Dilatometric techniques were used to determine the start and finish transformation heating temperatures for a carbon steel (0.30 % C- 1.5 % Mn). The mechanical behavior of the steel was measured by torsion testing in the temperature range of 700 to 820 °C with holding times ranging from 1 to 30 min. The flow stress curves presented different shapes and stress levels. These differ-ences were attributed to the ferrite and pearlite, ferrite and austenite, and austenite strained struc-tures. When ferrite and pearlite were deformed together, the flow stress presented a hump with little straining; when the austenitic structure was deformed the shape of the flow stress curve was typical of materials having low stacking fault energy. The microstruc...
The aim of this article was to assess the effect of previous plastic deformation on the transformati...
The phase transformation and the final microstructure were studied in a pipeline steel grade API-X80...
The aim was to determine the phase transformations temperatures of a specific IF steel grade, microa...
Dilatometric techniques were used to determine the start and finish transformation heating temperatu...
The design of thermomechanical processing schedules to control microstructures requires the knowledg...
Dilatometric techniques were used to build the continuous cooling transformation (CCT) diagram for a...
A series of single compression tests were performed in order to improve the understanding of the inf...
Based on dilatometric tests, the effect of various values of previous deformation on the kinetics of...
By means of quenching and deformation dilatometry phase transformation of the steels X 30 WCrV 5 3 a...
The aim of the performed experiments was to determine the influence of deformation and of austenitiz...
During forging and machining manufacturing processes, the material is subject to large strains at hi...
International audienceAn extensive experimental program on a 9% Ni, 12% Cr, 2% Mo steel is introduce...
The paper presents the results of research on the influence of plastic deformation and cooling condi...
Hot forging is a conventional forming process at elevated temperatures that is frequently used to pr...
The effects of austenite grain size, level of undercooling, and strain and strain rate in compressio...
The aim of this article was to assess the effect of previous plastic deformation on the transformati...
The phase transformation and the final microstructure were studied in a pipeline steel grade API-X80...
The aim was to determine the phase transformations temperatures of a specific IF steel grade, microa...
Dilatometric techniques were used to determine the start and finish transformation heating temperatu...
The design of thermomechanical processing schedules to control microstructures requires the knowledg...
Dilatometric techniques were used to build the continuous cooling transformation (CCT) diagram for a...
A series of single compression tests were performed in order to improve the understanding of the inf...
Based on dilatometric tests, the effect of various values of previous deformation on the kinetics of...
By means of quenching and deformation dilatometry phase transformation of the steels X 30 WCrV 5 3 a...
The aim of the performed experiments was to determine the influence of deformation and of austenitiz...
During forging and machining manufacturing processes, the material is subject to large strains at hi...
International audienceAn extensive experimental program on a 9% Ni, 12% Cr, 2% Mo steel is introduce...
The paper presents the results of research on the influence of plastic deformation and cooling condi...
Hot forging is a conventional forming process at elevated temperatures that is frequently used to pr...
The effects of austenite grain size, level of undercooling, and strain and strain rate in compressio...
The aim of this article was to assess the effect of previous plastic deformation on the transformati...
The phase transformation and the final microstructure were studied in a pipeline steel grade API-X80...
The aim was to determine the phase transformations temperatures of a specific IF steel grade, microa...