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Three-dimensional boundary element assessment of a fibre/matrix interface crack under transverse loading

机译:横向载荷作用下纤维/基体界面裂纹的三维边界元评估

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摘要

The macroscopic behaviour of unidirectional fibre-reinforced-composite materials is strongly dependent on the strength of the fibre/matrix adhesion. The stress concentrations around the fibres lead to micro-crack initiation, which will grow along a ply to become a complete transverse crack. In this paper a boundary element methodology for the three-dimensional analysis of bimaterial interface cracks is presented. Fracture mechanics parameters, namely J-integral and stress intensity factors, are computed along the crack front using the Energy Domain Integral and the M_1-integral methodologies. The devised numerical tool is employed to analyse the problem of a fibre/matrix interface crack under transverse loading in order to assess the three-dimensional character of the problem, and to evaluate the representatives of the results obtained from two-dimensional models. Obtained results show the key role played by the relative elastic properties of the fibre, the matrix and the laminate on the state of mixed mode fracture.
机译:单向纤维增强复合材料的宏观行为在很大程度上取决于纤维/基质粘合的强度。纤维周围的应力集中会导致微裂纹的产生,该裂纹会沿着层板增长,从而形成完整的横向裂纹。本文提出了一种用于双材料界面裂纹三维分析的边界元方法。断裂力学参数,即J积分和应力强度因子,是使用Energy Domain积分和M_1积分方法沿裂纹前沿计算的。利用设计的数值工具分析横向载荷作用下的纤维/基体界面裂纹问题,以评估问题的三维特征,并评估从二维模型获得的结果的代表性。所得结果表明,纤维,基体和层压材料的相对弹性对混合模式断裂状态起着关键作用。

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