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Fracture toughness of the epoxy/ATPEI-CTBN-ATPEI triblock copolymer/NMA blend system

机译:环氧/ ATPEI-CTBN-ATPEI三嵌段共聚物/ NMA共混体系的断裂韧性

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摘要

The shortcoming of epoxy resin is the brittleness of this material though it shows excellent chemical, mechanical and electric properties. To improve fracture toughness of epoxy resin, rubbery materials that show high values in toughness but low values in glass transition temperature and mechanical properties, and thermoplastics that show high values in thermal and mechanical properties but relatively small increase in toughness were blended with epoxy. ATPEI-CTBN-ATPEI triblock copolymer, which consists of rubbery and thermoplastics blocks, was synthesized, and the triblock copolymer was blended with epoxy resin. The effects of parameters such as contents of the triblock copolymer, cure temperature, and contents of catalyst on the morphology of the blend systems were studied. From 30 wt% of the contents of the triblock copolymer, fracture toughness and impact energy absorption of the blend systems were increased significantly. This was due to the generation of nodular morphology in the system.
机译:环氧树脂的缺点是这种材料的脆性,尽管它具有出色的化学,机械和电性能。为了提高环氧树脂的断裂韧性,将具有高韧性但玻璃化转变温度和机械性能的值低的橡胶状材料,以及具有热和机械性能的值高但韧性的增加相对较小的热塑性塑料与环氧树脂混合。合成了由橡胶和热塑性嵌段组成的ATPEI-CTBN-ATPEI三嵌段共聚物,并将该三嵌段共聚物与环氧树脂共混。研究了三嵌段共聚物的含量,固化温度和催化剂含量等参数对共混体系形态的影响。从三嵌段共聚物的含量的30wt%开始,共混体系的断裂韧性和冲击能量吸收显着增加。这是由于系统中结节形态的产生。

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