Abstract
This paper presents a comprehensive study of the effects of acrylonitrile content, crosslink density and plasticization on the dielectric and electromechanical performances of hydrogenated nitrilebutadiene dielectric elastomer. It was found that by increasing the acrylonitrile content of hydrogenated nitrilebutadiene dielectric elastomer, the dielectric constant will be improved accompanied with a sharp decrease of electrical breakdown strength leading to a small actuated strain. At a fixed electric field, a high crosslink density increased the elastic modulus of dielectric elastomer, but it also enhanced the electrical breakdown strength leading to a high actuated strain. Adding a plasticizer into the dielectric elastomer decreased the dielectric constant and electrical breakdown strength slightly, but reduced the elastic modulus sharply, which was beneficial for obtaining a large strain at low electric field from the dielectric elastomer. The largest actuated strain of 22% at an electric field of 30kVmm 1 without any prestrain was obtained. Moreover, the hydrogenated nitrilebutadiene dielectric actuator showed good history dependence. This proposed material has great potential to be an excellent dielectric elastomer.
| Original language | English |
|---|---|
| Article number | 035017 |
| Journal | Smart Materials and Structures |
| Volume | 21 |
| Issue number | 3 |
| DOIs | |
| State | Published - Mar 2012 |
| Externally published | Yes |
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