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Improving Accuracy of Intrinsic Coercivity Measurement for Magnetically Soft Materials

机译:改善软磁材料固有矫顽力测量的准确性

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This paper considers problems associated with an established coercivity measurement procedure, the "pull out" method, used at the Magnet Centre for many years. Such measurements are an important quality control tool for magnetically soft materials. The main emphasis of this paper is on low carbon relay steels, but other materials have been investigated. Relays and actuators play an increasingly important role in automotive and aerospace technology. Here we review the procedure in detail, but our findings are relevant to other "open circuit" methods of intrinsic coercivity measurement. We have found that errors are caused by rapid changes in applied magnetic field strength at a specific part of the hysteresis cycle, between saturation and the open circuit remanent flux density. We have devoted much attention to the geometry of the samples, with particular emphasis on thickness and dimension ratio, as these are major factors in intrinsic coercivity determination. We propose a modification of the relevant international standard for intrinsic coercivity measurement.
机译:本文考虑了已建立的矫顽力测量程序(在磁铁中心使用了多年)的“拉出”方法所带来的问题。此类测量是软磁性材料的重要质量控制工具。本文的主要重点是低碳中继钢,但是已经研究了其他材料。继电器和执行器在汽车和航空航天技术中扮演着越来越重要的角色。在这里,我们详细回顾了该过程,但是我们的发现与内在矫顽力测量的其他“开路”方法有关。我们已经发现,误差是由磁滞循环的特定部分(饱和和开路剩磁通量密度)之间施加的磁场强度的快速变化引起的。我们已经非常关注样品的几何形状,尤其是厚度和尺寸比,因为它们是固有矫顽力测定的主要因素。我们建议对固有矫顽力测量的相关国际标准进行修改。

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