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Determination of Thickness of Silver Coatings on Brass by Measuring the Impedance of a Thin Elliptic Coil

机译:通过测量薄椭圆线圈的阻抗来确定黄铜上的银涂层的厚度

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摘要

To measure the impedance of a thin elliptically shaped coil, in presence of a flat plate with a coat of metal, can be an instrument for determination of the cladding thickness. An electromagnetic field from the coil is then forced to the object, producing eddy currents inside the object. These are influenced by the characteristics of the object and the coil and give rise to an impedance change, which can be detected and correlated to the thickness of the coating. An electromagnetic model accounting for the impedance of the elliptic coil with different values on the numerical eccentricity and the coating thickness is described. The model is based on a dyadic Green function formulation of the problem from which the electric field and hence the impedance is evaluated by utilizing the method of scattering super position. Numerical calculations based on the model and experimental measurements have been taken. An example shows how the model can be used to model a brass surface with a coat of silver to find expected impedance as function of the coating thickness
机译:为了测量薄椭圆形线圈的阻抗,可以使用带有金属涂层的平板来确定包层厚度。然后,来自线圈的电磁场被迫施加到物体上,从而在物体内部产生涡流。这些受物体和线圈特性的影响,并引起阻抗变化,该阻抗变化可以被检测到并与涂层的厚度相关。描述了一个电磁模型,该模型考虑了椭圆线圈的阻抗,在数值偏心率和涂层厚度上具有不同的值。该模型基于问题的二进式格林函数公式,可以通过使用散射超级位置的方法从中评估电场,从而评估阻抗。已经基于模型和实验测量值进行了数值计算。一个示例显示了如何使用该模型对带有银涂层的黄铜表面进行建模,以找到与涂层厚度有关的预期阻抗

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