AbstractMagnesium (Mg) is one such promising light weight metal, which is currently utilized for bio-engineering applications. Mg possesses a number of attractive characteristics that make Mg-based materials potential candidates to serve as implants for load-bearing applications in the medical industry due to its good biocompatibility and biodegradability. However, Mg and its alloys are susceptible to suffer attack in chloride containing solutions, e.g. the human body fluid or blood plasma. Thus, alloying with other metal elements is the most effective tool to improve mechanical properties and corrosion resistance of Mg. In this current work, binary Mg-Zn alloy was produced using mechanical alloying (MA) followed by compaction and sintering...
Magnesium alloys are promising candidates for biomedical applications because of their advantageous ...
The development of metal alloys with porosity controlled by powder metallurgy has shown to be suitab...
Magnesium alloys have been widely explored as potential biomaterials, but several limitations to usi...
AbstractMagnesium (Mg) is one such promising light weight metal, which is currently utilized for bio...
Magnesium-based materials are interesting alternatives for medical implants, as they have promising...
The biocompatibility and biodegradability of magnesium (Mg), along with its lightness, make magnesiu...
Zn as a novel biodegradable metal holds great potential in bioresorbable implant application since i...
Magnesium-based materials are promising alternatives for medical applications, due to their characte...
Magnesium-based alloys are widely used in the construction of the automotive, aviation and medical i...
Zinc (Zn) possesses great potential for application in biomedical implants owing to its acceptable l...
Magnesium alloys have recently attracted the attention as a new biodegradable material. In this stu...
Zinc is a non-ferrous metal with potential application in orthopaedic implant materials. However, it...
Malzeme bilimi kapsamında, insan vücudundaki organ ya da canlı dokuların işlevlerini yerine getirmek...
The demand for short-term degradable implant in bone fixation applications is growing steadily due t...
Magnesium (Mg) and its alloys are emerging as a new class of load-bearing implants for orthopaedic a...
Magnesium alloys are promising candidates for biomedical applications because of their advantageous ...
The development of metal alloys with porosity controlled by powder metallurgy has shown to be suitab...
Magnesium alloys have been widely explored as potential biomaterials, but several limitations to usi...
AbstractMagnesium (Mg) is one such promising light weight metal, which is currently utilized for bio...
Magnesium-based materials are interesting alternatives for medical implants, as they have promising...
The biocompatibility and biodegradability of magnesium (Mg), along with its lightness, make magnesiu...
Zn as a novel biodegradable metal holds great potential in bioresorbable implant application since i...
Magnesium-based materials are promising alternatives for medical applications, due to their characte...
Magnesium-based alloys are widely used in the construction of the automotive, aviation and medical i...
Zinc (Zn) possesses great potential for application in biomedical implants owing to its acceptable l...
Magnesium alloys have recently attracted the attention as a new biodegradable material. In this stu...
Zinc is a non-ferrous metal with potential application in orthopaedic implant materials. However, it...
Malzeme bilimi kapsamında, insan vücudundaki organ ya da canlı dokuların işlevlerini yerine getirmek...
The demand for short-term degradable implant in bone fixation applications is growing steadily due t...
Magnesium (Mg) and its alloys are emerging as a new class of load-bearing implants for orthopaedic a...
Magnesium alloys are promising candidates for biomedical applications because of their advantageous ...
The development of metal alloys with porosity controlled by powder metallurgy has shown to be suitab...
Magnesium alloys have been widely explored as potential biomaterials, but several limitations to usi...