Material Characterization by Electrical Conductivity Assessment Using Impedance Analysis

Guillermo Cosarinsky , Javier Fava , Marta Ruch , Adrián Bonomi
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引用次数: 6

Abstract

Eddy currents non destructive testing is a well known method for material characterization, which is sensitive to different properties of conductive materials, such as: electrical conductivity, magnetic permeability, phase proportions, hardness, size, discontinuities, etc. These properties alter the flow of the currents induced in the sample under test by an AC magnetic field. One of the most common applications of the method is the evaluation of electrical conductivity, by a procedure that requires at least two reference standards, and is not valid for very thin samples (less than 1 mm, roughly). In this paper a variation of that procedure is proposed, in which only one reference standard is needed. The procedure allows for the evaluation of conductivities in the range 0.9 - 59 MS/m on planar samples with thickness greater than 30 μm.

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利用阻抗分析进行电导率评估的材料表征
涡流无损检测是一种众所周知的材料表征方法,它对导电材料的不同性能非常敏感,如:电导率、磁导率、相比、硬度、尺寸、不连续度等。这些特性改变了在交流磁场作用下被测样品中产生的电流的流动。该方法最常见的应用之一是电导率的评估,其过程需要至少两个参考标准,并且对非常薄的样品(大约小于1mm)无效。本文提出了该程序的一种变体,其中只需要一个参考标准。该程序允许在厚度大于30 μm的平面样品上评估0.9 - 59 MS/m范围内的电导率。
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