Tianfeng Tang
Papers
4
Total Citations
30
H-Index
3
About
Tianfeng Tang is a researcher specializing in space robotics, biomimetic engineering, and on-orbit servicing technologies. His work focuses on developing innovative robotic systems capable of operating in the challenging environment of outer space, with particular emphasis on truss-crawling and climbing robots designed for autonomous spacecraft maintenance and assembly. Tang's most significant contribution is his development of a biomimetic space truss-crawling robot, inspired by gecko adhesion principles, which addresses the growing demand for unmanned assembly of orbital space structures. This work, his most cited publication with 21 citations, introduced a multi-joint legged robot incorporating adhesive microstructures that mimic gecko feet — a creative fusion of biological inspiration and aerospace engineering. Complementing this, his earlier studies investigated the adhesion characteristics of bionic gecko microarray feet using Discrete Element Method (DEM) simulations, providing foundational insights into how such robots can grip spacecraft surfaces reliably in microgravity. Tang has also contributed to kinematics modeling and simulation of on-orbit assembly robots using integrated EDEM and ADAMS platforms, advancing the understanding of underactuated robotic locomotion in space. Together, his body of work represents a meaningful contribution to the emerging field of autonomous space robotics, offering practical pathways toward flexible, mobile solutions for future on-orbit servicing missions.
Research Focus
Key Achievements
Top Papers
- 1Research on motion characteristics of space truss-crawling robot21 citations · 2019
- 2
- 3
- 4