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个人简介

谢涛,教授、博士生导师;男,汉族,1965年生。1992年7月—1997年7月 哈尔滨工业大学机电工程学院 讲师;1997年7月—2003年9月 哈尔滨工业大学机电工程学院 副教授;2003年9月至今 哈尔滨工业大学机电工程学院 教授,并担任哈尔滨工业大学机电控制及自动化系党支部书记职务。 从事压电俘能技术、超声应用和航空航天仿真装备的教学与科研工作,主持国家自然科学基金2项,省部级科研项目20余项;2001年获国家科学技术进步二等奖; 2003年获部级科学技术进步二等奖;2004年获部级科学技术进步二等奖;2009年获国家科学技术进步二等奖;2011年获黑龙江省科学技术发明二等奖;发表科研论文100余篇,SCI收录70余篇,EI收录30余篇。 荣誉称号 2001年,参与项目 “电动仿真测试转台技术系统技术”,获国家科学技术进步二等奖 2009年,参与项目 “高性能飞行运动仿真装备关键技术”,获国家科学技术进步二等奖 2011年,参与 项目“纵弯模态压电金属复合梁式超声电机”,获黑龙江省科学技术发明二等奖 工作经历 1990年3月—1992年5月 哈尔滨电影机械厂 助理工程师 1992年7月—1997年7月 哈尔滨工业大学机电工程学院 讲师 教师 1997年7月—2003年9月 哈尔滨工业大学机电工程学院 副教授 教师 2003年9月至今 哈尔滨工业大学机电工程学院 教授 系党支部书记 教育经历 1983年9月—1987年9月 就读于哈尔滨工业大学精密仪器系,获工学学士学位 1987年9月—1990年3月 就读于哈尔滨工业大学航天学院,获工学硕士学位 1997年3月—2003年7月 就读于哈尔滨工业大学机电工程学院,获工学博士学位 主要任职 2003年9月-2014年9月 哈尔滨工业大学机电工程学院, 教授, 机电控制及自动化系党支部书记 担任以下期刊和基金的评审专家: Applied Energy (SCI IF=7.900) International Journal of Advanced Manufacturing Technology (SCI IF=2.601) Measurement (SCI IF=2.218) 国家自然科学基金(NSFC)

研究领域

压电俘能技术——压电俘能理论、俘能电路、俘能系统优化设计以及俘能技术的应用研究 超声波应用技术——超声波换能器及换能器阵的设计理论研究、超声波驱动技术、基于超声波微驱动的摩擦改性及摩擦补偿研究 航空航天仿真装备——航空航天仿真装备特殊机构的研究、接触力学分析、摩擦学、接触破坏机理研究、基于动态特性的结构优化设计、空间运动轨迹分析及虚拟仿真技术研究

近期论文

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Xiaobiao Shan, Hongliang Li, Yuancai Yang, Ju Feng, Yicong Wang, Tao Xie*. Enhancing the Performance of an Underwater Piezoelectric Energy Harvester Based on Flow-induced Vibration. Energy. 2019,172:134-140 (https://www.sciencedirect.com/science/article/pii/S0360544219301288) (20190401, IF=4.968) Xingxu Zhang, Xiaobiao Shan, Zhiyuan Shen, Tao Xie*, Jianmin Miao*. A new self-powered sensor using the radial field piezoelectric diaphragm in d33 mode for detecting the underwater disturbance. Sensors. 2019, 19(4), 962. (pdf:https://www.mdpi.com/1424-8220/19/4/962/pdf)(20190224,IF=2.475) Lu Zhang, Xiaobiao Shan, Xingxu Zhang, Tao Xie*. A Method for Reducing the Drag of the Ship Shaped Wall by Using Piezoelectric Ceramic Vibrators. IEEE Access. 2019,7:13295-13303 (https://ieeexplore.ieee.org/document/8620307)(20190206, IF=3.557) Yunlei Liang, Xiaobiao Shan, Tao Xie*, Peilin Luo. A new integrated piezoelectric sensactor for eliminating the electric field interference. Measurement. 2019, 134:440-450 (https://www.sciencedirect.com/science/article/pii/S0263224118310261)(201902, IF=2.218) Jinda Jia, Xiaobiao Shan, Deepesh Upadrashta, Tao Xie*, Yaowen Yang*, Rujun Song. Modeling and Analysis of Upright Piezoelectric Energy Harvester under Aerodynamic Vortex-Induced Vibration. Micromachines. 2018,9(12):667 (https://www.mdpi.com/2072-666X/9/12/667/htm)(PDF:http://www.mdpi.com/2072-666X/9/12/667/pdf)(20181217, IF=2.222) Weishan Chen, Yuyang Liu, Yingxiang Liu*, Xinqi Tian, Xiaobiao Shan, Liang Wang. Design and experimental evaluation of a novel stepping linear piezoelectric actuator. Sensors and Actuators A: Physical. 2018,276: 259-266 (https://www.sciencedirect.com/science/article/pii/S0924424717319763) (20180615) (IF=2.311) Yingxiang Liu,* Yun Wang, Junkao Liu, Dongmei Xu, Kai Li, Xiaobiao Shan, Jie Deng. A Four-Feet Walking-Type Rotary Piezoelectric Actuator with Minute Step Motion. Sensors (Basel). 2018,18(5): 1471(https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5982161/) (20180508) (IF=2.475) Shen Liu, Yuancai Yang, Tao Xie, Xiaobiao Shan*. Experimental Study on Fine Titanium Wire Drawing with Two Ultrasonically Oscillating Dies[J]. IEEE Access. 