Mean Flow Stress (MFS) of micro-alloyed high strength steels during plate rolling has been thorough studied. It has been found out by both thermomechanical tests and measurements taken in the industrial plate mill. For this purpose, log data obtained from the plate rolling mills have been converted to mean flow stress using the Sims approach. The agreement between thermomechanical tests and mill data have been tested in order to confirm that thermomechanical testing can provide an easy, convenient and very effective simulation of industrial hot rolling process. The results are analyzed and compared to the predictions of some mathematical models developed in literature. Subsequently, the best performing formula, namely the Poliak's equatio...
An austenitic stainless steel was deformed in torsion over a temperature range of 900-1200 °C using ...
The deformation that occurs in the roll bite during the hot rolling of steel, particularly the strai...
An austenitic stainless steel was deformed in torsion over a temperature range of 900-1200 °C us...
Mean Flow Stress (MFS) of micro-alloyed high strength steels during plate rolling has been thorough ...
Mean Flow Stress (MFS) of micro-alloyed high strength steels during plate rolling has been thorough ...
Mean Flow Stress (MFS) of micro-alloyed high strength steels during plate rolling has been thorough ...
Mean Flow Stress (MFS) of micro-alloyed high strength steels during plate rolling has been thorough ...
Industrial mill logs from 7 different hot strip mills were analyzed in order to calculate the mean f...
Based on the measurement of roll forces during the laboratory hot rolling of flat samples graded in ...
A mathematical model to predict the through-thickness temperature distribution in a steel strip duri...
Accuracy and reliability of numerical simulation of hot rolling processes are dependent on a suitabl...
The ability to predict mass flow behavior during hot rolling is essential to product quality. In thi...
During hot rolling of steel, the material is subjected to a high degree of deformation which could l...
Abstract. Hot torsion tests were used to simulate hot rolling of a Nb-microalloyed steel. Subsequent...
There the simulator to predict the number of stress-strain properties of steels from the basic range...
An austenitic stainless steel was deformed in torsion over a temperature range of 900-1200 °C using ...
The deformation that occurs in the roll bite during the hot rolling of steel, particularly the strai...
An austenitic stainless steel was deformed in torsion over a temperature range of 900-1200 °C us...
Mean Flow Stress (MFS) of micro-alloyed high strength steels during plate rolling has been thorough ...
Mean Flow Stress (MFS) of micro-alloyed high strength steels during plate rolling has been thorough ...
Mean Flow Stress (MFS) of micro-alloyed high strength steels during plate rolling has been thorough ...
Mean Flow Stress (MFS) of micro-alloyed high strength steels during plate rolling has been thorough ...
Industrial mill logs from 7 different hot strip mills were analyzed in order to calculate the mean f...
Based on the measurement of roll forces during the laboratory hot rolling of flat samples graded in ...
A mathematical model to predict the through-thickness temperature distribution in a steel strip duri...
Accuracy and reliability of numerical simulation of hot rolling processes are dependent on a suitabl...
The ability to predict mass flow behavior during hot rolling is essential to product quality. In thi...
During hot rolling of steel, the material is subjected to a high degree of deformation which could l...
Abstract. Hot torsion tests were used to simulate hot rolling of a Nb-microalloyed steel. Subsequent...
There the simulator to predict the number of stress-strain properties of steels from the basic range...
An austenitic stainless steel was deformed in torsion over a temperature range of 900-1200 °C using ...
The deformation that occurs in the roll bite during the hot rolling of steel, particularly the strai...
An austenitic stainless steel was deformed in torsion over a temperature range of 900-1200 °C us...