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The Affection of Pipes Characteristics to Exciting Frequency for Guided Waves NDT

机译:导波无损检测中管道特性对激励频率的影响

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In the application of guided waves NDT, the selection of exciting frequency is not only related with the setup of sensor, but also with the characteristics of pipe's structure and material. In this paper, the characteristic of guided waves propagation in pipes that L(0,1) and L(0,2) have a cutoff frequency are respectively discussed, and the calculation formulas of their cutoff frequency are given. The varied relationship between the cutoff frequency of L(0,1) and L(0,2) mode guide waves, the outer diameter and wall thickness of pipes are discussed, respectively. For a given steel pipe, experiments are carried out by selection of different exciting frequency. The results show that the 'low-pass' type cutoff frequency of L(0,1) and 'high-pass' type cutoff frequency of L(0,2) are reduced with increasing of outer diameter of pipes, and the 'low-pass' type cutoff frequency of L(0,1) and 'high-pass' type cutoff frequency of L(0,2) are initially increased with increasing of wall thickness of pipes, but the increased amplitude is slowly changed a little. When the outer diameter of pipes is more than 351mm, both of the cutoff frequencies are not changed with varied of wall thickness of pipes. The experimental results are well agreed with theoretical computation of selected exciting frequency for pipes guided waves NDT.
机译:在导波无损检测的应用中,激励频率的选择不仅与传感器的设置有关,而且与管道结构和材料的特性有关。本文分别讨论了L(0,1)和L(0,2)具有截止频率的导波在管道中的传播特性,并给出了其截止频率的计算公式。分别讨论了L(0,1)和L(0,2)模式导波的截止频率,管道的外径和壁厚之间的变化关系。对于给定的钢管,通过选择不同的激励频率进行实验。结果表明,随着管道外径的增大,L(0,1)的“低通”型截止频率和L(0,2)的“高通”型截止频率减小, L(0,1)的“通过”型截止频率和L(0,2)的“高通”型截止频率最初随着管道壁厚的增加而增加,但增加的幅度会缓慢变化。当管道的外径大于351mm时,两个截止频率都不会随管道壁厚的变化而变化。实验结果与管道导波无损检测的选定激励频率的理论计算非常吻合。

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