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Strain relaxation in Cu-Al-Ni shape memory alloys studied by in situ neutron diffraction experiments

机译:原位中子衍射实验研究Cu-Al-Ni形状记忆合金的应变弛豫

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摘要

In situ neutron diffraction is used to study the strain relaxation on a single crystal and other powdered Cu-Al-Ni shape memory alloys (SMAs) around martensitic transformation temperatures. This work is focused on the analysis of the strain evolution along the temperature memory effect appearing in these alloys after partial thermal transformations. A careful study of the influence of partial cycling on the neutron diffraction spectra in the martensitic phase is presented. Two different effects are observed, the d-spacing position shift and the narrowing of various diffraction peaks, along uncompleted transformation cycles during the thermal reverse martensitic transformation. These changes are associated with the relaxation of the mechanical stresses elastically stored around the martensitic variants, due to the different self-accommodating conditions after uncompleted transformations. The evolution of the stresses is measured through the strain relaxation, which is accessible by neutron diffraction. The observed effects and the measured strain relaxations are in agreement with the predictions of the model proposed to explain this behavior in previous calorimetric studies. In addition, the thermal expansion coefficients of both martensite and austenite phases were measured. The neutron experiments have allowed a complete description of the strains during martensitic transformation, and the obtained conclusions can be extrapolated to other SMA systems. (c) 2019 Author(s).
机译:原位中子衍射用于研究马氏体转变温度附近的单晶和其他粉末状Cu-Al-Ni形状记忆合金(SMA)的应变松弛。这项工作的重点是分析部分热转变后这些合金中沿温度记忆效应发生的应变演化。仔细研究了部分循环对马氏体相中子衍射谱的影响。沿着热反马氏体相变期间未完成的相变循环,观察到两种不同的影响,即d间距位置偏移和各种衍射峰变窄。这些变化与马氏体变体周围弹性存储的机械应力的松弛有关,这归因于未完成转变后的不同自适应条件。应力的变化是通过应变松弛来测量的,而应变松弛可以通过中子衍射获得。所观察到的效果和测得的应变松弛与为在先前的量热研究中解释这种行为而提出的模型预测相一致。另外,测量了马氏体和奥氏体相的热膨胀系数。中子实验已经可以对马氏体转变过程中的应变进行完整描述,并且所获得的结论可以外推至其他SMA系统。 (c)2019作者。

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  • 来源
    《Journal of Applied Physics》 |2019年第8期|082536.1-082536.13|共13页
  • 作者单位

    Univ Basque Country, Dept Fis Aplicada 2, UPV EHU Apdo 644, E-48080 Bilbao, Spain;

    Univ Basque Country, Fac Ciencia & Tecnol, Dept Fis Mat Condensada, UPV EHU Apdo 644, E-48080 Bilbao, Spain;

    Univ Basque Country, Fac Ciencia & Tecnol, Dept Fis Mat Condensada, UPV EHU Apdo 644, E-48080 Bilbao, Spain;

    Univ Basque Country, Dept Fis Aplicada 2, UPV EHU Apdo 644, E-48080 Bilbao, Spain;

    Los Alamos Natl Lab, Lujan Neutron Scattering Ctr, Los Alamos, NM 87545 USA;

    Queens Univ, Dept Mech & Mat Engn, Kingston, ON K7L 3N6, Canada;

    Univ Basque Country, Dept Fis Aplicada 2, UPV EHU Apdo 644, E-48080 Bilbao, Spain;

    Univ Basque Country, Fac Ciencia & Tecnol, Dept Fis Mat Condensada, UPV EHU Apdo 644, E-48080 Bilbao, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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