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Shape-programmable liquid crystal elastomer structures with arbitrary three-dimensional director fields and geometries
by
Hu, Wenqi
, Guo, Yubing
, Khan, Muhammad Turab Ali
, Zhang, Jiachen
, Sitti, Metin
in
142/126
/ 147/135
/ 3-D printers
/ 639/301/1005/1006
/ 639/301/923/919
/ Actuation
/ Automation
/ Biomedical engineering
/ Crystal structure
/ Elastomers
/ Engineering
/ Humanities and Social Sciences
/ Liquid crystals
/ Manufacturing engineering
/ Morphing
/ multidisciplinary
/ Optics
/ Pixels
/ Polymerization
/ Robotics
/ Science
/ Science (multidisciplinary)
/ Spatial discrimination
/ Spatial resolution
2021
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Shape-programmable liquid crystal elastomer structures with arbitrary three-dimensional director fields and geometries
by
Hu, Wenqi
, Guo, Yubing
, Khan, Muhammad Turab Ali
, Zhang, Jiachen
, Sitti, Metin
in
142/126
/ 147/135
/ 3-D printers
/ 639/301/1005/1006
/ 639/301/923/919
/ Actuation
/ Automation
/ Biomedical engineering
/ Crystal structure
/ Elastomers
/ Engineering
/ Humanities and Social Sciences
/ Liquid crystals
/ Manufacturing engineering
/ Morphing
/ multidisciplinary
/ Optics
/ Pixels
/ Polymerization
/ Robotics
/ Science
/ Science (multidisciplinary)
/ Spatial discrimination
/ Spatial resolution
2021
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Shape-programmable liquid crystal elastomer structures with arbitrary three-dimensional director fields and geometries
by
Hu, Wenqi
, Guo, Yubing
, Khan, Muhammad Turab Ali
, Zhang, Jiachen
, Sitti, Metin
in
142/126
/ 147/135
/ 3-D printers
/ 639/301/1005/1006
/ 639/301/923/919
/ Actuation
/ Automation
/ Biomedical engineering
/ Crystal structure
/ Elastomers
/ Engineering
/ Humanities and Social Sciences
/ Liquid crystals
/ Manufacturing engineering
/ Morphing
/ multidisciplinary
/ Optics
/ Pixels
/ Polymerization
/ Robotics
/ Science
/ Science (multidisciplinary)
/ Spatial discrimination
/ Spatial resolution
2021
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Shape-programmable liquid crystal elastomer structures with arbitrary three-dimensional director fields and geometries
Journal Article
Shape-programmable liquid crystal elastomer structures with arbitrary three-dimensional director fields and geometries
2021
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Overview
Liquid crystal elastomers exhibit large reversible strain and programmable shape transformations, enabling various applications in soft robotics, dynamic optics, and programmable origami and kirigami. The morphing modes of these materials depend on both their geometries and director fields. In two dimensions, a pixel-by-pixel design has been accomplished to attain more flexibility over the spatial resolution of the liquid crystal response. Here we generalize this idea in two steps. First, we create independent, cubic light-responsive voxels, each with a predefined director field orientation. Second, these voxels are in turn assembled to form lines, grids, or skeletal structures that would be rather difficult to obtain from an initially connected material sample. In this way, the orientation of the director fields can be made to vary at voxel resolution to allow for programmable optically- or thermally-triggered anisotropic or heterogeneous material responses and morphology changes in three dimensions that would be impossible or hard to implement otherwise.
Pre-patterning director fields into liquid crystal elastomers enables programmed morphing upon actuation. Guo et al. realize 3D skeletal assemblies with previously non-achievable director fields and morphing modes.
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