Backward extrusion was used to improve the properties of Mg-based biomaterials. The microstructures, mechanical performance and corrosion properties of as-cast and backward extruded Mg-xZn (x = 0.5, 1, 1.5, 2, wt.%) alloys were investigated. The secondary dendrite arm spacing of as-cast Mg-xZn alloys and the grain size of backward extruded Mg-xZn alloys were decreased with the increment of Zn content. Meanwhile, both strength and elongation were improved by backward extruded treatment. With increasing Zn addition, the corrosion properties of both as-cast and backward extruded Mg-xZn alloys were decreased. However, the corrosion performance of backward extruded sample was improved obviously compared to the corresponding as-cast one. More imp...
In this study, the effect of Mn addition on microstructural evolution, mechanical properties, and bi...
Magnesium (Mg), a potential biodegradable material, has drawn wide attention in the bone reconstruct...
Magnesium (Mg) and its alloys are emerging as a new class of load-bearing implants for orthopaedic a...
Magnesium alloys act as ideal biomedical materials with good biocompatibility. In this paper, the ex...
Porous biodegradable Mg and its alloys are considered to have a great potential to serve as ideal bo...
As biodegradable biomaterials, magnesium alloys have favorable physical, chemical and mechanical pro...
The effects of zinc content (2 and 4 wt%), heat treatment (solution-treated and T6), as well as hot ...
Backward extrusion technology has been performed to improve the mechanical properties of Mg-Gd based...
Extruded Mg-1Mn-2Zn-xNd alloys (x=0.5, 1.0, 1.5 mass %) have been developed for their potential use ...
Being a biocompatible metal with similar mechanical properties as bones, magnesium bears both biodeg...
The mechanical properties and degradation behavior of both as-cast and extruded Mg(100−7x)Zn6xYx all...
Abstract Being a biocompatible metal with similar mechanical properties as bones, magnesium bears b...
Mg-5Sn-xZn alloys with varying Zn contents were subjected to indirect extrusion and the effects of t...
The feasibility of a Mg-Zn-Zr alloy for biomedical applications was studied through microstructure c...
Biodegradable Mg-based implants are widely used in clinical applications because they exhibit mechan...
In this study, the effect of Mn addition on microstructural evolution, mechanical properties, and bi...
Magnesium (Mg), a potential biodegradable material, has drawn wide attention in the bone reconstruct...
Magnesium (Mg) and its alloys are emerging as a new class of load-bearing implants for orthopaedic a...
Magnesium alloys act as ideal biomedical materials with good biocompatibility. In this paper, the ex...
Porous biodegradable Mg and its alloys are considered to have a great potential to serve as ideal bo...
As biodegradable biomaterials, magnesium alloys have favorable physical, chemical and mechanical pro...
The effects of zinc content (2 and 4 wt%), heat treatment (solution-treated and T6), as well as hot ...
Backward extrusion technology has been performed to improve the mechanical properties of Mg-Gd based...
Extruded Mg-1Mn-2Zn-xNd alloys (x=0.5, 1.0, 1.5 mass %) have been developed for their potential use ...
Being a biocompatible metal with similar mechanical properties as bones, magnesium bears both biodeg...
The mechanical properties and degradation behavior of both as-cast and extruded Mg(100−7x)Zn6xYx all...
Abstract Being a biocompatible metal with similar mechanical properties as bones, magnesium bears b...
Mg-5Sn-xZn alloys with varying Zn contents were subjected to indirect extrusion and the effects of t...
The feasibility of a Mg-Zn-Zr alloy for biomedical applications was studied through microstructure c...
Biodegradable Mg-based implants are widely used in clinical applications because they exhibit mechan...
In this study, the effect of Mn addition on microstructural evolution, mechanical properties, and bi...
Magnesium (Mg), a potential biodegradable material, has drawn wide attention in the bone reconstruct...
Magnesium (Mg) and its alloys are emerging as a new class of load-bearing implants for orthopaedic a...