论文标题
使用电磁诱导和磁盖磁力计检测和表征导电物体
Detection and characterisation of conductive objects using electromagnetic induction and a fluxgate magnetometer
论文作者
论文摘要
在导电物体中诱导的涡流可用于定位金属物体,并可以在没有物理接触的情况下评估材料的性质。该技术可用于材料识别,例如测量电导率和区分样品是磁性还是非磁性。在这项研究中,我们进行了实验和数值模拟,以评估导电物体。当将导电物体放置在主振荡磁场中时,我们研究了诱导涡流产生的二级磁场的频率依赖性。根据电磁理论,导电物体在不同频率下具有不同的响应。使用由通量磁力计和产生频率高达1 kHz的磁场组成的台式设置,我们能够使用电磁诱导原理检测铝和钢缸。将实验结果与数值模拟进行了比较,我们发现总体上是一个很好的一致性。该技术可以使用对象使用其电导率和磁渗透性来识别和表征。
Eddy currents induced in electrically conductive objects can be used to locate metallic objects as well as to assess the properties of materials non-destructively without physical contact. This technique is useful for material identification, such as measuring conductivity and for discriminating whether a sample is magnetic or non-magnetic. In this study, we carried out experiments and numerical simulations for the evaluation of conductive objects. We investigated the frequency dependence of the secondary magnetic field generated by induced eddy currents when a conductive object is placed in a primary oscillating magnetic field. According to the electromagnetic theory, conductive objects have different responses at different frequencies. Using a table-top setup consisting of a fluxgate magnetometer and a primary coil generating a magnetic field with frequency up to 1 kHz, we are able to detect aluminium and steel cylinders using the principle of electromagnetic induction. The experimental results are compared with numerical simulations and we find overall a good agreement. This technique enables identification and characterisation of objects using their electrical conductivity and magnetic permeability.