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Micromechanical analysis of off-axis loading of fiber reinforced composites with imperfect interface bonding

机译:界面粘结不完善的纤维增强复合材料离轴载荷的微力学分析

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摘要

A micromechanical method based on generalized method of cells for investigating elastic and plastic response of composites subjected to off-axis loading is presented. Through implementing the formulas of interfacial displacement into average displacement continuity, the relationship between sub-cell strain rate and macro-strain rate is constructed in the condition of composites with wake interface bonding. On this basis, microstructure parameters, such as fiber cross-section shape, fiber volume fraction, are considered. Numerical results indicate that increasing fiber volume fraction will decrease the flow stress of composites in the condition of weak interfacial bonding. While the tendency is independent on fiber cross-section shape. Also, the effect of off-axis tensile strength tends to be weakened with the increase of off-axis angle in the condition of weak interfacial bonding. However, square fiber always provides more flow stress than circular fiber in both perfect interfacial binding and weak interfacial bonding.
机译:提出了一种基于广义单元法的微机械方法,研究了轴外载荷作用下复合材料的弹性和塑性响应。通过将界面位移公式转化为平均位移连续性,在具有尾气界面键合的复合材料条件下,建立了亚单元应变率与宏观应变率之间的关系。在此基础上,考虑了微观结构参数,例如纤维横截面形状,纤维体积分数。数值结果表明,在弱界面粘结条件下,纤维体积分数的增加将降低复合材料的流动应力。虽然趋势与纤维横截面形状无关。而且,在弱界面粘结的情况下,随着轴外角的增加,轴外拉伸强度的影响趋于减弱。但是,在完美的界面粘合和弱的界面粘合中,方形纤维总是比圆形纤维提供更大的流动应力。

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