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通过冷轧制造纯铁及其在磁通量屏蔽中的应用研究。

Manufacturing of Pure Iron by Cold Rolling and Investigation for Application in Magnetic Flux Shielding.

作者信息

Satpute Nitin, Dhoka Prakash, Iwaniec Marek, Jabade Siddharth, Karande Pankaj

机构信息

Department of Mechanical Engineering, Faculty of Science and Technology, Vishwakarma University, Pune 411048, India.

Faculty of Electrical Engineering, Automatics, Computer Science and Biomedical Engineering, AGH University of Science and Technology, 30-059 Kraków, Poland.

出版信息

Materials (Basel). 2022 Apr 2;15(7):2630. doi: 10.3390/ma15072630.

Abstract

The presented work investigates a novel method to manufacture 98.8% pure iron strips having high permeability and better saturation flux density for application in magnetic flux shielding. The proposed method uses electro-deposition and cold rolling along with intermediate annealing in a controlled environment to manufacture 0.05-0.5 mm thick pure iron strips. The presented approach is inexpensive, has better control over scaling/oxidation and requires low energy than that of the conventional methods of pure iron manufacturing by pyrometallurgical methods. Important magnetic and mechanical properties of the pure iron are investigated in the context of the application of the material in magnetic shielding. Magnetic properties of the material are investigated by following IEC60404-4 standard and toroidal coil test to determine hysteresis curve, magnetic permeability and core losses. The microstructure is investigated with an optical microscope and scanning electron microscopy to study grain size and defects after cold rolling and annealing. The properties derived from the experimental methods are used in finite element analysis to study the application of the material for static, low-frequency and high-frequency magnetic shielding. Theoretical simulation results for magnetic shielding around a current-carrying conductor and micro-electromechanical inductive sensor system are discussed. Further shielding performance of the material is compared with that of the other candidate materials, including that of Mu-metal and electrical steel. It is demonstrated that the pure iron strips manufactured in the present study can be used for magnetic shielding in the case of low-frequency applications. In the case of high-frequency applications, a conducting layer can be combined to ensure the required shielding effectiveness in the case of Class 2 applications.

摘要

本文所开展的工作研究了一种制造98.8%纯度铁带的新方法,该铁带具有高磁导率和更好的饱和磁通密度,用于磁通量屏蔽。所提出的方法采用电沉积和冷轧,并在可控环境中进行中间退火,以制造厚度为0.05 - 0.5毫米的纯铁带。与通过火法冶金方法制造纯铁的传统方法相比,本文所提出的方法成本低廉,对结垢/氧化具有更好的控制,且能耗较低。在该材料用于磁屏蔽的背景下,研究了纯铁的重要磁性能和力学性能。通过遵循IEC60404 - 4标准和环形线圈测试来研究材料的磁性能,以确定磁滞曲线、磁导率和铁损。利用光学显微镜和扫描电子显微镜研究微观结构,以研究冷轧和退火后的晶粒尺寸和缺陷。将实验方法得到的性能用于有限元分析,以研究该材料在静态、低频和高频磁屏蔽中的应用。讨论了载流导体和微机电感应传感器系统周围磁屏蔽的理论模拟结果。进一步将该材料的屏蔽性能与其他候选材料(包括坡莫合金和电工钢)的屏蔽性能进行了比较。结果表明,本研究中制造的纯铁带可用于低频应用的磁屏蔽。在高频应用中,可结合导电层以确保在2类应用中达到所需的屏蔽效能。

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