首页> 外文期刊>The Journal of the Acoustical Society of America >Performance of tonpilz transducers with segmented piezoelectric stacks using materials with high electromechanical coupling coefficient
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Performance of tonpilz transducers with segmented piezoelectric stacks using materials with high electromechanical coupling coefficient

机译:使用具有高机电耦合系数的材料的具有分段压电叠层的tonpilz换能器的性能

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摘要

Tonpilz acoustic transducers for use underwater often include a stack of piezoelectric material pieces polarized along the length of the stack and having alternating polarity. The pieces are interspersed with electrodes, bonded together, and electrically connected in parallel. The stack is normally much shorter than a quarter wavelength at the fundamental resonance frequency so that the mechanical behavior of the transducer is not affected by the segmentation. When the transducer bandwidth is less than a half octave, as has conventionally been the case, for example, with lead zirconate titanate (PZT) material, stack segmentation has no significant effect on the mechanical behavior of the device in its normal operating band near the fundamental resonance. However, when a high coupling coefficient material such as lead magnesium niobate-lead titanate (PMN-PT) is used to achieve a wider bandwidth with the tonpilz, the performance difference between a segmented stack and a similar piezoelectric section with electrodes only at the two ends can be significant. This paper investigates the effects of stack segmentation on the performance of wideband underwater tonpilz acoustic transducers. Included is a discussion of a particular tonpilz transducer design using single crystal piezoelectric material with high coupling coefficient compared with a similar design using more traditional PZT ceramics.
机译:用于水下的Tonpilz声换能器通常包括一堆压电材料,这些压电材料沿堆的长度极化并且具有交替的极性。这些部件散布着电极,粘结在一起,并并联电连接。叠层通常比基本共振频率处的四分之一波长短得多,因此换能器的机械性能不受分段影响。当换能器带宽小于半个八度音程时(例如,通常采用钛酸锆钛酸铅(PZT)材料),堆栈分段对设备在其接近工作温度的正常工作频段内的机械性能没有重大影响。基本共振。但是,当使用高耦合系数的材料(例如铌酸铅镁-钛酸铅(PMN-PT))与tonpilz来获得更宽的带宽时,分段堆叠和类似的压电部分(仅在两个电极处)之间的性能差异目标可能很重要。本文研究了堆栈分割对宽带水下tonpilz声换能器性能的影响。与使用更传统的PZT陶瓷的类似设计相比,本文讨论了使用具有高耦合系数的单晶压电材料的特定tonpilz换能器设计。

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