Humanoid design of mechanical fingers using a motion coupling and shape-adaptive linkage mechanism
Author:
Publisher
Springer Science and Business Media LLC
Subject
Bioengineering,Biophysics,Biotechnology
Link
http://link.springer.com/article/10.1007/s42235-017-0007-3/fulltext.html
Reference32 articles.
1. Li J F, Zu L, Zhong G L, He M C, Yin H B, Tan Y G. Stiffness characteristics of soft finger with embedded SMA fibers. Composite Structures, 2017, 160, 758–764.
2. Price A D, Jnifene A, Naguib H E. Design and control of a shape memory alloy based dexterous robot hand. Smart Materials and Structures, 2007, 16, 1401–1414.
3. Grebenstein M, Chalon M, Friedl W, Haddadin S, Wimbock T, Hirzinger G, Siegwart R. The hand of the DLR hand arm system: Designed for interaction. International Journal of Robotics Research, 2012, 31, 1531–1555.
4. Matrone G C, Cipriani C, Secco E L, Magenes G, Carrozza M C. Principal components analysis based control of a multi-DoF underactuated prosthetic hand. Journal of NeuroEngineering and Rehabilitation, 2010, 7, 16.
5. Zhang Y, Duan X G, Zhong G L, Deng H. Initial slip detection and its application in biomimetic robotic hands. IEEE Sensors Journal, 2016, 16, 7073–7080.
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