材料科学
铝
合金
降水
冶金
沉淀硬化
铝合金
物理
气象学
作者
Veronika Kodetová,Martin Vlach,J. Čı́žek,Miroslav Cieslar,Lucia Bajtošová,Hana Kudrnová,Michal Leibner,V. Šı́ma
出处
期刊:Acta Physica Polonica A
[Institute of Physics, Polish Academy of Sciences]
日期:2020-02-01
卷期号:137 (2): 250-254
被引量:6
标识
DOI:10.12693/aphyspola.137.250
摘要
Precipitation reactions of the commercial Al-Zn-Mg-Cu(-Sc-Zr) alloy in mould-cast, cold-rolled, and heattreated states were characterized by electron microscopy, X-ray diffraction, thermal analysis, microhardness testing, and positron annihilation spectroscopy.The distinct changes in microhardness curves as well as in a heat flow of the alloys studied are mainly caused by dissolution of clusters and precipitation of particles from the Al-Zn-Mg-Cu system.An easier diffusion of Zn, Mg, and Cu atoms along dislocations is responsible for the precipitation of Zn,Mg,Cu-containing particles at lower temperatures compared to the mould-cast alloys The mould-cast and coldrolled alloys contain solute clusters rich in Mg and Zn.Clusters formed in the heat-treated alloys during natural ageing have similar composition but in addition to Mg and Zn contain also Cu.The Cu-concentration increases with increase of period of natural ageing.The mould-cast state after natural ageing contain in addition to solute agglomerates also vacancy clusters formed by agglomeration of thermal vacancies.Addition of Sc and Zr results in a higher hardness above ≈ 270 • C due to a strengthening by Al3(Sc,Zr) particles with a good thermal stability.Sc and Zr have probably no influence on the evolution of solute clusters.
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