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Dynamic modeling and experimental evaluation of a constant-force dielectric elastomer actuator

机译:恒力介电弹性体执行器的动力学建模和实验评估

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Constant-force actuators based on dielectric elastomers can be obtained by coupling a dielectric elastomer film with particular compliant frames whose structural properties must be carefully designed. In any case, the practical achievement of a desired force profile can be quite a challenging task owing to the time-dependent phenomena, which affect the dielectric elastomer's electromechanical response. Within this scenario, a hyperviscoelastic model of a rectangular constant-force actuator is reported. The model, based on the bond graph formalism, can be used as an engineering tool when designing and/or controlling actuators that are expected to work under given nominal conditions. Simulations and experimental results are provided, which predict the system response to fast changes in activation voltage and actuator position as imposed by an external user.
机译:基于介电弹性体的恒力执行器可以通过将介电弹性体薄膜与必须仔细设计其结构特性的特定顺应性框架连接而获得。在任何情况下,由于时间相关的现象都会影响介电弹性体的机电响应,因此,实际实现所需的力分布可能是一项艰巨的任务。在这种情况下,报告了矩形恒力执行器的超粘弹性模型。当设计和/或控制预期在给定标称条件下工作的执行器时,基于键合图形式主义的模型可以用作工程工具。提供的仿真和实验结果可预测系统对外部用户施加的激活电压和执行器位置的快速变化的响应。

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