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黄再旺
个人简介

黄再旺,工学博士,中南大学副教授。分别于20047月,20075月,20128月在西安理工大学材料科学与工程学院,西安交通大学材料科学与工程学院,美国南卡罗莱纳大学机械工程系获得学士,硕士和博士学位。201210月加入中南大学粉末冶金研究院,任讲师,20179月任副教授。主要从事航空发动机镍基高温合金涡轮盘和涡轮叶片等关键部件的基础研发和工程化工作。发展了多个高通量实验和表征方法,在粉末高温合金上进行了示范应用,获得了国家重点研发计划项目支持。基于热力学计算和物理模型的单晶高温合金成分快速设计,申请单晶高温合金成分专利6项。开展了单晶高温合金超纯净冶炼研究,系统总结了国内外单晶高温合金原材料痕量元素控制水平,总结了欧美先进水平和我国在单晶高温合金母合金痕量元素控制方面的差距,获取了较详实的基础实验数据。开展了自主知识产权单晶高温合金,研发的低铼低密度新型合金性能获得了用户单位的好评,作为项目骨干参与国家重点研发计划项目“高通量块体材料制备新方法、新技术与新装备”。主持和参与了国家自然科学基金、国家863项目,省部级重点研发计划项目和军工企业科研项目。发表学术论文30余篇,其中3Physical Review Letters2Acta Materialia,1篇Scripta Materilia,是多个国际知名期刊审稿人。

联系方式:huangzaiwang@csu.edu.cn


教育经历

2000/09-2014/07

西安理工大学,材料科学与工程学院,学士

2004/09-2007/05

西安交通大学,材料科学与工程学院,硕士

2007/08-2012/08

美国南卡罗莱纳大学(University of South Carolina, Columbia), 机械工程系,博士

工作经历

2012/10-2017/09

中南大学,粉末冶金研究院,助理教授

科研方向:航空发动机用粉末镍基高温合金、铸造镍基高温合金

 

2017/10-现在

中南大学,粉末冶金研究院,副教授

科研方向:航空发动机用粉末镍基高温合金、铸造镍基高温合金、材料基因工程

科研方向
  1. 航空发动机用粉末高温合金
  2. 航空发动机用铸造高温合金
  3. 材料基因工程
  4. 生物结构材料
讲授课程
金属凝固及成形技术,硕士研究生专业课程, 2020秋季
学术成果

Publications

1.       Xiaodong Li and Zaiwang Huang. Unveiling the formation mechanism of pseudo-single-crystal aragonite platelets in nacre, Physical review letters, 102: 075502. 2009.

2.       Zaiwang Huang and Xiaodong Li. Nanoscale structural and mechanical characterization of heat treated nacre, Materials Science & Engineering C, 6: 1803-07. 2009.

3.       Zhihui Xu, Yingchao Yang, Zaiwang Huang, and Xiaodong Li. Elastic modulus of biopolymer matrix in nacre measured using coupled atomic force microscopy bending and inverse finite element techniques, Materials Science and Engineering: C, 31: 1852-56. 2011.

4.       Zaiwang Huang, Haoze Li, Zhiliang Pan, Qiuming Wei, Yuh J Chao, and Xiaodong Li. Uncovering high-strain rate protection mechanism in nacre, Scientific reports, 1: 148. 2011.

5.       Zaiwang Huang and Xiaodong Li. Order-disorder transition of aragonite nanoparticles in nacre, Physical review letters, 109: 025501. 2012.

6.       Zaiwang Huang and Xiaodong Li. Origin of flaw-tolerance in nacre, Scientific reports, 3: 1693. 2013.

7.       Zaiwang Huang, Zhiliang Pan, Haoze Li, Qiuming Wei, and Xiaodong Li. Hidden energy dissipation mechanism in nacre, Journal of Materials Research, 29: 1573-78. 2014.

8.       Guoai He, Feng Liu, Lan Huang, Zaiwang Huang, and Liang Jiang. Microstructure evolutions and nucleation mechanisms of dynamic recrystallization of a powder metallurgy Ni-based superalloy during hot compression, Materials Science and Engineering: A, 677: 496-504. 2016.

9.       Guoai He, Feng Liu, Lan Huang, Zaiwang Huang, and Liang Jiang. Controlling grain size via dynamic recrystallization in an advanced polycrystalline nickel base superalloy, Journal of Alloys and Compounds, 701: 909-19. 2017.

10.     Guoai He, Liming Tan, Feng Liu, Lan Huang, Zaiwang Huang, and Liang Jiang. Strain amount dependent grain size and orientation developments during hot compression of a polycrystalline nickel based superalloy, Materials, 10: 161. 2017.

11.     Guoai He, Liming Tan, Feng Liu, Lan Huang, Zaiwang Huang, and Liang Jiang. Unraveling the formation mechanism of abnormally large grains in an advanced polycrystalline nickel base superalloy, Journal of Alloys and Compounds, 718: 405-13. 2017.

12.     Guoai He, Liming Tan, Feng Liu, Lan Huang, Zaiwang Huang, and Liang Jiang. Revealing the role of strain rate during multi-pass compression in an advanced polycrystalline nickel base superalloy, Materials Characterization, 128: 123-33. 2017.

13.     Jia Li, Bin Liu, Qihong Fang, Zaiwang Huang, and Youwen Liu. Atomic-scale strengthening mechanism of dislocation-obstacle interaction in silicon carbide particle-reinforced copper matrix nanocomposites, Ceramics International, 43: 3839-46. 2017.

14.     Jialin Liu, Zaiwang Huang, Zhiliang Pan, Qiuming Wei, Xiaodong Li, and Yue Qi. Atomistic origin of deformation twinning in biomineral aragonite, Physical review letters, 118: 105501. 2017.

