Unpublished conference/Abstract (Scientific congresses and symposiums)
Multiscale Modeling of Creep Deformation in 30CrMoNiV11-5 Steel: Integrating Mean-Field Theory, Dislocation Dynamics, and Experimental Validation
Chen, Fan; Rojas Ulloa, Carlos Eduardo; Tchuindjang, Jérôme Tchoufack et al.
2025European Congress and Exhibition on Advanced Materials and Processes – FEMS EUROMAT 2025
Peer reviewed
 

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Keywords :
fluage modélisation multi échelle acier
Abstract :
[en] Coupling between Mean field creep and TC Prisma simulations to predict the behaviour of 30CrMoNiV5-11 Steel (heat-resistant steel)
Disciplines :
Materials science & engineering
Author, co-author :
Chen, Fan ;  Université de Liège - ULiège ; Université de Liège - ULiège > Urban and Environmental Engineering
Rojas Ulloa, Carlos Eduardo  ;  Université de Liège - ULiège > Département ArGEnCo > Département Argenco : Secteur MS2F
Tchuindjang, Jérôme Tchoufack  ;  Université de Liège - ULiège > Aérospatiale et Mécanique (A&M)
Bharadwaj, Rhishabh;  university of Oulu
Pohjonen, Aarne;  university of Oulu
Mertens, Anne  ;  Université de Liège - ULiège > Aérospatiale et Mécanique (A&M)
Habraken, Anne  ;  Université de Liège - ULiège > Département ArGEnCo > Département Argenco : Secteur MS2F
Language :
English
Title :
Multiscale Modeling of Creep Deformation in 30CrMoNiV11-5 Steel: Integrating Mean-Field Theory, Dislocation Dynamics, and Experimental Validation
Alternative titles :
[fr] Modélisation multi échelle de la deformation de fluage de l acier 30CrMoNiV11-5: intégration d'une approche Mean Field et de la dynamique de dislocation et validation expérimentale
Publication date :
15 September 2025
Number of pages :
26
Event name :
European Congress and Exhibition on Advanced Materials and Processes – FEMS EUROMAT 2025
Event place :
Granada, Spain
Event date :
14-18 Septembre 2025
Event number :
18
Audience :
International
Peer review/Selection committee :
Peer reviewed
References of the abstract :
The book of abstracts has ISBN 978-84-09-73131-2. Only one abstract is encoded hereabove (n° 405) where Fan is first author and Habraken last author but abstracts 469, 977, 1289 have also Fan and Habraken as co- authors. All these abstracts are related to creep behaviour modeling and characterization or microstructure formation of large shaft relying on Machine learning or multiscale modelling. They are the results of parteners' collaboration of European project AID4Greenest. ULiege is coordinator of WP3.
Development Goals :
12. Responsible consumption and production
European Projects :
HE - 101091912 - AID4GREENEST - AI powereD characterization and modelling for GREEn STeel technology
Name of the research project :
AI powereD characterization and modelling for GREEn STeel technology
Funders :
European Union
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since 23 January 2026

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