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    杨洋 副教授
    来源: 时间:2020-05-20 浏览:


    杨洋,女,博士,副教授,广东工业大学青年百人计划”A类引进人才。目前担任广东省大湾区激光与增材制造产业技术创新联盟副秘书长,广东省生物医学工程学会医疗器械分会委员,广东省精准医学分会医工结合分会常务委员,“汉邦科技-广工大金属增材制造技术联合研发中心”主任,中国机械工程学会高级会员、中国生物材料学会会员。

    多次受邀参加国内外相关会议与论坛并进行口头报告,主要包括医疗器械论坛,4D打印技术论坛,中国生物材料大会,增材制造青年科学家论坛,国际快冷与亚稳材料会议,法日双边无机与环境材料研讨会等。迄今为止发表SCI高水平论文30余篇,主持或承担多项国家级和省部级科研项目,包括国家自然科学青年基金深圳市基础研究自由探索项目国家重点研发计划-低模量高强度亲水牙种植体系统研发上海光源开放课题中国散裂中子源合作项目等。主讲《机械制造基础》、《工程材料》和《3D打印技术原理与实践》等课程。

    教育经历

    Ø2011-2015:法国雷恩国立应用科学学院,冶金化学系,博士研究生.

    Ø2008-2011:中国科学院金属研究所,钛合金研究部,硕士研究生.

    Ø2004-2008:中南大学,材料科学与工程学院,学士.

    研究方向

    Ø微创医疗器械设计与制造.

    Ø激光增减材在线检测研发

    Ø智能化增材制造金属材料

    Ø同步辐射和中子衍射等大科学装置在制造与材料研究中的应用.

    Ø增材制造医疗器械的研发与产业化.

    近三年发表论文

    [1]Nano-precipitation leading to linear zero thermal expansion over a wide temperature range in Ti22NbH. Wang, D.K.Z. Lai, J. Xu, W. Yin, C. Song, Y. Zhao,Y. Yang, M. Bonisch, Z. Sun, Scripta Materialia, 2021, 205: 114222.SCI收录,IF=5.611JCR一区,Top期刊)

    [2]基于超声声速法的镍基单晶材料晶体取向评价,张晨昕,姚松,李雄兵*,杨洋,韩军,航空学报, 2022; 43: 425431.EI收录)

    [3]Graded functionality obtained in NiTi shape memory alloy via a repetitive laser processing strategy;Y. Yang, Z.G. Wu, B.Y. Shen, M.Z. Wu, Z.S. Yuan, C.Y. Wang*, L.C. Zhang*,Journal of Materials Processing Technology, 2021; 296: 117177.SCI收录,IF=5.551JCR一区,Top期刊)

    [4]Plastic deformation via hierarchical nano-sized martensitic twinning in the metastablebTi-24Nb-4Zr-8Sn alloy,Y. Yang, P. Castany*, Y.L. Hao, T. Gloriant,Acta Materialia, 2020; 194: 27~39.SCI收录,IF=8.203JCR一区,Top期刊)

    [5]Functionally graded NiTi alloy with exceptional strain-hardening effect fabricated by SLM method;Y. Yang*, J.B. Zhan, J.B. Sui, C.Q. Li, K. Yang, P. Castany, T. Gloriant,Scripta Materialia, 2020; 188: 130~134.SCI收录,IF=5.611JCR一区,Top期刊)

    [6]Prewetting Polypropylene-Wood Pulp Fiber Composite Nonwoven Fabric for Oil–Water Separation, Z. Yuan*, Z. Ke, Y. Qiu, L. Zheng,Y. Yang, Q. Gu, C. Wang*,ACS Applied Materials & Interfaces, 2020; 12: 46923-46932.SCI收录,IF=9.299JCR一区)

    [7]Evolution of functional properties realized by increasing laser scanning speed for the selective laser melting fabricated NiTi alloy,Y. Yang*, J.B. Zhan, Z.Z. Sun,H.L. Wang, J.X. Lin*, Y.J. Liu, L.C. Zhang,Journal of Alloys and Compounds, 2019; 804: 220~229.SCI收录,IF=5.316JCR一区,Top期刊)

