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Microwaves used for determining fatigue and surface crack features on metal surfaces

机译:微波用于确定金属表面的疲劳和表面裂纹特征

摘要

A method and apparatus for determining fatigue/surface crack features on metal surfaces is disclosed wherein the cracks may be empty, filled, or covered with a dielectric (e.g., paint). The present invention includes a microwave waveguide having an aperture for scanning over a surface and thereby characterizing changes in a standing wave within the waveguide when a crack is scanned. In particular, crack related data resulting from standing wave perturbations can be analyzed for determining crack geometric features such as crack width, crack depth, crack length and crack tips. These features are determinable with high precision in comparison to the size of the aperture. When locating and/or sizing the geometric features of a crack, voltage changes induced by higher order modes generated by various orientations of the crack in relation to the aperture are utilized for generating the crack related data. Further, estimates are provided as to the accuracy of a location and/or size estimate for the crack geometric features. The present invention is particularly useful for repair of steel bridges, plains, turbines and other metallic structures subject to surface fatigue cracks.
机译:公开了一种用于确定金属表面上的疲劳/表面裂纹特征的方法和设备,其中所述裂纹可以是空的,填充或覆盖有电介质(例如,油漆)。本发明包括一种微波波导,该微波波导具有用于在表面上扫描的孔,从而在扫描裂缝时表征波导内驻波的变化。特别是,可以分析由驻波扰动产生的与裂纹相关的数据,以确定诸如裂纹宽度,裂纹深度,裂纹长度和裂纹尖端之类的裂纹几何特征。与孔的尺寸相比,可以高精度确定这些特征。当对裂纹的几何特征进行定位和/或确定尺寸时,利用由裂纹相对于孔的各种取向产生的高阶模引起的电压变化被用于生成裂纹相关数据。此外,提供关于裂纹几何特征的位置和/或尺寸估计的准确性的估计。本发明对于修复遭受表面疲劳裂纹的钢桥,平原,涡轮机和其他金属结构特别有用。

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