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A micro-meso-model of intra-laminar fracture in fiber-reinforced composites based on a discontinuous Galerkin/cohesive zone method

机译:基于不连续Galerkin /内聚区法的纤维增强复合材料层内断裂的微观模型

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摘要

The recently developed hybrid discontinuous Galerkin/extrinsic cohesive law framework is extended to the study of intra-laminar fracture of composite materials. Toward this end, micro-volumes of different sizes are studied. The method captures the debonding process, which is herein proposed to be assimilated to a damaging process, before the strain softening onset, and the density of dissipated energy resulting from the damage (debonding) remains the same for the different studied cell sizes. Finally, during the strain softening phase a micro-crack initiates and propagates in agreement with experimental observations. We thus extract a resulting mesoscale cohesive law, which is independent on the cell sizes, using literature methods. © 2013 Elsevier Ltd.
机译:最近开发的混合不连续伽勒金/外在内聚法则框架扩展到复合材料层内断裂的研究。为此,研究了不同大小的微体积。该方法在应变软化开始之前捕获了剥离过程,该过程被提议与破坏过程同化,并且对于不同的研究细胞尺寸,由损伤(剥离)导致的耗散能量的密度保持相同。最后,在应变软化阶段,与实验观察一致,微裂纹开始并传播。因此,我们使用文献方法提取了所得的中尺度凝聚力定律,该定律与细胞大小无关。 ©2013爱思唯尔有限公司。

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