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A study of phase separation in metastable Cu50Fe50 alloys by neutron diffraction and neutron small-angle scattering

机译:中子衍射和中子小角散射研究亚稳Cu50Fe50合金的相分离

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The mechanical alloying (MA) of an equiatomic mixture of copper and iron, which is reported to be immiscible in the equilibrium phase diagram, leads to a metastable Cu50Fe50 alloy, which reverts to its constituents on isothermal annealing at 300 degrees C. We have studied the mechanism of alloy decomposition by in-situ annealing using neutron diffraction and, for the first time for this system, neutron small-angle scattering. Evidence has been found of spinodal decomposition, which was predicted in this system on the basis of thermodynamic arguments. The neutron small-angle scattering data point to the existence of fluctuations in scattering length density with a length scale of 200-300 Angstrom in the early stages of annealing the Cu50Fe50 alloy.
机译:据报道,铜和铁的等原子混合物的机械合金化(MA)在平衡相图中是不溶混的,从而导致了亚稳态Cu50Fe50合金,该合金在300摄氏度的等温退火中恢复了其成分。通过中子衍射原位退火进行合金分解的机理,以及该系统首次中子小角散射。已经发现了旋节线分解的证据,该证据是根据热力学论据在该系统中预测的。中子小角度散射数据表明,在对Cu50Fe50合金进行退火的早期阶段,散射长度密度存在波动,长度尺度为200-300埃。

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