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The Effect of Triple Junctions on Grain Boundary Motion and Grain Microstructure Evolution

机译:三重连接对晶粒边界运动和晶粒微结构演变的影响

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The theory of steady state motion of grain boundary systems with triple junctions and the main features of such systems are considered. A special technique of in-situ observations and recording of triple junction motion is introduced, and the results of experimental measurements on Zn tricrystals are discussed. It is shown, in particular, that the described method makes it possible to measure the triple junction mobility. It was found that the measured shape of a moving half-loop with a triple junction agrees with theoretical predictions. A transition from triple junction kinetics to grain boundary kinetics was observed. This means that triple junctions can drag boundary motion. It is demonstrated that the microstructural (granular) evolution is slowed down by triple junction drag for any n-sided grain. The second consequence pertains to six-sided grains. For a boundary system with dragging triple junctions there is no unique dividing line between vanishing and growing grains with respect to their topological class anymore, like n = 6 in the Von Neumann-Mullins relation
机译:考虑了具有三重结的晶界系统的稳态运动理论和这种系统的主要特征。介绍了一种特殊的原位观察和三重结运动记录技术,并讨论了对锌三晶体的实验测量结果。特别地,示出了所描述的方法使得可以测量三重结迁移率。发现具有三重结的移动半环的测量形状与理论预测相符。观察到从三重结动力学到晶界动力学的转变。这意味着三重结会拖曳边界运动。结果表明,对于任何n面晶粒,三重结拖曳都会减慢微结构(颗粒)的演化。第二个结果与六面晶粒有关。对于具有拖动三重结的边界系统,就其拓扑类别而言,消失的晶粒和正在生长的晶粒之间不再存在唯一的分界线,例如冯·诺依曼-穆林关系中的n = 6

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