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XFEM Analysis of the Effect of Fiber Volume Fraction on Crack Propagation in Fiber Reinforced Ceramic Matrix Composites

机译:纤维体积分数对纤维增强陶瓷基复合材料裂纹扩展影响的XFEM分析

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The mechanism of crack propagation near the interphase plays an important role in the failure procedure of ceramic matrix composites. The aim of this paper is to examine the effect of fiber volume fraction on the crack propagation. A three-phase unit-cell model was used to describe the micro-structure of fiber reinforced ceramic matrix composites. The interphase between fiber and matrix was modelled as a finite-thickness cylinder around the fiber. The extended finite element method (XFEM) was applied to simulate the crack initiation and propagation in the unit-cell. Without the definition of crack path priori, the approach based on XFEM can simulate the arbitrary path of cracks growing in the composites. The crack patterns and stress-strain responses for different fiber volume fraction were compared. In particular, the penetration/deflection mechanism when the matrix cracks grow to the interphase was analysed and compared. The results show that the initiation and propagation of the secondary crack/cracks were significantly influenced by the fiber volume fraction.
机译:界面附近的裂纹扩展机制在陶瓷基复合材料的失效过程中起着重要作用。本文旨在研究纤维体积分数对裂纹扩展的影响。采用三相单胞模型描述了纤维增强陶瓷基复合材料的微观结构。纤维和基体之间的界面被模拟为纤维周围的有限厚度圆柱体。采用扩展有限元法(XFEM)模拟了裂纹在单胞中的萌生和扩展。基于XFEM的方法不需要预先定义裂纹路径,可以模拟复合材料中裂纹扩展的任意路径。比较了不同纤维体积分数下的裂纹形态和应力应变响应。特别是,分析和比较了基体裂纹扩展到界面时的穿透/偏转机制。结果表明,纤维体积分数对二次裂纹的萌生和扩展有显著影响。

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