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首页> 外文期刊>ceramics >MODELLING MATRIX MULTI-CRACKING EVOLUTION OF FIBRE-REINFORCED CERAMIC-MATRIX COMPOSITES CONSIDERING FIBRE FRACTURE
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MODELLING MATRIX MULTI-CRACKING EVOLUTION OF FIBRE-REINFORCED CERAMIC-MATRIX COMPOSITES CONSIDERING FIBRE FRACTURE

机译:考虑纤维骨折的纤维增强陶瓷 - 基质复合材料的模拟矩阵多开裂演化

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In this paper, the matrix multi-cracking evolution offibre-reinforeed ceramic-matrix composites (CMCs) considering fibre fracture have been investigated using the critical matrix strain energy criterion. The shear-lag model combined with the fibre fracture model and fibre/matrix interface debonding criterion is adopted to analyse the fibre and matrix axial stress distribution inside the damaged composite. The effects of the fibre volume fraction, the fibre/matrix interface shear stress, the fibre/matrix interface debonded energy, the fibre Weibull modulus and the fibre strength on the stress-dependent matrix multi-cracking development are discussed. The experimental matrix multi-cracking evolution of the unidirectional SiC/CAS, SiC/CAS-II, SiC/SiC, SiC/Borosilicate and mini-SiC/SiC composites are predicted.
机译:本文采用临界矩阵应变能标准研究了考虑纤维骨折的基质多裂解进化的异解型陶瓷 - 基质复合材料(CMC)。采用剪切滞后模型与纤维裂缝模型和纤维/矩阵界面剥离标准进行分析损坏复合材料内的纤维和基质轴向应力分布。探讨了纤维体积分数,纤维/基质界面剪切应力,纤维/基质界面剥离能量,纤维Weibull模量和纤维强度对应力依赖性矩阵多开裂发展的影响。预测了单向SiC / CAS,SiC / CAS-II,SiC / SiC,SiC /硼硅酸盐和迷你SiC / SiC复合材料的实验基质多开裂演化。

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