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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Analysis on the process of stress transferring in single fiber composite and Monte-Carlo simulation on the process of single-fiber fragmentation
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Analysis on the process of stress transferring in single fiber composite and Monte-Carlo simulation on the process of single-fiber fragmentation

机译:单纤维复合材料中应力传递过程的分析和单纤维断裂过程的蒙特卡洛模拟

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摘要

In this study, the shear-lag model considering the micro-structure “interphase” and the two separate micro-damages, “interphase” debonding and matrix damage, in single fiber composite is developed firstly. So the more actual stress distribution on the fiber fragmentations during the process of stress transferring in single fiber composite is obtained. Then based on the present shear-lag model, the Monte-Carlo simulation for the process of the single-fiber fragmentation is established to predict the number of fiber fragmentation during the process of the test. The predicted result of the simulation is in accordance with the result of the single-fiber fragmentation test. At last, the factors including the statistical parameter of fiber strength distribution, the properties of the matrix and the state of the “interphase” in the single fiber composite, which affect the process of single-fiber fragmentation are analyzed.
机译:在这项研究中,首先建立了考虑了微结构“相间”和两个单独的微损伤(相间剥离和基体损伤)的剪切滞后模型。因此,在单纤维复合材料的应力传递过程中,可以获得更实际的应力分布在纤维碎片上。然后,基于当前的剪切滞后模型,建立了单纤维断裂过程的蒙特卡洛模拟,以预测测试过程中纤维断裂的数量。模拟的预测结果与单纤维破碎测试的结果一致。最后,分析了影响单纤维破碎过程的因素,包括纤维强度分布的统计参数,基体性能和单相复合材料的“中间相”状态。

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