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首页> 外文期刊>International Journal of Fatigue >Micromechanical crack growth-based fatigue damage in fibrous composites
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Micromechanical crack growth-based fatigue damage in fibrous composites

机译:纤维复合材料中基于微机械裂纹扩展的疲劳损伤

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A partially debonded fibre can be analysed as a 3-D mixed Mode fracture case, for which the fibre-matrix detachment growth - leading to a progressive loss of the composite's bearing capacity - can be assessed through classical fatigue crack propagation laws. In the present research, the above mentioned case is firstly examined from the fracture mechanics theoretical point of view, and the effects of the stress field in the matrix material on the Stress Intensity Factors - SIFs - (associated to the crack representing the fibre-matrix detachment) are taken into account. Fatigue effects on the matrix material are accounted for by means of a mechanical damage, quantified through a Woehler-based approach. A damage scalar parameter aimed at measuring the debonding severity during fatigue process is also introduced. Finally, some numerical simulations are performed, and the obtained results are compared with experimental data found in the literature.
机译:可以将部分脱粘的纤维分析为3-D混合模式断裂案例,对于这种情况,可以通过经典的疲劳裂纹扩展定律评估纤维-基体的脱离增长-导致复合材料承载能力的逐渐降低。在本研究中,首先从断裂力学理论的角度研究了上述情况,以及基体材料中的应力场对应力强度因子-SIFs(与代表纤维基体的裂纹有关)的影响。分离)。通过基于Woehler方法量化的机械损伤来解决对基体材料的疲劳影响。还引入了旨在测量疲劳过程中的剥离强度的损伤标量参数。最后,进行了一些数值模拟,并将获得的结果与文献中的实验数据进行了比较。

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