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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Effect of electric load impedances on the performance of sandwich piezoelectric transducers
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Effect of electric load impedances on the performance of sandwich piezoelectric transducers

机译:电负载阻抗对夹层压电换能器性能的影响

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Based on the electromechanical equivalent circuit, the sandwich piezoelectric transducer with adjustable resonance frequency is studied. The underlying theory of frequency adjustment is its piezoelectric effect. In this paper, the influence of electric load impedance (including electric resistance, electric inductance, and electric capacitance) on the resonance frequency, the antiresonance frequency, and the effective electromechanical coupling coefficient is analyzed theoretically and experimentally. It is demonstrated that the electric load impedance can change the resonance frequency, the antiresonance frequency, and the effective electromechanical coupling coefficient. When the electric load resistance is increased, the resonance frequency and the antiresonance frequency are increased; the effective electromechanical coupling coefficient has a maximum value when the electric load resistance changes. When the electric load resistance becomes large, the effect of the electric load resistance on the effective electromechanical coupling coefficient is negligible. When the electric load inductance is increased, the resonance frequency and the antiresonance frequency are decreased, whereas the effective electromechanical coupling coefficient is increased. When the electric load capacitance is increased, the resonance frequency, the antiresonance frequency, and the effective electromechanical coupling coefficient are all decreased. It should be noted that when the electric load impedance becomes large, the effect of the electric load impedance on the resonance frequency, the antiresonance frequency, and the effective electromechanical coupling coefficient of a sandwich piezoelectric transducer becomes negligible.
机译:基于机电等效电路,研究了谐振频率可调的夹层压电换能器。频率调节的基本理论是其压电效应。本文从理论和实验上分析了电负载阻抗(包括电阻,电感和电容)对谐振频率,反谐振频率和有效机电耦合系数的影响。结果表明,电负载阻抗可以改变谐振频率,反谐振频率和有效的机电耦合系数。当电气负载电阻增加时,共振频率和反共振频率增加;反之,则增加。当电负载电阻改变时,有效的机电耦合系数具有最大值。当电气负载电阻变大时,电气负载电阻对有效机电耦合系数的影响可以忽略。当电负载电感增大时,谐振频率和反谐振频率减小,而有效的机电耦合系数增大。当电负载电容增加时,谐振频率,反谐振频率和有效机电耦合系数都减小。应当注意,当电负载阻抗变大时,电负载阻抗对夹层压电换能器的谐振频率,反谐振频率和有效机电耦合系数的影响变得可以忽略。

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