AbstractIn the present study, AZ31 magnesium alloy sheets were processed by friction stir processing (FSP) to investigate the effect of the grain refinement and grain size distribution on the corrosion behavior. Grain refinement from a starting size of 16.4 ± 6.8 µm to 3.2 ± 1.2 µm was attained after FSP. Remarkably, bimodal grain size distribution was observed in the nugget zone with a combination of coarse (11.62 ± 8.4 µm) and fine grains (3.2 ± 1.2 µm). Due to the grain refinement, a slight improvement in the hardness was found in the nugget zone of FSPed AZ31. The bimodal grain size distribution in the stir zone showed pronounced influence on the corrosion rate of FSPed AZ31 as observed from the immersion and electrochemical tests. From...
Magnesium biodegradable alloys are a promising material for self-dissolving surgical implants. Magne...
The effect of three deformation methods (equal channel angular pressing (ECAP), multiaxial deformati...
Magnesium (Mg) and its alloys have gained wide popularity in the biomedical field as promising candi...
AbstractIn the present study, AZ31 magnesium alloy sheets were processed by friction stir processing...
Stationary shoulder friction stir processing (SSFSP) in thick AZ31B magnesium alloy was performed to...
The objective of this study was to clarify the effect of grain size on the corrosion rate across fri...
In this work, the effect of fine grain sizes on the mechanical and bio-corrosion properties of AZ31 ...
The application of a single pass of friction stir processing (FSP) to Mg-Nd-Zn alloy resulted in gra...
Abstract: Magnesium alloy shows great potential in medical devices such as wound closing devices, bo...
The presented study deals with the investigation of biocompatible WE 43 Mg-based alloy processed via...
Magnesium alloys are promising candidates for bioresorbable implant applications. In this context, u...
The influence of crystal orientation on the corrosion behaviour of twin roll cast (TRC) AZ31 Mg allo...
Magnesium alloys have many unique properties, mostly benefitting from the low density of magnesium. ...
Magnesium-Zinc-Zirconium (Mg-Zn-Zr) alloys have caught considerable attention in medical application...
Les alliages de magnésium sont des candidats prometteurs pour des applications d’implants biorésorba...
Magnesium biodegradable alloys are a promising material for self-dissolving surgical implants. Magne...
The effect of three deformation methods (equal channel angular pressing (ECAP), multiaxial deformati...
Magnesium (Mg) and its alloys have gained wide popularity in the biomedical field as promising candi...
AbstractIn the present study, AZ31 magnesium alloy sheets were processed by friction stir processing...
Stationary shoulder friction stir processing (SSFSP) in thick AZ31B magnesium alloy was performed to...
The objective of this study was to clarify the effect of grain size on the corrosion rate across fri...
In this work, the effect of fine grain sizes on the mechanical and bio-corrosion properties of AZ31 ...
The application of a single pass of friction stir processing (FSP) to Mg-Nd-Zn alloy resulted in gra...
Abstract: Magnesium alloy shows great potential in medical devices such as wound closing devices, bo...
The presented study deals with the investigation of biocompatible WE 43 Mg-based alloy processed via...
Magnesium alloys are promising candidates for bioresorbable implant applications. In this context, u...
The influence of crystal orientation on the corrosion behaviour of twin roll cast (TRC) AZ31 Mg allo...
Magnesium alloys have many unique properties, mostly benefitting from the low density of magnesium. ...
Magnesium-Zinc-Zirconium (Mg-Zn-Zr) alloys have caught considerable attention in medical application...
Les alliages de magnésium sont des candidats prometteurs pour des applications d’implants biorésorba...
Magnesium biodegradable alloys are a promising material for self-dissolving surgical implants. Magne...
The effect of three deformation methods (equal channel angular pressing (ECAP), multiaxial deformati...
Magnesium (Mg) and its alloys have gained wide popularity in the biomedical field as promising candi...