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A Variable Stiffness Soft Gripper Based on Rotational Layer Jamming

delete2024-02-01
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PRE
AI
M
Mingzhu Zhu *
M
Mengying Xie
Y
Yoshiki Mori
J
Junyue Dai
S
Sadao Kawamura
谢岳 (Xiaokui Yue)
DOI:10.1089/soro.2022.0232delete
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Abstract

Abstract

En 中文
This article presents the design and fabrication of a variable stiffness soft gripper based on layer jamming. Traditional layer jamming units have some limitations, such as complicated multistep fabrication, difficulties in system integration, and diminishing in stiffen effect. In this article, a variable stiffness soft gripper is proposed based on the rotational jamming layers to reduce the slippery phenomenon between layers. To fabricate the proposed complex design, a two-step fabrication method is presented. First, multimaterial 3D printing is applied to directly print out the soft finger body with jamming layers. Second, mold casting is used to fabricate the outer vacuum chamber. The proposed gripper contains a main framework and three identical variable stiffness soft fingers. To demonstrate the effectiveness of the design, the soft gripper is mounted on a robotic arm to test its ability of grasping heavy objects while following complex grasping trajectory. The gripper can successfully grasp an object up to 360 g. Grasping robustness of the proposed gripper can be guaranteed when the robotic arm is moving at acceleration up to 7 m/s2. The results prove that the proposed design of the soft gripper can improve the grippers grasping robustness during high-speed movement.
Keywords:
multimaterial 3D printing
variable stiffness
high-speed motion
soft robotics
rotational layer jamming

Journal

Soft Robotics cover
Soft Robotics
IF:
6.1
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760
Citations:
6.3K

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tianjin university
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zhejiang university of technology
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Northwestern Polytechnical University
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ritsumeikan university
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