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Influence of grain boundary characteristics on thermal stability in nanotwinned copper

机译:晶界特性对纳米孪晶铜热稳定性的影响

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摘要

High density grain boundaries provide high strength, but may introduce undesirable features, such as high Fermi levels and instability. We investigated the kinetics of recovery and recrystallization of Cu that was manufactured to include both nanotwins (NT) and high-angle columnar boundaries. We used the isothermal Johnson-Mehl-Avrami-Kolmogorov (JMAK) model to estimate activation energy values for recovery and recrystallization and compared those to values derived using the non-isothermal Kissinger equation. The JMAK model hinges on an exponent that expresses the growth mechanism of a material. The exponent for this Cu was close to 0.5, indicating low-dimensional microstructure evolution, which is associated with anisotropic twin coarsening, heterogeneous recrystallization, and high stability. Since this Cu was of high purity, there was a negligible impurity-drag-effect on boundaries. The twin coarsening and heterogeneous recrystallization resulted from migration of high-angle columnar boundaries with their triple junctions in one direction, assisted by the presence of high concentration vacancies at boundaries. Analyses performed by electron energy loss spectroscopy of atomic columns at twin boundaries (TBs) and in the interior showed similar plasma peak shapes and L3 edge positions. This implies that values for conductivity and Fermi level are equal for atoms at TBs and in the interior.
机译:高密度晶界提供高强度,但可能引入不良特征,例如高费米能级和不稳定性。我们研究了铜的恢复和重结晶动力学,该铜被制造为既包括纳米孪晶(NT)又包括大角度柱状边界。我们使用等温的Johnson-Mehl-Avrami-Kolmogorov(JMAK)模型来估计活化能值,以进行回收和重结晶,并将其与使用非等温Kissinger方程得出的值进行比较。 JMAK模型依赖于表示材料生长机制的指数。该Cu的指数接近0.5,表明低维显微组织的演变,这与各向异性孪晶粗化,非均质再结晶和高稳定性有关。由于该铜具有高纯度,因此在边界上的杂质拖曳效应可忽略不计。孪晶粗化和非均相再结晶是由于高角度柱状晶界及其三重结在一个方向上的迁移所致,而边界处存在高浓度的空位。通过双原子边界(TBs)和内部原子列的电子能量损失谱进行的分析显示出相似的等离子体峰形状和L3边缘位置。这意味着在TBs和内部原子的电导率和费米能级值相等。

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