outer stitch shall be minimum 8 mm from the outer edge of the sacks. ) |
- |
0.00 |
|
- |
| 4.4(Seam The stitching shall be done with double fold over seam to) |
- |
0.00 |
|
- |
| 4.4(to a depth of minimum 25 mm, so that so that) |
- |
0.00 |
|
- |
| 4.4(that the stitches pass through a minimum of six layers of the fabric.) |
- |
0.00 |
|
- |
| 4.4(The number of stitches/dm shall be 14 ± 2.) |
- |
0.00 |
|
- |
| 4.4(Seam) |
- |
0.00 |
|
- |
| 4.4(The material used for stitching shall be HDPE/PP tape having minimum 20 percent higher denier than the tapes used
in the fabric.) |
- |
0.00 |
|
- |
| 4.4(Seam) |
- |
0.00 |
|
- |
| 4.4(Seam) |
- |
0.00 |
|
- |
| 4.5(Lamination ) |
- |
0.00 |
|
- |
| 4.5(Lamination ) |
- |
0.00 |
|
- |
| 4.7(There shall be a double fold at the top seam and) |
- |
0.00 |
|
- |
| 4.7(and then stitching shall be done through six layers.) |
- |
0.00 |
|
- |
| 4.7(The depth of the valve (f) shall not be less than 2 times the width of the valve (v) in case of gusseted sacks and) |
- |
0.00 |
|
- |
| 4.7(and not less than 2.3 times the width of the valve (v) in case of non-gusseted sacks.
) |
- |
0.00 |
|
- |
| 5/5.1-Table 1-Sr. no. iv(Requirements, Mass of Sack- IS 1964
a) gusseted type 71 + 6%) |
- |
0.00 |
|
- |
| 5/5.1(The mass of bale of sacks (excluding packing materials) shall be within ± 3 percent of the mass calculated by multiplying the number of sacks with the mass of sack specified in Table 1.) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.v(Average breaking strength of fabric [Ravelled strip method, 325 mm × 70 mm] Min, N(kgf): - 1969 (Part 1) b) Widthwise , 900 (91.8) ) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.vi(Breaking strength of top seam (Ravelled strip method), Min, - IS 9030 N (kgf) 400 (40.8)) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.vii(Elongation at break of fabric (Ravelled strip method), percent : - IS 1969 (Part1 ) b) Widthwise 15 to 25) |
- |
0.00 |
|
- |
| 5/5.5-Table 1-Sr. no.viii(Ash content Max percent- Annex D b) For non-UV stabilized sacks 6
) |
- |
0.00 |
|
- |
| 5/5.6 (UV Resistance, ) |
- |
0.00 |
|
- |
| 5/5.6 (UV Resistance, The UV stabilized woven fabric shall have at least 50 percent retention of the original breaking strength when tested after the same has been exposed
to a) UV Radiation -Annex F ) |
- |
0.00 |
|
- |
| 4.2
(width of tape, 2.5 mm ± 0.1 mm) |
- |
0.00 |
|
- |
| Fig. 1- Table 1- Sr. no. ii
(Ends per dm - Annex B 40 ± 2 ) |
- |
0.00 |
|
- |
| Fig. 1- Table 1-Sr. no. iii
(Picks per dm-Annex B 40 ± 2 ) |
- |
0.00 |
|
- |
| Fig. 1- Table 1- Sr. no. i
(Dimensions, mm (see Note ) -Annex B
d) Width of valve (v) 100, + 10/-5 mm
) |
- |
0.00 |
|
- |
| Fig. 1- Table 1-Sr. no. i
(Dimensions, mm (see Note )- Annex B
b) Width of sack (w) 480 ± 10 mm
) |
- |
0.00 |
|
- |
| Fig. 1, Table 1
(i) Dimensions, mm (see Note ) -Annex B
a) Length of sack, inside (l), 710 ± 10 mm
) |
- |
0.00 |
|
- |
| 4.5(and the remaining overhang shall not be more than 5 mm after trimming.) |
- |
0.00 |
|
- |
| 4.1(Raw Material
) |
- |
0.00 |
|
- |
| 4.2
(Fabric) |
- |
0.00 |
|
- |
| 4.2
(Linear Density, 900 denier) |
- |
0.00 |
|
- |
| 4.2
(The woven fabric shall be
of mesh, 10 × 10 per inch) |
- |
0.00 |
|
- |
| 4.2
(The woven fabric shall be
of weight, 79 g/m2 ) |
- |
0.00 |
|
- |
| 4.2
(The
denier of HDPE/ PP tape used in the manufacture of
woven fabric shall be subjected to the
tolerances: a) ± 10 percent on individual value, and
) |
- |
0.00 |
|
- |
| 4.2
(The
denier of HDPE/ PP tape used in the manufacture of
woven fabric shall be subjected to the
tolerances:
b) ± 5 percent on average.
) |
- |
0.00 |
|
- |
| Fig. 1- Table 1- Sr. no. i
(Dimensions, mm (see Note ) -Annex B
e) Depth of valve (f), Min, The depth of the valve (f) shall not be less than 2 times the width of the valve (v) in case of gusseted sacks and not less than 2.3 times the width of the valve (v) in case of non-gusseted sacks.
) |
- |
0.00 |
|
- |
| Fig. 1- Table 1- Sr. no. i
(Dimensions, mm (see Note ) -Annex B
e) Depth of valve (f), Min, The depth of the valve (f) shall not be less than 2.3 times the width of the valve (v) in case of non-gusseted sacks.
) |
- |
0.00 |
|
- |
| 4.3(Sacks) |
- |
0.00 |
|
- |
| 4.4(Seam
) |
- |
0.00 |
|
- |
| 4.4(Seam
) |
- |
0.00 |
|
- |
| 4.4(Seam The two rows of stitches shall be separated from each other by minimum 5 mm and ) |
- |
0.00 |
|
- |
| 4.4(Seam The outer stitch shall be minimum 8 mm from the outer edge of the sacks. ) |
- |
0.00 |
|
- |
| 4.4(Seam The stitching shall be done with double fold over seam to) |
- |
0.00 |
|
- |
| 4.4(to a depth of minimum 25 mm, so that so that) |
- |
0.00 |
|
- |
| 4.4(that the stitches pass through a minimum of six layers of the fabric.) |
- |
0.00 |
|
- |
| 4.4(Seam) |
- |
0.00 |
|
- |
| 4.4(The material used for stitching shall be HDPE/PP tape having minimum 20 percent higher denier than the tapes used
in the fabric.) |
- |
0.00 |
|
- |
| 4.4(Seam) |
- |
0.00 |
|
- |
| 4.4(The number of stitches/dm shall be 14 ± 2.) |
- |
0.00 |
|
- |
| 4.4(Seam) |
- |
0.00 |
|
- |
| 4.4(Seam) |
- |
0.00 |
|
- |
| 4.4(Seam) |
- |
0.00 |
|
- |
| 4.5(Lamination ) |
- |
0.00 |
|
- |
| 4.5(Lamination ) |
- |
0.00 |
|
- |
| 4.5(Lamination ) |
- |
0.00 |
|
- |
| 4.6(Capacity The sack shall have the nominal filling capacity of 50 kg) |
- |
0.00 |
|
- |
| 4.7(Valve for Filling of Sacks) |
- |
0.00 |
|
- |
| 4.7(There shall be a double fold at the top seam and) |
- |
0.00 |
|
- |
| 4.7(and then stitching shall be done through six layers.) |
- |
0.00 |
|
- |
| 4.7(The depth of the valve (f) shall not be less than 2 times the width of the valve (v) in case of gusseted sacks and) |
- |
0.00 |
|
- |
| 4.7(and not less than 2.3 times the width of the valve (v) in case of non-gusseted sacks.
) |
- |
0.00 |
|
- |
| 5/5.1-Table 1-Sr. no. iv(Requirements, Mass of Sack- IS 1964
a) Non-gusseted type 70 + 6%) |
- |
0.00 |
|
- |
| 5/5.1-Table 1-Sr. no. iv(Requirements, Mass of Sack- IS 1964
a) gusseted type 71 + 6%) |
- |
0.00 |
|
- |
| 5/5.1(The mass of bale of sacks (excluding packing materials) shall be within ± 3 percent of the mass calculated by multiplying the number of sacks with the mass of sack specified in Table 1.) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.v(Average breaking strength of fabric [Ravelled strip method, 325 mm × 70 mm] Min, N(kgf): -1969 (Part 1) a) Lengthwise , 900 (91.8) ) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.v(Average breaking strength of fabric [Ravelled strip method, 325 mm × 70 mm] Min, N(kgf): - 1969 (Part 1) b) Widthwise , 900 (91.8) ) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.vi(Breaking strength of top seam (Ravelled strip method), Min, - IS 9030 N (kgf) 400 (40.8)) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.vi(Breaking strength of bottom seam (Ravelled strip method), Min, - IS 9030 N (kgf) 400 (40.8)) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.vii(Elongation at break of fabric (Ravelled strip method), percent : - IS 1969 (Part1 ) a) Lengthwise 15 to 25) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.vii(Elongation at break of fabric (Ravelled strip method), percent : - IS 1969 (Part1 ) b) Widthwise 15 to 25) |
- |
0.00 |
|
- |
| 5/5.4-Table 1-Sr. no.viii(Drop impact strength - Annex C No failure) |
- |
0.00 |
|
- |
| 5/5.5-Table 1-Sr. no.viii(Ash content Max percent- Annex D a) For UV stabilized sacks 2.2
) |
- |
0.00 |
|
- |
| 5/5.5-Table 1-Sr. no.viii(Ash content Max percent- Annex D b) For non-UV stabilized sacks 6
) |
- |
0.00 |
|
- |
| 5/5.6 (UV Resistance, ) |
- |
0.00 |
|
- |
| 5/5.6 (UV Resistance, The UV stabilized woven fabric shall have at least 50 percent retention of the original breaking strength when tested after the same has been exposed
to a) UV Radiation -Annex F ) |
- |
0.00 |
|
- |
| 5/5.6 (UV Resistance, The UV stabilized woven fabric shall have at least 50 percent retention of the original breaking strength when tested after the same has been exposed
to b) Accelerated Weathering - Annex F ) |
- |
0.00 |
|
- |
| 4.2
(width of tape, 2.5 mm ± 0.1 mm) |
- |
0.00 |
|
- |
| Fig. 1- Table 1- Sr. no. ii
(Ends per dm - Annex B 40 ± 2 ) |
- |
0.00 |
|
- |
| Fig. 1- Table 1-Sr. no. iii
(Picks per dm-Annex B 40 ± 2 ) |
- |
0.00 |
|
- |
| Fig. 1- Table 1- Sr. no. i
(Dimensions, mm (see Note )- Annex B
c) Width of gusset (e) 76 ± 10 mm
) |
- |
0.00 |
|
- |
| Fig. 1- Table 1- Sr. no. i
(Dimensions, mm (see Note ) -Annex B
d) Width of valve (v) 100, + 10/-5 mm
) |
- |
0.00 |
|
- |
| Fig. 1- Table 1-Sr. no. i
(Dimensions, mm (see Note )- Annex B
b) Width of sack (w) 480 ± 10 mm
) |
- |
0.00 |
|
- |
| Fig. 1, Table 1
(i) Dimensions, mm (see Note ) -Annex B
a) Length of sack, inside (l), 710 ± 10 mm
) |
- |
0.00 |
|
- |
| 4.5(and the remaining overhang shall not be more than 5 mm after trimming.) |
- |
0.00 |
|
- |
| 4.1(Raw Material
) |
- |
0.00 |
|
- |
| 4.2
(Fabric) |
- |
0.00 |
|
- |
| 4.2
(Linear Density, 900 denier) |
- |
0.00 |
|
- |
| 4.2
(The woven fabric shall be
of mesh, 10 × 10 per inch) |
- |
0.00 |
|
- |
| 4.2
(The woven fabric shall be
of weight, 79 g/m2 ) |
- |
0.00 |
|
- |
| 4.2
(The
denier of HDPE/ PP tape used in the manufacture of
woven fabric shall be subjected to the
tolerances: a) ± 10 percent on individual value, and
) |
- |
0.00 |
|
- |
| 4.2
(The
denier of HDPE/ PP tape used in the manufacture of
woven fabric shall be subjected to the
tolerances:
b) ± 5 percent on average.
) |
- |
0.00 |
|
- |
| Fig. 1- Table 1- Sr. no. i
(Dimensions, mm (see Note ) -Annex B
e) Depth of valve (f), Min, The depth of the valve (f) shall not be less than 2 times the width of the valve (v) in case of gusseted sacks and not less than 2.3 times the width of the valve (v) in case of non-gusseted sacks.
