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Synthesis and Magnetic Properties of Aligned Strontium Ferrites

机译:取向锶铁氧体的合成及磁性能

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Reducing the particle size of hexagonal ferrites is known to increase their coercivity effectively. However, the size reduction also enhances the agglomeration that deteriorates the magnetic alignment of these particles. In this paper, hexagonal plate shape strontium ferrite particles with an average size of 700 nm using a facile salt-assisted ultrasonic spray pyrolysis method were synthesized to increase the coercivity and prevent the agglomeration during calcinations process. Sodium chloride (NaCl) was used as a salt, and the reacted powders were sintered at 1050 $^{circ}{rm C}$ for 2 h under various oxygen flow rates. With increasing the flow rate of oxygen, the specific saturation magnetization of synthesized strontium ferrite particles increased from 62 to 71 emu/g and the coercivity reached 6000 Oe. Strontium ferrite particles aligned under a magnetic field of about 10 kOe showed that the remanence was 91.85%.
机译:减小六角形铁氧体的粒径已知可以有效地提高它们的矫顽力。然而,尺寸减小还增加了附聚,这使这些颗粒的磁取向恶化。本文采用一种简便的盐辅助超声喷雾热解法合成了平均粒径为700 nm的六角形板状锶铁氧体颗粒,以提高矫顽力并防止煅烧过程中的团聚。使用氯化钠(NaCl)作为盐,将反应后的粉末在各种氧气流速下以1050℃烧结2小时。随着氧气流量的增加,合成锶铁氧体颗粒的比饱和磁化强度从62 emu / g增加到71 emu / g,矫顽力达到6000 Oe。在约10 kOe的磁场下排列的锶铁氧体颗粒的剩磁率为91.85%。

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