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Sub critical crack advance vs. impact fracture on high impact polystyrene with different second phase volume contents and structures

机译:具有不同第二相体积含量和结构的高冲击聚苯乙烯的亚临界裂纹发展与冲击断裂

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摘要

Also for polymers, many fractures in service occurs after a period in which an existing crack has propagated in a sub-critical manner, while the laboratory tests are mainly concentrated on impact fractures. Aim of this paper is then to investigate the sub critical fracture in some high impact polystyrene (HIPS) materials with different second phase volume fraction and particle size and to compare it with the outcomes of impact Fracture Mechanics experiments. Large differences in the results of the two mechanical test procedures are evidence: the materials behavior is then examined for the structural point of view and an interesting case of interfacial failure, which disappears at high strain rate, is attested on some HIPSs by means of different techniques, i.e. electron microscopy, nuclear magnetic resonance spectroscopy and dynamic mechanical spectroscopy, indicating that the slow crack fracture behavior can be influenced by parameters that do not affect ordinary mechanical tests.
机译:同样对于聚合物,在使用中的裂缝以次临界方式扩展一段时间后会发生许多使用中的裂缝,而实验室测试主要集中在冲击裂缝上。然后,本文的目的是研究某些具有不同第二相体积分数和粒径的高冲击聚苯乙烯(HIPS)材料的亚临界断裂,并将其与冲击断裂力学实验的结果进行比较。两种机械测试程序的结果存在很大差异:证据:然后从结构的角度检查了材料的性能,并以不同的方式证明了在某些HIPS上有趣的界面破坏情况,这种情况以高应变率消失了。电子显微镜,核磁共振波谱和动态机械波谱等技术表明,慢速裂纹断裂行为可能受到不影响普通机械测试的参数的影响。

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