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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Scattering of the Fundamental Shear Guided Wave From a Surface-Breaking Crack in Plate-Like Structures
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Scattering of the Fundamental Shear Guided Wave From a Surface-Breaking Crack in Plate-Like Structures

机译:板状结构中表面破裂裂纹对基本剪切导波的散射

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Cracks in critical sections of steel structures pose a major safety concern in many industries. Existing high-frequency ultrasonic techniques offer high detection sensitivity to cracks but have poor inspection volume coverage, limiting their practical use for monitoring large areas of structures. Low-frequency guided waves have relatively high inspection area coverage and are currently used in pipeline monitoring for corrosion defects but face challenges in detecting critical cracks that often cause over an order of magnitude lower cross-sectional area loss. A study of scattering from small cracks in a thin-walled (12 mm) section with an incident plane SH0 guided wave at higher frequencies but remaining below the SH1 cutoff is presented here using quasi-static approximations, the aim being to explore the possibility of using this regime for crack growth monitoring applications. A 3-D solution was developed using dimensional analysis, which showed that the SH0 reflection ratio is proportional to frequency to the power 1.5, to the effective crack size cubed, and is inversely proportional to the plate thickness and to the square root of the distance from the crack to the receiving sensor. Finite element analysis was used to validate these power coefficients and to calculate the proportionality constant. The results show that a higher inspection frequency offers improved sensitivity, but the validity of the results here is limited to the SH1 cutoff frequency. The predicted 3-D solution was validated by measurements on a pipe with a progressively grown notch.
机译:在许多行业中,钢结构关键部分的裂纹是主要的安全隐患。现有的高频超声技术对裂缝具有很高的检测灵敏度,但检查体积覆盖率很低,限制了它们在监视大面积结构中的实际应用。低频导波具有相对较高的检查区域覆盖率,并且当前用于管道监控中的腐蚀缺陷,但是在检测关键裂纹时面临挑战,这些裂纹通常会导致较低的横截面面积损失。本文使用准静态近似方法研究了薄壁(12 mm)截面中细裂纹的散射,该入射壁具有较高频率的入射平面SH0导波,但仍低于SH1截止值,目的是探索产生散射的可能性。使用此方案进行裂纹扩展监控应用。使用尺寸分析开发了一种3-D解决方案,该解决方案表明SH0反射率与频率成正比,与功率1.5,立方有效裂纹尺寸成正比,与板厚和距离的平方根成反比从裂缝到接收传感器。使用有限元分析来验证这些功率系数并计算比例常数。结果表明,较高的检查频率可提高灵敏度,但此处结果的有效性仅限于SH1截止频率。预测的3-D解决方案通过在带有逐渐增长的缺口的管道上进行测量来验证。

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