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Application of Projection Methods of Multivariate Data Analysis in Eddy Current Testing of Materials

机译:在材料涡流测试中的多变量数据分析投影方法的应用

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The paper considers the applicability of projection methods of multivariate data analysis to discriminate between the factors that simultaneously affect the results of multi-frequency eddy current testing of nonmagnetic metals and alloys. Measurements were carried out for copper, magnesium, aluminum alloy and bronze specimens with different electrical conductivity equal to 57, 22, 16 and 7.5 S/m, respectively. The measured probe impedance changes were used to plot hodographs within the frequency range from 100 Hz to 6.4 kHz. The gap width between an attachable parametric probe and the specimen surface was specified using dielectric spacers within the range from 0 to 1 mm. The principal component analysis applied to experimental hodographs allowed us to safely discriminate between the influence of such factors as electrical conductivity of the material and gap width. The proposed approach to discriminating between individual factors that strongly affect eddy current measurement results is an enhancement in eddy current testing of materials.
机译:本文考虑了多元数据分析投影方法的适用性,以区分同时影响非磁性金属和合金的多频涡流试验结果的因素。对铜,镁,铝合金和青铜试样进行测量,具有等于57,22,16和7.5 s / m的不同电导率。测量的探针阻抗变化用于在100Hz至6.4kHz的频率范围内绘制函数镜。使用0至1mm范围内的介电间隔物指定可附接参数探针和样本表面之间的间隙宽度。应用于实验性声音的主要成分分析使我们能够在材料和间隙宽度的导电性中安全地区分这些因素的影响。所提出的方法来区分强烈影响涡流测量结果的个体因素是对材料涡流测试的增强。

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