个人简介
学习经历
1999/09-2003/07,东北大学,材料与冶金学院,学士
2003/09-2005/07,东北大学,材料与冶金学院,硕士
2005/09-2009/07,大连理工大学,材料学院,博士
工作经历
2009/07-2010/07,韩国国家材料研究院(KIMS),结构材料所,博士后
2010/11-2012/11,北京理工大学,材料学院,博士后
2012/11-2014/09,山东大学,材料科学与工程学院,讲师
2014/09-至今,山东大学,材料科学与工程学院,副教授
研究领域
1.金属材料的形变与相变;
2.晶体塑性模拟及有限元模拟;
3.有色金属微观组织与力学行为(镁合金、钛合金、铜合金等)。
近期论文
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1.L.L. Chang*, Y.D. Wang, Y. Ren,In-situ investigation of stress-induced martensitic transformation in Ti–Nb binary alloys with low Young's modulus, Materials Science and Engineering: A,651, 442-448 (2016)
2.L.L. Chang*, S. Wen, S.L. Li, X.D. Zhu, X.J. Shang, Strain softening during tension in cold drawn Cu–Ag alloys,Materials Characterization, 108,145-151 (2015).
3.L.L. Chang*, L.P. Chi, Tension–compression asymmetry in an extruded Mg alloy AZ31: Texture and strain rate effects, Materials Science Forum,849, 109-113 (2016)
4.L.L. Chang*, J.P. Liu, Stress induced martensitic transformation in Ti-1023 alloys, Materials Science Forum,849, 219-225 (2016)
5.文姗,常丽丽,尚兴军,李胜利*,铜银合金导线的显微组织与性能,《中国有色金属学报》,6,1655-1672(2015)
6.L.L. Chang*, S.B. Kang, J.H. Cho, Influence of strain path on the microstructure evolution and mechanical properties in AM31 magnesium alloy sheets processed by differential speed rolling, Materials & Design, 44, 144-148, 2013
7.L.L. Chang*, J.H. Cho, S.K. Kang, Microstructure and mechanical properties of twin roll cast AM31 magnesium alloy sheet processed by differential speed rolling, Materials & Design, 34,746-752, 2012
8.L.L. Chang, J.H. Cho, S.B. Kang*, Microstructure and mechanical properties of AM31 magnesium alloys processed by differential speed rolling, Journal of Materials Processing Technology, 211,1527-1533, 2011
9.S.B. Kang*, J. Cho, L. Chang, Y. Wang, Influence of twin roll casting and differential speed rolling on microstructure and tensile properties in magnesium alloy sheets, Procedia Engineering, 10,1190-1195, 2011
10.孙光爱*, 王虹, 汪小琳, 陈波, 常丽丽, 刘耀光, 盛六四, W. Wu, M.Y. Kang, 原位中子衍射研究两相NiTi合金的微力学相互作用和相变机理. 物理学报 61, 2012
11.L.L. Chang, Y.N. Wang*, X. Zhao, M. Qi, Grain size and texture effect on compression behavior of hot-extruded Mg-3Al-1Zn alloys at room temperature, Materials Characterization, 60,991-994 (2009).
12.L.L. Chang, E.F. Shang, Y.N. Wang*, X. Zhao, M. Qi, Texture and microstructure evolution in cold rolled AZ31 magnesium alloy, Materials Characterization, 60, 487-491 (2009)
13.L.L. Chang, Y.N. Wang*, X. Zhao, Modeling of severe deformation and mechanical properties in Mg-3Al-1Zn alloy through asymmetric hot-extrusion, Transactions of Nonferrous Metals Society of China, 18, s257-s262 (2008)
14.L.L. Chang, Y.N. Wang*, X. Zhao, J.C. Huang, Microstructure and mechanical properties in an AZ31 magnesium alloy sheet fabricated by asymmetric hot extrusion, Materials Science and Engineering: A, 496, 512-516 (2008)
15.王开东, 常丽丽, 王轶农*, 黄志青, 搅拌摩擦加工技术制备Ti颗粒增强AZ31镁基复合材料, 中国有色金属学报, 418-423(2009).