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首页> 外文期刊>Journal of Applied Physics >Ordering of nanocrystalline Fe-Pt alloys studied by in situ neutron powder diffraction
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Ordering of nanocrystalline Fe-Pt alloys studied by in situ neutron powder diffraction

机译:原位中子粉末衍射研究纳米晶Fe-Pt合金的有序化

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The ordering in nanocrystalline Fe_(100-x)Pt_x (x=40, 45, 50, and 55) alloys prepared by mechanical ball milling was studied by neutron powder diffraction during in situ heat treatment and differential scanning calorimetry. Independent of milling time and stoichiometry the onset of ordering is at around 300℃. For alloys with a multilayer-type microstructure an enhanced kinetics of ordering is observed, characterized by an activation energy of 1.03 ±0.08 eV. The transformation to the L1_0 phase proceeds via a metastable state, which is a mixture of highly ordered L1_0 and L1_2 phases. For samples with homogeneous A1 phase, the A1→L1_0 transformation is characterized by a lower driving force and higher activation energy. For nonequiatomic compositions, the A1→L1_0 transformation is considerably decelerated.
机译:在原位热处理和差示扫描量热法中,通过中子粉末衍射研究了通过机械球磨制备的纳米晶Fe_(100-x)Pt_x(x = 40、45、50和55)合金的有序性。与研磨时间和化学计量无关,有序开始在300℃左右。对于具有多层型微观结构的合金,观察到有序动力学增强,其特征在于活化能为1.03±0.08 eV。向L1_0相的转换是通过亚稳状态进行的,该状态是高序L1_0和L1_2相的混合。对于具有均匀A1相的样品,A1→L1_0转换的特征在于较低的驱动力和较高的活化能。对于非等原子组成,A1→L1_0转换会大大减速。

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