何青松
发布人:姬科举  发布时间:2019-07-18   浏览次数:216

姓名:何青松

性别:男

职务:

职称:副研究员

博导/硕导:硕导

办公室:A10-526

研究领域:(1) 智能驱动技术及仿生/软体机器人;(2) 微纳米仿生黏附结构与材料

电话: 84892581-8005

Emailheqingsong@nuaa.edu.cn

人简介:

何青松,博士,副研究员,硕士生导师。2015年获得南京航空航天大学机械设计及理论学科博士学位,2014年在美国内华达大学进行访学,主要研究方向为智能驱动技术及仿生/软体机器人,仿生微纳米黏附结构与材料。目前是ISBE、美国SPIE、荷兰ISB、瑞典IAAM会员、中国微米纳米技术协会高级会员,担任Smart Materials and StructuresBioinspiration & BiomimeticsJournal of Bionic EngineeringSensors and Actuators A PhysicsChinese Science BulletinSCI期刊、西安交通大学学报的审稿人,是多个学术会议技术委员会委员,担任Applied Bionics and Biomechanics SCI期刊的客座主编、Advances in Polymer Technology SCI期刊的客座编辑,生物医学科学与工程国际期刊的编委。2016年获得江苏省优秀博士学位论文,2017年获得第八届机械与航空航天工程国际会议优秀口头报告,2018年获得教育部自然科学二等奖。

学术成果(包含著作,论文,获奖,专利等):  

共发表学术论文45篇,其中第一/通讯作者发表SCI期刊论文14篇,分别为Carbon1篇,IF = 7.082,中科院JCR工程技术1区)、Applied Physics Letters1篇,IF = 3.495JCR应用物理Q1区)、Smart Materials and Structures3篇,IF = 2.963JCR仪器仪表Q1区)、Journal of Bionic Engineering 6篇,IF = 2.325JCR多学科工程Q1区)、Sensors and Actuators A: Physical 1篇,IF = 2.311 JCR电力电子工程Q2区)、Chinese Science Bulletin1篇,IF = 1.649JCR多学科科学Q2区)、Journal of Nanoscience and Nanotechnology1篇,IF = 1.354),已发表期刊影响因子总和近50。联合申请中国发明专利18项,其中已授权8项。获得江苏省优秀博士学位论文、教育部自然科学二等奖。

第一/通讯作者代表性论文:

(1) He QS*, Vokoun D, Stalbaum T, Kim KJ, Fedorchenko AI, Zhou XM, Yu M, Dai ZD. Mechanoelectric transduction of ionic polymer-graphene composite sensor with ionic liquid as electrolyte. Sensors and Actuators A: Physical, 2019, 286: 68-77.

(2) Lu MY#, He QS#*, Li Y, Guo FQ, Dai ZD. The effects of radio-frequency CF4 plasma on adhesion property of vertical aligned carbon nanotube arrays. Carbon, 2019, 142: 592-598. (Lu MY and He QS contributed equally to this work)

(3) Wang ML, Yu M, Lu MY, He QS*, Ji KJ, Liu L. Effects of Cu2+ counter

ions on the actuation performance of flexible ionic polymer metal composite actuators. Journal of Bionic Engineering, 2018, 15: 1047-1056.

(4) He QS, Yang X, Wang ZY, Zhao J, Yu M, Hu Z, Dai ZD. Advanced electro-active dry adhesive actuated by an artificial muscle constructed from an ionic polymer metal composite reinforced with nitrogen-doped carbon nanocages. Journal of Bionic Engineering, 2017, 14: 567-578.

(5) He QS, Yu M, Yang X, Kim KJ, Dai ZD. An ionic electro-active actuator made with graphene film electrode, chitosan and ionic liquid. Smart Materials and Structures, 2015, 24(6): 0650261-0650269.

(6) He QS, Song LL, Yu M, Dai ZD. Fabrication and characteristics and electrical model of an ionic polymer-carbon nanotube composite. Smart Materials and Structures, 2015, 24(7): 0750011-07500118.

