Xuda Qin
Papers
4
Total Citations
48
H-Index
4
About
Xuda Qin is a leading researcher in advanced manufacturing, specializing in hybrid robotic machining and helical milling for aerospace applications. His work addresses critical challenges in machining high-performance materials, particularly carbon fiber-reinforced polymers (CFRP) and other composites, where precision and quality are paramount. Qin's major contributions include pioneering analyses of cutting force and chatter stability in parallel kinematic machine (PKM)-based helical milling, a process that reduces temperature and cutting forces while improving hole quality. His 2020 paper on this topic has garnered 26 citations, underscoring its influence. He has also developed innovative methods for vibration response analysis and deformation compensation, enabling hybrid robots to achieve higher accuracy in trimming and hole-making tasks. Notably, his 2024 work on surface topography prediction, accounting for dynamic end-effector displacement, represents a novel advancement in machining quality control. With over 48 citations across his key publications, Qin's research directly impacts the aerospace industry's demand for flexible, high-precision automation. His achievements include pioneering error compensation strategies for helical milling, making him a pivotal figure in the evolution of intelligent robotic manufacturing.
Research Focus
Key Achievements
Top Papers
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