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自蔓延高溫合成錳鋅鐵氧體粉料

Self-propagating high-temperature synthesis of MnZn-ferrite powder

  • 摘要: 采用內氧化劑KClO3,在常壓空氣中自蔓延高溫合成錳鋅鐵氧體粉料.粉料性能用XRD、SEM、VSM等表征,討論了燃燒合成的影響因素.結果表明:當反應放熱供氧系數m為0.54、反應控制放熱系數k為0.6、燃燒合成速度為1.93mm·s-1、燃燒溫度為1593K時,可制備性能優良的錳鋅鐵氧體粉料,其比飽和磁化強度為64.44A·m2·kg-1,比剩磁強度為1.349A·m2·kg-1,矯頑力為0.24kA·m-1,平均粒徑為1.42μm.

     

    Abstract: Using KClO3 as inner oxidant, MnZn-ferrite powder was synthesized by a self-propagating high-temperature synthesis (SHS) process in normal air atmosphere. The properties of the powder were investigated by XRD, SEM and VSM. The effects of combustion synthesis parameters were also analyzed. The results show that, with the Fe value k=0.6 and the inner oxidant value m=0.43 the combustion velocity is 1.93 mm ·s-1, and the highest combustion temperature is 1593 K. The powder possesses good magnetic properties, σs=64.44A·m2·kg-1,σr=1.349 A·m2·kg-1, Hc=0.24 kA·m-1, and the mean particle diameter is 1.42 μm.

     

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