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湖南大学机械与运载工程学院导师教师师资介绍简介-王刚

本站小编 Free考研考试/2021-08-18

姓名:王刚

系别:机电工程系
职称/职务:教授、博士生导师






基本信息
办公电话:
E-mail: wangg@hnu.edu.cn
主要学术贡献:首次发现了二维二组元声子晶体中的局域共振带隙现象;系统研究声子晶体/声学超材料的带隙机理,率先将带隙机理应用于机械结构振动和噪声控制中;提出了基于主动控制策略的智能超材料概念;基于智能超材料,首次发现并实现了具有反幅值依赖(非线性强度随激励幅值的减小而反常增大)的非线性现象。



教育背景
1994.09-1998.07 国防科技大学机械电子工程与仪器仪表系,获学士学位;
1998.09-2006.06 国防科技大学机电工程与自动化学院机械工程专业(硕博连读),获博士学位。


工作履历
2006.06-2008.12 国防科技大学机电工程与自动化学院讲师,从事教学科研工作;
2011.02-2012.02 德国慕尼黑工业大学机械学院,访问研究一年。
2008.12-2015.03 国防科技大学机电工程与自动化学院副研究员,主要从事声子晶体与减振降噪方面的研究工作;
2015.03-至今:湖南大学机械与运载工程学院机电工程系教授,从事教学与科研工作。


研究领域
声子晶体、智能超材料、非线性超材料的理论及减振降噪应用;
声学SLAM算法研究及应用;
机器视觉、SLAM算法的工程应用;
智能装备及机器人的控制。


科研项目
1.国家自然科学基金面上项目,**,基于自适应压电分流阵列的智能超构材料板减振降噪特性研究,2018/01-2021/12,56万元(直接经费),在研,主持
2.典型XX性能评估及预测方法研究,军工横向项目,50万元,2019-2020,主持
3.基于XX设备配套数据采集系统软件开发,军工横向项目,40万元,2020-2021,主持
4.青岛国际院士港集团智慧建造发展有限公司横向项目,青岛装配式建筑相关关键技术开发与集成应用重大专项,2019/12 – 2022/12,10200万元,在研,参与(骨干成员)
5.湖南省重点研发计划,2016SK2014,“互联网+”智能塑料包装瓶回收系统开发及示范,2016/01-2018/12,40万元,在研,主持
6.国家自然科学基金优秀青年基金项目,**,智能结构与结构振动控制,2014/01-2016/12,100万元,已结题,主持
7.高等学校全国优秀博士学位论文作者专项资金项目,200939,基于带隙理论和智能结构的减振降噪原理及应用,2009/01-2013/12,60 万元,已结题,主持
8.国家自然科学基金青年科学基金项目,**,主动振子嵌入式周期结构的带隙特性研究,2010/01-2012/12,20万元,已结题,主持
9.陕西电力科学研究院横向合作项目,基于声子晶体原理的输变电工程降噪技术研究,2012-2012,已结题


