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Fault detection in small diameter pipes using ultrasonic guided wave technology

机译:使用超声波导波技术的小直径管道故障检测

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Ultrasonic guided wave technology is one of the more recent developments in the field of non-destructive evaluation. In contrast to conventional ultrasonic, this technology requires exposing only the areas where the transducers will be placed, hence requiring minimal insulation removal and excavation for buried pipes. This paper discusses how this technology can be used to detect defects in pipes under different conditions. Here the experiments were performed on small diameter pipes (<5 cm diameter); which were bare pipe, buried pipe and bitumen coated pipe. The results were gathered to see the effectiveness of this technology in detecting defects. Experiments were conducted using two dry coupled piezoelectric transducers, where one of them transmitted guided waves along the pipe and the other received them. The transducers produced tangential displacement, thereby generating the fundamental torsional mode T(0,1). In order to assess whether having multiple transducers has any effect on the resultant waveform, the receiving transducer was rotated around the circumference of the pipe.
机译:超声导波技术是无损评估领域的最新发展之一。与传统的超声技术相比,该技术仅需要暴露换能器的放置区域,因此对埋管的绝缘去除和挖掘要求最少。本文讨论了如何在不同条件下使用该技术检测管道中的缺陷。在这里,实验是在直径小于5厘米的小直径管道上进行的;分别是裸管,埋管和涂沥青管。收集结果以了解该技术在检测缺陷中的有效性。实验是使用两个干耦合压电换能器进行的,其中一个沿管道传输导波,另一个则沿管道传输。换能器产生切向位移,从而产生基本扭转模式T(0,1)。为了评估是否有多个换能器对所得波形产生任何影响,使接收换能器绕管道的圆周旋转。

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