An effect of rolling temperature on the mechanical properties and microstructural evolution of an Al-Mg-Si alloy was studied. The material was rolled up to a true strain of ~0.7 at three different temperatures viz; room temperature, liquid propanol and liquid nitrogen. The liquid nitrogen rolled sample exhibited superior properties with a yield and tensile strength of 332 MPa and 364 MPa, respectively, with a reasonably good ductility of ~9%. The liquid nitrogen rolled sample showed around 54 MPa increase in tensile strength without much reduction in the ductility as compared to the as received T6 condition alloy. The microstructural details revealed equiaxed grains in the annealed and solutionized sample and elongated grains in the rolled ...
An aluminum alloy with a chemical composition of Al-6%Mg-0.35%Mn-0.2%Sc- 0.08%Zr-0.07%Cr (in wt.) an...
The tensile properties and fracture behavior of an Al-6%Mg-0.2%Sc-0.08%Zr (by wt%) alloy was examine...
In this paper, super-gravity solidification and cold-rolling were utilized to obtain Al-14.5Si alloy...
An effect of rolling temperature on the mechanical properties and microstructural evolution of an A...
An effect of rolling temperature on the mechanical\ud properties and microstructural evolution of an...
An effect of rolling temperature on the mechanical properties and microstructural evolution of an Al...
Rolling was performed on Al–Mg–Si alloy sheets to true strain values of 0.69 and 1.38 at both room t...
The present work investigates the effect of rolling temperature on the mechanical properties and\ud ...
The microstructural evolution in a nanostructured Al-Mg alloy fabricated by cryogenic mechanical all...
The present study is devoted to the effect of cryorolling (– 150 °C) in mill rolls implementing shea...
The present study is devoted to the effect of cryorolling (– 150 °C) in mill rolls implementing shea...
The aim of this investigation was to identify the effect of rolling at room temperature and under cr...
AbstractThe effect of cryorolling followed by warm rolling (CR+WR) on strength and ductility of Al- ...
The evolution of microstructure and the preferred orientation during the two-step cross rolling at r...
yesThe tensile properties and fracture behavior of an Al-6%Mg-0.2%Sc-0.08%Zr (by wt%) alloy was exam...
An aluminum alloy with a chemical composition of Al-6%Mg-0.35%Mn-0.2%Sc- 0.08%Zr-0.07%Cr (in wt.) an...
The tensile properties and fracture behavior of an Al-6%Mg-0.2%Sc-0.08%Zr (by wt%) alloy was examine...
In this paper, super-gravity solidification and cold-rolling were utilized to obtain Al-14.5Si alloy...
An effect of rolling temperature on the mechanical properties and microstructural evolution of an A...
An effect of rolling temperature on the mechanical\ud properties and microstructural evolution of an...
An effect of rolling temperature on the mechanical properties and microstructural evolution of an Al...
Rolling was performed on Al–Mg–Si alloy sheets to true strain values of 0.69 and 1.38 at both room t...
The present work investigates the effect of rolling temperature on the mechanical properties and\ud ...
The microstructural evolution in a nanostructured Al-Mg alloy fabricated by cryogenic mechanical all...
The present study is devoted to the effect of cryorolling (– 150 °C) in mill rolls implementing shea...
The present study is devoted to the effect of cryorolling (– 150 °C) in mill rolls implementing shea...
The aim of this investigation was to identify the effect of rolling at room temperature and under cr...
AbstractThe effect of cryorolling followed by warm rolling (CR+WR) on strength and ductility of Al- ...
The evolution of microstructure and the preferred orientation during the two-step cross rolling at r...
yesThe tensile properties and fracture behavior of an Al-6%Mg-0.2%Sc-0.08%Zr (by wt%) alloy was exam...
An aluminum alloy with a chemical composition of Al-6%Mg-0.35%Mn-0.2%Sc- 0.08%Zr-0.07%Cr (in wt.) an...
The tensile properties and fracture behavior of an Al-6%Mg-0.2%Sc-0.08%Zr (by wt%) alloy was examine...
In this paper, super-gravity solidification and cold-rolling were utilized to obtain Al-14.5Si alloy...