Ti-Mg composite rods exhibiting both bioinert and biodegradable characteristics have been manufactured by hot rotary swaging from elemental powders of titanium and magnesium. As a result of processing, spherical magnesium powders elongated in the direction of deformation and the dendritic structure in starting magnesium powders transformed into highly equiaxed grains. Magnesium particles in the outer layer of the composites were decorated by thin layer of MgO while the interior parts were free from oxides. As expected, Young's moduli, yield and peak strengths of the composites were observed to decrease with an increase in the magnesium content, while ductility of composites was enhanced by decreasing the amount of titanium. Composites fract...
This study aims to synthesize composite materials using TC4 particles and AZ91D alloy through semi-s...
Last few decades has seen enormous growth in terms of bone replacement materials. Relying on their d...
Magnesium has been identified as a promising biodegradable implant material because it does not caus...
Hydroxyapatite and bioactive glass particles were added to pure magnesium and an AZ91 magnesium allo...
Magnesium and its alloys display interesting properties such as low density and biocompatibility but...
In the last six decades, it has been made a great advancement in the field of engineering material e...
In the last six decades, it has been made a great advancement in the field of engineering material e...
In recent years, a new wave of bioactive, biocompatibility and biodegradable metallic materials were...
The innovative titanium-magnesium composite (Ti-Mg) was produced by powder metallurgy (P/M) method a...
Magnesium (Mg) is a promising material for producing temporary orthopedic implants, since it is a bi...
Recent studies have shown great potential of Mg matrix composites for biodegradable orthopedic devic...
Magnesium particles are used in metallurgic routes, where it can be total or partially evaporated cr...
Bu çalışmada, magnezyumun düşük mekanik ve biyokorozyon özelliklerini, biyouyumlu ve biyobozunur tak...
When a bone is fractured, it loses its structural integrity which makes it unable to bear any mechan...
In order to make magnesium (Mg) a successful candidate for fracture fixation devices, it is imperati...
This study aims to synthesize composite materials using TC4 particles and AZ91D alloy through semi-s...
Last few decades has seen enormous growth in terms of bone replacement materials. Relying on their d...
Magnesium has been identified as a promising biodegradable implant material because it does not caus...
Hydroxyapatite and bioactive glass particles were added to pure magnesium and an AZ91 magnesium allo...
Magnesium and its alloys display interesting properties such as low density and biocompatibility but...
In the last six decades, it has been made a great advancement in the field of engineering material e...
In the last six decades, it has been made a great advancement in the field of engineering material e...
In recent years, a new wave of bioactive, biocompatibility and biodegradable metallic materials were...
The innovative titanium-magnesium composite (Ti-Mg) was produced by powder metallurgy (P/M) method a...
Magnesium (Mg) is a promising material for producing temporary orthopedic implants, since it is a bi...
Recent studies have shown great potential of Mg matrix composites for biodegradable orthopedic devic...
Magnesium particles are used in metallurgic routes, where it can be total or partially evaporated cr...
Bu çalışmada, magnezyumun düşük mekanik ve biyokorozyon özelliklerini, biyouyumlu ve biyobozunur tak...
When a bone is fractured, it loses its structural integrity which makes it unable to bear any mechan...
In order to make magnesium (Mg) a successful candidate for fracture fixation devices, it is imperati...
This study aims to synthesize composite materials using TC4 particles and AZ91D alloy through semi-s...
Last few decades has seen enormous growth in terms of bone replacement materials. Relying on their d...
Magnesium has been identified as a promising biodegradable implant material because it does not caus...