As biodegradable biomaterials, magnesium alloys have favorable physical, chemical and mechanical properties, as well as good biocompatibility, and are expected to totally biodegrade in the body environment. The microstructure mechanical properties, corrosion behaviors and hemolysis of biodegradable Mg-Sn-Zn alloy were investigated under three extrusion ratios in the present work. It is revealed that the as-extruded microstructure is obviously refined with smaller grains compared with the as-cast structure while some twins form simultaneously. The tensile strengths of the as-extruded alloys fabricated with the higher extrusion ratio is 249MPa, and elongations is 16.3% respectively. Besides, the corrosion rate of as-extruded magnesium alloys ...
The microstructure, mechanical properties, in vitro degradation behavior and hemocompatibility of no...
The microstructure, mechanical properties and corrosion behavior of hot⁻rolled Mg⁻xSn...
Porous biodegradable Mg and its alloys are considered to have a great potential to serve as ideal bo...
The microstructure evolution and mechanical properties of biodegradable Mg-3Sn-1Zn-0.5Mn alloys were...
Being a biocompatible metal with similar mechanical properties as bones, magnesium bears both biodeg...
Abstract Being a biocompatible metal with similar mechanical properties as bones, magnesium bears b...
Mg-1.5Y-1.2Zn-0.44Zr alloys were newly developed as degradable metallic biomaterials. A comprehensiv...
Biodegradable Mg-based implants are widely used in clinical applications because they exhibit mechan...
Magnesium alloys act as ideal biomedical materials with good biocompatibility. In this paper, the ex...
Magnesium (Mg), a potential biodegradable material, has drawn wide attention in the bone reconstruct...
Extruded Mg-1Mn-2Zn-xNd alloys (x=0.5, 1.0, 1.5 mass %) have been developed for their potential use ...
The application of biodegradable alloys in orthopedic implants has gained widespread attention globa...
The mechanical properties and bio-corrosion behaviors of as-extruded Mg–4Zn alloys after Sn addition...
The microstructure, mechanical property, electrochemical behavior and biocompatibility of magnesium ...
Due to their desirable elastic modulus and density that are similar to natural bone, non-toxic eleme...
The microstructure, mechanical properties, in vitro degradation behavior and hemocompatibility of no...
The microstructure, mechanical properties and corrosion behavior of hot⁻rolled Mg⁻xSn...
Porous biodegradable Mg and its alloys are considered to have a great potential to serve as ideal bo...
The microstructure evolution and mechanical properties of biodegradable Mg-3Sn-1Zn-0.5Mn alloys were...
Being a biocompatible metal with similar mechanical properties as bones, magnesium bears both biodeg...
Abstract Being a biocompatible metal with similar mechanical properties as bones, magnesium bears b...
Mg-1.5Y-1.2Zn-0.44Zr alloys were newly developed as degradable metallic biomaterials. A comprehensiv...
Biodegradable Mg-based implants are widely used in clinical applications because they exhibit mechan...
Magnesium alloys act as ideal biomedical materials with good biocompatibility. In this paper, the ex...
Magnesium (Mg), a potential biodegradable material, has drawn wide attention in the bone reconstruct...
Extruded Mg-1Mn-2Zn-xNd alloys (x=0.5, 1.0, 1.5 mass %) have been developed for their potential use ...
The application of biodegradable alloys in orthopedic implants has gained widespread attention globa...
The mechanical properties and bio-corrosion behaviors of as-extruded Mg–4Zn alloys after Sn addition...
The microstructure, mechanical property, electrochemical behavior and biocompatibility of magnesium ...
Due to their desirable elastic modulus and density that are similar to natural bone, non-toxic eleme...
The microstructure, mechanical properties, in vitro degradation behavior and hemocompatibility of no...
The microstructure, mechanical properties and corrosion behavior of hot⁻rolled Mg⁻xSn...
Porous biodegradable Mg and its alloys are considered to have a great potential to serve as ideal bo...