Nowadays, magnesium (Mg) based alloys have gained much interest due to its potential use as biodegradable implants for the application of fixation, screws and plates in orthopaedics field. The main problems of biodegradable implants made from pure Mg are its low strength and easily corrodible. Therefore, the purpose of this study was to analyse the sintering temperature of magnesium-zinc (Mg-Zn) alloys reinforced with carbon nanofibres (CNF) through mechanical and morphological structures. Pure Mg, Zn, and CNF was prepared via powder metallurgy (PM) method. The samples were mechanically alloyed using planetary ball mill to create finer powder. Next, the samples were compacted using the Instron machine for 10 minutes at room temperature to p...
Magnesium (Mg) and its alloys are potential metals for biodegradable implants because of several ben...
Biodegradable Mg-based implants are widely used in clinical applications because they exhibit mechan...
Empirical thesis.Bibliography: pages 47-48.1. Introduction -- 2. Literature review -- 3. Experimenta...
Introduction: Biodegradable materials, such as Mg-based, Fe-based, and Zn-based, bring as much atten...
To prevent a premature failure, absorbable magnesium implants must possess an adequate mechanical st...
AbstractMagnesium (Mg) is one such promising light weight metal, which is currently utilized for bio...
6th International Advances in Applied Physics and Materials Science Congress and Exhibition, APMAS 2...
Zinc is a non-ferrous metal with potential application in orthopaedic implant materials. However, it...
The study is focussing towards Metal Injection Moulding (MIM) of Mg-alloys for biomedical implant ap...
Recently, magnesium and its alloys have attracted great attention for use as biomaterial due to thei...
6th Congress and Exhibition on International Advances in Applied Physics and Materials Science (APMA...
Magnesium (Mg) and its alloys are considered promising biodegradable implant materials because of th...
Currently some biomaterials, especially Zri and Mg alloys and related manufacturing methods are amon...
Magnesium (Mg)-based composites have recently been studied as biodegradable material for the fabrica...
Porous biodegradable Mg and its alloys are considered to have a great potential to serve as ideal bo...
Magnesium (Mg) and its alloys are potential metals for biodegradable implants because of several ben...
Biodegradable Mg-based implants are widely used in clinical applications because they exhibit mechan...
Empirical thesis.Bibliography: pages 47-48.1. Introduction -- 2. Literature review -- 3. Experimenta...
Introduction: Biodegradable materials, such as Mg-based, Fe-based, and Zn-based, bring as much atten...
To prevent a premature failure, absorbable magnesium implants must possess an adequate mechanical st...
AbstractMagnesium (Mg) is one such promising light weight metal, which is currently utilized for bio...
6th International Advances in Applied Physics and Materials Science Congress and Exhibition, APMAS 2...
Zinc is a non-ferrous metal with potential application in orthopaedic implant materials. However, it...
The study is focussing towards Metal Injection Moulding (MIM) of Mg-alloys for biomedical implant ap...
Recently, magnesium and its alloys have attracted great attention for use as biomaterial due to thei...
6th Congress and Exhibition on International Advances in Applied Physics and Materials Science (APMA...
Magnesium (Mg) and its alloys are considered promising biodegradable implant materials because of th...
Currently some biomaterials, especially Zri and Mg alloys and related manufacturing methods are amon...
Magnesium (Mg)-based composites have recently been studied as biodegradable material for the fabrica...
Porous biodegradable Mg and its alloys are considered to have a great potential to serve as ideal bo...
Magnesium (Mg) and its alloys are potential metals for biodegradable implants because of several ben...
Biodegradable Mg-based implants are widely used in clinical applications because they exhibit mechan...
Empirical thesis.Bibliography: pages 47-48.1. Introduction -- 2. Literature review -- 3. Experimenta...