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首页> 外文期刊>International Journal of Damage Mechanics >The Role of Interphase on Micro- to Macroscopic Responses and Prediction for Initiation of Debonding Damage of Glass-Fiber Reinforced Polycarbonate
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The Role of Interphase on Micro- to Macroscopic Responses and Prediction for Initiation of Debonding Damage of Glass-Fiber Reinforced Polycarbonate

机译:相间对微观到宏观响应的作用以及玻璃纤维增​​强聚碳酸酯脱胶损伤的引发预测

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摘要

A computational model based on large-deformation finite element method (FEM) analysis is developed and used to evaluate the interaction between the micro structure and the heterogeneous deformation behavior of ternary composites on micro- to macroscopic scales. To uncover the influence of the plastic interphase layer on the stress-strain behavior of the three-phase system under constant strain-rate loading, the analyses of two different types of polymers with different Poisson's ratios are performed. In particular, we investigate the effects of the interphase on the normal stress at the fiber surface to predict the initiation of glass fiber-polymer matrix debonding damage. An interphase with stiffness well below that of the matrix shows a suitable effect on the micro- to macroscopic deformation behavior and suppresses the initiation of debonding, while an interphase Poisson's ratio between that of the fiber and the matrix is preferable. Furthermore, computational simulation has been performed to clarify the effects of the interphase thickness and fiber volume fraction on the normal stress at the fiber surface. The results obtained using the models suggest the realization of favorable interphase properties for suppressing the initiation of debonding at the fiber surface and improving the functionality of the reinforced polymer.
机译:建立了基于大变形有限元分析的计算模型,并在微观到宏观尺度上评价了三元复合材料的微观结构与非均质变形行为之间的相互作用。为了揭示塑性相间层在恒定应变率载荷下对三相系统应力-应变行为的影响,对两种不同类型具有不同泊松比的聚合物进行了分析。特别是,我们研究了相间对纤维表面法向应力的影响,以预测玻璃纤维-聚合物基体脱胶损伤的开始。刚度远低于基体刚度的相间对微观到宏观的形变表现出适当的效果,并抑制了脱粘的发生,而纤维与基体之间的相间泊松比是优选的。此外,已经进行了计算仿真以阐明相间厚度和纤维体积分数对纤维表面法向应力的影响。使用模型获得的结果表明,实现了良好的相间性能,可抑制纤维表面脱胶的开始并改善增强聚合物的功能。

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