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首页> 外文期刊>Journal of Materials Science >Soft impingement in diffusion-controlled growth of binary alloys: Moving boundary effect in one-dimensional system
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Soft impingement in diffusion-controlled growth of binary alloys: Moving boundary effect in one-dimensional system

机译:二元合金扩散控制生长中的软碰撞:一维系统中的移动边界效应

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The impact of soft impingement on the kinetics of diffusion-controlled growth of binary alloys is investigated. An analytical approach is developed which takes into account the process of island growth, that is the time dependence of the position of the nucleus/parent phase interface. The concentration profile, the growth law, and the kinetics of the fraction of transformed phase are computed and compared with those attained for point islands. At odd with the point island approach the local kinetics of growth depends on initial supersaturation. On the other hand, the whole transformation kinetics is in good agreement with that of the point island model with an Avrami exponent close to the theoretical value n = 0.5. The concentration profile is well described by a polynomial function in the whole spatial domain, with an exception for the initial stage of the phase separation. The effect of the spatial distribution of the nuclei on the kinetics is also studied in the model case of hard-core correlation among nuclei.
机译:研究了软冲击对二元合金扩散控制生长动力学的影响。开发了一种分析方法,该方法考虑了岛生长的过程,即核/母相界面位置的时间依赖性。计算浓度分布,生长规律和转化相的分数动力学,并将其与点岛所获得的动力学进行比较。与点岛法不同,生长的局部动力学取决于初始过饱和。另一方面,整个变换动力学与点岛模型的Avrami指数接近理论值n = 0.5的情况非常吻合。浓度分布在整个空间域中由多项式函数很好地描述,相分离的初始阶段除外。在原子核之间的硬核相关的模型情况下,还研究了原子核的空间分布对动力学的影响。

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