首页> 外文会议>International Latin-American Conference on Powder Technology; 20031119-21; Guaruja-Sao Paulo(BR) >Effect of Calcination Conditions on the Magnetic Properties of MnZn Ferrites Powders Produced by Co Precipitation
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Effect of Calcination Conditions on the Magnetic Properties of MnZn Ferrites Powders Produced by Co Precipitation

机译:煅烧条件对共沉淀制备的MnZn铁氧体粉末磁性能的影响

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摘要

MnZn ferrites are conventionally produced by the ceramic method that involves the solid state reaction of metallic oxides or carbonates at high temperatures. The particles obtained by this method are rather large and non-uniform in size. In order to overcome the difficulties arising out of the ceramic process, the coprecipitation method has been used as an alternative route to produce chemically homogeneous powders with fine particle size. In this work MnZn ferrites powders were produced by the coprecipitation method. The calcination conditions, such as temperature (900℃ to 1100℃) and atmosphere (air and nitrogen), were investigated. X ray diffractometry, scanning electron microscopy, thermomagnetic analysis and vibration sample magnetometry were used to characterize the obtained samples. The results indicated that when the samples were calcined in nitrogen atmosphere, the ferrite formation occurred at low calcination temperatures and presented belter magnetic properties than those calcined in air.
机译:MnZn铁氧体通常通过陶瓷方法生产,该方法涉及高温下金属氧化物或碳酸盐的固态反应。通过该方法获得的颗粒相当大并且尺寸不均匀。为了克服陶瓷工艺带来的困难,共沉淀法已被用作生产具有细粒度的化学均一粉末的替代途径。在这项工作中,通过共沉淀法生产了MnZn铁氧体粉末。研究了煅烧条件,如温度(900℃至1100℃)和大气(空气和氮气)。用X射线衍射仪,扫描电子显微镜,热磁分析仪和振动样品磁力仪对所得样品进行表征。结果表明,当样品在氮气气氛中煅烧时,铁素体的形成发生在较低的煅烧温度下,并且比在空气中煅烧的那些具有更强的磁性能。

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