A novel Mg-2.0Zn-0.5Ca-0.4Mn alloy has been formulated and processed through melt spinning and hot extrusion to enhance its mechanical and degradation properties. Microstructural characterization of rapidly solidified alloy ribbons consolidated by extrusion revealed a fine and fully recrystallized microstructure with average size of 4 µm. The conventionally extruded alloy consisted of several course second-phase strips as coarse as 100 µm, while the extrusion-consolidated ribbons were devoid of any second phases larger than 100 nm. Rapid solidification followed by extrusion processing resulted in significantly randomized texture where the majority of the basal planes were tilted toward transverse and extrusion directions. Such a weak textur...
Mg-1.5Y-1.2Zn-0.44Zr alloys were newly developed as degradable metallic biomaterials. A comprehensiv...
AbstractMagnesium (Mg) is one such promising light weight metal, which is currently utilized for bio...
The extrusion process with a large extrusion ratio (36:1) has a great effect on microstructure refin...
Magnesium (Mg) and its alloys are emerging as a new class of load-bearing implants for orthopaedic a...
New Mg-3Zn-2Ca magnesium alloy was prepared using different processing techniques: gravity casting a...
Equal channel angular pressing (ECAP) was performed on ZK60 alloy and pure Mg in the temperature ran...
Being a biocompatible metal with similar mechanical properties as bones, magnesium bears both biodeg...
Biodegradable Mg-based implants are widely used in clinical applications because they exhibit mechan...
Abstract Being a biocompatible metal with similar mechanical properties as bones, magnesium bears b...
Backward extrusion was used to improve the properties of Mg-based biomaterials. The microstructures,...
Obtaining high strength without sacrificing ductility in Mg alloys is of great importance. However, ...
Magnesium-Aluminium-Zinc powders are produced by centrifugal atomization. The microstructural refine...
Magnesium alloys are very promising materials for automotive and aerospace applications due to their...
The influence of the equal channel angular pressing (ECAP) and simple shear extrusion (SSE) processe...
Magnesium alloys are of considerable current interest for use as degradable implants due to their un...
Mg-1.5Y-1.2Zn-0.44Zr alloys were newly developed as degradable metallic biomaterials. A comprehensiv...
AbstractMagnesium (Mg) is one such promising light weight metal, which is currently utilized for bio...
The extrusion process with a large extrusion ratio (36:1) has a great effect on microstructure refin...
Magnesium (Mg) and its alloys are emerging as a new class of load-bearing implants for orthopaedic a...
New Mg-3Zn-2Ca magnesium alloy was prepared using different processing techniques: gravity casting a...
Equal channel angular pressing (ECAP) was performed on ZK60 alloy and pure Mg in the temperature ran...
Being a biocompatible metal with similar mechanical properties as bones, magnesium bears both biodeg...
Biodegradable Mg-based implants are widely used in clinical applications because they exhibit mechan...
Abstract Being a biocompatible metal with similar mechanical properties as bones, magnesium bears b...
Backward extrusion was used to improve the properties of Mg-based biomaterials. The microstructures,...
Obtaining high strength without sacrificing ductility in Mg alloys is of great importance. However, ...
Magnesium-Aluminium-Zinc powders are produced by centrifugal atomization. The microstructural refine...
Magnesium alloys are very promising materials for automotive and aerospace applications due to their...
The influence of the equal channel angular pressing (ECAP) and simple shear extrusion (SSE) processe...
Magnesium alloys are of considerable current interest for use as degradable implants due to their un...
Mg-1.5Y-1.2Zn-0.44Zr alloys were newly developed as degradable metallic biomaterials. A comprehensiv...
AbstractMagnesium (Mg) is one such promising light weight metal, which is currently utilized for bio...
The extrusion process with a large extrusion ratio (36:1) has a great effect on microstructure refin...