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Progression of failure in fiber-reinforced materials

机译:纤维增强材料的破坏进展

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摘要

Decohesion is an important failure mode associated with fiber-reinforced composite materials. Analysis of failure progression at the fiber-matrix interfaces in fiber-reinforced composite materials is considered using a softening decohesion model consistent with thermodynamic concepts. In this model, the initiation of failure is given directly by a failure criterion. Damage is interpreted by the development of a discontinuity of displacement. The formulation describing the potential development of damage is governed by a discrete deco-hesive constitutive equation. Numerical simulations are performed using the direct boundary element method. Incremental decohesion simulations illustrate the progressive evolution of debonding zones and the propagation of cracks along the interfaces. The effect of decohesion on the macroscopic response of composite materials is also investigated.
机译:脱粘是与纤维增强复合材料相关的重要失效模式。考虑使用与热力学概念一致的软化脱粘模型来分析纤维增强复合材料中纤维-基体界面处的破坏进程。在该模型中,故障的发起直接由故障准则给出。破坏通过位移的不连续性发展来解释。描述损害潜在发展的公式由离散的去粘力本构方程控制。使用直接边界元方法进行数值模拟。增量脱粘模拟说明了脱胶区的逐步发展以及裂纹沿界面的扩展。还研究了脱粘对复合材料宏观响应的影响。

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