As a new generation of medical degradable biomaterials, magnesium alloys were known as "revolutionary medical metal materials" due to their good biocompatibility, unique degradability and excellent mechanical transmission. However, the corrosion resistance of magnesium alloys is poor and there are phenomena such as rapid and uneven degradation.The research progress in improving the degradation properties of magnesium alloys was introduced from four aspects: microalloying, heat treatment process, plastic deformation and surface modification. The degradation rate and degradation modes of medical magnesium alloys in vivo and in vitro under different processing methods were compared. The influence of microstructure evolution and film characteri...
The effects of hybrid aging and solution treatments on the degradation of bio-degradable die-cast AZ...
This report reviews the effects of chemical, physical, and mechanical surface treatments on the degr...
Abstract: The biodegradable magnesium and its alloys are a focus of degradable biomaterials researc...
As a biodegradable material,magnesium alloys has been attracted by more researchers, recently. Due t...
Magnesium (Mg) and its alloys have been widely explored as a potential biodegradable implant materia...
Magnesium (Mg) and its alloys provide numerous unique benefits as potential resorptive biomaterials ...
Biodegradable magnesium (Mg) alloys present exceptional promise as functional implants, as evidenced...
Abstract Magnesium alloys attracted great attention as a new kind of degradable biomaterials. One re...
High rates of degradation in corrosive media represent the Achilles heel of Mg alloys, which hinders...
In the last six decades, it has been made a great advancement in the field of engineering material e...
Background. Pure magnesium and its alloys are promising biodegradable biomaterials for cardiovascula...
The combination of high strength, light weight, and natural biodegradability renders magnesium (Mg) ...
The world is facing an aging population and also there is an increase in war, and sports related inj...
Magnesium and its alloys have recently been used in the development of lightweight, biodegradable im...
Magnesium alloys have been widely explored as potential biomaterials, but several limitations to usi...
The effects of hybrid aging and solution treatments on the degradation of bio-degradable die-cast AZ...
This report reviews the effects of chemical, physical, and mechanical surface treatments on the degr...
Abstract: The biodegradable magnesium and its alloys are a focus of degradable biomaterials researc...
As a biodegradable material,magnesium alloys has been attracted by more researchers, recently. Due t...
Magnesium (Mg) and its alloys have been widely explored as a potential biodegradable implant materia...
Magnesium (Mg) and its alloys provide numerous unique benefits as potential resorptive biomaterials ...
Biodegradable magnesium (Mg) alloys present exceptional promise as functional implants, as evidenced...
Abstract Magnesium alloys attracted great attention as a new kind of degradable biomaterials. One re...
High rates of degradation in corrosive media represent the Achilles heel of Mg alloys, which hinders...
In the last six decades, it has been made a great advancement in the field of engineering material e...
Background. Pure magnesium and its alloys are promising biodegradable biomaterials for cardiovascula...
The combination of high strength, light weight, and natural biodegradability renders magnesium (Mg) ...
The world is facing an aging population and also there is an increase in war, and sports related inj...
Magnesium and its alloys have recently been used in the development of lightweight, biodegradable im...
Magnesium alloys have been widely explored as potential biomaterials, but several limitations to usi...
The effects of hybrid aging and solution treatments on the degradation of bio-degradable die-cast AZ...
This report reviews the effects of chemical, physical, and mechanical surface treatments on the degr...
Abstract: The biodegradable magnesium and its alloys are a focus of degradable biomaterials researc...