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The Effect of Temperature on Microstructure, Magnetic Properties and Reaction Kinetics of Ni_(0.5)Co_(o.5)Fe_20_4 Reduction in Hydrogen Atmosphere

机译:温度对氢气氛中Ni_(0.5)Co_(o.5)Fe_20_4还原的微观结构,磁性和反应动力学的影响

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Nickel cobalt ferrite (Ni_(0.5)Co_(o.5)Fe_2O_4) powder was prepared through the ceramic route by calcination of a stoichiometric mixture of nickel oxide, cobalt oxide and iron oxide at 1100 and 1200 deg C. The produced powders of Ni_(0.5) Co_(0.5) Fe_2O_4 were isothermally reduced in pure hydrogen at 800-1100 deg C. Based on thermogravimetric analysis, the reduction behavior of nickel cobalt ferrite and the kinetics reaction mechanism were studied. The initial ferrite powder and the various reduction products were characterized by XRD, pore size, SEM, VSM and reflected light microscope to reveal the effect of hydrogen reduction on composition, microstructure and magnetic properties of produced Fe-Ni-Co alloy. Microstructure of partially and completely reduced samples was studied and the activation energy values were calculated from Arrhenius equation. The approved mathematical formulations for the gas solid reaction were applied and it was found that the initial reaction stages are controlled by the combined gaseous diffusion and interfacial chemical reaction mechanisms with high contribution to gas diffusion while the final reaction stages is controlled by chemical reaction mechanism. Complete reduction of Ni_(o.5)Co_(o.5)Fe_2O_4 was achieved with synthesis of nanocrystalline (18-20nm) Fe-Ni-Co alloy.
机译:通过陶瓷路线通过在1100和1200℃下煅烧氧化镍,氧化钴和氧化铁的化学计量混合物来制备铁酸镍钴(Ni_(0.5)Co_(o.5)Fe_2O_4)粉末。在纯氢中于800-1100℃下等温还原(0.5)Co_(0.5)Fe_2O_4。基于热重分析,研究了镍钴铁氧体的还原行为及动力学反应机理。通过X射线衍射,孔径,SEM,VSM和反射光显微镜对初始铁氧体粉末和各种还原产物进行了表征,以揭示氢还原对所制备的Fe-Ni-Co合金的组成,显微组织和磁性能的影响。研究了部分和完全还原的样品的微观结构,并根据Arrhenius方程计算了活化能值。应用了公认的气固反应数学公式,发现初始反应阶段由气体扩散和界面化学反应机理共同控制,对气体扩散的贡献很大,而最终反应阶段则由化学反应机理控制。通过合成纳米晶(18-20nm)Fe-Ni-Co合金,实现了Ni_(o.5)Co_(o.5)Fe_2O_4的完全还原。

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