Papers
1
Total Citations
6
H-Index
1
About
Man Ge’s research centers on advanced manufacturing and robotic machining, with a particular focus on precision surface processing for aerospace components. His major contribution lies in developing computational methods for robotic grinding of aero-engine blades, a critical yet challenging task due to complex geometries and stringent surface quality requirements. In his most cited work, Ge introduced a novel partition segment grinding path method, where blade contours are fitted using spline curves and segmented based on curvature. He established a mathematical model for continuous precession grinding and developed algorithms to generate optimized tool paths for robot groups, enabling more efficient and accurate automated finishing. This work, published in 2019, has accumulated 6 citations, reflecting its relevance to researchers in intelligent manufacturing and robotic material removal. Ge’s research bridges computational geometry and industrial robotics, offering practical solutions for high-value aerospace manufacturing. His contributions are particularly notable for addressing the gap between theoretical path planning and real-world robotic implementation, making his work a valuable reference for engineers and researchers working on automated surface finishing of complex freeform parts.
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