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低频轴对称超声导波与任意弯曲角度和一般弯曲半径管道弯曲的相互作用。

Interaction of low-frequency axisymmetric ultrasonic guided waves with bends in pipes of arbitrary bend angle and general bend radius.

机构信息

Centre for Nondestructive Evaluation, Department of Mechanical Engineering, Indian Institute of Technology Madras, Chennai, Tamil Nadu 600036, India.

Centre for Nondestructive Evaluation, Department of Mechanical Engineering, Indian Institute of Technology Madras, Chennai, Tamil Nadu 600036, India.

出版信息

Ultrasonics. 2014 Mar;54(3):801-8. doi: 10.1016/j.ultras.2013.10.007. Epub 2013 Oct 21.

Abstract

The use of ultrasonic guided waves for the inspection of pipes with elbow and U-type bends has received much attention in recent years, but studies for more general bend angles which may also occur commonly, for example in cross-country pipes, are limited. Here, we address this topic considering a general bend angle φ, a more general mean bend radius R in terms of the wavelength of the mode studied and pipe thickness b. We use 3D Finite Element (FE) simulation to understand the propagation of fundamental axisymmetric L(0,2) mode across bends of different angles φ. The effect of the ratio of the mean bend radius to the wavelength of the mode studied, on the transmission and reflection of incident wave is also considered. The studies show that as the bend angle is reduced, a progressively larger extent of mode-conversion affects the transmission and velocity characteristics of the L(0,2) mode. However the overall message on the potential of guided waves for inspection and monitoring of bent pipes remains positive, as bends seem to impact mode transmission only to the extent of 20% even at low bend angles. The conclusions seem to be valid for different typical pipe thicknesses b and bend radii. The modeling approach is validated by experiments and discussed in light of physics of guided waves.

摘要

近年来,利用超声波导波对带有弯头和 U 型弯的管道进行检测受到了广泛关注,但对于更常见的一般弯曲角度(例如在跨接管道中)的研究则有限。在这里,我们考虑了一般弯曲角度φ、更一般的平均弯曲半径 R(相对于所研究模式的波长)和管道厚度 b,从而解决了这个问题。我们使用三维有限元(FE)模拟来了解不同角度φ的弯头处基本轴对称 L(0,2)模式的传播。还考虑了研究模式的平均弯曲半径与波长之比对入射波的透射和反射的影响。研究表明,随着弯曲角度的减小,模式转换的程度逐渐增大,这会影响 L(0,2)模式的传输和速度特性。然而,对于弯曲管道的检测和监测,导波的潜力仍然是积极的,因为即使在低弯曲角度下,弯曲似乎仅对模式传输产生 20%的影响。这些结论似乎对不同典型的管道厚度 b 和弯曲半径都有效。该建模方法通过实验进行了验证,并根据导波物理进行了讨论。

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