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PA66 Leona™  1300G ASAHI JAPAN

414
  • Unit Price:US$ 3,097 /MT
  • Packaging Specification:
    25 KG/PKG
  • Packaging Material:
    Paper bag
  • Supply Quantity:
    245MT
  • Delivery Terms:
    FOB
  • Port of Loading :
    China Main Port
  • Accepted Payment Methods:
    T/T
  • Shipping:
    Negotiate supplier for shipping details

Supplier Information

ASIA PLASTIC EXCHANGE LIMITED

+86 755 ********View
serv********View

For more details, please contact the supplier!

Material Description

  • Material Properties:High rigidityhigh strengthFatigue resistanceAnti creep
  • Application Areas:Electrical fieldElectronic fieldEngine hood partsAutomotive sectorcomponent
  • Color:--
  • Grade:Enhanced level

Material Certification

UL

Technical Data Sheet

otherTest ConditionTest MethodTest Result
characteristic高刚性
Other performanceTest ConditionTest MethodTest Result
Extreme Oxygen IndexASTM D-286323 %
impact performanceTest ConditionTest MethodTest Result
Impact strength of simply supported beam without notchISO 17972 kJ/m²
flammabilityTest ConditionTest MethodTest Result
Extreme Oxygen IndexASTM D286323 %
UL flame retardant rating0.75mmUL 94HB
Basic PerformanceTest ConditionTest MethodTest Result
Water absorption rate湿1.7 %
mechanical propertiesTest ConditionTest MethodTest Result
Elongation at Break干(湿)ASTM D-6383(5) %
Rockwell hardness干(湿)ASTM D-785120(112) R scale
Impact strength of cantilever beam gap干(湿)ASTM D-256127(147) J/m
Taber abraser1000CyclesASTM D1044-- mg
bending strength23°CISO 178275 Mpa
flexural coefficient干(湿)ASTM D-7909.3(6.3) GPa
Rockwell hardness干(湿)ASTM D-78596(75) M Scale
bending strength干(湿)ASTM D-790289(216) Mpa
tensile strength干(湿)ASTM D-638186(132) Mpa
Bending modulusASTM D790/ISO 1789320(MPa) kg·cm/cm(J/M)ft·lb/in
Tensile modulus23°CISO 527-210000 Mpa
tensile strengthASTM D638186 Mpa
tensile strengthBreak,23°CISO 527-2190 Mpa
elongationBreakASTM D6383.0 %
Tensile strainBreak,23°CISO 527-23.0 %
Bending modulusASTM D7909300 Mpa
Bending modulus23°CISO 1789000 Mpa
bending strengthASTM D790289 Mpa
Rockwell hardnessASTM D785M96
bending strengthASTM D790/ISO 178289(MPa) kg·cm/cm(J/M)ft·lb/in
thermal performanceTest ConditionTest MethodTest Result
Hot deformation temperature0.45MPa,UnannealedASTM D648260 °C
thermal conductivity0.30 W/m/K
specific heat1590 J/kg/°C
Linear coefficient of thermal expansionMDASTM D6963E-05 cm/cm/°C
Hot deformation temperature1.8MPa,UnannealedISO 75-2/A250 °C
Hot deformation temperature1.8MPa,UnannealedASTM D648250 °C
Hot deformation temperature0.45MPa,UnannealedISO 75-2/B265 °C
Hot deformation temperature0.46MPa,干ASTM D-648260 °C
specific heat1590 J/(kg.k)
thermal conductivity0.3 W/(m.K)
Hot deformation temperature1.82MPa,干ASTM D-648250 °C
Combustibility (rate)UL 94HB
Hot deformation temperatureHDTASTM D648/ISO 75250 ℃(℉)
UL flame retardant ratingUL 94HB
Linear coefficient of thermal expansionASTM D-6963 ×10-5/K
Linear coefficient of thermal expansionASTM D696/ISO 113593 mm/mm.℃
Physical propertiesTest ConditionTest MethodTest Result
Shrinkage rateTDInternal Method0.90 %
Shrinkage rateMDInternal Method0.40 %
Shrinkage rate旭化成方法0.4/0.9 %
Wear factor湿ASTM D-104415 ×10-6kg/1000times
densityASTM D792/ISO 11831.39
Shrinkage rateASTM D9550.4-0.9 %
Water absorption rateASTM D570/ISO 621.7 %
Shrinkage rate吸水率(Saturation,23°C)Internal Method-- %
Water absorption rateEquilibrium,23°C,50%RHISO 62-- %
Electrical performanceTest ConditionTest MethodTest Result
Volume resistivity23°CIEC 600931E+15 ohms·cm
Compared to the anti leakage trace index3.00mmIEC 60112PLC 0
Dielectric strengthIEC 60243-128 KV/mm
Dielectric strengthASTM D14928 KV/mm
Volume resistivityASTM D2571E+15 ohms·cm
Surface resistivityIEC 600931E+15 ohms
Surface resistivityASTM D2571E+15 ohms
Arc resistanceASTM D495/IEC 60112124
hardnessTest ConditionTest MethodTest Result
Rockwell hardnessR-SaleISO 2039-2120
Rockwell hardnessM-SaleISO 2039-296
Rockwell hardnessR-SaleASTM D785120
Rockwell hardnessM-SaleASTM D78596
IMPORTANT NOTES: Plas.com collected the data in the data sheet from the material manufacturers. Plas.com makes the best effort to improve the accuracy of the data, but has no responsibility for the data. We strongly recommend verifying the validity of the data with the material manufacturers before making a final decision.