Faculty

Mingjiang JIN

Title:Associate researcher
Office:A503B
Tel:+86-21-54745567

Introduction

Shanghai Jiao Tong University, MSE, Lecture

Biographical Information

2013/09-Now, Shanghai Jiao Tong University, MSE, Lecture

2012/06-2013/08, Shanghai Jiao Tong University, School of Mechanical engineering,       Postdoctoral

2011/05-2012/05 Osaka University (Japan), Graduate School of Engineering, Postdoctoral

2010/06-2011/04 Shanghai Jiao Tong University, School of Materials Science and Engineering, Assistant Researcher

2006/09-2010/06 Shanghai Jiao Tong University, Materials Physics and Chemistry, Ph.   D
 
2002/09-2005/05 Jiangsu University, Materials Manufacture, M. S

1998/09-2002/06 Jiangsu University, Materials Manufacture, B. S

Research Interests

Shape memory alloy and smart actuation devices design

Selected Publications

1.  Yuanwei Song; Mingjiang Jin*; Xiaocang Han; Xiaodong Wang*; Peng Chen; Xuejun Jin; Microstructural origin of ultrahigh damping capacity in Ni50.8Ti49.2 alloy containing nanodomains induced by insufficient annealing and low temperature aging, Acta Materialia, 205 (2021) 116541 

2.  Xinyu Huo, Peng Chen, Simanta Lahkar, Mingjiang Jin*, Xiaocang Han,Yuanwei Song, Xiaodong Wang*, Occurrence of the R-phase with increased stability induced by low temperature precipitate-free aging in a Ni50.9Ti49.1 alloy, Acta Materialia 227 (2022) 117688 

3.  Mingjiang Jin, Yuanwei Song, Xiaodong Wang*, Peng Chen, Guobo Pang, Xuejun Jin*, Ultrahigh damping capacity achieved by modulating R phase in Ti49.2Ni50.8 shape memory alloy wires, Scripta Materialia, 183 (2020) 102–106 

4.  Shungui Zuo; Mingjiang Jin*; Dan Chen; Xuejun Jin*; Origin of the anelastic behavior in Ti50Ni44Fe6 alloy, Scripta Materialia, 108 (2015) 113–116 

5.  Yuanwei Song; Mingjiang Jin*; Shungui Zuo; Xuejun Jin; Elinvar effect in severely-deformed Ti-50.8(at%)Ni thin belt, Materials Letters, 252 (2019) 96–99 

Research Projects

Honors & Awards