In the present work, we proposed a novel friction stir processing (FSP) to produce a locally reinforced aluminum matrix composite (AMC) by stirring copper-coated SiC particulate reinforcement into Al6061 alloy matrix. Electroless-plating process was applied to deposit the copper surface coating on the SiC particulate reinforcement for the purpose of improving the interfacial adhesion between SiC particles and Al matrix. The core-shell SiC structure provides a layer for the atomic diffusion between aluminum and copper to enhance the cohesion between reinforcing particles and matrix on one hand, the dispersion of fine copper in the Al matrix during FSP provides further dispersive strengthening and solid solution strengthening, on the other ha...
The main aim of this work was to obtain a copper matrix surface composite using friction stir proces...
Friction stir processing (FSP) has been accepted as a potential method to produce aluminum matrix co...
This study presents a solid state surface engineering technique for forming a composite surface laye...
In this study, Friction Stir Processing (FSP) a recent grain refinement technique was employed to di...
AbstractFriction stir processing (FSP) was applied to produce aluminum matrix composites (AMCs). Alu...
Engineered aluminum surface metal matrix composites were created by incorporating ceramic particles ...
Friction stir processing (FSP) is a green fabrication technique that has been effectively adopted in...
A novel surface modifying technique, friction stir processing (FSP), has been developed for fabricat...
Engineered aluminum surface metal matrix composites were created by incorporating ceramic particles ...
WOS: 000286954200001In this study. SiC particles were incorporated by using Friction Stir Processing...
Metal Matrix Composite (MMC) reinforced in friction stir processing (FSP) has increased insights tha...
Metal Matrix Composite (MMC) reinforced in friction stir processing (FSP) has increased insights tha...
Composite materials possess advantages like high strength and stiffness with low density and prove t...
Composite materials possess advantages like high strength and stiffness with low density and prove t...
Abstrct:In this study, SiC particles were incorporated by using Friction Stir Processing (FSP) into ...
The main aim of this work was to obtain a copper matrix surface composite using friction stir proces...
Friction stir processing (FSP) has been accepted as a potential method to produce aluminum matrix co...
This study presents a solid state surface engineering technique for forming a composite surface laye...
In this study, Friction Stir Processing (FSP) a recent grain refinement technique was employed to di...
AbstractFriction stir processing (FSP) was applied to produce aluminum matrix composites (AMCs). Alu...
Engineered aluminum surface metal matrix composites were created by incorporating ceramic particles ...
Friction stir processing (FSP) is a green fabrication technique that has been effectively adopted in...
A novel surface modifying technique, friction stir processing (FSP), has been developed for fabricat...
Engineered aluminum surface metal matrix composites were created by incorporating ceramic particles ...
WOS: 000286954200001In this study. SiC particles were incorporated by using Friction Stir Processing...
Metal Matrix Composite (MMC) reinforced in friction stir processing (FSP) has increased insights tha...
Metal Matrix Composite (MMC) reinforced in friction stir processing (FSP) has increased insights tha...
Composite materials possess advantages like high strength and stiffness with low density and prove t...
Composite materials possess advantages like high strength and stiffness with low density and prove t...
Abstrct:In this study, SiC particles were incorporated by using Friction Stir Processing (FSP) into ...
The main aim of this work was to obtain a copper matrix surface composite using friction stir proces...
Friction stir processing (FSP) has been accepted as a potential method to produce aluminum matrix co...
This study presents a solid state surface engineering technique for forming a composite surface laye...