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Roentgen's electrode-free elastomer actuators without electromechanical pull-in instability

机译:伦琴的无电极弹性体执行器,无机电引入不稳定性

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Electrical actuators made from films of dielectric elastomers coated on both sides with stretchable electrodes may potentially be applied in microrobotics, tactile and haptic interfaces, as well as in adaptive optical elements. Such actuators with compliant electrodes are sensitive to the pull-in electromechanical instability, limiting operational voltages and attainable deformations. Electrode-free actuators driven by sprayed-on electrical charges were first studied by Roentgen in 1880. They withstand much higher voltages and deformations and allow for electrically clamped (charge-controlled) thermodynamic states preventing electromechanical instabilities. The absence of electrodes allows for direct optical monitoring of the actuated elastomer, as well as for designing new 3D actuator configurations and adaptive optical elements.
机译:由在两侧涂有可拉伸电极的介电弹性体薄膜制成的电驱动器可能会应用于微机器人,触觉和触觉界面以及自适应光学元件。这种带有顺从电极的致动器对引入的机电不稳定性很敏感,从而限制了工作电压和可达到的变形。 1880年,伦琴首次研究了由喷射电荷驱动的无电极执行器。它们承受更高的电压和变形,并具有电夹紧(电荷控制)的热力学状态,可防止机电不稳定。电极的不存在可以直接对被驱动的弹性体进行光学监控,也可以设计新的3D致动器配置和自适应光学元件。

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