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Brazing Coupling Performance of Piezoelectric Waveguide Transducers for the Monitoring of High Temperature Components

机译:压电波导传感器对高温分量监测的钎焊性能

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摘要

Piezoelectric waveguide transducers possess great potential for the online monitoring of high temperature critical components, in order to improve their operational safety. Due to the use of a waveguide bar, the sensory device is not susceptible to high temperature environments, which enables the long-term service of the piezoelectric transducers. However, the coupling between the waveguide bar and the high-temperature component has been proven to be the most important part of the monitoring system. In order to effectively transmit waves through the junction of the waveguide bar and the monitoring target, it is necessary to research a reliable coupling method to connect the waveguide transducers with the host structure. In the present research, the feasibility of brazing coupling for wave propagation through the junction was investigated through experiments. Piezoelectric waveguide transducers were welded using various kinds of brazing filler metals. The experimental results indicate that the coupling effects of the brazing welding depend on the filler metals. At the same time, some filler metals for the effective coupling of the transducer and the target monitoring component were identified. The brazing coupling method was verified that it can non-dispersively and effectively propagate waves into the host structure with much better reliability than the conventional dry coupling approach. Moreover, the high-temperature experimental results show that the brazing-coupled waveguide bar system can work reliably and stably in high temperatures at 300 °C for a long time. This work strives to pave a solid foundation for the application of piezoelectric waveguide transducers for the structural health monitoring of high temperature critical components.
机译:压电波导换能器具有巨大的高温关键部件在线监测的潜力,以提高其操作安全性。由于使用波导杆,感官装置不易受到高温环境的影响,这使得压电换能器的长期服务能够。然而,已经证明了波导条和高温分量之间的耦合是监测系统中最重要的部分。为了有效地通过波导条的连接和监测目标的连接,需要研究可靠的耦合方法,以将波导换能器与主体结构连接。在本研究中,通过实验研究了通过结的波传播钎焊耦合的可行性。使用各种钎焊填充金属焊接压电波导换能器。实验结果表明钎焊焊接的耦合效应取决于填料金属。同时,鉴定了一些用于换能器和靶监测组分的有效耦合的填充金属。验证钎焊耦合方法,使得它可以以与传统的干耦合方法更好地具有更好的可靠性,以便不分散地和有效地传播到宿主结构中。此外,高温实验结果表明,钎焊耦合的波导杆系统可以在300°C的高温下可靠且稳定地在300℃下工作。这种工作致力于为高温关键组分的结构健康监测应用压电波导换能器的固体基础。

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