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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Studies on Structural and Electrical Properties of Ball-Milled NiCuZn-MgCuZn Nanocomposites Ferrites
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Studies on Structural and Electrical Properties of Ball-Milled NiCuZn-MgCuZn Nanocomposites Ferrites

机译:球磨NiCuZn-MgCuZn纳米复合铁氧体的结构和电性能研究

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摘要

Multilayer chip inductors (MLCIs) have been rapidly developed for electromagnetic applications. NiCuZn ferrites are the most preferred ferrite materials to produce MLCIs, and MgCuZn ferrites have similar electromagnetic properties to those of NiCuZn ferrites. In view of this, ferrite composites with ferromagnetic phase (X) Ni_(0.35)Cu_(0.05) Zn_(0.6)Fe_2O_4 + (1 - X) Mg_(0.25)Cu_(0.25)Zn_(0.5)Fe_2O_4, in which X varies from 0.0 to 1.0, were prepared by the conventional ceramic double-sintering process. The sintered ferrite was characterized for direct current (DC) and alternating current (AC) electrical conductivities, and thermoelectric effect studies. The X-ray diffraction pattern confirms the formation of single-phase spinel structure; the grain size was estimated using an scanning electron micrograph (SEM). The electrical properties were studied as a function of temperature and composition. The temperature variations of these samples were carried out from 303 K to 523 K (30 °C to 250 °C) within the frequency range 100 Hz to 1 MHz. The sintered NiCuZn-MgCuZn ferrites prepared possess good electromagnetic properties and good structure, thus making them suitable materials for MLCIs due to its high resistivity.
机译:多层片式电感器(MLCI)已迅速开发用于电磁应用。 NiCuZn铁氧体是生产MLCI的最优选的铁氧体材料,MgCuZn铁氧体具有与NiCuZn铁氧体相似的电磁性能。鉴于此,具有铁磁相(X)Ni_(0.35)Cu_(0.05)Zn_(0.6)Fe_2O_4 +(1-X)Mg_(0.25)Cu_(0.25)Zn_(0.5)Fe_2O_4的铁氧体复合物,其中X发生变化通过常规的陶瓷双重烧结方法制备了0.0至1.0。烧结铁氧体的特征在于直流电(DC)和交流电(AC)的电导率以及热电效应的研究。 X射线衍射图证实了单相尖晶石结构的形成。使用扫描电子显微镜(SEM)估计晶粒尺寸。研究了电性能随温度和组成的变化。这些样品的温度变化是在100 Hz到1 MHz的频率范围内从303 K到523 K(30°C到250°C)进行的。制备的NiCuZn-MgCuZn烧结铁氧体具有良好的电磁性能和良好的结构,由于其高电阻率,使其成为用于MLCI的合适材料。

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