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Study on metal tag identification impedance characteristics based on eddy testing

机译:基于涡流测试的金属标签识别阻抗特性研究

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A crack is definitely harmful in metallic components, yet it is maybe useful in a metal barcode label (MBL) application which is a special barcode made up of tiny notches and spaces sculptured in the surface of the un-supporting parts of a metallic component. The obvious different requirement from the eddy current testing (ECT) applied in a non-destructive evaluating (NDE) is that an ECT must distinguish elements (notches and spaces) with high resolution for the high barcode density in a MBL. To achieve the optimal detection performance, the electromagnetic signals induced by MBLs must be studied under various conditions. In this paper, the impedance change of coils with various geometries and electromagnetic (EM) parameters has been given caused by the elements with various geometries and EM parameters, based on the ECT technique. Also the coverage is investigated, in which an element can effect on the coil impedance. The resolution of the MBL is defined and the characteristics of the coil impedance change caused by a MBL containing multiple elements have been analyzed.
机译:裂纹在金属部件中绝对是有害的,但在金属条形码标签(MBL)应用中可能很有用,该应用程序是一种特殊的条形码,由微小的缺口和在金属部件的非支撑部件表面上雕刻的空间组成。与用于无损评估(NDE)的涡流测试(ECT)明显不同的要求是,ECT必须区分高分辨率的元素(凹口和空格),以实现MBL中的高条形码密度。为了获得最佳的检测性能,必须在各种条件下研究MBL感应的电磁信号。在本文中,基于ECT技术,给出了具有各种几何形状和电磁参数的元件引起的具有各种几何形状和电磁参数的线圈的阻抗变化。还研究了覆盖范围,其中一个元素会影响线圈阻抗。定义了MBL的分辨率,并分析了由包含多个元素的MBL引起的线圈阻抗变化的特性。

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