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首页> 外文期刊>Engineering >Study of an Ultrasonic Probe Installed into a Small Diameter-Pipe Using an Electromagnetic Acoustic Transducer
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Study of an Ultrasonic Probe Installed into a Small Diameter-Pipe Using an Electromagnetic Acoustic Transducer

机译:使用电磁声换能器安装到小直径管中的超声波探头

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Metal pipes having an inner diameter of about 25 mm or less are frequently used as heat exchangers for power plants, gas pipes, and water pipes. However, erosion and corrosion due to long-term use may cause serious accidents, such as steam leaks, resulting in economic loss and environmental pollution. Therefore, inspection of the entire length and thickness before shipping or monitoring during operation are important technologies. However, no inspection technology including the inside of the wall thickness has been developed. The purpose was to develop an ultrasonic probe that can inspect the inner and outer surfaces from the inside of the pipe at the same time. The developed ultrasonic probe is based on an electromagnetic ultrasonic transducer (EMAT) that does not require a couplant and is then easy to install in a pipe. The EMAT for the longitudinal and for the transverse vibration mode guided wave are connected in series in order to take into account the variety of defects. First, the EMAT was successfully developed for each mode. That is, it was conducted by using the magnetostrictive effect for the longitudinal mode type and by using the Lorentz force for the transverse mode type, and evaluated to improve the performance. The reflected signal from a notch defect was then evaluated in the state that each EMAT was connected in series using any artificial defects and found to be able to detect any notches with about 10% depth or about 15% circumferential length.
机译:内径为约25mm或更小的金属管经常用作发电厂,气体管和水管的热交换器。然而,由于长期使用导致的侵蚀和腐蚀可能导致严重事故,例如蒸汽泄漏,导致经济损失和环境污染。因此,在运输或监控过程中检查整个长度和厚度是重要的技术。然而,没有开发出包括壁厚内部的检查技术。目的是开发一种超声波探头,可以同时检查管道内外的内表面和外表面。开发的超声波探头基于电磁超声换能器(EMAT),其不需要耦合剂,然后易于安装在管道中。纵向和横向振动模式引导波的EMAT串联连接,以考虑各种缺陷。首先,为每种模式成功开发EMAT。也就是说,通过对纵向模式类型的磁致伸缩效果进行进行,并通过使用横向模式类型的洛伦兹力,并评估以提高性能。然后在使用任何人工缺陷串联连接每个EMAT的状态下评估来自凹口缺陷的反射信号,并发现能够检测到具有约10%深度或约15%的圆周长度的任何凹口。

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