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首页> 外文期刊>Measurement Science & Technology >One-dimensional current imaging based on an analytical solution of magnetic field distribution: applications to non-destructive testing of reinforcing bars in concrete
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One-dimensional current imaging based on an analytical solution of magnetic field distribution: applications to non-destructive testing of reinforcing bars in concrete

机译:基于磁场分布解析解决方案的一维电流成像:在混凝土中钢筋的无损检测中的应用

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摘要

The condition of steel components embedded within reinforced and pre-stressed concrete is one of the most important factors in determining the useful life of structures built from this material. Civil engineers often use magnetic methods to determine the approximate depth and diameter of steel bars and tendons. However, due to the magnetic field distribution around conductors, direct two-dimensional imaging by such methods is subject to severe blurring. A precise deconvolution expression has been developed that eliminates blurring in the one-dimensional case. By taking the Fourier transform of the magnetic field disribution, an analytical expression has been obtained for the spatial frequency response. The deconvolution algorithm was applied in its discrete form to the measurement profile of a magnetic field, in which several wire loops, representing reinforcement bars, were excited with an AC voltage. The deconvolution yielded a highly accurate reconstruction. Further work suggests that this method could be extended to the two-dimensional case. The problem of measurement misalignment in relation to the discrete-space Fourier transform is also addressed.
机译:嵌入钢筋混凝土和预应力混凝土中的钢部件的状况是确定使用这种材料建造的结构的使用寿命的最重要因素之一。土木工程师经常使用磁性方法来确定钢筋和钢筋的近似深度和直径。然而,由于导体周围的磁场分布,通过这种方法进行的直接二维成像会受到严重的模糊。已经开发出一种精确的反卷积表达式,可以消除一维情况下的模糊。通过对磁场分布进行傅里叶变换,获得了空间频率响应的解析表达式。反卷积算法以离散的形式应用于磁场的测量曲线,其中代表交流钢筋的数个线圈通过交流电压激励。去卷积产生了高度精确的重构。进一步的工作表明该方法可以扩展到二维情况。还解决了与离散空间傅立叶变换有关的测量失准问题。

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