Wang Liting, He Cunfu, Liu Xiucheng
Faculty of Materials and Manufacturing, Beijing University of Technology, Beijing 100124, China.
Sensors (Basel). 2021 May 11;21(10):3330. doi: 10.3390/s21103330.
Magnetic Barkhausen noise (MBN) signals in the stage from saturation to remanence of the hysteresis loop are closely correlated with magnetocrystalline anisotropy energy. MBN events in this stage are related to the nucleation and growth of reverse domains, and mainly affected by the crystallographic textures of materials. This paper aims to explore the angle-dependent magnetocrystalline anisotropy energy. Based on the consideration of macroscopic magnetic anisotropy, with the concept of coordinate transformation, a model was firstly established to simulate the magnetocrystalline anisotropy energy (MCE) of a given material. Secondly, the MBN signals in different directions were tested with a constructed experimental system and the characteristic parameters extracted from the corresponding stage were used to evaluate the magnetic anisotropy of the material. Finally, the microstructures of 4 materials were observed with a metallographic microscope. The microtextures of local areas were measured with the electron backscatter diffraction (EBSD) technique. The MBN experimental results obtained under different detection parameters showed significant differences. The optimal MBN detection parameters suitable for magnetic anisotropy research were determined and the experimental results were consistent with the results of MCE model. The study indicated that MBN technology was applicable to evaluate the MCE of pipeline steel and oriented silicon steel, especially pipeline steel.
磁滞回线从饱和到剩磁阶段的磁巴克豪森噪声(MBN)信号与磁晶各向异性能密切相关。该阶段的MBN事件与反向畴的形核和生长有关,主要受材料晶体织构的影响。本文旨在探索角度相关的磁晶各向异性能。基于宏观磁各向异性的考虑,利用坐标变换的概念,首先建立了一个模型来模拟给定材料的磁晶各向异性能(MCE)。其次,使用构建的实验系统测试不同方向的MBN信号,并利用从相应阶段提取的特征参数来评估材料的磁各向异性。最后,用金相显微镜观察了4种材料的微观结构。用电子背散射衍射(EBSD)技术测量了局部区域的微观织构。在不同检测参数下获得的MBN实验结果显示出显著差异。确定了适用于磁各向异性研究的最佳MBN检测参数,实验结果与MCE模型的结果一致。研究表明,MBN技术适用于评估管线钢和取向硅钢的MCE,尤其是管线钢。