选定钢种的高温磁性能

John W. Wilson, Lei Zhou, F. Wu, F. van den Berg, Haibing Yang, C. Davis, A. Peyton
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引用次数: 1

摘要

为了有效地控制钢带在生产过程中的组织变化,研究高温下钢带组织变化的监测技术至关重要。电磁无损检测越来越多地应用于这些应用中,因为它是非接触的,坚固的,相对便宜的,并且有可能提供实时反馈来控制制造过程。然而,如果要充分利用这些系统产生的数据,就有必要在温度达到居里点的温度下精确测量感兴趣的钢种的磁性能。这项工作详细介绍了使用基于曼彻斯特大学设计的改良爱泼斯坦框架的新型试验台进行的测量,以评估由塔塔钢铁公司提供的选定钢等级的磁性,直至居里温度,并在华威大学进行了高温试验。研究了几种钢种在加热和冷却过程中的全磁滞回线,并提取了矫顽力、磁饱和和磁导率等磁性参数。对所选钢种的磁性参数进行了比较,并对钢带在生产过程中的电磁监测结果进行了分析。结果表明,所开发的系统有潜力为在线电磁监测系统提供有价值的数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High Temperature Magnetic Properties of Selected Steel Grades
In order to effectively control the microstructure of steel strip during manufacture it is vital that techniques be developed to monitor microstructural changes in the steel at high temperatures. Electromagnetic non-destructive testing is increasingly being used in these applications as it is non-contact, robust, relatively inexpensive and has the potential to provide real-time feedback to control the manufacturing process. However, if the data produced by these systems is to be fully exploited it is necessary to accurately measure the magnetic properties of steel grades of interest at temperatures up to the Curie point. This work details measurements carried out to assess the magnetic properties of selected steels grades, supplied by Tata Steel, up to the Curie temperature using a novel test rig based on a modified Epstein frame designed by the University of Manchester with high temperature trials at the University of Warwick. Several steel grades are studied with the full magnetic hysteresis (BH) loops reported during heating and cooling, along with extracted magnetic parameters including coercivity, magnetic saturation and magnetic permeability. The magnetic parameters of the selected steel grades are compared and implications of the results on electromagnetic monitoring of steel strip during manufacture considered. Results show the developed system has the potential to provide valuable data to inform online electromagnetic monitoring systems.
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