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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Efficiency of excitation of piezoceramic transducers at antiresonance frequency
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Efficiency of excitation of piezoceramic transducers at antiresonance frequency

机译:压电陶瓷换能器在反谐振频率下的激励效率

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The efficiency of piezoceramic transducers excited at both the resonance and antiresonance frequency was investigated. Losses in piezoceramics are phenomenologically considered to have three coupled mechanisms: dielectric, mechanical, and piezoelectric losses. Expressions for the resonance and antiresonance quality factors, which ultimately determine transducer efficiency, have been received on the basis of complex material constants for both stiffened and unstiffened vibration modes. Comparison of electric and mechanical fields, thermal and electrical losses of power supply, and their distribution in the transducer volume have been made. For a given constant mechanical displacement of the transducer top, the required electric voltage applied to the transducer at the antiresonance frequency is proportional to the resonance quality factor, but the changes in the intrinsic electric and mechanical field characteristics in the common case are not too essential. The requirements on the piezoceramic parameters, types of transducer vibration, and especially on the factor of piezoelectric losses in a range of physically valid values were established to provide maximal quality factors at the antiresonance frequency.
机译:研究了在共振和反共振频率下激发的压电陶瓷换能器的效率。在现象学上,压电陶瓷的损耗被认为具有三种耦合机理:介电损耗,机械损耗和压电损耗。共振和反共振品质因数的表达式最终决定了换能器的效率,这是基于刚性和非刚性振动模式的复杂材料常数得出的。比较了电场和机械场,电源的热和电损耗以及它们在换能器体积中的分布。对于给定的换能器顶部恒定的机械位移,以反共振频率施加到换能器的所需电压与共振品质因数成正比,但是在普通情况下固有电场和机械场特性的变化不是太必要。建立了对压电陶瓷参数,换能器振动类型,尤其是在一系列物理有效值中对压电损耗因子的要求,以在反谐振频率下提供最​​大的品质因数。

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