首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2006 vol.5: High-Pressure Technology... >Long Range Ultrasonic Guided Wave Focusing in Pipe for Small Defect Detection, Location and Circumferential Length Analysis
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Long Range Ultrasonic Guided Wave Focusing in Pipe for Small Defect Detection, Location and Circumferential Length Analysis

机译:管道中的远程超声波导波聚焦,用于小缺陷检测,定位和周长分析

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摘要

Ultrasonic guided wave focusing techniques in steel pipe are used to detect and measure the axial as well as circumferential locations of three differently shaped defects (planar saw cuts, a volumetric through-wall hole, and a volumetric elliptical corrosion). The axial location of a defect was obtained by measuring the arrival time of the defect echo. Defect circumferential location was determined by focusing at 44 circumferential positions around the pipe at a specific distance. The maximum amplitude of the defect echo was recorded with respect to each circumferential focal position in producing an angular profile of the reflected wave. The maximum amplitude of this experimental angular profile occurs at the angle of the defect circumferential location. The energy impingement onto the defect for each focusing position can be calculated from the focused angular profile and the defect cross sectional area. Comparison between the experimental angular profiles and the theoretical ones provides us with a good estimate of the defect circumferential size.
机译:钢管中的超声波导波聚焦技术用于检测和测量三个不同形状的缺陷(平面锯切,容积式通孔和容积式椭圆腐蚀)的轴向和圆周位置。通过测量缺陷回波的到达时间来获得缺陷的轴向位置。缺陷的圆周位置是通过围绕管道以特定距离聚焦在44个圆周位置上来确定的。相对于每个圆周焦点位置记录缺陷回波的最大幅度,以产生反射波的角度分布。该实验角度轮廓的最大幅度出现在缺陷圆周位置的角度处。可以从聚焦角轮廓和缺陷横截面面积计算出每个聚焦位置对缺陷施加的能量。实验角轮廓与理论角轮廓之间的比较为我们提供了对缺陷圆周尺寸的良好估计。

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