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Micro-mechanical analysis of matrix crack-induced delamination in cross-ply laminates in tension

机译:基质裂纹诱导分层的微力分析张力

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摘要

A two-dimensional representative volume element model is developed to study the micro-mechanics of matrix crack-induced delamination in cross-ply laminates under longitudinal tensile loading. Fiber-matrix debonding and matrix cracking are investigated in the 90 degrees ply. The 0 degrees plies are modelled as homogenized, anisotropic elastic solids. A special emphasis is put on the interlaminar region where a thick resin-rich area is explicitly established, and delamination is characterized by a coupled plastic-damage model of the matrix. The process of delamination initiated from the matrix crack tips is accurately revealed by finite element analysis. The impact of different damage mechanisms on the macroscopic mechanical responses is quantitatively captured. A parametric study is done on different cross-ply laminates with various thicknesses of 90 degrees ply to study their effect on the variation of the homogenized longitudinal stiffness and transverse Poisson's responses. It is found that transverse Poisson's response is more sensitive to the damages in the laminate and that degradation of the responses in thicker laminates is severer. In addition, analysis of the influence of thermal residual stress shows that it changes the damage initiation location and evolution path, and affects the transverse Poisson's response more obviously.
机译:开发了一种二维代表体积元素模型,以研究纵向拉伸在纵向拉伸下在交叉层层压板中进行基质裂纹诱导分层的微型机械。在90度帘布层中研究了纤维 - 基质剥离和基质破裂。 0度层被建模为均质化,各向异性弹性固体。特别强调在明确建立浓厚的树脂区域的层间区域,并分层的特征在于基质的耦合塑料损伤模型。通过有限元分析精确揭示从基质裂纹尖端发起的分层过程。定量捕获不同损伤机制对宏观机械响应的影响。参数研究是在不同的交叉层层压板上完成,各种厚度为90度,以研究它们对均质纵向刚度和横向泊松反应的变化的影响。发现横向泊松的响应对层压材料中的损坏更敏感,并且厚层压材料中的反应的降解是严重的。此外,热残余应力的影响分析表明它改变了损伤启动位置和演化路径,并更明显地影响横向泊松的反应。

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