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A multi-scale finite element method for failure analysis of three-dimensional braided composite structures

机译:三维编织复合结构破坏分析的多尺度有限元方法

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This paper investigates the elastic behavior and failure strength of three-dimensional braided composites by using a multi-scale finite element method. The analyses are performed under the representative unit cell scale and tow architecture scale. The heterogeneous material structure in a RUC is modeled by the multiphase finite element method. Three special element types, called yarn element, matrix element and mixed element, are derived. The correlation between different scales is derived based on the continuum mechanics and homogenization method. Effective modulus of 3D braided composites is predicted solely from the corresponding constituent properties and braided geometrical parameters. The bending strengths are determined by the failure criteria of the components. The predicted results compare favorably with available experimental data. Parametric studies are also performed to examine the effect of braiding angle on the resulting mechanical properties. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文采用多尺度有限元方法研究了三维编织复合材料的弹性行为和破坏强度。分析是在代表性的晶胞规模和拖曳体系结构规模下进行的。 RUC中的异质材料结构是通过多相有限元方法建模的。导出了三种特殊的元素类型,分别称为纱线元素,基质元素和混合元素。基于连续力学和均匀化方法,得出了不同尺度之间的相关性。 3D编织复合材料的有效模量仅根据相应的组成属性和编织的几何参数进行预测。弯曲强度由组件的破坏标准确定。预测结果与可用的实验数据相比具有优势。还进行了参数研究,以检查编织角度对所得机械性能的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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