In this study, we demonstrate how Zn and Sn influence hardening behavior and cluster formation during pre-aging and paint bake treatment in Al–Mg–Si alloys via hardness tests, tensile tests, and atom probe tomography. Compared to the standard alloy, the Sn-modified variant shows reduced cluster size and yield strength in the pre-aged condition. During the paint bake cycle, the clusters start to grow very fast and the alloy exhibits the highest strength increment. This behavior is attributed to the high vacancy binding energy of Sn. Adding Zn increases the formation kinetics and the size of Mg–Si co-clusters, generating higher yield strength values for both the pre-aged and paint baked conditions. Simultaneous addition of Zn and Sn creates a...
Microalloying trace elements into aluminum alloys have been shown to improve mechanical properties b...
AbstractPre-aging on early-age behavior and bake hardening response of an Al-0.90Mg-0.80Si-0.64Zn al...
The consumption volume of aluminium (Al) alloys is expected to increase in the coming years. They ar...
Sn-alloying, by deploying comparatively high vacancy binding energy, mitigates the undesired natural...
The effect of Sn micro-alloying on microstructure evolution, formability and precipitation behaviour...
AbstractIn the present work, an Al–0.66Mg–0.85Si–0.2Cu alloy with Zn addition was investigated by el...
Pre-aging on early-age behavior and bake hardening response of an Al-0.90Mg-0.80Si-0.64Zn alloy was ...
Effects of addition of Zn (up to 1 wt%) on microstructure, precipitate structure and intergranular c...
Magnesium alloys are promising materials for the fabrication of automotive components due to their l...
AbstractPre-aging on early-age behavior and bake hardening response of an Al-0.90Mg-0.80Si-0.64Zn al...
The coupling control of quenching rate and pre-aging and its positive effect on the age-hardening re...
Aluminum alloys are widely used as first-choice materials for lightweight automotive applications. I...
Tailoring size, density and nature of precipitates by ageing and alloy additions and subsequent corr...
The cyclic application of mechanical stress to aluminum alloys at room temperature, referred to as c...
The cyclic application of mechanical stress to aluminum alloys at room temperature, referred to as c...
Microalloying trace elements into aluminum alloys have been shown to improve mechanical properties b...
AbstractPre-aging on early-age behavior and bake hardening response of an Al-0.90Mg-0.80Si-0.64Zn al...
The consumption volume of aluminium (Al) alloys is expected to increase in the coming years. They ar...
Sn-alloying, by deploying comparatively high vacancy binding energy, mitigates the undesired natural...
The effect of Sn micro-alloying on microstructure evolution, formability and precipitation behaviour...
AbstractIn the present work, an Al–0.66Mg–0.85Si–0.2Cu alloy with Zn addition was investigated by el...
Pre-aging on early-age behavior and bake hardening response of an Al-0.90Mg-0.80Si-0.64Zn alloy was ...
Effects of addition of Zn (up to 1 wt%) on microstructure, precipitate structure and intergranular c...
Magnesium alloys are promising materials for the fabrication of automotive components due to their l...
AbstractPre-aging on early-age behavior and bake hardening response of an Al-0.90Mg-0.80Si-0.64Zn al...
The coupling control of quenching rate and pre-aging and its positive effect on the age-hardening re...
Aluminum alloys are widely used as first-choice materials for lightweight automotive applications. I...
Tailoring size, density and nature of precipitates by ageing and alloy additions and subsequent corr...
The cyclic application of mechanical stress to aluminum alloys at room temperature, referred to as c...
The cyclic application of mechanical stress to aluminum alloys at room temperature, referred to as c...
Microalloying trace elements into aluminum alloys have been shown to improve mechanical properties b...
AbstractPre-aging on early-age behavior and bake hardening response of an Al-0.90Mg-0.80Si-0.64Zn al...
The consumption volume of aluminium (Al) alloys is expected to increase in the coming years. They ar...