Papers
1
Total Citations
2
H-Index
1
About
Zhongdi She is a rising researcher in precision manufacturing, whose work focuses on the intricate mechanics of material removal and surface formation in advanced polishing processes. Her key research areas include robotic polishing, single-crystal silicon processing, and the influence of strain rate on machining outcomes. In her most-cited paper, "Mechanisms of strain rate effect on the material removal and surface formation of single-crystal silicon in robotic polishing" (2025), She provides a foundational analysis of how varying strain rates alter the brittle-to-ductile transition and subsurface damage during polishing—critical insights for achieving defect-free surfaces in semiconductor and optics applications. Though early in her career, with this work already garnering 2 citations, her contributions are notable for bridging fundamental materials science with practical robotic automation. She is establishing herself as a key voice in understanding the dynamic behavior of hard-brittle materials under precision machining, offering pathways to improve efficiency and quality in next-generation manufacturing. Her research holds promise for industries demanding ultra-smooth surfaces, from microelectronics to high-performance optics.
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Top Papers
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