Título
The influence of the adiabatic heating coefficient on the near solidus forming processOtras instituciones
Universidad de DeustoVersión
Version publicada
Derechos
© 2024 The AuthorsAcceso
Acceso abiertoVersión del editor
https://doi.org/10.1007/s12289-024-01867-3Publicado en
International Journal of Material Forming Vol. 18. N. art. 3, 2025Editor
Springer NaturePalabras clave
Near solidus formingAdiabatic Heating
Equivalent plastic strain
Digital twins
Materia (Tesauro UNESCO)
Tecnología de materialesClasificación UNESCO
Tecnología de materialesResumen
The Near Solidus Forming (NSF) process represents a critical method for shaping metallic components under extreme temperature conditions. When metals deform plastically, significant amounts of heat ca ... [+]
The Near Solidus Forming (NSF) process represents a critical method for shaping metallic components under extreme temperature conditions. When metals deform plastically, significant amounts of heat can be generated, which is due to the conversion of plastic deformation energy in the material often known is adiabatic heating. In this study, the influence of the adiabatic heating coefficient (AHC) on temperature distribution and plastic strain during NSF process is investigated. For this purpose, three industrial benchmarks previously fabricated using NSF techniques are selected to serve as representative cases for analysis. To conduct the analysis, sensitivity studies is performed at two key temperatures: 1360 °C and 1370 °C. These temperatures are chosen to capture the range of operating conditions typically encountered in industrial NSF applications. The simulation tool FORGE NXT® is utilized to investigate the potential effect of AHC on equivalent plastic strain (EPS). The range of potential AHC values considered is between 85% and 100%, as determined from a comprehensive literature survey. The study suggests that the AHC has a minimal effect on the deformation behaviour of 42CrMo4 steel at NSF condition for the studied benchmarks. The findings of this study provide the inside to the importance of AHC in the developing of a reliable Digital Twin (DT) for industrial NSF application. [-]
Financiador
Gobierno VascoGobierno de España
Comisión Europea
Programa
Elkartek 2020Ayudas a Proyectos de Generación de Conocimiento y a actuaciones para la formación de personal investigador predoctoral
Research Fund for Coal and Steel (RFCS)
Número
KK-2020-00087PID2022-139130OA-I00
RFCS-2018-800763
URI de la ayuda
Sin informaciónSin información
Sin información
Proyecto
Procesos de fabricación excelentes para propiedades máximas frente a la corrosión de aceros de altas prestaciones (PROMAX)Exploration of high entropy alloys as substitute materials for sustainable mobility and decarbonisation (HEAPLAS)
Hybrid Semi-Solid Forming (HSSF)
Colecciones
- Artículos - Ingeniería [695]
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