教育经历
博士香港大学 固体力学 09/2010-07/2013
硕士中科院力学研究所 固体力学 09/2007-06/2010
学士湘潭大学工程力学 09/2003-06/2007
工作经历
副教授西北工业大学 09/2013-至 今
洪堡学者 德国马普学会钢铁研究所 03/2015-至 今
教育教学
结构力学,季文美力学班
荣誉获奖
2014年,德国洪堡基金会,洪堡博士后研究奖学金
2013年,香港大学机械工程系杰出研究生奖
2008年,中国科学院力学研究所一等奖学金
2007年,湖南省优秀毕业生
2007年,第三届湖南省大学生力学竞赛材料力学三等奖
2005、2006年,湘潭大学甲等奖学金(两次)
2004、2005年,湘潭大学优秀学生干部(两次)
2004年,湘潭大学乙等奖学金
科学研究
纳米结构金属及其复合材料力学行为及变形机理研究
学术成果
I.梯度纳米结构金属材料本构关系及力学行为研究
1. Li, J.J., Weng, G.J., Chen, S.H. & Wu, X.L. (2016): On strain hardening mechanism in gradient nanostructures. International Journal of Plasticity, 10.1016/j.ijplas.2016.10.003.
2. Li, J.J., Chen, S.H., Wu, X.L., Soh, A.K. (2015): A physical model revealing strong strain hardening in nano-grained metals induced by grain size gradient structure. Materials Science and Engineering: A, 620:16-21. (SCI 他引1次)
3. Li, J.J., Soh, A.K. (2012): Modeling of the plastic deformation of nanostructured materials with grain size gradient. International Journal of Plasticity, 39: 88-102.(SCI他引19次)
4. Li, J.J., Soh, A.K. (2012): Enhanced ductility of surface nano-crystallized materials by modulating grain size gradient. Modelling and Simulation in Materials Science and Engineering, 20(8): 085002.(SCI他引2次)
5. Li, J.J., Chen, S.H., Wu, X.L., Soh, A.K., Lu, J. (2010): The main factor influencing the tensile properties of surface nano-crystallized graded materials. Materials Sciences and Engineering: A, 527(26): 7040-7044.(SCI他引3次)
II.纳米晶及孪晶金属材料变形机理及力学行为研究
1. Li, J.J., Ni, Yong, Wu, X.L., Soh, A.K. (2015): Strong crack blunting by hierarchical nano-twins in ultrafine/nano-grained metals. Materials Research Letters, 3:190-196. (SCI他引1次)
2. Li, J.J., Soh, A.K., Chen, S.H. (2014): A coupling crack blunting mechanism in nanocrystalline materials by nano-grain rotation and shear-coupled migration of grain boundaries. Materials Letters, 137:218-220.(SCI他引0次)
3. Li, J.J., Chen, S. H., Wu, X.L., Soh, A.K. (2014): Strong crack blunting by
shear-coupled migration of grain boundaries in nanocrystalline materials. Scripta Materialia,
(SCI他引1次)
4.Li, J.J., Wu, X.L., Soh, A.K. (2014): On nano-grain rotation by dislocation climb in nanocrystalline materials. Scripta Materialia, 78-79:5-8.(SCI他引3次)
5. Li, J.J., Soh, A.K., Wu, X.L. (2014): Enhancing dislocation emission in nanocrystalline materials through shear-coupled migration of grain boundaries. Materials Science and Engineering: A, 601:153-158.(SCI他引1次)
6. Li, J.J., Chen, S. H. (2014): Cooperative toughening mechanism of nanocrystalline materials by grain rotation and shear-coupled migration of grain boundaries. Materials Letters, 121: 174-176. (SCI他引0次)
7.Li, J.J., Soh, A.K. (2013): Synergy of grain boundary sliding and shear-coupled migration process in nanocrystalline materials. Acta Materialia, 61(14): 5449-5457.(SCI他引5次)
8.Li, J.J., Soh, A.K.(2013): Toughening of nanocrystalline materials through shear-coupled migration of grain boundaries. Scripta Materialia, 69(4): 283-286.(SCI他引5次)
9.Li, J.J., Soh, A.K. (2012): On shear-coupled migration of grain boundaries in nanocrystalline materials. Applied Physics Letters, 101(24): 241915.(SCI他引3次)
10.Li, J.J., Soh, A.K. (2012): On elastic-viscoplastic modeling of nanotwinned metals based on coupled intra-twin and twin-boundary-mediated deformation mechanisms. Philosophical Magazine Letters, 92(12): 690-700.(SCI他引0次)
III.其它
1. 李建军,陈少华 (2012): 钢板残余应力的控冷模拟及其残余应力反演研究,机械强度,33(4): 601-606.
IV. 会议报告
1. Li J.J. et al., On strain hardening mechanism in gradient nanostructures, ICTAM 2016, Montreal, Canada, Oral Presentation, August 21-26, 2016.
2. 李建军,陈少华,武晓雷,Soh A.K., 一个揭示梯度纳米结构材料中本征硬化行为的物理法则,全国固体力学大会,四川成都,专题会议报告,2014.10.10-12.
3. Li J.J., Soh A.K., Modeling of the plastic deformation of nanostructured materials with grain size gradient, International Symposium on Plasticity 2013 and Its Current Applications, Nassau, Bahamas,Oral presentation, Jan. 3-8, 2013.
4. 李建军,陈少华,钢板控冷模拟及其残余应力反演,中国力学大会(CCTAM’2009),河南郑州,专题会议报告,2009.08.24-26.
社会兼职
Philosophical Magzine Letters 审稿人