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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Single crystal PZN/PT-polymer composites for ultrasound transducer applications
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Single crystal PZN/PT-polymer composites for ultrasound transducer applications

机译:用于超声换能器的单晶PZN / PT聚合物复合材料

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Single crystal relaxor ferroelectrics of PZN-8%PT were investigated for potential application in ultrasound transducers. The full set of electromechanical properties was determined using combined resonance and laser interferometry techniques. Ultra-high length extensional coupling (k/sub 33/) of 0.94 was observed, a 25% increase over Navy Type VI PZT ceramics. The thickness extensional coupling (k/sub t/) of 0.48 was comparable to PZT compositions, and the compliance S/sub 33//sup E/ was a factor of six greater. To maximize height extensional coupling (k'/sub 33/), while minimizing length extensional coupling k/sub 31/ in array elements, it was necessary to align the elements along the >100< crystallographic direction in the x-y plane. Mode coupling plots and test samples for array elements determined that width-to-height ratios of less than 0.5 were desired, similar to the requirement for polycrystalline PZT ceramics. Modeling of 1-3 composites and experimental results demonstrated that thickness coupling greater than 0.80 could be achieved with a 40% to 70% volume fraction of PZN-PT. Although this is a substantial increase over PZT 1-3 composites, with a thickness coupling coefficient of 0.66, it represents a smaller fraction of the length extensional coupling k/sub 33/. This reduction may be a consequence of the increased compliance of PZN-PT, which results in significant clamping by the polymer matrix. Ultrasonic transducers fabricated using PZN-8%PT 1-3 composites achieved experimental bandwidths as high as 141%. The pulse-echo responses displayed good agreement with modeled results using the Redwood equivalent circuit.
机译:研究了PZN-8%PT的单晶弛豫铁电体在超声换能器中的潜在应用。使用共振和激光干涉技术相结合的方法确定了完整的机电性能。观察到0.94的超高长度延伸耦合(k / sub 33 /),比海军VI型PZT陶瓷增加了25%。厚度延伸耦合(k / sub t /)为0.48与PZT成分相当,柔度S / sub 33 // sup E /的系数大六倍。为了最大化高度延伸耦合(k'/ sub 33 /),同时最小化阵列元件中的长度延伸耦合k / sub 31 /,有必要在x-y平面中沿> 100 <结晶方向排列这些元素。阵列元件的模式耦合图和测试样品确定所需的宽高比小于0.5,类似于多晶PZT陶瓷的要求。 1-3种复合材料的建模和实验结果表明,PZN-PT体积分数为40%至70%时,厚度耦合度可大于0.80。尽管与PZT 1-3复合材料相比,这是一个实质性的增长,厚度耦合系数为0.66,但它代表了长度扩展耦合k / sub 33 /的较小部分。这种减少可能是由于PZN-PT顺应性增加而导致的,这导致聚合物基体明显夹紧。使用PZN-8%PT 1-3复合材料制造的超声换能器的实验带宽高达141%。使用Redwood等效电路,脉冲回波响应与建模结果显示出良好的一致性。

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