International Journal of Damage Mechanics2021,Vol.30Issue(1) :21.DOI:10.1177/1056789520945002

Comparison of two uncoupled ductile damage initiation models applied to DP900 steel sheet under various loading paths

Tuo, Zhiyu Yue, Zhenming Zhuang, Xincun Min, Xinrui Badreddine, Houssem Qiu, Liangyu Gao, Jun
International Journal of Damage Mechanics2021,Vol.30Issue(1) :21.DOI:10.1177/1056789520945002

Comparison of two uncoupled ductile damage initiation models applied to DP900 steel sheet under various loading paths

Tuo, Zhiyu 1Yue, Zhenming 1Zhuang, Xincun 2Min, Xinrui 1Badreddine, Houssem 3Qiu, Liangyu 4Gao, Jun1
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作者信息

  • 1. Shandong Univ Weihai, Sch Mech Elect & Informat Engn, Weihai, Peoples R China
  • 2. Shanghai Jiao Tong Univ, Inst Forming Technol & Equipment, Shanghai, Peoples R China
  • 3. Univ Technol Troyes, ICD, LASMIS CNRS FRE 2848, Troyes, France
  • 4. Rongcheng Huadong Forging Press Machine Co Ltd, Rongcheng, Peoples R China
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Abstract

Accurate prediction of the fracture occurrence of high strength materials is always the hot spot in the research field of metal-forming process. Appropriate material model is the key issue which can accurately describe the mechanical forming behavior under different forming conditions. However, advanced fully coupled damage/behavior models are heavy to use by engineers and have a high cost in term of calculation consuming time. In this paper, a simple uncoupled damage approach, designed to be easy to use for engineers and accurate as well, is investigated. Two uncoupled damage models, which consider the effect of the Lode angle and the hydrostatic pressure, combing three typical hardening rules, are selected and applied to the damage prediction of DP900 dual-phase steel. The hardening properties and forming limit strains under different loading paths of DP900 are investigated and studied throughout a variety of mechanical experiments, including the uniaxial tensile test, the pre-notched tensile tests with three notched radii, and the butterfly tests. Finally, the prediction accuracy of the used models for DP900 is compared and discussed.

Key words

Plasticity/uncoupled damage models/high strength material/Lode angle/hydrostatic pressure/forming limit strain

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出版年

2021
International Journal of Damage Mechanics

International Journal of Damage Mechanics

EISCI
ISSN:1056-7895
被引量8
参考文献量34
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