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Modeling of Randomly Distributed Coated Fibers in a Ceramic Matrix Composite

机译:陶瓷基复合材料中随机分布涂层纤维的建模

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A numerical model is developed to create a periodic unit cell (PUC) for a randomly distributed coated fibers in a ceramic matrix composite (CMC). Virtual force dispersion algorithm is applied to construct PUCs that have a realistic fiber pattern. Finite element analysis (FEA) is performed on the PUCs with several distinct microstructural features based on the microscopic observation of a CMC specimen. FEA results show that the global stress-strain response of the CMC material is greatly influenced by the fiber distribution pattern and the fracture behavior is dominantly affected by the coatings.
机译:开发了数值模型以在陶瓷矩阵复合物(CMC)中为随机分布的涂覆纤维产生周期性单元电池(PUC)。施加虚拟力色散算法以构建具有现实光纤图案的PUC。基于CMC样本的微观观察,对具有几个不同的微观结构特征的PUCS进行有限元分析(FEA)。 FEA结果表明,CMC材料的全局应力 - 应变响应受到纤维分布图案的大大影响,并且裂缝行为由涂层显着影响。

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