) |
- |
0.00 |
|
- |
| Fig. 1- Table 1- Sr. no. i
(Dimensions, mm (see Note ) -Annex B
e) Depth of valve (f), Min, The depth of the valve (f) shall not be less than 2.3 times the width of the valve (v) in case of non-gusseted sacks.
) |
- |
0.00 |
|
- |
| 4.3(Sacks) |
- |
0.00 |
|
- |
| 4.4(Seam
) |
- |
0.00 |
|
- |
| 4.4(Seam
) |
- |
0.00 |
|
- |
| 4.4(Seam The two rows of stitches shall be separated from each other by minimum 5 mm and ) |
- |
0.00 |
|
- |
| 4.4(Seam The outer stitch shall be minimum 8 mm from the outer edge of the sacks. ) |
- |
0.00 |
|
- |
| 4.4(Seam The stitching shall be done with double fold over seam to) |
- |
0.00 |
|
- |
| 4.4(to a depth of minimum 25 mm, so that so that) |
- |
0.00 |
|
- |
| 4.4(that the stitches pass through a minimum of six layers of the fabric.) |
- |
0.00 |
|
- |
| 4.4(The number of stitches/dm shall be 14 ± 2.) |
- |
0.00 |
|
- |
| 4.4(Seam) |
- |
0.00 |
|
- |
| 4.4(The material used for stitching shall be HDPE/PP tape having minimum 20 percent higher denier than the tapes used
in the fabric.) |
- |
0.00 |
|
- |
| 4.4(Seam) |
- |
0.00 |
|
- |
| 4.4(Seam) |
- |
0.00 |
|
- |
| 4.4(Seam) |
- |
0.00 |
|
- |
| 4.5(Lamination ) |
- |
0.00 |
|
- |
| 4.5(Lamination ) |
- |
0.00 |
|
- |
| 4.5(Lamination ) |
- |
0.00 |
|
- |
| 4.6(Capacity The sack shall have the nominal filling capacity of 50 kg) |
- |
0.00 |
|
- |
| 4.7(Valve for Filling of Sacks) |
- |
0.00 |
|
- |
| 4.7(There shall be a double fold at the top seam and) |
- |
0.00 |
|
- |
| 4.7(and then stitching shall be done through six layers.) |
- |
0.00 |
|
- |
| 4.7(The depth of the valve (f) shall not be less than 2 times the width of the valve (v) in case of gusseted sacks and) |
- |
0.00 |
|
- |
| 4.7(and not less than 2.3 times the width of the valve (v) in case of non-gusseted sacks.
) |
- |
0.00 |
|
- |
| 5/5.1-Table 1-Sr. no. iv(Requirements, Mass of Sack- IS 1964
a) Non-gusseted type 70 + 6%) |
- |
0.00 |
|
- |
| 5/5.1-Table 1-Sr. no. iv(Requirements, Mass of Sack- IS 1964
a) gusseted type 71 + 6%) |
- |
0.00 |
|
- |
| 5/5.1(The mass of bale of sacks (excluding packing materials) shall be within ± 3 percent of the mass calculated by multiplying the number of sacks with the mass of sack specified in Table 1.) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.v(Average breaking strength of fabric [Ravelled strip method, 325 mm × 70 mm] Min, N(kgf): -1969 (Part 1) a) Lengthwise , 900 (91.8) ) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.v(Average breaking strength of fabric [Ravelled strip method, 325 mm × 70 mm] Min, N(kgf): - 1969 (Part 1) b) Widthwise , 900 (91.8) ) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.vi(Breaking strength of top seam (Ravelled strip method), Min, - IS 9030 N (kgf) 400 (40.8)) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.vi(Breaking strength of bottom seam (Ravelled strip method), Min, - IS 9030 N (kgf) 400 (40.8)) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.vii(Elongation at break of fabric (Ravelled strip method), percent : - IS 1969 (Part1 ) a) Lengthwise 15 to 25) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.vii(Elongation at break of fabric (Ravelled strip method), percent : - IS 1969 (Part1 ) b) Widthwise 15 to 25) |
- |
0.00 |
|
- |
| 5/5.4-Table 1-Sr. no.viii(Drop impact strength - Annex C No failure) |
- |
0.00 |
|
- |
| 5/5.5-Table 1-Sr. no.viii(Ash content Max percent- Annex D a) For UV stabilized sacks 2.2
) |
- |
0.00 |
|
- |
| 5/5.5-Table 1-Sr. no.viii(Ash content Max percent- Annex D b) For non-UV stabilized sacks 6
) |
- |
0.00 |
|
- |
| 5/5.6 (UV Resistance, ) |
- |
0.00 |
|
- |
| 5/5.6 (UV Resistance, The UV stabilized woven fabric shall have at least 50 percent retention of the original breaking strength when tested after the same has been exposed
to a) UV Radiation -Annex F ) |
- |
0.00 |
|
- |
| 5/5.6 (UV Resistance, The UV stabilized woven fabric shall have at least 50 percent retention of the original breaking strength when tested after the same has been exposed
to b) Accelerated Weathering - Annex F ) |
- |
0.00 |
|
- |
| 4.2
(width of tape, 2.5 mm ± 0.1 mm) |
- |
0.00 |
|
- |
| Cl-5 Fig. 1- Table 1- Sr. no. ii(Ends per dm - Annex B 40 ± 2) |
- |
0.00 |
|
- |
| Cl-5 Fig. 1- Table 1-Sr. no. iii(Picks per dm-Annex B 40 ± 2) |
- |
0.00 |
|
- |
| Cl-5, Fig. 1- Table 1- Sr. no. i(Dimensions, mm (see Note )- Annex B
c) Width of gusset (e) 76 ± 10 mm) |
- |
0.00 |
|
- |
| Cl-5, Fig. 1- Table 1- Sr. no. i(Dimensions, mm (see Note ) -Annex B
d) Width of valve (v) 100, + 10/-5 mm) |
- |
0.00 |
|
- |
| Cl-5, Fig. 1- Table 1-Sr. no. i(Dimensions, mm (see Note )- Annex B
b) Width of sack (w) 480 ± 10 mm) |
- |
0.00 |
|
- |
| Cl-5, Fig. 1, Table 1(i) Dimensions, mm (see Note ) -Annex B
a) Length of sack, inside (l), 710 ± 10 mm) |
- |
0.00 |
|
- |
| 4.5(and the remaining overhang shall not be more than 5 mm after trimming.) |
- |
0.00 |
|
- |
| 4.1(Raw Material
) |
- |
0.00 |
|
- |
| 4.2
(Fabric) |
- |
0.00 |
|
- |
| 4.2
(Linear Density, 900 denier) |
- |
0.00 |
|
- |
| 4.2
(The woven fabric shall be
of mesh, 10 × 10 per inch) |
- |
0.00 |
|
- |
| 4.2
(The woven fabric shall be
of weight, 79 g/m2 ) |
- |
0.00 |
|
- |
| 4.2
(The
denier of HDPE/ PP tape used in the manufacture of
woven fabric shall be subjected to the
tolerances: a) ± 10 percent on individual value, and
) |
- |
0.00 |
|
- |
| 4.2
(The
denier of HDPE/ PP tape used in the manufacture of
woven fabric shall be subjected to the
tolerances:
b) ± 5 percent on average.
) |
- |
0.00 |
|
- |
| Fig. 1- Table 1- Sr. no. i
(Dimensions, mm (see Note ) -Annex B
e) Depth of valve (f), Min, The depth of the valve (f) shall not be less than 2.3 times the width of the valve (v) in case of non-gusseted sacks.
) |
- |
0.00 |
|
- |
| 4.3(Sacks) |
- |
0.00 |
|
- |
| 4.4(Seam
) |
- |
0.00 |
|
- |
| 4.4(Seam
) |
- |
0.00 |
|
- |
| 4.4(Seam The two rows of stitches shall be separated from each other by minimum 5 mm and ) |
- |
0.00 |
|
- |
| 4.4(Seam The outer stitch shall be minimum 8 mm from the outer edge of the sacks. ) |
- |
0.00 |
|
- |
| 4.4(Seam The stitching shall be done with double fold over seam to) |
- |
0.00 |
|
- |
| 4.4(that the stitches pass through a minimum of six layers of the fabric.) |
- |
0.00 |
|
- |
| 4.4(The number of stitches/dm shall be 14 ± 2.) |
- |
0.00 |
|
- |
| 4.4(Seam) |
- |
0.00 |
|
- |
| 4.4(The material used for stitching shall be HDPE/PP tape having minimum 20 percent higher denier than the tapes used
in the fabric.) |
- |
0.00 |
|
- |
| 4.4(Seam) |
- |
0.00 |
|
- |
| 4.4(Seam) |
- |
0.00 |
|
- |
| 4.4(Seam) |
- |
0.00 |
|
- |
| 4.5(Lamination ) |
- |
0.00 |
|
- |
| 4.5(Lamination ) |
- |
0.00 |
|
- |
| 4.5(Lamination ) |
- |
0.00 |
|
- |
| 4.6(Capacity The sack shall have the nominal filling capacity of 50 kg) |
- |
0.00 |
|
- |
| 4.7(Valve for Filling of Sacks) |
- |
0.00 |
|
- |
| 4.7(There shall be a double fold at the top seam and) |
- |
0.00 |
|
- |
| 4.7(and then stitching shall be done through six layers.) |
- |
0.00 |
|
- |
| 4.7(The depth of the valve (f) shall not be less than 2 times the width of the valve (v) in case of gusseted sacks and) |
- |
0.00 |
|
- |
| 4.7(and not less than 2.3 times the width of the valve (v) in case of non-gusseted sacks.
) |
- |
0.00 |
|
- |
| 5/5.1-Table 1-Sr. no. iv(Requirements, Mass of Sack- IS 1964
a) Non-gusseted type 70 + 6%) |
- |
0.00 |
|
- |
| 5/5.1-Table 1-Sr. no. iv(Requirements, Mass of Sack- IS 1964
a) gusseted type 71 + 6%) |
- |
0.00 |
|
- |
| 5/5.1(The mass of bale of sacks (excluding packing materials) shall be within ± 3 percent of the mass calculated by multiplying the number of sacks with the mass of sack specified in Table 1.) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.v(Average breaking strength of fabric [Ravelled strip method, 325 mm × 70 mm] Min, N(kgf): -1969 (Part 1) a) Lengthwise , 900 (91.8) ) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.v(Average breaking strength of fabric [Ravelled strip method, 325 mm × 70 mm] Min, N(kgf): - 1969 (Part 1) b) Widthwise , 900 (91.8) ) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.vi(Breaking strength of top seam (Ravelled strip method), Min, - IS 9030 N (kgf) 400 (40.8)) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.vi(Breaking strength of bottom seam (Ravelled strip method), Min, - IS 9030 N (kgf) 400 (40.8)) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.vii(Elongation at break of fabric (Ravelled strip method), percent : - IS 1969 (Part1 ) a) Lengthwise 15 to 25) |
- |
0.00 |
|
- |
| 5/5.3-Table 1-Sr. no.vii(Elongation at break of fabric (Ravelled strip method), percent : - IS 1969 (Part1 ) b) Widthwise 15 to 25) |
- |
0.00 |
|
- |
| 5/5.4-Table 1-Sr. no.viii(Drop impact strength - Annex C No failure) |
- |
0.00 |
|
- |
| 5/5.5-Table 1-Sr. no.viii(Ash content Max percent- Annex D a) For UV stabilized sacks 2.2
) |
- |
0.00 |
|
- |
| 5/5.5-Table 1-Sr. no.viii(Ash content Max percent- Annex D b) For non-UV stabilized sacks 6
) |
- |
0.00 |
|
- |
| 5/5.6 (UV Resistance, ) |
- |
0.00 |
|
- |
| 5/5.6 (UV Resistance, The UV stabilized woven fabric shall have at least 50 percent retention of the original breaking strength when tested after the same has been exposed
to a) UV Radiation -Annex F ) |
- |
0.00 |
|
- |
| 5/5.6 (UV Resistance, The UV stabilized woven fabric shall have at least 50 percent retention of the original breaking strength when tested after the same has been exposed
to b) Accelerated Weathering - Annex F ) |
- |
0.00 |
|
- |
| Fig. 1- Table 1- Sr. no. i
(Dimensions, mm (see Note ) -Annex B
e) Depth of valve (f), Min, The depth of the valve (f) shall not be less than 2 times the width of the valve (v) in case of gusseted sacks and not less than 2.3 times the width of the valve (v) in case of non-gusseted sacks.