15.     Liming Tan, Zaiwang Huang, Feng Liu, Guoai He, Xin Wang, Lan Huang, Yiwen Zhang, and Liang Jiang. Effects of strain amount and strain rate on grain structure of a novel high Co nickel-based polycrystalline superalloy, Materials & Design, 131: 60-68. 2017.

16.     Hongyu Wu, Jia Li, Feng Liu, Lan Huang, Xin Zeng, Qihong Fang, Zaiwang Huang, and Liang Jiang. A high-throughput methodology search for the optimum cooling rate in an advanced polycrystalline nickel base superalloy, Materials & Design, 128: 176-81. 2017.

17.     Wei Chen, Zaiwang Huang, Shuo Cao, Yan Pan, Mingda Huang, Qingmiao Hu, Ding Xu, Qiaoyan Sun, Lin Xiao, and Jun Sun. Strain rate-induced plasticity in bcc β-Ti alloy single crystal micropillars containing brittle ω-precipitates, Materials & Design, 137: 404-13. 2018.

18.     Jinghao Xu, Zaiwang Huang, and Liang Jiang. Effect of heat treatment on low cycle fatigue of IN718 superalloy at the elevated temperatures, Materials Science and Engineering: A, 690: 137-45. 2017.

19.     Jinjun Fan, Jia Li, Zaiwang Huang, Pihua Wen, and Colin Bailey. Grain size effects on indentation-induced plastic deformation and amorphization process of polycrystalline silicon, Computational Materials Science, 144: 113-19. 2018.

20.     Qihong Fang, Ming Yi, Jia Li, Bin Liu, and Zaiwang Huang. Deformation behaviors of Cu29Zr32Ti15Al5Ni19 high entropy bulk metallic glass during nanoindentation, Applied Surface Science, 443: 122-30. 2018.

21.     Sihua Luo, Zaiwang Huang, Ziwei Xie, Ping Zhou, and Liang Jiang. High-throughput characterization phase transformation temperature based on end-quenching methodology, Materials Research Express, 6: 036503. 2018.

22.     Jinghao Xu, Zaiwang Huang, and Liang Jiang. Low cycle fatigue behavior of a high Co polycrystalline nickel-base superalloy at 750° C, Journal of Alloys and Compounds, 749: 1106-14. 2018.

23.     Wenkai Deng, Jinghao Xu, Yunming Hu, Zaiwang Huang, and Liang Jiang. Isothermal and thermomechanical fatigue behavior of Inconel 718 superalloy, Materials Science and Engineering: A, 742: 813-19. 2019.

24.     Qihong Fang, Li Li, Jia Li, Hongyu Wu, Zaiwang Huang, Bin Liu, Yong Liu, and Peter K Liaw. A statistical theory of probability-dependent precipitation strengthening in metals and alloys, Journal of the Mechanics and Physics of Solids, 122: 177-89. 2019.

25.     Xiaotao Liu, Zaiwang Huang, and Liang Jiang. Anisotropic behavior of tensile properties in a hot-extruded polycrystalline nickel-base superalloy, MRS Communications: 1-6. 2019.

26.     Yanming Pan, Longfei Zhang, Zaiwang Huang, and Liang Jiang. Coarsening behavior of γ′ precipitates of single crystal Ni-based superalloys during long-term exposure, Materials Letters, 241: 210-13. 2019.

27.     Xin Wang, Zaiwang Huang, Biao Cai, Ning Zhou, Oxana Magdysyuk, Yanfei Gao, Shesh Srivatsa, Liming Tan, and Liang Jiang. Formation mechanism of abnormally large grains in a polycrystalline nickel-based superalloy during heat treatment processing, Acta Materialia, 168: 287-98. 2019.

28.     Hongyu Wu, Zaiwang Huang, Ning Zhou, Jiguang Chen, Ping Zhou, and Liang Jiang. A study of solution cooling rate on γ’precipitate and hardness of a polycrystalline Ni-based superalloy using a high-throughput methodology, Materials Science and Engineering: A, 739: 473-79. 2019.

29.     Longfei Zhang, Zaiwang Huang, Liang Jiang, Junhua Luan, Zengbao Jiao, and Chain Tsuan Liu. Effect of Mo: W ratio on segregation behavior and creep strength of nickel-based single crystal superalloys, Materials Science and Engineering: A, 744: 481-89. 2019.

30.     Longfei Zhang, Zaiwang Huang, Yanming Pan, and Liang Jiang. Design of Re-free nickel-base single crystal superalloys using modelling and experimental validations, Modelling and Simulation in Materials Science and Engineering, 27: 065002. 2019.

31.     Xiaoyu Sun, Longfei Zhang, Yanming Pan, Xin Wang, Zaiwang Huang, and Liang Jiang. Microstructural evolution during cyclic oxidation of a Ni-based singe crystal superalloy at 1100° C, Corrosion Science, 162: 108216. 2020.

32.     Wenkai Deng, Dong Zhang, Hongy Wu, Zaiwang Huang, Kechao Zhou, Liang Jiang. Prediction of yield strength in a polycrystalline nickel base superalloy during interrupt cooling, Scripta Materilia, 183, 139-143, 2020.

33.     Pei Fu, Ping Zhou, Tianyang Zhao, Yanpo Song, Zaiwang Huang. Study of the heat transfer coefficient of a nickel-based superalloy in the end-quench test with air. International Journal of Thermal Sciences, 155, 106416, 2020.

34.     Wei Zhang, Yanfei Gao, Zhili Feng, Xin Wang, Siyu Zhang, Lan Huang, Zaiwang Huang, Liang Jiang. Ductility Limit Diagrams for Superplasticity and Forging of High Temperature Polycrystalline Materials. Acta Materialia, 194, 378-386, 2020.