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Tensile Matrix Cracking Behavior of Hi-Nicalon Fiber/Glass matrix Cross-Ply Laminate Composites

机译:Hi-Nicalon纤维/玻璃基质交叉层压复合材料的拉伸基质开裂行为

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摘要

This paper examines the damage process of fiber reinforced glass matrix composites under tensile loading. The tensile damage initiation and growth in BN-coated HI-NICALON SiC fiber reinforced glass matrix cross-ply composites were experimentally clarified by replica observalions. An improved shear-lag model with two major cracks, which penetrate both 0 and 90 degree plies, were used to predict the stress-strain behavior. This model reasonably well predicted the stress-strain curve until matrix cracks in 0 degree ply saturated.
机译:本文考察了纤维增强玻璃基复合材料在拉伸载荷作用下的损伤过程。 BN涂层的HI-NICALON SiC纤维增强玻璃基交叉复合材料的拉伸损伤萌生和生长通过复制观察实验得以阐明。改进的剪切滞后模型具有两个主要裂纹,分别穿透了0度和90度层,被用来预测应力应变行为。该模型合理地预测了应力-应变曲线,直到基体在0度层饱和时开裂为止。

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