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Progressive damage and nonlinear analysis of 3D four-directional braided composites under unidirectional tension

机译:单向拉伸作用下3D四向编织复合材料的渐进损伤和非线性分析

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摘要

A representative volume cell (RVC) is chosen to analyze the progressive damage behavior of 3D four-directional braided composites with large braid angle subjected to uniaxial tension. An anisotropic damage model is established by Murakami-Ohno damage theory. A new damage evolvement model is proposed, which is controlled by material fracture energy of braided composites constituents and equivalence displacements. According to the different damage modes (yarn transverse tension, compression and shear; yarn longitudinal tension and compression; matrix cracking), the different damage states and progressive damage of the braided composite are obtained. The numerical results show that the main failure modes of the braided composites are transverse tension, shear breakage of yarns and matrix cracking, which are in good agreement with the relevant experimental results in some literatures.
机译:选择一个有代表性的体积单元(RVC)来分析具有大编织角的3D四向编织复合材料的渐进式损伤行为,该复合材料受到单轴拉伸。村上大野的损伤理论建立了各向异性损伤模型。提出了一种新的损伤演化模型,该模型由编织复合材料的材料断裂能和当量位移控制。根据不同的破坏方式(纱线横向拉伸,压缩和剪切;纱线纵向拉伸和压缩;基体开裂),得出编织复合材料的不同破坏状态和渐进破坏。数值结果表明,编织复合材料的主要破坏方式为横向拉伸,纱线剪切断裂和基体开裂,这与一些文献的相关实验结果吻合良好。

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