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The Use of Precipitated Ferrite Powders for Anisotropic Sintered Magnets

机译:用于各向异性烧结磁铁的沉淀铁氧体粉末

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Ferrite magnets are usually produced with powders obtained by the calcination of iron oxides and barium or strontium carbonates mixtures (ceramic method). These powders are milled to obtain monocrystalline (single domain) particles, which can be aligned just before compaction, to get an anisotropic product with improved magnetic properties. On the other hand, co-precipitation is an alternative process that can produce very fine particles with high purity, and intrinsic magnetic properties, as coercivity, better than those of ceramic powders. The use of ferrite powders obtained by co-precipitation to produce anisotropic sintered magnets is investigated here. Iron and barium chlorides were used as raw materials. The Fe/Ba molar ratio, pH, and calcination temperature were adjusted to get higher magnetic performance. The powders were aligned in a magnetic field, pressed and sintered. Magnetic properties, especially the ratio between remanence and maximum specific magnetization, and also microstructure were evaluated.
机译:铁氧体磁铁通常用通过煅烧氧化铁和钡或碳酸锶混合物(陶瓷方法)获得的粉末制备。将这些粉末研磨以获得可以在压实之前对准的单晶(单结构域)颗粒,以获得具有改善的磁性的各向异性产物。另一方面,共沉淀是一种替代方法,可以产生具有高纯度和固有磁性的非常细的颗粒,以及矫顽力,比陶瓷粉末更好。这里研究了通过共沉淀获得的铁氧体粉末以产生各向异性烧结磁体。使用铁和氯化钡作为原料。调节Fe / BA摩尔比,pH和煅烧温度以获得更高的磁性性能。粉末在磁场中对齐,压制和烧结。磁性特性,尤其是剩磁和最大磁化的比率,以及微观结构进行了评估。

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