The properties of particle reinforced metal matrix composites (MMCs) are largely influenced by the homogeneity of the particle distribution. The possibility of the fabrication of MMC powders with a homogeneous particle distribution, a high bulk density and low gas contents by the process of mechanical alloying have been investigated. The milling atmosphere and the type of process control agent have been varied in order to optimize the gas contents and furthermore to take advantage of additional strengthening by oxide or carbide formation. Measurements of the microhardness, the bulk density, the homogeneity of the particle distribution and the gas contents have been done. The progress in reaction milling of graphite has been studied by XRD m...
High-energy ball milling represents an efficient process for producing composite powders consisting ...
The present work concerns the processing of composite powders based on 7075 aluminium alloy by mecha...
The applications of metal matrix composites are increasing day by day due to high strength to weight...
The properties of particle reinforced metal matrix composites (MMCs) are largely influenced by the h...
The properties of particle-reinforced aluminum composites depend on the microstructure and evolved u...
A composite of rapidly solidified Al-6061 alloy powder with graphite particle reinforcements was pre...
Mechanical alloying technique has been used to produce aluminium-based metal matrix composite powder...
This thesis is to investigate the effect of milling time to the mechanical and physical properties A...
Metal matrix composites (MMCs) have become attractive for engineering structural applications due to...
Silicon carbide particle reinforced aluminum matrix (Al) composites have been developed over past fe...
The aim of the current study is to investigate the effect of milling time and speed on mixing proper...
The aim of the current study is to investigate the effect of milling time and speed on mixing prope...
Aluminum matrix composites (AMC) are attractive structural materials for automotive and aerospace ap...
Metal matrix composites (MMCs) are engineered materials designed by a combination of a particulate o...
Metal Matrix Composites are developed in recent years as an alternative over conventional engineerin...
High-energy ball milling represents an efficient process for producing composite powders consisting ...
The present work concerns the processing of composite powders based on 7075 aluminium alloy by mecha...
The applications of metal matrix composites are increasing day by day due to high strength to weight...
The properties of particle reinforced metal matrix composites (MMCs) are largely influenced by the h...
The properties of particle-reinforced aluminum composites depend on the microstructure and evolved u...
A composite of rapidly solidified Al-6061 alloy powder with graphite particle reinforcements was pre...
Mechanical alloying technique has been used to produce aluminium-based metal matrix composite powder...
This thesis is to investigate the effect of milling time to the mechanical and physical properties A...
Metal matrix composites (MMCs) have become attractive for engineering structural applications due to...
Silicon carbide particle reinforced aluminum matrix (Al) composites have been developed over past fe...
The aim of the current study is to investigate the effect of milling time and speed on mixing proper...
The aim of the current study is to investigate the effect of milling time and speed on mixing prope...
Aluminum matrix composites (AMC) are attractive structural materials for automotive and aerospace ap...
Metal matrix composites (MMCs) are engineered materials designed by a combination of a particulate o...
Metal Matrix Composites are developed in recent years as an alternative over conventional engineerin...
High-energy ball milling represents an efficient process for producing composite powders consisting ...
The present work concerns the processing of composite powders based on 7075 aluminium alloy by mecha...
The applications of metal matrix composites are increasing day by day due to high strength to weight...