师资队伍(旧)

陈 可

来源: 日期:2020-11-15 点击数:

姓 名

陈可

性别

职 称

讲师

系别

材料工程系

学 位

博士

电话

58606710

E-mail

ckyf@njau.edu.cn

单位地址

南京市浦口区点将台路40号

邮编

210031

研究领域

金属及其复合材料的研发;表面处理

社会兼职


承担项目

1.中国博士后科学基金委员会, 面上资助, 2018M632313, 表面机械研磨处理制备高熵复合涂层及其高温性能研究

2. 淮阴beat365平台江苏省先进制造技术重点实验室, 开放课题, HGAMTL-1710, 45钢表面机械研磨处理及其特性研究

学术成果

近期主要论文:

1.Ke Chen*, Tongyue Wang, Xianfa Wang, et al. Effect of submicron SiC particles on AlCoCrFeNi high entropy alloy coating, Powder Metallurgy and Metal Ceramics, 2020,11

2. Changqing Shu, Ke Chen, Hemei Yang*, et al. Effect of V and ball milling time on microstructure and thermal properties of CoCrCuFeNiVX by mechanical alloying. Physica B: Condensed Matter 571 (2019) 235–242

3. Ke Chen*, Hemei Yang, Junshan Gao et al. Microstructure detection of Mg-Zi-Ti-Si amorphous composite coating prepared by SMAT, Materials Characterization, 2018, 135: 265-269. (期刊论文)

4.蒋烨, 陈可*,王伟.机械合金化法制备AlCoNiFeCr高熵合金涂层,中国有色金属学报, 2018, (09): 1784-1790. (期刊论文)

5.王伟, 陈可*,袁晓,等. Mg-Zn-Ca-Ti非晶合金的非等温晶化动力学,材料科学与工程学报, 2017, 35(05): 810-814.

奖励荣誉


Name

Ke Chen

Gender

Female

Title

Lecture

Department

Department of materials engineering

Degree

Ph. D.

Telephone

58606580

E-mail

ckyf@njau.edu.cn

Unit address

No. 40, Dianjiangtai Road

Post code

210031

Research field

Metal and metal matrix composite; surface treatment

Social appointments


Research projects

1. China Post Doctoral Science Foundation, No.2018M632313, preparation of high entropy composite coating by surface mechanical grinding and its high temperature performance research.

2. Open Project of key Laboratory of advanced manufacturing technology in Jiangsu Province, No.HGAMTL-1710, Surface attrition treatment of 45 steel and its characteristics.

Academic achievements

Recent publications:

1.Ke Chen*, Tongyue Wang, Xianfa Wang, et al. Effect of submicron SiC particles on AlCoCrFeNi high entropy alloy coating, Powder Metallurgy and Metal Ceramics, 2020,11

2.Changqing Shu, Ke Chen, Hemei Yang*, et al. Effect of V and ball milling time on microstructure and thermal properties of CoCrCuFeNiVX by mechanical alloying. Physica B: Condensed Matter 571 (2019) 235–242

3.Ke Chen*, Hemei Yang, Junshan Gao et al. Microstructure detection of Mg-Zi-Ti-Si amorphous composite coating prepared by SMAT, Materials Characterization, 2018, 135: 265-269.

Reward & honor


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地址:江苏省南京市浦口区点将台路40号

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