首页> 外文期刊>The Journal of the Textile Institute >Multi-scale structure finite element analyses of damage behaviors of multi-axial warp-knitted composite materials subjected to quasi-static and high strain rate compressions
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Multi-scale structure finite element analyses of damage behaviors of multi-axial warp-knitted composite materials subjected to quasi-static and high strain rate compressions

机译:多轴经编复合材料准静态和高应变速率压缩损伤特性的多尺度结构有限元分析

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摘要

This paper reports a multi-scale structure finite element modeling scheme to analyze the damage behaviors of biaxial multi-layer warp-knitted composite materials subjected to quasi-static and high strain rate compressions. The multi-scale structure model includes: (1) a micro/meso/macro structure model with periodic boundary conditions for homogenizing the heterogeneous fiber/resin system into unit cells, and (2) a macroscopic rate-dependent plasticity model for the knitting composite materials combined with critical damage area failure theory, which accounts for the stiffness degradation and failure strength of the material. The finite element results from the model provide the locations of stress propagation, the stress distribution, and the progressive failure behavior within the biaxial multi-layer warp-knitted composite materials. The effects of the knitted yarns and the element number sensitivity of the macro-scale model have also been discussed.
机译:本文提出了一种多尺度结构有限元建模方案,以分析双轴多层经编复合材料在准静态和高应变率压缩下的损伤行为。多尺度结构模型包括:(1)具有周期性边界条件的微观/中观/宏观结构模型,用于将非均质纤维/树脂系统均质化为单位晶胞;(2)编织复合材料的宏观速率依赖性塑性模型材料与临界损伤区域破坏理论相结合,该理论解释了材料的刚度下降和破坏强度。该模型的有限元结果提供了双轴多层经编复合材料内应力传播的位置,应力分布和渐进破坏行为。还讨论了针织纱的影响和宏观模型的元素数量敏感性。

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