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Structural mechanism of glass transition uncovered by unsupervised machine learning 期刊论文
ACTA MATERIALIA, 2024, 卷号: 281, 页码: 11./通讯作者:Yang, Zeng-Yu, Miao, Qing, Wang, Yun-Jiang
Authors:  Yang ZY(杨增宇);  Miao, Qing;  Dan, JiaKun;  Liu, MingTao;  Wang YJ(王云江)
Favorite  |  View/Download:28/0  |  Submit date:2024/11/01
Glass transition  Unsupervised machine learning  Structural origin  Superfast atoms  
Microstructure evolution in 439 stainless steels under tensile: phase field simulation and experiment 期刊论文
MODELLING AND SIMULATION IN MATERIALS SCIENCE AND ENGINEERING, 2024, 卷号: 32, 期号: 3, 页码: 23./通讯作者:Wang, Mingtao
Authors:  Liu, Yongbo;  Wang, Mingtao;  Liu, Qingcheng;  Jin, Jianfeng;  彭庆3,4,5);  Zong, Yaping
Favorite  |  View/Download:158/0  |  Submit date:2024/03/11
439 stainless steel  phase field simulation  tensile stress  texture  microstructure  
Phase-Field Simulation on the Effect of Second-Phase Particles on Abnormal Growth of Goss Grains in Fe-3%Si Steels 期刊论文
NANOMATERIALS, 2022, 卷号: 12, 期号: 23, 页码: 20./通讯作者:Wang, Mingtao
Authors:  Wang,Mingtao;  Xu,Yongkai;  Hu,Jinlong;  Fang,Feng;  Jin,Jianfeng;  Jia,Tao;  Peng Q(彭庆)
Adobe PDF(10062Kb)  |  Favorite  |  View/Download:314/98  |  Submit date:2023/02/03
phase-field simulation  abnormal grain growth  Fe-3%Si steel  second-phase particle  Goss grain  
Effect of Microstructure on the Onset Strain and Rate per Strain of Deformation-Induced Martensite Transformation in Q&P Steel by Modeling 期刊论文
MATERIALS, 2022, 卷号: 15, 期号: 3, 页码: 952./通讯作者:Jin, JF (corresponding author), Northeastern Univ, Sch Mat Sci & Engn, Shenyang 110819, Peoples R China., Jin, JF (corresponding author), Northeastern Univ, State Key Lab Rolling & Automat, Shenyang 110819, Peoples R China.
Authors:  Cao, Jingyi;  Jin, Jianfeng;  Li, Shaojie;  Wang, Mingtao;  Tang, Shuai;  Peng Q(彭庆);  Zong, Yaping
Adobe PDF(14303Kb)  |  Favorite  |  View/Download:167/55  |  Submit date:2022/10/23
deformation-induced martensitic transformation  microstructure  onset strain of phase transformation  Q&P steel  micromechanics model