IEEE Trans Ultrason Ferroelectr Freq Control. 2022 Feb;69(2):761-768. doi: 10.1109/TUFFC.2021.3123331. Epub 2022 Jan 27.
( 1- x )BiScO- x PbTiO (BS-PT) ceramics have excellent piezoelectricity and high Curie temperature at its morphotropic phase boundary (MPB) ( x = 0.64 ), so it is a promising piezoelectric material for fabricating high-temperature ultrasonic transducer (HTUT). Electric properties of 0.36BS-0.64PT ceramics were characterized at different temperatures, and an HTUT with the center frequency of about 15 MHz was designed by PiezoCAD based on the measuring results. The prepared HTUT was tested in a silicone oil bath at different temperatures systematically. The test results show that the HTUT can maintain a stable electrical resonance until 290 °C and get a clear echo response until 250 °C with slight changes of the center frequency. Then, a stepped metal block submerged in silicone oil was imaged by the HTUT until 250 °C. Velocity of silicone oil and axial resolution of the HTUT at different temperatures was calculated. The results verify the capability of 0.36BS-0.64PT-based HTUT for high-temperature ultrasonic imaging applications.
(1-x)BiScO-xPbTiO(BS-PT)陶瓷在其准同型相界(MPB)(x=0.64)处具有优异的压电性和高居里温度,因此它是一种很有前途的用于制造高温超声换能器(HTUT)的压电材料。在不同温度下对 0.36BS-0.64PT 陶瓷的电性能进行了表征,并根据测量结果,使用 PiezoCAD 设计了中心频率约为 15MHz 的 HTUT。在不同温度下,系统地在硅油浴中对制备的 HTUT 进行了测试。测试结果表明,HTUT 可以在 290°C 下保持稳定的电共振,并在 250°C 下获得清晰的回波响应,中心频率略有变化。然后,通过 HTUT 对浸在硅油中的阶梯金属块进行成像,直至 250°C。计算了不同温度下硅油的速度和 HTUT 的轴向分辨率。结果验证了基于 0.36BS-0.64PT 的 HTUT 用于高温超声成像应用的能力。