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Critical Excitation of the Fundamental Quasi-Shear Mode Wave in Waveguide Bars for Elevated Temperature Applications

机译:高温应用中导杆中基本准剪切模波的临界激发

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摘要

The safety of critical pressure equipment in elevated temperature is increasingly important. Moreover, the on-line monitoring method is potentially useful to improve their safety. A waveguide bar system can enable monitoring of critical equipment working in elevated temperature using reliable ultrasonic technology. Among the waveguide bar system, the matching mechanism of the transducer and the waveguide bar is crucial to propagate the pure fundamental quasi-shear mode (shorten for SH0*) wave. In the present research, the loading line sources that can excite pure SH0* wave are investigated and the anti-plane shear loading source is selected. The critical values about the geometric dimensions of the junctions between the piezoelectric transducer and the waveguide bar are explored by simulation and experiments. On the condition that the excitation sources satisfy the critical values, the loading can be approximated to an anti-plane shear one to excite the pure SH0* wave. Some waveguide bar systems are designed based on the simulated critical values and some experiments at high temperature are carried out. The experimental results verify that the designed waveguide bar systems can excite the pure SH0* wave at elevated temperatures, which verify the reliability of the simulated critical results.
机译:高温下的临界压力设备的安全性越来越重要。此外,在线监视方法可能对提高其安全性很有用。波导棒系统可以使用可靠的超声技术监控在高温下工作的关键设备。在波导棒系统中,换能器与波导棒的匹配机制对于传播纯基本准剪切模式(缩短SH0 *)波至关重要。在本研究中,研究了能够激发纯SH0 *波的加载线源,并选择了反平面剪切加载源。通过仿真和实验探索了有关压电换能器与波导棒之间结的几何尺寸的临界值。在激发源满足临界值的条件下,可以将载荷近似于一个反平面剪切,以激发纯SH0 *波。根据仿真的临界值设计了一些波导棒系统,并在高温下进行了一些实验。实验结果证明,设计的波导棒系统可以在高温下激发纯SH0 *波,从而验证了模拟临界结果的可靠性。

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