The influence of the coiling temperature, ranging from 550 to 570°C, on the morphology and the phase composition of the oxide scale formed on the microalloyed low carbon steel for automobiles after hot strip rolling was investigated. Physicochemical characteristics of the oxide scales were examined and their formation mechanism was discussed. Thickness of the oxide scale is in the range of 8-11μm and decreases with a decrease of coiling temperature. The microstructure and phase composition, XRD analysis shows a large amount of magnetite (Fe 3O 4) and some sparse hematite (Fe 2O 3) exist on the surface of hot rolled strip when the coiling temperature reduces from 570 to 550°C. The coiling temperature substantially affects the internal micros...
A numerical simulation, developed to predict the temperature distribution and calculate the growth r...
Contact friction is of crucial importance for accurate simulation, optimum design and control of ind...
The composition and phase transformation of oxide scale in cooling process (after hot rolling) of ro...
The influence of the coiling temperature, ranging from 550 to 570℃, on the morphology and the phase ...
The influence of processing parameters (slab thickness, water flow of interstand cooling and oil flo...
An experimental method was developed to study the adherence properties of the oxide scale formed on ...
In this research, the effects of gas composition, elapsed time of reaction and temperature on scale ...
In hot rolling, metal oxides formed on steel surface can generally be classified as primary, seconda...
Oxidation characteristics of a microalloyed low carbon steel were investigated by a hot rolling mill...
We describe here the influence of coiling temperature on the microstructure and mechanical propertie...
This paper comprehends the effects of finish rolling temperature (FRT) and Nb-microalloying on the m...
Abstract This paper comprehends the effects of finish rolling temperature (FRT) and Nb-microalloyin...
The spallation behavior of oxide scale on the surface of low carbon microalloyed steel (510L) is inv...
The study of hot band microstructure and texture during the hot rolling process is of great importa...
This paper examines the impact of coiling temperature and duration on the phase transformation and p...
A numerical simulation, developed to predict the temperature distribution and calculate the growth r...
Contact friction is of crucial importance for accurate simulation, optimum design and control of ind...
The composition and phase transformation of oxide scale in cooling process (after hot rolling) of ro...
The influence of the coiling temperature, ranging from 550 to 570℃, on the morphology and the phase ...
The influence of processing parameters (slab thickness, water flow of interstand cooling and oil flo...
An experimental method was developed to study the adherence properties of the oxide scale formed on ...
In this research, the effects of gas composition, elapsed time of reaction and temperature on scale ...
In hot rolling, metal oxides formed on steel surface can generally be classified as primary, seconda...
Oxidation characteristics of a microalloyed low carbon steel were investigated by a hot rolling mill...
We describe here the influence of coiling temperature on the microstructure and mechanical propertie...
This paper comprehends the effects of finish rolling temperature (FRT) and Nb-microalloying on the m...
Abstract This paper comprehends the effects of finish rolling temperature (FRT) and Nb-microalloyin...
The spallation behavior of oxide scale on the surface of low carbon microalloyed steel (510L) is inv...
The study of hot band microstructure and texture during the hot rolling process is of great importa...
This paper examines the impact of coiling temperature and duration on the phase transformation and p...
A numerical simulation, developed to predict the temperature distribution and calculate the growth r...
Contact friction is of crucial importance for accurate simulation, optimum design and control of ind...
The composition and phase transformation of oxide scale in cooling process (after hot rolling) of ro...