2018,6:16576-16587 (doi:10.1109/ACCESS.2018.2811714)(https://ieeexplore.ieee.org/document/8308714/)(WOS:000430108100001) (20180418)(2018 IF=3.557) Shen Liu, Xiaobiao Shan, Kai Guo,Yuancai Yang, Tao Xie*. Experimental Study on Titanium Wire Drawing with Ultrasonic Vibration. Ultrasonics. 2018, 83:60-67.(https://www.sciencedirect.com/science/article/pii/S0041624X17302032) (PDF:https://ac.els-cdn.com/S0041624X17302032/1-s2.0-S0041624X17302032-main.pdf?_tid=7c1dc8fa-d0c5-11e7-801c-00000aacb361&acdnat=1511493407_9f946913f22cdd421766f8f52631a29f) (WOS:000415887300008) (201802)(IF=2.327) Shen Liu, Xiaobiao Shan, Wei Cao, Yuancai Yang, Tao Xie*. A Longitudinal-torsional Composite Ultrasonic Vibrator with Thread Grooves.Ceramics International. 2017, 43: S214-S220 (doi:10.1016/j.ceramint.2017.05.305) (http://www.sciencedirect.com/science/article/pii/S0272884217311434)(WOS:000409285800037) (201708) (IF=2.986) Zhenlong Xu, Xiaobiao Shan, Hong Yang, Wen Wang, Tao Xie *. Parametric Analysis and Experimental Verification of a Hybrid Vibration Energy Harvester Combining Piezoelectric and Electromagnetic Mechanisms. Micromachines. 2017, 8(6): 189; doi:10.3390/mi8060189(http://www.mdpi.com/2072-666X/8/6/189)(WOS:000404119100024) (20170618)(IF=1.833) Xiaobiao Shan, Jie Deng, Rujun Song, Tao Xie*. A Piezoelectric Energy Harvester with Bending–Torsion Vibration in Low-Speed Water. Applied Sciences-Basel (ISSN: 2076-3417). 2017, 7(2), 116. (doi:10.3390/app7020116) (http://www.mdpi.com/2076-3417/7/2/116/html) (http://www.mdpi.com/2076-3417/7/2/116/pdf) ( WOS:000395488900008) (20170125)(IF=1.679) Xiaobiao Shan, Rujun Song, Menglong Fan, Jie Deng, Tao Xie*. A Novel Method for Improving the Energy Harvesting Performance of Piezoelectric Flag in a Uniform Flow. Ferroelectrics (ISSN: 0015-0193). 2016,500(1):283-290. (http://www.tandfonline.com/doi/full/10.1080/00150193.2016.1230040)(WOS:000386464100025) (20161014)(IF=0.551) Shen Liu*, Xiaobiao Shan, Kai Guo, Tao Xie. Design and Fabrication of a Skew-Typed Longitudinal-Torsional Composite Ultrasonic Vibrator for Titanium Wire Drawing. IEEE Access (ISSN: 2169-3536). 2016, 4: 6749-6756. (http://ieeexplore.ieee.org/document/7582367/) (WOS:000401352200001) (20161004)(IF=3.244) Xiaobiao Shan, Rujun Song, Menglong Fan, Tao Xie*. Energy-Harvesting Performances of Two Tandem Piezoelectric Energy Harvesters with Cylinders in Water. Applied Sciences-Basel (ISSN: 2076-3417). 2016, 6(8), 230 (doi:10.3390/app6080230) (http://www.mdpi.com/2076-3417/6/8/230/pdf) (http://www.mdpi.com/2076-3417/6/8/230/html) (WOS:000385517300024)(20160817) (IF=1.679) Chongqiu Yang, Xiaobiao Shan, Tao Xie*. Titanium wire drawing with longitudinal-torsional composite ultrasonic vibration. International Journal of Advanced Manufacturing Technology (ISSN: 0268-3768). 2016,83(1):645-655; Doi: 10.1007/s00170-015-7540-1 (http://link.springer.com/article/10.1007/s00170-015-7540-1) (WOS:000371180800056)(201603)(IF=2.209) Rujun Song, Xiaobiao Shan, Tao Xie *. Numerical Study of the Aerodynamic Response and Energy Harvesting of Polyvinylidene Fluoride Piezoelectric Flags in a Uniform Flow. Journal of the Chinese Chemical Society (ISSN: 0009-4536). 