) |
- |
0.00 |
|
- |
| 4.4(to a depth of minimum 25 mm, so that so that) |
- |
0.00 |
|
- |
|
24 Apr, 2027 |
- - |
| 11110 |
GIGA LABS, BENGALURU
| 6177526
| IS/IEC 60947 : Part 2 (2016) |
Low - Voltage switchgear and controlgear: Part 2 circuit - Breakers (First Revision) |
Low-voltage switchgear and control gear;Circuit-breaker |
625000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 8.3.4.4(Verification of dielectric withstand) |
- |
15000 |
|
- |
| 8.3.5.4(Verification of dielectric withstand) |
- |
15000 |
|
- |
| 8.3.7.4(Verification of dielectric withstand) |
- |
15000 |
|
- |
| 8.3.7.8(Verification of dielectric withstand) |
- |
15000 |
|
- |
| 8.3.8.6(verification of dielectric withstand (sequence VI)) |
- |
15000 |
|
- |
| 8.3.3.4(Mechanical operation and operational performance capability) |
- |
500000 |
|
- |
| 8.3.6.4(verification of temperature-rise (sequence IV)) |
- |
25000 |
|
- |
| 8.3.8.7(Verification of temperature-rise) |
- |
25000 |
|
- |
|
08 Apr, 2027 |
- Exclusion: Cl.8.3.9 (Critical d.c. load current test), Cl.8.3.7.2 (Short-circuit at the selectivity limit current), Cl.8.3.7.6 ((stage 2) short circuit at 1.1 time the take-over current (sequence V)), Cl.8.3.7.7 (Short-circuit at ultimate short-circuit breaking capacity), Cl.8.3.6.5 (Short-circuit breaking capacity at maximum short-time withstand current), Cl.8.3.6.3 (Rated short-time withstand current), Cl.8.3.8.3 (Rated short-time withstand current) |
| 11111 |
Central Institute of Petrochemicals Engineering & Technology (CIPET), CSTS - Dehradun
| 9178004
| IS 15450 (2022) |
Polyethylene-aluminium-polyethylene composite pressure pipes for hot and cold water supplies Specifications first revision of IS 15450 |
- |
48550.00 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 5(MATERIALS) |
- |
500.00 |
|
Optional (Applicable on Raw material) |
| 8(COLOUR) |
- |
500.00 |
|
- |
| 9(DIMENSIONS OF PIPE) |
- |
1500.00 |
|
All dimension have single Charge- 1500.00 |
| 10(VISUAL APPEARANCE) |
- |
500.00 |
|
- |
| 11.1(Density (Method of test as per Table 3)) |
- |
700.00 |
|
- |
| 11.2(Melt Flow Rate (Method of test as per Table 3)) |
- |
1100.00 |
|
- |
| 11.3(Overall Migration) |
- |
2200.00 |
|
Testing charge- 1700.00
Specimen Charge- 500.00 |
| 11.4(Thermal Stability to Oxidation (Method of test as per Table 3)) |
- |
2200.00 |
|
- |
| 11.5(Carbon Black Content and Dispersion (Method of test as per Table 3)) |
- |
1625.00 |
|
CBC- 925.00
CBD- 700.00 |
| 11.6(Pigment Dispersion (For Coloured Pipes) (Method of test as per Table 3)) |
- |
700.00 |
|
- |
| 11.7(Resistance to Weathering) |
- |
14800.00 |
|
Elongation at Break 1100
Thermal stability Oxidation Induction Time 2200
Hydrostatic pressure test 80oC for 1000 h₹ 11000 Specimen Charge 250 |
| 11.8(Adhesion Test) |
- |
1600.00 |
|
Test Charge- 1100.00
Specimen Charge- 500.00 |
| 11.9(Apparent Tensile Strength of Pipe) |
- |
1800.00 |
|
Test Charge- 1300.00
Specimen Charge- 500.00 |
| 11.10(Minimum Burst Pressure) |
- |
1000.00 |
|
- |
| 11.11(Hydraulic Characteristics) |
- |
8500.00 |
|
(i) Acceptance Test
27oC for 1 hr. - 1000 500
60oC for 10 hr. - 1700
(ii) Type Test 95oC for 170 h₹ - 4800 500 |
| 6(PRESSURE RATING) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 7(NOMINAL DIAMETERS) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| Table 3(Anti-oxidant (as per IS 2530)) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 14(MARKING) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 5.1(MATERIALS) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 5.2.1(MATERIALS) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 5.2.1.1(The other constituents) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 5.3.1(UV Stabilizer) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 5.3.2(UV Stabilizer) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 5.4(Aluminium) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 5.5(REWORK Material) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 7(NOMINAL DIAMETERS) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 8(COLOUR) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 9.1(DIMENSIONS OF PIPE) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 9.2.1(Method of Measurements) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 9.3(Length of Straight Pipe) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 9.4(Coiling) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 10(VISUAL APPEARANCE) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 11.1(Density) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 11.3(Melt Flow Rate) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 11.3(Overall Migration) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 6(PRESSURE RATING) |
- |
0.00 |
|
- |
| 11.4(Thermal Stability to Oxidation) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 11.5(Carbon Black Content and Dispersion) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 11.6(Pigment Dispersion (For Coloured Pipes)) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 11.7(Resistance to Weathering) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 11.8(Adhesion Test) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 11.9(Apparent Tensile Strength of Pipe) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 11.1(Minimum Burst Pressure) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 11.11.1(Short Term Hydrostatic Tests) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 11.11.12(Long Term Hydrostatic Test) |
- |
0.00 |
|
ALREADY CHARGE TAKEN FOR ABOVE PARAMETER. |
| 12.1(Type Test) |
- |
0.00 |
|
- |
|
24 Apr, 2027 |
- - |
| 11112 |
The Synthetic and Art Silk Mills' Research Association (SASMIRA), MUMBAI
| 7175004
| IS 17070 (2019) |
Jute agrotextiles for growth of plant and suppression of weeds – Specification |
- |
5100 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 5 -Table 1 -(i)(Mass at 20 percent moisture regain) |
- |
400 |
|
- |
| 5 -Table 1 -(ii)(Thickness) |
- |
200 |
|
- |
| 5 -Table 1 -(iii)(Width) |
- |
200 |
|
- |
| 5 -Table 1 -(iv)(Wide width tensile strength) |
- |
1500 |
|
- |
| 5 -Table 1 -(v)(Tear strength) |
- |
500 |
|
- |
| 5 -Table 1 -(vi)(Bursting strength) |
- |
400 |
|
- |
| 5 -Table 1 -(vii)(Index Puncture resistance) |
- |
700 |
|
- |
| 5-Table 1 -(ix)(Water permittivity) |
- |
700 |
|
- |
| 5 -Table 1 -(viii)(Air permeability) |
- |
500 |
|
- |
| 8(Marking) |
- |
0 |
|
- |
|
14 Dec, 2026 |
- - |
| 11113 |
The Synthetic and Art Silk Mills' Research Association (SASMIRA), MUMBAI
| 7175004
| IS 16718 (2021) |
Textiles - Polypropylene Spun Bonded Non-Woven Crop Covers and Fruit Skirting Bags for Agricultural and Horticultural Applications - Specification (first revision) |
- |
18700 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 5.1(Raw Material) |
- |
500 |
|
- |
| 5.2.2(Width of fabric) |
- |
200 |
|
- |
| 5.4.2 -Table 1-(i)(Mango, Orange) |
- |
400 |
|
- |
| 5.4.2 - Table 2 - (i)(Thickness) |
- |
200 |
|
- |
| 5.4.2 - Table 2 - (ii)(Fabric mass) |
- |
200 |
|
- |
| 5.4.2 - Table 2 - (iii)(Breaking strength) |
- |
500 |
|
- |
| 5.4.2 - Table 2 - (iv)(Elongation at break) |
- |
0 |
|
- |
| 5.4.2 - Table 2 - (v)(Trapezoid tear strength) |
- |
500 |
|
- |
| 5.4.2 - Table 2 - (vi)(Air permeability) |
- |
500 |
|
- |
| 5.4.2 - Table 2 - (viii)(UV stability test) |
- |
10500 |
|
- |
| 5.4.2 - Table 2 - (ix)(Ash content) |
- |
800 |
|
- |
| 5.4.2 - Table 2 - (x)(Index puncture resistance) |
- |
700 |
|
- |
| 5.4.2 - Table 2 - (xi)(Water absorption capacity) |
- |
700 |
|
- |
| 5.4.2 - Table 2 - (xii)(Colour) |
- |
400 |
|
- |
| 5.4.2 -Table 1-(ii)(Banana bunch) |
- |
400 |
|
- |
| 5.4.2 -Table 1-(iii)(Grape bunch) |
- |
400 |
|
- |
| 5.4.2 -Table 1-(iv)(Pomegranate) |
- |
400 |
|
- |
| 5.4.2 -Table 1-(v)(Papaya) |
- |
400 |
|
- |
| 8.1.2(Marking) |
- |
0 |
|
- |
| 5.4.2 - Table 2 - (vii)(water vapour permeability) |
- |
1000 |
|
- |
|
14 Dec, 2026 |
- - |
| 11114 |
BIS, Central Laboratory (CL)
| None
| IS 5509 (2021) |
Fire Retardant Plywood - Specification ( Third Revision ) |
- |
- View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 8.1 (Dimensions) |
- |
|
|
|
| Cl-8.3, Table-1 (ii) (Tolerances-Width) |
- |
|
|
|
| 8.2 (Thickness) |
- |
|
|
|
| Cl-8.3, Table-1 (v) (Squareness,) |
- |
|
|
|
| Cl-8.3, Table-1 (iv) (Edge straightness) |
- |
|
|
|
| 9 (WORKMANSHIP AND FINISH) |
- |
|
|
|
| 12.2 (Other Tests) |
- |
|
|
|
| 12.1 Table - 2 (i) (Moisture content, percent, Max) |
- |
|
|
|
| 12.2 (Other Tests) |
- |
|
|
|
|
- |
- Exclusion : No testing facility for requirements (ii), (iii), (iv) as per table 2 of clause 12.1
Sample Test Parameter not available: Cl 11.4 Static Bending Strength Above 15 mm thickness, Cl 12 Flammability, Flame penetration, Rate of burning
Existing Sample Size:1 Full Size Sheet For All Tests
Sample Size without dimensional measurements:Length-1500 mm, width-1200 |
| 11115 |
CIPET: CENTRE FOR SKILLING AND TECHNICAL SUPPORT (CSTS) - (CIPET), AURANGABAD
| 7123534
| IS 14885 (2022) |
Polyethylene Pipes for the Supply of Gaseous Fuels � Specification (First Revision) |
- |
559475 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4.2(Grade of material) |
- |
500 |
|
- |
| 4.3(Nominal Diameter) |
- |
500 |
|
- |
| 4.4(Colour) |
- |
500 |
|
- |
| 5.1(Polyethylene
compound) |
- |
6300 |
|
- |
| 5.3(Anti-oxidant) |
- |
1500 |
|
- |
| 5.4(U-V stabilizer) |
- |
2000 |
|
- |
| 5.7(PE Compound Quality Evaluation) |
- |
400000 |
|
10000 HOURS HYDROSTATIC PRESSURE TEST |
| 5.5(Effect of Gas
condensate on the
Hydrostatic strength) |
- |
5000 |
|
- |
| 5.6(Resistance to Weathering) |
- |
50500 |
|
- |
| 6.1(Out of Roundness (Ovality)) |
- |
500 |
|
- |
| 6.2(Wall thickness (Take 8 reading and Average will be repoted)) |
- |
500 |
|
- |
| 7(Finish) |
- |
500 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain at 80 deg. C for
165h) |
- |
4000 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain
pipes at 20 deg. C for
100h) |
- |
4800 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain
pipes at 80 deg. C for
1000 h) |
- |
11000 |
|
- |
| 8.2(Reversion Test) |
- |
1000 |
|
- |
| 8.3(Density) |
- |
1325 |
|
700+625 |
| 8.6(Thermal Stability (Oxidation Induction Time)) |
- |
2200 |
|
- |
| 8.7(Volatile Matter Content) |
- |
600 |
|
- |
| 8.8(Tensile Properties (Tensile Yield Strength and
Elongation at Break)) |
- |
1300 |
|
- |
| 6.4(Length of Pipe) |
- |
500 |
|
- |
| 8.4(Melt Flow Rate (MFR)) |
- |
1100 |
|
- |
| 8.5(Pigment Dispersion) |
- |
600 |
|
- |
| 8.10(Slow Crack Growth Rate Test) |
- |
10800 |
|
165+500 HOURS HYDROSTATIC PRESSURE TEST |
| 8.11(Squeeze-off) |
- |
1300 |
|
- |
| 5.1, 5.7 Table 2(v) Water content1)) |
- |
600 |
|
- |
| 4.2(Grade of material) |
- |
0 |
|
- |
| 4.3(Nominal Diameter) |
- |
0 |
|
- |
| 4.4(Colour) |
- |
0 |
|
- |
| 5.1(Polyethylene
compound) |
- |
0 |
|
- |
| 5.3(Anti-oxidant) |
- |
0 |
|
- |
| 5.4(U-V stabilizer) |
- |
0 |
|
- |
| 5.7(PE Compound Quality Evaluation) |
- |
0 |
|
- |
| 5.5(Effect of Gas
condensate on the
Hydrostatic strength) |
- |
0 |
|
- |
| 5.6(Resistance to Weathering) |
- |
0 |
|
- |
| 6.1(Out of Roundness (Ovality)) |
- |
0 |
|
- |
| 6.2(Wall thickness (Take 8 reading and Average will be repoted)) |
- |
0 |
|
- |
| 7(Finish) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain at 80 deg. C for
