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Application of Three Unit-Cells Models on Mechanical Analysis of 3D Five-Directional and Full Five-Directional Braided Composites

机译:三种单元模型在3D五向和全五向编织复合材料力学分析中的应用

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摘要

As new lightweight textile material, 3D five directional and full five directional braided composites (5DBC and F5DBC) have tremendous potential applications in the aerospace industry. Before they are used in primary loading-bearing structures, a rational characterization of their mechanical properties is essential. In this paper, three types of unit-cell models corresponding to the interior, surface and corner regions of 5DBC and F5DBC are proposed. By introducing the reasonable boundary conditions, the effective stiffness properties of these two materials are predicted and compared by the three unit-cells models. The detailed mechanical response characteristic of the three unit-cell models is presented and analyzed in various loading cases. Numerical results show good agreement with experiment data, thus validates the proposed simulation method. Moreover, a parametric study is carried out for analyzing the effects of braiding angle and fiber volume fraction on the elastic properties of 5DBC and F5DBC. The obtained results can help designers to optimize the braided composite structures.
机译:作为新型轻质纺织材料,3D五向和全五向编织复合材料(5DBC和F5DBC)在航空航天工业中具有巨大的潜在应用。在将它们用于主要的承重结构之前,必须对其机械性能进行合理的表征。本文提出了与5DBC和F5DBC的内部,表面和拐角区域相对应的三种类型的单元格模型。通过引入合理的边界条件,这三种材料的有效刚度特性可以通过三个单元格模型进行预测和比较。给出并分析了在不同载荷情况下三种单位模型的详细机械响应特性。数值结果与实验数据吻合较好,验证了所提方法的有效性。此外,进行了参数研究,以分析编织角和纤维体积分数对5DBC和F5DBC弹性性能的影响。获得的结果可以帮助设计人员优化编织复合结构。

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