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首页> 外文期刊>Journal of Electronic Materials >Analyzing the Microwave Absorption Properties of BaFe12O19, Ba(4)MnZnFe(36)O(60)and NiFe(2)O(4)Particles
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Analyzing the Microwave Absorption Properties of BaFe12O19, Ba(4)MnZnFe(36)O(60)and NiFe(2)O(4)Particles

机译:分析Bafe12O19,Ba(4)Mnznfe(36)O(60)和NiFe(2)O(4)颗粒的微波吸收性能

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摘要

A stoichiometric ratio of the Merck chlorides of Barium, Iron, nickel and NaOH as an agent was used to obtain the nano-crystalline ferrites (BaFe12O19, Ba(4)MnZnFe(36)O(60)and NiFe2O4) by a combination of co-precipitation and high-energy reactive milling (RM) methods. After milling, the as-synthesized ferrite materials were exposed to a heat treatment at 1100 degrees C for 4 h with the heating rates of 10 degrees/min. After cooling the powders of ferrites inside the furnace, they were sintered at 1200 degrees C for 4 h. The microstructural, structural, magnetic, and microwave absorption features were examined by x-ray diffractometry (XRD), scanning electron spectroscopy (SEM), vibrating-sample magnetometry (VSM) and network analysis (VNA), respectively. As can be seen in the hysteresis loops, both saturation magnetization and coercivity were changed by altering the ferrite kind. After sintering, the Ba-ferrites showed a smaller amount of saturation magnetization of 300 G (0.03 T) and a larger quantity of intrinsic coercivity 1.8 kOe (144 KA/m) compared to the Ni-ferrite and Ba4MnZnFe36O60. After sintering, the samples' reflection loss spectra were changed and reached the maximum value of - 35 dB (at resonance frequency) for NiFe2O4, making it suitable & x2423;for application in the microwave and resonance absorbers.
机译:使用CO的组合,使用钡,铁,镍和NaOH作为药剂作为试剂的Merck氯化物的化学计量比,得到纳米结晶铁氧体(Bafe12O19,Ba(4)o(36)和NiFe2O4) - 折叠和高能反应铣削(RM)方法。铣削后,用10度/分钟的加热速率将产品在1100℃下暴露于1100℃的热处理。冷却炉内铁氧体的粉末后,将它们在1200℃下烧结4小时。通过X射线衍射法(XRD),扫描电子光谱(SEM),振动样磁体(VSM)和网络分析(VNA)检查微观结构,结构,磁性和微波吸收特征。从滞后环中可以看出,通过改变铁氧体类来改变饱和磁化和矫顽力。在烧结之后,与Ni-Ferrite和Ba4mNZNFE36O60相比,Ba-铁氧体显示为300g(0.03吨)的饱和磁化为300g(0.03吨)和更大量的内在矫顽力1.8koe(144ka / m)。在烧结之后,改变样品的反射损耗光谱,并达到NiFe2O4的最大值 - 35dB(处于共振频率),使其合适地为X2423;用于在微波和共振吸收器中的应用。

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