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Grain Growth Simulations Including Particle Pinning Using the Multiphase-field Concept

机译:使用多相场概念的包括颗粒固定在内的晶粒生长模拟

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In this paper, the effect of particle pinning on grain boundary motion is investigated by phase-field modeling. In general, the kinetics of grain growth in multicrystalline materials is determined by the interplay of curvature driven grain boundary motion and the balance of interfacial tension at the vertices of a grain boundary network. A comprehensive way to treat both effects in one model is given by the phase-field approach. The specific feature of the multiphase-field model used for this investigation is its ability to treat each grain or phase boundary with its individual characteristics, together with a thermodynamic coupling which allows a sound treatment of phase transformation, e.g. the formation of precipitates of a second phase.rnThe pinning effect itself is simulated on the nanometer scale resolving the interaction of individual inert or reactive precipitates with a curved grain boundary. From these simulations an effective pinning force is deduced, and a model for a driving force dependent grain boundary mobility is formulated accounting for the pinning effect in the grain growth simulation on the mesoscopic scale. These simulations demonstrate how particle pinning leads to much slower growth kinetics and a different grain morphology with higher boundary curvatures in the stationary state. Finally, an increase of the pinning force due to a changing particle density, e.g. during heat treatment, is shown to result in a transition between normal and abnormal grain growth before grain coarsening is inhibited completely.
机译:本文通过相场模型研究了粒子钉扎对晶界运动的影响。通常,多晶材料中晶粒长大的动力学是由曲率驱动的晶界运动和晶界网络的顶点处的界面张力平衡所决定的。相场方法提供了一种在一个模型中处理两种效应的综合方法。用于此研究的多相场模型的特定特征是它具有处理具有各自特征的每个晶粒或相边界的能力,以及允许对相变进行合理处理的热力学耦合。钉扎效应本身是在纳米尺度上模拟的,解决了单个惰性或反应性沉淀物与弯曲晶界的相互作用。从这些模拟中推导出有效的钉扎力,并考虑介观尺度下晶粒生长模拟中的钉扎效应,制定了一个与驱动力有关的晶界迁移率的模型。这些模拟表明,固定过程中粒子钉扎如何导致缓慢得多的生长动力学和具有更高边界曲率的不同晶粒形态。最后,由于改变的颗粒密度,例如,颗粒密度,钉扎力增加。在热处理期间,显示出在完全抑制晶粒粗大化之前,会导致正常晶粒生长和异常晶粒生长之间的过渡。

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