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哈尔滨工程大学机电工程学院研究生考研导师简介-王威远

本站小编 Free考研网/2019-05-26

王威远部门:机电工程学院

学科:机械工程

职务:

职称:讲师

指导
资格:硕士生导师
电话:**

传真:

邮箱:wangweiyuan@hrbeu.edu.cn

邮编:

地址:


个人简介
2008年毕业于哈尔滨工业大学航天学院固体力学专业,获博士学位,其间在结构动力学控制与优化方面进行了系统的钻研并有所突破。同年,进入哈尔滨工程大学机械工程博士后流动站开展博士后研究工作,主要针对船舶机械结构设计、优化及动力学控制问题开展研究工作。主持和参与完成了包括国家自然科学基金在内的多项国家级科研项目的研究工作。

教育经历
1997.9-2001.7 燕山大学 机械工程学院 机械电子工程专业 工学学士学位

2002.9-2004.7 哈尔滨工业大学 航天学院 一般力学与力学基础专业 工学硕士学位

2004.9-2008.7 哈尔滨工业大学 航天学院 固体力学专业 工学博士学位


工作经历
2008.9-至今 哈尔滨工程大学 机电工程学院 讲师
研究方向
1.结构动力学;2.仿生机械结构;3.智能材料结构及其应用

承担项目
主持课题:

国家自然科学基金项目“基于植物脉序形态形成机理的薄壳加强件布局优化方法研究”, 2012-2014


参与课题:

1.“十五”预先研究项目“航天器耦合分析与减振技术研究”, 2002-2005;
2.“十五”预先研究项目“水下航行体载荷辨识技术研究”,2003-2004;
3.“十一五”预先研究项目“结构主被动一体化振动控制研究”, 2006-2010
4. 航天创新基金“航天器大型柔性天线局部共振控制方法研究”, 2006-2007;
5. 横向预先研究项目“齿轮箱系统冲击响应分析与振动控制研究”,2008-2010
6. 横向预先研究项目“齿轮箱减、隔振结构动态特性分析研究”2014-2016

学术交流
招生信息
Alumni of M.S. Students:
Ms. Li Yuanyuan (2015): The Bionic Structure Optimization of Stiffened Plate and the Study on Sound Insulation Property
Mr. Li Chengwei (2016): The Vibro-acoustic Property of Bionic Stiffened Sandwich Plate Structures
?Mr. Li Xinyu (2016): Research on Dynamic Characteristics and Vibration Isolation Mechanism of Laminated Metal Vibration Isolator
?Mr. Li Xinliang (2016): Optimization design of conical shell structure based on topology optimization method

Current M.S. Students:
Mr. Hu Hongbo: Research on Initial Measurement Technology
Mr. Yu Xiaochuan: Research on Machine Vision Technology
?Mr. He Xiuming: Research on Energy Harvesting Method
Mr. Wang Xiaobo: Research on Energy Harvesting Method






本科生授课课程
《机械设计基础》、《先进制造技术概论》、《生态与环境保护》

研究生授课课程
'Theory of Vibration with Applications' (for overseas students)

实践性教学
《本科生产实习》、《本科毕业实习》指导教师

教学研究课题
社会兼职



专利成果
[1]王威远.一种位姿可调节的3D打印机装置. ZL**8.6. 授权时间:2016.08.24
[2]王威远.3D打印机工作状态在线监测装置. ZL**1.8. 授权时间:2016.08.17



出版著作


发表论文
期刊论文:
[1]Wang Weiyuan, Li Yuanyuan, Shu Haisheng. Sound Insulation Property of Bionic Thin-Walled Stiffened Plate Based on Plants Venations Growth Mechanism. Journal of Biomimetics, Biomaterials and Biomedical Engineering, Vol.20, pp. 35-44, 2014.
[2]Xue Kai, Lei HuanXing, Wang Weiyuan. An Application of a New Perimeter Constraint Method in Topological Optimization for Damped Frequency. Engineering Mechanics, Vol.30, pp. 275- 280, 2013.
[3]Xue Kai, WangJiuFa, Wang Weiyuan. et al. Free Vibration Analysis of Tapered Plates with Arbitrary Elastic Boundary Condition. Journal of Vibration and Shock, Vol.32, pp.131-135, 2013.
[4]Xue Kai, Li YongXin, Wang Weiyuan. Venation-Like Rib Layout Design in Plate under Bending Loads. Journal of Biomimetics, Biomaterials, and Tissue Engineering, Vol.13, pp.31-40, 2012.
[5]Xue Kai, Li YongXin, Wang Weiyuan. Rib Design for Kirchhoff's Plate Inspired by Venation Configuration. Journal of Biomimetics, Biomaterials, and Tissue Engineering, Vol. 16, pp.43-53, 2012.
[6]Liu Xiang-Qiu, Wang Cong, Wang Weiyuan, Zou Zhen-Zhu. Study On Vibration Control of Cyclic Periodic Structures Considering Modes Localization. Engineering Mechanics, Vol.26, pp. 189-193, 2009.
[7]Wang Weiyuan, Wei YingJie, et al. Investigation for Active Vibration Control of Piezoelectric Conical Shell. Engineering Mechanics, Vol. 25, pp. 235-240, 2008.
[8] Wang Weiyuan, Wei Yingjie, Wang Cong, Zou Zhenzhu. Modeling and Vibration Control of Conical Shell with Piezoelectric Actuators. High Technology Letters, Vol.14, pp.418-422, 2008.
[9]Wang Weiyuan, Wei YingJie, et al. Optimal Investigation of Sensor/Actuator Placement for Piezoelectric Smart Structure. Journal of Astronautics, Vol.28, pp.1025-1029, 2007.
[10]Wang Weiyuan, Wang Cong, Zou ZhenZhu. Experimental Investigation on Dynamic Characteristic of a Conical Shell with Honeycomb Construction. Journal of Vibration and Shock, Vol. 26, pp. 164-168, 2007.
[11]Wang Weiyuan, Wang Cong, et al. Experimental Investigation on Vibration Transmissibility of the Conical Shell with Composite Material Honeycomb Structure. Engineering Mechanics, Vol.24, pp. 1-5+10, 2007.

会议论文:
[1]Wang Weiyuan, Li YuanYuan, Wang Ping. Mechanical Analysis for Thin-Walled Stiffened Plates on the Base of Plants Venations Growth Algorithm. 5th International Conference on Mechanical, Industrial, and Manufacturing Technologies, March 10-11 2014, Penang, Malaysia.
[2]Shu Haisheng, Liu Shaogang, Wang Weiyuan, et al. Research on transfer characteristics of vibration of shaft and beam sonic crystals under concentrated mass boundary condition. 2011 IEEE International Conference on Mechatronics and Automation, August 7-10, 2011, Beijing, China.
[3]Wang Weiyuan, Xue Kai. Numerical Analysis of Shock Responses for a Marine Gearbox System. 3rd International Conference on Advanced Design and Manufacture, September 8-10, 2010, Nottingham, United Kingdom.
[4]Wang Weiyuan, Xue Kai, Shi DongYan. Optimal Research of Actuator Placement for Piezoelectric Smart Structure. 2nd International Conference on Advanced Design and Manufacture, September 24-26, 2009, Harbin, China.
[5]Liu Xiang-Qiu, Wang Cong, Wang Weiyuan, Zou Zhen-Zhu. Research On Vibration Mode Localization of Large Antennas in Satellites with Small Disorder. 15th International Congress on Sound and Vibration, July 6-10, 2008, Daejeon, Korea.

荣誉

奖励



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