On the increase in the recrystallization temperature of nanostructured vacuum copper based condensates

M. Glushchenko, O. Sobol, A. Zubkov
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Abstract

The structure of Cu-Ta and Cu-Mo condensates obtained by electron-beam evaporation from various sources in a vacuum is studied. It is shown that alloying copper condensates with tantalum and molybdenum disperses the grain structure of the copper matrix from micro- to nanoscale dimension as a result of the formation of grain boundary segregations by these elements that are formed on the surface of growing grains of copper matrix. Initial grain structure of alloyed condensates is retained to a temperature of ∼ 900°C.
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纳米结构真空铜基冷凝物再结晶温度的升高
研究了真空中不同来源的电子束蒸发所得Cu-Ta和Cu-Mo凝聚物的结构。结果表明,钽、钼等元素在铜基体生长晶粒表面形成晶界偏析,使铜基体的晶粒结构从微观尺度向纳米尺度分散。合金凝析物的初始晶粒结构保持到900℃。
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