4.6 Article

Mechanical properties prediction of 3D angle-interlock woven composites by finite element modeling method

期刊

MATERIALS TODAY COMMUNICATIONS
卷 22, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.mtcomm.2019.100769

关键词

3-Dimensional reinforcement; Woven composites; Mechanical properties; Finite element analysis

资金

  1. Excellent Young Scientist Foundation of NSFC [11522216]
  2. National Natural Science Foundation of China [11872087]
  3. Beijing Municipal Natural Science Foundation [2182033]
  4. Aeronautical Science Foundation of China [2016ZF51054]
  5. 111 Project [B14009]
  6. Project of the science and Technology Commission of Military Commission [17163-12-ZT-004-002-01]
  7. Foundation of Shock and Vibration of Engineering Materials and Structures Key Laboratory of Sichuan Province [18kfgk01]
  8. Fundamental Research Funds for the Central Universities [YWF-19-BJ-J-55]

向作者/读者索取更多资源

A new 3D finite element model (FEM) is established based on the actual microstructure of 3D angle-interlock woven composites, considering the configuration of outer yarns, yarns cross-sectional deformation of and spatial orientation. A prediction of the meso-scale mechanical response and effective elastic properties of 3D angleinterlock woven composites have been presented to verify the validation of 3D FEM. The effects of woven parameters on the mechanical properties are investigated in detail. The results show that 3D FEM precisely simulates the spatial geometric characteristics of 3D angle-interlock woven composites. The reasonable overall stress fields and local stress distribution can be identified and well support the strength prediction. It is convenient to predict all the elastic constants of 3D angle-interlock woven composites with different parameters simultaneously using 3D FEM. The calculated results show that 3D angle-interlock woven composites have good mechanical properties and can be considered as anisotropy materials in a macro-scale. In addition, the warp yarn density, weft yarn density and fiber volume fraction are important factors affecting the mechanical properties of 3D angle-interlock woven composites.

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