A resistance of magnesium alloys to surface degradation is paramount for their applications in automotive, aerospace, consumer electronics and general-purpose markets. An emphasis of this book is on oxidation, corrosion and surface modifications, designed to enhance the alloy surface stability. It covers a nature of oxides grown at elevated temperatures and oxidation characteristics of selected alloys along with elements of general and electrochemical corrosion. Medical applications are considered that explore bio-compatibility of magnesium alloys. Also techniques of surface modifications, designed to improve not only corrosion resistance but also corrosion fatigue, wear and other behaviors, are described. The book represents a valuable res...
The study is focused on corrosion and corrosion protection of magnesium and magnesium alloys. The th...
Magnesium alloy, as an absorbable and implantable biomaterial, has been greatly developed in the app...
AGH – University of Science and Technology, Faculty of Foundry Engineering, Reymonta 23 street, 30-0...
Magnesium is the lightest of all the metals and the sixth most abundant on Earth. Magnesium is ducti...
In the field of biodegradable material, a new research area has emerged for magnesium (Mg) and its a...
Classical magnesium alloys are a combination of aluminium, magnesium, manganese and zinc. Magnesium ...
An overview is provided of the following aspects which determine the form and rate of corrosion of t...
Owing to their suitable mechanical property and biocompatibility as well as the technological possib...
As the lightest metal structural materials, magnesium and its alloys have great potential to achieve...
There remains growing interest in magnesium (Mg) and its alloys, as they are the lightest structural...
Owing to their suitable mechanical property and biocompatibility as well as the technological possib...
Magnesium alloys are regarded as potential candidates in industrial and biomedical applications beca...
High specific strength characteristics make magnesium alloys widely demanded in many industrial app...
The high strength to weight ratio of magnesium alloys makes them extremely attractive for applicatio...
Magnesium and Its Alloys: Technology and Applications covers a wide scope of topics related to magne...
The study is focused on corrosion and corrosion protection of magnesium and magnesium alloys. The th...
Magnesium alloy, as an absorbable and implantable biomaterial, has been greatly developed in the app...
AGH – University of Science and Technology, Faculty of Foundry Engineering, Reymonta 23 street, 30-0...
Magnesium is the lightest of all the metals and the sixth most abundant on Earth. Magnesium is ducti...
In the field of biodegradable material, a new research area has emerged for magnesium (Mg) and its a...
Classical magnesium alloys are a combination of aluminium, magnesium, manganese and zinc. Magnesium ...
An overview is provided of the following aspects which determine the form and rate of corrosion of t...
Owing to their suitable mechanical property and biocompatibility as well as the technological possib...
As the lightest metal structural materials, magnesium and its alloys have great potential to achieve...
There remains growing interest in magnesium (Mg) and its alloys, as they are the lightest structural...
Owing to their suitable mechanical property and biocompatibility as well as the technological possib...
Magnesium alloys are regarded as potential candidates in industrial and biomedical applications beca...
High specific strength characteristics make magnesium alloys widely demanded in many industrial app...
The high strength to weight ratio of magnesium alloys makes them extremely attractive for applicatio...
Magnesium and Its Alloys: Technology and Applications covers a wide scope of topics related to magne...
The study is focused on corrosion and corrosion protection of magnesium and magnesium alloys. The th...
Magnesium alloy, as an absorbable and implantable biomaterial, has been greatly developed in the app...
AGH – University of Science and Technology, Faculty of Foundry Engineering, Reymonta 23 street, 30-0...