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Magnetostriction Measurement by Using Dual Heterodyne Laser Interferometers

机译:使用双外差激光干涉仪测量磁致伸缩

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Electrical machines and transformers have a core built out of laminations of ferromagnetic materials. A portion of the vibrations and noise of these devices is due to magnetic forces and magnetostriction arising from the magnetic core. Magnetic forces are well known, and analytical methods are extensively used to calculate them. Magnetostriction can be defined as the deformation of the ferromagnetic material in the presence of a magnetic field. Unlike magnetic forces, magnetostriction shows a rather complex behavior. It varies for every material, and it depends on the applied magnetic field and external pressure. Therefore, magnetostrictive behavior of every material needs to be determined experimentally by means of strain measurements. Strain gauge measurement techniques have been used before at the Electrical Energy Laboratory (EELAB), Ghent University, Ghent, Belgium. In this paper, a new measurement method using dual heterodyne laser interferometers is proposed to overcome the drawbacks of the old method. The proposed measurement setup and the working principles are explained. The possibility to apply both techniques on one and the same sample can also reveal some interesting results about the quality of both techniques.
机译:电机和变压器的铁心由铁磁材料叠片构成。这些设备的一部分振动和噪声是由于磁芯产生的磁力和磁致伸缩引起的。磁力是众所周知的,分析方法被广泛用于计算它们。磁致伸缩可以定义为在磁场存在下铁磁材料的变形。与磁力不同,磁致伸缩显示出相当复杂的行为。对于每种材料,它都不同,并且取决于所施加的磁场和外部压力。因此,每种材料的磁致伸缩行为需要通过应变测量通过实验确定。比利时根特大学电能实验室(EELAB)以前曾使用应变仪测量技术。本文提出了一种新的双外差激光干涉仪测量方法,以克服旧方法的缺点。解释了建议的测量设置和工作原理。将两种技术同时应用于一个样品和同一样品的可能性还可以揭示一些有关两种技术质量的有趣结果。

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