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Mm-size bistable zipping dielectric elastomer actuators for integrated microfluidics

机译:毫米大小的双稳态拉链介电弹性体致动器,用于集成微流体

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We report on a new structure of Dielectric Elastomer Actuators (DEAs) called zipping DEAs, which have a set of unique characteristics that are a good match for the requirements of electrically-powered integrated microfluidic pumping and/or valving units as well as Braille displays. The zipping DEAs operate by pulling electrostatically an elastomer membrane in contact with the rigid sidewalls of a sloped chamber. In this work, we report on fully functional mm-size zipping DEAs that demonstrate a complete sealing of the chamber sidewalls and a tunable bistable behavior, and compare the measurements with an analytical model. Compared to our first generation of devices, we are able vary the sidewall angle and benefit therefore from more flexibility to study the requirements to make fully functional actuators. In particular, we show that with Nusil CF19 as membrane material (1.2 MPa Young's modulus), it is possible to zip completely 2.3 mm diameter chambers with 15° and 21° sidewalls angle equibiaxially prestretched to λ_0= 1.12 and 15° chambers with λ_0=1.27.
机译:我们报告了一种名为“拉链DEA”的介电弹性体致动器(DEA)的新结构,该结构具有一组独特的特征,可以很好地满足电动集成微流体泵和/或阀单元以及盲文显示器的要求。拉链式DEA通过静电拉动与倾斜腔室的刚性侧壁接触的弹性体膜来进行操作。在这项工作中,我们报告了功能齐全的毫米大小的压缩DEA,该DEA演示了腔室侧壁的完全密封和可调的双稳态行为,并将测量结果与分析模型进行了比较。与第一代设备相比,我们能够改变侧壁角度,因此可以从更大的灵活性中受益,以研究制造全功能执行器的要求。特别是,我们表明,以Nusil CF19作为膜材料(1.2 MPa杨氏模量),可以将直径为2.3 mm的带有15°和21°侧壁角的腔室完全等轴地拉链成等双轴预拉伸至λ_0= 1.12和15°腔室,其中λ_0= 1.27。

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