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Precipitation in stretched Al-Cu-Mg alloys with reduced alloying content studied by DSC, TEM and atom probe

机译:通过DsC,TEm和原子探针研究了具有降低的合金含量的拉伸al-Cu-mg合金中的沉淀

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摘要

The hardening and microstructural evolution during ageing of a Al-1.2Cu-0.5Mg and a Al-1.2Cu-1.2Mg (at.%) alloy has been investigated. Artificial ageing at 150°C of stretched and naturally aged samples initially (up to about 48 h) leads to very limited further strengthening, but ageing at 190°C results a quick increase in strength. Detailed microstructural investigation using differential scanning calorimetry, transmission electron microscopy and three-dimensional atom probe demonstrated that hardening at 150ºC is mostly dominated by the formation of solute clusters with varying compositions and plate-like zones rich in copper at early stages of ageing (t24h) and by the formation of S phase at the later stages of ageing. At higher 190ºC no zones or clusters form and the ageing is dominated by the formation of S precipitates.
机译:研究了Al-1.2Cu-0.5Mg和Al-1.2Cu-1.2Mg(at。%)合金在时效过程中的硬化和显微组织演变。拉伸和自然老化的样品最初在150°C下进行人工时效(长达约48小时)导致进一步强化的作用非常有限,但在190°C时效会导致强度快速提高。使用差示扫描量热法,透射电子显微镜和三维原子探针进行的详细的微观结构研究表明,在150ºC时的硬化主要由溶质团簇的形成决定,溶质团簇具有不同的成分和在老化的早期阶段富含铜的板状区域(t < 24h),并在老化的后期形成S相。在更高的190ºC下,不会形成任何区域或簇,并且老化主要是由S沉淀的形成所致。

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