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Fiche de : RAOELISON Rija Nirina

Département :
Procédés Métallurgiques, Durabilité, Matériaux


Fonction : Maître de conférences

Localisation :
ICB UMR CNRS 6303
Site UTBM Sévenans – S406
Univ. Bourgogne Franche Comté (UBFC)
Tél. : +33 (0) 3 84 58 30 97
E-mail : rija-nirina.raoelison@utbm.fr

R.N. Raoelison graduated with a BS degree in Mechanical Technology in 2004, and a MS degree in Mechanics-Materials-Processes in 2006, jointly accredited by Université Pierre et Marie Curie (Paris 6) and Ecole Normale Supérieure de Cachan. He received his PhD degree in Engineering Science from Université de Bretagne Sud in 2010. He pursued a postgraduate research at Université de Technologie de Compiègne until 2013 (Laboratory Roberval) while working on the development of the magnetic pulse welding process to fulfill new requirements of metals joining capabilities under high speed collisions. Since September 2013, he has been a permanent associate professor at Université de Technologie de Belfort-Montbéliard and joined the laboratory LERMPS (Laboratoire d’Etudes et de Recherches sur les Matériaux, les Procédés et les Surfaces) that became ICB-PMDM-LERMPS in 2017. He has been working on the characterization, modelling and predictive computations of the innovative cold spray additive manufacturing process, including fluid/particle interactions, metallurgical transformations under high-strain rate conditions, and solid-state adhesion phenomena. He has been working on multiphysics computation and phenomenological analysis of laser additive manufacturing, since 2019. He is graduated with the accreditation “Habilitation à Diriger des Recherches” in process engineering, in december 2021 (dissertation entitled “Advancing the understanding on the optimization of emergent manufacturing methods based on a high-speed collision: cold spraying and magnetic pulse welding”).

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Graduated with a BS degree in Mechanical Technology in 2004, and a MS degree in Mechanics-Materials-Processes in 2006, jointly accredited by Université Pierre et Marie Curie (Paris 6) and Ecole Normale Supérieure de Cachan. Graduated with a PhD degree of Engineering Science in 2010 and pursued a postgraduate research for the development of the magnetic pulse welding process. Is a « Maître de conférences » (permanent associate professor) at Université de Technologie de Belfort-Montbéliard (Laboratoire d’Etudes et de Recherches sur les Matériaux, les Procédés et les Surfaces which became ICB-PMDM-LERMPS in 2017). Has been working on the development of the cold spray additive manufacturing process, including characterization, modelling and predictive computations. Pursues collaborative works on the metallurgical transformations under high-strain rate condition during a high-speed collision. Has been working on multiphysics computation and phenomenological analysis of laser additive manufacturing, since 2019. Graduated with the accreditation “Habilitation à Diriger des Recherches" in process engineering, in december 2021 (dissertation entitled “Advancing the understanding on the optimization of emergent manufacturing methods based on a high-speed collision: cold spraying and magnetic pulse welding").

Convective heat transfer and CFD (Lecture, tutorial classes)

Design for environment (Lecture, tutorial classes)

Finite element method and computational analysis (Tutorial classes)

Design and dimensioning of structures (Lecture, tutorial classes)

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R.N. Raoelison graduated with a BS degree in Mechanical Technology in 2004, and a MS degree in Mechanics-Materials-Processes in 2006, jointly accredited by Université Pierre et Marie Curie (Paris 6) and Ecole Normale Supérieure de Cachan. He received his PhD degree in Engineering Science from Université de Bretagne Sud in 2010. He pursued a postgraduate research at Université de Technologie de Compiègne until 2013 (Laboratory Roberval) while working on the development of the magnetic pulse welding process to fulfill new requirements of metals joining capabilities under high speed collisions. Since September 2013, he has been a permanent associate professor at Université de Technologie de Belfort-Montbéliard and joined the laboratory LERMPS (Laboratoire d’Etudes et de Recherches sur les Matériaux, les Procédés et les Surfaces) that became ICB-PMDM-LERMPS in 2017. He has been working on the characterization, modelling and predictive computations of the innovative cold spray additive manufacturing process, including fluid/particle interactions, metallurgical transformations under high-strain rate conditions, and solid-state adhesion phenomena. He has been working on multiphysics computation and phenomenological analysis of laser additive manufacturing, since 2019. He is graduated with the accreditation "Habilitation à Diriger des Recherches" in process engineering, in december 2021 (dissertation entitled "Advancing the understanding on the optimization of emergent manufacturing methods based on a high-speed collision: cold spraying and magnetic pulse welding").
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Graduated with a BS degree in Mechanical Technology in 2004, and a MS degree in Mechanics-Materials-Processes in 2006, jointly accredited by Université Pierre et Marie Curie (Paris 6) and Ecole Normale Supérieure de Cachan. Graduated with a PhD degree of Engineering Science in 2010 and pursued a postgraduate research for the development of the magnetic pulse welding process. Is a « Maître de conférences » (permanent associate professor) at Université de Technologie de Belfort-Montbéliard (Laboratoire d’Etudes et de Recherches sur les Matériaux, les Procédés et les Surfaces which became ICB-PMDM-LERMPS in 2017). Has been working on the development of the cold spray additive manufacturing process, including characterization, modelling and predictive computations. Pursues collaborative works on the metallurgical transformations under high-strain rate condition during a high-speed collision. Has been working on multiphysics computation and phenomenological analysis of laser additive manufacturing, since 2019. Graduated with the accreditation "Habilitation à Diriger des Recherches" in process engineering, in december 2021 (dissertation entitled "Advancing the understanding on the optimization of emergent manufacturing methods based on a high-speed collision: cold spraying and magnetic pulse welding").

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https://scholar.google.com/citations?user=LqZiZEgAAAAJ&hl=fr

https://orcid.org/0000-0002-7332-938X

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Convective heat transfer and CFD (Lecture, tutorial classes)

Design for environment (Lecture, tutorial classes)

Finite element method and computational analysis (Tutorial classes)

Design and dimensioning of structures (Lecture, tutorial classes)

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