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AC Magnetic Properties of Fe-Based Composite Materials

机译:铁基复合材料的交流磁性能

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We investigated the influence of resin content on ac magnetic properties of Fe-based composite material to extend possibilities for application of this kind of material at higher frequency. The samples of composite material with different content of phenol-formaldehyde resin acting as insulator were prepared by conventional powder metallurgy. The samples in the form of the ring were used for ac magnetic measurements and in the form of cylinder for specific resistivity measurements. The ac magnetic properties (sample in the form of ring) were measured at maximum flux density up to 0.4 T by MATS-2010SA loop tracer in a frequency range 1–150 kHz and obtained total power losses. The dc hysteresis loops were measured by a fluxmeter-based hysteresisgraph. The values of the specific resistivity measured by the van der Pauw method (sample in the form of cylinder) were used for calculation of eddy current losses. All magnetic properties of the composite rings were compared with the properties of the material prepared from the powder provided by HÖganÄs AB Sweden by the technology usually used by the producer.
机译:我们研究了树脂含量对铁基复合材料的交流磁性能的影响,以扩展此类材料在更高频率下的应用可能性。通过常规粉末冶金制备了不同含量的酚醛树脂作为绝缘体的复合材料样品。环形样品用于交流磁测量,圆柱体样品用于比电阻率测量。通过MATS-2010SA环路示踪器在1–150 kHz的频率范围内,在最大磁通密度高达0.4 T的条件下测量了交流磁性能(呈环形的样品),并获得了总功率损耗。直流磁滞回线通过基于磁通量计的磁滞图测量。通过van der Pauw方法测量的比电阻值(圆柱体形式的样品)用于计算涡流损耗。通过制造商通常使用的技术,将复合环的所有磁性能与由瑞典HöganÄsAB瑞典公司提供的粉末制备的材料的性能进行了比较。

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