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Phase changes in Fe_(72-x) Al_(28) Cr_x(x = 0,2,4,6) alloys due to mechanical strain

机译:Fe_(72-x)Al_(28)Cr_x(x = 0,2,4,6)合金由于机械应变而产生的相变

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摘要

Fe_(72-x) Al_(28)Cr_x alloys (x = 0,2,4,6) are made by arc melting a mixture of constituent elements in stoichiometric proportion, in argon atmosphere. The ingots so obtained are filed to make powder samples thereby giving them substantial mechanical deformation. It is observed that as-powdered samples show hyperfine field distribution typical of α-phase, where the atoms are randomly distributed on the available sites. Annealing at 900℃ for 60 h leads to preferential occupation of lattice sites by the atoms and this results in better defined groups of hyperfine magnetic field (HMF) which can be associated with specific configuration in the neighbourhood of probe iron atoms. The average HMF is found to decrease sharply with increasing Cr concentration even though the net chromium concentration remains low (≤6 at%). The results show that cold working on samples is very important in changing the atomic ordering and must be taken into account if properties of equilibrium phases are probed.
机译:Fe_(72-x)Al_(28)Cr_x合金(x = 0,2,4,6)是通过在氩气氛中以化学计量比电弧混合构成元素的混合物制成的。如此获得的锭被制成粉末样品,从而使它们具有很大的机械变形。观察到粉末状样品显示出典型的α相超精细场分布,其中原子随机分布在可用位点上。在900℃退火60 h会导致原子优先占据晶格位点,这会导致定义更好的超精细磁场(HMF)组,这可能与探针铁原子附近的特定构型有关。发现即使铬的净浓度保持较低(≤6at%),平均HMF也会随着Cr浓度的增加而急剧下降。结果表明,对样品进行冷加工对于改变原子序非常重要,如果探测到平衡相的性质,则必须考虑到这一点。

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