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最新更新时间:2017/10/23 9:31:17
刘江维
个人简介

姓名:刘江维

系所:新能源科学与工程

职称:副教授

邮箱:liujiangwei1988@163.com jiangweiliu@csu.edu.cn

电话:18774094435

男,博士。现在中南大学能源科学与工程学院,副教授。主要从事新能源开发与利用、金属凝固过程缺陷形成机理和传热传质数值模拟等问题研究。参与美国自然科学基金项目一项,参与并主持国际纵向课题多项。目前已发表论文近10篇,其中JCR一区5篇,JCR2区2篇。

1. 教育经历

2014/9 – 2016/9,University of Wisconsin-Madison,材料科学与工程学院,联合培养博士

2010/09 – 2016/11,中南大学,能源科学与工程学院,博士

2006/09 – 2010/06,中南大学,能源科学与工程学院,学士

2. 工作经历

2017/6 – 至今,中南大学,新能源科学与工程系,特聘副教授


科研方向
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1. 光热太阳能发电技术

2. 金属凝固过程缺陷形成

3. 材料加工过程中的传热传质


学术成果
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1. 主要论文

[1] Liu J, Kou S. Susceptibility of ternary aluminum alloys to cracking during solidification[J]. ActaMaterialia, 2017, 125: 513-523.

[2] Liu J, Duarte H P, Kou S. Evidence of back diffusion reducing cracking during solidification[J]. ActaMaterialia, 2017, 122: 47-59.

[3] Liu J, Kou S. Crack susceptibility of binary aluminum alloys during solidification[J]. ActaMaterialia, 2016, 110: 84-94.

[4]Liu J, Kou S. Effect of diffusion on susceptibility to cracking during solidification[J]. ActaMaterialia, 2015, 100: 359-368.

[5] Liu J, Rao Z, Liao S, et al. Numerical investigation of weld pool behaviors and ripple formation for a moving GTA welding under pulsed currents[J]. International Journal of Heat and Mass Transfer, 2015, 91: 990-1000.

[6] Liu J, Rao Z, Liao S, et al. Modeling of transport phenomena and solidification cracking in laser spot bead-on-plate welding of AA6063-T6 alloy. Part I—the mathematical model[J]. The International Journal of Advanced Manufacturing Technology, 2014, 73(9-12): 1705-1716.

[7] Liu J, Rao Z, Liao S, et al. Modeling of transport phenomena and solidification cracking in laser spot bead-on-plate welding of AA6063-T6 alloy. Part II—simulation results and experimental validation[J]. The International Journal of Advanced Manufacturing Technology, 2014, 74(1-4): 285-296.

[8] Liu J, Kou S. Crack Susceptibility of Binary Aluminum Alloys: Analytical Equations[C]//Shape Casting: 6th International Symposium 2016. John Wiley & Sons, 2016: 11.

[9] Rao Z, Liu J, Wang P C, et al. Modeling of cold metal transfer spot welding of AA6061-T6 aluminum alloy and galvanized mild steel[J]. Journal of Manufacturing Science and Engineering, 2014, 136(5): 051001