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Successively refined models for crack tip plasticity in polymer blends

机译:逐步完善的聚合物共混物裂纹尖端可塑性模型

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This paper is concerned with a comparative study of different, partly complementary micromechanical models for crack tip plasticity in polymer-rubber blends. It is experimentally well established that interspersion of micron-scale rubber particles into a polymer matrix can lead to a significantly enhanced toughness of the material. The last two decades have witnessed growing consensus about the underlying mechanisms: particle cavitation, void growth, crazing, and shear yielding. Cavitation of the particles followed by massive shear yielding of the matrix and the resulting dissipation of energy is believed to give blends their improved toughness. At the very microlesvel, i.e. at length scales of the order of the micron-sized rubber particles, the key damage processes are well identified and largely understood. Their effect on the macroscopic scale may well be captured in a homogenized sense by continuum models, e.g. of the Gurson-type when focusing on void growth. However, at the scale of a crack, a complete and tractable model incorporating all relevant deformation mechanisms is not yet available. On the one hand, strong gradients of the stress fields violate the assumption of a sufficiently homogeneous material for a continuum representation to be valid, while on the other hand the length scale involved is too large in practice to model all particles individually. Therefore, in this paper several models for crack-tip plasticity in blends are combined and compared. Although none of the models introduced pretends to be the final answer, they all shed some light on parts of the solution.
机译:本文涉及对聚合物-橡胶共混物中裂纹尖端塑性的不同,部分互补的微力学模型的比较研究。实验上已经很好地证明,微米级橡胶颗粒散布到聚合物基体中可以导致材料的韧性显着提高。在过去的二十年中,人们对以下基本机理达成了越来越多的共识:颗粒空化,空隙增长,开裂和剪切屈服。据信颗粒的空化,接着是基质的大量剪切屈服,以及由此产生的能量耗散,赋予了共混物其改进的韧性。在非常微小的水平上,即在微米级橡胶颗粒数量级的长度尺度上,关键损坏过程得到了很好的识别并得到了广泛的理解。它们对宏观尺度的影响很可能被连续模型,例如均匀模型,以均质的意义捕获。专注于空洞生长时的“ Gurson”型但是,在裂缝的规模上,尚无法获得包含所有相关变形机制的完整且易于处理的模型。一方面,应力场的强梯度违反了对于连续表示有效的足够均匀的材料的假设,而另一方面,所涉及的长度尺度在实践中太大,无法单独对所有粒子建模。因此,本文将几种共混物中裂纹尖端塑性的模型进行了组合和比较。尽管介绍的所有模型都没有假装是最终的答案,但它们都为解决方案的某些部分提供了一些启示。

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