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In-Line Ultrasonic Monitoring for Sediments Stuck on Inner Wall of a Polyvinyl Chloride Pipe

机译:对聚氯乙烯管内壁上卡住的沉积物在线超声波监测

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This research verified the applicability and effectiveness of the ultrasonic monitoring of sediments stuck on the inner wall of polyvinyl chloride (PVC) pipes. For identifying the transmittance of acoustic energy and the speed of sound in the PVC material, the pulse-echo ultrasonic testing was conducted for PVC sheets of different thicknesses. To simulate the solidified sediment, the hot melt adhesive (HMA) was covered on the inner wall of the PVC pipe in different heights. From the experiment, the speeds of sound in the PVC and the HMA materials were obtained as about 2258 and 2000 m/s, respectively. The thickness of the materials was calculated through the signal processing such as taking the absolute value and low pass filtering, the echo detection, and the measurement of the time of flight. The errors between actual and measured thicknesses of PVC sheets were below 5%. In the case of the substance stuck on the inner wall, the errors were below 2.5%. Since the pulse-echo ultrasonic inspection is available on the outer surface and its measurement accuracy was over 95%, it can be an efficient and effective in-service structural health monitoring for the sediment on the wall of PVC pipes.
机译:本研究验证了沉积物上卡在聚氯乙烯(PVC)管内壁上的超声波监测的适用性和有效性。为了识别声能的透射率和PVC材料中的声速,对不同厚度的PVC片进行脉冲回波超声波测试。为了模拟凝固的沉积物,在不同高度的PVC管的内壁上覆盖热熔粘合剂(HMA)。从实验中,PVC和HMA材料的声音分别为约2258和2000m / s。通过信号处理计算材料的厚度,例如采用绝对值和低通滤波,回声检测和飞行时间的测量。 PVC片材的实际和测量厚度之间的误差低于5%。在内壁上卡住的物质的情况下,误差低于2.5%。由于脉冲回波超声检查在外表面上可用,并且其测量精度超过95%,因此对于PVC管道墙壁上的沉积物来说,这可能是一种有效且有效的在职结构健康监测。

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