首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers & Short Notes >Using Mathematical Methods to Compensate for Problems Resulting from Differences in Material Properties for Remote-Field Eddy Current Testing in Tubes
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Using Mathematical Methods to Compensate for Problems Resulting from Differences in Material Properties for Remote-Field Eddy Current Testing in Tubes

机译:使用数学方法来补偿由于材料特性差异而引起的问题,从而在管道中进行远场涡流测试

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摘要

Remote-field eddy current (RFEC) testing is a nondestructive testing method. It has been comprehensively applied to detect wall loss in ferromagnetic tubes. According to our experience, the problem of variations in a material's electromagnetic characteristics often occurred in practice in carbon steel tubes. Therefore, if we fail to compensate for changes in electromagnetic characteristics during inspection, an error of evaluation will be generated. This study applied the skin-depth theory of RFEC and geometric relationships on the voltage plane to derive a compensatory model using a mathematical methodology. The new evaluation curve established on the basis of this mathematical methodology compensates for the error contributed by changing electromagnetic characteristics in the tube. The method offered by this study has proved to be reasonable, feasible and acceptable in terms of its mathematical derivation and in comparison with experimental result.
机译:远场涡流(RFEC)测试是一种无损测试方法。它已被广泛应用于检测铁磁管的壁损。根据我们的经验,碳电磁管中实际上会发生材料电磁特性变化的问题。因此,如果我们无法在检查过程中补偿电磁特性的变化,则会产生评估误差。这项研究应用了RFEC的趋肤深度理论和电压平面上的几何关系,使用数学方法得出了补偿模型。在此数学方法基础上建立的新评估曲线可补偿由于管中电磁特性变化而引起的误差。从数学推导和与实验结果的比较来看,本研究提供的方法被证明是合理,可行和可接受的。

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