<div class> <p> <br/> 王轶农<br/> 院系: 材料科学与工程学院<br/> 办公电话: 0411-84708441<br/> 电子信箱: wynmm@dlut.edu.cn</a> <br/> 更新时间: 2008-3-28<br/> 其他专业: 无<br/> <br/> 个人简介 </strong><br/> 1980-09至1984-07 燕山大学(原东北重型机械学院) 材料科学与工程系金属材料与热处理专业,获工学学士学位;<br/> 1987-09至1990-03 哈尔滨工业大学 材料科学与工程系材料学专业,工学硕士;<br/> 1990-02至1996-07 佳木斯大学材料学院 讲师/副教授;<br/> 1996-09至2000-02 东北大学 材料与冶金学院材料学专业,工学博士。<br/> 2000-03至 2002-01 大连理工大学材料工程系 博士后;<br/> 2002-02 至 2003-04 台湾中山大学材料科学研究所 博士后研究员;<br/> 2003-05 2006-02 大连理工大学材料工程系 副教授;<br/> 2006-02 至 2006-08 台湾中山大学材料科学研究所 博士后研究员;<br/> 2006-09 至今 大连理工大学 材料科学与工程学院 副教授;<br/> 2007-07 至今 大连理工大学 材料科学与工程学院 博士生导师。<br/> <br/> 社会兼职</strong><br/> 中国机械工程学会会员<br/> 辽宁省电子显微镜学会理事<br/> 中国体视学会材料科学分会理事<br/> <br/> 研究领域</strong>(研究课题)<br/> 1.变形镁合金基面倾转织构形成机制与织构增韧,国家自然科学基金(50471069),2005-01至2007-12;<br/> 2.异步轧制镁合金织构特征与力学性能,辽宁省自然科学基金(20042159),2005-01至2007-12;<br/> 3.多场偶合马氏体相变及在新材料设计中的应用,国家自然科学基金重点项目(50531020),2005-01至2009-12;<br/> 4. Ni-Ti-Ta形状记忆合金相变与生物力学性能,国家自然科学基金(50171015),2003-01至2005-12;<br/> <br/> 硕博研究方向</strong><br/> 1、金属材料的形变与再结晶织构及应用;<br/> 2、镁合金织构与塑性(超塑性)变形理论;<br/> 3、马氏体相变与形状记忆合金。<br/> <br/> 出版著作和论文</strong><br/> 1. Y.N. Wang, J.C. Huang, “The role of twinning and untwinning in yielding behavior in hor-extruded Mg-Al-Zn alloy”, Acta Mater., 2007, 55: 897-905.<br/> 2. Y.N. Wang, J.C. Huang, “Grain size dependence of yield strength in randomly textured Mg-Al-Zn alloy”, Materials Transactions, 2007, 48: 184-188.<br/> 3. Y.N. Wang, J.C. Huang, “Comparison of Grain Boundary Sliding in Fine Grained Mg And Al Alloys during Superplastic Deformation”, Scripta Mater., 48 (2003): 1117.<br/> 4. Y.N. Wang, J.C. Huang, “Texture Analysis in Hexagonal Materials (review)”, Mater. Chem. Phys, 81 (2003): 11.<br/> 5. Y.N. Wang, C.L. Lee, C.C. Huang, H.K. Lin and J.C. Huang, “Influence from Extrusion Parameters on High Strain Rate and Low Temperature Superplasticity of AZ Serious Mg-Based Alloys”, Mater. Sci. Fourm, 426-433 (2003): 2655.<br/> 6. Y.N. Wang, J.C. Huang, “Texture Characteristics and Anisotropic Superplasticity of AZ61 Magnesium Alloy”, Mater. Trans. JIM, 44 (2003): 2276.2281.<br/> 7. Y.N. Wang, J.C. Huang, “Transition of Dominant Diffusion Process During Superplastic Deformation in AZ61 Magnesium”, Metall. Mater. Trans., 35A (2004): 555.<br/> 8. Y.N. Wang, J.C. Huang, “SEM Investigation on Superplastic Deformation in Mg-AZ61 Alloy Sheet”, Materials Review, 18 (2004): 230.<br/> 9. Y.N. Wang and J.C. Huang, “Superplasticity Enhanced by Two-stage Deformation in a Hot-extruded AZ61 Alloy Magnesium Alloy”, J. Mater. Sci. Technol., Vol. 21, No. 1, 2005: 71-74.<br/> 10. Y.N. Wang and J.C. Huang, “Anisotropic Tensile Properties at room temperature and Elevated Temperature in Warm-extruded AZ61 Magnesium Alloy”, Materials Science Forum, Vols.495-497, 2005: 657-662.<br/> 11. Y.N. Wang, C.I. Chang, C.J. Lee, H.K. Lin and J.C. Huang, “Texture and week grain size dependence in friction stir processed Mg-Al-Zn alloy”, Scripta Mater., 2006, 55: 637-640.<br/> 12. C.I. Chang, Y.N. Wang, H.R. Pei, C.J. Lee, and J.C. Huang, “On the Hardening of Friction Stir Processed Mg-AZ31 Based Composites with 5-20% Nano-ZrO2 and Nano-SiO2 Particles” Materials Transactions, 2006, 47 (12): 2942-2949.