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Modelling and characterization of dielectric elastomer stack actuators

机译:介电弹性体堆栈致动器的建模和表征

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This paper aims to establish and evaluate an electrical and mechanical model for dielectric elastomer stack actuators. Based on the structure of an electrically interconnected actuator a simplified electrical and mechanical network is deduced. The electrical model results in a low-pass filter. The model is evaluated by measurements of the electrical impedance and contact, electrode and parallel resistances. Measurement results show good agreement of the model with the electrical behaviour of the real actuator over a wide frequency range, from below 0.1 Hz to above 10 kHz. The mechanical modelling is split into dynamic and static behaviour. The dynamic mechanical behaviour is modelled as a mechanical equivalent network using fractional elements. The static mechanical model uses the uniaxial compressive modulus of the actuator material to describe the static characteristic. The combination of static and dynamic models allows a realistic prediction of the static and dynamic deflection of the actuators under an applied electrical voltage. This electro-mechanical model has been validated in a frequency range of 4 Hz to 4 kHz.
机译:本文旨在建立和评估介电弹性体堆栈促动器的电气和机械模型。基于电互连致动器的结构,得出简化的电气和机械网络。电气模型产生一个低通滤波器。通过测量电阻抗和接触,电极和并联电阻来评估该模型。测量结果表明,该模型与实际执行器在0.1 Hz以下至10 kHz以上的宽频率范围内的电气性能具有良好的一致性。机械建模分为动态和静态行为。使用分数元素将动态机械行为建模为机械等效网络。静态力学模型使用执行器材料的单轴压缩模量来描述静态特性。静态和动态模型的组合允许在施加电压的情况下实际预测执行器的静态和动态变形。该机电模型已在4 Hz至4 kHz的频率范围内得到验证。

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