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武汉科技大学材料与冶金学院导师教师师资介绍简介-吴传栋

/2021-08-08


姓名:吴传栋行政职务:无
毕业院校:武汉理工大学
最后学历:博士研究生
性 别:男
专业技术职称:
毕业专业:材料学最后学位:博士
院 系:材冶金材副教授
毕业时间:2017-12

办公电话:
15071442550
E-mail:wuchuand@wust.edu.cn

◇ 个人简介(主要研究方向、个人成果、学术兼职等总体介绍)
2020-12 至现在,武汉科技大学,材料与冶金学院,副教授
2018-01 至 2020-12,武汉科技大学,省部共建耐火材料与冶金国家重点实验室,讲师/博士后
2015-10 至 2017-09,美国加州大学戴维斯/欧文分校,材料学,联合培养博士
2014-09 至 2017-12,武汉理工大学,材料科学与工程,博士
2012-09 至 2014-09,武汉理工大学,材料科学与工程,硕士
2008-09 至 2012-06,武汉科技大学,冶金工程,学士

担任 Materials Science and Engineering A,Powder Technology,Journal of Alloys and Compounds, Materials
Characterization 等国际期刊审稿人,累计审稿 70 余篇,发表论文 30 余篇(SCI 收录 21篇),第一作者/通讯作者 18 篇,授权发明专利 6 项,荣获 Elesvier
期刊杰出审稿人奖。
主要研究方向为:超重力场凝固,轻质高强金属材料。

◇ :在国内外核心期刊上发表学术论文情况
1) C. Wu, J. Zhang, et al., Interfacial segregation and precipitates behavior in the ultra?ne
grained Al-based metal matrix composites, Journal of Alloys and Compounds 770 (2019) 625-630.
2) C. Wu, G. Luo, et al., Influence of length-scale on stabilization of boron carbide in Al-based
metal matrix composites during plasma activated sintering, Powder Technology 339 (2018) 809-816.
3) C. Wu, R. Shi, et al., Synthesis of functionally graded AA7075-B4C composite with multi-level
gradient structure. Ceramics International 45 (2019) 7761-7766.
4) C. Wu, R. Shi, et al., Influence of particulate B4C with high weight fraction on microstructure
and mechanical behavior of an Al-based metal matrix composite. Journal of Alloys and Compounds 789
(2019) 825-833.
5) C. Wu, G. Luo, et al., Towards homogeneous distribution of coarse grain in a tri-modal Al-based
composites utilizing localized grain growth, Powder Technology 366 (2020) 107-111.
6) Z. Gan, H. Wu, Y. Sun, P. Jiang, Y. Su, C. Wu*, J. Liu, Super-gravity field assisted
homogeneous distribution of sub-micron eutectic Si in Al-Si alloy. Journal of Alloys and Compounds
817 (2020) 152701.
7) Z. Gan, H. Wu, Y. Sun, Y. Su, Y. Wang, C. Wu*, J. Liu, Influence of Co contents and
super-gravity field on refinement of in-situ ultra-fined fibers in Al-2.5Ni eutectic alloys.
Journal of Alloys and Compounds 822 (2020) 153607.
8) H. Wu, C. Wu*, Y. Lu, P. Jiang, Z. Gan, J. Liu, Towards enhanced strength and ductility of
Al-14.5Si alloy

