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Tensile failure in fiber reinforced ceramic matrix composites

机译:纤维增强陶瓷基复合材料的拉伸破坏

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The newly derived relationship between the closure traction and the crack opening displacement by the modified shear-lag model is used to investigate the tensile failure behaviors of unidirectional fiber reinforced ceramics. The critical stress for matrix cracking and the critical stress to fracture the fiber are calculated for various crack configurations. Then, the failure of composite initiates as the applied stress exceeds the smaller of the matrix cracking stress and the fiber fracture stress. The differences of results between the present analysis and Marshall and Cox are discussed. Finally, the possible tensile failure modes and the transition conditions between different failure modes are summarized in this paper.
机译:利用修正的剪切滞后模型,得出了闭合牵引力与裂纹张开位移之间的最新关系,以研究单向纤维增强陶瓷的拉伸破坏行为。计算了各种裂纹形态下基体开裂的临界应力和纤维断裂的临界应力。然后,当施加的应力超过基体破裂应力和纤维断裂应力中的较小者时,复合材料的破坏就开始了。讨论了当前分析与Marshall和Cox之间的结果差异。最后,总结了可能的拉伸破坏模式以及不同破坏模式之间的过渡条件。

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