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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Study of electrical and magnetic properties of Ni-Zn-Mg ferrite system
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Study of electrical and magnetic properties of Ni-Zn-Mg ferrite system

机译:Ni-Zn-Mg铁氧体体系的电磁性能研究

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Polycrystalline nickel-zinc ferrites of chemical formula Ni0.65-xMgxZn0.35Fe2O4 (x = 0.00 to 0.2 in steps of 0.04) have been prepared by conventional ceramic technique. Calcination and sintering of all samples have been carried out in air atmosphere at 950 degrees C and 1250 degrees C, respectively, followed by natural cooling to room temperature. All the samples were characterized by the X-ray diffraction (XRD) for structure determination. These samples were then investigated for their magnetic and electric properties, including saturation magnetization, Curie temperature, initial permeability measurements and DC electrical resistivity. Porosity was decreased drastically from 15% to 5% showed better quality of the sintered samples. There were increments in initial permeability and DC electrical resistivity throughout the series of samples. Variations in the observed properties as a function of magnesium concentration have been discussed in light of the existing understanding.
机译:已经通过常规陶瓷技术制备了化学式为Ni0.65-xMgxZn0.35Fe2O4(x = 0.00至0.2,步长为0.04)的多晶镍锌铁氧体。所有样品的煅烧和烧结分别在空气气氛中分别在950摄氏度和1250摄氏度进行,然后自然冷却至室温。所有样品均通过X射线衍射(XRD)进行结构测定。然后研究这些样品的磁和电性能,包括饱和磁化强度,居里温度,初始磁导率测量值和直流电阻率。孔隙率从15%急剧降低到5%,表明烧结样品的质量更好。在整个系列样品中,初始磁导率和直流电阻率都有所增加。根据现有的理解,已经讨论了观察到的性质随镁浓度的变化。

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