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Micromechanical Modeling of Fiber-Reinforced Composites with Statistically Equivalent Random Fiber Distribution

机译:具有统计等效随机纤维分布的纤维增强复合材料的微机械建模

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摘要

Modeling the random fiber distribution of a fiber-reinforced composite is of great importance for studying the progressive failure behavior of the material on the micro scale. In this paper, we develop a new algorithm for generating random representative volume elements (RVEs) with statistical equivalent fiber distribution against the actual material microstructure. The realistic statistical data is utilized as inputs of the new method, which is archived through implementation of the probability equations. Extensive statistical analysis is conducted to examine the capability of the proposed method and to compare it with existing methods. It is found that the proposed method presents a good match with experimental results in all aspects including the nearest neighbor distance, nearest neighbor orientation, Ripley’s K function, and the radial distribution function. Finite element analysis is presented to predict the effective elastic properties of a carbon/epoxy composite, to validate the generated random representative volume elements, and to provide insights of the effect of fiber distribution on the elastic properties. The present algorithm is shown to be highly accurate and can be used to generate statistically equivalent RVEs for not only fiber-reinforced composites but also other materials such as foam materials and particle-reinforced composites.
机译:对纤维增强复合材料的随机纤维分布进行建模对于研究材料在微观尺度上的渐进破坏行为至关重要。在本文中,我们开发了一种新算法,可根据实际材料的微观结构生成具有统计等效纤维分布的随机代表体积元素(RVE)。现实的统计数据被用作新方法的输入,该新方法通过实施概率方程式进行存档。进行了广泛的统计分析,以检验所提出方法的功能并将其与现有方法进行比较。发现所提出的方法在包括最近邻距离,最近邻方位,Ripley的K函数和径向分布函数在内的所有方面都与实验结果良好匹配。提出了有限元分析方法,以预测碳/环氧树脂复合材料的有效弹性性能,验证生成的随机代表性体积元素,并提供有关纤维分布对弹性性能影响的见解。该算法被证明是高度精确的,并且不仅可以用于生成统计等效的RVE,不仅可以用于纤维增强复合材料,还可以用于其他材料,例如泡沫材料和颗粒增强复合材料。

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