Vacuum Thermoforming of Optically Switchable Liquid Crystalline Elastomer Spherical Actuators

Author:

Yue Lansong1,Ambergen Erik P. J.1,Lugger Sean J. D.1ORCID,Peeketi Akhil Reddy23ORCID,Annabattula Ratna Kumar23ORCID,Schenning Albert P. H. J.145ORCID,Debije Michael G.145ORCID

Affiliation:

1. Stimuli‐Responsive Functional Materials and Devices (SFD) Department of Chemical Engineering and Chemistry Eindhoven University of Technology (TU/e) Groene Loper 3 Eindhoven 5612 AE The Netherlands

2. Center for Soft and Biological Matter Indian Institute of Technology Madras Chennai 600036 India

3. Stimuli‐Responsive Systems Lab Department of Mechanical Engineering Indian Institute of Technology Madras Chennai 600036 India

4. Institute for Complex Molecular Systems (ICMS) Eindhoven University of Technology (TU/e) Groene Loper 3 Eindhoven 5612 AE The Netherlands

5. Interactive Polymer Materials (IPM) Eindhoven University of Technology (TU/e) Groene Loper 3 Eindhoven 5612 AE The Netherlands

Abstract

AbstractLiquid crystal elastomer (LCE) actuators are generally limited in shape, size, and quantity by the need for aligning via stretching and fixing via photopolymerizing. A thermoplastic LCE is presented that may be vacuum thermoformed into centimeter‐sized hemispheres. The scalable industrial process induces LCE alignment without requiring postfixing. The hemispheres display remarkable properties, actuating with strains around 20% and transitioning from opaque and scattering to highly translucent upon heating: both the physical and optical effects are fully reversible. Simulations reveal the LCE experiences biaxial strains during processing, the magnitude varying as a function of location on the hemisphere: the resulting alignment describing the hemisphere actuation well. The thermoplastic LCE hemispheres may be combined to form complete spheres by simply heating the joint. The hemisphere can also be physically deformed into a ball which can then unfold back into the hemisphere again. By doping the hemispheres with photoswitches, fluorescent or photothermal dyes, devices are formed for light collection and redistribution, addressable water containers that may pour at will, and light‐responsive surfing devices. This is the first example of an LCE amenable to high‐volume industrial vacuum thermoforming which may lead to intricate 3D‐shaped actuators with new functional properties.

Funder

Horizon 2020 Framework Programme

Publisher

Wiley

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