Individual information
Marwane DHERBÉCOURT | ||
Titre | Post-Doctorant | |
Equipe | Outils et Méthodes Numériques | |
Adresse | L2EP Bâtiment ESPRIT Avenue Henri Poincaré 59650 Villeneuve d'Ascq | |
Téléphone | +33 (0)3-XX-XX-XX-XX | |
marwane.dherbecourt@vallourec.com | ||
Observation / Thématique de recherche | Contrôle non destructif / Métallurgie / Mécanique / Electromagnétisme / Acoustique / Fabrication additive | |
Publications |
International Journals |
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[1] Study of the ability of MBN based NDT to distinguish high-performance martensitic steel grades Journal of Magnetism and Magnetic Materials (JMMM), Vol. 590, 01/2024, URL, Abstract DHERBÉCOURT Marwane, MESSAL Oualid, TANG Zuqi, BENABOU Abdelkader, QOZAM Hanae, LEFEVRE Fabien |
The interest of non-destructive testing (NDT) in steel material characterization is growing especially for quality and life cycle control. The Magnetic Barkhausen Noise (MBN) analysis shows an extreme sensitivity to different parameters: steel grade, grain size, microstructure, magnetic domains wall structure, residual stress, surface condition, etc. It is very difficult to distinguish the individual effect of each parameter on the steel MBN signature. This paper attempts to address this problematic by fixing most of these parameters and varying only one parameter of interest (either austenitizing or tempering temperature) to assess the ability of the MBN technique to dissociate the mechanical properties of different martensitic steel grades. The MBN technique presented herein has proven to be able to distinguish high-performance martensitic steel grades when applied according to the proposed experimental protocol. |
[2] Investigation of the correlation between NDT signatures of low carbon content martensitic steels and their tensile properties Journal of Magnetism and Magnetic Materials (JMMM), Vol. 563, pages. 169995, 12/2022, URL, Abstract DHERBÉCOURT Marwane, MESSAL Oualid, TANG Zuqi, BENABOU Abdelkader, LAZZARI Olivier |
Nondestructive testing (NDT) of industrial steel products is commonly used to detect defects such as cracks using among other methods, electromagnetic techniques. When properly calibrated, these NDT can be adapted to evaluate the mechanical properties of steels. It is especially of prime importance when rigorous quality control must be achieved for high performance steels. In this context, the proposed article deals with the investigation of the Magnetic Barkhausen Noise (MBN) to characterize the tensile properties of high mechanical performance martensitic steels. |
International Conferences and Symposiums |
[1] Study of the ability of MBN based NDT to distinguish high-performance martensitic steel grades 26th Soft Magnetic Materials Conference, Prague, Czech Republic, 09/2023 DHERBÉCOURT Marwane, MESSAL Oualid, TANG Zuqi, BENABOU Abdelkader, QOZAM Hanae, LEFEVRE Fabien |
[2] Effet de la préparation de surface sur les réponses CND électromagnétiques d'aciers martensitiques Conférence Matériaux 2022, 10/2022 DHERBÉCOURT Marwane, MESSAL Oualid, TANG Zuqi, BENABOU Abdelkader |
[3] Correlation between NDT signatures of steels and their tensile properties 25th Soft Magnetic Materials Conference, Grenoble, France, 05/2022, Abstract DHERBÉCOURT Marwane, MESSAL Oualid, TANG Zuqi, BENABOU Abdelkader, LAZZARI Olivier |
Electromagnetic non-destructive testing (NDT) of industrial steels is mostly employed to detect defects such as cracks or mechanical properties inhomogeneities. However, NDT can also be employed, when properly calibrated, to evaluate quantitatively these mechanical properties. It is especially of interest when rigorous quality testing must be achieved on finished steel-based products of which mechanical characteristics must be guaranteed. In that context, the proposed work deals with the evaluation of electromagnetic NDT to characterize the tensile properties of high mechanical performance steels. |
National Conferences and Symposiums |
[1] Caractérisation mécanique non destructive des aciers martensitiques par analyse du bruit Barkhausen SGE 2023, Lille, France, 07/2023, URL DHERBÉCOURT Marwane, MESSAL Oualid, TANG Zuqi, BENABOU Abdelkader, QOZAM Hanae, LEFEVRE Fabien, PETIT Sébastien |
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