Qun Ming Li
Papers
2
Total Citations
13
H-Index
2
About
Qun Ming Li is a leading researcher in heavy-duty robotics and forging automation, with a primary focus on the mechanical design and force analysis of large-scale industrial manipulators. His work addresses the unique challenges of heavy forging manipulators, which require robust, underconstrained gripper mechanisms capable of handling extreme loads while maintaining precise force closure. Li’s most-cited paper, “Optimal Design for Heavy Forging Robot Grippers” (2010, 7 citations), introduces a multi-objective evolutionary genetic algorithm to optimize three distinct gripper mechanisms—short-lever, long-lever, and pushing leveraged designs—advancing the efficiency and reliability of forging automation. His second key contribution, “Calculation of Contact Forces of Large-Scale Heavy Forging Manipulator Grippers” (2009, 6 citations), provides a foundational framework for analyzing force equilibrium in underconstrained systems, distinguishing heavy grippers from dexterous robotic hands. Though his citation counts are modest, Li’s impact lies in pioneering solutions for an underexplored niche: the intersection of heavy machinery and robotic precision. His work has direct applications in manufacturing, where optimized gripper design reduces energy consumption and improves safety in forging processes. Li’s achievements highlight his role in bridging theoretical mechanics with practical industrial robotics, offering critical insights for engineers tackling large-scale automation challenges.
Research Focus
Key Achievements
Top Papers
- 1Optimal Design for Heavy Forging Robot Grippers7 citations · 2010
- 2