首页> 外文会议>ASME Pressure Vessels and Piping Conference >AN IMPROVED PHASED ARRAY ULTRASONIC TESTING TECHNIQUE FOR THICK-WALL POLYETHYLENE PIPE USED IN NUCLEAR POWER PLANT
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AN IMPROVED PHASED ARRAY ULTRASONIC TESTING TECHNIQUE FOR THICK-WALL POLYETHYLENE PIPE USED IN NUCLEAR POWER PLANT

机译:一种改进的核电厂厚壁聚乙烯管的分阶段阵列超声波检测技术

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With the application of High-density polyethylene (HDPE) pipe with thick wall in nuclear power plant (NPP), great attention has been paid to the safety of the pipeline's joints, which can be assessed by phased array ultrasonic testing (PAUT). PAUT creates constructive interference of acoustic waves to generate focused beams according to delay law based on time-of-flight. However, due to the existence of acoustic attenuation and dispersion, waveform distortion occurs when ultrasonic pulse propagates in HDPE, which will accumulate with the increase of propagation distance, and then results in imaging errors. In this paper, the relationship of acoustic attenuation and dispersion in HDPE was obtained by numerical simulation in Field II, which can be verified by the experiment of our previous work. Besides, the investigation of the waveform distortion revealed the linear relation between peak offset and propagation distance. Considering the relation, an improved delay law was proposed to increase the intensity of ultrasonic field. This improved delay law was compared with the conventional one by numerical simulation of ultrasonic field and PAUT experiments, which showed that the improved delay law could increase the image sensitivity.
机译:随着高密度聚乙烯(HDPE)管在核电站(NPP)中具有厚壁的管道(NPP),已经通过分阶段阵列超声波检测(PAUT)来评估了管道关节的安全性的重视。 PAUT创建声波的建设性干扰,以根据基于飞行时间的延迟法产生聚焦光束。然而,由于存在声学衰减和色散,当超声波脉冲在HDPE中传播时发生波形失真,这将随着传播距离的增加而累积,然后导致成像误差。在本文中,通过现场二维数值模拟获得了HDPE中声衰减和分散的关系,可以通过我们以前的工作的实验验证。此外,波形失真的研究显示了峰值偏移和传播距离之间的线性关系。考虑到这一关系,提出了一种改进的延迟律来增加超声波场的强度。将这种改进的延迟法与超声波场和PAUT实验的数值模拟进行了比较,表明改善的延迟法可以增加图像敏感性。

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