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Ultrafast Digital Fabrication of Designable Architectured Liquid Crystalline Elastomer.

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The muscle-like activities of liquid crystalline elastomers (LCE) offer great potential for designing future soft machines. Their motion complexity, however, relies on inflexible and cumbersome mesogen alignment techniques. Here, a… Click to show full abstract

The muscle-like activities of liquid crystalline elastomers (LCE) offer great potential for designing future soft machines. Their motion complexity, however, relies on inflexible and cumbersome mesogen alignment techniques. Here, a digital photocuring method for ultrafast template-free fabrication of LCE artificial muscles capable of designable complex motions is reported. Our method utilizes the intrinsic light attenuation in the through-plane direction to create mesogen alignment for reversible bending action. To turn this simple actuation into complex motions, the principles of muscles are borrowed which realize diverse motions through the cooperative actions of otherwise simple contraction/expansion of individual muscle bundles. Specifically, the spatio-temporal digital light is utilized to design LCE architectures composed of strategically arranged bending modules. As such, LCE capable of highly designable motions can be fabricated within 25 seconds light curing without employing any physical alignment templates, which offers an attractive option towards designing functionally diverse soft machines. This article is protected by copyright. All rights reserved.

Keywords: ultrafast digital; liquid crystalline; fabrication designable; digital fabrication; crystalline

Journal Title: Advanced materials
Year Published: 2021

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