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Eddy-current imaging of buried cracks, by inverting field data

机译:通过反转场数据对埋藏裂缝进行涡流成像

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A novel method for imaging flaws, based on the inversion of eddy-current data, has been demonstrated. A thin subsurface slot was manufactured in an aluminum plate. Oscillating current was injected into the plate, and the magnetic field was sampled with a Hall transducer scanned over the blind face. An integral operator defines an analytical relationship between the distribution of electric dipoles excited on the slot faces and the scattered field. The relationship was inverted using singular value decomposition to obtain the dipole density as a representation of the slot in the form of an image. Enhanced spatial information on the flow may be obtained by performing the inversion at several individual frequencies, and constructing a composite image.
机译:已经证明了一种基于涡流数据反演的缺陷成像新方法。在铝板上制造了一个细小的表面槽。将振荡电流注入板中,并通过在盲面上扫描的霍尔传感器对磁场进行采样。积分算子定义了在槽面上激发的电偶极子的分布与散射场之间的解析关系。使用奇异值分解将关系反转,以获得偶极子密度,以图像的形式表示缝隙。通过在几个单独的频率上执行反演并构建合成图像,可以获得有关流的增强空间信息。

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