Optimizing Size and Number Density of Al3Zr Dispersoids in Al–Zn–Mg–Cu Alloys

Author:

Honaramooz Mohammad Taha1,Morak Roland2,Paris Oskar1ORCID

Affiliation:

1. Chair of Physics Department Physics, Mechanics and Electrical Engineering Montanuniverstät Leoben Franz‐Josef‐Str. 18 8700 Leoben Austria

2. R&D Material Science CMI Center for Material Innovation AMAG Rolling GmbH Postfach 32 5282 Ranshofen Austria

Abstract

The formation and temporal evolution of Al3Zr dispersoids in an Al–Zn–Mg–Cu alloy is investigated by in situ small‐angle X‐ray scattering during different homogenization treatments. The aim is to determine the most effective homogenization parameters for obtaining a high number density and small size of the dispersoids. Nucleation of the dispersoids is found to start above 400 °C and is boosted after isothermal holding at 425 °C. Regardless of the detailed homogenization profile, coarsening of the dispersoids is not observed below 450 °C. The results demonstrate that decreasing the heating rate, prolonging the first isothermal step, or increasing the number of steps are all beneficial regarding an increase of both, the volume fraction, and the number density of the dispersoids. Among the four investigated homogenization profiles, the one with decreasing the heating rate shows the highest impact.

Publisher

Wiley

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