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A nonlinear model for ionic polymer metal composites as actuators

机译:离子聚合物金属复合材料作为致动器的非线性模型

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This paper introduces a comprehensive nonlinear dynamic model of motion actuators based on ionic polymer metal composites (IPMCs) working in air. Significant quantities ruling the acting properties of IPMC-based actuators are taken into account. The model is organized as follows. As a first step, the dependence of the IPMC absorbed current on the voltage applied across its thickness is taken into account; a nonlinear circuit model is proposed to describe this relationship. In a second step the transduction of the absorbed current into the IPMC mechanical reaction is modelled. The model resulting from the cascade of both the electrical and the electromechanical stages represents a novel contribution in the field of IPMCs, capable of describing the electromechanical behaviour of these materials and predicting relevant quantities in a large range of applied signals. The effect of actuator scaling is also investigated, giving interesting support to the activities involved in the design of actuating devices based on these novel materials. Evidence of the excellent agreement between the estimations obtained by using the proposed model and experimental signals is given.
机译:本文介绍了基于在空气中工作的离子聚合物金属复合材料(IPMC)的运动执行器的全面非线性动力学模型。考虑到支配基于IPMC的执行器的性能的重要数量。该模型的组织如下。第一步,要考虑IPMC吸收电流对在其厚度上施加的电压的依赖性。提出了非线性电路模型来描述这种关系。在第二步中,对吸收电流到IPMC机械反应中的传导进行建模。由电气和机电阶段的级联产生的模型代表了IPMC领域的新贡献,能够描述这些材料的机电行为并预测大范围应用信号中的相关量。还研究了执行器缩放的影响,为基于这些新颖材料的执行器设计中涉及的活动提供了有趣的支持。给出了通过使用所提出的模型获得的估计与实验信号之间的极好的一致性的证据。

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