articleTop 1% cited
Harnessing snap-through instability in soft dielectrics to achieve giant voltage-triggered deformation
Soft Matter · 2011 · Vol. 8(2) · pp. 285–288
Christoph Keplinger(Harvard University)Tiefeng Li(Zhejiang University)Richard Baumgartner(Johannes Kepler University of Linz)Zhigang Suo✉(Harvard University)Siegfried Bauer✉(Johannes Kepler University of Linz)
Abstract
A soft dielectric membrane is prone to snap-through instability. We present theory and experiment to show that the instability can be harnessed to achieve giant voltage-triggered deformation. We mount a membrane on a chamber of a suitable volume, pressurize the membrane into a state near the verge of the instability, and apply a voltage to trigger the snap without causing electrical breakdown. For an acrylic membrane we demonstrate voltage-triggered expansion of area by 1692%, far beyond the largest value reported in the literature. The large expansion can even be retained after the voltage is switched off.
Dielectric materials and actuatorsAdvanced Sensor and Energy Harvesting MaterialsHigh voltage insulation and dielectric phenomenaInstabilityVoltageDielectricDeformation (meteorology)Materials scienceMembraneMechanicsComposite materialPhysicsOptoelectronics
Citations
425
FWCI
15.68
field-weighted impact
References
29
Percentile
99%
vs. same field & year
Citations per year
Cited by
Flexible and stretchable electrodes for dielectric elastomer actuators
Applied Physics A · 2012 · 508 citations
A highly stretchable autonomous self-healing elastomer
Nature Chemistry · 2016 · 1,446 citations
References
Large-scale failure modes of dielectric elastomer actuators
International Journal of Solids and Structures · 2006 · 604 citations
Stacked dielectric elastomer actuator for tensile force transmission
Sensors and Actuators A Physical · 2009 · 365 citations
Citation Network
How this paper connects to the literature. Drag to explore, click any node to open that paper.
