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A progressive damage model for quasi-static tension of 2D woven composites and FEM implementation

  • Shijia Xu
  • , Shuai He
  • , Jiayi Li
  • , Beiyao Xiao
  • , Wei Zhang*
  • *Corresponding author for this work
  • Harbin Institute of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

We tested the quasi-static tension behavior of the high-strength glass fiber four-Harness stain woven composite, Kevlar fiber plain woven composite, and their laminated hybrid composite. Their representative volume element models are established based on mesoscopic cross-section photographs combined with voxel mesh. A progressive damage model for predicting the damage initiation and evolution of the 2D woven composites is proposed. The crimping effect of plain-woven composites has been considered. The 3D Hashin and the maximum stress criterion are used as the fiber yarn and matrix's damage initiation criterion, respectively. The exponential model is used as the damage evolution model of the fiber yarn. A combination of exponential and reverse tangential damage models has been proposed to describe the damage evolution of the matrix. The proposed damage model is realized using user-defined subroutine UMAT and VUMAT. Abaqus/Standard performs the uniaxial tensile simulation of the two kinds of 2D woven composites with UMAT. Abaqus/Explicit solver simulates the laminated hybrid composite with VUMAT. The simulation results highly agree with the experiment results.

Original languageEnglish
Article number117168
JournalComposite Structures
Volume320
DOIs
StatePublished - 15 Sep 2023

Keywords

  • Damage mechanics
  • Finite element analysis (FEA)
  • Glass fibres
  • Layered structures

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