材料科学与工程学院

周涛

发布日期:2016-09-22 浏览量:

u 个人简介

周涛,男,汉族,198111月生,重庆人,工学博士,教授,硕士生导师。现任重庆理工大学材料学院与工程学院副院长、材料成型及控制工程系主任,中国兵工学会压力加工专业委员会委员,《精密成形工程》期刊通讯编委,重庆市汽车车身覆盖件冲压模具产业技术创新联盟理事,《J. Alloys Compd.》等重要期刊审稿人。获得重庆理工大学青年英才、重庆理工大学“优秀教师”、重庆理工大学优秀科研工作者、材料科学与工程学院最受欢迎教师等荣誉。主持或主研国家级科研项目4项、市(部)级科研项目13项、横向科研项目4项,在《Journal of Magnesium and Alloys》、《Materials Science and Engineering A》、《Journal of Materials Processing Technology》、《Journal of alloys and compounds》、《Acta Metallurgica Sinica (English Letters)》、《Materials Characterization》、《Transactions of nonferrous metals society of china等国内外重要期刊上发表科研论文50余篇,其中SCIEI收录30余篇。申请发明专利10余项,其中授权专利4项。获得重庆市研究生导师团队1个,重庆市研究生联合培养基地1个。

u 研究领域:

先进金属材料粉末注射成形技术及应用;轻合金材料及特种加工与成形技术;

u 承担的主要科研项目

[1]多级连续剪切-弯曲变形镁合金板材的晶粒细化与织构控制,国家自然科学青年基金项目,2014.1-2016.1225万,主持。

[2]快速凝固/粉末冶金Mg-Zn系镁合金的耐热性能及其微观机理研究,重庆市科委自然科学基金计划项目,2010.10-2013.105万,主持。

[3]轧制-剪切-弯曲复合工艺制备高性能变形镁合金板材的应用基础研究,重庆市基础与前沿研究计划项目,2014.7-2017.65万,主持。

[4]基于高温轧制-连续弯曲及退火再结晶工艺的镁合金板材的室温成形性能调控,重庆市基础与前沿研究计划项目,2016.7-2019.65万,主持。

[5]累积叠轧-等径角轧制AZ31镁合金板材的晶粒细化与织构控制,重庆市教委科学技术研究项目,2016.7-2019.62万,主持。

[6]镁合金细晶化组织演变试验研究,企业委托项目,2019.9-2020.14.6万,主持。

[7]乏燃料水池水下焊接初步工艺试验样件理化分析和性能测试,企业委托项目,2019.11- 2020.1238.5万,主持。

[8]快速凝固Mg-Zn-X合金组织与性能的研究,重庆理工大学科研启动基金项目,2009.12- 2012.124万,主持。

[9]CaRE元素对快速凝固Mg-Zn系合金热稳定性的影响机理研究,重庆理工大学青年基金计划项目,2010.6-2012.60.8万,主持。

[10]等径角轧制-连续弯曲变形镁合金板材退火再结晶行为及特殊非基面织构形成机理,国家自然科学基金青年项目,2018.1-2020.1224万,参与。

[11]强流脉冲电子束处理铜基触头材料的机理研究,国家自然科学青年基金项目,2012.1-2014.1224万,参与。

[12]Cu-Cr合金强流脉冲电子束表面合金化的机理研究,重庆市科委自然科学基金计划项目,2012.9-2015.92.5万,参与。

[13]Sc新型耐热镁合金开发的基础研究,重庆市教委科学技术研究项目,2009.01-2010.121.5万,参与。

[14]凝胶注模成形制备铝合金熔体旋转除气用SiC陶瓷转子的关键技术研究,重庆市科技攻关计划项目,2011.05-2013.04,参与。

 

u 主要科研论文:

[1] Tao Zhou, Zhao Yang, Dong Hu, Tao Feng, MingboYang, Xiaobing Zhai. Effect of the final rolling speeds on the stretch formability of AZ31 alloy sheet rolled at a high temperature. Journal of Alloys and Compounds, 2015, 650: 436-443.

[2] Tao Zhou, Mingbo Yang, Zhiming Zhou, Jianjun Hu,Zhenhua Chen. Microstructure and mechanical properties of rapidly solidified/powder metallurgy Mg-6Zn and Mg-6Zn-5Ca at room and elevated temperaturesJournal of Alloys and Compounds, 2013,560: 161–166.

