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Effect of morphology on fracture toughness of unsaturated polyester-based hybrid nanocomposites

机译:形态对不饱和聚酯基杂化纳米复合材料断裂韧性的影响

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摘要

A hybrid ternary system of thermoplastic/clay/thermoset was synthesized to produce a tougher unsaturated polyester without reducing the glass transition temperature or the elastic modulus. The effects of material characteristics and morphology on fracture toughness were explored. Three synthesis variables control these characteristics: the ratio of methyl methacrylate to styrene used as curing agents, clay loading, and the content of a thermoplastic copolymer of styrene and methyl methacrylate. Specific ranges of these variables were chosen to minimize the effect of the characteristics of each phase on fracture toughness in order to evaluate the influence of morphology. The thermoplastic component contains the vast majority of the silicate layers and forms a second phase, dispersed throughout the continuous thermoset-rich phase. These particles can perturb the propagating crack front causing crack deflection and/or crack pinning where the latter mechanism provides a large increase in fracture toughness of unsaturated polyester. Clay loading is the most important factor on the fracture mechanism by affecting the impenetrability of the thermoplastic-rich particles and the morphology. A non-monotonic correlation between fracture toughness and the ratio of thermoplastic-rich particle radius to interparticle distance is developed allowing for the design of hybrid nanocomposites with desired toughness. (C) 2015 Elsevier Ltd. All rights reserved.
机译:合成了热塑性/粘土/热固性混合三元体系,以生产更坚韧的不饱和聚酯,而又不降低玻璃化转变温度或弹性模量。探讨了材料特性和形态对断裂韧性的影响。三个合成变量控制了这些特性:用作固化剂的甲基丙烯酸甲酯与苯乙烯的比例,粘土的填充量以及苯乙烯与甲基丙烯酸甲酯的热塑性共聚物的含量。选择这些变量的特定范围以最小化每个相的特性对断裂韧性的影响,以便评估形态的影响。热塑性组分包含绝大部分的硅酸盐层,并形成第二相,分散在整个连续的热固性富相中。这些颗粒会扰乱正在传播的裂纹前沿,从而引起裂纹偏转和/或裂纹钉扎,后一种机理使不饱和聚酯的断裂韧性大大提高。通过影响富含热塑性塑料的颗粒的不可渗透性和形态,粘土加载是断裂机理上最重要的因素。开发了断裂韧性与富含热塑性的颗粒半径与颗粒间距离之比之间的非单调相关性,从而允许设计具有所需韧性的杂化纳米复合材料。 (C)2015 Elsevier Ltd.保留所有权利。

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