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Theβ'-α' interaction: A study of early stages of phase separation in a Fe-20Cr-6Al-0.5Ti alloy

机译:Theβ'-α'的相互作用:Fe-20%Cr-6%Al-0.5%Ti合金中相分离的早期阶段的研究

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The temporal evolution of the microstructure resulting from phase separation into Fe-rich (α), Cr-rich (α'), and Fe(Ti,Al) (β') phases of a Fe-20Cr-6Al-0.5Ti alloy has been analyzed by thermoelectric power measurements (TEP). The early stages of decomposition and the evolution of the three-dimensional microstructure have been analyzed by atom probe tomography (APT). The roles of Cr, Al, and Ti during the decomposition process have been investigated in terms of solute partitioning between the phases. Analysis of proximity histograms revealed that significant Al and Ti partitioning occurs, which is consistent with theoretical calculations. The results indicate that as theα-α' phase separation proceeds, Al and Ti are rejected into the α phase, which causes the β' phase to nucleate on the surface of the α' phase.
机译:由Pe-20cr-6Al-0.5Ti合金的相分离成相分离成Fe - 富含(α),富含(α')和Fe(Ti,Al)(β')相的微观结构的时间演变通过热电功率测量(TEP)分析。通过原子探针断层扫描(APT)分析了分解的早期阶段和三维微观结构的演化。在阶段之间的溶质分配方面已经研究了Cr,Al和Ti在分解过程中的作用。接近直方图的分析显示,发生显着的Al和Ti分区,这与理论计算一致。结果表明,随着α-α'相分离进行,Al和Ti被拒绝在α期中,这使得β'相对α'相的表面成核。

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