Investigation on the Quench Sensitivity of 7085 Aluminum Alloy with Different Contents of Main Alloying Elements

Author:

Li Chengbo,Chen DongdongORCID

Abstract

The quench sensitivity of 7085 aluminum alloy with different contents of the main alloying elements (Zn, Mg and Cu) was investigated using time-temperature-transformation (TTT) curves and end quenching experiments. Then, the quenching microstructure was analyzed using transmission electron microscopy. With increasing the contents of the main alloying elements, the transitions and nose temperatures of the TTT curves are obviously increased, while the incubation time of 0.5% η (MgZn2) phase precipitation content is decreased. In addition, as the contents of the main alloying elements decrease, the conductivity of the quenched samples is increased, but the hardness of the quenched samples is decreased. Moreover, the size and area fraction of the η phase are increased with increasing the contents of the main alloying elements. Based on the experimental results, the increase of Mg and Cu contents can decrease the stability of supersaturated solid solution and increase the lattice distortion energy, which can increase the quench sensitivity of 7085 aluminum alloy.

Publisher

MDPI AG

Subject

General Materials Science,Metals and Alloys

Reference31 articles.

1. Effects of Prebending Radii on Microstructure and Fatigue Performance of Al-Zn-Mg-Cu Aluminum Alloy after Creep Age Forming

2. Differential Scanning Calorimetry and Thermodynamic Predictions—A Comparative Study of Al-Zn-Mg-Cu Alloys

3. Effect of Zener-Hollomon parameter on quench sensitivity of 7085 aluminum alloy

4. Development of 7 XXX series aluminum alloy with high strength high toughness and low quench sensitivity;Xiong;Mater. China,2014

5. New generation high strength high damage tolerance 7085 thick alloy product with low quench sensitivity;Chakrabarti;Mater. Sci. Forum,2004

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