The human hand is one of the main limbs in maintaining daily life activities. It functions as an interface between the outside world and the brain, such as in positioning, moving, touching, feeling and grasping objects. It can perform fine motor skills precisely, thanks to its high degree of freedom and its complex and flexible structure. This study proposes a dynamic human hand model with 15 degrees of freedom for rehabilitation, reflecting the aforesaid abilities with significant accuracy. For the finger biomechanics design, finger joint lengths, angular workspace ranges and joint torques were determined experimentally. Moreover, joint torques during finger extension/flexion movements were calculated through SolidWorks motion analysis and Ansys static structural analysis. To identify finger joint relationships, the workspaces for all fingers were computed and visualized during flexion/extension movements. Unlike the literature, the hand model includes a biomechanics computational analysis approach that makes it easy to adapt to hand models. The search demonstrates that using optimum comparative data for design parameters and finger workspace ranges yields a cost-effective result for manufacturing a precise hand robot.
Article navigation
26 January 2022
Research Article|
March 30 2022
Developing finger joint biomechanics through a dynamic hand model
Vedat Yegin;
Department of Mechanical Engineering, Iskenderun Technical University, Hatay, Turkey
(corresponding author: vedat.yegin@iste.edu.tr)
Search for other works by this author on:
Mustafa Onat
Mustafa Onat
Department of Electrical and Electronics Engineering, Marmara University, Istanbul, Turkey
Search for other works by this author on:
(corresponding author: vedat.yegin@iste.edu.tr)
Publisher: Emerald Publishing
Received:
December 17 2021
Accepted:
February 28 2022
Online ISSN: 2046-0155
Print ISSN: 2046-0147
ICE Publishing: All rights reserved
2022
Emerging Materials Research (2022) 11 (2): 198–208.
Article history
Received:
December 17 2021
Accepted:
February 28 2022
Citation
Yegin V, Onat M (2022), "Developing finger joint biomechanics through a dynamic hand model". Emerging Materials Research, Vol. 11 No. 2 pp. 198–208, doi: https://doi.org/10.1680/jemmr.21.00182
Download citation file:
New and popular articles
Suggested Reading
Factors affecting returns to labor and management on U.S. dairy farms
Agricultural Finance Review (November,2001)
Extending domestic activities into collective spaces: an urban design strategy
Archnet-IJAR: International Journal of Architectural Research (December,2024)
Energy sustainability in teaching and outreach initiatives and the contribution to the 2030 Agenda
International Journal of Sustainability in Higher Education (September,2020)
Accelerating tacit knowledge building of client-facing consultants: Can organizations better support these learning processes?
The Learning Organization: An International Journal (May,2016)
Credit access and intensity of borrowing by irrigated rice farmers in Ghana: the role of extension services
Journal of Agribusiness in Developing and Emerging Economies (June,2023)
Related Chapters
Introduction to the Volume
Mathematics Outreach: Examples and Impact from Across the Globe
From Croesus to Computers: Logic of Perverse Instantiation
The Ethics Gap in the Engineering of the Future: Moral Challenges for the Technology of Tomorrow
Recommended for you
These recommendations are informed by your reading behaviors and indicated interests.
