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首页> 外文期刊>Metallurgical and Materials Transactions A >Grain Boundary Sliding during Diffusion and Dislocation Creep in a Mg-0.7 Pct Al Alloy
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Grain Boundary Sliding during Diffusion and Dislocation Creep in a Mg-0.7 Pct Al Alloy

机译:Mg-0.7 Pct铝合金在扩散和位错蠕变过程中的晶界滑动

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摘要

Early studies on grain boundary sliding (GBS) in Mg alloys have suggested frequently that the contribution of GBS to creep is high even under conditions corresponding to dislocation creep. The role of creep strain and grain size in influencing the experimental measurements has not been clearly identified. Grain boundary sliding measurements were conducted in detail over experimental conditions corresponding to diffusion creep as well as dislocation creep in a single-phase Mg-0.7 wt pct Al alloy. The results indicated clearly that the GBS contribution to creep was very high during diffusion creep at low stresses (~75 pct) and substantially reduced during dislocation creep at high stresses (~15 pct). These measurements were consistent with the observation of significant intragranular slip band activity observed in most grains at high stresses and very little slip band activity at low stresses. The experimental measurements and analysis indicated also that the GBS contribution to creep was high during the initial stages of creep and decreased to a steady-state value at large strains.
机译:镁合金中晶界滑动(GBS)的早期研究经常表明,即使在与位错蠕变相对应的条件下,GBS对蠕变的贡献也很高。蠕变应变和晶粒尺寸在影响实验测量中的作用尚未明确。在对应于单相Mg-0.7 wt%pct铝合金中的扩散蠕变和位错蠕变的实验条件下,对晶界滑动进行了详细的测量。结果清楚地表明,在低应力(〜75 pct)的扩散蠕变中,GBS对蠕变的贡献很高,而在高应力(〜15 pct)的位错蠕变中,GBS对蠕变的贡献大大减小。这些测量结果与观察到的大多数晶粒在高应力下观察到的明显的滑移带活动有关,而在低应力下观察到的滑移带活动很少。实验测量和分析还表明,GBS对蠕变的贡献在蠕变的初始阶段较高,并且在大应变时下降到稳态值。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2007年第8期|1743-1749|共7页
  • 作者

    R.S. Kottada; A.H. Chokshi;

  • 作者单位

    Department of Materials Engineering Indian Institute of Science Bangalore 560 012 India;

    Department of Materials Engineering Indian Institute of Science Bangalore 560 012 India;

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  • 正文语种 eng
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