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A continuum damage model for three-dimensional woven composites and finite element implementation

机译:三维机织复合材料的连续损伤模型及有限元实现

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摘要

A continuum damage model for predicting the damage initiation and development in three-dimensional (3D) woven composites is proposed, in which the fiber fracture, inter-fiber fracture and matrix fracture are considered in the level of the fiber yarn and the matrix. A set of damage variables are presented to characterize all the failure modes of the fiber yarn and matrix. The damage initiation and propagation criteria are based on the Puck criteria for the fiber yarn and the paraboloidal yield criterion for the matrix. This continuum damage model is implemented by combining it with the finite element method (FEM). To validate the continuum damage model, the quasi-static tensile experiments of a type of 3D woven composites are carried out, and the tensile failure is predicted by the damage model which agrees well with the experimental results. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出了一种可预测三维(3D)机织复合材料损伤产生和发展的连续损伤模型,该模型在纤维纱线和基体水平上考虑了纤维断裂,纤维间断裂和基体断裂。提出了一组损伤变量来表征纤维纱和基体的所有失效模式。损伤的开始和传播准则是基于纤维纱线的帕克准则和基体的抛物线屈服准则。该连续损伤模型是通过将其与有限元方法(FEM)结合而实现的。为了验证连续性损伤模型,对一种3D机织复合材料进行了准静态拉伸试验,并通过损伤模型预测了拉伸破坏,与实验结果吻合良好。 (C)2015 Elsevier Ltd.保留所有权利。

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