Printing ferromagnetic domains for untethered fast-transforming soft materials
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Summary
3D printing of programmed ferromagnetic domains in soft materials that enable fast transformations between complex 3D shapes via magnetic actuation are reported, enabling a set of previously inaccessible modes of transformation, such as remotely controlled auxetic behaviours of mechanical metamaterials with negative Poisson’s ratios.
- Type
- article
- Published
- 2018-06-01
- Cited by
- 1,907
- References
- 44
- OpenAlex
- https://openalex.org/W2805926569
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:49183999
Keywords
Materials science, Metamaterial, Auxetics, Soft robotics, Ferromagnetism
References
- Biomimetic 4D printing.
- Bio-inspired Polymer Composite Actuator and Generator Driven by Water Gradients
- Using origami design principles to fold reprogrammable mechanical metamaterials
- Dynamic cell behavior on shape memory polymer substrates.
- 4D Printing with Mechanically Robust, Thermally Actuating Hydrogels.
- Force and stroke of a hydrogel actuator
- Programming Reversibly Self‐Folding Origami with Micropatterned Photo‐Crosslinkable Polymer Trilayers
- 3D Soft Metamaterials with Negative Poisson's Ratio
- Designing Responsive Buckled Surfaces by Halftone Gel Lithography
- An Integrated Microrobotic Platform for On‐Demand, Targeted Therapeutic Interventions
- Assembly of micro/nanomaterials into complex, three-dimensional architectures by compressive buckling
- Polymer artificial muscles
- A mechanically driven form of Kirigami as a route to 3D mesostructures in micro/nanomembranes
- 3D Printing of Shape Memory Polymers for Flexible Electronic Devices
- Programming magnetic anisotropy in polymeric microactuators.
- Direct Ink Writing of 3D Functional Materials
- Magnetic self-assembly of three-dimensional surfaces from planar sheets.
- Multimaterial magnetically assisted 3D printing of composite materials
- Smart three-dimensional lightweight structure triggered from a thin composite sheet via 3D printing technique
- Actuating Soft Matter with Magnetic Torque
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- Nanomaterials Fabrication by Interfacial Templating and Capillary Engineering in Multiphasic Liquids
- 3D Printing of Functional Assemblies with Integrated Polymer-Bonded Magnets Demonstrated with a Prototype of a Rotary Blood Pump
- An Overview of Novel Actuators for Soft Robotics
- Photolithographically Patterned Hydrogels with Programmed Deformations.
- Single Janus iodine-doped rGO/rGO film with multi-responsive actuation and high capacitance for smart integrated electronics
- Reconfigurable shape-morphing dielectric elastomers using spatially varying electric fields
- Magnetization-induced shape transformations in flexible ferromagnetic rings
- Mechanics of hard-magnetic soft materials
- Untethered microbot powered by giant magnetoelastic strain
- Snap-Buckling Motivated Controllable Jumping of Thermo-Responsive Hydrogel Bilayers.
- Mechanical properties of sandwich composites with 3d-printed auxetic and non-auxetic lattice cores under low velocity impact
- Advances in 4D Printing: Materials and Applications
- Thermo- and photo-responsive composite hydrogels with programmed deformations.
- Molecularly‐Engineered, 4D‐Printed Liquid Crystal Elastomer Actuators
- Lanthanum phosphate/chitosan scaffolds enhance cytocompatibility and osteogenic efficiency via the Wnt/β-catenin pathway
- Field responsive mechanical metamaterials
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