2016, 63(6):545-552 (DOI:10.1002/jccs.201500308) (http://onlinelibrary.wiley.com/doi/10.1002/jccs.201500308/full) (WOS:000378826600014) (20160126)(IF=0.935) Shen Liu, Xiaobiao Shan, Kai Guo, Tao Xie *. Research on a Composite Power-Superimposed Ultrasonic Vibrator for Wire Drawing. Applied Sciences-Basel (ISSN: 2076-3417). 2016, 6(2), 32; doi:10.3390/app6020032 (http://www.mdpi.com/2076-3417/6/2/32/html) (http://www.mdpi.com/2076-3417/6/2/32/pdf)(WOS:000371827200011)(20160125)(IF=1.679) Zhenlong Xu, Xiaobiao Shan, Danpeng Chen, Tao Xie*. A Novel Tunable Multi-Frequency Hybrid Vibration Energy Harvester Using Piezoelectric and Electromagnetic Conversion Mechanisms. Applied Sciences-Basel (ISSN: 2076-3417). 2016, 6(1), 10; doi:10.3390/app6010010 (http://www.mdpi.com/2076-3417/6/1/10) (http://www.mdpi.com/2076-3417/6/1/10/pdf)(WOS:000372148700007) (20160105)(IF=1.679) Rujun Song, Xiaobiao Shan, Fengchi Lv, Tao Xie*. A Novel Piezoelectric Energy Harvester Using the Macro Fiber Composite Cantilever with a Bicylinder in Water. Applied Sciences-Basel (ISSN: 2076-3417). 2015, 5(4), 1942-1954; doi:10.3390/app5041942 (http://www.mdpi.com/2076-3417/5/4/1942/html) (http://www.mdpi.com/2076-3417/5/4/1942/pdf) (WOS:000367529300079) (20151217)(IF=1.726) Xiaobiao Shan, Rujun Song, Bo Liu, Tao Xie. Novel energy harvesting: A macro fiber composite piezoelectric energy harvester in the water vortex. Ceramics International (ISSN: 0272-8842). 2015,41:S763–S767 (WOS:000358968100134) (http://www.sciencedirect.com/science/article/pii/S0272884215006355) (201507)(IF=2.758) Rujun Song, Xiaobiao Shan, Fengchi Lv, Tao Xie. A Study of Vortex-induced Energy Harvesting from Water Using PZT Piezoelectric Cantilever with Cylindrical Extension. Ceramics International (ISSN: 0272-8842). 2015,41:S768-S773 (WOS:000358968100135) (http://www.sciencedirect.com/science/article/pii/S0272884215006781) (201507)(IF=2.758) Chongqiu Yang, Xiaobiao Shan, Tao Xie. A new piezoelectric ceramic longitudinal-torsional composite ultrasonic vibrator for wire drawing. Ceramics International (ISSN: 0272-8842). 2015,41:S625-S630 (WOS:000358968100110) (http://www.sciencedirect.com/science/article/pii/S0272884215006367) (201507)(IF=2.758) Hongyan Wang, Lihua Tang, Xiaobiao Shan, Tao Xie, Yaowen Yang. Modeling and performance evaluation of a piezoelectric energy harvester with segmented electrodes. Smart Structures and Systems. 2014,14:247-266 (WOS:000344575600010) (http://121.183.206.200:8080/proto.board/abstractArticleContentView?page=article&journal=sss&volume=14&num=2&ordernum=10&site=korsc)(IF=1.368) Xiaobiao Shan, Zhenlong Xu, Rujun Song, Tao Xie. A New Mathematical Model for a Piezoelectric-Electromagnetic Hybrid Energy Harvester. Ferroelectrics. 2013, 450(1):57-65 (http://www.tandfonline.com/doi/full/10.1080/00150193.2013.838490) (WOS:000328469300009)(20131209)(IF=0.433) Xiaobiao Shan, Zhenlong Xu, Tao Xie. New Electromechanical Coupling Model and Optimization of an Electromagnetic Energy Harvester. Ferroelectrics. 