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个人简介

杨洋,博士,副教授,博士毕业于法国雷恩国立应用科学学院(INSA de Rennes),广东工业大学“青年百人计划”A类引进人才,目前研究方向为3D与4D打印材料、结构和技术研究。 教育经历 2011-2015:法国雷恩国立应用科学学院,冶金化学系(导师:T. Gloriant & P. Castany), 博士研究生. 2008-2011:中国科学院金属研究所,钛合金研究部,硕士研究生. 2004-2008:中南大学,材料科学与工程学院,学士. 工作经历 2020-今:广东工业大学,机电工程学院,机械制造及其自动化学科.副教授。 2017-2019:中国科学院福建物质结构研究所,结构化学国家重点实验室,先进制造研究所,3D打印工程中心,副研究员. 2015-2016:法国国立应用科学学院,博士后. 2016-2017:北京大学深圳研究院,生物医学工程中心,助理研究员. 主持或参加科研计划 1. 国家自然科学青年基金,51801199,生物医用b型钛合金中新型马氏体孪晶及界面结构的研究,2019.01-2021.12,在研,主持 2. 福建省科技对外合作项目(合作方:澳大利亚皇家墨尔本MA Qian教授),高性能形状记忆NiTi合金的增材制造共性关键技术,2019I0027,2019.01-2021.12,在研,主持 3. 深圳市基础研究自由探索项目, JCY20160427170611414,人体植入医疗器械用低模量高强度Ti2448合金的低温相变研究,2016.08-2018.08,结题,主持 4. 福建省中科院STS计划配套项目,铝合金熔体绿色自洁净物理精炼的关键技术研发,2019.04-2021.04.30,100万,在研,第二负责人 5. 中国科学院海西研究院一三五重点培育项目,增材制造材料与技术-形状记忆功能3D打印TiNi合金的研发,2017.01-2020.12, 在研,子课题负责人 6. 国家重点研发计划,2016YFC1103600,低模量高强度亲水牙种植体系统研发, 2016.07-2020.12,在研,主要参与人. 7. 上海光源开放课题,P91/92马氏体耐热钢焊接接头析出相三维空间分布定量分析,2017-2019,主要参与人 8. 中国散裂中子源合作项目,亚稳β相钛合金相分离及纳米颗粒相析出过程的中子小角散射研究,2018-2020,在研,主要参与人 合作与交流 Ø 21/12/2019:第三届4D打印技术论坛,华中科技大学,武汉. Ø 28-29/04/2018:增材制造青年科学家论坛,广州. Ø 20-23/04/2018:中国生物材料大会,深圳(青年学者擂台). Ø 21-23/10/2016: 17届国际材联亚洲材料大会,材料表征新技术分论坛,青岛. Ø 01-06/07/2016:国际固体材料结构和性能的关系研讨会, 南特, 法国. Ø 24-28/11/2014:法国材料学大会, 蒙彼利埃, 法国. Ø 24-28/08/2014:第十五届国际快冷与亚稳材料会议 (RQ15), 上海, 中国. Ø 24-28/03/2014:布列塔尼同步辐射研讨会 BSRD2, 雷恩,法国. Ø 27-31/10/2013:法日双边无机与环境材料研讨会 (ISIEM), 雷恩,法国. Ø 04-10/03/2013:欧洲同步辐射中心ESRF,ID 31, 格勒诺布尔,法国. Ø 20-25/01/2013:法国材料制备和结构研究中心, 图卢兹,法国. Ø 03-07/12/2012:布列塔尼博士生研讨会, 洛里昂, 法国.

研究领域

1. 智能化增材制造(3D打印)仿生结构、材料和技术研究. 2. 智能化增材制造(4D打印)形状记忆合金. 3. 金属材料马氏体相变与塑性变形机理. 4. 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. 5. 增材制造医疗器械的研发与产业化.

