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Dielectric Elastomer Actuator with Enhanced Permittivity and Strain

机译:介电常数和应变增强的介电弹性体执行器

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The impact of the modification of silicone rubber with barium titanate particles on the permittivity and hence on the performance of dielectric elastomer actuators has been investigated. Barium titanate powders with different particle sizes in the micrometer and nanometer range were used in this study. The mechanical properties of the composite materials in terms of the Young's modulus in tension and compression load as well as the viscoelastic behavior in shear load were experimentally determined. Additionally, the electric properties like permittivity, specific conductivity and electric breakdown field strength were evaluated. Model film actuators with the modified silicone material were prepared and their actuation strain was measured. With a concentration of 20 vol.% barium titanate particles, an enhancement of the permittivity of 140 % and an increase of the actuation strain of about 100 % with respect to the unmodified material could be achieved. Furthermore, first multilayer actuators were manufactured with an automatic spin coating process and their permittivity and strain were measured. The results of these investigations are in good agreement with the data of the experiments with single layer dielectric elastomer films.
机译:已经研究了用钛酸钡颗粒改性硅橡胶对介电常数的影响,并因此对介电弹性体致动器的性能产生了影响。这项研究使用了微米级和纳米级范围内具有不同粒径的钛酸钡粉末。实验确定了复合材料的机械性能,包括拉伸和压缩载荷下的杨氏模量以及剪切载荷下的粘弹性行为。另外,评估了诸如介电常数,比电导率和击穿电场强度的电性能。制备了具有改性有机硅材料的模型薄膜执行器,并测量了其执行应变。在浓度为20体积%的钛酸钡颗粒的情况下,相对于未改性的材料,可以实现140%的介电常数的增加和大约100%的致动应变的增加。此外,用自动旋涂工艺制造了第一多层致动器,并测量了它们的介电常数和应变。这些研究的结果与单层介电弹性体薄膜的实验数据非常吻合。

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