$_{0.85}$ Pr$_{0.15}$ (Co Mechanochemical Synthesis of (Sm,Pr)$_{2}$(Co,Fe)$_{17}$ Anisotropic Hard Magnetic Powders
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Mechanochemical Synthesis of (Sm,Pr)$_{2}$(Co,Fe)$_{17}$ Anisotropic Hard Magnetic Powders

机译:(Sm,Pr)$ _ {2} $(Co,Fe)$ _ {17} $各向异性硬磁粉的机械化学合成

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Anisotropic Sm$_{0.85}$ Pr$_{0.15}$ (Co$_{1 - x}$ Fe$_{x}$ )$_{z}$ alloy powders with $x = 0.2hbox{--}0.5$, consisting mostly of the rhombohedral (Sm,Pr)$_{2}$(Co,Fe)$_{17}$ compound, were prepared from a mixture of cobalt, ferric oxide and rare earth oxides subjected to high-energy ball-milling in the presence of calcium reducing agent and calcium oxide dispersant. The milling was followed by a short-time annealing and multi-step washing. The resulting powders were polydispersed, but their average particle size could be tuned from 80 to 300 nm by controlling the excess Ca metal and the annealing temperature. A nanometer-thin oxide shell was observed on a surface of the particles, and it may be, at least in part, responsible for their excellent stability to air. The significant effect of the excess Ca on the particle size, anisotropy and chemical/structural homogeneity is discussed based on the supposed solution-precipitation mechanism of particle growth. Intrinsic coercivity $H_{rm c}$ up to 14 kOe was obtained; powders with $x = 0.4$ and an average particle size of 121 nm exhibited a remanence of 106 emu/g and $H_{rm c}$ of 8.3 kOe.
机译:各向异性Sm $ _ {0.85} $ Pr $ _ {0.15} $ (Co $ _ {1-x} $ Fe $ _ {x} $ )<公式Formulatype =“ inline”> $ _ {z}具有 $ x = 0.2hbox {-} 0.5 $ 的$ 合金粉末,主要由菱形(Sm,Pr)<配方式type =“ inline”> $ _ {2} $ (Co,Fe)<配方式type =“ inline” > $ _ {17} $ 化合物由钴,三氧化二铁和稀土氧化物的混合物在存在下进行高能球磨制得钙还原剂和氧化钙分散剂。研磨后进行短时间退火和多步洗涤。将所得粉末进行多分散,但是通过控制过量的Ca金属和退火温度,它们的平均粒度可以从80nm调节至300nm。在颗粒的表面上观察到了纳米薄的氧化物壳,这可能至少部分是其对空气的优异稳定性的原因。基于假定的颗粒生长的溶液沉淀机理,讨论了过量Ca对颗粒大小,各向异性和化学/结构均匀性的显着影响。内在矫顽力<公式公式类型=“ inline”> $ H_ {rm c} $ 高达14 kOe; $ x = 0.4 $ 且平均粒径为121 nm的粉末的剩磁为106 emu / g, $ H_ {rm c} $ ,为8.3 kOe。

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