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Stress-oriented nucleation of Omega-phase plates in an Al-Cu-Mg-Ag alloy

机译:Al-Cu-Mg-Ag合金中Omega相板的应力定向成核

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The effect of an external stress applied during formation of Omega-phase plates in an Al-Cu-Mg-Ag alloy is examined by two-step ageing: stress ageing followed by ageing or vice versa. A compressive stress applied at the beginning of ageing is shown to promote the formation of the Omega-phase plates lying on the {111} planes perpendicular to the stress axis. The stress effect is found to be dominant only in the early stage of ageing, indicating that it affects nucleation. Quantitative data have been obtained on stress-assisted nucleation by analysing correlation between the number of the Omega-phase plates and the stress acting on the {111} habit planes in different grains in a polycrystal. From the stress-orienting effect described above and the transformation strain (eigenstrain) measured by high-resolution electron microscopy, a critical size of the Omega plate nucleus is estimated to be about 0.3 nm(3), consisting of approximately ten atoms. [References: 19]
机译:在Al-Cu-Mg-Ag合金中的Omega相板形成过程中施加的外部应力的影响可通过两步时效检验:应力时效,然后时效,反之亦然。示出了在老化开始时施加的压应力促进了在垂直于应力轴的{111}平面上的Ω相板的形成。发现应力效应仅在老化的早期才占主导地位,表明它影响成核作用。通过分析ω相板的数量与多晶中不同晶粒中作用在{111}惯性面上的应力之间的相关性,获得了有关应力辅助形核的定量数据。根据上述应力定向效应和通过高分辨率电子显微镜测得的转变应变(本征应变),Omega板核的临界尺寸估计约为0.3 nm(3),由大约十个原子组成。 [参考:19]

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