165h) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain
pipes at 20 deg. C for
100h) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain
pipes at 80 deg. C for
1000 h) |
- |
0 |
|
- |
| 8.2(Reversion Test) |
- |
0 |
|
- |
| 8.3(Density) |
- |
0 |
|
- |
| 8.6(Thermal Stability (Oxidation Induction Time)) |
- |
0 |
|
- |
| 8.7(Volatile Matter Content) |
- |
0 |
|
- |
| 8.8(Tensile Properties (Tensile Yield Strength and
Elongation at Break)) |
- |
0 |
|
- |
| 6.4(Length of Pipe) |
- |
0 |
|
- |
| 8.4(Melt Flow Rate (MFR)) |
- |
0 |
|
- |
| 8.5(Pigment Dispersion) |
- |
0 |
|
- |
| 8.10(Slow Crack Growth Rate Test) |
- |
0 |
|
- |
| 8.11(Squeeze-off) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(v) Water content1)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(i) Conventional density (of base polymer)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(ii) Melt flow rate (MFR)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(iii) Thermal stability (oxidation induction time)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(vi) Pigment dispersion) |
- |
0 |
|
- |
| 5.1, 5.7 Table 3(iv) Resistance to slow crack growth rate) |
- |
0 |
|
- |
| 5.3(Anti-Oxidant) |
- |
0 |
|
- |
| 5.4(U.V. Stabilizer) |
- |
0 |
|
- |
| 5.5(Effects of Gas Condensate on the Hydrostatic Strength) |
- |
0 |
|
- |
| 5.6(ii) Hydraulic characteristics) |
- |
0 |
|
- |
| 5.6(iii) Thermal stability (Oxidation induction time)) |
- |
0 |
|
- |
| 8.7(Volatile Matter Content) |
- |
0 |
|
- |
| 6(Dimensions of pipes) |
- |
0 |
|
- |
| 7(Finish) |
- |
0 |
|
- |
| 8.1(Hydraulic Characteristics) |
- |
0 |
|
- |
| 8.2(Reversion test) |
- |
0 |
|
- |
| 8.3(Density) |
- |
0 |
|
- |
| 8.4(Melt Flow Rate) |
- |
0 |
|
- |
| 8.5(Pigment Dispersion) |
- |
0 |
|
- |
| 8.6(Thermal Stability (Oxidation Induction Time)) |
- |
0 |
|
- |
| 8.9(Resistance to Weathering) |
- |
0 |
|
- |
| 8.10(Slow Crack Growth Rate Test) |
- |
0 |
|
- |
| 8.11(Squeeze-of) |
- |
0 |
|
- |
| 10(Marking) |
- |
0 |
|
- |
| 8.9(Resistance to Weathering) |
- |
0 |
|
- |
| 8.8(Tensile Properties (Tensile Yield Strength and Elongation at Break)) |
- |
0 |
|
- |
| 6.1(Mean out side Diameter (For less than or equal to 25 mm- Average of 8 , For higher diameters average of 6)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(iv) Volatile content) |
- |
0 |
|
- |
| 4.2(Grade of material) |
- |
0 |
|
- |
| 4.3(Nominal Diameter) |
- |
0 |
|
- |
| 4.4(Colour) |
- |
0 |
|
- |
| 5.1(Polyethylene
compound) |
- |
0 |
|
- |
| 5.3(Anti-oxidant) |
- |
0 |
|
- |
| 5.4(U-V stabilizer) |
- |
0 |
|
- |
| 5.7(PE Compound Quality Evaluation) |
- |
0 |
|
- |
| 5.5(Effect of Gas
condensate on the
Hydrostatic strength) |
- |
0 |
|
- |
| 5.6(Resistance to Weathering) |
- |
0 |
|
- |
| 6.1(Out of Roundness (Ovality)) |
- |
0 |
|
- |
| 6.2(Wall thickness (Take 8 reading and Average will be repoted)) |
- |
0 |
|
- |
| 7(Finish) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain at 80 deg. C for
165h) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain
pipes at 20 deg. C for
100h) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain
pipes at 80 deg. C for
1000 h) |
- |
0 |
|
- |
| 8.2(Reversion Test) |
- |
0 |
|
- |
| 8.3(Density) |
- |
0 |
|
- |
| 8.6(Thermal Stability (Oxidation Induction Time)) |
- |
0 |
|
- |
| 8.7(Volatile Matter Content) |
- |
0 |
|
- |
| 8.8(Tensile Properties (Tensile Yield Strength and
Elongation at Break)) |
- |
0 |
|
- |
| 6.4(Length of Pipe) |
- |
0 |
|
- |
| 8.4(Melt Flow Rate (MFR)) |
- |
0 |
|
- |
| 8.5(Pigment Dispersion) |
- |
0 |
|
- |
| 8.10(Slow Crack Growth Rate Test) |
- |
0 |
|
- |
| 8.11(Squeeze-off) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(v) Water content1)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(i) Conventional density (of base polymer)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(ii) Melt flow rate (MFR)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(iii) Thermal stability (oxidation induction time)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(vi) Pigment dispersion) |
- |
0 |
|
- |
| 5.1, 5.7 Table 3(iv) Resistance to slow crack growth rate) |
- |
0 |
|
- |
| 5.3(Anti-Oxidant) |
- |
0 |
|
- |
| 5.4(U.V. Stabilizer) |
- |
0 |
|
- |
| 5.5(Effects of Gas Condensate on the Hydrostatic Strength) |
- |
0 |
|
- |
| 5.6(ii) Hydraulic characteristics) |
- |
0 |
|
- |
| 5.6(iii) Thermal stability (Oxidation induction time)) |
- |
0 |
|
- |
| 8.7(Volatile Matter Content) |
- |
0 |
|
- |
| 6(Dimensions of pipes) |
- |
0 |
|
- |
| 7(Finish) |
- |
0 |
|
- |
| 8.1(Hydraulic Characteristics) |
- |
0 |
|
- |
| 8.2(Reversion test) |
- |
0 |
|
- |
| 8.3(Density) |
- |
0 |
|
- |
| 8.4(Melt Flow Rate) |
- |
0 |
|
- |
| 8.5(Pigment Dispersion) |
- |
0 |
|
- |
| 8.6(Thermal Stability (Oxidation Induction Time)) |
- |
0 |
|
- |
| 8.9(Resistance to Weathering) |
- |
0 |
|
- |
| 8.10(Slow Crack Growth Rate Test) |
- |
0 |
|
- |
| 8.11(Squeeze-of) |
- |
0 |
|
- |
| 10(Marking) |
- |
0 |
|
- |
| 8.9(Resistance to Weathering) |
- |
0 |
|
- |
| 8.8(Tensile Properties (Tensile Yield Strength and Elongation at Break)) |
- |
0 |
|
- |
| 6.1(Mean out side Diameter (For less than or equal to 25 mm- Average of 8 , For higher diameters average of 6)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(iv) Volatile content) |
- |
0 |
|
- |
| 4.2(Grade of material) |
- |
0 |
|
- |
| 4.3(Nominal Diameter) |
- |
0 |
|
- |
| 4.4(Colour) |
- |
0 |
|
- |
| 5.1(Polyethylene
compound) |
- |
0 |
|
- |
| 5.3(Anti-oxidant) |
- |
0 |
|
- |
| 5.4(U-V stabilizer) |
- |
0 |
|
- |
| 5.7(PE Compound Quality Evaluation) |
- |
0 |
|
- |
| 5.5(Effect of Gas
condensate on the
Hydrostatic strength) |
- |
0 |
|
- |
| 5.6(Resistance to Weathering) |
- |
0 |
|
- |
| 6.1(Out of Roundness (Ovality)) |
- |
0 |
|
- |
| 6.2(Wall thickness (Take 8 reading and Average will be repoted)) |
- |
0 |
|
- |
| 7(Finish) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain at 80 deg. C for
165h) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain
pipes at 20 deg. C for
100h) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain
pipes at 80 deg. C for
1000 h) |
- |
0 |
|
- |
| 8.2(Reversion Test) |
- |
0 |
|
- |
| 8.3(Density) |
- |
0 |
|
- |
| 8.6(Thermal Stability (Oxidation Induction Time)) |
- |
0 |
|
- |
| 8.7(Volatile Matter Content) |
- |
0 |
|
- |
| 8.8(Tensile Properties (Tensile Yield Strength and
Elongation at Break)) |
- |
0 |
|
- |
| 6.4(Length of Pipe) |
- |
0 |
|
- |
| 8.4(Melt Flow Rate (MFR)) |
- |
0 |
|
- |
| 8.5(Pigment Dispersion) |
- |
0 |
|
- |
| 8.10(Slow Crack Growth Rate Test) |
- |
0 |
|
- |
| 8.11(Squeeze-off) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(v) Water content1)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(i) Conventional density (of base polymer)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(ii) Melt flow rate (MFR)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(iii) Thermal stability (oxidation induction time)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(vi) Pigment dispersion) |
- |
0 |
|
- |
| 5.1, 5.7 Table 3(iv) Resistance to slow crack growth rate) |
- |
0 |
|
- |
| 5.3(Anti-Oxidant) |
- |
0 |
|
- |
| 5.4(U.V. Stabilizer) |
- |
0 |
|
- |
| 5.5(Effects of Gas Condensate on the Hydrostatic Strength) |
- |
0 |
|
- |
| 5.6(ii) Hydraulic characteristics) |
- |
0 |
|
- |
| 5.6(iii) Thermal stability (Oxidation induction time)) |
- |
0 |
|
- |
| 8.7(Volatile Matter Content) |
- |
0 |
|
- |
| 6(Dimensions of pipes) |
- |
0 |
|
- |
| 7(Finish) |
- |
0 |
|
- |
| 8.1(Hydraulic Characteristics) |
- |
0 |
|
- |
| 8.2(Reversion test) |
- |
0 |
|
- |
| 8.3(Density) |
- |
0 |
|
- |
| 8.4(Melt Flow Rate) |
- |
0 |
|
- |
| 8.5(Pigment Dispersion) |
- |
0 |
|
- |
| 8.6(Thermal Stability (Oxidation Induction Time)) |
- |
0 |
|
- |
| 8.9(Resistance to Weathering) |
- |
0 |
|
- |
| 8.10(Slow Crack Growth Rate Test) |
- |
0 |
|
- |
| 8.11(Squeeze-of) |
- |
0 |
|
- |
| 10(Marking) |
- |
0 |
|
- |
| 8.9(Resistance to Weathering) |
- |
0 |
|
- |
| 8.8(Tensile Properties (Tensile Yield Strength and Elongation at Break)) |
- |
0 |
|
- |
| 6.1(Mean out side Diameter (For less than or equal to 25 mm- Average of 8 , For higher diameters average of 6)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(iv) Volatile content) |
- |
0 |
|
- |
| 4.2(Grade of material) |
- |
0 |
|
- |
| 4.3(Nominal Diameter) |
- |
0 |
|
- |
| 4.4(Colour) |
- |
0 |
|
- |
| 5.1(Polyethylene
compound) |
- |
0 |
|
- |
| 5.3(Anti-oxidant) |
- |
0 |
|
- |
| 5.4(U-V stabilizer) |
- |
0 |
|
- |
| 5.7(PE Compound Quality Evaluation) |
- |
0 |
|
- |
| 5.5(Effect of Gas
condensate on the
Hydrostatic strength) |
- |
0 |
|
- |
| 5.6(Resistance to Weathering) |
- |
0 |
|
- |
| 6.1(Out of Roundness (Ovality)) |
- |
0 |
|
- |
| 6.2(Wall thickness (Take 8 reading and Average will be repoted)) |
- |
0 |
|
- |
| 7(Finish) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain at 80 deg. C for
165h) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain
pipes at 20 deg. C for
100h) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain
pipes at 80 deg. C for
1000 h) |
- |
0 |
|
- |
| 8.2(Reversion Test) |
- |
0 |
|
- |
| 8.3(Density) |
- |
0 |
|
- |
| 8.6(Thermal Stability (Oxidation Induction Time)) |
- |
0 |
|
- |
| 8.7(Volatile Matter Content) |
- |
0 |
|
- |
| 8.8(Tensile Properties (Tensile Yield Strength and
Elongation at Break)) |
- |
0 |
|
- |
| 6.4(Length of Pipe) |
- |
0 |
|
- |
| 8.4(Melt Flow Rate (MFR)) |
- |
0 |
|
- |
| 8.5(Pigment Dispersion) |
- |
0 |
|
- |
| 8.10(Slow Crack Growth Rate Test) |
- |
0 |
|
- |
| 8.11(Squeeze-off) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(v) Water content1)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(i) Conventional density (of base polymer)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(ii) Melt flow rate (MFR)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(iii) Thermal stability (oxidation induction time)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(vi) Pigment dispersion) |
- |
0 |
|
- |
| 5.1, 5.7 Table 3(iv) Resistance to slow crack growth rate) |
- |
0 |
|
- |
| 5.3(Anti-Oxidant) |
- |
0 |
|
- |
| 5.4(U.V. Stabilizer) |
- |
0 |
|
- |
| 5.5(Effects of Gas Condensate on the Hydrostatic Strength) |
- |
0 |
|
- |
| 5.6(ii) Hydraulic characteristics) |
- |
0 |
|
- |
| 5.6(iii) Thermal stability (Oxidation induction time)) |
- |
0 |
|
- |
| 8.7(Volatile Matter Content) |
- |
0 |
|
- |
| 6(Dimensions of pipes) |
- |
0 |
|
- |
| 7(Finish) |
- |
0 |
|
- |
| 8.1(Hydraulic Characteristics) |
- |
0 |
|
- |
| 8.2(Reversion test) |
- |
0 |
|
- |
| 8.3(Density) |
- |
0 |
|
- |
| 8.4(Melt Flow Rate) |
- |
0 |
|
- |
| 8.5(Pigment Dispersion) |
- |
0 |
|
- |
| 8.6(Thermal Stability (Oxidation Induction Time)) |
- |
0 |
|
- |
| 8.9(Resistance to Weathering) |
- |
0 |
|
- |
| 8.10(Slow Crack Growth Rate Test) |
- |
0 |
|
- |
| 8.11(Squeeze-of) |
- |
0 |
|
- |
| 10(Marking) |
- |
0 |
|
- |
| 8.9(Resistance to Weathering) |
- |
0 |
|
- |
| 8.8(Tensile Properties (Tensile Yield Strength and Elongation at Break)) |
- |
0 |
|
- |
| 6.1(Mean out side Diameter (For less than or equal to 25 mm- Average of 8 , For higher diameters average of 6)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(iv) Volatile content) |
- |
0 |
|
- |
|
31 Dec, 2026 |
- Included w.e.f 04.04.2024.
