The Al–Si–Cu alloys, which are widely used in automotive powertrains, exhibit limited high-temperature strength properties; the high diffusivity of the main strengthening elements Cu and Mg in a-Al at temperatures between 200 and 300 8C is a dominating factor in alloy softening. In this study, effects of slow-diffusing elements (Zr and V) and heat treatment on the microstructure and mechanical properties of secondary Al-7Si-3Cu-0.3Mg alloy were investigated. Majorities of both Zr and V were retained inside the a-Al matrix during solidification. T6 heat treatment induced the solid-state precipitation of multiple, nano-sized particles in a-Al grain interiors. Unlike Cu/Mg-rich strengthening precipitates that form during aging, the Zr/V-rich p...
The 2xxx series aluminium alloys, which contain Cu as the main addition element, are widely used in ...
The present work investigated the influence of Zr and Sc on the evolution of α-Al(FeMn)Si dispersoid...
In the present work, individual/combined additions of transition elements (V, Zr and Mo) were introd...
The Al–Si–Cu alloys, which are widely used in automotive powertrains, exhibit limited high-temperatu...
Secondary Al-Si-Cu-Mg based foundry alloys are widely used in automotive industry to particularly pr...
The evolution of precipitates and the elevated-temperature mechanical and creep properties of Al–Cu ...
The evolution of precipitates and the elevated-temperature mechanical and creep properties of Al–Cu ...
The effect of individual and combined Zr, V and Ni additions on solidification path and microstructu...
The effect of individual and combined Zr, V and Ni additions on solidification path and microstructu...
Zr is one of the most deeply investigated and widely used microalloying elements. The low diffusivit...
While Zr is frequently added to Al alloys to control grain size with the formation of large (>1 μ...
The effects of microalloying with Mg (0–0.23 wt%) on the microstructural evolution and mechanical pr...
This research is devoted to the study effects of complex alloying of Al-0.3 wt. % Mg-1 wt. % Si and ...
This research is devoted to the study effects of complex alloying of Al-0.3 wt. % Mg-1 wt. % Si and ...
The principal aim of the present study was to investigate the effects of small additions of several ...
The 2xxx series aluminium alloys, which contain Cu as the main addition element, are widely used in ...
The present work investigated the influence of Zr and Sc on the evolution of α-Al(FeMn)Si dispersoid...
In the present work, individual/combined additions of transition elements (V, Zr and Mo) were introd...
The Al–Si–Cu alloys, which are widely used in automotive powertrains, exhibit limited high-temperatu...
Secondary Al-Si-Cu-Mg based foundry alloys are widely used in automotive industry to particularly pr...
The evolution of precipitates and the elevated-temperature mechanical and creep properties of Al–Cu ...
The evolution of precipitates and the elevated-temperature mechanical and creep properties of Al–Cu ...
The effect of individual and combined Zr, V and Ni additions on solidification path and microstructu...
The effect of individual and combined Zr, V and Ni additions on solidification path and microstructu...
Zr is one of the most deeply investigated and widely used microalloying elements. The low diffusivit...
While Zr is frequently added to Al alloys to control grain size with the formation of large (>1 μ...
The effects of microalloying with Mg (0–0.23 wt%) on the microstructural evolution and mechanical pr...
This research is devoted to the study effects of complex alloying of Al-0.3 wt. % Mg-1 wt. % Si and ...
This research is devoted to the study effects of complex alloying of Al-0.3 wt. % Mg-1 wt. % Si and ...
The principal aim of the present study was to investigate the effects of small additions of several ...
The 2xxx series aluminium alloys, which contain Cu as the main addition element, are widely used in ...
The present work investigated the influence of Zr and Sc on the evolution of α-Al(FeMn)Si dispersoid...
In the present work, individual/combined additions of transition elements (V, Zr and Mo) were introd...