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POE-g-MAH 对PA66 共混体系性能的影响
引用本文:王小黎.POE-g-MAH 对PA66 共混体系性能的影响[J].宇航材料工艺,2013,43(1):72-77.
作者姓名:王小黎
作者单位:1. 航天材料及工艺研究所,北京,100076
2. 北京化工大学塑料机械与工程研究所,北京,100029
摘    要:讨论了POE-g-MAH含量、MAH接枝率对PA66/POE/POE-g-MAH共混物性能的影响.当POE-g-MAH含量为10wt%~15wt%时,PA66/POE-g-MAH共混物发生脆-韧转变;随POE-g-MAH含量增加,共混物的缺口冲击强度、断裂伸长率显著增大,拉伸强度、弯曲强度、弯曲模量、熔体流动速率、吸水率均明显下降.当POE-g-MAH接枝率为0.05wt%~0.2wt%时,PA66/POE/POE-g-MAH共混物发生脆-韧转变;随POE-g-MAH接枝率增加,共混物的缺口冲击强度、断裂伸长率增大,拉伸强度、弯曲强度、弯曲模量、吸水率变化不大,熔体流动速率下降.SEM照片和Molau实验表明,POE-g-MAH对PA66具有显著的增容增韧效果.

关 键 词:PA66  POE-g-MAH  增容  增韧

Effect of POE-g-MAH on Properties of PA66 Blends
Wang Xiaoli , Tang Wei , Wang Kejian.Effect of POE-g-MAH on Properties of PA66 Blends[J].Aerospace Materials & Technology,2013,43(1):72-77.
Authors:Wang Xiaoli  Tang Wei  Wang Kejian
Institution:1 Aerospace Research Institute of Materials & Processing Technology,Beijing 100076)(2 Institute of Plastic Machinery and Engineering,Beijing University of Chemical Technology,Beijing 100029)
Abstract:The influence of POE-g-MAH content and MAH grafting rate on the blends of PA66/ POE/ POE-g-
MAH were investigated. The brittle-ductile transition occurred when the content of POE-g-MAH changed from
10wt% to 15wt% in the blends. With increase of the content of POE-g-MAH, the notched impact strength and the
elongation at break of the blends increased significantly, while the tensile strength, bending strength and modulus declined,
the melt flow rate and the water absorption decreased. While in PA66/ POE/ POE-g-MAH blends, the brittle
-ductile transition occurred when the graft rate of POE-g-MAH changed from 0. 05wt% to 0. 2wt%. With the increase
of graft rate of POE-g-MAH, the notched impact strength and the elongation at break of blends increased,
while the tensile strength, bending strength and modulus, the water absorption did not change obviously, and the melt
flow rate decreased. SEM photographs and Molau compatibility experiment showed that, POE-g-MAH had a significant
effect both on the compatibility and toughness on PA66.
Keywords:PA66  POE-g-MAH  Compatibility  Toughening
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