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      KCI등재

      형상적응형 파지와 케이징 파지가 가능한 부족구동 기반 로봇 의수 메커니즘 개발 = Development of Under-actuated Robotic Hand Mechanism for Self-adaptive Grip and Caging Grasp

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      https://www.riss.kr/link?id=A108380140

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      다국어 초록 (Multilingual Abstract)

      This paper presents a simple and robust under-actuated robotic finger mechanism that enables self-adaptive grip, fingertip pinch, and caging grasp functions. In order to perform daily activities using hands, the fingers should be able to perform adapt...

      This paper presents a simple and robust under-actuated robotic finger mechanism that enables self-adaptive grip, fingertip pinch, and caging grasp functions. In order to perform daily activities using hands, the fingers should be able to perform adaptive gripping and pinching motion, and the caging grasp function is required to realize natural gripping motions and improve grip reliability. However, general commercial prosthetic hands cannot implement all three functions because they use under-actuation mechanism and simple mechanical structure to achieve light-weight and high robustness characteristic. In this paper, new mechanism is proposed that maintains structural simplicity and implements all the three finger functions with simple one degree-of-freedom control through a combination of a four-bar linkage mechanism and a wire-driven mechanism. The basic structure and operating principle of the proposed finger mechanism were explained, and simulation and experiments using the prototype were conducted to verify the gripping performance of the proposed finger mechanism.

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      참고문헌 (Reference) 논문관계도

      1 D. Yoon, "Underactuated finger mechanism for natural motion and self-adaptive grasping towards bionic partial hand" 2016

      2 A. M. Dollar, "The Human Hand as an Inspiration for Robot Hand Development, vol. 95" Springer International Publishing 201-216, 2014

      3 Thomas Feix, "The GRASP Taxonomy of Human Grasp Types" Institute of Electrical and Electronics Engineers (IEEE) 46 (46): 66-77, 2016

      4 G. Palli, "The DEXMART hand: Mechatronic design and experimental evaluation of synergy-based control for human-like grasping" SAGE Publications 33 (33): 799-824, 2014

      5 WENZENG ZHANG, "TWO-DOF COUPLED AND SELF-ADAPTIVE (COSA) FINGER: A NOVEL UNDER-ACTUATED MECHANISM" World Scientific Pub Co Pte Lt 10 (10): 1330001-, 2013

      6 Pierluigi Rea, "On the Design of Underactuated Finger Mechanisms for Robotic Hands" InTech 2011

      7 M. R. Cutkosky, "On grasp choice, grasp models, and the design of h ands f or m anufacturing t asks" 5 (5): 269-279, 1989

      8 Joseph T. Belter, "Mechanical design and performance specifications of anthropomorphic prosthetic hands: A review" Journal of Rehabilitation Research & Development 50 (50): 599-, 2013

      9 S. Song, "Grasp analysis and a self-adaptive robotic hand with a novel parallel-coupled switchable mode" 530-535, 2016

      10 D. Hirano, "Design of underactuated hand for caging-based grasping of free-flying object" 436-442, 2013

      1 D. Yoon, "Underactuated finger mechanism for natural motion and self-adaptive grasping towards bionic partial hand" 2016

      2 A. M. Dollar, "The Human Hand as an Inspiration for Robot Hand Development, vol. 95" Springer International Publishing 201-216, 2014

      3 Thomas Feix, "The GRASP Taxonomy of Human Grasp Types" Institute of Electrical and Electronics Engineers (IEEE) 46 (46): 66-77, 2016

      4 G. Palli, "The DEXMART hand: Mechatronic design and experimental evaluation of synergy-based control for human-like grasping" SAGE Publications 33 (33): 799-824, 2014

      5 WENZENG ZHANG, "TWO-DOF COUPLED AND SELF-ADAPTIVE (COSA) FINGER: A NOVEL UNDER-ACTUATED MECHANISM" World Scientific Pub Co Pte Lt 10 (10): 1330001-, 2013

      6 Pierluigi Rea, "On the Design of Underactuated Finger Mechanisms for Robotic Hands" InTech 2011

      7 M. R. Cutkosky, "On grasp choice, grasp models, and the design of h ands f or m anufacturing t asks" 5 (5): 269-279, 1989

      8 Joseph T. Belter, "Mechanical design and performance specifications of anthropomorphic prosthetic hands: A review" Journal of Rehabilitation Research & Development 50 (50): 599-, 2013

      9 S. Song, "Grasp analysis and a self-adaptive robotic hand with a novel parallel-coupled switchable mode" 530-535, 2016

      10 D. Hirano, "Design of underactuated hand for caging-based grasping of free-flying object" 436-442, 2013

      11 Erika Nathalia Gama Melo, "Anthropomorphic robotic hands: a review" Universidad del Norte 32 (32): 279-313, 2014

      12 B. Rubinger, "A novel robotic hand-SARAH for operations on the International Space Station" 2002

      13 Raphael Rätz, "A Novel Clinical-Driven Design for Robotic Hand Rehabilitation: Combining Sensory Training, Effortless Setup, and Large Range of Motion in a Palmar Device" Frontiers Media SA 15 : 2021

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