A novel tension-compression testing device and method for determining yoshida-uemori model parameters of advanced high-strength steels

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Publicado en:Journal of Physics: Conference Series vol. 3030, no. 1 (Jun 2025), p. 012022
Autor principal: Zhaocai Jie
Otros Autores: Wang, Jinqiu, Han, Wenfeng, Yuan, Binxian
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IOP Publishing
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022 |a 1742-6588 
022 |a 1742-6596 
024 7 |a 10.1088/1742-6596/3030/1/012022  |2 doi 
035 |a 3216556361 
045 2 |b d20250601  |b d20250630 
100 1 |a Zhaocai Jie  |u Tianjin Key Laboratory of High Performance Precision Forming Technology and Equipment, School of Mechanical Engineering, Tianjin University of Technology and Education , Tianjin, 300222, China; National-Local Joint Engineering Laboratory of Intelligent Manufacturing Oriented Automobile Die & Mould, School of Mechanical Engineering, Tianjin University of Technology and Education , Tianjin, 300222, China 
245 1 |a A novel tension-compression testing device and method for determining yoshida-uemori model parameters of advanced high-strength steels 
260 |b IOP Publishing  |c Jun 2025 
513 |a Journal Article 
520 3 |a In order to address the significant springback issue associated with high-strength steels following the forming process, the Yoshida-Uemori material hardening model is employed to simulate sheet metal forming and subsequent springback. However, in order to obtain the parameters of the model, a complex cyclic tensile-compression test is required. In order to mitigate the effects of buckling during cyclic tension-compression testing, a new fixture has been developed specifically for the cyclic tensile-compression tests of metal materials. Using this fixture, a large strain cyclic tensile-compression loading test was successfully conducted on a DP980 high-strength steel plate, yielding the cyclic stress-strain curve of the plate. This curve provides valuable experimental data for determining the parameters of the Yoshida-Uemori material model for DP980 high-strength steel. 
653 |a Metal sheets 
653 |a Steel plates 
653 |a High strength steels 
653 |a Parameters 
653 |a Stress-strain curves 
653 |a Compressive strength 
653 |a Compression tests 
653 |a Compression loads 
653 |a Springback 
700 1 |a Wang, Jinqiu  |u Tianjin Key Laboratory of High Performance Precision Forming Technology and Equipment, School of Mechanical Engineering, Tianjin University of Technology and Education , Tianjin, 300222, China; National-Local Joint Engineering Laboratory of Intelligent Manufacturing Oriented Automobile Die & Mould, School of Mechanical Engineering, Tianjin University of Technology and Education , Tianjin, 300222, China 
700 1 |a Han, Wenfeng  |u Tianjin Key Laboratory of High Performance Precision Forming Technology and Equipment, School of Mechanical Engineering, Tianjin University of Technology and Education , Tianjin, 300222, China; National-Local Joint Engineering Laboratory of Intelligent Manufacturing Oriented Automobile Die & Mould, School of Mechanical Engineering, Tianjin University of Technology and Education , Tianjin, 300222, China 
700 1 |a Yuan, Binxian  |u Tianjin Key Laboratory of High Performance Precision Forming Technology and Equipment, School of Mechanical Engineering, Tianjin University of Technology and Education , Tianjin, 300222, China; National-Local Joint Engineering Laboratory of Intelligent Manufacturing Oriented Automobile Die & Mould, School of Mechanical Engineering, Tianjin University of Technology and Education , Tianjin, 300222, China 
773 0 |t Journal of Physics: Conference Series  |g vol. 3030, no. 1 (Jun 2025), p. 012022 
786 0 |d ProQuest  |t Advanced Technologies & Aerospace Database 
856 4 1 |3 Citation/Abstract  |u https://www.proquest.com/docview/3216556361/abstract/embedded/75I98GEZK8WCJMPQ?source=fedsrch 
856 4 0 |3 Full Text - PDF  |u https://www.proquest.com/docview/3216556361/fulltextPDF/embedded/75I98GEZK8WCJMPQ?source=fedsrch