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Damage healing ability of a shape-memory-polymer-based particulate composite with small thermoplastic contents

机译:具有少量热塑性含量的形状记忆聚合物基颗粒复合材料的破坏愈合能力

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摘要

The purpose of this study is to investigate the potential of a shape-memory-polymer (SMP)-based particulate composite to heal structural-length scale damage with small thermoplastic additive contents through a close-then-heal (CTH) self-healing scheme that was introduced in a previous study (Li and Uppu 2010 Comput. Sci. Technol.70 141927). The idea is to achieve reasonable healing efficiencies with minimal sacrifice in structural load capacity. By first closing cracks, the gap between two crack surfaces is narrowed and a lesser amount of thermoplastic particles is required to achieve healing. The particulate composite was fabricated by dispersing copolyester thermoplastic particles in a shape memory polymer matrix. It is found that, for small thermoplastic contents of less than 10%, the CTH scheme followed in this study heals structural-length scale damage in the SMP particulate composite to a meaningful extent and with less sacrifice of structural capacity.
机译:这项研究的目的是研究一种基于形状记忆聚合物(SMP)的颗粒复合材料通过“先固化后自修复(CTH)”自修复方案修复具有少量热塑性添加剂含量的结构长度尺度损伤的潜力。在先前的研究中对此进行了介绍(Li and Uppu 2010 Comput。Sci。Technol.70 141927)。这个想法是在结构载荷能力上以最小的牺牲实现合理的愈合效率。通过首先闭合裂纹,两个裂纹表面之间的间隙变窄,并且需要较少量的热塑性颗粒来实现愈合。通过将共聚酯热塑性颗粒分散在形状记忆聚合物基质中来制造颗粒复合材料。已发现,对于小于10%的少量热塑性塑料,本研究遵循的CTH方案可在一定程度上治愈SMP颗粒复合材料中的结构长度尺寸损伤,并减少了结构能力的损失。

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