via solidification under super-gravity field Advanced Engineering Materials (2020).
9) C. Wu*, Y. Lu, G. Luo, Q. Shen, Z. Gan, J. Liu, Influence of particulate B4C size on
microstructural evolution and mechanical behavior in nanostructured Al matrix during heat
treatment. Powder Technology 374 (2020) 274-282.
10) C. Wu, K. Ma, et al. Precipitation phenomenon in Al-Zn-Mg alloy matrix composites reinforced
with B4C particles. Scientific Report, 2017, 7: 9589.
11) C. Wu, K. Ma, et al. Influence of particle size and spatial distribution of B4C
reinforcement on the microstructure and mechanical behavior of precipitation strengthened Al
alloy matrix composites. Materials Science and Engineering: A, 2016, 675: 421-430.
12) C. Wu, P. Fang, et al. Effect of plasma activated sintering parameters on microstructure and
mechanical properties of Al-7075/B4C composites. Journal of Alloys and Compounds, 2014, 615:
276-282.
13) C. Wu, J. Wu et al. Synthesis of AA7075-AA7075/B4C bilayer composite with enhanced
mechanical strength via plasma activated sintering. Journal of Alloys and Compounds, 2017. 701:
416-424.
14) Q. Shen, C. Wu, et al. Microstructure and mechanical properties of Al-7075/B4C composites
fabricated by plasma activated sintering. Journal of Alloys and Compounds, 2014, 588: 265-270.
15) G. Luo, J. Wu, S. Xiong, Q. Shen, C. Wu* et al. Microstructure and mechanical behavior of
AA2024/B4C composites with a network reinforcement architecture. Journal of Alloys and Compounds,
2017, 701: 554-561.
16) R. Liu, C. Wu, J. Zhang, G. Luo, et al. Influence of sintering temperature on grain growth and
mechanical behavior of the ultra-fine grained B4C/AA7075 composite synthesized via one-step
consolidation. Journal of alloys and Compounds. 2018, 748: 737-744.
17) J. Hu, J. Zhang, C. Wu, G. Luo, J. Wu, Q. Shen, L. Zhang. Interfacial microstructure and
strengthening mechanism of TC4 reinforced Al-Zn-Mg alloy synthesized via hot pressing.
Metallurgical and Materials transactions A. Materials Science and Technology, 2017, 34: 199-208.
18) Y. Sun, G. Luo, C. Wu, et al. Phase Transition, Microstructure and Mechanical Properties of TC4
Titanium Alloy prepared by Plasma Activated Sintering. Journal of Alloys and Compounds. 741 (2018)
916-926.
19) K. Kang, L. Zhang, G. Luo, J. Zhang, R. Tu, C. Wu, et al. Microstructural
Evolution and Mechanical Behavior of W-Si-C Multi-phase Composite Prepared by Arc-melting.
Materials Science and Engineering: A. 2018, 712: 28-36.
20) J. Zhang, S. Ma, J. Zhu, K. Kang, G. Luo, C. Wu, Q. Shen, L. Zhang, Microstructure and
Compression Strength of W/HfC Composites Synthesized by Plasma Activated Sintering Metals and
Materials International. 2018, 25: 416-424.
◇ :完成及承担科研项目
1) 国家自然科学基金委员会, 青年项目, 51904213, 碳化硼颗粒增强铝基复合材料热处理过程中多相多尺度结构调控与强韧化机理, 2020.01-2022.12, 25万元,
在研, 主持
2) 中国博士后科学基金面上项目, 2018M642930, 多相纳米结构B4C/AA7075复合材料的相界面调控, 2019.01-2020.06, 5万元, 主持.
3) 湖北省“楚天学者”楚天学子科研启动基金. 主持
4) 参与国家自然科学基金-面上项目、校企合作项目等项目。

◇ :成果获奖情况
1) 甘章华,孙瑶,吴传栋,刘静,卢志红,一种选择性腐蚀制备铝镍纳米纤维的方法,中国发明专利,201810339019.7
2) 沈强,吴传栋. 碳化硼颗粒增强铝基复合材料的制备方法. 2015.12.09.中国. CN103572087B.(专利授
权).
3) 沈强,吴传栋. 一种铝锌镁铜锆系高强铝合金的制备方法. 2015.04.08.中国. CN103088242B.(专利授权).
4) 沈强,方攀,张联盟,罗国强,吴传栋. 一种钛合金颗粒增强铝基复合材料及其制备方法.
201610002973.8.
5) 张联盟,熊舒雅, 吴传栋. 一种碳化硼颗粒增强纳米/ 超细晶铝基复合材料的制备方法. 201710243989.2.
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