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个人简介

杨决宽 教授 职称 教授 办公室 机械楼211 学习经历 博士:东南大学机械工程学院,2000年9月—2004年9月; 硕士:大连理工大学化工过程与机械系,1997年9月—2000年7月; 学士:大连理工大学化工过程与机械系,1990年9月—1994年7月。 工作经历 2012年4月—至今,东南大学机械工程学院,副研究员; 2012年11月—2013年5月,香港中文大学,访问学者 2004年9月—2012年4月,东南大学机械工程学院,讲师; 2008年3月—2011年10月,美国范德比尔特大学(Vanderbilt University)机械工程系,博士后; 1994年9月—1997年8月,金陵石化公司南京炼油厂,助理工程师。 教授课程 机械设计基础+课程设计 (本科) 数据结构 (本科) 机械创新设计 (本科) 分子动力学模拟 (硕士) 微纳机电系统 (硕士) 获奖情况 2008年度获得江苏省科技进步一等奖1 项,获奖人员排名:易红、陈云飞、倪中华、杨决宽、仇晓黎、王玉娟、幸研、顾兴中、毕可东。 科研项目 项目名称 项目类别 项目时间 工作类别 项目金额 碳纳米管本征导热系数及相关接触热阻的实验研究 国家自然科学基金面上项目 2012年1月—2015年12月 项目负责人 60万元 纳米流体导热机理的分子动力学与实验研究 国家自然科学基金青年基金 2005年1月—2008年12月 项目负责人 25万元

