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用于恶劣环境的超声换能器的最新技术和实用指南,包括温度高于 2120°F(1000°C)和中子通量高于 10 n/cm。

State-of-the-Art and Practical Guide to Ultrasonic Transducers for Harsh Environments Including Temperatures above 2120 °F (1000 °C) and Neutron Flux above 10 n/cm.

机构信息

Department of Engineering Science and Mechanics, Penn State University, University Park, PA 16802, USA.

Olympus Corp. State College, PA 16801, USA.

出版信息

Sensors (Basel). 2019 Nov 1;19(21):4755. doi: 10.3390/s19214755.

Abstract

In field applications currently used for health monitoring and nondestructive testing, ultrasonic transducers primarily employ PZT5-H as the piezoelectric element for ultrasound transmission and detection. This material has a Curie-Weiss temperature that limits its use to about 210 °C. Some industrial applications require much higher temperatures, i.e., 1000-1200 °C and possible nuclear radiation up to 10 n/cm when performance is required in a reactor environment. The goal of this paper is the survey and review of piezoelectric elements for use in harsh environments for the ultimate purpose for structural health monitoring (SHM), non-destructive evaluation (NDE) and material characterization (NDMC). The survey comprises the following categories: 1. High-temperature applications with single crystals, thick-film ceramics, and composite ceramics, 2. Radiation-tolerant materials, and 3. Spray-on transducers for harsh-environment applications. In each category the known characteristics are listed, and examples are given of performance in harsh environments. Highlighting some examples, the performance of single-crystal lithium niobate wafers is demonstrated up to 1100 °C. The wafers with the C-direction normal to the wafer plane were mounted on steel cylinders with high-temperature Sauereisen and silver paste wire mountings and tested in air. In another example, the practical use in harsh radiation environments aluminum nitride (AlN) was found to be a good candidate operating well in two different nuclear reactors. The radiation hardness of AlN was evident from the unaltered piezoelectric coefficient after a fast and thermal neutron exposure in a nuclear reactor core (thermal flux = 2.12 × 10 ncm; fast flux 2 (>1.0 MeV) = 4.05 × 10 ncm; gamma dose rate: 1 × 10 r/h; temperature: 400-500 °C). Additionally, some of the high-temperature transducers are shown to be capable of mounting without requiring coupling material. Pulse-echo signal amplitudes (peak-to-peak) for the first two reflections as a function of the temperature for lithium niobate thick-film, spray-on transducers were observed to temperatures of about 900 °C. Guided-wave send-and-receive operation in the 2-4 MHz range was demonstrated on 2-3 mm thick Aluminum (6061) structures for possible field deployable applications where standard ultrasonic coupling media do not survive because of the harsh environment. This approach would benefit steam generators and steam pipes where temperatures are above 210 °C. In summary, there are several promising approaches to ultrasonic transducers for harsh environments and this paper presents a survey based on literature searches and in-house laboratory observations.

摘要

在目前用于健康监测和无损检测的现场应用中,超声换能器主要采用 PZT5-H 作为超声发射和检测的压电元件。这种材料的居里-外斯温度限制了其在约 210°C 的使用范围。一些工业应用需要更高的温度,即在反应堆环境中要求性能时达到 1000-1200°C,可能还有高达 10n/cm 的核辐射。本文的目的是调查和审查用于恶劣环境的压电元件,最终用于结构健康监测 (SHM)、无损评估 (NDE) 和材料特性化 (NDMC)。调查包括以下几类:1. 单晶、厚膜陶瓷和复合陶瓷的高温应用,2. 耐辐射材料,3. 用于恶劣环境的喷涂换能器。在每个类别中,列出了已知的特性,并给出了在恶劣环境中的性能示例。突出一些示例,证明了 C 方向垂直于晶片平面的单晶铌酸锂晶片在高达 1100°C 的温度下的性能。将高温 Sauereisen 和银浆线安装的钢筒安装在晶圆上,并在空气中进行测试。在另一个示例中,发现在恶劣辐射环境中,氮化铝 (AlN) 是一种很好的候选材料,在两个不同的核反应堆中运行良好。在核反应堆堆芯中进行快速和热中子辐照后,AlN 的压电系数没有变化,这证明了其辐射硬度(热通量=2.12×10 ncm;快通量 2(>1.0 MeV)=4.05×10 ncm;γ剂量率:1×10 r/h;温度:400-500°C)。此外,一些高温换能器被证明可以在不需要耦合材料的情况下安装。观察到铌酸锂厚膜、喷涂换能器的第一个和第二个反射的脉冲回波信号幅度(峰峰值)随温度升高到约 900°C。在 2-3mm 厚的铝(6061)结构中演示了 2-4MHz 范围内的导波发送和接收操作,这可能适用于标准超声耦合介质因恶劣环境而无法生存的现场可部署应用。这种方法将有益于蒸汽发生器和蒸汽管道,因为这些地方的温度高于 210°C。总之,有几种用于恶劣环境的超声换能器的有前途的方法,本文基于文献搜索和内部实验室观察提出了一项调查。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01b5/6864754/a70ccae4e964/sensors-19-04755-g001.jpg

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