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Title:Fracture failure characterization model on high-strength dual-phase steel based on Johnson-Cook model
Authors: Yu Hongjun1  Zhang Chi2 
Unit: (1. School of Mechatronics and New Energy Vehicles Yichun Vocational Technical College Yichun 336000 China   2. School of Physical Science and Technology Yichun University Yichun 336000 China) 
KeyWords: high-strength dual-phase steel  fracture failure  constitutive model  hybrid hardening model  perforation experiment 
ClassificationCode:TG142.1
year,vol(issue):pagenumber:2025,50(4):267-275
Abstract:

 Abstract: The fracture failure performance and characterization model of high-strength dual-phase steel DP780 were analyzed. Firstly, the static and dynamic mechanical properties curves were fitted by the hybrid hardening model and Johnson-Cook high strain rate constitutive model, and five fracture failure specimens were designed and the ultimate plastic strain at fracture was obtained by experiments. Secondly, simulation analysis was conducted on each specimen, taking the minimizing error of load-displacement curve as the goal, the coefficients of the hybrid hardening model were optimized to extract the stress triaxiality of fracture area, and the failure curve was fitted by the Johnson-Cook model. Finally, the model was verified by the perforation experiment of each specimen. The results indicate that the optimal adjustment coefficient for the Swift and Hockett-Sherby hybrid hardening model is 0.685, the load-displacement curves of different specimens have a high degree of coincidence with the experiment results, and the errors of maximum load and maximum failure displacement do not exceed 5%, and the locations of fracture area are basically consistent. Thus, the research proves that the constructed model has a good characterization of mechanical properties and fracture performance for the material and is applied to the whole vehicle collision simulation.

 
Funds:
基金项目:江西省高等学校教学改革研究项目(JXJG-19-60-4);江西省教育厅科技基金资助项目(GJJ211611)
AuthorIntro:
作者简介:余宏军(1988-),男,硕士,讲师
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