学术成果
部分论文:
[1] ZhangX,YuH,HeZ,HuangG,ChenYandWangG*2021AMetamaterialBeamwithInverseNonlinearityforBroadbandMicro-Vibration.MechanicalSystemsandSignalProcessing.159:107826 (TOP期刊,SCI一区,IF=6.471)
[2] Xiaodong Zhang, Fei Chen, Zhongsheng Chen and Gang Wang*. 2018Membrane-type smart metamaterials for multi-modal sound insulation [J]. J. Acoust. Soc. Am. 144(6) 3514-3524
[3] Xiaodong Zhang, Zhicheng He, Gang Wang*. 2018Extraordinary Sound Transmission through Geometrical Mismatched Channels Based on Near Zero Bulk Modulus and Fabry-Pérot Resonance [J]. J. Phys. D: Appl. Phys. 52 055301 SCI 2区
[4] Xiaodong Zhang, Huile Zhang, Zhongsheng Chen and Gang Wang*. 2018Simultaneous realization of large sound insulation and efficient energy harvesting with acoustic metamaterial [J]. Smart Materials and Structures. 27 105018
[5] Gang Wang*, Jianqing Cheng, Jingwei Chen and Yunze He, Multi-resonant piezoelectric shunting induced by digital controllers for subwavelength elastic wave attenuation in smart metamaterial. Smart Materials and Structures, 2017. 26 025031
[6] Shengbing Chen and Gang Wang, Wave propagation in beams with anti-symmetric piezoelectric shunting arrays. Chinese Physics B, 2016. 25(3):034301.
[7] Shengbing Chen, Gang Wangand Yubao Song, Low-frequency vibration isolation in sandwich plates by piezoelectric shunting arrays. Smart Materials and Structures, 2016. 25 125024
[8] Gang Wang*and Shengbing Chen, Large low-frequency vibration attenuation induced by arrays of piezoelectric patches shunted with amplifier–resonator feedback circuits. Smart Materials and Structures, 2016. 25(1):015004.
[9] Shengbing Chen, Gang Wang, Jihong Wen and Xisen Wen. Wave propagation and attenuation in plates with periodic arrays of shunted piezo-patches. Journal of Sound and Vibration. 2013. 332(6):1520-1532
[10] Jianwei Wang, Gang Wang, JiHong Wen, and Xisen Wen. Flexural vibration band gaps in periodic stiffened plate structures. Mechanika. 2012. 2:186-191
[11] Shengbing Chen, Jihong Wen, Gang Wang, Dianlong Yu and Xisen Wen. Improved modeling of rods with periodic arrays of shunted piezoelectric patches. Journal of Intelligent Material Systems and Structures. 2012. 23(14):1613-1621
[12] Jianwei Wang, Gang Wang, Shengbing Chen and Jihong Wen. Broadband Attenuation in Phononic Beams Induced by Periodic Arrays of Feedback Shunted Piezoelectric Patchs. Chinese Physics Letters. 2012. 29(6):064320
[13] Shengbing Chen, Jihong Wen, Gang Wang, Xiaoyun Han and Xisen Wen. Locally Resonant Gaps of Phononic Beams Induced by Periodic Arrays of Resonant Shunts. Chinese Physics Letters. 2011. 28(9):094301
[14] Gang Wang*, Jianwei Wang, Shengbing Chen and Jihong Wen. Vibration attenuations induced by periodic arrays of piezoelectric patches connected by enhanced resonant shunting circuits. Smart Materials and Structures. 2011. 20(12):125019
[15] Gang Wang*, Shengbing Chen and Jihong Wen. Low-frequency locally resonant band gaps induced by arrays of resonant shunts with Antoniou’s circuit: experimental investigation on beams. Smart Materials and Structures. 2011. 20(1):015026
[16] Jihong Wen, Gang Wang, Dianong Yu, Honggang Zhao, Yaozong Liu and Xisen Wen. Study on the vibration band gap and vibration attenuation property of phononic crystals. Science in China Series E. 2008. 51:85-99
[17] Jihong Wen, Dianlong Yu, Gang Wangand Xisen Wen. Directional propagation characteristics of flexural wave in two dimensional periodic grid-like plate structures. Journal of Physics D: Applied Physics. 2008. 41(13):135505
[18] Dian-Long Yu, Gang Wang, Yao-Zong Liu, Ji-Hong Wen and Jing Qiu. Flexural vibration band gaps in thin plates with two-dimensional binary locally resonant structures. Chinese Physics. 2006. 15(2):266-271
[19] Gang Wang*, Li-Hui Shao, Yao-Zong Liu and, Ji-Hong Wen. Accurate evaluation of lowest band gaps in ternary locally resonant phononic crystals. Chinese Physics. 2006. 15(8):1843-1848
[20] Gang Wang*, Yao-Zong Liu, Ji-Hong Wen and Dian-Long Yu. Formation mechanism of the low-frequency locally resonant band gaps in the two-dimensional ternary phononic crystals. Chinese Physics. 2006. 15(2):407-411
[21] Gang Wang*, Xisen Wen, Jihong Wen and Yaozong Liu. Quasi-one-dimensional periodic structure with locally resonant band gap. ASME Journal of Applied Mechanics. 2006. 73(1):167-170
[22] Gang Wang*, Jihong Wen, Yaozong Liu, Dianlong Yu and Xisen Wen. Lumped-mass approach for the calculation of band structure of two-dimensional phononic crystals with high contrast of elastic constant. Acta Physica Sinica. 2005. 54(3):1247-1252
[23] Gang Wang*, Jihong Wen and Xisen Wen. Quasi-one-dimensional phononic crystals studied using the improved lumped-mass method: Application to locally resonant beams with flexural wave band gap. Physical Review B. 2005. 71(10):104302
[24] Jihong Wen, Gang Wang, Dianlong Yu, Honggang Zhao and Yaozong Liu. Theoretical and experimental investigation of flexural wave propagation in straight beams with periodic structures: Application to a vibration isolation structure. Journal of Applied Physics. 2005. 97(11):114907
[25] Jihong Wen, Gang Wang, Yaozong Liu and Dianlong Yu. Lumped-mass method on calculation of elastic band gaps of one-dimensional phononic crystals. Acta Physica Sinica. 2004. 53(10):3384-3388
[26] Gang Wang*, Dianlong Yu, Jihong Wen, Yaozong Liu and Xisen Wen. One-dimensional phononic crystals with locally resonant structures. Physics Letters A. 2004. 327(5-6):512-521
[27] Gang Wang*, Jihong Wen, Yaozong Liu and Xisen Wen. Lumped-mass method for the study of band structure in two-dimensional phononic crystals. Physical Review B. 2004. 69(18):184302
[28] Gang Wang*, Xisen Wen, Jihong Wen, Lihui Shao and Yaozong Liu. Two dimensional locally resonant phononic crystals with binary structures. Physical Review Letters. 2004. 93(15):154302
[29] Gang Wang*, Jihong Wen, Xiaoyun Han and Honggang Zhao. Finite difference time domain method for the study of band gap in two-dimensional phononic crystals. Acta Physica Sinica. 2003. 52(8):1943-1947

