The utilization of magnesium-based composites prepared via FSP and incorporating Fly Ash offers improved mechanical properties, lightweight nature, environmental sustainability, cost-effectiveness, and enhanced thermal and corrosion resistance. These advantages make them highly valuable for a range of industries, promoting their utilization and potential for innovative applications
ABSTRACT: The present investigation is focused on the utilization of abundantly available indus-tria...
Friction stir processing (FSP) is a novel solid-phase processing technique that is derived from fric...
The review study is to investigate the possibility of utilizing industrial waste materials as a stre...
The utilization of magnesium-based composites prepared via FSP and incorporating Fly Ash offers impr...
Utilizing fly ash (FA) as reinforcement for magnesium matrix composites (MMCs) brings down the produ...
Mg-Al-Zn alloys have been reinforced with carbon fibres using friction stir processing (FSP) which a...
peer reviewedA new solid-state process developed recently on the same principles as Friction Stir We...
AbstractSurface metal matrix composites (MMCs) are a group of modern engineered materials where the ...
Metal matrix composites (MMCs) possess significantly improved properties including high specific str...
Composite materials possess advantages like high strength and stiffness with low density and prove t...
The aim of the present researchwork is to find out the influence of uniform dispersion of different ...
peer reviewedProcessing of magnesium matrix composites reinforced with C fibres by ‘liquid state’ me...
Newer materials with unique properties are needed to cater the ever-increasing industrial demands to...
Aluminum alloys widely use in production of the automobile and the aerospace because they have low ...
Friction Stir Processing (FSP) is a solid-state process derived from Friction Stir Welding (FSW). FS...
ABSTRACT: The present investigation is focused on the utilization of abundantly available indus-tria...
Friction stir processing (FSP) is a novel solid-phase processing technique that is derived from fric...
The review study is to investigate the possibility of utilizing industrial waste materials as a stre...
The utilization of magnesium-based composites prepared via FSP and incorporating Fly Ash offers impr...
Utilizing fly ash (FA) as reinforcement for magnesium matrix composites (MMCs) brings down the produ...
Mg-Al-Zn alloys have been reinforced with carbon fibres using friction stir processing (FSP) which a...
peer reviewedA new solid-state process developed recently on the same principles as Friction Stir We...
AbstractSurface metal matrix composites (MMCs) are a group of modern engineered materials where the ...
Metal matrix composites (MMCs) possess significantly improved properties including high specific str...
Composite materials possess advantages like high strength and stiffness with low density and prove t...
The aim of the present researchwork is to find out the influence of uniform dispersion of different ...
peer reviewedProcessing of magnesium matrix composites reinforced with C fibres by ‘liquid state’ me...
Newer materials with unique properties are needed to cater the ever-increasing industrial demands to...
Aluminum alloys widely use in production of the automobile and the aerospace because they have low ...
Friction Stir Processing (FSP) is a solid-state process derived from Friction Stir Welding (FSW). FS...
ABSTRACT: The present investigation is focused on the utilization of abundantly available indus-tria...
Friction stir processing (FSP) is a novel solid-phase processing technique that is derived from fric...
The review study is to investigate the possibility of utilizing industrial waste materials as a stre...