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首页> 外文期刊>Magnetics Letters, IEEE >Enhancement of Saturation Magnetization and Remanence of BaFe12O19 Materials Prepared by NaCl–KCl and Hexamine as Flux
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Enhancement of Saturation Magnetization and Remanence of BaFe12O19 Materials Prepared by NaCl–KCl and Hexamine as Flux

机译:通过NaCl-KCl和六胺制备的饱和磁化强度和剩余的饱和磁化和剩余物质作为助熔剂

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Hexagonal platelet barium ferrite was produced through a two-step molten salt synthesis calcined at 850& x00A0;& x00B0;C for 5& x00A0;h with NaCl& x2013;KCl as flux, followed by calcination at 400& x00A0;& x00B0;C for 5& x00A0;h with hexamine. Influence of NaCl& x2013;KCl and hexamine on the structural, phase composition, surface morphology, and magnetic properties of BaFe12O19 was studied by X-ray diffraction, Fourier transform infrared spectroscopy, thermogravimetric& x002F;differential analysis, scanning electron microscopy, and a superconducting quantum interference device. The particles exhibited M-type barium hexaferrite nanoparticles with a product yield of 97.8& x0025; with a mean crystallite size of 81& x00A0;nm for NaCl& x2013;KCl and 50& x00A0;nm for hexamine. The infrared spectrum showed tetrahedral and octahedral positions in the absorption bands of hexagonal ferrite. As the atomic ratio of Ba:Fe:O is found to be 1:12.3:17.6, which is close to the stoichiometric ratio of BaFe12O19, it confirms the hexagonal structure of the sample. The plates are found to agglomerate, and variation in particle size was observed using scanning electron microscopy. The samples revealed better magnetic properties with a high saturation magnetization of 165.3& x00A0;emu& x002F;g, higher remanence of 58& x00A0;emu& x002F;g, coercivity of 929& x00A0;Oe, and a squareness ratio of 0.35. This investigation was performed to examine the microstructure and the effect of crystallinity of the submicrometer BaFe12O19 powders on magnetic properties. This study also provides a promising method and total processing parameters to synthesize hard ferrite powders with improved hard magnetic properties and fine crystallite size.
机译:通过在850&x00a0的两步熔融合成中煅烧的六角形血小板钡铁素体;&x00b0; c为5&x00a0; h,NaCl&x2013; Kcl作为助焊剂,然后在400&x00a0的煅烧;&x00b0; c为5&x00a0 ; H与六肟。 NaCl&X2013的影响;通过X射线衍射研究了X射线衍射,傅里叶变换研究了烘焙,相12 O 19 的结构,相组合物,表面形貌和磁性性质。红外光谱,热重测量和X002F;差分分析,扫描电子显微镜和超导量子干涉装置。颗粒表现出<斜体>米 - 六氧化钡纳米粒子,产率为97.8&x0025;平均微晶尺寸为81&x00a0; nm for ncl&x2013; Kcl和50&x00a0; nm for hexamine。红外光谱显示在六边形铁氧体的吸收带中的四面体和八面体位置。作为BA:Fe:O的原子比为1:12.3:17.6,其接近Bafe 12 O 19 的化学计量比,确认样品的六边形结构。将板被发现凝聚,使用扫描电子显微镜观察粒度的变化。样品揭示了具有165.3&X00A0的高饱和磁化的更好的磁性; EMU&X002F; G,剩磁率高,emu&x002f; g,929&x00a0; oe的矫顽力,oe,oe和平方率为0.35。进行该研究以检测亚微粒玻璃乳液<亚/亚> o 19 粉末对磁性性质的微观结构和效果。该研究还提供了有希望的方法和总处理参数,以合成硬磁性和细晶体尺寸的硬铁氧体粉末。

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