dor_id: 4107644

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856.4.0.u: https://rmf.smf.mx/ojs/rmf/article/view/4183/4150

100.1.#.a: Caballero Gómez, J.; Caicedo, J. C.; Aperador.

524.#.#.a: Caballero Gómez, J., et al. (2016). Tribological performance evaluation of coated steels with TiNbCN subjected to tribo-chemical wear in Ringer's solution. Revista Mexicana de Física; Vol 62, No 2 Mar-Apr: 113-0. Recuperado de https://repositorio.unam.mx/contenidos/4107644

245.1.0.a: Tribological performance evaluation of coated steels with TiNbCN subjected to tribo-chemical wear in Ringer's solution

502.#.#.c: Universidad Nacional Autónoma de México

561.1.#.a: Facultad de Ciencias, UNAM

264.#.0.c: 2016

264.#.1.c: 2016-01-01

653.#.#.a: Micro-abrasion; coating; AISI 316 LVM; wear; corrosion

506.1.#.a: La titularidad de los derechos patrimoniales de esta obra pertenece a las instituciones editoras. Su uso se rige por una licencia Creative Commons BY-NC-ND 4.0 Internacional, https://creativecommons.org/licenses/by-nc-nd/4.0/legalcode.es, fecha de asignación de la licencia 2016-01-01, para un uso diferente consultar al responsable jurídico del repositorio por medio de rmf@ciencias.unam.mx

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001.#.#.#: oai:ojs.rmf.smf.mx:article/4183

041.#.7.h: eng

520.3.#.a: With the aim of generating solutions against the deterioration of the joint prostheses, it was studied the tribo-corrosive behavior of titanium niobium carbonitride (TiNbCN) deposited on stainless steel AISI 316 LVM using the technique of magnetron sputtering physical vapor deposition. The tests were performed in a balanced saline solution (Ringer's solution) which represents the characteristics of the body fluids, using an equi±ent where the micro-abrasive wear is generated by the contact of micro particles in the system; the micro-abrasion-corrosion mechanism is described by means of the incorporation of an electrochemical cell consisting of three electrodes. Both the substrate and the coating, were subjected to micro-abrasive wear simultaneously with the electrochemical tests of Tafel polarization curves and electrochemical impedance spectroscopy (EIS); subsequently of the tests, the specimens were analyzed by optical microscopy and scanning electron microscopy characterizing the surface morphology. It was observed that the coating presents an increase in its corrosion and wear resistance with the presence of a simulated biological fluid.

773.1.#.t: Revista Mexicana de Física; Vol 62, No 2 Mar-Apr (2016): 113-0

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handle: 33d676f4fcbdb1eb

harvesting_date: 2020-09-23 00:00:00.0

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last_modified: 2020-11-27 00:00:00

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Artículo

Tribological performance evaluation of coated steels with TiNbCN subjected to tribo-chemical wear in Ringer's solution

Caballero Gómez, J.; Caicedo, J. C.; Aperador.

Facultad de Ciencias, UNAM, publicado en Revista Mexicana de Física, y cosechado de Revistas UNAM

Licencia de uso

Procedencia del contenido

Entidad o dependencia
Facultad de Ciencias, UNAM
Revista
Repositorio
Contacto
Revistas UNAM. Dirección General de Publicaciones y Fomento Editorial, UNAM en revistas@unam.mx

Cita

Caballero Gómez, J., et al. (2016). Tribological performance evaluation of coated steels with TiNbCN subjected to tribo-chemical wear in Ringer's solution. Revista Mexicana de Física; Vol 62, No 2 Mar-Apr: 113-0. Recuperado de https://repositorio.unam.mx/contenidos/4107644

Descripción del recurso

Autor(es)
Caballero Gómez, J.; Caicedo, J. C.; Aperador.
Tipo
Artículo de Investigación
Área del conocimiento
Físico Matemáticas y Ciencias de la Tierra
Título
Tribological performance evaluation of coated steels with TiNbCN subjected to tribo-chemical wear in Ringer's solution
Fecha
2016-01-01
Resumen
With the aim of generating solutions against the deterioration of the joint prostheses, it was studied the tribo-corrosive behavior of titanium niobium carbonitride (TiNbCN) deposited on stainless steel AISI 316 LVM using the technique of magnetron sputtering physical vapor deposition. The tests were performed in a balanced saline solution (Ringer's solution) which represents the characteristics of the body fluids, using an equi±ent where the micro-abrasive wear is generated by the contact of micro particles in the system; the micro-abrasion-corrosion mechanism is described by means of the incorporation of an electrochemical cell consisting of three electrodes. Both the substrate and the coating, were subjected to micro-abrasive wear simultaneously with the electrochemical tests of Tafel polarization curves and electrochemical impedance spectroscopy (EIS); subsequently of the tests, the specimens were analyzed by optical microscopy and scanning electron microscopy characterizing the surface morphology. It was observed that the coating presents an increase in its corrosion and wear resistance with the presence of a simulated biological fluid.
Tema
Micro-abrasion; coating; AISI 316 LVM; wear; corrosion
Idioma
eng
ISSN
2683-2224 (digital); 0035-001X (impresa)

Enlaces