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Impact compressive behavior and failure modes of four-step three-dimensional braided composites-based meso-structure model

机译:四步三维编织复合材料细观结构的冲击压缩行为和破坏模式

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摘要

This paper reports a meso-structure model of 3D-braided composites for the analysis of compressive behaviors and failure modes under quasi-static and high-strain rate compression. An idealized geometrical model of 3D-braided composite, which has the same preform meso-structure with four-step 3D-braided composite is established for finite element analyses of compressive behaviors. The compression stress-strain curves obtained from experimental along the in-plane and out-of-plane directions were used to validate the finite element analyses model. The agreement between the experimental and finite element analyses results proves the validity of the finite element analyses model. It was found that the finite element analyses model provides a way to obtain the locations of stress propagation, the 3D stress state and the progressive failure behavior. The numerical results also showed that the fiber tows in the surface and corner area of braided preform play an important role during both quasi-static and high-strain rate loading.
机译:本文报告了一种3D编织复合材料的细观结构模型,用于分析准静态和高应变率压缩下的压缩行为和破坏模式。建立了3D编织复合材料的理想几何模型,该模型具有与四步3D编织复合材料相同的预成型坯细观结构,用于压缩行为的有限元分析。利用沿平面内和平面外方向的实验获得的压缩应力-应变曲线来验证有限元分析模型。实验结果与有限元分析结果的吻合证明了有限元分析模型的有效性。结果发现,有限元分析模型提供了一种获取应力传播位置,3D应力状态和渐进破坏行为的方法。数值结果还表明,在预静态和高应变速率加载过程中,编织预制棒表面和拐角区域的纤维束起着重要作用。

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