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首页> 外文期刊>Journal of Composite Materials >Theoretical model of fiber debonding and pull-out in unidirectional hybrid-fiber-reinforced brittle-matrix composites
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Theoretical model of fiber debonding and pull-out in unidirectional hybrid-fiber-reinforced brittle-matrix composites

机译:单向杂化纤维增强脆性基复合材料中纤维脱粘与拔出的理论模型

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摘要

A theoretical model is developed to study the fiber debonding and pull-out in hybrid-fiber-reinforced brittle-matrix composites. By adopting the shear-lag model which includes the matrix shear deformation in the bonding region and friction in the debonding region, the relationship between the pull-out length and the debonding length of fiber is obtained by treating the interface debonding as a particular crack propagation problem along the interface. The interface debonding criterion for the hybrid-fiber-reinforced composites is obtained by applying the energy release rate relation in an interface debonding process. The analysis is applied to hybrid carbon/glass fiber-reinforced epoxy composites, and the theoretical results have a reasonable agreement with the experimental data. The hybrid effect is studied and the effect of material parameters is discussed.
机译:建立了一个理论模型来研究混合纤维增强的脆性基体复合材料中的纤维脱粘和拔出。通过采用剪切-滞后模型,该模型包括结合区域中的基体剪切变形和剥离区域中的摩擦,通过将界面剥离作为特定的裂纹扩展来处理,从而得出纤维的拉出长度与剥离长度之间的关系。界面上的问题。杂化纤维增强复合材料的界面剥离标准是通过在界面剥离过程中应用能量释放速率关系来获得的。该分析适用于碳/玻璃纤维混合环氧复合材料,理论结果与实验数据具有合理的一致性。研究了混合效应,并讨论了材料参数的影响。

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