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A soft compressive sensor using dielectric elastomers

机译:使用介电弹性体的软压传感器

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This paper proposes a methodology to design, analyze and fabricate a soft compressive sensor, made of dielectric elastomers that are able to recover from large strain. Each module of the compressive sensor is modeled as a capacitor, comprising a DE membrane sandwiched between two compliant electrodes. When the sensor modules aligned in an array were subject to a compressive load, the induced deformation on the corresponding module resulted in capacitance increase. By detecting the capacitance signal, not only the position but also the magnitude of the compressive load were obtained. We built an analytical model to simulate the mechanical-electrical responses of two common soft sensor structures, namely with and without an embedded air chamber. The simulation results showed that the air embedded prototype improved the sensitivity of the sensor significantly, which was consistent with the experimental results, where the sensitivity is enhanced from 0.05 N-1 to 0.91 N-1. Furthermore, the effect of the air chamber dimension on the sensitivity is also discussed theoretically and experimentally. It concluded that the detection range increased with the air chamber height over length ratio.
机译:本文提出了一种设计,分析和制造软压传感器的方法,该软压传感器由能够从大应变中恢复的介电弹性体制成。压缩传感器的每个模块都建模为一个电容器,包括一个夹在两个柔顺电极之间的DE膜。当排列成阵列的传感器模块承受压缩载荷时,相应模块上的感应变形会导致电容增加。通过检测电容信号,不仅获得位置,而且获得压缩负载的大小。我们建立了一个分析模型来模拟两种常见的软传感器结构(即有和没有嵌入式气室)的机械-电气响应。仿真结果表明,空气嵌入式原型机显着提高了传感器的灵敏度,这与将灵敏度从0.05 N-1提高到0.91 N-1的实验结果一致。此外,还从理论上和实验上讨论了气室尺寸对灵敏度的影响。结论是,检测范围随气室高度与长度之比的增大而增大。

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