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An interactive orthotropic non-local damage model for progressive failure analysis of composite laminates

机译:用于复合材料层合板渐进式失效分析的交互式正交各向异性非局部损伤模型

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摘要

In this study, the non-local continuum damage model is further developed for progressive failure analysis of laminated composites. Characterized by two internal length scales, an orthotropic non-local integral strategy is implemented to model the constrained matrix damage along fiber direction. The introduction of spatial averaging may avoid spurious strain localization and thus ensure the physically-meaningful energy dissipation during damage evolution process. Compared to standard damage descriptions, the pathological mesh sensitivity and mesh orientation bias are effectively alleviated, leading to objective and accurate solutions. Moreover, an interactive damage transfer scheme is proposed to capture the strong interaction between matrix cracking and interface delamination, so that faithful predictions on the complex failure mechanisms of composite laminates are guaranteed. Performance of the present model and its superiority over conventional methods are demonstrated through several numerical examples, including the typical tensile failure of notched and unnotched laminates.
机译:本研究进一步发展了非局部连续体损伤模型,用于层状复合材料的渐进式失效分析。以两个内部长度尺度为特征,采用正交各向异性非局部积分策略对纤维方向的约束基体损伤进行建模。空间平均法的引入可以避免虚假应变局域化,从而保证损伤演化过程中具有物理意义的能量耗散。与标准损伤描述相比,有效缓解了病理网格敏感性和网格取向偏差,从而实现客观准确的解决方案。此外,提出了一种交互式损伤传递方案,以捕捉基体开裂与界面分层之间的强相互作用,从而保证对复合材料层合板复杂破坏机理的忠实预测。通过几个数值算例证明了本模型的性能及其相对于传统方法的优越性,包括缺口和无缺口层合板的典型拉伸破坏。

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