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首页> 外文期刊>Materials transactions >Microstructural evolution in an Al-1.7 at%Cu alloy deformed by equal-channel angular pressing
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Microstructural evolution in an Al-1.7 at%Cu alloy deformed by equal-channel angular pressing

机译:等通道角挤压变形的Al-1.7 at%Cu合金的组织演变

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The microstructural evolution during the equal channel angular (ECA) pressing process of an α + θ' two-phase Al-1.7 at%Cu alloy has been studied by transmission electron microscopy (TEM). Theθ' precipitates are severely deformed after the first pass of ECA pressing that gives rise to a strain of ε~1. After 8 passes of the ECA pressing, most of the θ' precipitates are dissolved and the nearly single phase of a with α fine grain size of approximately 500 nm is obtained. When the single phase ultrafine grain microstructure which is obtained from a supersaturated Al-1.7 at% Cu is aged for 24 h at 100℃, precipitation of the equilibrium θ phase is observed along the grain boundaries, whereas only GP zones are formed in the undeformed specimen. This suggests that the grain boundaries in the ultrafine grained microstructure provide heterogeneous nucleation sites for the θ precipitates. The supersaturation required for precipitation of the GP zones is lost quickly by diffusion of Cu to the grain boundaries when a larger strain is imposed by ECA pressing.
机译:通过透射电子显微镜(TEM)研究了α+θ'两相Al-1.7 at%Cu合金等通道角挤压(ECA)过程中的组织演变。在第一次ECA挤压之后,θ'析出物严重变形,从而产生ε〜1的应变。经过8次ECA压制后,大部分θ'沉淀物溶解,并获得了α细晶粒尺寸约为500 nm的几乎单相的α。当由过饱和Al-1.7 at%Cu获得的单相超细晶粒组织在100℃时效24 h时,沿晶界观察到平衡θ相的析出,而在未变形区仅形成GP区。标本。这表明超细晶粒组织中的晶界为θ析出物提供了异质形核位点。当通过ECA挤压施加更大的应变时,Cu扩散到晶界会迅速失去GP区析出所需的过饱和度。

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