16 to 450 mm nominal diameter. |
| 11116 |
Ahmedabad Textile Industry's Research Association (ATIRA), Ahmedabad
| 7173002
| IS 17880 (2022) |
Geosynthetics Polymer Gabions for Coastal and Waterways Protection Specification |
- |
58505 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Clause 4 .1(Classification of synthetic polymer rope gabions based on aperture size of netting used) |
- |
0 |
|
- |
| Clause 5.1 and 7.1 , Table 1, i(Mesh opening size, mm, nominal (with a tolerance of ± 5 percent)) |
- |
400 |
|
- |
| Clause 5.1 and 7.1, Table 1, ii(Rope diameter, nominal, mm) |
- |
200 |
|
- |
| Clause 5.1 and 7.1, Table 1, iii(Linear density of the rope, ktex (with a tolerance of ± 10 percent)) |
- |
400 |
|
- |
| Clause 5.1 and 7.1, Table 1, iv(Mass in kg per square meter of gabions, nominal (with a tolerance of ± 5 percent)) |
- |
400 |
|
- |
| Clause 5.1 and 7.1, Table 1, v(Breaking strength of rope, Min, kN (For ropes with eye spliced terminations, the breaking strength shall be 90 percent of the given strength.)) |
- |
800 |
|
- |
| Clause 5.1 and 7.1, Table 1, vii("Breaking strength after thermal stability at 45 °C for 3 hours, kN, Min (For ropes with eye spliced terminations, the breaking strength shall be 90 percent of the given strength.
)") |
- |
965 |
|
- |
| Clause 5.1 and 7.1, Table 1, viii(Rope net strength, Min, kN/m (For ropes with eye spliced terminations, the breaking strength shall be 90 percent of the given strength.)) |
- |
0 |
|
- |
| Clause 5.1 and 7.1, Table 1, x(Retention in breaking strength of rope after UV exposure, percent, Min) |
- |
40800 |
|
- |
| Clause 5.1 and 7.1, Table 1, xi(Retention in breaking strength after exposure to saline water cyclic corrosion test for 168 h) |
- |
13940 |
|
- |
| Clause 4 .1(Classification of synthetic polymer rope gabions based on aperture size of netting used) |
- |
0 |
|
- |
| Clause 6.2.3(Sizes of Synthetic Polymer Rope Gabion) |
- |
600 |
|
- |
|
- |
- - |
| 11117 |
Ahmedabad Textile Industry's Research Association (ATIRA), Ahmedabad
| 7173002
| IS 17372 (2020) |
Geosynthetics – Polymeric strip/geostrip used as soil reinforcement in retaining structures – Specification |
- |
137100 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Clause No. 4.1(Geostrip Material) |
- |
400 |
|
- |
| Clause No. 4.2(PET geostrip weight) |
- |
200 |
|
- |
| Clause No. 5.2, Table 1 (i)(Ultimate tensile strength (kN) of Geostrips) |
- |
1500 |
|
- |
| Clause No. 5.2, Table 1 (ii)(UV resistance (500h), strength retained of Geostrips) |
- |
41500 |
|
- |
| Clause No. 5.2, Table 1 (iii)(Chemical resistance, strength retained after 72 h immersion of Geostrips) |
- |
16380 |
|
- |
| Clause No. 5.2, Table 1 (iv)(Width of Geostrips) |
- |
200 |
|
- |
| Clause No. 5.2, Table 1 (v)(Roll length of Geostrips) |
- |
200 |
|
- |
| CL 5.3.2(Resistance to hydrolysis) |
- |
38460 |
|
- |
| CL 5.3.2(Resistance to oxidation) |
- |
38460 |
|
- |
| 5.2 Table 1(Ultimate Tensile Strength kN (MD)) |
- |
0 |
|
- |
|
- |
- Remark: If Resistance to Thermal Oxidation testing is done, the cost is for 28 days, at INR 38460, and the cost is for 56 days, at INR 80640. |
| 11118 |
BIS, Central Laboratory (CL)
| None
| IS 3521 : Part 1 (2021) |
Personal Fall Arrest Systems Specification Part 1 Full Body Harness Fourth Revision |
- |
- View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4.1 (General) |
- |
|
|
|
| 4.2 (Classification) |
- |
|
|
|
| 4.3 (Design and Construction) |
- |
|
|
|
| 4.6 (Static Strength) |
- |
|
|
|
| 4.8 (Static Suspension Test) |
- |
|
|
|
| 4.3.2.3 (No of stitches per cm) |
- |
|
|
|
| 4.3.2.4 (Flammability) |
- |
|
|
|
|
- |
- - |
| 11119 |
The Synthetic and Art Silk Mills' Research Association (SASMIRA), MUMBAI
| 7175004
| IS 17731 (2021) |
Agro-Textiles Laminated Woven Orchard Protection Covers Specification |
- |
68500 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Clause No. 7, Table 1, (i)(Thickness, mm, Min) |
- |
200 |
|
- |
| Clause no. 7, Table 1, (ii)(Mass, g/m2, Min) |
- |
200 |
|
- |
| Clause No. 7, Table 1, (iii) a("Average breaking strength of laminated woven
orchard protection cover fabric (Strip method,
325 mm × 50 mm test piece with gauge length of
200 mm), N, Min, (a) Warpway") |
- |
500 |
|
- |
| Clause No. 7, Table 1, (iii) b("Average breaking strength of laminated woven
orchard protection cover fabric (Strip method,
325 mm × 50 mm test piece with gauge length of
200 mm), N, Min, (b) Weftway") |
- |
500 |
|
- |
| Clause No. 7, Table 1, (iv)("Retention of breaking strength after
UV exposure of 1000 h, percentage of original
actual value (fabric), percent, Min") |
- |
60500 |
|
- |
| Clause No. 7, Table 1, (iv)("Retention of breaking strength after
UV exposure of 1000 h, percentage of original
actual value (fabric), percent, Min") |
- |
0 |
|
- |
| Clause No. 7, Table 1, (v)(Strain at maximum load, percent) |
- |
0 |
|
- |
| Clause No. 7, Table 1, (vi)("Impact failure load at 1524 mm drop, Min, gram
force at 50 percent failure") |
- |
700 |
|
- |
| Clause No. 7, Table 1, (vii)(Reinforcement band strength, N, Min) |
- |
500 |
|
- |
| Clause No. 7, Table 1, (viii)(Ash content, percent, Max) |
- |
500 |
|
- |
| Clause No. 7, Table 1, (ix)(Total visible light transmission, percent) |
- |
700 |
|
- |
| Clause No. 7, Table 1, (x)(Light diffusion, percent) |
- |
700 |
|
- |
| Clause No. 7, Table 1, (xi)(Thermicity IR effectiveness, percent) |
- |
1800 |
|
- |
| Clause No. 4.1(Width and linear density of HDPE Tapes) |
- |
200 |
|
- |
| Clause No. 4.1.1(Heat shrinkage of HDPE Tapes) |
- |
500 |
|
- |
| Clause No. 6.1.1(Coating Lamination thickness, micron) |
- |
600 |
|
- |
| Clause No. 6.1.2(Sandwich lamination thickness , micron) |
- |
400 |
|
- |
| Clause No. 6.2(Joints/Seams) |
- |
0 |
|
- |
| Clause No. 6.3(Number and position of metal eyelets) |
- |
0 |
|
- |
| Clause No. 7.1(colour , texture and finish) |
- |
0 |
|
- |
|
14 Dec, 2026 |
- - |
| 11120 |
PIONEER TESTING LABORATORY PRIVATE LIMITED
| 8176806
| IS 6527 (1995) |
Stainless steel wire rods - Specification (First Revision) |
All Type |
11000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl 8(Heat Treatment) |
- |
1000 |
|
- |
| Cl 9(Tensile & Hardness) |
- |
3000 |
|
- |
| Cl 10(Diameter & Out Of Round) |
- |
300 |
|
- |
| 10 & 10.1, Dia over 20 mm (Out of round) |
- |
300 |
|
- |
| 10 & 10.1, Dia over 20 mm (Size, Tolerance) |
- |
300 |
|
- |
| 10 & 10.1, Dia over 16 mm upto 20 mm (Out of round) |
- |
300 |
|
- |
| 10 & 10.1, Dia over 16 mm upto 20 mm (Size, Tolerance) |
- |
300 |
|
- |
| 10 & 10.1, Dia over 9.5 mm upto 16 mm (Out of round) |
- |
300 |
|
- |
| 10 & 10.1, Dia over 9.5 mm upto 16 mm (Size, Tolerance) |
- |
300 |
|
- |
| 10 & 10.1, Dia- (5.5-9.5 mm)(Out of round) |
- |
300 |
|
- |
| 10 & 10.1, Dia- (5.5-9.5 mm)(Size, Tolerance) |
- |
300 |
|
- |
| Cl. 9.2 Table 4(Hardness) |
- |
1500 |
|
- |
| Cl. 9 .1 Table 3(Elongation) |
- |
1000 |
|
- |
| Cl. 9 .1 Table 3(0.2 % Proof Stress ) |
- |
1000 |
|
- |
| Cl. 6(Freedom from defects) |
- |
500 |
|
- |
| Cl. 10.1(Out of Round) |
- |
300 |
|
- |
| 7,
Table 1of IS:6527 (Designation X10Cr17Mn6Ni4)(Carbon) |
- |
300 |
|
- |
| 7,
Table 1of IS:6527 (Designation X10Cr17Mn6Ni4)(Silicon) |
- |
300 |
|
- |
| 7,
Table 1of IS:6527 (Designation X10Cr17Mn6Ni4)(Manganese) |
- |
300 |
|
- |
| 7,
Table 1of IS:6527 (Designation X10Cr17Mn6Ni4)(Nickel) |
- |
300 |
|
- |
| 7,
Table 1of IS:6527 (Designation X10Cr17Mn6Ni4)(Chromium) |
- |
300 |
|
- |
| 7,
Table 1of IS:6527 (Designation X10Cr17Mn6Ni4)(Sulphur) |
- |
300 |
|
- |
| 7,
Table 1of IS:6527 (Designation X10Cr17Mn6Ni4)(Phosphorous) |
- |
300 |
|
- |
| 7,
Table 1of IS:6527 (Designation X10Cr17Mn6Ni4)(Nitrogen) |
- |
300 |
|
- |
| 7,
Table 1of IS:6527 (Designation X10Cr17Mn6Ni4)(Copper) |
- |
300 |
|
- |
| 7,
Table 1of IS:6527 (Designation X10Cr17Mn6Ni4)(Molybdenum) |
- |
300 |
|
- |
| 7,
Table 1of IS:6527 (Designation X10Cr17Mn6Ni4)(Niobium) |
- |
300 |
|
- |
| 7,
Table 1of IS:6527 (Designation X10Cr17Mn6Ni4)(Titanium) |
- |
300 |
|
- |
| 13(Corrosion resistance-IS 10461,Part-1 & 2) |
- |
5000 |
|
- |
| 13(Corrosion Resistance - IS 10461) |
- |
5000 |
|
- |
| 15(Marking) |
- |
200 |
|
- |
|
10 Mar, 2027 |
- - |
| 11121 |
PIONEER TESTING LABORATORY PRIVATE LIMITED
| 8176806
| IS 1659 (2004) |
