Scinovex
articleTop 1% cited

Self-folding of polymer sheets using local light absorption

Soft Matter · 2011 · Vol. 8(6) · pp. 1764–1769
Ying LiuJulie K. BoylesJan GenzerMichael D. Dickey

Abstract

This paper demonstrates experimentally and models computationally a novel and simple approach for self-folding of thin sheets of polymer using unfocused light. The sheets are made of optically transparent, pre-strained polystyrene (also known as Shrinky-Dinks) that shrink in-plane if heated uniformly. Black ink patterned on either side of the polymer sheet provides localized absorption of light, which heats the underlying polymer to temperatures above its glass transition. At these temperatures, the predefined inked regions (i.e., hinges) relax and shrink, and thereby cause the planar sheet to fold into a three-dimensional object. Self-folding is therefore achieved in a simple manner without the use of multiple fabrication steps and converts a uniform external stimulus (i.e., unfocused light) on an otherwise compositionally homogenous substrate into a hinging response. Modeling captures effectively the experimental folding trends as a function of the hinge width and support temperature and suggests that the hinged region must exceed the glass transition temperature of the sheet for folding to occur.

Advanced Materials and MechanicsSurface Modification and SuperhydrophobicityAdvanced Sensor and Energy Harvesting MaterialsMaterials sciencePolymerPlanarPolystyreneFolding (DSP implementation)Glass transitionHingeFabricationAbsorption (acoustics)Chemical physics

Funding

  • U.S. Department of Energy
  • Royal Society
  • Royal Society of Chemistry
Citations
514
FWCI
45.29
field-weighted impact
References
42
Percentile
100%
vs. same field & year
Citations per year
Cited by
Biomimetic 4D printing
Nature Materials · 2016 · 2,877 citations
Advances in 4D Printing: Materials and Applications
Advanced Functional Materials · 2018 · 1,015 citations
Evolution of 3D printed soft actuators
Sensors and Actuators A Physical · 2016 · 308 citations
References
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.