In recent years, Mg alloys have attracted increased attention for biomedical application owing to their good biodegradability, biocompatibility, and biomechanical properties. However, rapid corrosion is still one of the most common limitations for their implanted application. In this work, the microstructure and corrosion behavior of the solution- and aging-treated Mg-xGd-1Zn-0.4Zr (x = 3, 6, and 9 wt%, denoted as GZ31K, GZ61K, and GZ91K, respectively) alloys were studied using optical microscope (OM), scanning electron microscope (SEM), immersion tests, electrochemical tests, and quasi in situ corrosion method. The results show that block Gd-rich precipitates and needle-like Zr-Zn-rich precipitates are formed as well as α-Mg matrix. With t...
The use of metallic biomaterials, such as titanium alloys, stainless steels and cobalt-chromium allo...
A binary Mg–6Zn biodegradable alloy was solution treated to evaluate the effects of resulting micros...
The aim of this paper was to investigate the corrosion resistance of Mg66Zn30Ca4 and Mg68Zn28Ca4 met...
The Mg-xGd-1Er-1Zn-0.6Zr alloys with Gd contents of 7%(mass fraction), 9% and 11% were prepared by g...
The Mg–Zn–Zr–Gd alloys belong to a group of biometallic alloys suitable for bone s...
The present work aims to understand the effect of zinc and rare-earth element addition (i.e., 2 wt% ...
The Mg–Zn–Zr–Gd alloys belong to a group of biometallic alloys suitable for bone s...
Mg based implants are limited by their poor strength, ductility, and corrosion performance in physio...
The successful applications of magnesium- based alloys as biodegradable orthopedic implants are main...
Pure magnesium possesses similar mechanical properties compared to natural human bone, which helps t...
Abstract The Mg–Zn–Zr–Gd alloys belong to a group of biometallic alloys suitable for bone substitut...
Pure Mg and prealloyed Mg-Gd-Nd-Zr-Zn alloy samples were prepared using powder metallurgy route and ...
This study investigates the microstructure, mechanical properties, corrosion behavior, and biocompat...
The use of metallic biomaterials, such as titanium alloys, stainless steels and cobalt-chromium allo...
The microstructure, mechanical property, and in vitro biocorrosion behavior of as-cast single-phase ...
The use of metallic biomaterials, such as titanium alloys, stainless steels and cobalt-chromium allo...
A binary Mg–6Zn biodegradable alloy was solution treated to evaluate the effects of resulting micros...
The aim of this paper was to investigate the corrosion resistance of Mg66Zn30Ca4 and Mg68Zn28Ca4 met...
The Mg-xGd-1Er-1Zn-0.6Zr alloys with Gd contents of 7%(mass fraction), 9% and 11% were prepared by g...
The Mg–Zn–Zr–Gd alloys belong to a group of biometallic alloys suitable for bone s...
The present work aims to understand the effect of zinc and rare-earth element addition (i.e., 2 wt% ...
The Mg–Zn–Zr–Gd alloys belong to a group of biometallic alloys suitable for bone s...
Mg based implants are limited by their poor strength, ductility, and corrosion performance in physio...
The successful applications of magnesium- based alloys as biodegradable orthopedic implants are main...
Pure magnesium possesses similar mechanical properties compared to natural human bone, which helps t...
Abstract The Mg–Zn–Zr–Gd alloys belong to a group of biometallic alloys suitable for bone substitut...
Pure Mg and prealloyed Mg-Gd-Nd-Zr-Zn alloy samples were prepared using powder metallurgy route and ...
This study investigates the microstructure, mechanical properties, corrosion behavior, and biocompat...
The use of metallic biomaterials, such as titanium alloys, stainless steels and cobalt-chromium allo...
The microstructure, mechanical property, and in vitro biocorrosion behavior of as-cast single-phase ...
The use of metallic biomaterials, such as titanium alloys, stainless steels and cobalt-chromium allo...
A binary Mg–6Zn biodegradable alloy was solution treated to evaluate the effects of resulting micros...
The aim of this paper was to investigate the corrosion resistance of Mg66Zn30Ca4 and Mg68Zn28Ca4 met...