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The Serrated Flow Behavior of Mg-Gd(-Mn-Sc) Alloys

机译:Mg-Gd(-Mn-Sc)合金的锯齿状流动行为

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摘要

The tensile deformation behavior of extruded samples of Mg-0.8 pct Gd and Mg-0.8 pct Gd-0.5 pct Mn-0.45 pct Sc (at. pct) alloys has been studied. Both alloys exhibit serrated flow when they are tensile tested at temperatures ranging from 150 °C to 300 °C and at strain rates of 1.67 × 10?4 s?1 to 1.67 × 10?2 s?1, and this serrated flow behavior is significantly affected by postextrusion heat treatments. Combined with observations made by transmission electron microscopy (TEM) and three-dimensional atom probe (3DAP), the serrated flow is attributed to dynamic interactions between solute atoms and gliding dislocations. It is suggested that Gd atoms in the solid solution matrix of magnesium are mainly responsible for the serrations in the two alloys. The additions of Mn and Sc to the Mg-Gd alloy strengthen the dynamic solute-dislocation interactions and lead to a lower critical strain and larger stress drops of the serrated flow in the Mg-Gd-Mn-Sc alloy.
机译:研究了Mg-0.8 pct Gd和Mg-0.8 pct Gd-0.5 pct Mn-0.45 pct Sc(at。pct)合金的挤压试样的拉伸变形行为。两种合金在150°C至300°C的温度下以及在1.67×10?4 s?1 至1.67×10?2 的应变速率下进行拉伸测试时,均呈现锯齿状流动。 sup> s?1 ,并且锯齿状的流动行为会受到挤压后热处理的明显影响。结合透射电子显微镜(TEM)和三维原子探针(3DAP)的观察结果,锯齿状流动归因于溶质原子和滑脱位错之间的动态相互作用。建议镁固溶体基质中的Gd原子主要负责两种合金中的锯齿。在Mg-Gd合金中添加Mn和Sc增强了动态溶质-位错相互作用,并导致Mg-Gd-Mn-Sc合金中锯齿状流的临界应变更低,应力降更大。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2009年第11期|2761-2771|共11页
  • 作者

    X. Y. Fang; D. Q. Yi; J. F. Nie;

  • 作者单位

    Department of Materials Engineering Monash University Victoria 3800 Australia;

    School of Materials Science and Engineering Central South University Changsha 410083 P.R. China;

    Department of Materials Engineering Monash University Victoria 3800 Australia;

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