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Progressive Failure Simulation of Notched Tensile Specimen for Triaxially-Braided Composites

机译:三轴拉伸复合材料缺口拉伸试样的渐进破坏模拟

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摘要

The mechanical characterization of textile composites is a challenging task, due to their nonuniform deformation and complicated failure phenomena. This article introduces a three-dimensional mesoscale finite element model to investigate the progressive damage behavior of a notched single-layer triaxially-braided composite subjected to axial tension. The damage initiation and propagation in fiber bundles are simulated using three-dimensional failure criteria and damage evolution law. A traction–separation law has been applied to predict the interfacial damage of fiber bundles. The proposed model is correlated and validated by the experimentally measured full field strain distributions and effective strength of the notched specimen. The progressive damage behavior of the fiber bundles is studied by examining the damage and stress contours at different loading stages. Parametric numerical studies are conducted to explore the role of modeling parameters and geometric characteristics on the internal damage behavior and global measured properties of the notched specimen. Moreover, the correlations of damage behavior, global stress–strain response, and the efficiency of the notched specimen are discussed in detail. The results of this paper deliver a throughout understanding of the damage behavior of braided composites and can help the specimen design of textile composites.
机译:纺织品复合材料的机械表征是一项艰巨的任务,因为它们的变形不均匀且故障现象复杂。本文介绍了三维中尺度有限元模型,以研究带缺口的单层三轴编织复合材料在轴向拉伸下的渐进损伤行为。使用三维破坏准则和损伤演化定律模拟纤维束中的损伤萌生和传播。牵引分离法已应用于预测纤维束的界面损伤。通过实验测量的全场应变分布和带缺口样品的有效强度,对提出的模型进行了关联和验证。通过检查不同载荷阶段的损伤和应力轮廓来研究纤维束的渐进损伤行为。进行了参数数值研究,以探索建模参数和几何特征对缺口试样的内部损伤行为和整体测量特性的作用。此外,还详细讨论了损伤行为,整体应力-应变响应以及带缺口试样的效率之间的关系。本文的结果全面了解了编织复合材料的破坏行为,并可以帮助设计纺织品复合材料的标本。

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