Zhanfeng Chen
Papers
4
Total Citations
32
H-Index
3
About
Zhanfeng Chen is a precision engineering researcher whose work focuses on the real-time measurement and monitoring of spherical joints—critical components in parallel manipulators, industrial robots, and medical equipment. His core contributions lie in developing novel capacitive sensing technologies to detect micro-clearances and rotational angles in these joints, addressing key challenges in motion error compensation and system accuracy. Chen’s most cited paper, “An Improved Capacitive Sensor for Detecting the Micro-Clearance of Spherical Joints” (2019, 13 citations), introduces a refined sensor design that enhances detection reliability. He further advanced the field with “A Novel Approach for Detecting Rotational Angles of a Precision Spherical Joint Based on a Capacitive Sensor” (2019, 10 citations) and “A Novel Method for the Micro-Clearance Measurement of a Precision Spherical Joint Based on a Spherical Differential Capacitive Sensor” (2018, 7 citations), which propose innovative measurement methodologies. His work “Error Analysis of a Spherical Capacitive Sensor for the Micro-Clearance Detection in Spherical Joints” (2020) systematically examines sensor accuracy, underscoring his commitment to precision. With a cumulative citation count exceeding 30, Chen’s research is steadily gaining recognition for its practical impact on improving the performance and reliability of mechanical systems.
Research Focus
Key Achievements
Top Papers
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