2013, 450(1):66-73 (http://www.tandfonline.com/doi/full/10.1080/00150193.2013.838491) (WOS:000328469300010)(20131209)(IF=0.433) Xiaobiao Shan, Shiwei Guan, Zhangshi Liu, Zhenlong Xu, Tao Xie. A New Energy Harvester Using a Piezoelectric and Suspension Electromagnetic Mechanism. Journal of Zhejiang University-Science A. 2013,14(12):890-897 (WOS:000328261900005) (http://link.springer.com/article/10.1631/jzus.A1300210)(201312)(IF=0.608) Xiaobiao Shan, Haiqun Qi, Lili Wang, Tao Xie. A New Model of the Antifriction Effect on Wiredrawing with Ultrasound. International Journal of Advanced Manufacturing Technology. 2012,63:1047-1056 (DOI: 10.1007/s00170-012-3976-8)(WOS:000310811200019)(http://link.springer.com/article/10.1007/s00170-012-3976-8)(201212)(IF=1.205) Hongyan Wang, Xiaobiao Shan, Tao Xie. An Energy Harvester Combining a Piezoelectric Cantilever and a Single Degree of Freedom Elastic System. Journal of Zhejiang University-Science A. 2012,13(7):526-537(IF=0.527) Xiaobiao Shan, Jiangbo Yuan, Tao Xie, Weishan Chen. Design and Experiment of Multiple Piezoelectric Bimorphs for Scavenging Vibration Energy. International Journal of Applied Electromagnetics and Mechanics. 2010,34(4):265-275(IF=0.336) Xiaobiao Shan, Lili Wang, Tao Xie, Weishan Chen. A Simple Approach for Determining the Preload of a Wire Race Ball Bearing. Journal of Zhejiang University-Science A. 2010,11(7):511-519(IF=0.326) Jiangbo Yuan, Xiaobiao Shan, Tao Xie, Weishan Chen. Modeling and Improvement of a Cymbal Transducer in Energy Harvesting. Journal of Intelligent Material Systems and Structures. 2010,21(8):765-771 (IF=1.604) Jiangbo Yuan, Xiaobiao Shan, Tao Xie, Weishan Chen. Energy Harvesting with a Slotted-Cymbal Transducer. Journal of Zhejiang University-Science A. 2009,10(8):1187-1190 (IF=0.301) Haiqun Qi, Xiaobiao Shan, Tao Xie. Design and Experiment of the High Speed Wire Drawing with Ultrasound. Chinese Journal of Mechanical Engineering (English Edition). 2009,22(4):580-586 Jiangbo Yuan, Tao Xie, Xiaobiao Shan, Weishan Chen. Resonant Frequencies of a Piezoelectric Drum Transducer. Journal of Zhejiang University-Science A. 2009,10(9):1313-1319 (IF=0.301) Jiangbo Yuan, Tao Xie, Weishan Chen, Xiaobiao Shan, Shunong Jiang. Performance of a Drum Transducer for Scavenging Vibration Energy. Journal of Intelligent Material Systems and Structures. 2009,20(14):1771-1777(IF=1.177) Xiaobiao Shan, Tao Xie, Weishan Chen. A new method for determining the preload in a wire race ball bearing. Tribology International. 2007, 40: 869~875(IF=1.025) Xiaobiao Shan, Tao Xie, Weishan Chen. Novel Approach for Determining the Optimal Axial Preload of Simulating Rotary Table Spindle System. Journal of Zhejiang University-Science A. 2007 8 (5): 812~817 Indexed by EI: 宋汝君,单小彪,范梦龙,谢涛*. 涡激振动型水力复摆式压电俘能器的仿真与实验研究. 振动与冲击. 2017, 36 (19) :78-83(EI Accession number: 20175004525057) (20171015) (http://www.cqvip.com/main/export.aspx?id=673470392&sign=cb7ef6b3b39fa71f0694449134b71a92) 宋汝君,单小彪,李晋哲,谢涛. 压电俘能器涡激振动俘能的建模与实验研究. 西安交通大学学报. 2016(02): 55-60+79 (EI Accession number:20161202126700) (20160210) Xiaobiao Shan, Jiangbo Yuan, Tao Xie, Haiqun Qi. A New Approach for Determining the Contact Indentation of the Wire Race Ball Bearing in a Three-Axis Simulating Rotary Table. 2009 IEEE International Conference on Mechatronics and Automation, ICMA 2009, August 9, 2009 - August 12, 2009, Changchun, China, 2009. IEEE Computer Society:3916-3920 Xiaobiao Shan, Jiangbo Yuan, Tao Xie, Weishan Chen, Haiqun Qi. New Numerical Method for Investigating the Displacement and Stress Fields inside Contact Bodies of a Wire Race Ball Bearing. 