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Characteristics of high-temperature equipment monitoring using dry-coupled ultrasonic waveguide transducers

机译:使用干式耦合超声波波导传感器的高温设备监控特性

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Dry-coupled ultrasonic waveguide transducers enable the long-term monitoring of the critical mechanical components working in high temperature environment. In these systems, waveguide units are applied to isolate the vulnerable piezoelectric elements from the harsh measurement zones. However, the disturbance cannot be overcome, which may arise from inevitably temperature fluctuation and the indirect measurement in long term monitoring. In the present research, a high temperature experimental system using dry-coupled ultrasonic waveguide transducers is investigated. The disturbances caused by this measurement system are studied in the heating period, holding period and cooling period, respectively. Moreover, the correlations between the group velocities, dispersion curves, signal amplitudes, waveforms under temperature variations are investigated. At last, the dispersion characteristics of the shear horizontal wave in high temperature stainless steel plate are analyzed. This work strives to pave a solid foundation for the application of SH waves to online monitoring of high-temperature equipment using dry-coupled ultrasonic waveguide transducers.
机译:干耦合超声波波导换能器使得能够长期监测在高温环境中工作的关键机械部件。在这些系统中,施加波导单元以将易受伤害的压电元件与苛刻的测量区域隔离。然而,不能克服扰动,这可能因不可避免的温度波动和长期监测中的间接测量而产生。在本研究中,研究了使用干式耦合超声波泛浦换能器的高温实验系统。在加热时段,保持周期和冷却时段中研究了该测量系统引起的扰动。此外,研究了组速度,色散曲线,信号幅度,在温度变化下的波形之间的相关性。最后,分析了高温不锈钢板中剪切水平波的分散特性。这项工作努力为使用干式超声波波导传感器施加SH波的高温设备的在线监测铺平坚实的基础。

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