Block boards - Specification (Fourth Revision) |
All Type |
7750 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 9.2.6(Spot test - Annexure L) |
- |
1000 |
|
- |
| 9.2.5(Modulus of elasticity - MINIMUM INDIVIDUAL - Annexure K) |
- |
700 |
|
- |
| 9.2.5(Modulus of elasticity - AVERAGE - Annexure K) |
- |
700 |
|
- |
| 9.2.5(Modulus of rupture - MINIMUM INDIVIDUAL - Annexure K) |
- |
700 |
|
- |
| 9.2.5(Modulus of rupture - AVERAGE - Annexure K) |
- |
700 |
|
- |
| 9.2.4(Mycological Test [for MR grade only] - Annexure J) |
- |
1500 |
|
- |
| 9.2.3(Adhesion of Plies - Annexure H) |
- |
750 |
|
- |
| 9.2.2 (Resistance to water - Annexure G, Annexure H [For MR Grade]) |
- |
600 |
|
- |
| 9.2.2 (Resistance to water - Annexure G, Annexure H [For BWP grade]) |
- |
600 |
|
- |
| 9.2.1(Dimensional Changes caused by humidity Change in local planeness - Annexure F) |
- |
500 |
|
- |
| 9.2.1(Dimensional Changes caused by humidity - Delamination - Annexure F) |
- |
500 |
|
- |
| 9.2.1(Dimensional Changes caused by humidity - Change in thickness - at 40% RH - Annexure F) |
- |
500 |
|
- |
| 9.2.1(Dimensional Changes caused by humidity - Change in Thickness - at 90% RH - Annexure F) |
- |
500 |
|
- |
| 9.2.1(Dimensional Changes caused by humidity - Change in Length - at 40% RH - Annexure F) |
- |
500 |
|
- |
| 9.2.1(Dimensional Changes caused by humidity - Change in Length - at 90% RH - Annexure F) |
- |
500 |
|
- |
| 7.3(Dimensional Requirements - Variation in thickness - Annexure E) |
- |
200 |
|
- |
| 7.3(Dimensional Requirements - Squareness - Annexure D) |
- |
500 |
|
- |
| 7.3(Dimensional Requirements - Edge Straightness - Annexure D) |
- |
500 |
|
- |
| 7.3(Dimensional Requirements - Thickness - Annexure E) |
- |
200 |
|
- |
| 7.3(Dimensional Requirements - Width - 8.1.4) |
- |
200 |
|
- |
| 7.3(Dimensional Requirements - Length - 8.1.4) |
- |
200 |
|
- |
| 8.1.3, 6.3.3, IS 1328(Visual Inspection - Permissible Defects - IS 1328 [test method for DECORATIVE type]) |
- |
200 |
|
- |
| 8.1.3, 6.3.3, IS 303(Visual Inspection - Permissible Defects - IS 303 [test method for COMMERCIAL type]) |
- |
200 |
|
- |
| 9.2.6 (mechanical)(Spot test - Annexure L) |
- |
1000 |
|
- |
| cl. 11(marking) |
- |
200 |
|
- |
|
10 Mar, 2027 |
- - |
| 11122 |
PIONEER TESTING LABORATORY PRIVATE LIMITED
| 8176806
| IS 1237 (2012) |
Cement Concrete Flooring Tiles - Specification |
All Type |
7200 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl 7.1(Length, Breadth, Minimum thickness, Difference in length of side between the longest side and shorterst side, Half tiles, Difference in Thickness between the thickest and thinnest tile, Thickness of wearing layer) |
- |
1200 |
|
- |
| Cl 12.2(Concavity & Convexity ) |
- |
500 |
|
- |
| Cl 12.3(The Maximum gap between the arms of the square and the edge of the title shall notexceed 2 percent of the length.) |
- |
500 |
|
- |
| Cl 12.4(Shall not exceed 1 percent of the length of the edge.) |
- |
500 |
|
- |
| Cl 12.5(Water absorption) |
- |
1000 |
|
- |
| Cl 12.6(Wet transverse strength ) |
- |
1500 |
|
- |
| Cl 12.7(Resistance to wear) |
- |
1500 |
|
- |
| Cl 11(Suface Finish) |
- |
500 |
|
- |
|
10 Mar, 2027 |
- - |
| 11123 |
CENTRAL INSTITUTE OF PETROCHEMICALS ENGINEERING & TECHNOLOGY (CIPET) : IPT-BHUBANESWAR
| 5102634
| IS 6192 (2023) |
Textiles Monoaxially oriented high density polyethylene HDPE and polypropylene PP tapes Specification |
Pigmented/Unpigmented tapes |
25138 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4(MATERIAL(Refer IS 7328 :1974)) |
- |
1150.00 |
|
- |
| 5.1(Linear density (For test method Refer IS 6193:1971 and IS 7703 Part 1)) |
- |
525 |
|
- |
| 5.2(Tenacity (For test method Refer IS 6193:1971)) |
- |
825 |
|
- |
| 5.3(Elongation (For test method Refer IS 6193:1971)) |
- |
975 |
|
- |
| 5.4(Finished width (For test method Refer IS 6193:1971)) |
- |
375 |
|
- |
| 5.5(Thickness (For test method Refer IS 6193:1971)) |
- |
375 |
|
- |
| 5.6(Heat Shrinkage at 60 degree C(For test method Refer IS 6193:1971)
) |
- |
1275 |
|
- |
| 5.6(Heat Shrinkage at 95 degree C(For test method Refer IS 6193:1971)
) |
- |
0 |
|
- |
| 5.7( pigmented tapes(Refer IS 2454)) |
- |
19638 |
|
- |
| 4(MATERIAL(Refer IS 7328 :1974)) |
- |
0.00 |
|
- |
| 5.1(Linear density (For test method Refer IS 6193:1971 and IS 7703 Part 1)) |
- |
0.00 |
|
- |
| 5.2(Tenacity (For test method Refer IS 6193:1971)) |
- |
0.00 |
|
- |
| 5.3(Elongation (For test method Refer IS 6193:1971)) |
- |
0.00 |
|
- |
| 5.4(Finished width (For test method Refer IS 6193:1971)) |
- |
0 |
|
- |
| 5.5(Thickness (For test method Refer IS 6193:1971)) |
- |
0.00 |
|
- |
| 5.6(Heat Shrinkage at 60 degree C(For test method Refer IS 6193:1971)
) |
- |
0.00 |
|
- |
| 5.6(Heat Shrinkage at 95 degree C(For test method Refer IS 6193:1971)
) |
- |
0.00 |
|
- |
| 5.7( pigmented tapes(Refer IS 2454)) |
- |
0.00 |
|
- |
| Cl-4.1(High Density Polyethylene Tapes) |
- |
0 |
|
- |
| Cl-4.2(Polypropylene Tapes) |
- |
0 |
|
- |
| Cl-5.1.8(Ash Content) |
- |
0 |
|
- |
| Cl-6.1(Marking) |
- |
0 |
|
- |
| Cl-5.1.1(Finished tape width) |
- |
0 |
|
- |
| Cl-5.1.2(Thickness of the tape) |
- |
0 |
|
- |
| Cl-5.1.3(Linear density of tape) |
- |
0 |
|
- |
| Cl-5.1.4(Polypropylene Tapes) |
- |
0 |
|
- |
| Cl-5.1.5(Average value of the elongation at break of tape) |
- |
0 |
|
- |
| Cl-5.1.6(UV radiation exposure) |
- |
0 |
|
- |
| Cl-5.1.7(Average heat shrinkage of HDPE tapes) |
- |
0 |
|
- |
| Cl-5.1.6(UV stabilized HDPE and PP resins) |
- |
0 |
|
- |
| Cl-4.1(High Density Polyethylene Tapes) |
- |
0 |
|
- |
| Cl-4.2(Polypropylene Tapes) |
- |
0 |
|
- |
| Cl-5.1.8(Ash Content) |
- |
0 |
|
- |
| Cl-6.1(Marking) |
- |
0 |
|
- |
| Cl-5.1.1(Finished tape width) |
- |
0 |
|
- |
| Cl-5.1.2(Thickness of the tape) |
- |
0 |
|
- |
| Cl-5.1.3(Linear density of tape) |
- |
0 |
|
- |
| Cl-5.1.4(Polypropylene Tapes) |
- |
0 |
|
- |
| Cl-5.1.5(Average value of the elongation at break of tape) |
- |
0 |
|
- |
| Cl-5.1.6(UV radiation exposure) |
- |
0 |
|
- |
| Cl-5.1.7(Average heat shrinkage of HDPE tapes) |
- |
0 |
|
- |
| Cl-5.1.6(UV stabilized HDPE and PP resins) |
- |
0 |
|
- |
| Cl-4.1(High Density Polyethylene Tapes) |
- |
0 |
|
- |
| Cl-4.2(Polypropylene Tapes) |
- |
0 |
|
- |
| Cl-5.1.8(Ash Content) |
- |
0 |
|
- |
| Cl-6.1(Marking) |
- |
0 |
|
- |
| Cl-5.1.1(Finished tape width) |
- |
0 |
|
- |
| Cl-5.1.2(Thickness of the tape) |
- |
0 |
|
- |
| Cl-5.1.3(Linear density of tape) |
- |
0 |
|
- |
| Cl-5.1.4(Polypropylene Tapes) |
- |
0 |
|
- |
| Cl-5.1.5(Average value of the elongation at break of tape) |
- |
0 |
|
- |
| Cl-5.1.6(UV radiation exposure) |
- |
0 |
|
- |
| Cl-5.1.7(Average heat shrinkage of HDPE tapes) |
- |
0 |
|
- |
| Cl-5.1.6(UV stabilized HDPE and PP resins) |
- |
0 |
|
- |
| Cl-4.1(High Density Polyethylene Tapes) |
- |
0 |
|
- |
| Cl-4.2(Polypropylene Tapes) |
- |
0 |
|
- |
| Cl-5.1.8(Ash Content) |
- |
0 |
|
- |
| Cl-6.1(Marking) |
- |
0 |
|
- |
| Cl-5.1.1(Finished tape width) |
- |
0 |
|
- |
| Cl-5.1.2(Thickness of the tape) |
- |
0 |
|
- |
| Cl-5.1.3(Linear density of tape) |
- |
0 |
|
- |
| Cl-5.1.4(Polypropylene Tapes) |
- |
0 |
|
- |
| Cl-5.1.5(Average value of the elongation at break of tape) |
- |
0 |
|
- |
| Cl-5.1.6(UV radiation exposure) |
- |
0 |
|
- |
| Cl-5.1.7(Average heat shrinkage of HDPE tapes) |
- |
0 |
|
- |
| Cl-5.1.6(UV stabilized HDPE and PP resins) |
- |
0 |
|
- |
|
31 Dec, 2026 |
- Included w.e.f.03.07.2025
Exclusion
Cl 4.3 |
| 11124 |
Central Institute of Petrochemicals Engineering & Technology (CIPET), CSTS - Dehradun
| 9178004
| IS 17546 (2021) |
Chlorinated polyvinyl chloride CPVC fittings for potable hot and cold water distribution supplies Specification |
15mm to 150mm |
164250.00 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 6(Composition) |
- |
1100.00 |
|
Optional (Applicable on Raw Material). |
| 7(Dimensions of fitting) |
- |
500.00 |
|
- |
| 8.1(Visual Appearance) |
- |
500.00 |
|
- |
| 8.2(Opacity) |
- |
700.00 |
|
- |
| 8.3(Stress Relief Test) |
- |
700.00 |
|
- |
| 8.4(Vicat softening Temperature) |
- |
1100.00 |
|
- |
| 8.5(Density) |
- |
700.00 |
|
- |
| 8.6(Effect on water) |
- |
3000.00 |
|
- |
| 3.1(Nominal Size(DN)) |
- |
0.00 |
|
TEST CHARGE FOR THIS PARAMETER ALREADY TAKEN ABOVE. |
