NANCAR® 3645

Category: NBR , Acrylonitrile Butadiene Rubber
Manufacturer: Nantex Industry Co., Ltd.
Trademark: NANCAR®
Fillers: -
Ports: Qinzhou, Shekou, Shanghai, Ningbo
Delivery Terms FOB, CIF, DAP, DAT, DDP
PDF: 3n4XRo_NANCAR-3645.pdf
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NANCAR® 3645 is a medium high acrylonitrile butadiene copolymer with good oil resistance. It is polymerized at low temperature and contains sufficient antioxidant for normal aging conditions. It has low Mooney viscosity, superior processing characteristics, fast curing rate, low mold fouling, superior resilience properties and superior flowability.

NANCAR® 3645 is an excellent multi-purpose nitrile elastomer. It may be blended with vinyl resins to produce smooth extrusions and nerve-free sheets. Suggested applications include those in fuel hoses, packings, gaskets, oil seals, other car parts, oil resistant belts, footwear, roll covers and sponge products.
General Information
Additive
  • Antioxidant
Features
  • Antioxidant
  • Copolymer
  • Fast Cure
  • Good Moldability
  • Good Processability
  • High Flow
  • Oil Resistant
  • Resilient
Uses
  • Belts/Belt Repair
  • Blending
  • Footwear
  • Gaskets
  • Hose
  • Seals
  • Sheet
Forms
  • Pellets
PhysicalNominal ValueUnitTest Method
Specific Gravity 0.980g/cm³
Mooney Viscosity ASTM D1646
    ML 1+4, 100°C 174MU
    ML 1+4, 100°C 45MU
Acrylonitrile Content - Bound 36.0%Internal Method
Solubility - in MEK 100%
Stabilizer Non-staining
ThermalNominal ValueUnitTest Method
Heat Loss 0.20%ASTM D5688
HardnessNominal ValueUnitTest Method
Durometer Hardness ASTM D2240
    Shore A, 5 sec 277
    Shore A, 5 sec 376
    Shore A, 5 sec 475
ElastomersNominal ValueUnitTest Method
Tensile Stress ASTM D412
    300% Strain 512.2MPa
    300% Strain 611.7MPa
    300% Strain 710.0MPa
Tensile Strength ASTM D412
    Yield 825.8MPa
    Yield 926.3MPa
    Yield 1026.5MPa
Tensile Elongation ASTM D412
    Break 11550%
    Break 12570%
    Break 13630%
Tear Strength 62.0kN/mASTM D624
Compression Set 14(100°C, 70 hr)55%ASTM D395
AgingNominal ValueUnitTest Method
Change in Tensile Strength in Air 15(100°C, 70 hr)1.0%ASTM D573
Change in Ultimate Elongation in Air 16(100°C, 70 hr)-25%ASTM D573
Change in Durometer Hardness in Air 17(Shore A, 100°C, 70 hr)3.0ASTM D573
Change in Tensile Strength 18ASTM D471
    100°C, 70 hr, in ASTM #1 Oil 1.0%
    100°C, 70 hr, in IRM 903 Oil -23%
Change in Ultimate Elongation 19ASTM D471
    100°C, 70 hr, in ASTM #1 Oil -22%
    100°C, 70 hr, in IRM 903 Oil -30%
Change in Durometer Hardness 20ASTM D471
    Shore A, 100°C, 70 hr, in ASTM #1 Oil 1.0
    Shore A, 100°C, 70 hr, in IRM 903 Oil -8.0
Change in Volume 21ASTM D471
    100°C, 70 hr, in ASTM Oil #1 -0.20%
    100°C, 70 hr, in IRM 903 Oil 12%
Note Message
1 .Uncured
2 .CURED @150°C for 60 mins
3 .CURED @150°C for 40 mins
4 .CURED @150°C for 20 mins
5 .CURED @150°C for 60 mins
6 .CURED @150°C for 40 mins
7 .CURED @150°C for 20 mins
8 .CURED @150°C for 60 mins
9 .CURED @150°C for 40 mins
10 .CURED @150°C for 20 mins
11 .CURED @150°C for 60 mins
12 .CURED @150°C for 40 mins
13 .CURED @150°C for 20 mins
14 .CURED @150°C for 60 mins
15 .CURED@150°C × 40 MINUTES
16 .CURED@150°C × 40 MINUTES
17 .CURED@150°C × 40 MINUTES
18 .CURED@150°C × 40 MINUTES
19 .CURED@150°C × 40 MINUTES
20 .CURED@150°C × 40 MINUTES
21 .CURED@150°C × 40 MINUTES
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