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Process parameters design of a three-dimensional and five-directional braided composite joint based on finite element analysis

机译:基于有限元分析的三维五向编织复合接头工艺参数设计

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摘要

This paper presents an analytical method for designing the configuration of composite joint with three-dimensional (3D) five-directional braided composites. Based on the analysis of 3D braided structure characteristics, the elastic properties of the 3D five-directional braided composites were determined by the volume averaging method. The effects of the braiding angle and fiber volume fraction on the elastic constants of the braided composites were also discussed. Finite element analysis on the load capacity of the 3D five-directional braided composite joint was implemented using the software ANSYS Workbench 14.0. The influence of braiding angle on the stress, strain and deformation of the composite joint under tensile loading were calculated. The results show that when the fiber volume fraction of the 3D five-directional braided preform is given, the equivalent stress of the composite joint decreases monotonically as the braiding angle increases, while the normal stress, maximum principal stress and total deformation firstly decreases and then increases. Based on the finite element analysis, we found that at the fiber volume fraction of 60%, the braiding angle within the range of 30-35 ° are the optimum processing parameters for the 3D five-directional braided composite joint structure that used in the tensile load 320 N condition.
机译:本文提出了一种分析方法,用于设计三维(3D)五向编织复合材料复合材料接头的构型。在分析3D编织结构特性的基础上,采用体积平均法确定了3D五向编织复合材料的弹性性能。还讨论了编织角度和纤维体积分数对编织复合材料弹性常数的影响。使用软件ANSYS Workbench 14.0对3D五向编织复合材料接头的承载能力进行了有限元分析。计算了编织角度对拉伸载荷作用下复合材料接头应力,应变和变形的影响。结果表明,给定3D五向编织预成型坯的纤维体积分数时,随着编织角度的增加,复合接头的等效应力单调减小,而法向应力,最大主应力和总变形先减小,然后减小。增加。基于有限元分析,我们发现在纤维体积分数为60%时,编织角度在30-35°范围内是用于拉伸的3D五向编织复合接头结构的最佳加工参数。负载320 N条件。

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