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分类:导师信息 来源:中国完美·体育(中国)官方网站,WANMEI SPORTS网 2016-05-06 相关院校:北京交通大学
基本信息
办公电话: 电子邮件: wangxi@bjtu.edu.cn
通讯地址: 邮编:
教育背景与工作经历
教育经历:
1994年9月至1998年6月,在中国科学技术大学力学与机械工程系理论与应用力学专业学习,获学士学位;
1998年9月至2001年6月,在中国科学技术大学力学与机械工程系工程力学专业学习,获硕士学位;
2001年9月至2007年6月,在美国哈佛大学工程与应用科学学院工程科学专业学习,获博士学位;
工作经历:
2007年7月至2008年2月,在美国哈佛大学工程与应用科学学院从事博士后研究;
2008年2月至2009年2月,在美国约翰霍普金斯大学机械工程系从事博士后研究;
2009年3月至2009年10月,在美国哈佛大学工程与应用科学学院从事博士后研究;
2009年11月至2013年11月,在中国科学院力学研究所任副研究员
2013年12月至今,在北京交通大学机电学院轨道车辆系任教授
研究方向(顺序不分先后)
车辆结构可靠性及优化
车辆工程
招生专业
车辆工程硕士
机械工程博士
机械工程(专业学位)硕士
科研项目
北京交大创新科技中心:CRH380AL车体疲劳载荷作用下服役可靠性研究评估——铝型材及铝型材构件疲劳性能试验研究,2013-12-03--2014-09-30,95.0万元,主持
科技部973计划项目:高速列车基础力学问题研究,2011-01-01--2015-12-31,62.7万元,项目核心人员
学术成果
期刊论文
1. X.Q. Wu, W.G. Xia, X. Wang, H.W. Song, C.G. Huang, Effect of surface reflectivity on photonic Doppler velocimetry measurement, Measurement Science and Technology, (2014) Accepted. (SCI)
2. X.Q. Wu, X. Wang, Y.P. Wei, H.W. Song, C.G. Huang, An experimental method to measure dynamic stress-strain relationship of materials at high strain rates, International Journal of Impact Engineering, (2014) Accepted. (SCI)
3. X. Wang, W.G. Xia, X.Q. Wu, Y.P. Wei, C.G. Huang. Microstructure and mechanical properties of an austenite NiTi shape memory alloy treated with laser induced shock, Materials Science & Engineering A, 578, 1-5, (2013) (SCI)
4. Y.P. Wei, B.C. Wei, X. Wang, G.Y. Xu, L. Li, X.Q. Wu, H.W. Song, C.G. Huang, A novel micro-scale plastic deformation feature on bulk metallic glass surface under laser shock peening, Chinese Physics Letter, 30. 030621, (2013). (SCI)
5. L.L. Lu, C.G. Huang, X. Wang, A damage identification method based on differential gradient of normalized strain, Applied Mechanics & Materials, 330, 321-330, (2013) (EI)
6. H.W. Song, X.Q. Wu, C.G. Huang, Y.P. Wei, X. Wang, Measurement of fast changing low velocities by photonic Doppler velocimetry, Review of Scientific Instruments, 83, 073301, (2012). (SCI)
7. X.Q. Wu, X. Wang, Y.P. Wei, H.W. Song, C.G. Huang, Parametric study on single shot peening by dimensional analysis method incorporated with finite element method, Acta Mechanica Sinica, 28, 825-837, (2012). (SCI)
8. X.Q. Wu, Z.P. Duan, H.W. Song, Y.P. Wei, X. Wang, C.G. Huang, Shock pressure induced by glass-confined laser shock peening: Experiments, modeling and simulation, Journal of Applied Physics, 110, 053112, (2011). (SCI)
9. X.Q. Wu, C.G. Huang, X. Wang, H.W. Song, A new effective method to estimate the effect of laser shock peening, International Journal of Impact Engineering, 38, 322-329, (2011). (SCI)
10.C. Eberl, X. Wang, D.S. Gianola, T.D. Nguyen, M.Y. He, A.G. Evans, K.J. Hemker, In-situ measurement of the toughness of the interface between a thermal barrier coating and a Ni alloy, Journal of the American Ceramic Society, 94, S120-127, (2011). (SCI)
