4.7 Review

3D Printing of Robotic Soft Grippers: Toward Smart Actuation and Sensing

Journal

ADVANCED MATERIALS TECHNOLOGIES
Volume 7, Issue 11, Pages -

Publisher

WILEY
DOI: 10.1002/admt.202101672

Keywords

additive manufacturing; bioinspired soft grippers; multimaterial; smart materials; soft robotics

Funding

  1. Schaeffler Hub for Advanced Research at NTU, under the ASTAR IAF-ICP Programme [ICP1900093]
  2. Singapore Centre for 3D Printing, Nanyang Technological University, Singapore

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Soft robotic grippers, made of soft materials, can generate motion through elastic deformations. Unlike traditional hard grippers, soft grippers can effectively eliminate shocks caused by hard contact. They are capable of manipulating objects with irregular shapes and different textures and have facilitated the automation of delicate tasks with the help of embedded sensors.
Unlike traditional hard grippers, soft robotic grippers are commonly made of soft materials so that the soft grippers can produce motion via elastic deformations of their compliant components. The advantages of compliance allow soft grippers to effectively eliminate shocks caused by hard contact, which usually occurs when a hard robotic gripper manipulates a hard object. Until now, the soft robotic grippers are able to operate numerous objects with irregular geometries and different textures. Besides, with the help of embedded sensors, soft robotic grippers have facilitated the growing automation of many tasks, which are thought to be far too delicate for robotic manipulation. This paper reviews the advancement in soft robotic grippers. The paper first introduces the actuation technologies followed by the design and fabrication techniques. The use of 3D printing techniques in the fabrication of the soft gripper is also discussed. The Review then highlights the challenges and future outlook in the fabrication of soft grippers and sensors.

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