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Solid Micro Horn Array (SMIHA) for Acoustic Matching

机译:固态微喇叭阵列(SMIHA)用于声学匹配

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Transduction of electrical signals to mechanical signals and vice-versa in piezoelectric materials is controlled by the material coupling coefficient. In general in a loss-less material the ratio of energy conversion per cycle is proportional to the square of the coupling coefficient. In practical transduction however the impedance mismatch between the piezoelectric material and the electrical drive circuitry or the mechanical structure can have a significant impact on the power transfer. In this paper a novel method of matching the acoustic impedance of structures to the piezoelectric material are described and discussed in relation to the objective of increasing power transmission and efficiency. In typical methods the density and acoustic velocity of the matching layer is adjusted to give "ideal" matching between the transducer and the load. The approach discussed in this paper utilizes solid micro horn arrays in the matching layer which channel the stress and increase the strain in the layer. This approach is found to have potential applications in energy harvesting, medical ultrasound and in liquid and gas coupled transducers.
机译:压电材料中电信号到机械信号的转换,反之亦然,是由材料耦合系数控制的。通常,在无损材料中,每个周期的能量转换率与耦合系数的平方成正比。然而,在实际的转换中,压电材料与电驱动电路或机械结构之间的阻抗失配会对功率传输产生重大影响。在本文中,针对增加功率传输和效率的目的,描述和讨论了一种将结构的声阻抗与压电材料匹配的新颖方法。在典型的方法中,调整匹配层的密度和声速,以在换能器和负载之间提供“理想的”匹配。本文讨论的方法在匹配层中使用了实心的微喇叭阵列,可引导应力并增加该层中的应变。发现这种方法在能量收集,医学超声以及液和气耦合换能器中具有潜在的应用。

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