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跨界面扩散控制的粗化

Trans-interface diffusion-controlled coarsening.

作者信息

Ardell Alan J, Ozolins Vidvuds

机构信息

Department of Materials Science and Engineering, University of California, Los Angeles, Los Angeles, California 90095-1595, USA.

出版信息

Nat Mater. 2005 Apr;4(4):309-16. doi: 10.1038/nmat1340.

Abstract

Accurate theoretical predictions of the volume-fraction dependence during diffusion-controlled coarsening of a polydisperse assembly of particles have proved difficult. Here, a new model of coarsening is presented, involving diffusive transport through the coherent interface between ordered and disordered phases, which atomistic calculations show has a ragged structure. The interface is a diffusion bottleneck when the ordered phase is dispersed. It is predicted that the square of the average radius grows linearly with time, that the depletion of solute decreases as the inverse square-root of time, and that there is no effect of volume fraction on kinetics and the scaled particle-size distributions. These differ dramatically from predictions of modern theories of diffusion-controlled coarsening. Data on coarsening in Ni-Al alloys is examined. We show that no other theory is consistent with the experimentally observed absence of an effect of volume fraction on coarsening of ordered gamma' (Ni3Al) precipitates in a disordered Ni-Al (gamma) matrix, and the strong volume-fraction dependence of coarsening of gamma precipitates in an ordered gamma' matrix.

摘要

事实证明,对多分散颗粒聚集体在扩散控制粗化过程中体积分数依赖性进行准确的理论预测是困难的。在此,提出了一种新的粗化模型,该模型涉及通过有序相和无序相之间的相干界面进行扩散传输,原子计算表明该界面具有参差不齐的结构。当有序相分散时,该界面是一个扩散瓶颈。据预测,平均半径的平方随时间线性增长,溶质的耗尽随时间的平方根倒数而减少,并且体积分数对动力学和标度化颗粒尺寸分布没有影响。这些与扩散控制粗化的现代理论预测有很大不同。对镍铝合金中粗化的数据进行了研究。我们表明,没有其他理论与实验观察结果一致,即在无序镍铝(γ)基体中,有序γ'(Ni3Al)析出相的粗化不存在体积分数效应,而在有序γ'基体中,γ析出相的粗化具有强烈的体积分数依赖性。

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