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Interphase Energies and Nonequilibrium Growth of γ-precipitates in Al-Ag: A OFT Study

机译:Al-Ag中γ-沉淀物的相间能和非平衡生长:OFT研究

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摘要

Density-functional theory (DFT) calculations of interphase boundary energies provide useful input for many precipitate growth models in alloy systems [1]. One example is Al-Ag, where a rich variety of precipitate types exist, and the sizes and shapes are determined roughly by a Wulff construction, namely, minimizing surface free energies with respect to geometry. This is only a first approximation, however, as kinetic-considerations and crystallography do not allow for a uniform, isotropic growth. Consequently, a nonequilibrium growth model is developed for y-plates [2], which attempts to connect semi-coherent (ledge) and incoherent (edge) interface growth rates in a way that incorporates shape and interface energies. Through this connection, we make a DFT model with approximate unit cells that mirror experimental conditions, which gives accurate predictions for precipitate aspect ratios and time-development of nonequilibrium shapes. Starting from an explicit calculation of Suzuki segregation of solute to stacking-faults, we find a mechanism for nucleation of nanoscale y-plates on quenched defects, identify a bulk structure from a calculated phase diagram that gives the relevant HCP equilibrium precipitate structure occurring at 50 at.% Ag and calculate critical nucleation parameters for y-precipitate formation. Applications to island-coarsening and lath morphology are also discussed.
机译:相间边界能的密度泛函理论(DFT)计算为合金系统中许多析出物生长模型提供了有用的输入[1]。一个例子是Al-Ag,其中存在各种各样的沉淀物类型,其大小和形状大致由Wulff结构确定,即相对于几何形状最小化表面自由能。但是,这只是一个近似值,因为动力学考虑和晶体学不允许均匀的各向同性生长。因此,为y板开发了一个非平衡生长模型[2],该模型试图以合并形状和界面能量的方式连接半相干(边缘)和非相干(边缘)界面的增长率。通过这种连接,我们建立了一个DFT模型,该模型具有反映实验条件的近似晶胞,从而可以准确地预测析出物的长宽比和非平衡形状的时间发展。从对铃木的溶质偏析到堆叠缺陷的显式计算开始,我们发现了一种在淬火缺陷上形成纳米级y形核的机制,从计算出的相图中确定了一个整体结构,该相结构给出了相关的HCP平衡析出结构在50原子百分数为Ag,并计算形成Y沉淀的关键形核参数。还讨论了在岛粗化和板条形态学中的应用。

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