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Short-Wavelength Atomic-Displacement Modulation Preceding the B2 → B19' Martensitic Transformation in a TiNi-Based Alloy

机译:TiNi基合金中B2→B19'马氏体相变之前的短波长原子位移调制

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摘要

Neutron diffraction studies of the fine structure of a Ti_(49)Ni_(51) single crystal are performed before the onset of the B2 → B19' martensitic transformation (temperature of the onset of the transformation Ms = 200 K). Upon cooling below 460 K, extra reflections are found to form; their positions in the B2-phase reciprocal lattice correspond to the full non-Lifshitz star of the wave vector q = 0.225<112>. At temperatures below 430 K, 0.45<110> extra reflections appear, corresponding to second-order diffraction effects. In the temperature range 300–460 K, reversible and nonhysteretic changes in the intensities and positions of both types of extra reflections are observed. Analysis of the intensities and spatial distribution of the extra reflections in the B2-phase reciprocal lattice indicates that a displacive superstructure dominated by longitudinally polarized atomic-displacement waves with q = 0.225<112> arises in the single crystal in the pretransition temperature range.
机译:在B2→B19'马氏体转变开始之前(转变开始温度Ms = 200 K),对Ti_(49)Ni_(51)单晶的精细结构进行了中子衍射研究。冷却至460 K以下时,会形成多余的反射。它们在B2相倒易晶格中的位置对应于波矢量q = 0.225 <112>的全非李夫希兹星。在低于430 K的温度下,出现0.45 <110>的额外反射,对应于二级衍射效应。在300–460 K的温度范围内,观察到两种类型的额外反射的强度和位置均发生可逆且无滞后的变化。对B2相倒易晶格中额外反射的强度和空间分布的分析表明,在预转变温度范围内,单晶中出现了由q = 0.225 <112>的纵向极化原子位移波控制的位移上层结构。

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