专著:
[1] 王刚. 声子晶体局域共振带隙机理及减振特性研究. 长沙 国防科技大学出版社 2009.9 (ISBN978-7-81099-605-1)
[2] 温熙森,温激鸿,郁殿龙,王刚,刘耀宗,韩小云. 声子晶体. 北京 国防工业出版社 2009.8 (ISBN978-7-118-06342-4)

发明专利:
一种包装瓶的三自由度自动传送及识别的装置和方法,陈敬炜 王刚(ZL2017 1 **.9)2019-03-15


奖励与荣誉
科研获奖:
1、2017年 第六届中国创新创业大赛,获湖南赛区优秀奖(“互联网+”智能塑料包装瓶回收机,湖南省科技厅)

2、2013年国家自然科学基金项目获得者(批准号:**);
3、2013年度军队科技进步三等奖(排名第3,“XX吸声材料声学性能并行仿真软件”,Z2013YH319-3)
4、2011年度湖南省自然科学一等奖(排名第3,“声子晶体带隙理论及减振降噪应用基础研究”,**-Z1-213-D01);
5、2008年度全国优秀博士学位论文获得者。
教学获奖:
1、2020年,第九届全国大学生机械创新设计大赛,省赛一等奖、国赛二等奖,指导老师(综合智能分类垃圾桶)
2、2019年,第二届中国高校智能机器人创意大赛主题二,一等奖(第1名),指导老师(魔方机器人);
3、2019年,第一届机械与运载工程学院毕业设计大赛金奖,指导老师;
4、2017年,第三届互联网+大学生创新创业大赛湖南赛区比赛,入围第二轮复赛,指导老师;
5、2019、2020年度湖南大学创新创业优秀指导教师。






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