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The effect of Ga on internal friction of pure Al before and after deformation

机译:Ga对纯Al变形前后内摩擦的影响

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摘要

The grain boundary internal friction of pure Al and the same Al doped with different amounts of Ga (10, 50 and 410 ppm) was measured before and after high temperature deformation at two different modes (static tensile creep and cyclic reverse torsion). It was found that without deformation, the smaller amount of Ga (10 and 50 ppm) slightly increases, but the larger amount of Ga (410 ppm) obviously increases the activation energy. After tensile creep, the peak height for Al-10 ppm Ga and Al-50 ppm Ga decreases to a lower level, but keeps at a higher level after cyclic torsion, than that for pure Al and Al-410 ppm Ga. The results are interpreted in terms of perturbations in the grain boundaries due to slip and grain boundary roughening for stationary boundaries and an enhanced sliding by grain boundary migration. Migration and roughening are promoted by Ga contents up to 50 ppm while the effects are diminished by higher amounts of Ga. This is consistent with previous observations that smaller amounts of Ga increase the grain boundary mobility in pure Al.
机译:在两种不同模式(静态拉伸蠕变和循环反向扭转)的高温变形前后,分别测量了纯Al和掺杂有不同量的Ga(10、50和410 ppm)的同一Al的晶界内摩擦。发现在不变形的情况下,少量的Ga(10和50ppm)稍微增加,但是大量的Ga(410ppm)明显增加活化能。经过拉伸蠕变后,与纯Al和Al-410 ppm Ga相比,Al-10 ppm Ga和Al-50 ppm Ga的峰高降低到较低的水平,但在循环扭转后保持在较高的水平。解释是由于滑移和晶界粗糙化导致的对晶界的扰动,静止边界和由于晶界迁移而增强的滑动。高达50 ppm的Ga含量促进了迁移和粗化,而更高含量的Ga降低了迁移和粗化。这与以前的观察结果一致,即少量的Ga会增加纯Al中的晶界迁移率。

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  • 来源
    《Journal of Materials Science》 |2003年第9期|1895-1899|共5页
  • 作者单位

    Key Laboratory of Internal Friction and Defects in Solids Institute of Solid State Physics Chinese Academy of Science;

    Key Laboratory of Internal Friction and Defects in Solids Institute of Solid State Physics Chinese Academy of Science;

    Key Laboratory of Internal Friction and Defects in Solids Institute of Solid State Physics Chinese Academy of Science;

    Key Laboratory of Internal Friction and Defects in Solids Institute of Solid State Physics Chinese Academy of Science;

    Institut fuer Metallkunde und Metallphysik RWTH Aachen;

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