Influence of deformation on the kinetics of phase transformation in a forging steel during warm working



Título del documento: Influence of deformation on the kinetics of phase transformation in a forging steel during warm working
Revista: Materials research
Base de datos: PERIÓDICA
Número de sistema: 000312778
ISSN: 1516-1439
Autores: 1
1
Instituciones: 1Universidade Federal de Sao Carlos, Departamento de Engenharia de Materiais, Sao Carlos, Sao Paulo. Brasil
Año:
Periodo: Abr-Jun
Volumen: 7
Número: 2
Paginación: 247-253
País: Brasil
Idioma: Inglés
Tipo de documento: Nota breve o noticia
Enfoque: Experimental
Resumen en inglés 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 differences were attributed to the ferrite and pearlite, ferrite and austenite, and austenite strained structures. 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 microstructural evolution observed by optical and scanning electron microscopy revealed that the evolution of the phase transformation was dependent on the testing temperatures, holding times and amount of straining. Comparisons were made on the kinetics of phase transformation with and without the application of plastic deformation, and evidence of strain-induced dynamic transformation was investigated
Disciplinas: Ingeniería,
Física y astronomía
Palabras clave: Ingeniería mecánica,
Ingeniería metalúrgica,
Teoría cinética y plasmas,
Acero,
Deformación,
Temperatura,
Cambio de fase
Keyword: Engineering,
Physics and astronomy,
Mechanical engineering,
Metallurgical engineering,
Kinetic theory and plasma,
Steel,
Deformation,
Temperature,
Phase change
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