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首页> 外文期刊>Journal of Physics Communications >Modelling dielectric elastomer actuators using higher order material characteristics
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Modelling dielectric elastomer actuators using higher order material characteristics

机译:使用高阶材料特性对介电弹性体执行器建模

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Dielectric elastomers, a special class of electroactive polymers, have viscoelastic properties that strongly affect their dynamic performance. This paper contributes a high-order linear solid model together with an optimised parameter identification method to aid the selection of the model parameters. The paper also demonstrates that accurate modelling of the viscoelastic characteristics for commonly used dielectric elastomer (DE) material requires additional spring-damper combinations within a standard linear solid model. The effect of key parameters on the system dynamics in the frequency domain is elaborated and used to guide the parameter identification of the models. The increased effectiveness of higher order models that incorporate multiple spring-damper combinations is demonstrated using three experiments; (a) mechanical loading of a stacked sample over 0.01-5Hz with strain variations up to 50%; (b) mechanical loading of a single-layer sample over 1-100 Hz with strain variations up to 10%; and (c) electrical actuation of a single-layer sample over 1-100 Hz using electric fields up to 20MVm~(-1). Silicone and polyacrylate samples were tested to show the effect of viscoelastic properties in the frequency domain. The proposed method of parameter identification is optimised to capture the frequency response.
机译:介电弹性体是一类特殊的电活性聚合物,其粘弹性极大地影响其动态性能。本文提出了一种高阶线性实体模型以及一种优化的参数识别方法,以帮助选择模型参数。本文还表明,对常用的介电弹性体(DE)材料的粘弹性特性进行精确建模需要在标准线性实体模型内附加弹簧阻尼器组合。详细阐述了关键参数对频域系统动力学的影响,并用于指导模型的参数识别。通过三个实验证明了结合了多个弹簧-阻尼器组合的高阶模型的有效性提高。 (a)机械加载超过0.01-5Hz的堆叠样品,应变变化高达50%; (b)单层样品在1-100 Hz上的机械载荷,其应变变化高达10%; (c)使用高达20MVm〜(-1)的电场以1-100 Hz的频率驱动单层样品。对有机硅和聚丙烯酸酯样品进行了测试,以显示其频域粘弹性的影响。对提出的参数识别方法进行了优化,以捕获频率响应。

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