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Nanocrystalline/nanosized Fe3O4 powder obtained by mechahosynthesis

机译:Mechahosynatheratis获得的纳米晶/纳米Fe3O4粉末

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Nanocrystalline/nanosized magnetite - Fe3O4 powder was obtained by mechanical milling of well crystallized magnetite obtained by ceramic method starting from stoichiometric mixture of commercial hematite - Fe2O3 and iron - Fe powders. The mean crystallites size of the magnetite is decreasing upon increasing the milling time down to 6 nm after 240 minutes of milling. After 30 minutes of milling an undesired hematite phase is formed in the material. The amount of this phase increases upon increasing the milling time. In the early stage of milling (up to 30 minutes) the existence of nanometric particles (mean size below 100 nm) is noticed. The d_(50) median diameter decreases first (up to 5 minutes of milling) and after that, an increase follows for milling times up to 120 minutes. Saturation magnetization decreases upon increasing the milling time and is more difficult to saturate. X-ray diffraction, laser particle size analysis and magnetic measurements have been used for powder characterization.
机译:通过从商业赤铁矿 - Fe2O3和铁 - Fe粉末的化学计量混合物开始通过陶瓷方法获得的孔晶化磁铁矿机械研磨,获得纳米晶/纳米磁铁矿-FE3O4粉末。在240分钟研磨后将研磨时间降至6nm后,磁铁矿的平均结晶尺寸降低。在铣削30分钟后,在材料中形成不需要的赤铁矿相。在增加铣削时间后,该阶段的量增加。在铣削的早期阶段(最长30分钟),注意到纳米粒子的存在(平均尺寸低于100nm)。 D_(50)中值直径首先降低(最多5分钟的研磨),之后,增加铣削时间可达120分钟。在增加铣削时间后饱和磁化减小,并且更难以饱和。 X射线衍射,激光粒度分析和磁性测量已用于粉末表征。

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