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High frequency initial permeability of nanocrystalline NiMnCu ferrites

机译:纳米晶NiMnCu铁氧体的高频初始磁导率

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The structural and magnetic properties of nanocrystalline Ni0.50−xMnxCu0.50Fe2O4 powders were synthesized by combustion technique. Toroid and pellet-shaped samples prepared from these powders were sintered at various temperatures (1150–1300°C). The XRD patterns of various compositions showed well defined single crystalline phase and formation of spinel structure. It is also found that the lattice constant increases with increasing Mn content, obeying Vegard''s law. The optical micrographs of various compositions showed that due to increase of small amount of Mn average grain size is very large. When Mn was substituted the real part of complex permeability enhanced from 30 to 116 depending on chemical composition and sintering temperature. The DC magnetization shows that at room temperature all samples are in ferrimagnetic state.
机译:通过燃烧技术合成了Ni0.50-xMnxCu0.50Fe2O4纳米晶粉末的结构和磁性。用这些粉末制备的环形和颗粒状样品在各种温度(1150–1300°C)下烧结。各种组成的XRD图谱显示出明确定义的单晶相和尖晶石结构的形成。还发现,遵循Vegard定律,晶格常数随Mn含量的增加而增加。各种组成的光学显微照片表明,由于少量Mn的增加,平均晶粒尺寸非常大。当Mn被取代时,取决于化学组成和烧结温度,复磁导率的实部从30增加到116。直流磁化强度表明,在室温下,所有样品均处于亚铁磁状态。

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