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Interfacial fatigue damage of fiber-reinforced composites by coating the fibers with functionally graded materials

机译:纤维增强复合材料的界面疲劳损伤:在纤维上涂覆功能梯度材料

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摘要

In this paper, the interfacial damage properties of fiber-reinforced composites (FRCs) by coating the fibers with functionally graded materials (FGMs) under a tension-tension cyclic load is investigated. Based on the double shear-lag model and the modified power degradation model, the stresses in both the bonded region and the debonded region are obtained; then the relationships between the parameters (such as the debond rate and the debond length) and the number of cycles are studied using the fundamentals of fracture mechanics. For the purposes of practical application, the effects of the coating gradient as well as the dimensions of the fiber and coating are discussed, and the composite strain is also provided. To validate the analytical results, a numerical analysis is performed by the secondary development of a finite element code.
机译:本文研究了纤维-增强复合材料(FRC)的界面损伤特性,即在拉伸-拉伸循环载荷下用功能梯度材料(FGM)涂覆纤维。基于双剪切滞后模型和修正的功率衰减模型,获得了结合区和分离区的应力。然后使用断裂力学的基础研究参数之间的关系(例如脱胶率和脱胶长度)与循环次数之间的关系。为了实际应用,讨论了涂层梯度的影响以及纤维和涂层的尺寸,并提供了复合应变。为了验证分析结果,通过有限元代码的二次开发进行了数值分析。

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