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用超纯铁精矿生产锶铁氧体预烧料及其焙烧动力学
引用本文:张清岑,肖奇.用超纯铁精矿生产锶铁氧体预烧料及其焙烧动力学[J].中南大学学报(自然科学版),2001,32(1):25-28.
作者姓名:张清岑  肖奇
作者单位:中南大学矿物工程系,
摘    要:锶铁氧体是应用最广的永磁铁氧体,当前其生产原料主要是铁红和铁鳞,但这2种原料来源有限,且价格昂贵,因此寻找质优价廉的锶铁氧体原料已成为当务之急.作者采用分散与选择性聚团磁选新工艺制备出w(Fe)=71.88%,w(SiO2)<0.5%的超纯铁精矿.锶铁氧体预烧生产工艺是采用超纯铁精矿氧化和铁氧体生成反应,在配比n为5.6,精矿粒度低于2μm,预烧温度为1553K,保温时间超过1h和添加剂适量的工艺条件下,制备出比饱和磁化强度σs>71.5A/(m

关 键 词:超纯铁精矿  锶铁氧体  缺陷化学  焙烧动力学
文章编号:1005-9792(2001)01-0025-04
修稿时间:2000年5月16日

Preparation of strontium ferrite powder by iron concentrate and its sintering dynamics
ZHANG Qing-cen,XIAO Qi.Preparation of strontium ferrite powder by iron concentrate and its sintering dynamics[J].Journal of Central South University:Science and Technology,2001,32(1):25-28.
Authors:ZHANG Qing-cen  XIAO Qi
Abstract:Strontium ferrite has been used widely. Nowadays, the main raw materials for strontium ferrite are Fe2 O3 andFe3 O4, which are expensive and limited. So it is necessary to find new kinds of raw materials. Magnetite separation hasbeen adopted to pretreat raw materials, and the superpure iron concentrate of w(Fe) =71.88%, w(SiO2) <0.5% canbe obtained. In the process of the preparation of strontium ferrite powders, the oxidation of the magnetite and the forma-tion of strontium ferrite have been finished at the same time by using novel technique. Under the following condition, thatis, molar ratio n is 5.6, size of concentrate is less than 2μn, sintering temperature is 1 553 K, sintering time is morethan one hour and proper reagents, the strontium ferrite powder with good results such as σs > 71.5 A/( m2· kg) has beengot. The study of the dynamics and the analysis of defect chemical theory on the reaction of the formation of strontiumhexaferrites phase expresses that Fe3+ and Sr2 + mutually diffuse through the crystal lattice of O2- , especially Sr2 + diffu-sion is primary, the solid reaction for the appearance of strontium ferrite take places in the interfaces ofSrFe12O19-Fe2 O3 and SrO-SrFe12 O19 respectively.
Keywords:superpure iron concentrate  strontium ferrite  defect chemistry  sintering dynamics
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