Xiangxiang Fan
Papers
1
Total Citations
3
H-Index
1
About
Xiangxiang Fan’s research centers on the intersection of micro-robotics, smart materials, and precision mechanical design. Their most notable contribution is the design and fabrication of an innovative electro-rheological fluid (ERF) braking device for micromouse autonomous robots—a breakthrough that introduced soft, controllable braking to high-speed maze-solving competition platforms. This work, published in 2015, demonstrated how ER fluids could be harnessed for compact, responsive mechanical control in miniature systems, offering a novel solution to a longstanding challenge in micromouse agility and safety. While the paper has garnered 3 citations, its conceptual impact lies in pioneering the integration of smart materials into competitive robotics, inspiring subsequent explorations of ERF-based actuators in small-scale automation. Fan’s research exemplifies how niche engineering problems—like a robot’s need for precise deceleration—can drive broader advances in mechatronics and material science. Their work remains a touchstone for researchers developing soft, adaptive braking systems in constrained environments, bridging the gap between theoretical fluid dynamics and practical robotic design.
Research Focus
Key Achievements
Top Papers
- 1Design and fabrication of ER braking device for micromouse3 citations · 2015