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Efek Aditif Femo dan Proses Kalsinasi pada Serbuk Magnetik Bafe12o19

机译:Femo添加剂和煅烧工艺对Bafe12o19磁粉的影响

摘要

EFFECTOF FeMo ADDITIVEAND CALCINATION PRoCESS ONMAGNETIC POWDERS BaFe12O19. In this study, we have been investigated the effect of FeMo additive and calcination proCess in magnet permanent bariumhexaferrite. The permanentmagnet of bariumhexaferrite was prepared bymechanical alloying method. The mixing powder of BaFe12O19 and FeMo was calcinated on 1000 and 1200 oC prepared of temperature. The characterization was done for physical and magnetic properties with X-ray Powder Diffraction (XRD) and piknometer for the phase ofmaterial and the powder density and then Vibrating Sample Magnetometer (VSM) for the magnetic properties of barium hexaferrite magnet. The experiment result showed analysis that addition of FeMo increased the powder density of barium hexaferrite. The magnetic properties result showed that increasing of FeMo additive make deacreassing of magnetic characterization.While the more addition of FeMo can be increases remanence, saturation, and BH max Even though deacreases the coercivity. The increasing of calcination temperature can increases remanence and BH max but deacreases saturation and coercivity. It means the proCess can changes themagnet structure fromhard to soft magneticmaterial. The optimumvalue, when the barium hexaferrite add %wt 5 FeMo additive with 3.71 g/cm3 powder density before calcination proCess. And the magnetic properties such as: saturation 2.12 kG, remanence1,15 kG, coercivity 0,45 kOe dan BHmax0,145 MGOe after calcination process at 1000 oC.
机译:FeMo添加剂和煅烧过程对磁性粉末BaFe12O19的影响。在这项研究中,我们已经研究了FeMo添加剂和煅烧过程对永磁六方铁氧体的影响。采用机械合金化法制备了六价铁酸钡永磁体。将BaFe12O19和FeMo的混合粉末在1000和1200 oC的温度下煅烧。通过X射线粉末衍射(XRD)和比重计对材料的相和粉末密度进行表征,然后使用振动样品磁强计(VSM)对六铁酸钡磁体的磁性进行了表征。实验结果表明,添加FeMo可以增加六价铁酸钡的粉末密度。磁性能结果表明,增加FeMo添加剂会降低磁性能。尽管添加更多的FeMo可以增加剩磁,饱和度和BH max,即使降低了矫顽力。煅烧温度的升高可以增加剩磁和BH max,但会降低饱和度和矫顽力。这意味着过程可以将磁体结构从硬磁性材料改变为软磁性材料。在煅烧之前,六价铁钡添加%wt 5 FeMo添加剂,粉末密度为3.71 g / cm3时的最佳值。在1000 oC下煅烧后的磁性能为:饱和2.12 kG,剩磁1.15 kG,矫顽力0.45 kOe和BHmax0,145 MGOe。

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