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Studies on the Two-Step Aging Process of Fe-Based Shape Memory Single Crystals

机译:铁基形状记忆单晶的两步时效工艺研究

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摘要

Fe Ni Co Al Ta single crystals oriented along the [001] direction were investigated in order to establish the influence of two-step aging conditions on superelastic properties. The homogenized and quenched single crystalline material was subjected to a combination of high-temperature and low-temperature heat treatment at 973 K for 0.5 h and at 723 K for various aging times, respectively. As a result, fine and coherent γ’ precipitates were formed. Using diffraction of high energy synchrotron radiation, the volume fraction of γ’ precipitates was computed while their size was determined by high resolution TEM analysis. Compared with one-step heat treatment, the two-step aging process enables control of the precipitate size in a more accurate way. Moreover, it allows one to obtain a higher volume fraction of precipitates without increasing their size significantly. The obtained coherent γ’ precipitates ranged in size from 5 to 8 nm; that considerably improved mechanical properties. The highest superelastic response was obtained for single crystals aged at 973 K for 0.5 h followed by aging at 723 K for 3 h. The single crystals treated with such conditions exhibited a superelastic strain of 15% in which the mechanical martensite stabilization was substantially suppressed.
机译:为了确定两步时效条件对超弹性性能的影响,研究了沿[001]方向取向的Fe Ni Co Al Ta单晶。将均质化和淬火的单晶材料分别在973 K下进行0.5 h和723 K下进行各种时效时间的高温和低温热处理的组合。结果,形成了细而连贯的γ’沉淀。使用高能同步加速器辐射的衍射,可以计算出γ'沉淀的体积分数,同时通过高分辨率TEM分析来确定其大小。与一步热处理相比,两步时效工艺可以更精确地控制沉淀物的尺寸。而且,它允许获得更大体积分数的沉淀物而不会显着增加其尺寸。所获得的相干γ’沉淀物的尺寸范围为5至8nm。大大改善了机械性能。对于在973 K时效0.5 h随后在723 K时效3 h的单晶,获得了最高的超弹性响应。在这样的条件下处理的单晶表现出15%的超弹性应变,其中机械马氏体稳定性基本被抑制。

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