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Micromechanical analysis of composites with fibers distributed randomly over the transverse cross-section

机译:纤维在横截面上随机分布的复合材料的微力学分析

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摘要

A new method to generate the random distribution of fibers in the transverse cross-section of fiber reinforced composites with high fiber volume fraction is presented in this paper. Based on the microscopy observation of the transverse cross-sections of unidirectional composite laminates, hexagon arrangement is set as the initial arrangement status, and the initial velocity of each fiber is arbitrary at an arbitrary direction, the micro-scale representative volume element (RVE) is established by simulating perfectly elastic collision. Combined with the proposed periodic boundary conditions which are suitable for multi-axial loading, the effective elastic properties of composite materials can be predicted. The predicted properties show reasonable agreement with experimental results. By comparing the stress field of RVE with fibers distributed randomly and RVE with fibers distributed periodically, the predicted elastic modulus of RVE with fibers distributed randomly is greater than RVE with fibers distributed periodically.
机译:本文提出了一种新的方法来产生高纤维体积分数的纤维增强复合材料的横截面中的纤维的随机分布。基于对单向复合材料层压板横截面的显微镜观察,将六边形排列设置为初始排列状态,并且每根纤维的初始速度在任意方向上都是任意的,微米级代表体积元素(RVE)通过模拟完美的弹性碰撞建立。结合提出的适合多轴载荷的周期性边界条件,可以预测复合材料的有效弹性。预测的性能与实验结果显示出合理的一致性。通过比较随机分布的纤维的RVE和周期性分布的纤维的RVE的应力场,随机分布的纤维的RVE的预测弹性模量大于周期性分布的纤维的RVE的预测弹性模量。

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