The in-situ Fe based nanocomposite containing Al2O3 particle is synthesized by reactive milling of Fe2O3-Al-Fe powder mixture in toluene medium followed by consolidation of powders using Spark Plasma Sintering process. Transmission electron microscopy investigation of consolidated Fe- Al2O3 nanocomposites has shown heterogenous grain structure of Fe consisting of nano, submicron and micron size grains together with nanometer Al2O3 particles. The hardness of Fe- Al2O3 nanocomposites consolidated at 800°C is 795 MPa
This work aims to define the microstructure and to study the mechanical properties of an Al matrix i...
The reinforcement agglomeration in nanocomposites is a key issue that needs to be solved in order to...
Commercial purity aluminum powder and Al2O3 nano-particles were ground by high energy ball milling i...
Metal matrix nanocomposites are advanced materials developed using ceramic nanoreinforcements and na...
This work aims to define the microstructure and to study the mechanical properties of an Al matrix i...
In the present work, nanocrystalline FeAl and FeAl–Al2O3 composite were synthesized by high energy b...
A new High Frequency Induction Heating (HFIH) process has been developed to fabricate dense Al2O3 re...
Aluminum matrix composites reinforced by nano-ceramic particles are widely used in military, airplan...
A high frequency induction heated sintering (HFIHS) process was applied to fabricate dense Al2O3 rei...
A nanopowder of Fe3Al was synthesized from 3Fe and Al by high-energy ball milling. A dense nanostruc...
A procedure is described for obtaining nanocomposite powders consisting of metal nanoparticles homog...
The synthesis of nanometer-sized [MATH]-Al2O3-metal composites can be performed by room temperature ...
A powder metallurgy route based on high-energy ball milling and powder consolidation by ECAP is used...
A powder metallurgy route based on high-energy ball milling and powder consolidation by ECAP is used...
A powder metallurgy route based on high-energy ball milling and powder consolidation by ECAP is used...
This work aims to define the microstructure and to study the mechanical properties of an Al matrix i...
The reinforcement agglomeration in nanocomposites is a key issue that needs to be solved in order to...
Commercial purity aluminum powder and Al2O3 nano-particles were ground by high energy ball milling i...
Metal matrix nanocomposites are advanced materials developed using ceramic nanoreinforcements and na...
This work aims to define the microstructure and to study the mechanical properties of an Al matrix i...
In the present work, nanocrystalline FeAl and FeAl–Al2O3 composite were synthesized by high energy b...
A new High Frequency Induction Heating (HFIH) process has been developed to fabricate dense Al2O3 re...
Aluminum matrix composites reinforced by nano-ceramic particles are widely used in military, airplan...
A high frequency induction heated sintering (HFIHS) process was applied to fabricate dense Al2O3 rei...
A nanopowder of Fe3Al was synthesized from 3Fe and Al by high-energy ball milling. A dense nanostruc...
A procedure is described for obtaining nanocomposite powders consisting of metal nanoparticles homog...
The synthesis of nanometer-sized [MATH]-Al2O3-metal composites can be performed by room temperature ...
A powder metallurgy route based on high-energy ball milling and powder consolidation by ECAP is used...
A powder metallurgy route based on high-energy ball milling and powder consolidation by ECAP is used...
A powder metallurgy route based on high-energy ball milling and powder consolidation by ECAP is used...
This work aims to define the microstructure and to study the mechanical properties of an Al matrix i...
The reinforcement agglomeration in nanocomposites is a key issue that needs to be solved in order to...
Commercial purity aluminum powder and Al2O3 nano-particles were ground by high energy ball milling i...