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王玉娟

领域:高端装备制造产业 学校:东南大学职称:副教授


1. 纳米摩擦学
2. 生物摩擦学
3. 微纳机电系统
...

具体了解该专家信息,请致电:027-87555799 邮箱 haizhi@uipplus.com

教育背景

2011/10-2012/09    俄亥俄州立大学,机械与航空学院,访问学者

1999/09-2002/07    东南大学,机械工程学院,博士

1996/09-1999/07    南京农业大学,工学院,硕士

工作经历

2012/10-至今      东南大学,机械工程学院,副教授

2011/10-2012/09    俄亥俄州立大学,机械与航空学院,访问学者

2004/07-2011/09    东南大学,机械工程学院,副教授

2002/09-2004/06    东南大学,机械工程学院,讲师

项目课题经历

论文、成果、著作等

[1] 王玉娟,梁丽,陈云飞. 分子间作用力对超低飞高磁头动态飞行特性的影响. 东南大学学报,2013,43(6).

[2] Bi Kedong, Wang Jianqiang, Wang Yujuan.The thermal conductivity of SiGe heterostructure nanowires with different cores and shells. PHYSICS LETTERS A ,2012,376(40-41).

[3] Bi Kedong, Zhao Yanyan, Chen Yunfei, Wei Zhiyong, Wang Zan, Wang   Yujuan, Chen, Minhua. The effects of different doping patterns on the   lattice thermal conductivity of solid Ar. JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS, 2012, 73(2).

[4] Bi Kedong, Chen Yunfei,  Chen Minhua, Wang Yujuan. The   influence of structure on the thermal conductivities of low-dimensional   carbon materials. SOLID STATE COMMUNICATIONS, 2010, 150(29-30).

[5]Yue ZhangYunfei ChenKedong BiJuekuan YangZhonghua NiYujuan WangInterface slip and the buildup of   hydrodynamic pressure in nanoscale bearingsPhysica B-Condensed   Matter2009404

[6] Yang JuekuanLiu ZhenghuaWang YujuanChen YunfeiEvaluation of thermal rectification at the interface of double-layered   nanofilm by molecular dynamics simulations2008   Proceedings of the ASME Micro/Nanoscale Heat Transfer International   ConferenceMNHT 2008

[7] Chen YunfeiLi DeyuYang JuekuanWang YujuanHu HanInterface effects on lattice thermal conductivities of superlatticesJournal of Computational and Theoretical Nanoscience200852.

[8] Zhang YanliangChen YunfeiGong ChangmengYang JuekuanQian RuimingWang YujuanOptimization of superlattice   thermoelectric materials and microcoolersIEEE/ASME, Journal of Microelectromechanical Systems200716

[9] 王玉娟,宋小闯,杨决宽,毕可东,陈云飞.典型构筑植物表面不同湿度条件下黏附和摩擦特性研究.机械工程学报,2017,5321.

[10] Birahima Gueye, YanZhang, Yunfei Chen, Yujuan Wang. Experimental and Theoretical Investigations onthe Nanoscale Kinetic Friction in Ambient Environmental  Conditions, NanoLetters, 2015, 2315.

[11] Birahima Gueye, YanZhang, Yunfei Chen, Yujuan Wang. Origin of frictional ageing by moleculardynamics simulation of a silicon tip sliding over a diamond    substrate,Tribology International, 2015, 23( 86).

科研项目

专利、著作版权等

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