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Precipitation behavior of an Al-Cu alloy during isothermal aging at low temperatures

机译:低温等温时效过程中Al-Cu合金的析出行为

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The relationship between microstructures and the thermal stability of precipitates appearing during isothermal aging at 403 K in an Al-Cu alloy was investigated, using Vickers microhardness tests, differential scanning calorimetry (DSC), high-resolution transmission electron microscopy (HRTEM) and high-angular annular dark-field scanning transmission electron microscopy (HAADF-STEM) observations. Using a new terminology, we suggest a modified interpretation that the phase decomposition in the Al-Cu alloy follows the sequence: supersaturated solid solution→quenched clusters→G.P.(I)→G.P. (II)→θ" (independent of G.P.(II))→θ'→stable θ. The present HRTEM and HAADF-STEM observations revealed that a quenched cluster is a monolayer Cu-rich plate approximately a few nm Cu in size, G.P.(I) is also a monolayer copper platelet but slightly larger than the cluster. G.P.(II) is bilayer and θ" comprises multiple (at least three) copper-layers, respectively. The Vickers microhardness increased mainly due to the formation of quenched clusters and G.P.(II).
机译:使用维氏显微硬度测试,差示扫描量热法(DSC),高分辨率透射电子显微镜(HRTEM)和高光谱法研究了Al-Cu合金在403 K等温时效过程中出现的析出物的微观结构与热稳定性之间的关系。角环形暗场扫描透射电子显微镜(HAADF-STEM)观察。我们使用一种新的术语,提出了一种修改后的解释,即Al-Cu合金中的相分解遵循以下顺序:过饱和固溶体→淬火团簇→G.P。(I)→G.P。 (II)→θ”(与GP(II)无关)→θ′→稳定的θ。目前的HRTEM和HAADF-STEM观察结果表明,淬火团簇是单层富含铜的板,尺寸约为Cu的几纳米,GP (I)也是单层的铜片,但是比簇略大。GP(II)是双层的,并且θ”分别包括多个(至少三个)铜层。维氏显微硬度的增加主要是由于淬火团簇和G.P.(II)的形成。

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