In this study, a bottom pouring-type stir casting machine was used to create AZ31 magnesium alloy hybrid nanocomposites with varying weight percentages (0, 3, 5, and 7) of silicon carbide (SiC) and graphite (Gr) particles. Investigations have been made into the mechanical characteristics and microstructural distribution of manufactured hybrid nanocomposites. The outcomes demonstrate that the mechanical characteristics and uniform distribution of SiC and Gr particles are enhanced compared to those of the base alloy. In comparison to monolithic AZ31 alloy, microhardness, ultimate tensile strength (UTS), yield strength (YS), and compressive strength (CS) were raised by about 54%, 68%, 82%, and 107%, respectively. The presence of reinforced par...
As a result of environmental considerations, a key challenge for the automobile and aerospace indust...
Title: Study of mechanical and thermal properties of composites reinforced by nanoparticles Author: ...
AbstractMagnesium alloy (AZ91D) composites reinforced with silicon carbide particle with different v...
Magnesium metal matrix nanocomposites (Mg-MMNCs) have recently gained attention in the aerospace and...
In this current study, an integrated approach involving a master pellet feeding technique and stir c...
In this paper, a new hybrid metal matrix composite, named AZ91/(SiC + Ti)p, is presented. The commer...
In current investigation, effects of incorporation of varying amount of graphite nanoparticles on ab...
AZ91 alloy is light material among magnesium family used in high-end applications such as aerospace ...
AZ91 magnesium alloy hybrid composites reinforced with different hybrid ratios of carbon nanotubes (...
The main focus of this study is concentrated on the effect of mechanical milling on graphite-boron c...
Metal matrix composites (MMC) are attractive in various applications because of their improved prope...
We have investigated the microstructure, the quasistatic and high-rate mechanical properties of magn...
This paper experimentally investigates the machinability of magnesium metal matrix composites (Mg-MM...
In the present study, silicon carbide nanoparticles were incorporated into AZ31B magnesium alloy wel...
Aluminum matrix composites (AMCs) are widely used in automotive and aerospace industries. The materi...
As a result of environmental considerations, a key challenge for the automobile and aerospace indust...
Title: Study of mechanical and thermal properties of composites reinforced by nanoparticles Author: ...
AbstractMagnesium alloy (AZ91D) composites reinforced with silicon carbide particle with different v...
Magnesium metal matrix nanocomposites (Mg-MMNCs) have recently gained attention in the aerospace and...
In this current study, an integrated approach involving a master pellet feeding technique and stir c...
In this paper, a new hybrid metal matrix composite, named AZ91/(SiC + Ti)p, is presented. The commer...
In current investigation, effects of incorporation of varying amount of graphite nanoparticles on ab...
AZ91 alloy is light material among magnesium family used in high-end applications such as aerospace ...
AZ91 magnesium alloy hybrid composites reinforced with different hybrid ratios of carbon nanotubes (...
The main focus of this study is concentrated on the effect of mechanical milling on graphite-boron c...
Metal matrix composites (MMC) are attractive in various applications because of their improved prope...
We have investigated the microstructure, the quasistatic and high-rate mechanical properties of magn...
This paper experimentally investigates the machinability of magnesium metal matrix composites (Mg-MM...
In the present study, silicon carbide nanoparticles were incorporated into AZ31B magnesium alloy wel...
Aluminum matrix composites (AMCs) are widely used in automotive and aerospace industries. The materi...
As a result of environmental considerations, a key challenge for the automobile and aerospace indust...
Title: Study of mechanical and thermal properties of composites reinforced by nanoparticles Author: ...
AbstractMagnesium alloy (AZ91D) composites reinforced with silicon carbide particle with different v...