研究领域
教育背景
工作经历
出版信息
科研活动
基本信息
高兴男硕导中国科学院深圳先进技术研究院
电子邮件: xing.gao@siat.ac.cn; hustergaoxing@hotmail.com
通信地址: 深圳市南山区学苑大道1068号,中国科学院深圳先进技术研究院
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研究领域
软体驱动器非线性动力学软体驱动末端执行机构
?仿生软体吸附
医疗软体驱动器
教育背景
2012-10--2016-12拉夫堡大学,英国博士2011-10--2012-09拉夫堡大学,英国硕士2007-09--2011-06华中科技大学学士工作经历
工作简历
2019-06~现在,中国科学院深圳先进技术研究院,副研究员2018-02~2019-05,布里斯托大学,布里斯托机器人实验室,英国,博士后2016-10~2017-09,法国国家科学研究中心(CNRS),博士后出版信息
发表论文
(1)Super Elastic, Sensitive and Low Hysteresis Flexible Strain Sensor Based on Wavy-Patterned Liquid Metal for Human Activities Monitoring,ACS Applied Materials & Interfaces,2020,第7作者(2)Mechanical modification of bacterial cellulose hydrogel under biaxial cyclic tension,Mechanics of Materials,2020,第1作者(3)Nonlinear dynamics of a conical dielectric elastomer oscillator with switchable mono to bi-stability,International Journal of Solids and Structures,2020,通讯作者(4)Power optimization of a conical dielectric elastomer actuator for resonant robotic systems,Extreme Mechanics Letters,2020,第2作者(5)Nonlinear dynamics of a magnetically coupled dielectric elastomer actuator,Physical Review Applied,2019,通讯作者(6)Towards efficient elastic actuation in bio-inspired robotics using dielectric elastomer artificial muscles,Smart Materials and Structures,2019,第2作者(7)A Magnetically Coupled Dielectric Elastomer Pump for Soft Robotics,Advanced Materials Technologies,2019,通讯作者(8)Biomechanical behaviours of the bone–implant interface: a review,Journal of the Royal Society Interface,2019,第1作者(9)Contactless coupling of dielectric elastomer membranes with magnetic repulsion,Electroactive Polymer Actuators and Devices (EAPAD) XXI,2019,通讯作者(10)A compliantly coupled dielectric elastomer actuator using magnetic repulsion,Applied Physics Letters,2019,通讯作者(11)De-Electroadhesion of Flexible and Lightweight Materials: An Experimental Study,Applied Sciences,2019,第2作者(12)Elastic electroadhesion with rapid release by integrated resonant vibration,Advanced Materials Technologies,2019,第1作者(13)Assessing stiffness of nanofibres in bacterial cellulose hydrogels: Numerical-experimental framework,Materials Science and Engineering: C,2017,第1作者(14)Electroconductive natural polymer-based hydrogels,Biomaterials,2016,第2作者(15)Effects of surface‐functionalized aluminum nitride on thermal, electrical, and mechanical behaviors of polyarylene ether nitrile‐based composites,Polymer Composites,2016,第4作者(16)Through-thickness stress relaxation in bacterial cellulose hydrogel,Journal of the Mechanical Behavior of Biomedical Materials,2016,第1作者(17)Effect of microstructure on anomalous strain-rate-dependent behaviour of bacterial cellulose hydrogel,Materials Science and Engineering: C,2016,第1作者(18)Connection between elastic and electrical properties of cortical bone,Journal of Biomechanics,2016,第1作者(19)Fracture behaviour of bacterial cellulose hydrogel: Microstructural effect,Procedia Structural Integrity,2016,第1作者(20)Time-dependent rheological behaviour of bacterial cellulose hydrogel,Materials Science and Engineering: C,2016,第1作者(21)Inelastic behaviour of bacterial cellulose hydrogel: in aqua cyclic tests,Polymer Testing,2015,第1作者(22)Properties and application of polyimide‐based composites by blending surface functionalized boron nitride nanoplates,Journal of Applied Polymer Science,2015,第2作者(23)Effect of random microstructure on crack propagation in cortical bone tissue under dynamic loading,Journal of Physics: Conference Series,2013,第1作者发表著作
(1)Discontinuous Finite Element Model of Hydrogels: Predicting Stiffness of Nanofibers,Academic Press,2018-01,第1作者科研活动
科研项目
( 1 ) 飞秒激光微创手术机器人系统, 参与,国家级,2020-01--2022-12参与会议
(1)电-磁-力耦合介电弹性体在高阻尼负载条件下实现高效性能输出2019“软体机器人理论与技术”研讨会2019-11-172013 © 中国科学院大学,网络信息中心.