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导波在涂覆粘弹性材料的弹性空心圆柱体内的传播。

Guided wave propagation in an elastic hollow cylinder coated with a viscoelastic material.

作者信息

Barshinger James N, Rose Joseph L

机构信息

General Electric Global Research Center, Nondestructive Technologies Lab, Niskayuna, NY, USA.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2004 Nov;51(11):1547-56. doi: 10.1109/tuffc.2004.1367496.

Abstract

The propagation of ultrasonic guided waves in an elastic hollow cylinder with a viscoelastic coating is studied. The principle motivation is to provide tools for performing a guided wave, nondestructive inspection of piping and tubing with viscoelastic coatings. The theoretical boundary value problem is solved that describes the guided wave propagation in these structures for the purpose of finding the guided wave modes that propagate with little or no attenuation. The model uses the global matrix technique to generate the dispersion equation for the longitudinal modes of a system of an arbitrary number of perfectly bonded hollow cylinders with traction-free outer surfaces. A numerical solution of the dispersion equation produces the phase velocity and attenuation dispersion curves that describe the nature of the guided wave propagation. The attenuation dispersion curves show some guided wave modes that propagate with little or no attenuation in the coated structures of interest. The wave structure is examined for two of the modes to verify that the boundary conditions are satisfied and to explain their attenuation behavior. Experimental results are produced using an array of transducers positioned circumferentially around the pipe to evaluate the accuracy of the numerical solution.

摘要

研究了超声导波在具有粘弹性涂层的弹性空心圆柱中的传播。主要动机是提供用于对带有粘弹性涂层的管道进行导波无损检测的工具。为了找到传播时衰减很小或没有衰减的导波模式,求解了描述这些结构中导波传播的理论边值问题。该模型使用全局矩阵技术来生成任意数量具有无牵引外表面的完美粘结空心圆柱系统纵向模式的色散方程。色散方程的数值解产生了描述导波传播特性的相速度和衰减色散曲线。衰减色散曲线显示了一些在感兴趣的涂层结构中传播时衰减很小或没有衰减的导波模式。对其中两种模式的波结构进行了研究,以验证边界条件是否满足并解释它们的衰减行为。使用围绕管道圆周定位的换能器阵列产生实验结果,以评估数值解的准确性。

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