Chenming Zhao
Papers
2
Total Citations
20
H-Index
2
About
Chenming Zhao is a researcher focused on precision vibration control for advanced manufacturing systems, particularly in aerospace assembly environments. His work addresses a critical challenge in robotic drilling systems: how to maintain accuracy when ambient vibrations from nearby equipment or heavy vehicles threaten machining precision. Zhao’s major contributions lie in developing innovative semi-active and active vibration control mechanisms. His most cited paper (2021, 16 citations) introduces a variable parameter method based on quasi-zero stiffness (QZS) technology, achieving superior low-frequency vibration isolation by combining variable stiffness and damping in a compact mechanism. He further advanced the field with an active control approach using magnetorheological dampers (2022, 4 citations), enabling real-time adaptation to changing vibration conditions. These methods directly improve dynamic machining error and chatter suppression in robotic drilling systems used in aircraft assembly. Zhao’s work bridges theoretical mechanics and practical manufacturing, offering scalable solutions for high-precision industrial robotics. His research is particularly notable for integrating QZS principles with semi-active control, a novel combination that enhances both isolation performance and system robustness.
Research Focus
Key Achievements
Top Papers
- 1
- 2An Active Control with a Magnetorheological Damper for Ambient Vibration4 citations · 2022