Mohamed Rizon Juhari
Papers
3
Total Citations
33
H-Index
3
About
Mohamed Rizon Juhari is a researcher whose work lies at the intersection of mechanical engineering, biomedical devices, and computational modeling. His primary research focus is on Pneumatic Artificial Muscles (PAMs)—soft, compliant actuators that mimic natural muscle movement—and their numerical simulation using the Finite Element (FE) Method. Juhari’s major contributions include pioneering the application of FE modeling to understand the force-generation behavior of PAMs, providing a foundation for designing more efficient and controllable actuators. His most cited paper, "An Application of Finite Element Modelling to Pneumatic Artificial Muscle" (2005, 18 citations), offers a comprehensive overview of PAMs and demonstrates how FE analysis can predict their mechanical response, a critical step for their use in robotics and prosthetics. He further explored the translational potential of this technology in "Pneumatic Artificial Muscle in Biomedical Applications" (2007, 11 citations), highlighting how these soft actuators could revolutionize assistive devices and rehabilitation tools. Though his citation counts are modest, Juhari’s work is notable for its early and systematic approach to a niche yet growing field, laying essential groundwork for researchers developing bio-inspired, safe, and human-friendly actuation systems.
Research Focus
Key Achievements
Top Papers
- 1An Application of Finite Element Modelling to Pneumatic Artificial Muscle18 citations · 2005
- 2Pneumatic Artificial Muscle in Biomedical Applications11 citations · 2007
- 3Finite Element modelling of Pneumatic Artificial Muscle4 citations · 2005