<br/> 13. C. I. Chang, Y. N. Wang, H. R. Pei, C. J. Lee, X. H. Du, and J. C. Huang, “Microstructure and Mechanical Properties of Nano-ZrO2 and Nano-SiO2 Particulate Reinforced AZ31-Mg Based Composites Fabricated by Friction Stir Processing”, Key Eng Mater., vol. 351, 2007, pp. 114-119.<br/> 14. GONG Chang-wei, WANG Yi-nong, YANG Da-zhi, “Microstructure and Transformation Behavior of Ni50Ti45Ta5 Shape Memory Alloy”, Trans. Nonferrous Met. Soc. China, 14(2004): 952.<br/> 15. Gong Chang-wei , Wang Yi-nong, Yang Da-zhi, “Microstructure and transformation behavior of Ni50Ti45Ta5 Shape memory alloy”,. Transaction Nonferrous Metals Society of China. 2004, 14(5): 952-956.<br/> 16. Changwei Gong, Yan Li, Yinong Wang, Dazhi Yang, “Ab initio study for electronic and crystal structure of NiTi R-phase”, Modeling and Simulation in Materials Science and Engineering,2006, 14: 33-39.<br/> 17. C.W. Gong, Y.N. Wang, D.Z. Yang, “Phase transformation and second phases in ternary Ni-Ti-Ta shape memory alloys”, Materials Chemistry and Physics, 2006, 96(2-3): 183-187.<br/> 18. C.W. Gong, Y.N. Wang, D.Z. Yang, “Martensitic transformation of Ni50Ti45Ta5 shape memory alloy”. Journal of Alloys and Compounds, 2006, 419(1-2): 61-65.<br/> 19. Gong, CW, Wang, YN, Yang, DZ, “Ab initio study of the matensitic transformation of NiTi shape memory alloy”. Acta Physics Sinica, 2006, 55(6):2877-2881.<br/> 20. K.L Yang, J.C. Huang and Y.N. Wang, “Texture Evolution and Mechanical Anisotropy in Dual Phase Ti3Al Based Alloy Loaded at 700°C and 1000°C ”, Metall. Mater. Trans., 35A (2004): 3803.<br/> 21. K.L. Yang, J.C. Huang and Y.N. Wang, “Phase Transformation in b phase of Super a2 Ti3Al Base Alloys during Static Annealing and Superplastic Deformation at 700-1000°C ”, Acta Mater., 51 (2003): 2577-2594.<br/> 22. K.L. Yang, J.C. Huang and Y.N. Wang, “Phase Evolution and Mechanical Behavior of Super a2 Ti3Al Base Alloys during Superplastic Deformation at Lower Temperatures of 700-900°C” Key Eng. Mater., 233-236 (2003): 881.<br/> 23. S.H. WU, J.C. Huang, and Y.N. Wang, Evolution of Microstructure and Texture in Mg-Zn-Al Alloys during Electron-Beam and Gas Tungsten Arc Welding, Metall. Mater. Trans., 35 (2004): 2455-2469.<br/> 24. Cai YX, Liu YD, Wang YN, et al. “Analysis of texture formation and microstructure characteristics of cold rolled IF steel sheets”, MATERIALS SCIENCE FORUM 495-497: 411-415 Part 1&2 2005.<br/> 25. Wu BL, Shi AH, Zhang YD, Wang YN, et al. “The influence of texture and GBCD on stress corrosion and intergranular corrosion in 2024 aluminum alloy”, SOLID STATE PHENOMENA 105: 181-186 2005.<br/> 26. C.S. He, Y.D. Zhang, Y.N. Wang, X. Zhao, L. Zuo, C. Esling, “Texture and microstructure development in cold-rolled interstitial free (IF) steel sheet during electric field annealing”, Scripta Mater., 48 (2003): 737.<br/> SCI收录论文 26 篇,被引用 60 次,其中他引 28 次。<br/> <br/> 工作成果</strong>(奖励、专利等)<br/> 中国机械工业科学技术发明一等奖,<br/> “镁合金激光-氩弧复合热源焊接新工艺”,<br/> 2005年(0509015)。<br/> <br/> 在读学生人数</strong><br/> 4<br/> <br/> 毕业学生人数 </strong><br/> 1<br/> </p> </div>