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A grid-assisted 3D printing method for magnetically driven micro soft robot

Jian Gao, Peng Gao, Weibin Rong, Dongjie Li, Lefeng Wang

Year
2022
Citations
2

Abstract

Abstract The magnetically driven micro soft robot is one of the research hotspots in the field of micro robots. A 3D printing method for manufacturing micro soft robots with the help of auxiliary grids is proposed. The shape flexibility of the micro soft robots manufactured by the micro 3D printing method can be improved, and internal structures composed of different materials inside the micro robots can be printed using this method. The technical details of the grid-assisted 3D printing process are introduced in this article. Micro soft robots with specific patterns were 3D printed, and the deformation and movement capabilities of the robots were verified in magnetically driven motion experiments. The experimental results prove that the grid-assisted 3D printing technology can not only manufacture magnetically driven micro soft robots, but also adjust the internal structure and motion performance of the robots.

Keywords

RobotGrid3D printingFlexibility (engineering)Computer scienceProcess (computing)Mechanical engineeringSoft materialsEngineeringMaterials science

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