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Influence of micro-alloying with silver on microstructure and mechanical properties of Al-Cu alloy

机译:银微合金化对Al-Cu合金组织和力学性能的影响

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摘要

The present study aims to investigate the microstructure and mechanical properties of Al-Cu-Zn-Fe-Ti-Mg alloy (≈ 2219 Al-alloy), micro-alloyed with silver (Ag in the range 0 − 0.1 wt%), under different thermo-mechanical process conditions. Investigation of the microstructure of cast alloys revealed the presence of intermetallic CuAl2and metastable Al-Cu-Fe-Zn-Si-Mn phases at the grain boundary regions. The as-cast dendritic structure was eliminated by heat treatment and subsequent rolling process resulting in improved mechanical properties. The strength and hardness increased with the increase in silver content up to 0.07 wt% in combination with reasonable ductility. Maximum strength for the alloy was achieved in the rolled and age hardened condition. Fractographic studies revealed brittle failure in as-cast alloys, whereas the heat treated alloys exhibited features typical of ductile failure.
机译:本研究旨在研究在以下条件下与银微合金化(Ag含量在0-0.1 wt%范围内)的Al-Cu-Zn-Fe-Ti-Mg合金(≈2219 Al-合金)的组织和力学性能。不同的热机械工艺条件。铸造合金的微观结构研究表明,在晶界区域存在金属间化合物CuAl2和亚稳Al-Cu-Fe-Zn-Si-Mn相。通过热处理和随后的轧制过程消除了铸态的树枝状结构,从而改善了机械性能。强度和硬度随着银含量的增加而增加,达到0.07 wt%,同时具有合理的延展性。在轧制和时效硬化条件下可达到合金的最大强度。分形研究表明,铸态合金存在脆性破坏,而经热处理的合金则表现出延性破坏的典型特征。

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