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Mean-field model for the growth and coarsening of stoichiometric precipitates at grain boundaries

机译:晶界化学计量沉积物生长和粗化的平均场模型

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摘要

In this paper, a model for growth and coarsening of precipitates at grain boundaries is developed. The concept takes into account that the evolution of grain boundary precipitates involves fast short-circuit diffusion along grain boundaries as well as slow bulk diffusion of atoms from the grain interior to the grain boundaries. The mathematical formalism is based on a mean-field approximation, utilizing the thermodynamic extremal principle. The model is applied to the precipitation of aluminum nitrides in microalloyed steel in austenite, where precipitation occurs predominately at the austenite grain boundaries. It is shown that the kinetics of precipitation predicted by the proposed model differs significantly from that calculated for randomly distributed precipitates with spherical diffusion fields. Good agreement of the numerical solution is found with experimental observations as well as theoretical treatment of precipitate coarsening.
机译:在本文中,建立了晶粒边界处析出物生长和粗化的模型。该概念考虑到晶界沉淀物的演化涉及沿晶界的快速短路扩散以及原子从晶内部到晶界的缓慢整体扩散。数学形式主义是基于平均场近似,利用热力学极值原理。该模型适用于奥氏体中微合金钢中氮化铝的析出,其中析出主要发生在奥氏体晶界处。结果表明,所提出的模型所预测的降水动力学与针对具有球形扩散场的随机分布的降水所计算的动力学存在显着差异。数值解与实验观察以及沉淀物粗化的理论处理有很好的一致性。

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