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Effects of Nonuniform Fiber Geometries on the Microstructural Fracture Behavior of Ceramic Matrix Composites

机译:非均匀纤维几何对陶瓷基复合材料微观结构断裂行为的影响

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摘要

Microstructural fracture behavior of a ceramic matrix composite (CMC) with nonuniformly distributed fibers is studied in the presentation. A comprehensive numerical analysis package to study the effect of nonuniform fiber dimensions and locations on the microstructural fracture behavior is developed. The package starts with an optimization algorithm for generating representative volume element (RVE) models that are statistically equivalent to experimental measurements. Experimentally measured statistical data are used as constraints while the optimization algorithm is running. Virtual springs are utilized between any adjacent fibers to nonuniformly distribute the coated fibers in the RVE model. The virtual spring with the optimization algorithm can efficiently generate multiple RVEs that are statistically identical to each other. Smeared crack approach (SCA) is implemented to consider the fracture behavior of the CMC material in a mesh-objective manner. The RVEs are subjected to tension as well as the shear loading conditions. SCA is capable of predicting different fracture patterns, uniquely defined by not only the fiber arrangement but also the specific loading type. In addition, global stress-strain curves show that the microstructural fracture behavior of the RVEs is highly dependent on the fiber distributions.
机译:在介绍中,研究了陶瓷基质复合材料(CMC)的微观结构断裂行为。开发了一种综合的数值分析包,以研究非均匀纤维尺寸和位置对微观结构骨折行为的影响。包装以优化算法开始,用于生成具有统计上等同于实验测量的代表体元素(RVE)模型。实验测量的统计数据用作优化算法运行时的约束。在任何相邻的纤维之间使用虚拟弹簧,以在RVE模型中不均匀地分布涂覆的纤维。具有优化算法的虚拟弹簧可以有效地生成彼此统计上相同的多个rves。实施涂抹裂缝方法(SCA)以考虑CMC材料以网眼客观方式的断裂行为。兔子受到张力以及剪切载荷条件。 SCA能够预测不同的骨折图案,不仅由纤维布置唯一限定,而且是特定的装载类型。此外,全局应力 - 应变曲线表明,旱地的微观结构断裂行为高度依赖于纤维分布。

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