|
个人信息Personal Information
教授
博士生导师
硕士生导师
教师拼音名称:Shen Yongfeng
入职时间:2006-10-08
学历:博士研究生毕业
性别:男
联系方式:shenyf@smm.neu.edu.cn
学位:博士
在职信息:在职
主要任职:1.教育部学位与研究生教育评估专家 2. 教育部全国本科毕业设计抽检评审专家 3. 学术桥评审专家 4. 凡科评审质量研究院优秀评审专家
其他任职:1.辽宁/甘肃/四川/江西/广东/安徽/山西/内蒙古/河北/省科技评审专家 2.辽宁省金属学会理事/轧钢分会副主任委员 3. 沈阳市领军人才 4.无锡市太湖人才 5. 国际SCI期刊《Nanomaterials》特邀编委
- [69] M.Y. He, N. Jia, X.C. Liu*, Y.F. Shen*, L. Zuo, Abnormal chemical composition fluctuations in multi-principal-element alloys induced by simple cyclic deformation, J. Mater. Sci. Technol., XX (2022) XXX..
- [68] M.Y. He, Y.F. Shen*, N. Jia*, P.K. Liaw, C and N doping in high-entropy alloys: A pathway to achieve desired strength-ductility synergy, Applied Materials Today 25 (2021) 101162..
- [67] J.H. Zhou, Y.F. Shen*, W.Y. Xue, N. Jia*, Hot-deformation induced static recrystallization and nano-MX precipitation in a low activation martensitic steel, J Nucl. Mater., 556 (2021) 153190. .
- [66] X.X. Dong, S. Liu, Y.F. Shen*, N. Jia*, Isothermal holding treatment of a transformation-induced plasticity steel for obtaining ultrahigh strength and high plasticity, J Mater. Eng. Perf., 30 (2021) 4504-4517. .
- [65] Z.Y. Zhao, N. Guan*, Y.F. Shen*, P.K. Bai, Grain refinement mechanism of Mg-3Sn-1Mn-1La alloy during accumulative hot rolling, J. Mater. Sci. Technol., 91 (2021) 251-261..
- [64] Z.F. He, N. Jia*, H.W. Wang, H.L. Yan, Y.F. Shen*, Synergy effect of multi-strengthening mechanisms in FeMnCoCrN HEA at cryogenic temperature, J. Mater. Sci. Technol., 86 (2021) 158-170..
- [63] Z.F. He, H.L. Yan, Y.F. Shen, N. Jia*, M.W. Zhu; X.J. Guan; X.L. Zhao; S.B. Jin; G. Sha; Y.T. Zhu; C.T. Liu, Multi-heterostructure and mechanical properties of N-doped FeMnCoCr high entropy alloy, Inter. J. Plasticity, 139 (2021) 102965..
- [62] J.W. Liang, Y.F. Shen*, R.D.K. Misra, P.K. Liaw, High Strength-Superplasticity Combination of Ultrafine-grained Ferritic Steel: The Significant Role of Nanoscale Carbides, J. Mater. Sci. Technol., 83 (2021) 131-144..
- [61] J.Wang, Y.F. Shen*,W.Y. Xue, N.Jia*, R.D.K.Misra, The significant impact of introducing nanosize precipitates and decreased effective grain size on retention of high toughness of simulated heat affected zone (HAZ), Mater. Sci. Eng. A, 803 (2021) 140484..
- [60] X.X. Dong, Y.F. Shen*,W.Y. Xue, N.Jia*, Improved work hardening of a medium carbon-TRIP steel by partial decomposition of retained austenite, Mater. Sci. Eng. A, 803 (2021) 140504..

