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Air-Coupled Low Frequency Ultrasonic Transducers and Arrays with PMN-32PT Piezoelectric Crystals

机译:带PMN-32%PT压电晶体的空气耦合低频超声换能器和阵列

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摘要

Air-coupled ultrasonic techniques are being increasingly used for material characterization, non-destructive evaluation of composite materials using guided waves as well as for distance measurements. Application of those techniques is mainly limited by the big losses of ultrasonic signals due to attenuation and mismatch of the acoustic impedances of ultrasonic transducers and air. One of the ways to solve this problem is by application of novel more efficient piezoelectric materials like lead magnesium niobate-lead titanate (PMN-PT) type crystals. The objective of this research was the development and investigation of low frequency (<50 kHz) wide band air-coupled ultrasonic transducers and arrays with an improved performance using PMN-32%PT crystals. Results of finite element modelling and experimental investigations of the developed transducers and arrays are presented. For improvement of the performance strip-like matching elements made of low acoustic impedance, materials such as polystyrene foams were applied. It allowed to achieve transduction losses for one single element transducer −11.4 dB, what is better than of commercially available air-coupled ultrasonic transducers. Theoretical and experimental investigations of the acoustic fields radiated by the eight element ultrasonic array demonstrated not only a good performance of the array in a pulse mode, but also very good possibilities to electronically focus and steer the ultrasonic beam in space.
机译:空气耦合超声技术正越来越多地用于材料表征,使用导波的复合材料无损评估以及距离测量。这些技术的应用主要受到由于超声换能器和空气的声阻抗的衰减和失配而导致的超声信号的巨大损失的限制。解决此问题的方法之一是通过应用新型更高效的压电材料,例如铌酸铅镁-钛酸铅(PMN-PT)型晶体。这项研究的目的是使用PMN-32%PT晶体开发和研究具有改进性能的低频(<50 kHz)宽带空气耦合超声换能器和阵列。介绍了有限元建模的结果以及开发的换能器和阵列的实验研究。为了改善由低声阻抗制成的带状匹配元件的性能,使用了诸如聚苯乙烯泡沫的材料。它允许实现一个单一元件换能器-11.4 dB的换能损耗,这比市售的空气耦合超声换能器更好。对八元素超声阵列辐射的声场的理论和实验研究表明,该阵列不仅在脉冲模式下具有良好的性能,而且还非常有可能在空间上电子聚焦和操纵超声束。

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