Papers
2
Total Citations
12
H-Index
2
About
Kunpeng Wang is a researcher specializing in the mechanical design and dynamic performance of robotic systems operating in extreme environments, with a focus on downhole and underwater applications. His work addresses critical challenges in sealing technology and locomotion for robots deployed in high-temperature, high-pressure (HTHP) conditions and deep-sea settings. Wang’s major contribution lies in advancing the analysis of dynamic sealing performance for telescopic structures in downhole robots, where he introduced a coupled HTHP method that simulates temperature and pressure simultaneously—a significant improvement over traditional sequential loading approaches. This innovation, detailed in his most-cited paper (8 citations), provides a more realistic evaluation of seal reliability under harsh operational conditions. Additionally, his research on underwater legged robots (4 citations) explores joint torque dynamics during single movement cycles, aiming to enhance stability and precision for deep-sea exploration tasks. By addressing these niche yet impactful problems, Wang’s work supports the development of robust robotics for oil and gas extraction, subsea inspection, and environmental monitoring. His findings offer practical insights for engineers designing resilient systems in challenging environments, contributing to the broader field of extreme-environment robotics.
Research Focus
Key Achievements
Top Papers
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