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Micro-buckling of periodically layered composites in regions of stress concentration

机译:应力集中区域中周期性层状复合材料的微屈曲

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摘要

Under longitudinal compressive loading, periodically layered composites are prone to micro-buckling, which is often the decisive mechanism determining their strength. This paper is concerned with the load carrying capacity of structures made of layered composites with respect to micro-buckling related failure in regions of stress concentrations. A series of parametric studies show the effect of non-uniform stress distributions due to bending loads and the presence of geometrical features such as notches and holes on the initiation of micro-buckling. The contribution of the bending stiffness of the reinforcing layers on the resistance against micro-buckling introduces a dependence on the layer thickness, resulting in size-scale dependent strength limits. Therefore, both the shape and dimensions of the considered geometrical features and the layering thickness of the micro-structure are varied as part of the parametric studies. Moreover, the impact of imperfections in the composite micro-structure on the strength of the considered specimens is investigated. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在纵向压缩载荷下,周期性分层的复合材料容易发生微屈曲,这通常是决定其强度的决定性机制。本文关注的是层状复合材料结构在应力集中区域中与微屈曲相关的破坏的承载能力。一系列参数研究表明,由于弯曲载荷和几何特征(如缺口和孔)的存在,应力分布不均匀会对微屈曲的开始产生影响。增强层的弯曲刚度对抗微屈曲性的贡献导致对层厚度的依赖性,从而导致了尺寸尺度相关的强度极限。因此,作为参数研究的一部分,考虑的几何特征的形状和尺寸以及微结构的分层厚度都将发生变化。此外,研究了复合材料微结构中缺陷对所考虑试样强度的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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