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Determination Method of Stress Triaxiality of Advanced High Strength Dual Phase Steel

  • Li, Yaomin
  • Li, Di
  • Han, Meng
  • Jiang, Ning
  • Xu, Jia-chuan
This study focus on the stress triaxiality under shear failure of advanced high-strength dual-phase steel. Stress triaxiality, as a parameter to characterize the stress state of a material, is a key factor in controlling the fracture mode of a material, so it is used in many material failure models. Firstly, the tensile test of tensile specimens and shear specimens of advanced high-strength dual-phase steel was carried out by static tensile test. The relevant mechanical parameters of the sheet material can be obtained from the tensile specimen; the fracture angle analysis of the shear state of the shear failure is obtained, and the method for determining the stress triaxiality of the sheet material is obtained. Furthermore, the VUMAT subroutine was written based on the Hill'48 yield criterion and the Mohr-Coulomb (MMC) failure criterion. The finite element simulation software ABAQUS was used to simulate the numerical simulation of the specimen. Finally, the simulation data is analyzed and the experimental data is used to verify the accuracy of the established stress triaxiality.
Select Volume / Issue:
Year:
2019
Type of Publication:
Article
Keywords:
Advanced High Strength Dual Phase Steel; Stress Triaxiality; Shear Damage; Finite Element Simulation
Journal:
IJASM
Volume:
6
Number:
5
Pages:
194-203
Month:
September
ISSN:
2394-2894
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