AbstractIn the process of constructional steel products operation in conditions of high temperatures, chemical elements segregation occurs, which leads to the surface characteristics changing and influences their operation period. This paper is aimed in developing the model of mass transfer and redistribution of small-sized atoms (carbon, oxygen) in the binary system “steel-coating” after high temperature annealing in air atmosphere. It is estimated, that carbon concentration inside the grain increases up to 2.81%, at the grain boundaries it reaches 0.44%, while oxygen concentration increases in average up to 16%. The main mechanisms, leading to the redistribution of small-sized impurities, are non-equilibrium flows of point defects to the ...
Segregation and selective oxidation phenomena of minor alloying elements during annealing of steel s...
Continuous galvanizing process involving immersion in a molten zinc bath is commonly used to form zi...
The incentivisation of low density steel research is rooted in the reduction of greenhouse gases by ...
AbstractIn the process of constructional steel products operation in conditions of high temperatures...
There are presented the computer models of multicomponent grain boundary segregation (GBS) that are ...
There are presented the computer models of multicomponent grain boundary segregation (GBS) that are ...
International audienceAn adequate model of quantification when there are many segregating elements i...
AbstractThe processes of mutual element diffusion in coating and matrix are the one of significant f...
The segregation of a number of impurity elements to grain boundaries in reactor pressure vessel stee...
A model quantifying the kinetics and magnitude of non-equilibrium and equilibrium grain boundary seg...
Spot segregation and banded defect are unsolved technical problems of high-quality steel. In this pa...
An analysis of the existing information on the structural state of grain boundaries in metals and th...
Boron (B) is the most effective alloying element for increasing the hardenability of steel. It achie...
The surface compositions of type 304 stainless steel heated in vacuum at 600-900°C were determined b...
Segregation and selective oxidation phenomena of minor alloying elements during annealing of steel s...
Segregation and selective oxidation phenomena of minor alloying elements during annealing of steel s...
Continuous galvanizing process involving immersion in a molten zinc bath is commonly used to form zi...
The incentivisation of low density steel research is rooted in the reduction of greenhouse gases by ...
AbstractIn the process of constructional steel products operation in conditions of high temperatures...
There are presented the computer models of multicomponent grain boundary segregation (GBS) that are ...
There are presented the computer models of multicomponent grain boundary segregation (GBS) that are ...
International audienceAn adequate model of quantification when there are many segregating elements i...
AbstractThe processes of mutual element diffusion in coating and matrix are the one of significant f...
The segregation of a number of impurity elements to grain boundaries in reactor pressure vessel stee...
A model quantifying the kinetics and magnitude of non-equilibrium and equilibrium grain boundary seg...
Spot segregation and banded defect are unsolved technical problems of high-quality steel. In this pa...
An analysis of the existing information on the structural state of grain boundaries in metals and th...
Boron (B) is the most effective alloying element for increasing the hardenability of steel. It achie...
The surface compositions of type 304 stainless steel heated in vacuum at 600-900°C were determined b...
Segregation and selective oxidation phenomena of minor alloying elements during annealing of steel s...
Segregation and selective oxidation phenomena of minor alloying elements during annealing of steel s...
Continuous galvanizing process involving immersion in a molten zinc bath is commonly used to form zi...
The incentivisation of low density steel research is rooted in the reduction of greenhouse gases by ...