Electrochemicals corrosion tests of an AISI-SAE 4140 steel nitrided by post-discharge microwave plasma


Por: Medina-Flores A., Arganis C., Santiago P., Oseguera J.

Publicada: 1 ene 2004
Resumen:
AISI-SAE 4140 low alloy steel was nitrided in post-discharge plasma microwave conditions at 820 K for 15 min, using a laboratory reactor. The microstructure and composition of the nitrided layer were analyzed. The corrosion resistance of untreated and nitrided samples was evaluated in several corrosion electrochemical tests such as polarization resistance, Tafel, anodic polarization, cyclic polarization and electrochemical noise, in a chloride environment. The open circuit potential shifted to noble potential, the low corrosion rate obtained by resistance to polarization (RP) and Tafel clearly indicate that microwave post-discharge process is adequate for corrosion protection of AISI-SAE 4140 steel. The untreated and nitrided pieces were characterized by X-ray diffraction (XRD) to identify the crystalline phases, and by scanning electron microscopy (SEM) to examine the morphology and thickness of the nitride layer. © 2004 Elsevier B.V. All rights reserved.

Filiaciones:
Medina-Flores A.:
 Univ. Michoacana San Nicolas Hidalgo, Instituto de Invest. Metalurgicas, Edificio U., Michoacán 58040 México, Mexico

 Inst. Nacional de Invest. Nucleares, Municipio de Salazar, km. 36.5 Carretera Fed Mexico-Toluca, 52045 Estado de México, Mexico

 Inst. Tecn./Estud. Sup. de Monterrey, Carretera al Lago Guadalupe km 3.5, 52926 Estado de México, Mexico

Arganis C.:
 Inst. Nacional de Invest. Nucleares, Municipio de Salazar, km. 36.5 Carretera Fed Mexico-Toluca, 52045 Estado de México, Mexico

Santiago P.:
 Inst. Nacional de Invest. Nucleares, Municipio de Salazar, km. 36.5 Carretera Fed Mexico-Toluca, 52045 Estado de México, Mexico

Oseguera J.:
 Inst. Tecn./Estud. Sup. de Monterrey, Carretera al Lago Guadalupe km 3.5, 52926 Estado de México, Mexico
ISSN: 02578972
Editorial
Elsevier Science S.A., 1001 Lausanne, Switzerland, PO BOX 564, 1001 LAUSANNE, SWITZERLAND, Suiza
Tipo de documento: Article
Volumen: 188-189 Número: 1-3
Páginas: 140-145
WOS Id: 000225245800022

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