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Low-Energy Dislocation Structure (LEDS) character of dislocation boundaries aligned with slip planes in rolled aluminium

机译:位错边界的低能量位错结构(LEDs)特征与轧制铝中的滑移面对齐

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摘要

For the specific slip geometry of two sets of coplanar systems (a total of four systems) in fcc metals, the range of dislocation networks in boundaries aligned with one of the two active slip planes is predicted from the Frank equation for boundaries free of long-range elastic stresses. Detailed comparison with experimental data for eight dislocation boundaries in cold-rolled aluminium grains of the 45° ND rotated Cube orientation is conducted. It is concluded that the boundaries are Low-Energy Dislocation Structures, which are in good agreement with the Frank equation while also lowering the energy by dislocation reactions. Cross slip plays a role in the boundary formation process.
机译:对于fcc金属中两组共面系统(总共四个系统)的特定滑移几何形状,从弗兰克方程式中可以预测出与两个活动滑移平面之一对齐的边界中位错网络的范围,即无长边的边界范围弹性应力。进行了与实验数据的比较,对45°ND旋转立方取向的冷轧铝晶粒中的八个位错边界进行了比较。结论是边界是低能位错结构,与弗兰克方程很好地吻合,同时通过位错反应降低了能量。交叉滑移在边界形成过程中起作用。

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