材料科学
锆钛酸铅
水听器
传感器
纹影
制作
声学
超声波传感器
曲率半径
曲率
光学
光电子学
铁电性
电介质
物理
流量平均曲率
医学
病理
平均曲率
替代医学
数学
几何学
作者
Tomasz Zawada,Torsten Bove,R. Lou-Møller,Erling Ringgaard
出处
期刊:IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control
[Institute of Electrical and Electronics Engineers]
日期:2023-01-01
卷期号:: 1-1
被引量:2
标识
DOI:10.1109/tuffc.2023.3256535
摘要
A direct comparison of performance and acoustic properties of high intensity focused ultrasonic transducers utilizing lead-free (Sodium Bismuth Titanate - NBT) and lead-based (Lead Zirconate Titanate - PZT) piezoceramics is discussed. All transducers operate at 12 MHz at third harmonic frequency, having an outer diameter of 20 mm, a central hole of 5 mm in diameter and a radius of curvature of 15 mm. The electro-acoustic efficiency determined by a radiation force balance is evaluated in a range of input power levels up to 15 W. Schlieren tomography as well as hydrophone measurements are used for evaluation of the acoustic field distribution. It is found that the average electro-acoustic efficiency of NBT-based transducers is approximately 40% while it is around 80% in the PZT-based devices. NBT devices show significantly higher inhomogeneity of the acoustic field under schlieren tomography compared to PZT devices. From pressure measurements in the pre-focal plane, it was found that the inhomogeneity could be attributed to depoling of significant areas of the NBT piezo-component during the fabrication process. In conclusion, PZT-based devices performed significantly better than those using lead-free material. However, the NBT devices show promise for this application and their electro-acoustic efficiency as well as the uniformity of the acoustic field could be improved by employing a low-temperature fabrication process or repoling after processing.
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