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Multimaterial 4D Printing with Tailorable Shape Memory Polymers

Scientific Reports · 2016 · Vol. 6(1) · pp. 31110–31110
Qi GeAmir Hosein SakhaeiHowon LeeConner K. DunnNicholas X. FangMartin L. Dunn

Abstract

We present a new 4D printing approach that can create high resolution (up to a few microns), multimaterial shape memory polymer (SMP) architectures. The approach is based on high resolution projection microstereolithography (PμSL) and uses a family of photo-curable methacrylate based copolymer networks. We designed the constituents and compositions to exhibit desired thermomechanical behavior (including rubbery modulus, glass transition temperature and failure strain which is more than 300% and larger than any existing printable materials) to enable controlled shape memory behavior. We used a high resolution, high contrast digital micro display to ensure high resolution of photo-curing methacrylate based SMPs that requires higher exposure energy than more common acrylate based polymers. An automated material exchange process enables the manufacture of 3D composite architectures from multiple photo-curable SMPs. In order to understand the behavior of the 3D composite microarchitectures, we carry out high fidelity computational simulations of their complex nonlinear, time-dependent behavior and study important design considerations including local deformation, shape fixity and free recovery rate. Simulations are in good agreement with experiments for a series of single and multimaterial components and can be used to facilitate the design of SMP 3D structures.

Polymer composites and self-healingAdvanced Materials and MechanicsAdditive Manufacturing and 3D Printing TechnologiesMaterials scienceShape-memory polymerMethacrylatePolymerAcrylate3D printingShape-memory alloyGlass transitionComposite materialCopolymer

Funding

  • National Research Foundation
  • National Research Foundation Singapore
  • Singapore University of Technology and Design
  • Digital Manufacturing and Design Centre, Singapore University of Technology and Design
Citations
1,085
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References
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Advanced Functional Materials · 2014 · 1,531 citations
<i>The Physics of Rubber Elasticity</i>
Physics Today · 1959 · 3,797 citations
Projection micro-stereolithography using digital micro-mirror dynamic mask
Sensors and Actuators A Physical · 2005 · 854 citations
Biomimetic 4D printing
Nature Materials · 2016 · 2,877 citations
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