NANCAR® 1965

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: AidEtk_NANCAR-1965.pdf
PRICE: ​Order Products​ email   sales@su-jiao.com
Wechat: WECHAT
Message
NANCAR® 1965 is a low acrylonitrile butadiene copolymer. It is polymerized at low temperature and contains sufficient antioxidant for normal aging conditions.

NANCAR® 1965 is recommended for use in applications requiring improved low temperature properties, oil resistance, water resistance and anti-metal corrosion. It has superior processing characteristics, fast curing rate, low mold fouling, superior resilience properties and superior flowability.

NANCAR® 1965 is designed for products requiring exposure to extremely low temperatures while maintaining good oil resistance, for instance, aircraft equipment parts and other industrial spare parts.
General Information
Additive
  • Antioxidant
Features
  • Antioxidant
  • Copolymer
  • Fast Cure
  • Good Corrosion Resistance
  • Good Processability
  • High Flow
  • Low to No Water Absorption
  • Oil Resistant
Uses
  • Aircraft Applications
  • Industrial Parts
  • Low Temperature Applications
Forms
  • Pellets
PhysicalNominal ValueUnitTest Method
Specific Gravity 0.940g/cm³
Mooney Viscosity (ML 1+4, 100°C)63MUASTM D1646
Acrylonitrile Content - Bound 20.0%Internal Method
Solubility - in MEK 100%
Stabilizer Non-staining
ThermalNominal ValueUnitTest Method
Heat Loss 0.30%ASTM D5688
HardnessNominal ValueUnitTest Method
Durometer Hardness ASTM D2240
    Shore A 169
    Shore A 268
    Shore A 367
ElastomersNominal ValueUnitTest Method
Tensile Stress ASTM D412
    300% Strain 47.85MPa
    300% Strain 58.34MPa
    300% Strain 68.63MPa
Tensile Strength ASTM D412
    Yield 725.6MPa
    Yield 826.2MPa
    Yield 925.5MPa
Tensile Elongation ASTM D412
    Break 10640%
    Break 11620%
    Break 12590%
Tear Strength 58.8kN/mASTM D624
Compression Set 13(100°C, 70 hr)54%ASTM D395
AgingNominal ValueUnitTest Method
Change in Tensile Strength in Air 14(100°C, 70 hr)-29%ASTM D865
Change in Ultimate Elongation in Air 15(100°C, 70 hr)-52%ASTM D865
Change in Durometer Hardness in Air 16(Shore A, 100°C, 70 hr)5.0ASTM D865
Change in Tensile Strength 17ASTM D471
    100°C, 70 hr, in ASTM #1 Oil -23%
    100°C, 70 hr, in ASTM #3 Oil -58%
Change in Ultimate Elongation 18ASTM D471
    100°C, 70 hr, in ASTM #1 Oil -32%
    100°C, 70 hr, in ASTM #3 Oil -44%
Change in Durometer Hardness 19ASTM D471
    Shore A, 100°C, 70 hr, in ASTM #1 Oil -3.0
    Shore A, 100°C, 70 hr, in ASTM #3 Oil -25
Change in Volume 20ASTM D471
    100°C, 70 hr, in ASTM Oil #1 4.2%
    100°C, 70 hr, in ASTM Oil #3 51%
Note Message
1 .Cured for 60.0 min at 150°C
2 .Cured for 40.0 min at 150°C
3 .Cured for 20.0 min at 150°C
4 .Cured for 20.0 min at 150°C
5 .Cured for 40.0 min at 150°C
6 .Cured for 60.0 min at 150°C
7 .Cured for 60.0 min at 150°C
8 .Cured for 40.0 min at 150°C
9 .Cured for 20.0 min at 150°C
10 .Cured for 20.0 min at 150°C
11 .Cured for 40.0 min at 150°C
12 .Cured for 60.0 min at 150°C
13 .Cured for 60.0 min at 150°C
14 .Cured for 40.0 min at 150°C
15 .Cured for 40.0 min at 150°C
16 .Cured for 40.0 min at 150°C
17 .Cured for 40.0 min at 150°C
18 .Cured for 40.0 min at 150°C
19 .Cured for 40.0 min at 150°C
20 .Cured for 40.0 min at 150°C
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