4.7 Article

Two-scale damage failure analysis of 3D braided composites considering pore defects

期刊

COMPOSITE STRUCTURES
卷 260, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.compstruct.2021.113556

关键词

3D braided composites; Two-scale analysis; Pore defects; Damage failure; Strength

资金

  1. National Natural Science Foundation of China [11602020, 518630003]
  2. National defense Basic research program of China [JCKY2019602D024]
  3. China Postdoctoral Science Foundation [2016M591084]
  4. Laboratory research project of Beijing Institute of Technology [2019BITSYA33]
  5. Frontier and interdisciplinary innovation projects of Beijing Institute of Technology [2018CX11001]
  6. State Key Laboratory for Strength and Vibration of Mechanical Structures [SV2018-KF-15]

向作者/读者索取更多资源

A two-scale progressive damage method coupled with representative volume cell (RVC) has been developed to predict the mechanical properties of 3D braided composites considering pore defects. Results show that the void-model is superior to the element-model when predicting the mechanical properties of braided composites.
Pore defects tend to form in the manufacturing process, and significantly influence the mechanical properties of 3D braided composites. To predict the failure modes and strength properties considering pore defects, a two scale progressive damage method coupled with representative volume cell (RVC) has been developed due to the periodic feature across different scales of 3D braided composites. Different void generating methods across two scales are established, including the element-model by elements chosen and the void-model by voids explicitly constructed. The user-defined material subroutine (UMAT) is coupled in the nonlinear finite element analysis software ABAQUS to implement the damage model for micro and meso numerical models. Also, the Chamis model considering pore defects are employed and verified. It shows that results by void-model agree well with the Chamis model and the experimental data. And, the void-model is superior to the element-model when predicting the mechanical properties of braided composites. The pore defects weaken the matrix properties, and therefore largely determine the strength and damage mechanism of 3D braided composites with large braiding angle. This two-scale damage failure analysis method by void-model is effective to predict strength and damage failure mechanism of 3D braided composites considering pore defects.

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