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首页> 外文期刊>Journal of Materials Science >MULTI-PHASE TOUGHENED EPOXY WITH POLY(ETHER SULPHONE) AND CARBOXYL-TERMINATED BUTADIENE-ACRYLONITRILE RUBBER
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MULTI-PHASE TOUGHENED EPOXY WITH POLY(ETHER SULPHONE) AND CARBOXYL-TERMINATED BUTADIENE-ACRYLONITRILE RUBBER

机译:聚(醚砜)和羧基封端的丁二烯-丙烯橡胶的多相强化环氧树脂

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The structure and properties of ternary blends of epoxy with poly(ether sulphone) (PES) and carboxyl-terminated butadiene-acrylonitrile rubber (CTBN) have been investigated. In these blends, the phase separation occurs in two stages: a macrophase separation during mixing and a microphase separation during curing. At low PES compositions, the RES-rich spherical domains are dispersed. With increasing PES composition, a co-continuous structure develops and, eventually, the phases are inverted. Regardless of structure change, the modulus and yield stress changes with composition just follow the simple rule of mixtures. However, the fracture toughness of these blends exhibits a synergistic effect. Among the various compositions, 5:5 weight ratio of CTBN to PES exhibited the maximum toughness, which was 140% larger than that calculated from the rule of mixtures. The synergism is believed to be due to the bridging by the RES-rich phase followed by a lowering of the yield stress. The lowering of the yield stress can enlarge the process zone size and the amount of plastic dilatation of the matrix. [References: 31]
机译:研究了环氧与聚醚砜(PES)和羧基封端的丁二烯-丙烯腈橡胶(CTBN)的三元共混物的结构和性能。在这些共混物中,相分离分为两个阶段:混合过程中的大相分离和固化过程中的微相分离。在低PES组成下,富含RES的球形域分散。随着PES组成的增加,共连续结构得以发展,最终相被反转。无论结构如何变化,模量和屈服应力随组成的变化都遵循混合物的简单规则。但是,这些共混物的断裂韧性表现出协同作用。在各种组合物中,CTBN与PES的重量比为5:5时表现出最大的韧性,比根据混合物法则计算的最大韧性大140%。据信这种协同作用是由于富RES相的桥接,随后屈服应力的降低。屈服应力的降低可以扩大加工区的尺寸和基质的塑性膨胀量。 [参考:31]

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