Effect of Braid Angle on Crushing Performance of Double-Layer Carbon Fiber Composite Pipe

Huie Hu, Wen Wang, Yinping Hu, G. Zhao
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引用次数: 0

Abstract

Three-dimensional braided composite materials have the advantages of high specific strength and good specific rigidity, they are widely used in various fields. With the help of the full-scale macrostructure model finite element analysis method to pre-test the mechanical properties of the axial compression, the simulation can observe the failure process, stress distribution and propagation form of the pipe, and study its failure mechanism. Then verify the correctness of the simulation through experiments. The conclusion is that the compressive performance of the material changes with the change in the braid angle. A smaller braiding angle can bear a larger load, but its material failure process is relatively rapid, and the load drop increases as the braiding angle decreases.
编织角对双层碳纤维复合材料管破碎性能的影响
三维编织复合材料具有比强度高、比刚度好等优点,广泛应用于各个领域。借助全尺寸宏观结构模型有限元分析方法对管道轴压力学性能进行预测试,仿真可以观察管道的破坏过程、应力分布和传播形式,研究其破坏机理。然后通过实验验证了仿真的正确性。结果表明,材料的抗压性能随编织角的变化而变化。较小的编织角可以承受较大的载荷,但其材料破坏过程相对较快,载荷下降量随着编织角的减小而增大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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