周登山

发稿时间:2019-09-05浏览次数:6553

姓名:周登山 副教授

Researchgatehttps://www.researchgate.net/profile/Dengshan_Zhou
性 别:男 出生日期:
19841211
办公电话:
024-8368-1735 E-mailzhoudengshan@mail.neu.edu.cn
1.学习简历

200309-200707月 湖北文理学院(原襄樊学院),理学学士

200709-201007月 中国石油大学(华东),工学硕士

201101-201401月 新西兰怀卡托大学,工学博士

2.工作简历

201311-201510月 上海交通大学材料科学与技术学院,访问研究员

201511-201607月 上海交通大学材料科学与技术学院,助理研究员

20167-201812月 雷竞技官方主页材料科学与工程学院,讲师

201901-20201月 日本京都大学ESISM特定研究员

201901-至今 雷竞技官方主页材料科学与工程学院,副教授

3.学术兼职

暂无。

4.研究方向

1)金属材料中的缺陷设计

2)晶界偏聚工程

3)超细晶金属材料的力学行为

4)新型高强高导铜合金

5.近年来承担的科研项目

国家自然科学基金青年项目(2018-2020

中央高校基本科研业务费启动项目(2017-2018

6.获奖及荣誉

德国马普钢铁研究所洪堡学者

7.学术论文

1. Zhou DS*, Wang H, Saxey D, Muransky O, Geng HW, Rickard W, Quadir Z, Yang C, Reddy S, Zhang DL* (2019) Hall–Petch slope in ultrafine grained Al-Mg alloys. Metallurgical and Materials Transactions A 50: 4047-4057.

2. Zhou DS*, Wang H, Muransky O, Kong C, Yang C*, Zhang DL (2019) On the formation of nanoscale intergranular intermetallic compound films in a Cu-5at.%Zr alloy. Metallurgical and Materials Transactions A 50: 4569-4581.

3. Zhou DS, Quadir Z, Kong C, Pan HC, Liu Z, Sha G*, Munroe, Zhang DL* (2018) Understanding structural evolution of nanostructured Cu-Al2O3composite powders during thermomechanical processing. Materialia 4:268-275.

4. Zhou DS*, Wang XK, Muránsky O, Wang XR, Xie YH, Yang C, Zhang DL (2018) Heterogeneous Microstructure of an Al2O3Dispersion Strengthened Cu by Spark Plasma Sintering and Extrusion and Its Effect on Tensile Properties and Electrical Conductivity. Materials Science and Engineering: A 730:328-335.

5. Zhou DS*, Wang XK, Zeng W, Yang C, Pan HC, Li CG, Liu YJ, Zhang DL (2018) Doping Ti to achieve microstructural refinement and strength enhancement in a high volume fraction Y2O3dispersion strengthened Cu. Journal of Alloys and Compounds 753: 18–27.

6. Zhou DS*, Geng HW, Zeng W, Sha G, Kong C, Quadir Z, Munroe Torrens R, Trimby P, Zhang DL* (2018) Effect of extrusion temperature on microstructure and properties of an ultrafine-grained Cu matrix nanocomposite fabricated by powder compact extrusion. Journal of Materials Science 7: 5389-5401.

7. Zhou DS*, Geng HW, Zeng W, Zheng DQ, Pan HC, Kong C, Munroe P, Sha G, Suryanarayana C, Zhang DL (2018) High temperature stabilization of a nanostructured Cu-Y2O3composite through microalloying with Ti. Materials Science and Engineering: A 712: 80–87.

8. Li CG, Zhou YH, Xie YH, Zhou DS*, Zhang DL (2017) Effects of milling time and sintering temperature on structural evolution, densification behavior and properties of a W-20wt.%Cu alloy. Journal of Alloys and Compounds 731: 537–545.

9. Zhou DS*, Geng HW, Zeng W, Zhang DL*, Kong C, Munroe P (2017) Suppressing Al2O3nanoparticle coarsening and Cu nanograin growth of milled nanostructured Cu-5vol.%Al2O3composite powder particles by doping with Ti. Journal of Materials Science and Technology 33: 1313-1328.

10. Zhou DS*, Geng HW, Zhang DL, Zeng W, Kong C, Munroe P (2017) An insight into the strain rate dependence of tensile ductility of an ultrafine grained Cu matrix nanocomposite. Materials Science and Engineering: A 688: 164–168.

8.发明专利

一种原位生成MgO弥散强化超细晶Al-Mg合金的制备方法,专利号:201810314755.7.


Baidu
map