The present study aims to investigate the Aluminium oxide and Zirconium diboride particles reinforced aluminum surface composites fabricated using Friction Stir Processing (FSP). Al-6063 was used as base-metal and Aluminium oxide and Zirconium diboride were used as reinforcement media. Al 6063 is used for architectural fabrication; window and door frames, pipe and tubing, and aluminium furniture Tensile strength specimens were prepared as per ASTM –E8 Standard. Tensile strength were found using UTM. Then it is found that that the tensile strength of the composite decreases as the volume percentage of the particles added for the reinforcement increases in the composites
Present study is focused on the fabrication of aluminium 6061 based metal matrix composites, Reinfor...
This paper focuses on the influence of processing temperature and inclusion of micron-sized B4C, TiB...
Improved surface properties with the retainment of bulk properties are necessary for a component for...
AbstractFriction stir processing (FSP) was applied to produce aluminum matrix composites (AMCs). Alu...
Composite materials possess advantages like high strength and stiffness with low density and prove t...
International audienceIn this paper an attempt has been made to fabricate aluminium metal matrix com...
Friction stir processing (FSP) has been accepted as a potential method to produce aluminum matrix co...
This work studies the effect of incorporating a mix of reinforcement particles of a hard and soft na...
As to reduce the production cost of AMCs, researchers found that RHA have potential to become reinfo...
In the present work, an aluminum metal matrix reinforced with (Al2O3) nanoparticles was fabricated a...
The influence of three factors, such as volume percentage of reinforcement particles (i.e. Al2O3), t...
AbstractThe influence of three factors, such as volume percentage of reinforcement particles (i.e. A...
Metal Matrix Composite (MMC) reinforced in friction stir processing (FSP) has increased insights tha...
This work investigates the mechanical properties of Aluminium Metal Matrix Composites reinforced wit...
AbstractFriction stir processing (FSP) has been accepted as a potential method to produce aluminum m...
Present study is focused on the fabrication of aluminium 6061 based metal matrix composites, Reinfor...
This paper focuses on the influence of processing temperature and inclusion of micron-sized B4C, TiB...
Improved surface properties with the retainment of bulk properties are necessary for a component for...
AbstractFriction stir processing (FSP) was applied to produce aluminum matrix composites (AMCs). Alu...
Composite materials possess advantages like high strength and stiffness with low density and prove t...
International audienceIn this paper an attempt has been made to fabricate aluminium metal matrix com...
Friction stir processing (FSP) has been accepted as a potential method to produce aluminum matrix co...
This work studies the effect of incorporating a mix of reinforcement particles of a hard and soft na...
As to reduce the production cost of AMCs, researchers found that RHA have potential to become reinfo...
In the present work, an aluminum metal matrix reinforced with (Al2O3) nanoparticles was fabricated a...
The influence of three factors, such as volume percentage of reinforcement particles (i.e. Al2O3), t...
AbstractThe influence of three factors, such as volume percentage of reinforcement particles (i.e. A...
Metal Matrix Composite (MMC) reinforced in friction stir processing (FSP) has increased insights tha...
This work investigates the mechanical properties of Aluminium Metal Matrix Composites reinforced wit...
AbstractFriction stir processing (FSP) has been accepted as a potential method to produce aluminum m...
Present study is focused on the fabrication of aluminium 6061 based metal matrix composites, Reinfor...
This paper focuses on the influence of processing temperature and inclusion of micron-sized B4C, TiB...
Improved surface properties with the retainment of bulk properties are necessary for a component for...