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Validation of High Displacement Piezoelectric Actuator Finite Element Models

机译:大位移压电致动器有限元模型的验证

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The paper presents the results obtained by using NASTRAN and ANSYS finite element codes to predict doming of the THUNDER piezoelectric actuators during the manufacturing process and subsequent straining due to an applied input voltage. To effectively use such devices in engineering applications, modeling and characterization are essential. Length, width, dome height, and thickness are important parameters for users of such devices. Therefore, finite element models were used to assess the effects of these parameters. NASTRAN and ANSYS used different methods for modeling piezoelectric effects. In NASTRAN, a thermal analogy was used to represent voltage at nodes as equivalent temperatures, while ANSYS processed the voltage directly using piezoelectric finite elements. The results of finite element models were validated by using the experimental results.
机译:本文介绍了通过使用NASTRAN和ANSYS有限元代码来预测THUNDER压电致动器在制造过程中的隆起以及随后由于施加的输入电压而产生的应变所获得的结果。为了在工程应用中有效使用此类设备,建模和表征至关重要。长度,宽度,圆顶高度和厚度是此类设备用户的重要参数。因此,有限元模型被用来评估这些参数的影响。 NASTRAN和ANSYS使用不同的方法对压电效应进行建模。在NASTRAN中,使用热模拟将节点上的电压表示为等效温度,而ANSYS使用压电有限元直接处理电压。利用实验结果验证了有限元模型的结果。

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