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Non-contact performance analysis of the core materials by digital holographic interferometry

机译:用数字全息干涉法分析核心材料的非接触性能

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摘要

In this study, it is intended to determine how a core material behaves under the influence of a static magnetic field (MF), which causes magnetic losses in electrical machines. In addition, it is aimed to design an optical system, which can determine the performance of the core materials under MF effect. First, when standard core materials are exposed to a MF, these materials make rotational movements. The amount of rotation is then calculated and the work amount done after this rotation is tracked. Consequently, from the work quantities, it can be decided whether the materials are good core materials or not. This shows that the optical system can make a non-contact performance analysis for the materials in certain thicknesses, which may be the core material. Thus, this system can be used to determine whether the newly manufactured core material is a good one according to the work quantities obtained for standard equivalents. At the same time, this is the first study about performance analysis of core materials achieved by optical methods.
机译:在这项研究中,旨在确定芯材在静态磁场(MF)的影响下的行为,该磁场会导致电机的磁损耗。另外,本发明旨在设计一种光学系统,其可以确定在MF效应下芯材的性能。首先,当标准芯材暴露于MF时,这些材料会进行旋转运动。然后计算旋转量,并跟踪该旋转后完成的工作量。因此,根据工作量,可以确定材料是否是好的芯材。这表明光学系统可以对某些厚度的材料(可能是核心材料)进行非接触性能分析。因此,该系统可用于根据标准当量获得的工作量来确定新制造的芯材是否是好的芯材。同时,这是关于通过光学方法实现的核心材料性能分析的第一项研究。

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