Department of Electrical and Computer Engineering, McGill University, 3480 University Street, Montreal, QC H3A 2K6, Canada.
Sensors (Basel). 2013 Jan 15;13(1):975-83. doi: 10.3390/s130100975.
In this study, the feasibility of using a one dimensional 16-element flexible ultrasonic transducer (FUT) array for nondestructive testing at 150 °C is demonstrated. The FUT arrays were made by a sol-gel sprayed piezoelectric film technology; a PZT composite film was sprayed on a titanium foil of 75 µm thickness. Since the FUT array is flexible, it was attached to a steel pipe with an outer diameter of 89 mm and a wall thickness of 6.5 mm at 150 °C. Using the ultrasonic pulse-echo mode, pipe thickness measurements could be performed. Moreover, using the ultrasonic pulse-echo and pitch-catch modes of each element of FUT array, the defect detection was performed on an Al alloy block of 30 mm thickness with a side-drilled hole (SDH) of f3 mm at 150 °C. In addition, a post-processing algorithm based on the total focusing method was used to process the full matrix of these A-scan signals of each single transmitter and multi-receivers, and then the phase-array image was obtained to indicate this defect- SDH. Both results show the capability of FUT array being operated at 150 °C for the corrosion and defect detections.
在这项研究中,展示了使用一维 16 元素柔性超声换能器(FUT)阵列在 150°C 下进行无损检测的可行性。FUT 阵列是通过溶胶-凝胶喷涂压电薄膜技术制成的;在厚度为 75 µm 的钛箔上喷涂了 PZT 复合薄膜。由于 FUT 阵列是柔性的,因此可以在 150°C 下将其附着在外径为 89 mm、壁厚为 6.5 mm 的钢管上。使用超声波脉冲回波模式,可以进行管厚度测量。此外,使用 FUT 阵列的每个元件的超声波脉冲回波和纵波-横波模式,可以在 150°C 下对厚度为 30 mm 的铝合金块进行缺陷检测,该铝合金块上有一个 f3mm 的侧边钻孔(SDH)。此外,使用基于全聚焦方法的后处理算法处理每个单个发射器和多接收器的这些 A 扫描信号的全矩阵,然后获得相控阵图像,以指示该缺陷-SDH。这两个结果都表明了 FUT 阵列在 150°C 下进行腐蚀和缺陷检测的能力。