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Design and Modelling of a Sensor-Integrated Actuator Using Combined Effects of Magnetostriction and Piezoelectricity

机译:磁致伸缩和压电效应联合的传感器集成驱动器的设计与建模

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This paper presents a magnetostrictive actuator integrated with a piezoelectric sensor. The output force can be detected during actuation. A nonlinear model to depict the combined effects of magnetostriction and piezoelectricity is proposed. The model for magnetostriction is based on the Jiles-Atherton model with dynamic extensions of eddy-current losses and magneto-mechanical effects, so it applies for the working conditions of high frequency and time-varying stress. A piezoelectric constitutive model is connected to the new Jiles-Atherton model with both the changing strain and the changing interaction forces. Using the combined model, the output displacement of the sensor-integrated actuator can be accurately predicted. Simulations and experiments have been conducted and compared for verification.
机译:本文提出了一种与压电传感器集成在一起的磁致伸缩执行器。在操纵过程中可以检测到输出力。提出了一个非线性模型来描述磁致伸缩和压电效应的组合。磁致伸缩模型基于Jiles-Atherton模型,该模型具有涡流损耗和磁机械效应的动态扩展,因此适用于高频和时变应力的工作条件。压电本构模型连接到新的Jiles-Atherton模型上,该模型具有变化的应变和变化的相互作用力。使用组合模型,可以准确预测传感器集成执行器的输出位移。进行了仿真和实验,并进行了比较以进行验证。

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