Modeling and Simulation of Crack Initiation and Growth in Particulate Composites

Y. Kwon, J. H. Lee, C. Liu
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引用次数: 13

Abstract

A micro/macromechanical approach was used to model and simulate crack initiation and crack propagation in particulate composite structures. The approach used both the micromechanical and macromechanical analyses in tandem. The micromechanical analysis was based on a simplified micromechanical model and damage mechanics at the micro-level, and the macromechanical analysis utilized the finite element method. In using these methods, crack initiation and growth in a general shape of composite structure were investigated with an efficient computational effort. It was assumed that a crack initiates and/or propagates when localized damage is saturated. As a result, the crack length was assumed to be the size of the saturated damage zone. Matrix crack initiation and propagation at circular notch tips were simulated using this approach. Modeling and simulation were also conducted for cases of non-uniform particle distribution in particulate composite structures. Predicted results showed a good agreement with the experimental data.
颗粒复合材料裂纹萌生与扩展的建模与仿真
采用微观/宏观力学方法对颗粒复合材料结构中的裂纹萌生和扩展过程进行了模拟。该方法同时使用微观力学和宏观力学分析。细观力学分析基于简化的细观力学模型和微观层面的损伤力学,宏观力学分析采用有限元方法。利用这些方法,以高效的计算量研究了复合材料结构一般形状下的裂纹萌生和扩展。假设当局部损伤达到饱和状态时,裂纹开始产生和/或扩展。因此,假定裂纹长度为饱和损伤区的大小。利用该方法模拟了圆形缺口尖端处基体裂纹的萌生和扩展过程。对颗粒复合材料结构中颗粒分布不均匀的情况进行了建模和仿真。预测结果与实验数据吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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