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Processing of Self-healing Polymers for Soft Robotics.

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Soft robots are, due to their softness, inherently safe and adapt well to unstructured environments. However, they are prone to various damage types. Self-healing polymers address this vulnerability. Self-healing soft… Click to show full abstract

Soft robots are, due to their softness, inherently safe and adapt well to unstructured environments. However, they are prone to various damage types. Self-healing polymers address this vulnerability. Self-healing soft robots can recover completely from macroscopic damage, extending their lifetime. For developing healable soft robots, various formative and additive manufacturing methods have been exploited to shape self-healing polymers into complex structures. Additionally, several novel manufacturing techniques, noted as (re)assembly binding techniques that are specific to self-healing polymers, have been created. This paper reviews the wide variety of processing techniques of self-healing polymers for robotics available in literature, and thoroughly discusses limitations and opportunities. Based on defined requirements for soft robots, these techniques are critically compared and validated. A strong focus is drawn to the reversible covalent and (physico)chemical cross-links present in the self-healing polymers that do not only endow healability to the resulting soft robotic components, but are also beneficial in many manufacturing techniques. They solve current obstacles in soft robots, including the formation of robust multi-material parts, recyclability and stress relaxation. This review bridges two promising research fields, and guides the reader towards selecting a suitable processing method based on a self-healing polymer and the intended soft roboticsĀ application. This article is protected by copyright. All rights reserved.

Keywords: soft robots; healing polymers; soft robotics; robotics; self healing

Journal Title: Advanced materials
Year Published: 2021

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