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用于无损检测的铋锶钴钛酸铅高温超声换能器中的宽带宽和优异热稳定性。

Broad bandwidth and excellent thermal stability in BiScO-PbTiO high-temperature ultrasonic transducer for non-destructive testing.

作者信息

Hu Liqing, Fu Liwen, Ren Xiaodan, Jin Ruoqi, Qiu Chenyu, Xu Zhuo, Li Xiaotian, Yan Yongke

机构信息

Electronic Materials Research Laboratory, Key Laboratory of the Ministry of Education and International Center for Dielectric Research, School of Electronic Science and Engineering, Xi'an Jiaotong University, Xi'an 710049, China.

College of Semiconductors, College of Integrated Circuits, Hunan University, Changsha 410082, China.

出版信息

Ultrasonics. 2024 Sep;143:107427. doi: 10.1016/j.ultras.2024.107427. Epub 2024 Aug 3.

Abstract

High-temperature ultrasonic transducer (HTUT) is essential for non-destructive testing (NDT) in harsh environments. In this paper, a HTUT based on BiScO-PbTiO (BS-PT) piezoelectric ceramics was developed, and the effect of different backing layers on its bandwidth were analyzed. The HTUT demonstrates a broad bandwidth and excellent thermal stability with operation temperature up to 400 °C. By using a 10 mm thick porous alumina backing layer, the HTUT achieves a broad -6 dB bandwidth of 100 %, which is about 4 times superior to the transducer with an air backing layer. The center frequency (f) of the HTUT remains stable with fluctuations of less than 10 % across the temperature range from room temperature to 400 °C. The HTUT successfully detected simulated defects in pulse-echo mode for NDT over 200 °C. This research not only advances high-temperature ultrasonic transducer technology but also expands the NDT applications in harsh environmental conditions.

摘要

高温超声换能器(HTUT)对于恶劣环境下的无损检测(NDT)至关重要。本文研制了一种基于BiScO-PbTiO(BS-PT)压电陶瓷的HTUT,并分析了不同背衬层对其带宽的影响。该HTUT具有宽带宽和出色的热稳定性,工作温度可达400°C。通过使用10毫米厚的多孔氧化铝背衬层,HTUT实现了100%的宽 -6dB带宽,这比带有空气背衬层的换能器优越约4倍。HTUT的中心频率(f)在从室温到400°C的温度范围内保持稳定,波动小于10%。HTUT在脉冲回波模式下成功检测了200°C以上用于无损检测的模拟缺陷。这项研究不仅推动了高温超声换能器技术的发展,还扩展了在恶劣环境条件下的无损检测应用。

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