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A synergetic grain growth mechanism uniting nanograin rotation and grain boundary migration in nanocrystalline materials

机译:纳米晶材料中结合纳米晶粒旋转和晶界迁移的协同晶粒生长机理

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A theoretical model has been developed to analyze the energetic characteristic of a cooperative grain growth process in nanocrystalline materials. We proposed that the process can be realized by rotating the adjoining grains first and then migrating the boundary that separates the grains, or vise versa, or by enabling both rotation and migration simultaneously. It is revealed that the synergetic process is energetically more favorable than the pure individual growth processes, i.e., nano-grain rotation or shear-coupled migration of grain boundaries. The critical stress that is required to initiate the growth process is also considerably reduced. The findings suggest a new general mode of grain growth in nanocrystalline metals.
机译:已经开发了理论模型来分析纳米晶材料中协同晶粒生长过程的能量特征。我们提出,可以先旋转相邻的晶粒,然后迁移分隔晶粒的边界,反之亦然,或者同时启用旋转和迁移,以实现该过程。揭示了协同过程在能量上比纯粹的单个生长过程更有利,即,纳米晶粒旋转或晶界的剪切耦合迁移。启动生长过程所需的临界压力也大大降低了。这些发现暗示了纳米晶金属中晶粒生长的一种新的一般模式。

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