In the current study, pure aluminum (Al) powders were cryomilled with and without 3 wt.% pure magnesium (Mg) dopant for varying durations followed by spark plasma sintering (SPS) of powders to prepare bulk components with superior mechanical properties. The crystallite sizes were determined for powders and the bulk components by analyzing the X-ray diffraction (XRD) spectrum. The calculations indicated a reduction in crystallite size with the increase in the cryomilling duration. The results also showed a more significant decrease in the crystallite sizes for Al-3Mg samples than that of pure Al. The changes in the surface morphology of powders were characterized using scanning electron microscopy (SEM). The elemental mapping analysis at nan...
The aim of this paper focuses on presenting a recent study that describes the fundamental steps need...
In the last decade, the commercially available heat-treatable aluminum alloy (AA) 2139 (Al-Cu-Mg-Ag)...
The microstructure, mechanical properties and deformation response of bimodal structured nanocrystal...
Metal matrix nanocomposites are advanced materials developed using ceramic nanoreinforcements and na...
Metals and nanocrystalline alloy powders can be produced by high-energy milling and be consolidated ...
A major difference between coarse-grained materials and nanocrystalline materials is the volume frac...
Aluminium alloys are characterized by a low specific weight, which make them highly interesting for ...
In an effort to develop high strength aluminum alloys, a near-AA5083 Al-Mg alloy powder was cryomill...
Nanocrystalline Al-Mg alloys are being considered for light weight transportation applications becau...
Nanocrystalline Mg-7.4%Al powder was prepared by mechanical alloying using a high-energy mill. The e...
In the present work, ball milling and spark plasma sintering were used to develop Al2124-CNT nano...
Mechanical properties of aluminium alloys highly depend on their phase composition and microstructur...
Nanocrystalline Mg-7.4%Al powder was prepared by mechanical alloying using a high-energy mill. The e...
Atomized powder of an Al7075 alloy was high energy ball milled at room and cryogenic temperatures an...
Nanocrystalline 6061 Al alloy was synthesized by cryogenic milling (cryomilling). Both transmiss...
The aim of this paper focuses on presenting a recent study that describes the fundamental steps need...
In the last decade, the commercially available heat-treatable aluminum alloy (AA) 2139 (Al-Cu-Mg-Ag)...
The microstructure, mechanical properties and deformation response of bimodal structured nanocrystal...
Metal matrix nanocomposites are advanced materials developed using ceramic nanoreinforcements and na...
Metals and nanocrystalline alloy powders can be produced by high-energy milling and be consolidated ...
A major difference between coarse-grained materials and nanocrystalline materials is the volume frac...
Aluminium alloys are characterized by a low specific weight, which make them highly interesting for ...
In an effort to develop high strength aluminum alloys, a near-AA5083 Al-Mg alloy powder was cryomill...
Nanocrystalline Al-Mg alloys are being considered for light weight transportation applications becau...
Nanocrystalline Mg-7.4%Al powder was prepared by mechanical alloying using a high-energy mill. The e...
In the present work, ball milling and spark plasma sintering were used to develop Al2124-CNT nano...
Mechanical properties of aluminium alloys highly depend on their phase composition and microstructur...
Nanocrystalline Mg-7.4%Al powder was prepared by mechanical alloying using a high-energy mill. The e...
Atomized powder of an Al7075 alloy was high energy ball milled at room and cryogenic temperatures an...
Nanocrystalline 6061 Al alloy was synthesized by cryogenic milling (cryomilling). Both transmiss...
The aim of this paper focuses on presenting a recent study that describes the fundamental steps need...
In the last decade, the commercially available heat-treatable aluminum alloy (AA) 2139 (Al-Cu-Mg-Ag)...
The microstructure, mechanical properties and deformation response of bimodal structured nanocrystal...