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Design and construction of a low frequency wide band non-resonant transducer

机译:低频宽带非谐振换能器的设计与构造

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Commercially available low frequency transducers often have a bandwidth of much less than 100%. This paper reviews the current technology for low frequency transducer construction and presents a non-resonant design giving an improved low frequency performance. Small, undamped piezo-electric cubic elements of 2 turn side length are used which operate below their first resonance frequency. In construction, the elements are air-backed and the front faces are bonded to a thin membrane across the end of an enclosure of 15 mm diameter. Using a low frequency excitation signal which has little energy at the first resonance frequency of the elements, an operating frequency range of 200-500 kHz can be achieved. A single element behaves virtually as a point source, but by arranging an array of elements over the membrane, a more collimated beam profile is obtained. (C) 2003 Published by Elsevier Science B.V. [References: 27]
机译:市售的低频换能器的带宽通常远小于100%。本文回顾了低频换能器构造的当前技术,并提出了一种非谐振设计,从而改善了低频性能。使用2匝边长的小型无阻尼压电立方元件,它们在其第一谐振频率以下工作。在结构上,这些元件带有空气衬里,并且正面在直径为15 mm的外壳末端上粘结到薄膜上。使用在元件的第一谐振频率处具有很少能量的低频激励信号,可以实现200-500kHz的工作频率范围。单个元件实际上充当点源,但是通过在膜上布置一系列元件,可以获得更准直的光束轮廓。 (C)2003年由Elsevier Science B.V.出版[参考文献:27]

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