近期论文

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Ø Y. Yang, P. Castany*, T. Gloriant,Plastic deformation via hierarchical nano-sized martensitic twinning in the metastable Ti-24Nb-4Zr-8Sn alloy, Acta Materialia, 2019. https://doi.org/10.1016/j.actamat.2020.04.021. Ø Y. Yang*, J.B. Zhan, Z.Z. Sun, H.L. Wang, J.X. Lin*, Y.J. Liu, L.C. Zhang, Evolution of functional properties realized by increasing laser scanning speed for the selective laser melting fabricated NiTi alloy, Journal of Alloys and Compounds, 2019. Ø Y. Yang, P. Castany, E. Bertrand, M. Cornen, J.X. Lin* ; T. Gloriant*, Stress release-induced interfacial twin boundary ω phase formation in a β type Ti-based single crystal displaying stress-induced α” martensitic transformation, Acta Materialia, 2018(149): 97~107. Ø Y. Yang, P. Castany, M. Cornen, F. Prima, S.J. Li, Y.L. Hao, T. Gloriant*,Characterization of the martensitic transformation in the superelastic Ti-24Nb-4Zr-8Sn alloy by in situ synchrotron X-ray diffraction and dynamic mechanical analysis, Acta Materialia, 2015, (88): 25-33. Ø Y. Yang, J.B. Zhan, B. Li, J.X. Lin*, J.J. Gao, Z.Q. Zhang, L. Ren, P. Castany, T. Gloriant*,Laser beam energy dependence of martensitic transformation in SLM fabricated NiTi shape memory alloy, Materialia, 2019 (6): 100305 . Ø P. Castany*, Y. Yang, E. Bertrand, T. Gloriant*, Reversion of a Parent {130}a'' Martensitic Twinning System at the Origin of {332}β Twins Observed in Metastable β Titanium Alloys, Physical Review Letters, 2016(24): 117. Ø Y. Yang, Y.J. Liu, J. Chen, H.L. Wang, Z.Q. Zhang, Y.J. Lu, S.Q. Wu, J.X. Lin, Crystallographic features of α variants and β phase for Ti-6Al-4V alloy fabricated by selective laser melting , Materials Science and Engineering A, 2017, 707: 548~558. Ø Y. Yang, P. Castany, M. Cornen, I. Thibon, F. Prima, T. Gloriant, Texture investigation of the superelastic Ti-24Nb-4Zr-8Sn alloy, Journal of Alloys and Compounds, 2014, (591): 85-90. Ø E. Bertrand, P. Castany, Y. Yang, E. Menou, L. Héraud, T. Gloriant, Deformation twinning in a full-α″ martensitic titanium shape memory alloy, Acta Materialia, 2016, (105): 94-103. Ø Y.J. Lu, S. Guo, Y. Yang*, Y.J. Liu, Y. Zhou, S.Q. Wu, C.Q. Zhao, J.X. Lin*, Effect of thermal treatment and fluoride ions on the electrochemical corrosion behavior of selective laser melted CoCrW alloy, Journal of Alloys and Compounds, 2018, 730: 552~562 Ø Y.J. Lu, L. Ren*, S.Q. Wu, C.G. Yang, W.L. Lin, S.L. Xiao, Y. Yang*, K. Yang, J.X. Lin*, CoCrWCu alloy with antibacterial activity fabricated by selective laser melting: Densification, mechanical properties and microstructural analysis, Powder Technology, 2018, 325: 289~300 Ø Y.J. Liu, Z. Liu, Y. Jiang, G.W. Wang, Y. Yang*, L.C. Zhang*, Gradient in microstructure and mechanical property of selective laser melted AlSi10Mg, Journal of Alloys and Compounds, 2018, 735: 1414~1421 Ø J.S. Luo, S.Q. Wu, Y.J. Lu, Y. Yang, J.X. Lin*, The effect of 3% Cu addition on the microstructure, tribological property and corrosion resistance of CoCrW alloys fabricated by selective laser melting, Journal of Materials Science in Medicine, 2018, 29: 37 Ø 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, Effect of Cu on microstructure, mechanical properties, corrosion resistance and cytotoxicity of CoCrW alloy fabricated by selective laser melting, Journal of Mechanical Behavior of Biomedical Materials, 2018, 81: 130~141. Ø D.W. Ao, X.R. Chu, S.X. Lin, Y. Yang, J. Gao, Hot Tensile Behaviors and Microstructure Evolution of Ti-6Al-4V Titanium Alloy Under Electropulsing, 2018, 16. Ø D.W. Ao, X.R. Chu, Y. Yang, S.X. Lin, J. Gao, Effect of electropulsing treatment on microstructure and mechanical behavior of Ti-6Al-4V alloy sheet under argon gas protection, Vacuum, 2018, 148: 230~238. Ø Z.Q. Zhang, L.M Dong, Y. Yang, S.X Guan, Y.Y. Liu, R. Yang, Microstructure refinement of a dual phase titanium alloy by severe room temperature compression, 2012, 22: 2604~2608. Ø P. Castany*, Y. Yang, E. Bertrand, M. Cornen, T. Gloriant, Investigation of Mechanical Twinning in The Ti-24Nb-4Zr-8Sn b Titanium Alloy. Proceedings of the 13th World Conference on Titanium, 2016. (conference paper) Ø Y. Yang, L.M Dong, Z.Q. Zhang, S.X Guan, R. Yang, Microstructure evolution of TC16 alloy during hot deformation in b phase field. Proceedings of the 12th World Conference on Titanium, 2011. (conference paper)

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