    [8]Experimental investigation on the deformation behaviors of Ti-6Al-4V sheet in electropulsing-assisted incremental forming, D.W. Ao, X.R. Chu*, Y. Yang, S.X. Lin, J. Gao, International Journal Advanced Manufacturing Technology, 2019; 104, 4243-4254.SCI收录,IF=2.925JCR二区)

    [9]Laser beam energy dependence of martensitic transformation in SLM fabricated NiTi shape memory alloy;Y. Yang, J.B. Zhan, B. Li, J.X. Lin*, J.J. Gao, Z.Q. Zhang, L. Ren, P. Castany, T. Gloriant*Materialia, 2019; 6: 100305.SCI收录,IF=None

    [10]冷却速率对TC16钛合金显微组织和力学性能的影响;张志强;董利民;胡明;雷晓飞;杨洋;杨锐*;中国有色金属学报, 2019; 29: 1391-1398.EI收录,)

    [11]Stress release-induced interfacial twin boundary ω phase formation in a β type Ti-based single crystal displaying stress-induced α” martensitic transformation;Y. Yang, P. Castany, E. Bertrand, M. Cornen, J.X. Lin*, T. Gloriant*,Acta Materialia, 2018; 149: 97~107.SCI收录,IF=8.203JCR一区,Top期刊)

    [12]Gradient in microstructure and mechanical property of selective laser melted AlSi10Mg; Y.J. Liu, Z. Liu, Y. Jiang, G.W. Wang,Y. Yang*,L.C. Zhang*,Journal of Alloys and Compounds, 2018; 735: 1414-1421.SCI收录,IF=5.316JCR一区,高被引,TOP期刊)

    [13]Effect of thermal treatment and fluoride ions on the electrochemical corrosion behavior of selective laser melted CoCrW alloy; Y.J. Lu, S. Guo,Y. Yang*, Y.J. Liu, Y. Zhou, S.Q. Wu, C.Q. Zhao, J.X. Lin*,Journal of Alloys and Compounds, 2018; 730: 552-562.SCI收录,IF=5.316JCR一区,Top期刊)

    [14]CoCrWCu alloy with antibacterial activity fabricated by selective laser melting: Densification, mechanical properties and microstructural analysis, Y.J. Lu, L. Ren*, S.Q. Wu, C.G. Yang, W.L. Lin, S.L. Xiao,Y. Yang*, K. Yang, J.X. Lin*,Powder Technology, 2018; 325: 289~300.SCI收录,IF=5.136JCR一区,TOP期刊)

    [15]The effect of 3 wt.% Cu addition on the microstructure, tribological property and corrosion resistance of CoCrW alloys fabricated by selective laser melting, J.S. Luo, S.Q. Wu, Y.J. Lu,Y. Yang, J.X. Lin*, Journal of Materials Science in Medicine, 2018; 29: 37. (EI, JCR二区TOP)SCI收录,IF=2.489JCR二区)

    [16]Effect of Cu on microstructure, mechanical properties, corrosion resistance and cytotoxicity of CoCrW alloy fabricated by selective laser melting, Y.J. Lu, L. Ren*, X.C Xu,Y. Yang, S.Q. Wu, J.S. Luo, M.Y. Yang, L.L. Liu. D.H. Zhuang, K. Yang, J.X. Lin*, Journal of Mechanical Behavior of Biomedical Materials, 2018; 81: 130-141.SCI收录,IF=3.372JCR二区)

    [17]Effect of electropulsing treatment on microstructure and mechanical behavior of Ti-6Al-4V alloy sheet under argon gas protection, D.W. Ao, X.R. Chu*,Y. Yang,S.X. Lin, J. Gao*, Vacuum, 2018; 148: 230-238.SCI收录,IF=2.906JCR二区)

    [18]Effect of electropulsing on springback during V-bending of Ti-6Al-4V titanium alloy sheet, D.W. Ao, X.R. Chu*,Y. Yang, S.X. Lin, J. Gao, International Journal Advanced Manufacturing Technology, 2018; 96: 3197-3207.SCI收录,IF=2.925JCR二区)

    [19]Hot Tensile Behaviors and Microstructure Evolution of Ti-6Al-4V Titanium Alloy Under Electropulsing, D.W. Ao, X.R. Chu*, S.X. Lin,Y. Yang, J. Gao, Acta Metallurgica Sinica-English Letters, 2018; 31: 1287-1296.SCI收录,IF=2.090JCR二区)

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