[3] Tao Zhou, Hua Xia, Mingbo Yang, Zhiming Zhou,Kang Chen, Jianjun Hu, Zhenhua Chen, Investigation on microstructure characterizations and phase compositions of rapidly solidification/powder metallurgy Mg-6wt.%Zn-5wt.%Ce-1.5 wt.% Ca alloy, Journal of Alloys and Compounds, 2011, 509(9): L145-L149.

[4] T.Zhou, D.Chen, Z.H.Chen, J.H.Chen, Investigation on Microstructures and Properties of Rapidly SolidifiedMg-6wt.%Zn-5wt.%Ca-3wt.%Ce Alloy, Journal of Alloys and Compounds, 2009,475(1-2): L1-L4.

[5] Tao Zhou, Zhenhua Chen, Mingbo Yang, Jianjun Hu,Hua XiaInvestigation on microstructure characterization and property of rapidly solidifiedMg-Zn-Ca-Ce-La alloysMaterials Characterization, 2012,63: 77-82.

[6] Tao Zhou, Mingbo Yang, Jie Zhan, Chengyun Peng,Jianjun Hu, Kang Chen, Zhiming Zhou, Zhenhua Chen, Investigation on the microstructure characterization and aging response of rapidly solidifiedMg-6wt.%Zn-5wt.%Ca alloy produced by atomization-twin roll quenching technologyMaterials and Manufacturing Processes, 2012, 27(2): 125-129.

[7] T.Zhou, H.XiaZ.H.ChenEffect of Ce on microstructures and mechanical properties of rapidly solidified Mg-Zn alloy, Materials Science and Technology, 2011, 27(7): 1198-1205.

[8] Z.H.Chen,T.Zhou, D.Chen, H.G.Yan, J.H.Chen, Microstructure Characterisation and Mechanical Properties of Rapidly Solidified Mg-Zn-Ca Alloys with Ce Addition, MaterialScience and Technology, 2008, 24(7): 848-855.

[9] Tao Zhou, Mingbo Yang, Hua Xia, Jianjun Hu, Zhenhua ChenPhase constitutions of rapid solidification/ powder metallurgy Mg–Zn–Ca–RE alloysInternational Journal of Materials Research, 2013, 104(8): 789-793.

[10] T.Zhou, D.Chen, Z.H. Chen, Microstructures and Mechanical property of Rapidly Solidified Mg-Zn-Ca alloys, Transactions of Nonferrous Metals Society of China, 2008, (18): s101-s106.

[11] T. Zhou, D. H. Song, Z. H. Chen, Microstructures, Mechanical and Creep Properties of Rapidly Solidification/Powder MetallurgyMg-6wt.%Zn Alloys with 5wt.%Ce and 1.5wt.%Ca Additions, Materials Science Forum, 2016, 861: 253-263.

[12] Denghui Song, Tao Zhou, Jian Tu, Laixin Shi, Bo Song, Li Hu, Mingbo Yang, Qiang Chen, Liwei Lu, Improved stretch formability of AZ31 sheet via texture control by introducing a continuous bending channel into equal channel angular rolling, Journal of Materials Processing Technology, 2018, 259: 380-386.

[13] Jian Tu, Tao Zhou, Lei Liu, Laixin Shi, Li Hu, Denghui Song, Bo Song, Mingbo Yang, Qiang Chen, Fusheng Pan, Effect of rolling speeds on texture modification and mechanical properties of the AZ31 sheet by a combination of equal channel angular rolling and continuous bending at high temperature, Journal of Alloys and Compounds, 2018, 768: 598-607.

[14] Chen Yu, Rui Zhang, Tao Zhou, Li Hu, Jian Tu, Laixin Shi, Liwe Lu, Qiang Chen, Benhong Liao, Lei Liu, Wenjun Ge, Jing Xiao, Mingbo Yang, Influence of Extrusion Speed on the Microstructure Evolution, Interface Bonding and Mechanical Response of Mg MB26/Al 7075 Composite Rod, Acta Metallurgica Sinica (English Letters), 2019, 32(2): 253-262.

[15] Yu Chen, Li Hu, Laixin Shi, Tao Zhou, Jian Tu, Qiang Chen, Mingbo Yang, Effect of texture types on microstructure evolution and mechanical properties of AZ31 magnesium alloy undergoing uniaxial tension deformation at room temperature, Materials Science & Engineering A, 2020, 769: 138497.