Literature DB >> 29924697

Laser Cutting as a Rapid Method for Fabricating Thin Soft Pneumatic Actuators and Robots.

Amir Ali Amiri Moghadam1,2, Seyedhamidreza Alaie1,2, Suborna Deb Nath1, Mahdie Aghasizade Shaarbaf1, James K Min1,2, Simon Dunham1,2, Bobak Mosadegh1,2.   

Abstract

Pneumatically actuated soft robots address many challenges with interfacing with delicate objects, but these actuators/robots are still bulky and require many hours to fabricate, limiting their widespread use. This article reports a novel design and manufacturing method for ultrathin soft robots and actuators (∼70 μm) using a laser-cutting machine that cuts/welds sheets of thermoplastic polyurethane (TPU) from a 2D CAD drawing. Using this method, five different soft actuators (e.g., bending, rotating, contracting) are designed, fabricated, and characterized with both planar and nonplanar motions. Furthermore, we show how stacking multiple sheets of TPU enables rapid fabrication of multifunctional actuators. Finally, a portable four-arm swimming robot is designed and fabricated without any assembly steps. This rapid fabrication method enables soft robots to go from concept to operational within minutes, and creates a new subclass of soft robots suitable for applications requiring a robot to be ultrathin, lightweight, and/or fit within small volumes.

Entities:  

Keywords:  laser cutter; rapid fabrication; soft robotics; thermoplastic polyurethane; thin pneumatic actuators

Mesh:

Substances:

Year:  2018        PMID: 29924697      PMCID: PMC6094352          DOI: 10.1089/soro.2017.0069

Source DB:  PubMed          Journal:  Soft Robot        ISSN: 2169-5172            Impact factor:   8.071


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2.  Rapid Design and Analysis of Microtube Pneumatic Actuators Using Line-Segment and Multi-Segment Euler-Bernoulli Beam Models.

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5.  Physics-Informed Modeling and Control of Multi-Actuator Soft Catheter Robots.

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6.  Branching Vine Robots for Unmapped Environments.

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7.  Design of a Sensitive Balloon Sensor for Safe Human-Robot Interaction.

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