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Computational Analysis of Torsional Bulking Behavior of 3D 4-Directional Braided Composites Shafts

机译:3D 4方向编织复合材料轴的扭转膨胀行为的计算分析

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摘要

The torsional bulking behavior of 3D 4-directional braided composites shafts was analyzed in this work. First, the unit cell models of 3D 4-directional braided composites shafts with different braiding angles and fiber volume fraction were built up. Then, the elastic parameters of 3D 4-directional braided composites shafts were predicted using the unit cells under different boundary conditions. Finally, the torsional bulking eigenvalues and bulking modes of the composites shafts were obtained by numerical simulation, and the effects of braiding angle and fiber volume fraction on the torsional bulking behavior of 3D 4-directional braided composites shafts were analyzed. The simulation results show that the bulking eigenvalues increase with the increase of braiding angle and fiber volume fraction. This work will play an important role in the design of 3D 4-directional braided composites shafts.
机译:在这项工作中分析了3D 4方向编织复合材料轴的扭转膨胀行为。 首先,建立了具有不同编织角和纤维体积分数的3D 4方向编织复合材料的单元电池模型。 然后,使用不同边界条件下的单元电池预测3D 4方向编织复合材料轴的弹性参数。 最后,通过数值模拟获得复合材料轴的扭转块状特征值和膨胀模式,分析了编织角度和纤维体积分数对3D 4方向编织复合材料轴的扭转膨胀行为的影响。 仿真结果表明,随着编织角和纤维体积分数的增加,膨胀的特征值增加。 这项工作将在3D 4方向编织复合材料轴设计中发挥重要作用。

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