Development of a coupled tendon-driven 3D multi-joint manipulator (Investigation of tension transfer efficiency, optimal reel arrangement and tip positioning accuracy)
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- HORIGOME Atsushi
- Department of Mechanical and Aerospace Engineering, Tokyo Institute of Technology
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- YAMADA Hiroya
- HIBOT CORPORATION
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- SEN Shin
- Department of Precision Engineering, The University of Tokyo
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- HIROSE Shigeo
- HIBOT CORPORATION
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- ENDO Gen
- School of Engineering, Tokyo Institute of Technology
Bibliographic Information
- Other Title
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- ワイヤ干渉駆動型多関節3次元アームの開発(張力伝達効率,リールの最大密度配置および先端位置精度の検討)
Description
<p>Long-reach robotic manipulators are expected to be used in the space where humans cannot work such as nuclear power plant disaster areas. We suggested a coupled tendon-driven articulated manipulator ‘3D CT-Arm’ and developed a preliminary prototype ‘Mini 3D CT-Arm’ whose arm had 2.4 m length and 0.3 m width. In order to consider developing ‘3D CT-Arm’ deeply, we discussed tension transfer efficiency of a tendon through pulleys, the arrangement of the maximum number of reels in a limited space and the tip positioning accuracy. Through many transfer efficiency experiments, we conclude that tension transfer efficiency of ‘3D CT-Arm’ can reach over 88 % in the worst case. We investigated non-interfering reels’ arrangement in the base by full search in cases of up to 10 reels. In all simulations, V-shaped or W-shaped arrangement can support the most reels in a limited space. Therefore, we conclude this is the most optimal reels’ arrangement. Finally, we carried out the positioning accuracy experiment with ‘Mini 3D CT-Arm’ via motion capture system. Although the tip position had a 2 to 41 mm error between the desired value and the measured value by potentiometer, a 29 to 95 mm error between the desired value and the measured value was measured by motion capture system.</p>
Journal
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- Transactions of the JSME (in Japanese)
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Transactions of the JSME (in Japanese) 83 (848), 16-00270-16-00270, 2017
The Japan Society of Mechanical Engineers
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Details 詳細情報について
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- CRID
- 1390001205516741376
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- NII Article ID
- 130005612148
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- ISSN
- 21879761
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- Text Lang
- ja
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- Data Source
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- JaLC
- Crossref
- CiNii Articles
- OpenAIRE
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- Abstract License Flag
- Disallowed