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Analysis for the interlaminar stresses of thin layered composites subjected to thermal loads

机译:薄层复合材料在热载荷作用下的层间应力分析

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摘要

Accurate stress analysis of layered material systems that are sometimes very thin is of great importance in the assessment of their structural integrity and performance. To give satisfactory results, the discretised meshes of the conventional domain solution techniques, such as the finite element method, must have reasonable aspect ratios in the same order of magnitude. Therefore, the domain modeling of ultra-thin structures, such as the facings of sandwich composites and adhesive layers, shall require an enormous amount of discretised meshes that may incur overloading computations. Using the boundary element method as an alternative, the present work proposes an effective approach to analyze the interlaminar stresses of thin layered composites subjected to general thermal loads. The transformed boundary integral equation for anisotropic thermoelasticity is fully regularized using the technique of integration by parts and analytical integration. At the end, the veracity and applicability of the proposed scheme are demonstrated by numerical examples.
机译:有时非常薄的分层材料系统的准确应力分析对于评估其结构完整性和性能非常重要。为了获得令人满意的结果,常规域求解技术(例如有限元方法)的离散网格必须具有相同数量级的合理长宽比。因此,超薄结构(例如三明治复合材料和粘合层的面层)的域建模将需要大量离散网格,这些网格可能会导致重载计算。使用边界元方法作为替代方法,本工作提出了一种有效的方法来分析承受一般热负荷的薄层复合材料的层间应力。使用零件积分和分析积分技术,对各向异性热弹性的变换边界积分方程进行了完全正则化。最后,通过算例验证了所提方案的准确性和适用性。

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