| 3.2(Nominal Outside Diameter) |
- |
0.00 |
|
TEST CHARGE FOR THIS PARAMETER ALREADY TAKEN ABOVE. |
| 3.3(Mean Inside Diameter of Socket at Entry) |
- |
0.00 |
|
TEST CHARGE FOR THIS PARAMETER ALREADY TAKEN ABOVE. |
| 3.4(Mean Inside Diameter of Socket at Shoulder (Bottom)) |
- |
0.00 |
|
TEST CHARGE FOR THIS PARAMETER ALREADY TAKEN ABOVE. |
| 3.4(Mean Inside Diameter of Socket at Shoulder (Bottom)) |
- |
0.00 |
|
TEST CHARGE FOR THIS PARAMETER ALREADY TAKEN ABOVE. |
| 3.5(Out-of-Roundness (Ovality)) |
- |
0.00 |
|
TEST CHARGE FOR THIS PARAMETER ALREADY TAKEN ABOVE. |
| 3.6(Nominal Wall Thickness) |
- |
0.00 |
|
TEST CHARGE FOR THIS PARAMETER ALREADY TAKEN ABOVE. |
| 3.7(Minimum Wall Thickness) |
- |
0.00 |
|
TEST CHARGE FOR THIS PARAMETER ALREADY TAKEN ABOVE. |
| 3.8(Tolerance) |
- |
0.00 |
|
- |
| 3.9(Working Pressure) |
- |
0.00 |
|
- |
| 3.1(Standard Dimension Ratio) |
- |
0.00 |
|
- |
| 3.11(Type Tests) |
- |
0.00 |
|
- |
| 3.11(Acceptance Tests) |
- |
0.00 |
|
- |
| 11(Marking) |
- |
0.00 |
|
- |
| 9(Mechanical Properties) |
- |
0.00 |
|
- |
|
24 Apr, 2027 |
- - |
| 11125 |
BIS, Central Laboratory (CL)
| None
| IS 12234 (2021) |
Plastic equilibrium float valves for cold water services - Specification (first revision) |
- |
- View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 5 (Materials) |
- |
|
|
|
| 6 (Manufacture and Workmanship) |
- |
|
|
|
| 7.1 to 7.3 , 7.6 to 7.9 (Construction) |
- |
|
|
|
| 7.4 to 7.5 and 7.10 (Dimensions, Screw threads and Back nut) |
- |
|
|
|
| 8.1.1, 8.1.2 (Hydraulic and Shut-Off Test) |
- |
|
|
|
| 8.2 Appendix-A (Antisiphonage Test) |
- |
|
|
|
| 8.3 Appendix-B (Flow Test) |
- |
|
|
|
| 8.4 Appendix-C (Endurance Test) |
- |
|
|
|
| 10 (Marking) |
- |
|
|
|
|
- |
- - |
| 11126 |
BIS, Central Laboratory (CL)
| None
| IS 15450 (2022) |
Polyethylene-aluminium-polyethylene composite pressure pipes for hot and cold water supplies Specifications first revision of IS 15450 |
- |
- View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 7 (NOMINAL DIAMETERS) |
- |
|
|
|
| 9 (DIMENSIONS OF PIPE) |
- |
|
|
|
| 10 (VISUAL APPEARANCE) |
- |
|
|
|
| 11.2 (Melt Flow Rate (Method of test as per Table 3)) |
- |
|
|
|
| 11.1 (Density (Method of test as per Table 3)) |
- |
|
|
|
| 11.8 (Adhesion Test) |
- |
|
|
|
| 11.9 (Apparent Tensile Strength of Pipe) |
- |
|
|
|
| 11.10 (Minimum Burst Pressure) |
- |
|
|
|
| 11.11 (Hydraulic Characteristics) |
- |
|
|
|
| 12.1 (Type Test) |
- |
|
|
|
|
- |
- - |
| 11127 |
Central Institute of Petrochemicals Engineering & Technology (CIPET), CSTS - Dehradun
| 9178004
| IS 9755 (2021) |
Textiles - High Density Polyethylene (HDPE) / Polypropylene (pp) Woven Sacks for Packing Fertilizers |
Type-1 & Type 2 |
40130.00 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4.1(Raw Meterial) |
- |
4200.00 |
|
Optional (applicable on Raw materials)
1. identification 2000.00
2. Overall Migration 1700+500 |
| 4.2("Fabric
b) Linear Density") |
- |
700.00 |
|
Optional (applicable on Tapes) |
| 4.2("Fabric
a) Width of Tape") |
- |
500.00 |
|
Optional (applicable on Tapes) |
| 4.4.1(Thickness of Linear) |
- |
500.00 |
|
- |
| 4.4.2(Visual Observation) |
- |
500.00 |
|
- |
| 4.4.3(Bottom Seam of Loose Liner) |
- |
500.00 |
|
- |
| 4.5(Laminated Fabric) |
- |
2000.00 |
|
- |
| 4.6.1(Distance between the Two Row of Stitches) |
- |
500.00 |
|
- |
| 4.6.2(Breaking Load of the stitching material Non UV Stabilized sack) |
- |
1100.00 |
|
- |
| 4.7(Mouth of the Sack) |
- |
500.00 |
|
- |
| "Table 1 of Cl. No.5.1 Sl. No. i"("Dimension
a) Inside Length Type 1 & Type 2
") |
- |
500.00 |
|
- |
| "Table 1 of Cl. No.5.1 Sl. No. ii"(Ends/dm ( Type 1 & Type 2)) |
- |
1000.00 |
|
Ends per dm 500
Picks per dm 500 |
| "Table 1 of Cl. No.5.3 Sl. No. iv"("Mass of Fabric
a) Unlaminated Sack( Type 1 & Type 2)") |
- |
500.00 |
|
- |
| "Table 1 of Cl. No.5.3 Sl. No. v"(Mass of Sack( Type 1 & Type 2)) |
- |
500.00 |
|
- |
| "Table 1 of Cl. No.5.4 Sl. No. vi"(Avg. Breaking Strength Of fabric (Ravelled strip method)( 325mm X 25 mm)) |
- |
2700.00 |
|
- |
| "Table 1 of Cl. No.5.4 Sl. No. vii"(Breaking Strength of Bottom Seam (Ravelled strip method)) |
- |
1100.00 |
|
- |
| "Table 1 of Cl. No.5.1 Sl. No. viii"("Elongation at Break of fabric
a)Length(Type 1 & Type 2)") |
- |
0.00 |
|
Breaking strength & elongation have single Charge. |
| "Table 1 of Cl. No.5.5 Sl. No. ix"("Ash Content
a) For UV Stabilized Sack") |
- |
1200.00 |
|
- |
| Cl. No.5.3(Mass of Bale) |
- |
500.00 |
|
- |
| Cl. No.5.7(UV Resistance) |
- |
2700.00 |
|
- |
| "Table 1 of Cl. No.5.6 Sl. No. x"(Drop Impact Strength) |
- |
1100.00 |
|
- |
| 5.6(Drop Impact Test) |
- |
0.00 |
|
- |
| 4.2("Fabric
c) Mesh") |
- |
0.00 |
|
- |
| 4.2("Fabric
c) Mesh") |
- |
0.00 |
|
- |
| 4.2("Fabric
d) Unlaminated Fabric Mass") |
- |
0.00 |
|
- |
| 4.3(Sacks) |
- |
0.00 |
|
- |
| 4.4.1(Loose Liner) |
- |
0.00 |
|
- |
| 4.5(Mass of The Lamination) |
- |
0.00 |
|
- |
| 4.5(Lamination Over Hang of the fabric after trimming) |
- |
0.00 |
|
- |
| 4.6.1(Distance of outer stitch from the edge of the bag) |
- |
0.00 |
|
- |
| 4.6.1(Depth of the Stitch( Double fold)) |
- |
0.00 |
|
- |
| 4.6.1(No.of Stitches/dm) |
- |
0.00 |
|
- |
| 4.6.2(Breaking Load for UV Stabilized sack) |
- |
0.00 |
|
- |
| "Table 1 of Cl. No.5.1 Sl. No. i"("Dimension
b) Inside Width ") |
- |
0.00 |
|
- |
| "Table 1 of Cl. No.5.1 Sl. No. iii"(Picks /dm ( Type 1 & Type 2)) |
- |
0.00 |
|
- |
| "Table 1 of Cl. No.5.3 Sl. No. iv"("Mass of Fabric
b) Laminated Sack( Type 1 & Type 2)") |
- |
0.00 |
|
- |
| "Table 1 of Cl. No.5.1 Sl. No. viii"("Elongation at Break of fabric
b) Width(Type 1 & Type 2)") |
- |
0.00 |
|
- |
| "Table 1 of Cl. No.5.5 Sl. No. ix"("Ash Content
b) For Non- UV Stabilized Sack") |
- |
0.00 |
|
- |
| Cl. No.5.2(Visual Observation) |
- |
0.00 |
|
- |
| Cl. No.5.4(Breaking Strength of Fabric) |
- |
0.00 |
|
- |
| Cl. No.5.5("Ash Content
a) For UV Stabilized Sack") |
- |
0.00 |
|
- |
| Cl. No.5.5("Ash Content
b) For Non- UV Stabilized Sack") |
- |
0.00 |
|
- |
| Cl. No.5.6(Drop Impact testing of filled sack) |
- |
0.00 |
|
- |
| Cl. No.6.1(Printing on Sacks) |
- |
0.00 |
|
- |
| Cl. No.6.2.(Packaging) |
- |
0.00 |
|
- |
| Cl. No.6.3.(Marking on the Bale) |
- |
0.00 |
|
- |
| Cl. No.6.4.(BIS Certification Marking) |
- |
0.00 |
|
- |
| Cl. No.6.5.(Storage) |
- |
0.00 |
|
- |
| Cl. No.5.5("Ash Content
a) For UV Stabilized Sack") |
- |
0.0 |
|
- |
|
24 Apr, 2027 |
- - |
| 11128 |
CENTRAL INSTITUTE OF PETROCHEMICALS ENGINEERING & TECHNOLOGY (CIPET) : IPT-BHUBANESWAR
| 5102634
| IS 14885 (2022) |
Polyethylene Pipes for the Supply of Gaseous Fuels � Specification (First Revision) |
PE 80 and PE 100(– SDR 17 / SDR 13.6 / SDR 11 / SDR 9) |
402000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4.2(Grade of material) |
- |
0 |
|
nil |
| 4.3(Nominal Diameter) |
- |
0 |
|
nil |
| 4.4(Colour) |
- |
0 |
|
nil |
| 5.1(Polyethylene
compound) |
- |
4575 |
|
nil |
| 5.5(Effect of Gas
condensate on the
Hydrostatic strength) |
- |
4750 |
|
nil |
| 5.7(PE Compound Quality Evaluation) |
- |
300000 |
|
nil |
| 5.6(Resistance to Weathering) |
- |
11875 |
|
nil |
| 6.1(Mean out side Diameter (For less than or equal to 25 mm- Average of 8 , For higher diameters average of 6)) |
- |
375 |
|
nil |
| 6.1(Out of Roundness (Ovality)) |
- |
0.00 |
|
nil |
| 6.2(Wall thickness (Take 8 reading and Average will be repoted)) |
- |
375 |
|
nil |
| 7(Finish) |
- |
375 |
|
nil |
| 8.1(Internal pressure creep
rupture test for plain at 80 deg. C for
165h) |
- |
8250 |
|
nil |
| 8.1(Internal pressure creep
rupture test for plain
pipes at 20 deg. C for
100h) |
- |
3500 |
|
nil |
| 8.1(Internal pressure creep
rupture test for plain
pipes at 80 deg. C for
1000 h) |
- |
4100 |
|
nil |
| 8.2(Reversion Test) |
- |
525 |
|
nil |
| 8.3(Density) |
- |
525 |
|
nil |
| 8.6(Thermal Stability (Oxidation Induction Time)) |
- |
1650 |
|
nil |
| 8.7(Volatile Matter Content) |
- |
525 |
|
nil |
| 8.8(Tensile Properties (Tensile Yield Strength and
Elongation at Break)) |
- |
1475 |
|
nil |
| 8.9(Resistance to Weathering) |
- |
1875 |
|
nil |
| 6.4(Length of Pipe) |
- |
375 |
|
nil |
| 8.4(Melt Flow Rate (MFR)) |
- |
825 |
|
nil |
| 8.5(Pigment Dispersion) |
- |
525 |
|
nil |
| 8.10(Slow Crack Growth Rate Test) |
- |
8225 |
|
nil |
