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Journal article

The electrical breakdown strength of pre-stretched elastomers, with and without sample volume conservation

From

Department of Chemical and Biochemical Engineering, Technical University of Denmark1

The Danish Polymer Centre, Department of Chemical and Biochemical Engineering, Technical University of Denmark2

Delft University of Technology3

Danfoss AS4

In practice, the electrical breakdown strength of dielectric electroactive polymers (DEAPs)determines the upper limit for transduction. During DEAP actuation, the thickness of the elastomer decreases, and thus the electrical field increases and the breakdown process is determined by a coupled electro-mechanical failure mechanism.

A thorough understanding of the mechanisms behind the electro-mechanical breakdown process is required for developing reliable transducers. In this study, two experimental configurations were used to determine the stretch dependence of the electrical breakdown strength of polydimethylsiloxane (PDMS) elastomers.

Breakdown strength was determined for samples with and without volume conservation and was found to depend strongly on the stretch ratio and the thickness of thesamples. PDMS elastomers are shown to increase breakdown strength by a factor of ∼3 when sample thickness decreases from 120 to 30 μm, while the biaxial pre-stretching (λ = 2) of samplesleads similarly to an increase in breakdown strength by a factor of ∼2.5.

Language: English
Year: 2015
Pages: 055009
ISSN: 1361665x and 09641726
Types: Journal article
DOI: 10.1088/0964-1726/24/5/055009
ORCIDs: Yu, Liyun and Skov, Anne Ladegaard

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