Emily Yik Kwan Chan, Xiancheng Yu, Chen Qin, Mazdak Ghajari
Engineering Applications of Artificial Intelligence, 2025
Journal article · 2025
Shehara Perera, Saeed Bornassi, Mazdak Ghajari, Thrishantha Nanayakkara
Scientific Reports, 2025
This paper investigates how a new angle-dependent damper design can help a robot to reduce collision forces. We designed a fluid-viscous angle-dependent damper by smoothly changing the clearance between the stationary and moving parts. Analytical and numerical simulation-based predictions were experimentally tested. Analytical modelling shows that angle-dependent damping has a [Formula: see text] reduction in peak forces when compared to constant damping. Numerical simulations show that variable-gap dampers can change damping by [Formula: see text] during a [Formula: see text] gap change. The experimental findings confirm the analytical predictions by reducing collision force by up to [Formula: see text]. These findings suggest that the angle-dependent variable damping solution could be used for robots that experience collisions such as industrial robotic manipulators, legged robots, perching robots, or robots that catch moving objects.
@article{perera-2025-joints-with-angle-dependent,
title={Joints with angle dependent damping can help to reduce impact forces in robots},
author={Shehara Perera and Saeed Bornassi and Mazdak Ghajari and Thrishantha Nanayakkara},
journal={Scientific Reports},
year={2025},
doi={10.1038/s41598-025-13055-7}
} Related
Emily Yik Kwan Chan, Xiancheng Yu, Chen Qin, Mazdak Ghajari
Engineering Applications of Artificial Intelligence, 2025
Claire Baker, Zhuoxiaoyue Wang, Lucas Low, Emily Ashworth, Mark Wilson, David Sharp, Nils Lübbe, Shiyang Meng, Mazdak Ghajari
Traffic Safety Research, 2026
Emily Yik Kwan Chan, Eleni Koumantou, Lucas Low, Isaac Siy, Chris M. Jones, Kieran Austin, Mike Loosemore, Stuart J. McDonald, Mazdak Ghajari
medRxiv, 2026
Vahid Darvishi, Emily Yik Kwan Chan, Harry Duckworth, Thomas D. Parker, David J Sharp, Mazdak Ghajari
bioRxiv (Cold Spring Harbor Laboratory), 2026
Vahid Darvishi, Martina Del Giovane, Michael David, Magdalena A. Kolanko, Anastasia Gontsarova, Paresh Malhotra, C. Melody Carswell, David J Sharp, Mazdak Ghajari
bioRxiv (Cold Spring Harbor Laboratory), 2026
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