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Comparison of the performance of pmn-pt single-crystal and ceramic composite arrays for NDE applications

机译:用于NDE应用的pmn-pt单晶和陶瓷复合阵列的性能比较

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Ultrasonic array technology is used in many imaging applications across a wide range of industrial sectors. Perovskite single-crystal materials such as pzn-pt and pmn-pt can be used to manufacture arrays with much increased sensitivity and bandwidth, compared to conventional piezoelectric ceramic designs. One way to take advantage of these new active materials is to incorporate the single-crystal material as the active piezoelectric elements, embedded within a passive polymeric material, in a piezoelectric composite structure. This paper describes a theoretical and experimental investigation into the performance of wideband 1-3 composite arrays utilising pzt5h ceramic and pmn-pt single-crystal as the active materials. Six-element prototype arrays were manufactured with a centre frequency of approximately 2.25 MHz. The comparison of the single-crystal and pzt5h devices is based on laser vibrometer surface displacement cross-talk measurements and electrical impedance measurements as well as transmit and receive measurements in water. The measured electrical impedance and mechanical cross-talk from the manufactured arrays correlates well with that predicted using the FE software package PZFlex. Moreover, the design techniques obtained from PZFlex, are shown to produce arrays with low cross-talk. Overall, the single-crystal device shows considerably improved performance over the pzt5h device as demonstrated by its higher bandwidth and superior pulse-echo performance.
机译:超声波阵列技术被广泛应用于工业领域的许多成像应用中。与传统的压电陶瓷设计相比,钙钛矿型单晶材料(例如pzn-pt和pmn-pt)可用于制造灵敏度和带宽大大提高的阵列。利用这些新的活性材料的一种方法是在压电复合结构中将单晶材料作为嵌入无源聚合物材料中的有源压电元件。本文介绍了以pzt5h陶瓷和pmn-pt单晶为活性材料的宽带1-3复合阵列的性能的理论和实验研究。六元素原型阵列的制造中心频率约为2.25 MHz。单晶和pzt5h器件的比较基于激光振动计表面位移串扰测量和电阻抗测量以及在水中的发射和接收测量。从制造的阵列中测得的电阻抗和机械串扰与使用FE软件包PZFlex预测的阻抗和相关性很好。此外,从PZFlex获得的设计技术显示出可以产生低串扰的阵列。总的来说,单晶器件显示出比pzt5h器件显着改善的性能,其更高的带宽和出色的脉冲回波性能证明了这一点。

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