from    
to    
search  

 


Numerical Modeling of Plasmas in Fluid and Kinetic Regimes
Interpretable Quantum Advantage in Neural Sequence Learning
The Awesome Power of Biochemistry in Neuroscience
清华大学材料科学与工程研究院《材料科学论坛》:基于三维微纳结构的仿生光电与传感器...
报告题目:
The Integral Design of Robots via Soft Material Composites
 报告人:
Robert F. Shepherd
Associate Professor of Sibley School of Mechanical Engineering and
Aerospace at Cornell University
报告时间:
2019-04-19 10:00
报告地点:
李兆基科技大楼A404
主办单位:
机械系
  简介:

简介:Smart materials have, for decades, provided simple and effective approaches for combining structure and actuation (or other functions). Shape memory alloys, for example, have been used for thermally triggering mechanical actuation in space systems since the early 1980’s. Since that time, materials have been designed for every available input signal, and for myriad output responses such as light transduced into shape change. Concurrently, the field of robotics has also seen great leaps over several decades, primarily from advances in computation and controls. Presently, there are many research groups endeavoring to merge smart, responsive materials with robotics for application to fields such as HRI, biomedical, agriculture, and space exploration. This talk will focus on work to use new actuators, sensors, and energy systems–from bioinspired design–to add new abilities or improvements to robots. Some of the multifunctional systems that will be discussed are autonomic transmission systems in powered prosthetics, synthetic afferent neural networks, distributed energy akin to cardiovascular systems, sweating actuators for thermal regulation, and haptic interfaces for VR simulations. In addition to the system demonstrations, the underlying manufacturing routes will be presented, where applicable, as key to the multifunctionality of these soft robots.

报告人简介:

Rob Shepherd is an associate professor at Cornell University in the Sibley School of Mechanical & Aerospace Engineering. He received his B.S. (Material Science & Engineering), Ph.D. (Material Science & Engineering), and M.B.A. from the University of Illinois in Material Science & Engineering. At Cornell, he runs the Organic Robotics Lab (ORL: http://orl.mae.cornell.edu), which focuses on using methods of invention, including bioinspired design approaches, in combination with material science to improve machine function and autonomy. They rely on new and old synthetic approaches for soft material composites that create new design opportunities in the field of robotics. Their research spans three primary areas: bioinspired robotics, advanced manufacturing, and human-robot interactions. He has published many high-impact papers in Science, PNAS, Science Robotics, IJRR, Nature Biomedical Engineering, Nature Reviews Materials, Advanced Materials, etc. He is the recipient of an Air Force Office of Scientific Research Young Investigator Award, an Office of Naval Research Young Investigator Award, and his lab’s work has been featured in popular media outlets such as the BBC, Discovery Channel, and PBS’s NOVA documentary series.


今日相关信息
拓扑电偶极子和多极子
“MS WORD”在制作长文档时的基本应用
 
同类别相关信息
【清华大学-美团数字生活联合研究院学术...
【清华大学-美团数字生活联合研究院学术...
清华大学-美团数字生活联合研究院学术沙...
清华-美团数字生活联合研究院学术沙龙第...
从单模态到多模态的意图理解
学术活动