2009 IEEE International Conference on Mechatronics and Automation, ICMA 2009, August 9, 2009 - August 12, 2009, Changchun, China, 2009. IEEE Computer Society:4512-4516 Xiaobiao Shan, Tao Xie, Weishan Chen, Lili Wang. Modeling and Experimental Verification of the Axial Stiffness for a Wire Race Ball Bearing. IASTED International Conference on Modelling, Simulation, and Identification, MSI 2009, October 12, 2009 - October 14, 2009, Beijing, China, 2009. Acta Press Xiaobiao Shan, Tao Xie, Weishan Chen, Lili Wang. Modeling and Simulation on the Contact Deformation Distribution in a Wire Race Ball Bearing. 2009 IEEE International Conference on Robotics and Biomimetics, ROBIO 2009, December 19, 2009 - December 23, 2009, Guilin, China, 2009. IEEE Computer Society:2211-2214 Xiaobiao Shan, Lili Wang, Tao Xie, Weishan Chen. Mathematical Modeling and Experimental Verification of the Radial Stiffness for a Wire Race Ball Bearing. Applied Mechanics and Materials. 2012,120:343-348 Xiaobiao Shan, Naiming Qi, Lili Wang, Tao Xie. A High Efficient Variable Cross-Section Compound Ultrasonic Wiredrawing Vibration System. Applied Mechanics and Materials. 2012,157-158:1689-1694 Xiaobiao Shan, Naiming Qi, Lili Wang, Tao Xie. Key Factors Affecting the Amplitude of a Composite Ultrasonic Wiredrawing Vibration System. Applied Mechanics and Materials. 2012,157-158:395-399 Hongyan Wang, Xiaobiao Shan, Tao Xie, Muwen Fang. Analyses of Impedance Matching for Piezoelectric Energy Harvester with a Resistive Circuit. Electronic and Mechanical Engineering and Information Technology (EMEIT), 2011 International Conference on, 2011.1679-1683 Hongyan Wang, Xiaobiao Shan, Tao Xie. Equivalent Circuit Simulation Model of Cantilevered Piezoelectric Bimorph Energy Harvester. Applied Mechanics and Materials. 2012,148:245-249 Hongyan Wang, Xiaobiao Shan, Tao Xie. Complex Impedance Matching for Power Improvement of a Circular Piezoelectric Energy Harvester. Applied Mechanics and Materials. 2012,148:169-172 Hongyan Wang, Xiaobiao Shan, Tao Xie. Performance Optimization for Cantilevered Piezoelectric Energy Harvester with a Resistive Circuit. 2012 9th IEEE International Conference on Mechatronics and Automation, ICMA 2012, August 5, 2012 - August 8, 2012, Chengdu, China, 2012. IEEE Computer Society:2175-2180 Jiangbo Yuan, Tao Xie, Xiaobiao Shan, Weishan Chen. Experimental Study on a Self-Powered Piezoelectric Sensor under Vibration Environment. 2009 18th IEEE International Symposium on the Applications of Ferroelectrics, ISAF 2009, August 23, 2009 - August 27, 2009, Xian, China, 2009. Institute of Electrical and Electronics Engineers Inc Defu Zhong, Jiangbo Yuan, Xiaobiao Shan, Tao Xie. Theoretical and Experimental Study on Stiffness Characteristics of a Wire Race Ball Bearing. Advanced Materials Research. 2012,569:461-465 Zhenlong Xu, Xiaoxi Wang, Xiaobiao Shan, Tao Xie. Modeling and Experimental Verification of a Hybrid Energy Harvester Using Piezoelectric and Electromagnetic Technologies. Advanced Materials Research. 2012,569:529-532 Chengxi Liu, Xiaoxi Wang, Xiaobiao Shan, Tao Xie. Theoretical and Experimental Study on the Secondary Piezoelectric Effect of a Piezoelectric Cantilever Energy Harvester. Advanced Materials Research. 2012,566:57-60

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