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High-Energy Ball Milling of NiAl(Fe) System

机译:NiAl(Fe)系统的高能球磨

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High-energy ball milling was used to promote the solubilization of iron into NiAl powder for an iron concentration range of 10―30 wt.%. The microstructural evolution induced by the intense mechanical deformations, under different milling conditions, was followed by X-ray diffraction and Moessbauer spectroscopy. The Moessbauer spectra are dominated by a magnetic sextet of about 33 T. Increasing the time and the speed of milling gives rise to a non-resolved doublet, having parameters typical of a NiAl compound with Fe atoms in solution. At the same time a reduction of lattice parameter occurs, which can be correlated to composition variations and partial disordering of the NiAl structure. Subsequent annealing modifies the Moessbauer spectra noticeably. In particular, the nonmagnetic component becomes a broad singlet. Both diffraction analysis and Moessbauer spectroscopy indicate that a fcc Ni(Al,Fe) solid solution is forming in samples milled in agate. It is observed that the grain size of the milled products remains in the nanometric range even after thermal treatment, which adds interest to possible applications.
机译:高能球磨用于促进铁增溶为NiAl粉末,铁浓度范围为10%至30 wt。%。 X射线衍射和Moessbauer光谱分析了在不同研磨条件下由强烈的机械变形引起的微观结构演变。 Moessbauer光谱由约33 T的六重金属磁性支配。增加时间和研磨速度会产生未解析的双峰,其具有NiAl化合物在溶液中的典型特征。同时,晶格参数降低,这可能与成分变化和NiAl结构的部分无序相关。随后的退火显着地改变了Moessbauer光谱。特别地,非磁性组分变成宽单峰。衍射分析和Moessbauer光谱均表明,在玛瑙研磨的样品中形成了fcc Ni(Al,Fe)固溶体。观察到,即使在热处理之后,研磨产物的晶粒尺寸也保持在纳米范围内,这增加了对可能的应用的兴趣。

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