(7) He QS, Yu M, Li Y, Chen XL, Zhang H, Gong L, Dai ZD. Adhesion characteristics of a novel synthetic polydimethylsilxane for bionic adhesive pads. Journal of Bionic Engineering, 2014, 11(3): 371-377.

(8) He QS, Yu M, Ding Y, Dai ZD. Fabrication and characteristics of a multilayered ionic polymer metal composite based on Nafion/tetraethyl orthosilicate andNafion/MCNT nanocomposites. Journal of Nanoscience and Nanotechnology, 2014, 14(10): 7445-7450.

(9) He QS, Yu M, Zhang XQ, Dai ZD. Electromechanical performance of an ionic polymer-metal composite actuator with hierarchical surface texture. Smart Materials and Structures, 2013, 22(5): 0550011-05500111.

(10) He QS, Yu M, Yu DS, Ding Y, Dai ZD. Significantly enhanced actuation performance of IPMC by surfactant-assisted processable MWCNT/Nafion composite. Journal of Bionic Engineering, 2013, 10(3): 359-367.

(11) Yu M#, He QS#, Yu DS, Zhang XQ, Ji AH, Zhang H, Guo C, Dai ZD. Efficient active actuation to imitate locomotion of gecko’s using an ionic polymer-metal composite actuator enhanced by carbon nanotubes. Applied Physics Letters, 2012, 101(16): 1637011-1637015. (Yu M and He QS contributed equally to this work)

(12) He QS, Yu M, Li YX, Ding Y, Guo DJ, Dai ZD. Investigation of ionic polymer metal composite actuators loaded with various tetraethyl orthosilicate contents. Journal of Bionic Engineering, 2012, 9(1): 75-83.

(13) Yu M#, He QS#, Ding Y, Guo DJ, Li JB, Dai ZD. Force optimization of ionic polymer metal composite actuators by an orthogonal array method. Chinese Science Bulletin, 2011, 56(19): 2061-2070. (Yu M and He QS contributed equally to this work)

(14) He QS, Yu M, Song LL, Ding HT, Zhang XQ, Dai ZD. Experimental study and model analysis of the performance of IPMC membranes with various thickness. Journal of Bionic Engineering, 2011, 8(1): 77-85.

(15) 何青松, 于敏, 丁燕, 郭东杰, 李佳波, 戴振东. 正交试验设计优化离子聚合物金属复合材料的里输出性能. 科学通报, 2011, 56(14): 1144-1152.

合作作者代表性论文:

(1) Vokoun D, He QS, Heller L, Yu M, Dai ZD. Modeling of IPMC cantilever’s displacement and blocking force. Journal of Bionic Engineering, 2015, 12(1): 142-151.

(2) 焦战士, 何青松, 郭东杰, 戴振东. 磺酸化石墨烯掺杂的离子交换聚合物电致动器. 复合材料学报, 2012 , 29: 24-31.

(3) Zhu ZC, He XM, He QS, Fang XY, Hu Q, Chen HL. Ionic polymer pressure sensor with gradient shape based on ion migration. Journal of Applied Physics, 2019, 125, 024901.

(4) 李阳, 汪中原, 何青松, 张昊, 陈新龙, 李志, 戴振东. 碳纳米管阵列及其增强高分子复合材料在真空和高温环境下的黏附性能. 科学通报, 2015, 60(2): 213-223.

(5) 刘志刚, 于敏, 何青松, 杨旭, 汪磊. 具有梯度结构的三维IPMC的制备及表征. 功能材料, 2017 , 7(48): 07198-07204.

(6) 王茂林, 于敏, 何青松, 刘志刚. 通过非对称电极实现IPMC单向弯曲.载人航天, 2017, 23(4): 541-545.

(7) 于敏, 丁海涛, 郭东杰, 何青松, 戴振东. 离子聚合物金属复合材料电致动模型研究. 功能材料, 2011, 42(8): 1436-1440.

