首页> 外文期刊>The Physics of Metals and Metallography >The deformation texture of rolled ribbons of copper-based alloys as a condition of producing a sharp cubic texture upon recrystallization
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The deformation texture of rolled ribbons of copper-based alloys as a condition of producing a sharp cubic texture upon recrystallization

机译:铜基合金轧制带材的变形织构作为再结晶时产生锐利立方织构的条件

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It has been shown that a specific quantitative relationship of main textural components after cold deformation (by rolling to 98.6-99%) of copper alloys determines the possibility of producing a sharp cubic texture in the ribbons after subsequent recrystallization annealing. The binary alloys of copper with nickel (up to 40 at %) and of copper with additions of iron and chromium correspond to this criterion. It has been found that the optimum deformation texture can be created in some ternary copper-nickel alloys with addition of Cr, Fe or Mn. It has been shown that the analysis of the component composition of deformation textures using the orientation distribution function can yield more precise predictions than the stacking fault energy values, as well as make it possible to obtain a cubic texture upon subsequent recrystallization.
机译:业已表明,铜合金冷变形(轧制至98.6-99%)后,主要组织成分的特定数量关系决定了在随后的再结晶退火后,薄带中产生尖锐的立方织构的可能性。铜与镍(至多40 at%)的二元合金以及铜与铁和铬的添加的二元合金符合该标准。已经发现,在某些三元铜-镍合金中添加铬,铁或锰可以产生最佳的变形织构。已经表明,使用取向分布函数对变形织构的成分组成进行分析可以比堆叠缺陷能量值产生更精确的预测,并且可以在随后的重结晶中获得立方织构。

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