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A study of 1–3 pseudo-random pillar piezocomposites for ultrasound transducers

机译:用于超声换能器的1-3个伪随机支柱压电复合材料的研究

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The goal of our research is to develop a new diced 1–3 piezocomposite geometry to reduce pulse-echo ring down and acoustic cross-talk between high frequency ultrasonic array elements. Two PZT-5H based 1–3 composites (10 and 15 MHz) with different pillar geometries (square (SQ), 45° triangle (TR), and pseudo-random (PR)) were fabricated and then made into single element ultrasound transducers. The measured pulse-echo waveforms and their envelopes indicate that the PR composites had the shortest −20 dB pulse length and strongest sensitivity among all the composites. Using these composites, 15 MHz array sub-apertures with a 0.95 λ pitch were fabricated to measure the acoustic cross-talk between array elements. The combined electrical and acoustical crosstalk between the nearest array elements of the PR array sub-apertures (−32 dB @ 15 MHz) was 6 dB and 2 dB lower than that of the SQ and the TR array sub-apertures, respectively. These results demonstrate that the 1–3 piezocomposite with the pseudo-random pillars may be a good choice for fabricating enhanced high frequency linear array ultrasound transducers; especially when mechanical dicing is used.
机译:我们的研究目标是开发一种新的1-3切丁压电复合材料几何形状,以减少高频超声阵列元件之间的脉冲回波衰减和声串扰。制作了两种基于PZT-5H的1-3复合材料(10和15 MHz),它们具有不同的支柱几何形状(正方形(SQ),45°三角形(TR)和伪随机(PR)),然后制成单元素超声换能器。测得的脉冲回波波形及其包络线表明,PR复合材料在所有复合材料中具有最短的-20 dB脉冲长度和最强的灵敏度。使用这些复合材料,可以制造出节距为0.95λ的15 MHz阵列子孔径,以测量阵列元件之间的声串扰。 PR阵列子孔径的最接近阵列元件(−32 dB @ 15 MHz)之间的电和声串扰比分别比SQ和TR阵列子孔径小6 dB和2 dB。这些结果表明,带有伪随机支柱的1-3压电复合材料可能是制造增强型高频线性阵列超声换能器的理想选择。特别是使用机械切割时。

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