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Modelling of stiffness degradation due to cracking in laminates subjected to multi-axial loading

机译:承受多轴载荷的层压板中的裂纹导致的刚度退化建模

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摘要

The paper presents an analytical approach to predicting the effect of intra- and interlaminar cracking on residual stiffness properties of the laminate, which can be used in the post-initial failure analysis, taking full account of damage mode interaction. The approach is based on a two-dimensional shear lag stress analysis and the equivalent constraint model of the laminate with multiple damaged plies. The application of the approach to predicting degraded stiffness properties of multidirectional laminates under multi-axial loading is demonstrated on cross-ply glass/epoxy and carbon/epoxy laminates with transverse and longitudinal matrix cracks and crack-induced transverse and longitudinal delaminations.This article is part of the themed issue ‘Multiscale modelling of the structural integrity of composite materials’.
机译:本文提出了一种分析方法,可预测层内和层间开裂对层压板的残余刚度性能的影响,该方法可在充分考虑损伤模式相互作用的情况下用于初始破坏后分析。该方法基于二维剪切滞后应力分析和多层受损层板的等效约束模型。在具有横向和纵向基体裂纹以及裂纹引起的横向和纵向分层的交叉层玻璃/环氧树脂和碳/环氧树脂层压板上,证明了该方法在预测多轴层压板在多轴载荷下退化的刚度性能中的应用。主题问题“复合材料结构完整性的多尺度建模”的一部分。

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