The aim of this work is to determine the effect of manufacturing conditions, especially milling time, on the microstructure and crystallite size of a newly developed nanostructural composite material with the aluminium alloy matrix reinforced with halloysite nanotubes. Halloysite, being a clayey mineral of volcanic origin, is characterized by high porosity and large specific surface area. Thus it can be used as an alternative reinforcement in metal matrix composite materials. In order to obtain this goal, composite powders with fine microstructures were fabricated using high-energy mechanical alloying, cold compacting and hot extrusion techniques. The obtained composite powders of aluminium alloy reinforced with 5, 10 and 15 wt% of halloysi...
Aluminum matrix composites reinforced by nano-ceramic particles are widely used in military, airplan...
Effect of mechanical alloying/milling on microstructural evolution and hardness variations of garnet...
The effect of milling time on the morphology, microstructure, physical and mechanical properties of ...
In this work selected results of investigations of the new AlMg1SiCu matrix composite materials rein...
AbstractIn this work, AA6061 matrix composites reinforced with halloysite nanotubes (HNT) were fabri...
The main purpose of this work is to determine the effect of milling time on microstructure as well a...
The subject of the study were microstructure and mechanical properties of two commercial 5xxx alumin...
Zastosowanie nanomateriałów obejmuje coraz szersze obszary działalności człowieka. Ostatnie lata prz...
Quasicrystalline aluminium alloys and aluminium based nanocomposites with the advantage of high stre...
In the present study, severe plastic deformation (SPD) processing was combined with pre- and post pr...
Quasicrystalline aluminium alloys and aluminium based nanocomposites with the advantage of high stre...
Quasicrystalline aluminium alloys have been studied in the past years achieving higher strength than...
For the past few years, particulate reinforced aluminum matrix composites (AMCs) have attracted more...
The present work aims to investigate the strengthening mechanisms in aluminum matrix nanocomposites ...
This book describes the latest efforts to develop aluminum nanocomposites with enhanced damping and ...
Aluminum matrix composites reinforced by nano-ceramic particles are widely used in military, airplan...
Effect of mechanical alloying/milling on microstructural evolution and hardness variations of garnet...
The effect of milling time on the morphology, microstructure, physical and mechanical properties of ...
In this work selected results of investigations of the new AlMg1SiCu matrix composite materials rein...
AbstractIn this work, AA6061 matrix composites reinforced with halloysite nanotubes (HNT) were fabri...
The main purpose of this work is to determine the effect of milling time on microstructure as well a...
The subject of the study were microstructure and mechanical properties of two commercial 5xxx alumin...
Zastosowanie nanomateriałów obejmuje coraz szersze obszary działalności człowieka. Ostatnie lata prz...
Quasicrystalline aluminium alloys and aluminium based nanocomposites with the advantage of high stre...
In the present study, severe plastic deformation (SPD) processing was combined with pre- and post pr...
Quasicrystalline aluminium alloys and aluminium based nanocomposites with the advantage of high stre...
Quasicrystalline aluminium alloys have been studied in the past years achieving higher strength than...
For the past few years, particulate reinforced aluminum matrix composites (AMCs) have attracted more...
The present work aims to investigate the strengthening mechanisms in aluminum matrix nanocomposites ...
This book describes the latest efforts to develop aluminum nanocomposites with enhanced damping and ...
Aluminum matrix composites reinforced by nano-ceramic particles are widely used in military, airplan...
Effect of mechanical alloying/milling on microstructural evolution and hardness variations of garnet...
The effect of milling time on the morphology, microstructure, physical and mechanical properties of ...