11.C. Eberl, D.S. Gianola, X. Wang, M.Y. He, A.G. Evans, K.J. Hemker, A method for in-situ measurement of the elastic behavior of a columnar thermal barrier coating, Acta Materialia, 59, 3612-3620, (2011). (SCI)
12.Kniknie T, Bellouard Y, Homburg E, Nijmerjer H, Wang X, Vlassak JJ, On the use of shape memory alloy thin films to tune the dynamic response of micro-cantilevers, Journal of Micromechanics and Microengineering, 20(1), 015939, (2010). (SCI)
13.N.S. Lu, X. Wang, Z.G. Suo, J.J. Vlassak, Failure by simultaneous grain growth, strain localization, and interface debonding in metal films on polymer substrate, Journal of Material Research, 24, 379-385, (2009). (SCI)
14.X. Wang, Y. Bellouard, Z.Y. Xue, J.J. Vlassak, Thermal modeling of laser annealing induced crystallization of amorphous NiTi thin films, Applied Physics A, 90, 689-694, (2008). (SCI)
15.X. Wang, M. Rein, J.J. Vlassak, Crystallization kinetics of amorphous equiatomic NiTi thin films: Effect of film thickness, Journal of Applied Physics, 103, 023501, (2008). (SCI)
16.N.S. Lu, X. Wang, Z.G. Suo, J.J. Vlassak, Metal films on polymer substrate stretched beyond 50%, Applied Physics Letter, 91, 221909, (2007). (SCI)
17.X. Wang, J.J. Vlassak, Crystallization kinetics of amorphous NiTi shape memory alloy thin films, Scripta Materialia, 54, 925-930 (2005). (SCI)
18.X. Wang, Y. Bellouard, J.J. Vlassak, Laser annealing of amorphous NiTi shape memory alloy thin films to locally induce shape memory properties, Acta Materialia, 53, 4955-4961 (2005). (SCI)
19.J.J. Vlassak, M. Ciavarella, J.R. Barber, X. Wang, The indentation modulus of elastically anisotropic materials for indenters of arbitrary shape, Journal of the Mechanics and Physics of Solids, 51, 1701-1721 (2003). (SCI)
20.J.L. Yu, X. Wang, Z.G. Wei, E.H. Wang, Deformation and failure mechanism of dynamically loaded sandwich beams with aluminum-foam core, International Journal of Impact Engineering, 28, 331-347 (2003). (SCI)
21.夏伟光,吴先前,魏延鹏,黄晨光,王曦. 激光冲击强化对NiTi形状记忆合金力学性质影响,中国激光,40(11),1103002-1~1103002-6 (2013)(EI)
22.路玲玲,黄晨光,王曦. 基于归一化应变梯度变化的损伤识别方法研究,中国科学E辑,43,574-584,(2013)(EI)
23.袁武,王曦,宋宏伟,黄晨光. 轻质金属点阵夹层板热屈曲临界温度分析,固体力学学报,35(1),1-7,(2014)(EI)
24.柳沅汛,王曦,吴先前,黄晨光. 激光冲击处理304不锈钢表面的形貌特征及其机理分析,中国激光,40,1-8,(2013).(EI)
25.路玲玲,王曦,黄晨光. 结构健康监测系统中传感器优化布置组合算法, 力学与实践,34,80-84,(2012).(核心)
26.宋宏伟,吴先前,王健,黄晨光,魏延鹏,王曦. 光纤激光干涉测量激光冲击强化自由表面速度,中国科学E辑,42,1-5,(2012).(EI)
27.李剑荣,王曦,虞吉林,粗晶粒Al多晶试件拉伸变形局部化的数值模拟,金属学报,37(7),717-722 (2001).(EI)
28.王曦,虞吉林,泡沫铝的单向力学行为,实验力学,16(4),438-443 (2001).(核心)
社会兼职
中国力学学会第八届固体力学专业委员会断裂与疲劳专业组组员
中国力学学会第九届实验力学专业委员会学科交叉与复杂环境实验方法专业组组员
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