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杨健
2023-05-06 11:21
  • 杨健
  • 杨健 - 副教授-北京科技大学-材料科学与工程学院-个人资料

近期热点

资料介绍

个人简历


2006.09—2010.06 燕山大学 金属材料工程本科 2010.09—2015.06 燕山大学 材料学 硕博连读 2015.08— 北京科技大学 材料加工与控制工程师资博士后

研究领域


表面涂层技术;电子封装微连接技术;第一性原理模拟

近期论文


[1] J. Yang, X.L. Xing, S. Liu, C.C. Zhao, Y. Zhao, Q.X. Yang. Structural and chemical contributions on solubility of silicon and carbon in ferrite studied by first-principles calculations. Journal of Alloys and Compounds, 2017, 695: 2717-2722. [2] J. Yang, C.X. Wang, X.L. Xing, Y.L. Yang, X.J. Ren, Q.X. Yang. Stress induced phase transition on the medium-high carbon alloy steel hardfacing coating during the work hardening process: Experiments and first-principles calculation. Materials Science & Engineering A, 2016, 670: 49-56. [3] J. Yang, X.R. Hou, P. Zhang, Y.F. Zhou, Y.L. Yang, X.J. Ren, Q.X. Yang. Mechanical properties of the hypereutectoid Fe-Cr-C hardfacing coatings with different nano-Y2O3 additives and the mechanism analysis. Materials Science and Engineering: A, 2016, 655: 346-354. [4] J. Yang, J.H. Huang, D.Y. Fan, S.H. Chen, X.K. Zhao. LaAlO3 as the heterogeneous nucleus of ferrite: Experimental investigation and theoretical calculation. Journal of Alloys and Compounds, 2016, 683: 357-369. [5] J. Yang, J.H. Huang, D.Y. Fan, S.H. Chen, X.K. Zhao. Comparative investigation on RE(La, Ce)AlO3(100)/γ-Fe(100) interfaces: A first-principles calculation. Applied Surface Science, 2016, 384: 207-216. [6] J. Yang, J.H. Huang, D.Y. Fan, S.H. Chen. First-principles investigation on the interaction of Boron atom with Nickel part I: From surface adsorption to bulk diffusion. Journal of Alloys and Compounds, 2016, 663: 116-122. [7] J. Yang, J.H. Huang, D.Y. Fan, S.H. Chen, X.K. Zhao. First-principles investigation on the electronic property and bonding configuration of NbC(111)/NbN(111) interface. Journal of Alloys and Compounds, 2016, 689: 874-884. [8] J. Yang, J.H. Huang, D.Y. Fan, Z. Ye, S.H. Chen, X.K. Zhao. Temperature and stress simulation of the hardfacing for Cr5Mo1V-RE alloy --- using various technological parameters and experimental verification. Welding Journal, 2016, 8: 309s-323s. [9] J. Yang, J.H. Huang, D.Y. Fan, S.H. Chen. Microstructure and wear properties of Fe-6wt.%Cr-0.55wt.%C-Xwt.%Nb Laser cladding coating and the mechanism analysis. Materials & Design, 2015, 88: 1031-1041. [10] J. Yang, X.R. Hou, X.L. Xing, C.X. Wang, Y.L. Yang, X.J. Ren, Q.X. Yang. Effect of FCAW Current on the Hardfacing Layer-Microstructure and Wear Resistance. Welding journal, 2015, 94: 358-365. [11] J. Yang, P.F. Zhang, Y.F. Zhou, X.L. Xing, X.J. Ren, Y.L. Yang, Q.X. Yang. Mechanical properties of the hardfacing alloys with different La2O3 additives and the mechanism analysis by first-principles calculations. Materials Science & Engineering A, 2014, 591: 82-89. [12] J. Yang, J.J. Tian, F.F. Hao, T. Dan, X.J. Ren, Y.L. Yang, Q.X. Yang. Microstructure and wear resistance of the hypereutectic Fe-Cr-C alloy hardfacing metals with different La2O3 additives. Applied Surface Science, 2014, 289: 437-444.

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