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Micromechanics Fatigue Damage Analysis Modeling for Fabric Reinforced Ceramic Matrix Composites

机译:织物增强陶瓷基复合材料的微机械疲劳损伤分析建模

摘要

A micromechanics analysis modeling method was developed to analyze the damage progression and fatigue failure of fabric reinforced composite structures, especially for the brittle ceramic matrix material composites. A repeating unit cell concept of fabric reinforced composites was used to represent the global composite structure. The thermal and mechanical properties of the repeating unit cell were considered as the same as those of the global composite structure. The three-phase micromechanics, the shear-lag, and the continuum fracture mechanics models were integrated with a statistical model in the repeating unit cell to predict the progressive damages and fatigue life of the composite structures. The global structure failure was defined as the loss of loading capability of the repeating unit cell, which depends on the stiffness reduction due to material slice failures and nonlinear material properties in the repeating unit cell. The present methodology is demonstrated with the analysis results evaluated through the experimental test performed with carbon fiber reinforced silicon carbide matrix plain weave composite specimens.
机译:提出了一种微力学分析建模方法,以分析织物增强复合材料结构,特别是脆性陶瓷基材料复合材料的损伤进程和疲劳破坏。织物增强复合材料的重复晶胞概念被用来代表整体复合材料结构。重复单元电池的热和机械性能被认为与整体复合结构的热和机械性能相同。三相微力学,剪切滞后和连续介质断裂力学模型与重复单元中的统计模型集成在一起,以预测复合结构的渐进式损伤和疲劳寿命。整体结构破坏定义为重复单元的载荷能力损失,这取决于由于材料切片破坏和重复单元中的非线性材料特性而导致的刚度降低。通过对碳纤维增强的碳化硅基体平纹编织复合材料样本进行的实验测试评估的分析结果证明了本方法学的有效性。

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    Xue D.; Shi Y.; Min J. B.;

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  • 年度 2013
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