In this study, Mg-Ca-Zn-Co alloy specimens for biomedical applications were produced by the powder metallurgy method. The Mg-Ca-Zn-Co alloy could be used as a scaffold material in tissue engineering applications. Electrochemical corrosion behavior of the specimens was investigated in simulated body fluid environment. Electrochemical corrosion resistance of the specimens was increased with increasing Zn and Ca contents of the alloy up to an optimum composition and then decreased. Optimum values for Ca and Zn additions were about 0.7 wt.% and 3.0 wt.% respectively. Young's modulus values of the specimens were determined by nondestructive ultrasonic measurement. Alloying element addition increased the Young's modulus of the specimens. Precipit...
The corrosion behaviors of Mg-2Zn-0.2Mn-xCa (denoted as MZM-xCa alloys) in homogenization state have...
Biodegradable magnesium alloys have been extensively investigated for medical applications. In orde...
Magnesium alloys have good biocompatibility because they have mechanical properties similar to those...
Background Although several studies on the Mg-Zn-Ca system have focused on alloy compositions that a...
Highly porous Mg-Ca-Zn-Co alloy scaffolds for tissue engineering applications were produced by powde...
This study was carried out to investigate the effect of solidification cooling rate on the corrosion...
Magnesium alloys are promising orthopaedic bioresorbable implant candidates, however, their inherent...
Mg-Zn-Ca alloys were prepared by a casting technique, and some of as-cast alloys were solution treat...
In the present study binary Mg-xCa (x=0.5 and 1.25wt.%) and ternary Mg-1Ca-xZn (x=0.5 and 1.5wt.%) a...
Magnesium alloys are promising orthopaedic bioresorbable implant candidates, however, their inherent...
The effects of alloying elements of Ca/Sn on corrosion behaviors of the as-cast Mg–4Zn–0.2Mn alloy w...
The successful applications of magnesium- based alloys as biodegradable orthopedic implants are main...
Mg-Zn-Ca alloy has been attracting increasing attention as a potential biodegradable implant materia...
Binary Mg-Ca alloys with various Ca contents were fabricated under controlled condition. X-ray diffr...
The corrosion behaviors of Mg-2Zn-0.2Mn-xCa (denoted as MZM-xCa alloys) in homogenization state have...
The corrosion behaviors of Mg-2Zn-0.2Mn-xCa (denoted as MZM-xCa alloys) in homogenization state have...
Biodegradable magnesium alloys have been extensively investigated for medical applications. In orde...
Magnesium alloys have good biocompatibility because they have mechanical properties similar to those...
Background Although several studies on the Mg-Zn-Ca system have focused on alloy compositions that a...
Highly porous Mg-Ca-Zn-Co alloy scaffolds for tissue engineering applications were produced by powde...
This study was carried out to investigate the effect of solidification cooling rate on the corrosion...
Magnesium alloys are promising orthopaedic bioresorbable implant candidates, however, their inherent...
Mg-Zn-Ca alloys were prepared by a casting technique, and some of as-cast alloys were solution treat...
In the present study binary Mg-xCa (x=0.5 and 1.25wt.%) and ternary Mg-1Ca-xZn (x=0.5 and 1.5wt.%) a...
Magnesium alloys are promising orthopaedic bioresorbable implant candidates, however, their inherent...
The effects of alloying elements of Ca/Sn on corrosion behaviors of the as-cast Mg–4Zn–0.2Mn alloy w...
The successful applications of magnesium- based alloys as biodegradable orthopedic implants are main...
Mg-Zn-Ca alloy has been attracting increasing attention as a potential biodegradable implant materia...
Binary Mg-Ca alloys with various Ca contents were fabricated under controlled condition. X-ray diffr...
The corrosion behaviors of Mg-2Zn-0.2Mn-xCa (denoted as MZM-xCa alloys) in homogenization state have...
The corrosion behaviors of Mg-2Zn-0.2Mn-xCa (denoted as MZM-xCa alloys) in homogenization state have...
Biodegradable magnesium alloys have been extensively investigated for medical applications. In orde...
Magnesium alloys have good biocompatibility because they have mechanical properties similar to those...