压电阵列元件的一维机电等效电路

A. Bybi, Nadia El Atlas, Hilal Drissi, M. Garoum, A. Hladky-Hennion
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引用次数: 4

摘要

在本文中,我们报告了一种简单的一维机电方法来模拟细长杆单元所熟知的压电换能器阵列单元。该方法的灵感来自梅森的简化模型,该模型在压电板的情况下进行了测试,并扩展到矩形细长杆。研究了材料参数对电声性能的影响,即对电阻抗和位移的影响。首先,对实验得到的压电片性能与等效电路计算得到的压电片性能进行了比较。测试了两种方法:第一种方法是根据制造商的参数确定电路元件,第二种方法是根据测量的电阻抗推导电路元件。第二种方法在类似于医疗传感器阵列的压电矩形细长棒的情况下进行测试。在这种情况下,得到的电阻抗和位移与实测值非常接近,特别是在谐振频率附近。同样的方法将用于研究一个完整的换能器阵列,即考虑到所有的元素,填充材料,匹配层和背景。这是我们未来工作的目标。
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One-dimensional electromechanical equivalent circuit for piezoelectric array elements
In this paper, we report a simple one — dimensional electromechanical method to model piezoelectric transducer array elements well known by slender bar elements. The method is inspired from the Mason's simplified model, which is tested in the case of a piezoelectric plate and extended to a rectangular slender bar. The research work investigates the effects of the material parameters on the electroacoustic performances i.e. on the electrical impedance and the displacement. Firstly, it compares the performances of a piezoelectric plate obtained experimentally and those calculated from the equivalent circuit. Two approaches are tested: the first method consists on the determination of the circuit components from the manufacturer parameters and the second one deduces them from the measured electrical impedance. The second approach is then tested in the case of a piezoelectric rectangular slender bar similar to those constituting the medical transducer arrays. In this case, the electrical impedance and the displacement obtained are very close to the measured ones, especially around the resonance frequency. The same approach will be used to study a complete transducer array i.e. taking into account all the elements, the filling material, the matching layers and the backing. This constitutes the objective of our future works.
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