| 8.11(Squeeze-off) |
- |
5075 |
|
nil |
| 4.2(Grade of material) |
- |
0.00 |
|
- |
| 4.3(Nominal Diameter) |
- |
0.00 |
|
- |
| 4.4(Colour) |
- |
0 |
|
- |
| 5.1(Polyethylene
compound) |
- |
0 |
|
- |
| 5.5(Effect of Gas
condensate on the
Hydrostatic strength) |
- |
0 |
|
- |
| 5.7(PE Compound Quality Evaluation) |
- |
0.00 |
|
- |
| 5.6(Resistance to Weathering) |
- |
0 |
|
- |
| 6.1(Mean out side Diameter (For less than or equal to 25 mm- Average of 8 , For higher diameters average of 6)) |
- |
0 |
|
- |
| 6.1(Out of Roundness (Ovality)) |
- |
0.00 |
|
- |
| 6.2(Wall thickness (Take 8 reading and Average will be repoted)) |
- |
0.00 |
|
- |
| 7(Finish) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain at 80 deg. C for
165h) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain
pipes at 20 deg. C for
100h) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain
pipes at 80 deg. C for
1000 h) |
- |
0 |
|
- |
| 8.2(Reversion Test) |
- |
0 |
|
- |
| 8.3(Density) |
- |
0 |
|
- |
| 8.6(Thermal Stability (Oxidation Induction Time)) |
- |
0 |
|
- |
| 8.7(Volatile Matter Content) |
- |
0 |
|
- |
| 8.8(Tensile Properties (Tensile Yield Strength and
Elongation at Break)) |
- |
0 |
|
- |
| 8.9(Resistance to Weathering) |
- |
0.00 |
|
- |
| 6.4(Length of Pipe) |
- |
0.00 |
|
- |
| 8.4(Melt Flow Rate (MFR)) |
- |
0 |
|
- |
| 8.5(Pigment Dispersion) |
- |
0 |
|
- |
| 8.10(Slow Crack Growth Rate Test) |
- |
0 |
|
- |
| 8.11(Squeeze-off) |
- |
0 |
|
- |
| 4.2(Grade of material) |
- |
0 |
|
- |
| 4.3(Nominal Diameter) |
- |
0 |
|
- |
| 4.4(Colour) |
- |
0 |
|
- |
| 5.1(Polyethylene
compound) |
- |
0 |
|
- |
| 5.7(PE Compound Quality Evaluation) |
- |
0 |
|
- |
| 5.5(Effect of Gas
condensate on the
Hydrostatic strength) |
- |
0 |
|
- |
| 5.6(Resistance to Weathering) |
- |
42225 |
|
- |
| 6.1(Mean out side Diameter (For less than or equal to 25 mm- Average of 8 , For higher diameters average of 6)) |
- |
0 |
|
- |
| 6.1(Out of Roundness (Ovality)) |
- |
0 |
|
- |
| 6.2(Wall thickness (Take 8 reading and Average will be repoted)) |
- |
0 |
|
- |
| 7(Finish) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain at 80 deg. C for
165h) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain
pipes at 20 deg. C for
100h) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain
pipes at 80 deg. C for
1000 h) |
- |
0 |
|
- |
| 8.2(Reversion Test) |
- |
0 |
|
- |
| 8.3(Density) |
- |
0 |
|
- |
| 8.6(Thermal Stability (Oxidation Induction Time)) |
- |
0 |
|
- |
| 8.7(Volatile Matter Content) |
- |
0 |
|
- |
| 8.8(Tensile Properties (Tensile Yield Strength and
Elongation at Break)) |
- |
0 |
|
- |
| 8.9(Resistance to Weathering) |
- |
0 |
|
- |
| 6.4(Length of Pipe) |
- |
0 |
|
- |
| 8.4(Melt Flow Rate (MFR)) |
- |
0 |
|
- |
| 8.5(Pigment Dispersion) |
- |
0 |
|
- |
| 8.10(Slow Crack Growth Rate Test) |
- |
0 |
|
- |
| 8.11(Squeeze-off) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(i) Conventional density (of base polymer)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(ii) Melt flow rate (MFR)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(iii) Thermal stability (oxidation induction time)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(iv) Volatile content) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(v) Water content1)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(vi) Pigment dispersion) |
- |
0 |
|
- |
| 5.1, 5.7 Table 3(iv) Resistance to slow crack growth rate) |
- |
0 |
|
- |
| 5.5(Effects of Gas Condensate on the Hydrostatic Strength) |
- |
0 |
|
- |
| 5.6(ii) Hydraulic characteristics) |
- |
0 |
|
- |
| 5.6(iii) Thermal stability (Oxidation induction time)) |
- |
0 |
|
- |
| 6(Dimensions of pipes) |
- |
0 |
|
- |
| 7(Finish) |
- |
0 |
|
- |
| 8.1(Hydraulic Characteristics) |
- |
0 |
|
- |
| 8.2(Reversion test) |
- |
0 |
|
- |
| 8.3(Density) |
- |
0 |
|
- |
| 8.4(Melt Flow Rate) |
- |
0 |
|
- |
| 8.5(Pigment Dispersion) |
- |
0 |
|
- |
| 8.6(Thermal Stability (Oxidation Induction Time)) |
- |
0 |
|
- |
| 8.7(Volatile Matter Content) |
- |
0 |
|
- |
| 8.9(Resistance to Weathering) |
- |
0 |
|
- |
| 8.8(Tensile Properties (Tensile Yield Strength and Elongation at Break)) |
- |
0 |
|
- |
| 8.10(Slow Crack Growth Rate Test) |
- |
0 |
|
- |
| 8.11(Squeeze-of) |
- |
0 |
|
- |
| 10(Marking) |
- |
0 |
|
- |
| 4.2(Grade of material) |
- |
0 |
|
- |
| 4.3(Nominal Diameter) |
- |
0 |
|
- |
| 4.4(Colour) |
- |
0 |
|
- |
| 5.1(Polyethylene
compound) |
- |
0 |
|
- |
| 5.7(PE Compound Quality Evaluation) |
- |
0 |
|
- |
| 5.5(Effect of Gas
condensate on the
Hydrostatic strength) |
- |
0 |
|
- |
| 5.6(Resistance to Weathering) |
- |
0 |
|
- |
| 6.1(Mean out side Diameter (For less than or equal to 25 mm- Average of 8 , For higher diameters average of 6)) |
- |
0 |
|
- |
| 6.1(Out of Roundness (Ovality)) |
- |
0 |
|
- |
| 6.2(Wall thickness (Take 8 reading and Average will be repoted)) |
- |
0 |
|
- |
| 7(Finish) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain at 80 deg. C for
165h) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain
pipes at 20 deg. C for
100h) |
- |
0 |
|
- |
| 8.1(Internal pressure creep
rupture test for plain
pipes at 80 deg. C for
1000 h) |
- |
0 |
|
- |
| 8.2(Reversion Test) |
- |
0 |
|
- |
| 8.3(Density) |
- |
0 |
|
- |
| 8.6(Thermal Stability (Oxidation Induction Time)) |
- |
0 |
|
- |
| 8.7(Volatile Matter Content) |
- |
0 |
|
- |
| 8.8(Tensile Properties (Tensile Yield Strength and
Elongation at Break)) |
- |
0 |
|
- |
| 8.9(Resistance to Weathering) |
- |
0 |
|
- |
| 6.4(Length of Pipe) |
- |
0 |
|
- |
| 8.4(Melt Flow Rate (MFR)) |
- |
0 |
|
- |
| 8.5(Pigment Dispersion) |
- |
0 |
|
- |
| 8.10(Slow Crack Growth Rate Test) |
- |
0 |
|
- |
| 8.11(Squeeze-off) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(i) Conventional density (of base polymer)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(ii) Melt flow rate (MFR)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(iii) Thermal stability (oxidation induction time)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(iv) Volatile content) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(v) Water content1)) |
- |
0 |
|
- |
| 5.1, 5.7 Table 2(vi) Pigment dispersion) |
- |
0 |
|
- |
| 5.1, 5.7 Table 3(iv) Resistance to slow crack growth rate) |
- |
0 |
|
- |
| 5.5(Effects of Gas Condensate on the Hydrostatic Strength) |
- |
0 |
|
- |
| 5.6(ii) Hydraulic characteristics) |
- |
0 |
|
- |
| 5.6(iii) Thermal stability (Oxidation induction time)) |
- |
0 |
|
- |
| 6(Dimensions of pipes) |
- |
0 |
|
- |
| 7(Finish) |
- |
0 |
|
- |
| 8.1(Hydraulic Characteristics) |
- |
0 |
|
- |
| 8.2(Reversion test) |
- |
0 |
|
- |
| 8.3(Density) |
- |
0 |
|
- |
| 8.4(Melt Flow Rate) |
- |
0 |
|
- |
| 8.5(Pigment Dispersion) |
- |
0 |
|
- |
| 8.6(Thermal Stability (Oxidation Induction Time)) |
- |
0 |
|
- |
| 8.7(Volatile Matter Content) |
- |
0 |
|
- |
| 8.9(Resistance to Weathering) |
- |
0 |
|
- |
| 8.8(Tensile Properties (Tensile Yield Strength and Elongation at Break)) |
- |
0 |
|
- |
| 8.10(Slow Crack Growth Rate Test) |
- |
0 |
|
- |
| 8.11(Squeeze-of) |
- |
0 |
|
- |
| 10(Marking) |
- |
0 |
|
- |
|
31 Dec, 2026 |
- Included w.e.f.03.07.2025
Exclusion
Cl 5.3, Cl 5.4 |
| 11129 |
BIS, Western Regional Laboratory (WRL)
| None
| IS 3950 (1979) |
surface boxes for sluice valves |
- |
Rs.450/- View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 3 (MANUFACTURE AND WORKMANSHIP) |
- |
|
|
|
| 4 (CONSTRUCTION) |
- |
|
|
|
| 5 (DIMENSIONS AND TOLERANCES) |
- |
|
|
|
| 6 (MASS) |
- |
|
|
|
| 8 (PROTECTIVE COATING) |
- |
|
|
|
|
- |
- - |
| 11130 |
BIS, Western Regional Laboratory (WRL)
| None
| IS 16111 (2013) |
Elastic bandage |
- |
- View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 7.1,7.1.1 (Weight
The weight of the elastic bandage shall be 25 to170 g/m2
.) |
- |
|
|
|
| 7.2
Annex A (Stretch Length and Extensibility :
The extensibility of elastic bandage shall be 65 to 220 percent when tested as described in Annex A) |
- |
|
|
|
| 7.3
Annex B (Regain :
The regain of the test bandage shall be not less than 70 percent when tested as described in Annex B) |
- |
|
|
|
| 5 (DIMENSIONS AND TOLERANCES) |
- |
|
|
|
| 5 a)
Cl.9.2 (Width) |
- |
|
|
|
| 5 b) (Stretched Length) |
- |
|
|
|
| 8.2 (Finish) |
- |
|
|
|
|
- |
- - |