Sintering of Soft Magnetic Material under Microwave Magnetic Field

S. Takayama, J. Fukushima, J. Nishijo, Midori Saito, S. Sano, Motoyasu Sato
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引用次数: 9

Abstract

We have developed a simple process for sintering of soft magnetization materials using microwave sintering. The saturated magnetization (Ms) of sintered magnetite was 85.6 emu/g, which was as high as 95% of magnetite before heating (90.4 emu/g). On the other hand, the averaged remanence (Mr) and coercivity (Hc) of the magnetite after heating were 0.17 emu/g and 1.12 Oe under measuring limit of SQUID, respectively. For the sintering process of soft magnetic materials, magnetic fields of microwave have been performed in nitrogen atmosphere. Therefore, a microwave single-mode system operating at a frequency of 2.45 GHz and with a maximum power level of 1.5 kW was used. We can sinter the good soft magnetic material in microwave magnetic field. The sample shrank to 82% theoretical density (TD) from 45%TD of green body. The sintered sample was observed the microstructure by TEM and the crystal size was estimated the approximate average size is 10 nm.
微波磁场下软磁材料的烧结
我们开发了一种简单的微波烧结软磁材料的工艺。烧结磁铁矿的饱和磁化强度(Ms)为85.6 emu/g,高达加热前磁铁矿(90.4 emu/g)的95%。另一方面,加热后磁铁矿的平均剩余物(Mr)和矫顽力(Hc)在SQUID测量极限下分别为0.17 emu/g和1.12 Oe。针对软磁材料的烧结过程,在氮气气氛中进行了微波磁场实验。因此,采用工作频率为2.45 GHz、最大功率为1.5 kW的微波单模系统。我们可以在微波磁场中烧结好的软磁材料。样品的理论密度(TD)由绿体的45%降至82%。通过透射电镜观察了烧结试样的微观结构,并对晶粒尺寸进行了估计,其平均尺寸约为10 nm。
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