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Finite element model and experimental analysis of crack–inclusion interaction

机译:裂纹-夹杂物相互作用的有限元模型及实验分析

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AbstractOne of the key requirements for developing tough multiphase blend systems, for example, selecting the type of discrete phases (hard or soft) in a polymer matrix, is the ability to predict the fracture path. Most of these selections rely heavily on prior experience or on intuitive rationale. There are few mathematical guidelines for the materials scientists who are designing new multiphase systems. This article is designed mainly to provide such insight through the development of a theoretical model and through experimental observation. A finite element model has been used to predict the crack velocity and the crack path for a crack that approaches and penetrates a hard or a soft inclusion. A novel experimental approach is then utilized to verify these predictions by introducing hard and soft circular domains in poly(ethylene‐co‐carbon monoxide) specimens by selective photodegradation. © 1993 John WileySons,
机译:摘要开发坚韧的多相共混体系的关键要求之一是能够预测断裂路径,例如,选择聚合物基体中的离散相类型(硬相或软相)。这些选择中的大多数都在很大程度上依赖于先前的经验或直觉理由。对于正在设计新的多相系统的材料科学家来说,很少有数学指南。本文主要通过理论模型的开发和实验观察来提供这种见解。有限元模型已被用于预测接近并穿透硬包体或软包体的裂纹的裂纹速度和裂纹路径。然后,利用一种新的实验方法通过选择性光降解在聚乙烯-一氧化碳样品中引入硬环域和软环域来验证这些预测。© 1993 约翰·威利父子,

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