Literature DB >> 35108023

3D printing of resilient biogels for omnidirectional and exteroceptive soft actuators.

A Heiden1,2, D Preninger1,2, L Lehner1,2, M Baumgartner1,2,3, M Drack1,2, E Woritzka1,2, D Schiller1,2, R Gerstmayr2,3, F Hartmann1,2, M Kaltenbrunner1,2.   

Abstract

Soft robotics greatly benefits from nature as a source of inspiration, introducing innate means of safe interaction between robotic appliances and living organisms. In contrast, the materials involved are often nonbiodegradable or stem from nonrenewable resources, contributing to an ever-growing environmental footprint. Furthermore, conventional manufacturing methods, such as mold casting, are not suitable for replicating or imitating the complexity of nature's creations. Consequently, the inclusion of sustainability concepts alongside the development of new fabrication procedures is required. We report a customized 3D-printing process based on fused deposition modeling, printing a fully biodegradable gelatin-based hydrogel (biogel) ink into dimensionally stable, complex objects. This process enables fast and cost-effective prototyping of resilient, soft robotic applications from gels that stretch to six times their original length, as well as an accessible recycling procedure with zero waste. We present printed pneumatic actuators performing omnidirectional movement at fast response times (less than a second), featuring integrated 3D-printed stretchable waveguides, capable of both proprio- and exteroception. These soft devices are endowed with dynamic real-time control capable of automated search-and-wipe routines to detect and remove obstacles. They can be reprinted several times or disposed of hazard-free at the end of their lifetime, potentially unlocking a sustainable future for soft robotics.

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Year:  2022        PMID: 35108023     DOI: 10.1126/scirobotics.abk2119

Source DB:  PubMed          Journal:  Sci Robot        ISSN: 2470-9476


  3 in total

1.  Fluid-driven hydrogel actuators with an origami structure.

Authors:  Zhexin Huang; Cunyue Wei; Lina Dong; Anyang Wang; Hongyi Yao; Zhongwei Guo; Shengli Mi
Journal:  iScience       Date:  2022-06-26

Review 2.  Nanomaterials based on thermosensitive polymer in biomedical field.

Authors:  Yingshu Guo; Li Sun; Yajing Wang; Qianqian Wang; Dan Jing; Shiwei Liu
Journal:  Front Chem       Date:  2022-09-21       Impact factor: 5.545

3.  Necrobotics: Biotic Materials as Ready-to-Use Actuators.

Authors:  Te Faye Yap; Zhen Liu; Anoop Rajappan; Trevor J Shimokusu; Daniel J Preston
Journal:  Adv Sci (Weinh)       Date:  2022-07-25       Impact factor: 17.521

  3 in total

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