PA46 Stanyl®  TW341-N/00001 DSM HOLAND

268
Unit Price:$11120 USD/MT
Packaging Specification:
25 KG/PKG
Supply Quantity:
48MT
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 2787 3515View
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For more detailed information including pricing, customization, and shipping, please contact supplier.

Material Description
Technical Data Sheet

Material Description

  • Material Properties:Thermal stability wear resistant
  • Application Areas:Automotive Applications Electrical applications
  • Color:--
  • Grade:--

Technical Data Sheet Compare

物理性能Test ConditionTest MethodTest ResultUnit
密度ISO 11831.18g/cm³
收缩率横向流量ISO 294-42.0%
收缩率流量ISO 294-42.0%
吸水率平衡, 23°C, 50% RHISO 623.7%
机械性能Test ConditionTest MethodTest ResultUnit
拉伸模量--ISO 527-23300Mpa
拉伸模量120°CISO 527-2800Mpa
拉伸模量160°CISO 527-2650Mpa
拉伸模量180°CISO 527-2600Mpa
拉伸模量200°CISO 527-2500Mpa
拉伸强度屈服ISO 527-2100Mpa
拉伸强度屈服, 120°CISO 527-250.0Mpa
拉伸强度屈服, 160°CISO 527-240.0Mpa
拉伸强度屈服, 180°CISO 527-235.0Mpa
拉伸强度屈服, 200°CISO 527-230.0Mpa
标称拉伸断裂应变--ISO 527-240%
标称拉伸断裂应变120°CISO 527-2> 50%
标称拉伸断裂应变160°CISO 527-2> 50%
标称拉伸断裂应变180°CISO 527-2> 50%
标称拉伸断裂应变200°CISO 527-2> 50%
弯曲模量--ISO 1783000Mpa
弯曲模量120°CISO 178800Mpa
弯曲模量160°CISO 178600Mpa
简支梁缺口冲击强度-30°CISO 179/1eA4.0kJ/m²
简支梁缺口冲击强度23°CISO 179/1eA10kJ/m²
简支梁无缺口冲击强度-30°CISO 179/1eU无断裂
简支梁无缺口冲击强度23°CISO 179/1eU无断裂
悬壁梁缺口冲击强度-40°CISO 180/1A4.0kJ/m²
悬壁梁缺口冲击强度23°CISO 180/1A10kJ/m²
热性能Test ConditionTest MethodTest ResultUnit
热变形温度0.45 MPa, 未退火ISO 75-2/B280°C
热变形温度1.8 MPa, 未退火ISO 75-2/A190°C
熔融温度ISO 11357-3295°C
线性热膨胀系数流动ISO 11359-28.5E-5cm/cm/°C
线性热膨胀系数横向ISO 11359-21.1E-4cm/cm/°C
Thermal Index - 5000 hrIEC 60216152°C
电气性能Test ConditionTest MethodTest ResultUnit
体积电阻率IEC 600931.0E+15ohms·cm
介电强度IEC 60243-125KV/mm
相对电容率100 HzIEC 602503.90
相对电容率1 MHzIEC 602503.60
漏电起痕指数IEC 60112400V
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.

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