• español
    • English
UFPS

Repositorio Digital

  • Directrices
    • Autorización publicación
    • Carta a directores de programa
    • Carta a graduados
    • Constancia de entrega de documento en Biblioteca
  • español 
    • español
    • English
  • Acceder
logo acreditacion
  • Colecciones Comunidades
  • Autor Autores
  • Título Títulos
  • Fecha Fechas
  • Materias Materias
Ver ítem 
  •   Repositorio Digital UFPS
  • B. Investigación
  • BA. Grupos de Investigación
  • Tecnología Cerámica – GITEC
  • Ver ítem
  •   Repositorio Digital UFPS
  • B. Investigación
  • BA. Grupos de Investigación
  • Tecnología Cerámica – GITEC
  • Ver ítem
JavaScript is disabled for your browser. Some features of this site may not work without it.

Cambiar vista

Listar

Todo DSpaceComunidades & ColeccionesPor fecha de publicaciónAutoresTítulosMateriasTipo de MaterialEsta colecciónPor fecha de publicaciónAutoresTítulosMateriasTipo de Material

Mi cuenta

AccederRegistro

Estadísticas

Ver Estadísticas de uso

Evaluation of mechanical wear in bismuth-titanium coatings synthesized by the sol-gel method and applied on 316 L stainless steel substrates


Aperador Chaparro, William Arnulfo
Bautista-Ruiz, Jorge cc
Garzon, P

Artículo de revista


2019-11

Journal of Physics: Conference Series

Inglaterra

Steels are part of the basic equipment of most of the industrial framework, including very diverse sectors such as the oil, chemical and automotive industries. However, steels are susceptible to wear phenomena limiting their life in use and losing efficiency in the applications to which it is intended leading to a technological and economic problem. In mechanical systems, lubrication requires effective strategies to ensure that the increase in critical contact voltages does not cause material failure during operation. Although there are different ways to avoid the wear of steel parts, the development of material technology has allowed the manufacture of new alloys with anti-wear properties. Replacing steels with other higher cost materials is very unfeasible. For this reason, one of the alternatives of greatest interest to reduce wear is based on the surface modification of the metal through the use of coatings. The sol-gel method allows the manufacture of coatings on steel parts to reduce wear. The objective of this work was to manufacture, using sol-gel, bismuth-titanium coatings on 316 L stainless steel substrates in order to analyze the mechanical wear of the system and evaluate its wear rates and friction coefficients. The study focused on determining the effect of precursor concentration on performance as a film to reduce wear. It was determined that the friction coefficients show significant variations due to adhesive wear processes. With respect to wear, it is concluded that the coatings offer substrate protection by indicating wear rates lower than those reported for 316 L stainless steel substrates without coating.

http://repositorio.ufps.edu.co/handle/ufps/534

https://iopscience.iop.org/article/10.1088/1742-6596/1386/1/012090/meta

  • Productividad y Competitividad – GIPYC [30]
  • Tecnología Cerámica – GITEC [93]

Descripción: Evaluation of mechanical wear in bismuth-titanium coatings synthesized by the sol-gel method and applied on 316 L stainless steel substrates.pdf
Título: Evaluation of mechanical wear in bismuth-titanium coatings synthesized by the sol-gel method and applied on 316 L stainless steel substrates.pdf
Tamaño: 1.237Mb

Unicordoba LogoPDFOpen AccessFLIPLEER EN FLIP

Mostrar el registro completo del ítem

Cita

Cómo citar

Cómo citar

Miniatura

Thumbnail

Gestores Bibliograficos

Exportar a Bibtex

Exportar a RIS

Exportar a Excel

Buscar en google Schoolar

untranslated

Código QR

Envíos recientes

    No hay artículos recientes
Image
Image
Image
Image
Image
Image
Image
‹›
Logo Pie de Página UFPS

Portales Institucionales

  • Divisist
  • Pagos de Egresados y Externos
  • Piagev
  • PDQRS
  • DatarSoft
  • Sistema de Nómina
  • DISERACA

Enlaces de Interés

  • Plan Anticorrupción
  • Proceso de selección
  • Contratación
  • Proceso democrático
  • Derechos pecuniarios
  • Correo Electrónico Institucional
  • Consultorio Jurídico

Contactos

Avenida Gran Colombia No. 12E-96 Barrio Colsag,
San José de Cúcuta - Colombia
Teléfono (057)(7) 5776655

Solicitudes y correspondencia
Unidad de Gestión Documental
ugad@ufps.edu.co

Uso único y exclusivo para notificaciones judiciales:
notificacionesjudiciales@ufps.edu.co

-->
Sistema DSPACE - Metabiblioteca | Metabiblioteca