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First-principles Study of Diffusion Coefficients of Alloy Elements in Dilute Mg Alloys

机译:稀镁合金中合金元素扩散系数的第一原理研究

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The equilibrium thermodynamic properties of Mg alloys are reasonably well understood, but the kinetics of these alloys is explored to a far lesser extent, especially diffusion coefficients of alloying elements in Mg. In the present work, first-principles calculations based on the Density Functional Theory (DFT) were used to calculate the dilute tracer diffusion coefficients in Mg for 61 elements, including rare earths, as a function of temperature using an 8-frequency model. An improved generalized gradient approximation of PBEsol was used in the present work, which is able to well describe both vacancy formation energies and vibrational properties. Systematic trends of diffusion activation energies of various solutes were analyzed. Remarkable agreements of the calculated results compared with available experimental data were obtained.
机译:Mg合金的平衡热力学性质合理地理解,但是这些合金的动力学在较小程度上探讨了较小程度,特别是Mg中合金元素的扩散系数。在本作本作中,基于密度泛函理论(DFT)的第一原理计算用于计算MG中的稀释示踪剂扩散系数,其包括使用8频率模型的温度的函数,包括稀土元素。在本作工作中使用了PBESOL的改进的广义梯度近似,其能够很好地描述空位形成能量和振动性能。分析了各种溶质的扩散激活能量的系统趋势。获得了与可用的实验数据相比计算结果的显着协议。

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