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Synthesis of nanocrystalline equiatomic nickel-cobalt-iron alloy powders by mechanical alloying and their structural and magnetic characterization

机译:机械合金化合成纳米晶等原子镍钴铁合金粉末及其结构和磁性

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Mechanically alloying equiatomic Ni, Co, and Fe powder blends for 9 h resulted in the formation of nanocrystalline equiatomic NiCoFe alloy powders comprised of. gamma-phase. The crystallite size and the lattice parameter was similar to 20 +/- 5 nm and 0.3597 +/- 0.0005 nm, respectively. The mode of the powders was 3-7 mu m. The saturation magnetization (M-S) and the intrinsic coercivity (H-CI) of the alloy, at 300 K, was similar to 136 +/- 5 Am-2/kg and similar to 2.0 +/- 0.2 kA/m, respectively. Both M-S and H-CI, irrespective of the milling media and milling atmosphere, decreased with increase in temperature from 60 K to 300 K. At elevated temperatures (400 K to 880 K), the alloy powders maintained the gamma-phase up to 640 K, thereafter it was comprised of gamma-phase and alpha-Fe. In the temperature regime 300-640 K, the percentage decrease in M-S and H-CI was similar to 12% and similar to 30%, respectively. The M-S and H-CI at 300 K, after the magnetization versus applied magnetic field (M-H) run at 640 K, was similar to 136 Am-2/kg and similar to 1.5 kA/m, respectively; while the same after the M-H run at 880 K was similar to 154 Am-2/kg and similar to 1.0 kA/m, respectively. Annealing of the nanocrystalline alloy powders is likely to improve its soft-magnetic properties.
机译:对等原子的Ni,Co和Fe粉末混合物进行机械合金化9小时,导致形成了由以下组成的纳米晶等原子NiCoFe合金粉末。 γ相。微晶尺寸和晶格参数分别类似于20 +/- 5nm和0.3597 +/- 0.0005nm。粉末的模式为3-7μm。合金在300 K时的饱和磁化强度(M-S)和固有矫顽力(H-CI)分别类似于136 +/- 5 Am-2 / kg和2.0 +/- 0.2 kA / m。不论研磨介质和研磨气氛如何,MS和H-CI都随温度从60 K升高至300 K而降低。在高温(400 K至880 K)下,合金粉末保持γ相高达640 K,此后由γ相和α-Fe组成。在300-640 K的温度范围内,M-S和H-CI的降低百分比分别约为12%和30%。磁化强度与施加磁场(M-H)在640 K下运行后,在300 K下的M-S和H-CI分别类似于136 Am-2 / kg和1.5 kA / m。 M-H在880 K下运行后的结果分别类似于154 Am-2 / kg和1.0 kA / m。纳米晶合金粉末的退火可能会改善其软磁性能。

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