In this paper, a new hybrid metal matrix composite, named AZ91/(SiC + Ti)p, is presented. The commercial AZ91 magnesium alloy was chosen as the matrix. The composite was reinforced with both SiC and Ti particles. The investigated material was successfully fabricated using stir casting methods. Microstructure analyses were carried out by digital and scanning electron microscopy with an energy-dispersive X-ray spectrometer (SEM + EDX). Detailed investigations disclosed the presence (besides the reinforced particles) of primary dendrites of the α phase, α + γ eutectic and some part of discontinuous precipitates of the γ phase in the composite microstructure. The composite was characterised by uniform distribution of the Ti particles, whereas t...
Microstructure of experimental AZ91 magnesium matrix composite with Ti6Al4V particles is presented. ...
Commercial pure magnesium and magnesium-9 aluminum-1 zinc (CP-Mg and AZ91) and their composites were...
A large number of magnesium alloys and magnesium-based composites are nowadays used as biocompatible...
Metal matrix composites (MMC) are attractive in various applications because of their improved prope...
In this current study, an integrated approach involving a master pellet feeding technique and stir c...
In this study, a bottom pouring-type stir casting machine was used to create AZ31 magnesium alloy hy...
The results of microstructure investigations of an experimental magnesium matrix composite reinforce...
WOS: 000304193000015Particle reinforced magnesium metal matrix composites (MMCs) and related manufac...
Magnesium metal matrix nanocomposites (Mg-MMNCs) have recently gained attention in the aerospace and...
Ti particles (5 wt%) reinforced AZ91 Mg matrix composites (TiP/AZ91 composites) were prepared by pow...
In recent years, emerging requisite for advanced materials gave a path for hybrid composites. Magnes...
AZ91 alloy is light material among magnesium family used in high-end applications such as aerospace ...
In this paper, a summary of investigations of the microstructure of cast magnesium matrix composites...
AbstractIn the present study, AZ31B magnesium matrix composites reinforced with two volume fractions...
Aluminum matrix composites (AMCs) are widely used in automotive and aerospace industries. The materi...
Microstructure of experimental AZ91 magnesium matrix composite with Ti6Al4V particles is presented. ...
Commercial pure magnesium and magnesium-9 aluminum-1 zinc (CP-Mg and AZ91) and their composites were...
A large number of magnesium alloys and magnesium-based composites are nowadays used as biocompatible...
Metal matrix composites (MMC) are attractive in various applications because of their improved prope...
In this current study, an integrated approach involving a master pellet feeding technique and stir c...
In this study, a bottom pouring-type stir casting machine was used to create AZ31 magnesium alloy hy...
The results of microstructure investigations of an experimental magnesium matrix composite reinforce...
WOS: 000304193000015Particle reinforced magnesium metal matrix composites (MMCs) and related manufac...
Magnesium metal matrix nanocomposites (Mg-MMNCs) have recently gained attention in the aerospace and...
Ti particles (5 wt%) reinforced AZ91 Mg matrix composites (TiP/AZ91 composites) were prepared by pow...
In recent years, emerging requisite for advanced materials gave a path for hybrid composites. Magnes...
AZ91 alloy is light material among magnesium family used in high-end applications such as aerospace ...
In this paper, a summary of investigations of the microstructure of cast magnesium matrix composites...
AbstractIn the present study, AZ31B magnesium matrix composites reinforced with two volume fractions...
Aluminum matrix composites (AMCs) are widely used in automotive and aerospace industries. The materi...
Microstructure of experimental AZ91 magnesium matrix composite with Ti6Al4V particles is presented. ...
Commercial pure magnesium and magnesium-9 aluminum-1 zinc (CP-Mg and AZ91) and their composites were...
A large number of magnesium alloys and magnesium-based composites are nowadays used as biocompatible...