(8) Guo DJ, Ding HT, Wei HJ, He QS, Yu M, Dai ZD. Hybrids perfluorosulfonic acid ionomer and silicon oxide membrane for application in ion-exchange polymer-metal composite actuators. SCIENCE IN CHINA SERIES E-TECHNOLOGICAL SCIENCES, 2009, 52(10): 3061-3070.

(9) 杨旭, 于敏, 王运动, 汪磊, 何青松, 刘志刚, 戴振东. 表面粗化对IPMC人工肌肉性能的影响. 科学通报, 2016, 61(23): 2620-2628.

(10) Chang LF, Yang Q, Niu QZ, Wang Y, Liu YF, Lu P, He QS, Wu YC, Hu Y. High-performance ionic polymer-metal composite actuators fabricated with microneedle roughening. Smart Materials and Structure, 2018, 28(1): 015007.

已授权中国发明专利:

(1) 何青松, 于敏, 杨旭, 张梦, 戴振东. 一种基于离子型电致动聚合物的LED灯控制电路. 中国, ZL201610551370.3. 授权公告日: 2018.01.23

(2) 何青松, 于敏, 刘志刚, 姬科举, 戴振东. 一种基于泡沫金属的多孔道IPMC电致动材料及其制备方法. 中国, ZL201611016064.6. 授权公告日: 2019.01.04

(3) 何青松, 于敏, 王堡垒, 张梦,戴振东. 基于离子型人工肌肉驱动的小型机器鱼及其运动方法. 中国, ZL201410171989.2. 授权公告日: 2016.04.20

(4) 戴振东, 何青松, 于敏, 张昊. 用于仿壁虎脚掌粘附阵列的粘附材料及其制备方法. 中国, ZL201310284325.2. 授权公告日: 2014.03.11

(5) 于敏, 何青松, 张昊, 戴振东. 基于IPMC的仿壁虎主驱动式脚掌及驱动方式. 中国, ZL201110321419. 3. 授权公告日: 2012.12.26

(6) 于敏, 王堡垒, 何青松, 汝杰, 张梦, 戴振东. 基于IPMC驱动的直线驱动机构及直线驱动器. 中国, ZL201310569418.X. 授权公告日: 2016.03.02

(7) 于敏, 张昊, 丁海涛, 何青松, 郭东杰, 戴振东. IPMC人工肌肉材料性能测试装置. 中国, ZL201010133208.2. 授权公告日: 2012.03.21

(8) 戴振东, 于敏, 李玉秀, 何青松. 基于IPMC材料驱动的一维和二维仿生眼球装置. 中国, ZL201110009203.3. 授权公告日: 2012.07.25 

承担项目:

1. 国家自然科学基金青年项目,516052202017/01-2019/12,在研,主持;

2. JWKJW国防科技基金项目,2017/01-2018/12,在研,主持;

3. 江苏省自然科学基金青年项目,BK201607932016/07-2019/06,在研,主持;

4. 南京航空航天大学引进人才科研启动经费,1011-YAH16010, 2016/01-2017/12,主持;

5. 江苏省介入医疗器械研究重点实验室开放课题,jr16012016/05-2017/12,主持;

6. 湖北省水电机械设备设计与维护重点实验室开放课题,2017KJX112017/01-

2018/12,主持;

7. 国家自然科学基金-中国航天科技集团公司航天先进制造技术研究联合基金,U16371012017/01-2019/12,在研,参加;

8. JWKJW前沿探索项目,2017/01~2020/12,在研,参加;

9. JWKJW国防科技创新特区首批项目,2017~2018,已结题,参加;

10. 载人航天领域预先研究项目,2016/06-2017/05,已结题,参加;

11. 载人航天领域预先研究项目,2017/09-2018/09,在研,参加;

12. 上海空间飞行器机构重点实验室开放课题,2017/04-2019/04,在研,参加;

13. 国家自然科学基金面上项目,513752322014/01-2017/12,已结题,参加;

14. 国家自然科学基金重大国际合作项目,611611203232012/01-2014/12,已结题,参加;

15. 国家自然科学基金面上项目,511752512012/01-2015/12,已结题,参加;

16. 国家自然科学基金青年项目,508050762009/01-2011/12,已结题,参加。