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Directional annealing of cold-rolled copper single crystals

机译:冷轧铜单晶定向退火

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摘要

The effects of annealing temperature, hot zone velocity and temperature gradient ahead of the hot zone on the microstructure of directionally-annealed, cold-rolled, high-purity copper single crystals were investigated. Columnar grains were observed at an optimum hot zone velocity that increased with increasing annealing temperature and decreasing temperature gradient. Equiaxed grains were formed both when the velocity of hot zone movement was low, and when it exceeded the maximum growth rate of grains. The number of twin boundaries per unit area decreased with increasing hot zone velocity, increasing temperature gradient and decreasing annealing temperature. The results are explained in terms of the effects of annealing temperature and temperature gradient on the grain boundary mobility and the nucleation of new grains and twins.
机译:研究了退火温度、热区速度和热区前温度梯度对定向退火、冷轧、高纯铜单晶组织的影响。柱状晶粒在最佳热区速度下观察到,随着退火温度的升高和温度梯度的减小而增加。当热区运动速度较低时,以及当热区运动速度超过晶粒最大生长速率时,均会形成等轴晶粒。单位面积的孪晶边界数量随着热区速度的增加、温度梯度的增大和退火温度的降低而减少。从退火温度和温度梯度对晶界迁移率以及新晶粒和孪晶成核的影响的角度解释了结果。

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