研究领域

1. 微纳尺度传热 2. 计算机辅助机械设计 3. 机电一体化

近期论文

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[1] Qiang Fu, Juekuan Yang*, Yunfei Chen, Deyu Li, and Dongyan Xu*,“Experimental evidence of very long intrinsic phonon mean free path along the c-axis of graphite,” Applied Physics Letters 106,031905 (2015) [2] Zhiyong Wei, Juekuan Yang, Weiyu Chen, Kedong Bi, Deyu Li, and Yunfei Chen, “Phonon mean free path of graphite along the c-axis,” Applied Physics Letters 104, 081903 (2014) [3] Juekuan Yang, Meng Shen, Yang Yang, William J. Evans, Zhiyong Wei, Weiyu Chen, Alfred A. Zinn, Yunfei Chen, Ravi Prasher, Terry T. Xu, Pawel Keblinski, and Deyu Li, “Phonon Transport through Point Contacts between Graphitic Nanomaterials,” Physical Review Letters 112, 205901 (2014) [4] Min Chen, Juekuan Yang, Yandong Gao, Yunfei Chen, and Deyu Li, “Molecular Dynamics Studies of Homogeneous and Heterogeneous Thermal Bubble Nucleation,” Journal of Heat Transfer 136, 041502 (2014) [5] Zhiyong Wei, Juekuan Yang, Weiyu Chen, Kedong Bi, Deyu Li, and Yunfei Chen, “Phonon mean free path of graphite along the c-axis,” Applied Physics Letters 104, 081903 (2014) [6] Jian Wu, Xiaomeng Wang, Minhua Chen, Dongyan Xu, and Juekuan Yang*, “Estimation of temperature coefficient of resistance for microfabricated platinum thermometers in thermal conductivity measurements of one-dimensional nanostructures,” Measurement Science and Technology 25, 025008 (2014) [7] Jiapeng Li, Yan Zhang, Juekuan Yang, Kedong Bi, Zhonghua Ni, Deyu Li, and Yunfei Chen, “Molecular dynamics study of DNA translocation through graphene nanopores,” Physical Review E 87, 062707 (2013) [8] Weiyu Chen, Zhonghua Ni, Juekuan Yang, Yan Zhang, Deyu Li, Yunfei Chen, “The effects of van der waals bonding strength on the in-plane lattice thermal conductivities of multilayer thin films,” Proceedings of the ASME Micro/Nanoscale Heat and Mass Transfer International Conference, 297-300 (2012) [9] Zhe Guan, Timothy Gutu, Juekuan Yang, Yang Yang, Alfred A. Zinn, Deyu Li and Terry T. Xu, “Boron carbide nanowires: low temperature synthesis and structural and thermal conductivity characterization,” Journal of Materials Chemistry 22, 9853-9860 (2012) [10] Juekuan Yang, Yang Yang, Scott W. Waltermire, Xiaoxia Wu, Haitao Zhang, Timothy Gutu, Youfei Jiang, Yunfei Chen, Alfred A. Zinn, Ravi Prasher, Terry T. Xu, and Deyu Li, “Enhanced and Switchable Nanoscale Thermal Conduction Due to van der Waals Interfaces,” Nature Nanotechnology 7, 91-95 (2012) [11] Juekuan Yang, Yang Yang, Scott W. Waltermire, Alfred A. Zinn, Terry T. Xu, Yunfei Chen, and Deyu Li, “Measurement of the intrinsic thermal conductivity of a multi-walled carbon nanotube and its contact thermal resistance with the substrate,” Small 7, 2334-2340 (2011) [12] Min Chen, Yunfei Chen, Juekuan Yang, Yandong Gao, Deyu Li, “Molecular dynamics simulation of homogeneous and heterogeneous thermal bubble nucleation,” Proceedings of the ASME/JSME 8th Thermal Engineering Joint Conference, 1721-1726 (2011) [13] Juekuan Yang, Scott W. Waltermire, Yunfei Chen, Alfred A. Zinn, Terry T. Xu, and Deyu Li, “Contact Thermal Resistance between Individual Multi-Wall Carbon Nanotubes,” Applied Physics Letters 96, 023109 (2010) [14] Xiaohui Lin, Juekuan Yang, Yuanzheng Sun, and Shuyun Jiang, “Ultra-short Laser Ablation of Dielectrics: Theoretical Analysis of Threshold Damage Fluence and Ablation Depth,” Applied Surface Science 256, 130-135 (2009) [15] Yanyan Ge, Dongyan Xu, Juekuan Yang, Yunfei Chen, and Deyu Li, “Ionic Current Through a Nanopore Three Nanometers in Diameter,” Physical Review E 80, 021918 (2009) [16] Yue Zhang, Yunfei Chen, Kedong Bi, Juekuan Yang, Zhonghua Ni, and Yujuan Wang, “Interface Slip and the Buildup of Hydrodynamic Pressure in Nanoscale Bearings,” Physica B: Condensed Matter 404, 231-234 (2009) [17] Yunfei Chen, Juekuan Yang, Xiaohui Wang, Zhonghua Ni and Deyu Li, “Temperature Dependence of Frictional Force in Carbon Nanotube Oscillators,” Nanotechnology 20, 035704 (2009) [18] Min Chen, Yunfei Chen, Wu Zhong, Juekuan Yang, “Molecular dynamics simulation of ion transport in a nanochannel,” Science in China Series E-Technological Sciences 51, 921-931 (2008) [19] Juekuan Yang*, Yujuan Wang, Yunfei Chen, “GPU Accelerated Molecular Dynamics Simulation of Thermal Conductivities,” Journal of Computational Physics 221, 799-804 (2007) [20] Yanliang Zhang, Yunfei Chen, Changmeng Gong, Juekuan Yang, Ruiming Qian, Yujuan Wang, “Optimization of Superlattice Thermoelectric Materials and Microcoolers,” IEEE, Journal of Microelectromechanical Systems 16, 1113-1119 (2007) [21] Yunfei Chen, D. Li, K. Jiang, Juekuan Yang, X. Wang and Y. Wang, “Hydrodynamic Lubircation in Nanoscale Bearings under High Shear Velocities“, Journal of Chemical Physics 125, 084702 (2006).(Selected for the September 4, 2006 issue of Virtual Journal of Nanoscale Science & Technology.) [22] Zhen Chen, Juekuan Yang, Ping Zhuang, Minhua Chen, Jian Zhu, Yunfei Chen, “Thermal Conductivity Measurement of InGaAs/InGaAsP Superlattice thin films,” Chinese Science Bulletin 51, 2931-2936 (2006) [23] Kedong Bi, Yunfei Chen, Juekuan Yang,Yujuan Wang, Minhua Chen, “Molecular Dynamics Simulation of Thermal Conductivity of Single-wall Carbon Nanotubes,” Physics Letters A 350, 150-153 (2006) [24] Yunfei Chen, Deyu Li, Jennifer R. Lukes , Juekuan Yang and Yonghua Wu, “Molecular Dynamics Simulation of Ar/Kr Superlattice Nanowires,” Physica B, Condensed Matter Physics 349, 270-280(2004) [25] Yunfei Chen, Jennifer R. Lukes, Deyu Li, Juekuan Yang and Yonghua Wu, “Thermal Expansion and Impurity Effects on Lattice Thermal Conductivity of Solid Ar,” Journal of Chemical Physics 120, 3841-3846 (2004) [26] Juekuan Yang, Yunfei Chen, Jingping Yan, “Molecular dynamics simulation of thermal conductivities of superlattice nanowires,” Science in China Series E-Technological Sciences 46 (3), 278-286 (2003)

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