This chapter reviews our understanding of Mg corrosion and the measurement of Mg corrosion. There is some emphasis on the use of Mg alloys for biodegradable medical applications. Mg melt purification using Zr has been shown to provide the opportunity to produce ultra-high-purity Mg alloys, which could lead to stainless Mg. Nor's solution may be a good start model for the study of Mg for biodegradable medical implant applications. The uni-positive Mg+ corrosion mechanism is consistent with the know corrosion data, although it is clear that self-corrosion is also important
The world is facing an aging population and also there is an increase in war, and sports related inj...
The world is facing an aging population and also there is an increase in war, and sports related inj...
An overview is provided of the following aspects which determine the form and rate of corrosion of t...
Researchers in this area of biodegradable magnesium (Mg) medical implant applications should underst...
The future of biomaterial design will rely on temporary implant materials that degrade while tissues...
The future of biomaterial design will rely on temporary implant materials that degrade while tissues...
The future of biomaterial design will rely on temporary implant materials that degrade while tissues...
Research is outlined that is needed for Mg implant applications. The need for ultra-pure Mg is prese...
Accurate prediction of Mg corrosion rates within the body (in vivo) based on laboratory tests (in vi...
Much of our understanding of the Mg corrosion mechanism is based on research using aggressive chlori...
AbstractRecent research is summarised with an emphasis on the use of Mg alloys for biodegradable med...
Mg and its alloys become natural biomaterials as the elemental Mg is found in the human body in abun...
Mg and its alloys become natural biomaterials as the elemental Mg is found in the human body in abun...
This chapter deals with the emerging field of biomedical applications for magnesium-based materials,...
Background. Pure magnesium and its alloys are promising biodegradable biomaterials for cardiovascula...
The world is facing an aging population and also there is an increase in war, and sports related inj...
The world is facing an aging population and also there is an increase in war, and sports related inj...
An overview is provided of the following aspects which determine the form and rate of corrosion of t...
Researchers in this area of biodegradable magnesium (Mg) medical implant applications should underst...
The future of biomaterial design will rely on temporary implant materials that degrade while tissues...
The future of biomaterial design will rely on temporary implant materials that degrade while tissues...
The future of biomaterial design will rely on temporary implant materials that degrade while tissues...
Research is outlined that is needed for Mg implant applications. The need for ultra-pure Mg is prese...
Accurate prediction of Mg corrosion rates within the body (in vivo) based on laboratory tests (in vi...
Much of our understanding of the Mg corrosion mechanism is based on research using aggressive chlori...
AbstractRecent research is summarised with an emphasis on the use of Mg alloys for biodegradable med...
Mg and its alloys become natural biomaterials as the elemental Mg is found in the human body in abun...
Mg and its alloys become natural biomaterials as the elemental Mg is found in the human body in abun...
This chapter deals with the emerging field of biomedical applications for magnesium-based materials,...
Background. Pure magnesium and its alloys are promising biodegradable biomaterials for cardiovascula...
The world is facing an aging population and also there is an increase in war, and sports related inj...
The world is facing an aging population and also there is an increase in war, and sports related inj...
An overview is provided of the following aspects which determine the form and rate of corrosion of t...