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Effect of Applied Stress on Nucleation and Growth of Precipitates in a Cu-Be-Co Alloy

机译:施加应力对Cu-Be-Co合金中析出物形核和生长的影响

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The influence of an external stress on the nucleation and growth of disk-shaped G.P. zones has been investigated for a Cu-1.2wt%Be-0.1wt%Co alloy aged at 220°C. A compressive stress applied in the [001] direction during aging preferentially accelerates the nucleation and growth of the G.P. zones perpendicular to the [001] axis, whereas a tensile stress does not significantly affect those of G.P. zones. The promotion of the nucleation and growth of the G.P. zones perpendicular to the compressive-stress axis can be well understood through the interaction energy between the applied stress and the misfit strains of G.P. zones. The critical diameter of the disk-shaped G.P. zone nucleus was estimated as about 1.3nm from evaluation of the interaction energy.
机译:外部应力对圆盘状G.P.形核和生长的影响已经研究了在220°C时效的Cu-1.2wt%Be-0.1wt%Co合金的碳化氢区。在老化过程中沿[001]方向施加的压应力优先加速G.P的形核和生长。垂直于[001]轴的区域,而拉伸应力不会显着影响G.P.区域。促进G.P.的成核和生长通过施加的应力和G.P的失配应变之间的相互作用能可以很好地理解垂直于压应力轴的区域。区域。圆盘形G.P.的临界直径根据相互作用能的评估,区域核估计约为1.3nm。

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