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

Authors

  • Hui Hu College of Mechanical and Electrical Engineering, Jiaxing Nanhu University
  • Wei Wang College of Mechanical and Electrical Engineering, Jiaxing Nanhu University
  • Yinping Hu College of Mechanical and Electrical Engineering, Jiaxing Nanhu University
  • Gui Zhao College of Mechanical and Electrical Engineering, Jiaxing Nanhu University

Keywords:

Carbon fiber, epoxy resin, numerical simulation, axial crush

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.

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Published

2023-05-09

How to Cite

Hui Hu, Wei Wang, Yinping Hu, & Gui Zhao. (2023). Effect of Braid Angle on Crushing Performance of Double-Layer Carbon Fiber Composite Pipe. nnovation in cience and echnology, 2(3), 33–38. etrieved from https://www.paradigmpress.org/ist/article/view/583

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Section

Articles