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基于非滞回磁化曲线的磁屏蔽退磁参数评估

Demagnetization Parameters Evaluation of Magnetic Shields Based on Anhysteretic Magnetization Curve.

作者信息

Yang Jianzhi, Shi Minxia, Zhang Xu, Ma Yuzheng, Liu Yijin, Yuan Shuai, Han Bangcheng

机构信息

Institute of Large-Scale Scientific Facility and Centre for Zero Magnetic Field Science, Beihang University, Beijing 100191, China.

National Institute of Extremely-Weak Magnetic Field Infrastructure, Hangzhou 310051, China.

出版信息

Materials (Basel). 2023 Jul 26;16(15):5238. doi: 10.3390/ma16155238.

Abstract

To achieve the nearly zero-field environment, demagnetization is an indispensable step for magnetic shields composed of high-permeability material, which adjusts the magnetization of the material to establish magnetic equilibrium with the environmental field and improve the shielding performance. The ideal demagnetization can make the high-permeability material on the anhysteretic magnetization curve to have a higher permeability than on the initial magnetization curve. However, inappropriate parameters of degaussing field cause the magnetization state to deviate from the anhysteretic magnetization curve. Therefore, this article proposes a new assessment criterion to analyze and evaluate the parameters of degaussing field based on the difference between the final magnetization state after demagnetization and theoretical anhysteretic state of the shielding material. By this way, the magnetization states after demagnetizations with different initial amplitude, frequency, period number and envelope attenuation function are calculated based on the dynamic Jiles-Atherton (J-A) model, and their magnetization curves under these demagnetization conditions are also measured and compared, respectively. The lower frequency, appropriate amplitude, sufficient period number and logarithmic envelope attenuation function can make the magnetization state after demagnetization closer to the ideal value, which is also consistent with the static magnetic-shielding performance of a booth-type magnetically shielded room (MSR) under different demagnetization condition.

摘要

为实现近零场环境,退磁对于由高磁导率材料构成的磁屏蔽体而言是不可或缺的一步,它可调整材料的磁化强度,使其与环境磁场建立磁平衡,进而提升屏蔽性能。理想的退磁能使处于非磁滞磁化曲线上的高磁导率材料具有比初始磁化曲线更高的磁导率。然而,消磁场参数设置不当会导致磁化状态偏离非磁滞磁化曲线。因此,本文基于退磁后最终磁化状态与屏蔽材料理论非磁滞状态之间的差异,提出一种新的评估准则来分析和评估消磁场参数。通过这种方式,基于动态Jiles-Atherton(J-A)模型计算了不同初始幅度、频率、周期数和包络衰减函数下退磁后的磁化状态,并分别测量和比较了这些退磁条件下的磁化曲线。较低的频率、合适的幅度、足够的周期数和对数包络衰减函数能使退磁后的磁化状态更接近理想值,这也与不同退磁条件下屏蔽室型磁屏蔽室(MSR)的静磁屏蔽性能相符。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80df/10420144/6814fafbc033/materials-16-05238-g001.jpg

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