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相粗化的建模与模拟:与实验的比较

Modeling and simulation for phase coarsening: a comparison with experiment.

作者信息

Wang K G, Glicksman M E, Rajan K

机构信息

Materials Science and Engineering Department, Rensselaer Polytechnic Institute, Troy, New York 12180-3590, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2004 Jun;69(6 Pt 1):061507. doi: 10.1103/PhysRevE.69.061507. Epub 2004 Jun 16.

Abstract

The phase coarsening of precipitates is modeled in the framework of Debye-Hückel theory. The interactions observed among a population of precipitates dispersed throughout a matrix can be described by diffusion screening. The relationship between the maximum particle radius and the volume fraction of the phases is established, and the rate of coarsening is related to the volume fraction and the self-similar particle size distribution. We simulated the dynamics of late-stage phase separation using multiparticle diffusion methods. Experimental measurements on the rates of coarsening of delta(') ( Al3 Li) precipitates in binary Al-Li alloys are compared with our results using modeling and simulation. The theoretically predicted particle size distributions and the maximum radius expected for particles in the microstructure agree well with recent experimental results.

摘要

在德拜-休克尔理论框架内对析出相的相粗化进行建模。在整个基体中分散的大量析出相之间观察到的相互作用可以用扩散屏蔽来描述。建立了最大颗粒半径与相体积分数之间的关系,并且粗化速率与体积分数和自相似颗粒尺寸分布有关。我们使用多粒子扩散方法模拟了后期相分离的动力学。将二元Al-Li合金中δ(')(Al3Li)析出相的粗化速率的实验测量结果与我们使用建模和模拟得到的结果进行了比较。理论预测的颗粒尺寸分布以及微观结构中颗粒预期的最大半径与最近的实验结果吻合良好。

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