Research on Forming Limit Stress Diagram of Advanced High Strength Dual-Phase Steel Sheets

Author:

Cui Hongjian1,Li Di1,Fu Qiutao12,Lu Zipeng1ORCID,Xu Jiachuan1,Jiang Ning1

Affiliation:

1. School of Transportation and Vehicle Engineering, Shandong University of Technology, Zibo 255000, China

2. School of Automobile Engineering, Zibo Vocational Institute, Zibo 255300, China

Abstract

The Forming Limit Stress Diagram (FLSD) can accurately describe the forming process of high-strength steel. However, obtaining FLSD is relatively difficult. In order to predict fracture in advanced high-strength dual-phase (DP) steels, limit maximum and limit minimum principal strains of sheet were obtained through multiple sets of test and simulation. Two material parameters, strength coefficient K and hardening exponent n are introduced into the FLSD function which is established by the strain-stress transformation function. The function shows that the k-value determines the value of the maximum principal stress, while the n-value affects the curvature of the curve. Verification of correctness by testing and simulation to within 10% accuracy. This paper explores a new approach to FLSD research based on material properties, which can expand the application scope of FLSD.

Funder

China-Sino Truck Group’s industry–university–research cooperation program

Publisher

MDPI AG

Subject

General Materials Science

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4. Shear Fracture Criterion of Advanced High-Strength Steel Based on Stress Triaxiality and Equivalent Strain;Fu;J. Eng. Mater. Technol.,2023

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