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Reconciling Experimental and Theoretical Data in the Structural Analysis of Ti-Ta Shape-Memory Alloys

机译:在Ti-TA形状记忆合金的结构分析中协调实验和理论数据

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The structural characterization of the various phases that occur in Ti-Ta-based high-temperature shapememory alloys is complicated by the presence of many competing phases as a function of composition. In this study, we resolve apparent inconsistencies between experimental data and theoretical calculations by suggesting that phase separation and segregation of undesired phases are not negligible in these alloys, and that finite temperature effects should be taken into account in the modeling of these materials. Specifically, we propose that the formation of the ω phase at low Ta content and of the ω phase at high Ta content implies a difference between the nominal alloy composition and the actual composition of the martensitic and austenitic phases. In addition, we show that temperature affects strongly the calculated values of the order parameters of the martensitic transformation occurring in Ti-Ta.
机译:在基于Ti-Ta的高温半导体合金中发生的各个相的结构表征是由于许多竞争相对于组合物的函数的存在而复杂。 在这项研究中,我们通过表明这些合金中不可预期的相位分离和对不良阶段的相分离和分离的分离和分离,并且在这些材料的建模中应考虑有限温度效应的相分离和分离。 具体地,我们提出在高TA含量下形成ω相和高TA含量的ω相意味着标称合金组合物与马氏体和奥氏体相的实际组成之间的差异。 此外,我们表明温度强烈影响了Ti-TA中马氏体变换的顺序参数的计算值。

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