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Estimating Ti-6Al-4V coating thickness over SS304 substrate using simulated single-frequency apparent eddy current conductivity

机译:使用模拟单频视在涡流电导率估算SS304基板上的Ti-6Al-4V涂层厚度

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Eddy current technology brings forward many advantages which can offer attractive solutions to assess metallic coating thicknesses over nonmagnetic metals. Available single and multi-frequency based impedance models are sensitive to lift-off deviations from those measured over the calibration blocks as well as different combinations of metallic coatings over nonmagnetic metal substrates. Apparent eddy current conductivity (AECC) spectroscopy has proven to overcome these drawbacks and offer a one order of magnitude improvement in estimating coating thickness in the lift-off range of ±25.4 μm. However, this technique at its present state is highly impractical due the requirement of a large coil diameter to meet the plane-wave approximation. This study simplifies the previous AECC technology to operate at a single frequency, which is validated using COMSOL simulations in agreement with the plane-wave approximation to estimate coating thicknesses, thus making this technique more practical.
机译:涡流技术带来了许多优势,这些优势可以提供有吸引力的解决方案,以评估金属涂层的厚度超过非磁性金属。可用的基于单频和多频的阻抗模型对与在校准模块上测量的剥离偏差以及非磁性金属基材上的金属涂层的不同组合的剥离偏差敏感。事实证明,表观涡流电导率(AECC)光谱技术克服了这些缺点,并在估计涂层厚度在±25.4μm的范围内提供了一个数量级的改进。但是,由于需要大的线圈直径以满足平面波近似,因此该技术在目前的状态下是非常不切实际的。这项研究简化了以前的以单一频率运行的AECC技术,该技术通过COMSOL仿真与平面波近似法(用于估计涂层厚度)的一致性进行了验证,从而使该技术更加实用。

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