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The Effect of Interface Damage on the Microbuckling of Unidirectional Fiber-Reinforced Composites

机译:界面损伤对单向纤维增强复合材料微磁带的影响

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Fiber microbuckling is the primary failure mechanism in unidirectional fiber-reinforced composites under compression. Due to processing or service conditions, damage (e.g., microcracks) exists at fiber/matrix interfaces. The effect of damage on the microbuckling of fibers is investigated in the present study. Based on the micromechanics analysis, the damage at interfaces is modeled as a linear spring against interface sliding, and the spring constant depends on the damage level. It is established that the critical strain for fiber microbuckling is relatively insensitive to the interface damage, but increases rapidly with the fiber volume fraction.
机译:纤维微晶是压缩下单向纤维增强复合材料中的初级故障机理。由于处理或服务条件,纤维/矩阵接口存在损坏(例如,微裂纹)。在本研究中研究了损伤对纤维微纤维的影响。基于微机械分析,接口处的损坏被建模为与界面滑动的线性弹簧,弹簧常数取决于损坏水平。建立对纤维微晶的临界应变对界面损坏相对不敏感,但随着纤维体积分数迅速增加。

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