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Influence of nano-scaled dispersed second phase on substructure of deformed dispersion strengthened copper alloy

         

摘要

The deformation behavior of dispersion strengthened copper alloy Cu-Al2O3 was studied by TEM. The results show that nano-scaled dispersed second phase not only increases dislocation density in matrix, but also has an important influence on the dislocation substructure. The presence of fine dispersed Al2 O3 particles results in a uniform and random dislocation distribution in matrix copper and causes the difficulty in formation of dislocation cell structure and the decrease in the amount of cell structure during deformation. Deformation gives rise to much more dislocations and dislocation cells form more difficultly and the decrease in the cell size with the increase of dispersion degree.

著录项

  • 来源
    《中南大学学报》 |2005年第z1期|50-53|共4页
  • 作者单位

    School of Materials Science and Engineering;

    Jiujiang University;

    Jiujiang 332005;

    China;

    School of Metallurgy Science and Engineering;

    Central South University;

    Changsha 410083;

    China;

    Hailiang Group Co. Ltd;

    Zhuji 311835;

    China School of Materials Science and Engineering;

    Central South University;

    Changsha 410083;

    China Hailiang Group Co. Ltd;

    Zhuji 311835;

    China Hailiang Group Co. Ltd;

    Zhuji 311835;

    China School of Materials Science and Engineering;

    Central South University;

    Changsha 410083;

    China;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 TG146.11;
  • 关键词

    dispersed; phase; particle; dispersion; strengthened; copper; alloy; deformation; substructure;

    机译:分散相;颗粒;弥散强化铜合金;变形;亚结构;
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