In the present study, silicon carbide nanoparticles were incorporated into AZ31B magnesium alloy welded joints using the friction stir welding technique at five different stir zone volume fractions. The volume percentage of nano-SiC was varied from 0–20% in increments of 4%. Initially, the microstructure analyses of the V4, V8, and V12 welded joints were observed to be in good accordance with a homogeneous dispersion of nano SiC particles within the stir zone (SZ). Moreover, the particle’s agglomeration and large cluster size were found in the SZ due to insufficient heat generation of the specimen’s V16 and V20 during friction stir welding (FSW). Furthermore, the tensile and microhardness test was conducted, and the result...
Magnesium metal matrix nanocomposites (Mg-MMNCs) have recently gained attention in the aerospace and...
Metal Matrix Composite (MMC) reinforced in friction stir processing (FSP) has increased insights tha...
[[abstract]]Due to their lightweight, high specific stiffness and specific strength, magnesium alloy...
Prior to friction stir welding (FSW), silicon carbide (SiC) nanopowders were placed inside the groov...
A metal matrix composite made of AZ31 containing SiC nano-particles was successfully produced by fri...
The current research focuses on the mechanical properties and the microstructural behavior of fricti...
Aluminum alloys used in aircrafts generally exhibit low weldability on fusion welding techniques. Fr...
In this article, the microstructure and mechanical properties of friction stir-welded joints were ev...
Increasing global demands for energy conservation and environmental protection led to the replacemen...
Metal matrix composites (MMCs) are engineering materials that their increasingly replacing of a numb...
In this study, a novel two-step method consisting of powder metallurgy (PM) and subsequent friction ...
To reduce environmental impacts and ensure competitiveness, the fabrication and construction sectors...
In this study, a bottom pouring-type stir casting machine was used to create AZ31 magnesium alloy hy...
This study focuses on the properties and process parameters dictating behavioural aspects of frictio...
The advancement of friction stir welding for joining of aluminum alloys and aluminum centered matrix...
Magnesium metal matrix nanocomposites (Mg-MMNCs) have recently gained attention in the aerospace and...
Metal Matrix Composite (MMC) reinforced in friction stir processing (FSP) has increased insights tha...
[[abstract]]Due to their lightweight, high specific stiffness and specific strength, magnesium alloy...
Prior to friction stir welding (FSW), silicon carbide (SiC) nanopowders were placed inside the groov...
A metal matrix composite made of AZ31 containing SiC nano-particles was successfully produced by fri...
The current research focuses on the mechanical properties and the microstructural behavior of fricti...
Aluminum alloys used in aircrafts generally exhibit low weldability on fusion welding techniques. Fr...
In this article, the microstructure and mechanical properties of friction stir-welded joints were ev...
Increasing global demands for energy conservation and environmental protection led to the replacemen...
Metal matrix composites (MMCs) are engineering materials that their increasingly replacing of a numb...
In this study, a novel two-step method consisting of powder metallurgy (PM) and subsequent friction ...
To reduce environmental impacts and ensure competitiveness, the fabrication and construction sectors...
In this study, a bottom pouring-type stir casting machine was used to create AZ31 magnesium alloy hy...
This study focuses on the properties and process parameters dictating behavioural aspects of frictio...
The advancement of friction stir welding for joining of aluminum alloys and aluminum centered matrix...
Magnesium metal matrix nanocomposites (Mg-MMNCs) have recently gained attention in the aerospace and...
Metal Matrix Composite (MMC) reinforced in friction stir processing (FSP) has increased insights tha...
[[abstract]]Due to their lightweight, high specific stiffness and specific strength, magnesium alloy...