Most methods used for strengthening metallic materials, such as thermal-mechanical treatment, will sacrifice the ductility. A novel technology, electric pulsing treatment (EPT), is applied to break this trade-off, which produces an Al−Mg−Si alloy with superior ductility and higher strength within only 560 ms. Systematic electron microscopy characterization and finite element simulation reveal that EPT promotes the formation of clusters Mg2(Si,Cu)3 and sub-grain boundaries. The results of quantitative calculation indicate that the dislocation entanglement is delayed due to the existence of clusters and longer dislocation glide distance, so that ultimate strength is fully improved. Moreover, the superior ductility is mainly govern...
The metallographic structure of LM-29 aluminum-silicon alloy modified by electric pulse treatment ha...
Deep cryogenic treatment (DCT) has arisen as a promising green technology to modify the properties o...
The microstructure, mechanical properties, and strengthening mechanisms of an Al-Mg-Si alloy (AA6060...
Tensile properties of Al-Mg-Si alloy with Mg-Si clusters was compared with that with β″ precipitate ...
The mechanical strength and electrical conductivity (EC) in Al–Mg–Si 6xxx conductor alloys are key c...
The effect of plastic deformation prior to peak age-hardening on mechanical properties of an Al-Mg-S...
Al–Mg–Si alloys are usually formed into their final shape by rolling or extrusion. After extrusion, ...
The effect of adding Ag and Cu on the strength and electrical conductivity of Al-Mg-Si conductor all...
Aging heat treatment is the most commonly used strengthening method for Al–Mg–Si alloys since high-d...
An AlSi3.5Mg2.5 (wt%) alloy with excellent mechanical properties was produced via laser powder bed f...
In this research, various processing conditions were implemented to enhance the mechanical propertie...
Tensile tests and microstructural observations were carried out to investigate the influence of agin...
Nanostructured Al–Mn alloys are proposed as high-strength low-density materials, which can be electr...
Al-Mg-Si alloys are used not only as construction material, but also as a material for electrical co...
Microstructure of hydrostatically extruded Al-Mg-Si alloy was studied by the combination of electron...
The metallographic structure of LM-29 aluminum-silicon alloy modified by electric pulse treatment ha...
Deep cryogenic treatment (DCT) has arisen as a promising green technology to modify the properties o...
The microstructure, mechanical properties, and strengthening mechanisms of an Al-Mg-Si alloy (AA6060...
Tensile properties of Al-Mg-Si alloy with Mg-Si clusters was compared with that with β″ precipitate ...
The mechanical strength and electrical conductivity (EC) in Al–Mg–Si 6xxx conductor alloys are key c...
The effect of plastic deformation prior to peak age-hardening on mechanical properties of an Al-Mg-S...
Al–Mg–Si alloys are usually formed into their final shape by rolling or extrusion. After extrusion, ...
The effect of adding Ag and Cu on the strength and electrical conductivity of Al-Mg-Si conductor all...
Aging heat treatment is the most commonly used strengthening method for Al–Mg–Si alloys since high-d...
An AlSi3.5Mg2.5 (wt%) alloy with excellent mechanical properties was produced via laser powder bed f...
In this research, various processing conditions were implemented to enhance the mechanical propertie...
Tensile tests and microstructural observations were carried out to investigate the influence of agin...
Nanostructured Al–Mn alloys are proposed as high-strength low-density materials, which can be electr...
Al-Mg-Si alloys are used not only as construction material, but also as a material for electrical co...
Microstructure of hydrostatically extruded Al-Mg-Si alloy was studied by the combination of electron...
The metallographic structure of LM-29 aluminum-silicon alloy modified by electric pulse treatment ha...
Deep cryogenic treatment (DCT) has arisen as a promising green technology to modify the properties o...
The microstructure, mechanical properties, and strengthening mechanisms of an Al-Mg-Si alloy (AA6060...