模态型线性压电电机的研究

J. Jou
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引用次数: 1

摘要

在本文中,我们想通过模态振型涂层或有效电极表面涂层来制造一种新型的线性压电电机。由线性压电电机的力学边界条件导出了振型。我们只获得了前三种模式的形式,有效电极表面涂层的基础,以及与正常形状的线性压电电机做比较。接下来,我们将通过理论分析、仿真和实验来检验它们的增益或轴向速度。根据理论分析结果,我们发现模态型线性压电电机的增益或轴向速度远大于法向型线性压电电机。然而,根据仿真和实验结果,我们发现,模态型线性压电电机的增益或轴向速度远大于正常型线性压电电机,约为1.2 ~ 1.4倍。当驱动电压为180 Vp-p、驱动频率为21.2 kHz(第三振型)、加载量为25 gw、加载或质量位置为x = 5 mm和45 mm时,振型为3的线性压电电机轴向速度最快,分别为-48 mm/s和48 mm/s。在相同条件下,其轴向速度约为正常形状线性压电电机的1.4倍。总体而言,模态振型涂层有助于提高线性压电电机的增益或轴向速度。
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A Study on the Linear Piezoelectric Motor of Mode Shape
In this paper, we want to make a new type linear piezoelectric motor by mode shape coating or effective electrode surface coating. The mode shape is derived from the mechanical boundary conditions of the linear piezoelectric motor. We only have access to the first three modes of formas, the effective electrode surface coating basis, as well as with the linear piezoelectric motor of normal shape do comparison. Next, we will inspect their gain or axial velocity through theoretical analysis, simulation and experiment. According to the results of the theoretical analysis, we have found that the gain or axial velocity of the linear piezoelectric motors of mode shape is much larger than the linear piezoelectric motors of normal shape. However, according to the results of simulation and experiments, we have found that the gain or axial velocity of the linear piezoelectric motors of mode shape is much greater than the linear piezoelectric motors of normal shape, which is about 1.2 to 1.4 times. The linear piezoelectric motor of mode shape 3 has the fastest axial velocity, which is about -48 mm/s and 48 mm/s under conditions of 180 Vp-p driving voltage, 21.2 kHz driving frequency (the third vibration modal), 25 gw loading and the position of loading or mass at x = 5 mm & 45 mm respectively. And its axial velocity is about 1.4 times the linear piezoelectric motor of normal shape under the same conditions. Overall, the mode shape coating helps to enhance the gain or axial velocity of the linear piezoelectric motor.
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