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Microstructure Evolution and Mechanical Properties of AISI 430 Ferritic Stainless Steel Strengthened Through Laser Carburization

Article dans une revue avec comité de lecture
Auteur
WANG, Zhige
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
DIRRENBERGER, Justin
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
LAPOUGE, Pierre
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
DUBENT, Sébastien
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
JABIR, Hamza
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
MICHEL, Vincent
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]

URI
http://hdl.handle.net/10985/22375
DOI
10.1115/1.4055025
Date
2022-08-08
Journal
Journal of Engineering Materials and Technology

Résumé

Carburization assisted by laser processing is a promising method to strengthen metallic materials. Direct laser beam carburization is implemented for the first time on thin AISI 430 ferritic stainless steel (FSS) sheets with graphite coating under different conditions. Microstructural morphology, phase constitution, carbon content, microhardness, and tensile behavior are investigated to evaluate the laser carburization effect. The carburized zone presents different morphologies according to the linear energy density of the laser beam. The least carbon content is around 0.4 wt% in the carburized zone where austenite becomes the leading phase. Delta ferrite is found in a cellular carburized area, which resembles a duplex microstructure. The hardness of carburized zone has been at least increased by 130%, the yield strength and ultimate tensile strength of a fully carburized sample can be increased by respectively 90% and 85%. This hardening effect is driven by the precipitation of carbides formed during solidification offering pinning points for dislocations and grain boundaries. These improvements could be useful to modify locally ferritic stainless steel to meet industrial needs such as wear-resistant surfaces.

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Nom:
PIMM_JEMT_2022_WANG.pdf
Taille:
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Format:
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Fin d'embargo:
2023-02-15
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Documents liés

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  • Laser treatment of 430 ferritic stainless steel for enhanced mechanical properties 
    Article dans une revue avec comité de lecture
    WANG, Zhige; DIRRENBERGER, Justin; LAPOUGE, Pierre; DUBENT, Sébastien (Elsevier, 2022)
    Thin AISI 430 ferritic stainless steel sheets containing 18% Cr were hardened by continuous-wave laser beams under different conditions. A symmetric double laser treatment platform was developed to operate two lasers ...
  • Laser treatment of 430 ferritic stainless steel for enhanced mechanical properties 
    Article dans une revue avec comité de lecture
    WANG, Zhige; DIRRENBERGER, Justin; LAPOUGE, Pierre; DUBENT, Sébastien (Elsevier BV, 2022)
    Thin AISI 430 ferritic stainless steel sheets containing 18% Cr were hardened by continuous-wave laser beams under different conditions. A symmetric double laser treatment platform was developed to operate two lasers ...
  • Corrugation Reinforced Architectured Materials by Direct Laser Hardening: A Study of Geometrically Induced Work Hardening in Steel 
    Article dans une revue avec comité de lecture
    WANG, Zhige; BOUAZIZ, Olivier; ccDIRRENBERGER, Justin; ccLAPOUGE, Pierre (Wiley - VCH Gmbh, 2023-03)
    Improving the strength-to-ductility trade-off remains the prime driving force for the development of advanced high-strength steel. Traditionally research breakthroughs are focused on the microstructure and relative phase ...
  • Laser heat treatment of martensitic steel and dual-phase steel with high martensite content 
    Article dans une revue avec comité de lecture
    LAPOUGE, Pierre; DIRRENBERGER, Justin; COSTE, Frédéric; ccSCHNEIDER, Matthieu (Elsevier, 2019)
    Laser heat treatment of galvanised steels with a martensite content superior to 80% were performed on a 1 cm wide area over an extensive temperature range [620 K - 1350 K]. The material softening induced is studied through ...
  • Advances in pantographic structures: design, manufacturing, models, experiments and image analyses 
    Article dans une revue avec comité de lecture
    DELL’ISOLA, Francesco; SEPPECHER, Pierre; SPAGNUOLO, Mario; BARCHIESI, Emilio; HILD, François; LEKSZYCKI, Tomasz; GIORGIO, Ivan; PLACIDI, Luca; ANDREAUS, Ugo; CUOMO, Massimo; EUGSTER, Simon R.; PFAFF, Aron; HOSCHKE, Klaus; LANGKEMPER, Ralph; TURCO, Emilio; SARIKAYA, Rizacan; MISRA, Aviral; DE ANGELO, Michele; D’ANNIBALE, Francesco; BOUTERF, Amine; PINELLI, Xavier; MISRA, Anil; DESMORAT, Boris; PAWLIKOWSKI, Marek; DUPUY, Corinne; SCERRATO, Daria; PEYRE, Patrice; LAUDATO, Marco; MANZARI, Luca; GÖRANSSON, Peter; HESCH, Christian; HESCH, Sofia; FRANCIOSI, Patrick; DIRRENBERGER, Justin; MAURIN, Florian; VANGELATOS, Zacharias; GRIGOROPOULOS, Costas; MELISSINAKI, Vasileia; FARSARI, Maria; MULLER, Wolfgang; ABALI, Bilen Emek; LIEBOLD, Christian; GANZOSCH, Gregor; HARRISON, Philip; DROBNICKI, Rafał; IGUMNOV, Leonid; ALZAHRANI, Faris; HAYAT, Tasawar (Springer Verlag, 2019)
    In the last decade, the exotic properties of pantographic metamaterials have been investigated and different mathematical models (both discrete or continuous) have been introduced. In a previous publication, a large part ...

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