Magnesium alloys are promising candidates for biodegradable medical implants which reduce the necessity of second surgery to remove the implants. Yttrium in solid solution is an attractive alloying element because it improves mechanical properties and exhibits suitable corrosion properties. Silver was shown to have an antibacterial effect and can also enhance the mechanical properties of magnesium alloys. Measurements of microhardness and electrical resistivity were used to study the response of Mg–4Y and Mg–4Y–1Ag alloys to isochronal or isothermal heat treatments. Hardening response and electrical resistivity annealing curves in these alloys were compared in order to investigate the effect of silver addition. Procedures for solid solution...
Precipitation hardening in Mg-Y-Nd alloys is based on finely dispersed particles an effective streng...
Magnesium alloys with unique biodegradable trait raise great interests among researchers. However, o...
Magnesium and its alloys are increasingly interesting materials for biodegradable implant applicatio...
Biodegradable Mg–Ag alloys are promising implants for bone regeneration owing to their ability to de...
Biodegradable magnesium (Mg) alloys exhibit great potential for use as temporary structures in tissu...
During the recent years, some Mg based alloys have extensively been considered as a new generation o...
In order to design a potential biodegradable implant, which combines with fine mechanical and antimi...
Pure magnesium possesses similar mechanical properties compared to natural human bone, which helps t...
The use of magnesium alloys as degradable metals for biomedical applications is topic of ongoing res...
Being biocompatible and biodegradable, magnesium alloys are considered as the new generation biomedi...
The mechanical properties and bio-corrosion behaviours of T4 solid solution heat-treated Mg–1.5Zn an...
Magnesium (Mg) based alloys have been extensively considered for their use as biodegradable implant ...
In this study, the effects of calcium (Ca) and yttrium (Y) on the microstructure, mechanical propert...
Magnesium (Mg) based alloys have been extensively considered for their use as biodegradable implant ...
The effects of hybrid aging and solution treatments on the degradation of bio-degradable die-cast AZ...
Precipitation hardening in Mg-Y-Nd alloys is based on finely dispersed particles an effective streng...
Magnesium alloys with unique biodegradable trait raise great interests among researchers. However, o...
Magnesium and its alloys are increasingly interesting materials for biodegradable implant applicatio...
Biodegradable Mg–Ag alloys are promising implants for bone regeneration owing to their ability to de...
Biodegradable magnesium (Mg) alloys exhibit great potential for use as temporary structures in tissu...
During the recent years, some Mg based alloys have extensively been considered as a new generation o...
In order to design a potential biodegradable implant, which combines with fine mechanical and antimi...
Pure magnesium possesses similar mechanical properties compared to natural human bone, which helps t...
The use of magnesium alloys as degradable metals for biomedical applications is topic of ongoing res...
Being biocompatible and biodegradable, magnesium alloys are considered as the new generation biomedi...
The mechanical properties and bio-corrosion behaviours of T4 solid solution heat-treated Mg–1.5Zn an...
Magnesium (Mg) based alloys have been extensively considered for their use as biodegradable implant ...
In this study, the effects of calcium (Ca) and yttrium (Y) on the microstructure, mechanical propert...
Magnesium (Mg) based alloys have been extensively considered for their use as biodegradable implant ...
The effects of hybrid aging and solution treatments on the degradation of bio-degradable die-cast AZ...
Precipitation hardening in Mg-Y-Nd alloys is based on finely dispersed particles an effective streng...
Magnesium alloys with unique biodegradable trait raise great interests among researchers. However, o...
Magnesium and its alloys are increasingly interesting materials for biodegradable implant applicatio...