Papers
2
Total Citations
12
H-Index
2
About
Xudong Luo is a researcher whose work bridges advanced manufacturing and robotics, with a particular focus on precision machining and automated inspection systems. His primary research areas include robotic belt grinding, residual stress analysis, and the development of specialized robotic platforms for industrial applications. Luo’s most-cited paper, "Analysis of abrasive belt wear effect on residual stress distribution in robotic belt grinding of GH4169" (2024, 10 citations), represents a significant contribution to understanding how tool degradation impacts material integrity in superalloy processing—critical knowledge for aerospace and high-performance component manufacturing. This work demonstrates his ability to combine experimental analysis with practical implications for process optimization. Earlier in his career, Luo contributed to the design of a wall-climbing robot for large-capacity tank volume testing (2010, 2 citations), addressing safety and efficiency challenges in traditional measurement methods. This project showcased his versatility in creating mechatronic solutions for hazardous environments, employing a four-wheel-drive, permanent magnet adhesion system. While his citation counts are still growing, Luo’s research trajectory—from climbing robots to precision grinding—reflects a commitment to solving real-world industrial problems through innovative engineering. His work continues to influence both manufacturing process control and robotic system design.
Research Focus
Key Achievements
Top Papers
- 1
- 2Design on a Wall-climbing Robot for Test of Large-Capacity Tank Volume2 citations · 2010