Psuj Grzegorz, Lopato Przemyslaw, Maciusowicz Michal, Herbko Michal
Center for Electromagnetic Fields Engineering and High-Frequency Techniques, Faculty of Electrical Engineering, West Pomeranian University of Technology, ul. Sikorskiego 37, 70-313 Szczecin, Poland.
Sensors (Basel). 2021 Jun 23;21(13):4301. doi: 10.3390/s21134301.
Stresses and deformations are some of the main factors influencing the mechanical and magnetic properties of steels. Resonance methods, based on the utilization of high-frequency electromagnetic fields, are the ones that can provide information about the course of the magnetization process. Moreover, according to skin effect, these methods may show sensitivity to surface deformations of the examined materials as well. As a rule, however, they are used to study the properties of materials of very limited sizes. This paper presents an approach in which a system based on the ferromagnetic resonance method FMR was considered for monitoring changes of characteristics related to magnetization dynamics of steel elements subjected to deformations. First, a solution was proposed, and then a numerical analysis, as well as a construction of the system, were presented. During the study, the possibility of carrying out measurements in a wide range of electromagnetic field conditions, enabling local inspection on structures, was also analysed. The system operation was verified using a set of samples made of low carbon steel film, representing distinct states of deformation. The obtained results make it possible to clearly distinguish changes in magnetic conditions, pointing to changes in the resultant magnetic anisotropy caused by the straining process.
应力和变形是影响钢材力学性能和磁性能的一些主要因素。基于高频电磁场利用的共振方法能够提供有关磁化过程的信息。此外,根据趋肤效应,这些方法对被检测材料的表面变形也可能表现出敏感性。然而,通常它们用于研究尺寸非常有限的材料的性能。本文提出了一种方法,其中考虑了基于铁磁共振方法FMR的系统,用于监测受变形影响的钢构件与磁化动力学相关特性的变化。首先提出了一种解决方案,然后进行了数值分析并展示了系统的构造。在研究过程中,还分析了在广泛的电磁场条件下进行测量的可能性,从而能够对结构进行局部检测。使用一组由低碳钢薄膜制成的代表不同变形状态的样品对系统运行进行了验证。所获得的结果使得能够清晰地区分磁状态的变化,表明由应变过程引起的合成磁各向异性的变化。