Caizhi Zhu
Papers
1
Total Citations
12
H-Index
1
About
Caizhi Zhu is a mechanical engineering researcher whose work focuses on the precision mechanics and dynamic performance of critical components in automation and robotics. His primary research areas include harmonic drive systems, flexible bearing mechanics, and the structural dynamics of transmission elements. Zhu’s most cited paper, “Research on static and dynamics mechanical characteristics of flexible bearing in harmonic reducer” (2020, 12 citations), provides a foundational theoretical model for analyzing contact forces between rolling elements and the outer ring in flexible bearings—a key component in industrial robot joints. This work bridges the gap between static load analysis and dynamic behavior, offering engineers practical insights for improving the durability and accuracy of harmonic reducers. By addressing the complex deformation and stress distribution in flexible bearings, Zhu’s contributions support the advancement of high-precision automation equipment. His research is particularly valuable for students and practitioners in robotics and precision machinery, as it combines rigorous theoretical modeling with real-world application, helping to enhance the reliability of motion control systems in industrial settings.
Research Focus
Key Achievements
Top Papers
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