The environmental degradation of materials at high temperatures limits the useful life of different industrial components and hinders the development of more economical and environmentally friendly processes for the energy production. Despite the importance of this phenomena, a model to predict lifetime of materials that degrade due to high-temperature corrosion has up till now been lacking due to limitations of the computational possibilities and the complex nature of oxidation. In the present work we develop some strategies to model high-temperature corrosion in Fe-based alloys using the Calphad (Calculation of Phase Diagrams) approach. It is proposed that kinetic-based simulations for oxidation of Al and Cr can accurately represent the l...
Increasing efficiency is a continuing goal for all forms of power generation from conventional fossi...
High-temperature oxidation behavior of any materials depends on the stability of the protective oxid...
The properties of materials can be deteriorated, when they react with an environment at high tempera...
The corrosion behavior of Fe(5−20)Cr3Al2Si model alloys and the underlying mechanisms after breakawa...
Good high-temperature corrosion resistance of Fe-Al alloys in oxidizing environments is due to the a...
Good high-temperature corrosion resistance of Fe-Al alloys in oxidizing environments is due to the a...
Service life-time of alloys used in high temperature applications is often limited by corrosion. FeC...
The high temperature oxidation of iron-based alloys is a crucial factor in limiting the lifetime of ...
Oxidation of high-temperature alloys represents complex, strongly-coupled, nonlinear phenomena which...
Oxidation of high-temperature alloys represents complex, strongly-coupled, nonlinear phenomena which...
FeCrAl alloys are high temperature structural materials with ever increasing technological importanc...
The preparation of model alloys with controlled levels of minor elements, as C or S, is very useful ...
The preparation of model alloys with controlled levels of minor elements, as C or S, is very useful ...
FeCrAl alloys are high temperature structural materials with ever increasing technological importanc...
The corrosive environment in biomass- and waste-fired boilers has been known for several years. The ...
Increasing efficiency is a continuing goal for all forms of power generation from conventional fossi...
High-temperature oxidation behavior of any materials depends on the stability of the protective oxid...
The properties of materials can be deteriorated, when they react with an environment at high tempera...
The corrosion behavior of Fe(5−20)Cr3Al2Si model alloys and the underlying mechanisms after breakawa...
Good high-temperature corrosion resistance of Fe-Al alloys in oxidizing environments is due to the a...
Good high-temperature corrosion resistance of Fe-Al alloys in oxidizing environments is due to the a...
Service life-time of alloys used in high temperature applications is often limited by corrosion. FeC...
The high temperature oxidation of iron-based alloys is a crucial factor in limiting the lifetime of ...
Oxidation of high-temperature alloys represents complex, strongly-coupled, nonlinear phenomena which...
Oxidation of high-temperature alloys represents complex, strongly-coupled, nonlinear phenomena which...
FeCrAl alloys are high temperature structural materials with ever increasing technological importanc...
The preparation of model alloys with controlled levels of minor elements, as C or S, is very useful ...
The preparation of model alloys with controlled levels of minor elements, as C or S, is very useful ...
FeCrAl alloys are high temperature structural materials with ever increasing technological importanc...
The corrosive environment in biomass- and waste-fired boilers has been known for several years. The ...
Increasing efficiency is a continuing goal for all forms of power generation from conventional fossi...
High-temperature oxidation behavior of any materials depends on the stability of the protective oxid...
The properties of materials can be deteriorated, when they react with an environment at high tempera...