Skip navigation
  •  Inicio
  • UDC 
    • Cómo depositar
    • Políticas do RUC
    • FAQ
    • Dereitos de Autor
    • Máis información en INFOguías UDC
  • Percorrer 
    • Comunidades
    • Buscar por:
    • Data de publicación
    • Autor
    • Título
    • Materia
  • Axuda
    • español
    • Gallegan
    • English
  • Acceder
  •  Galego 
    • Español
    • Galego
    • English
  
Ver ítem 
  •   RUC
  • Escola Politécnica de Enxeñaría de Ferrol
  • Investigación (EPEF)
  • Ver ítem
  •   RUC
  • Escola Politécnica de Enxeñaría de Ferrol
  • Investigación (EPEF)
  • Ver ítem
JavaScript is disabled for your browser. Some features of this site may not work without it.

Improvement of Impact Toughness and Abrasion Resistance of a 3C-25Cr-0.5Mo Alloy Using a Design of Experiment Statistical Technique: Microstructural Correlations after Heat Treatments

Thumbnail
Ver/abrir
metals-11-00595-v2.pdf (7.396Mb)
Use este enlace para citar
http://hdl.handle.net/2183/27882
Atribución 4.0 Internacional
A non ser que se indique outra cousa, a licenza do ítem descríbese como Atribución 4.0 Internacional
Coleccións
  • Investigación (EPEF) [590]
Metadatos
Mostrar o rexistro completo do ítem
Título
Improvement of Impact Toughness and Abrasion Resistance of a 3C-25Cr-0.5Mo Alloy Using a Design of Experiment Statistical Technique: Microstructural Correlations after Heat Treatments
Autor(es)
González-Pociño, Alejandro
Asensio-Lozano, Juan
Álvarez-Antolín, J. F.
García-Diez, Ana
Data
2021
Cita bibliográfica
González-Pociño, A.; Asensio-Lozano, J.; Álvarez-Antolín, F.; García-Diez, A. Improvement of Impact Toughness and Abrasion Resistance of a 3C-25Cr-0.5Mo Alloy Using a Design of Experiment Statistical Technique: Microstructural Correlations after Heat Treatments. Metals 2021, 11, 595. https://doi.org/10.3390/met11040595
Resumo
[Abstract] Hypoeutectic high chromium white cast irons are commonly used in the mining and cement industries, where high resistance to abrasive wear is demanded. Through the application of a Design of Experiment technique (DoE), different factors related to thermal industrial treatments are analysed with regard to resistance to abrasive wear and impact response. Abrasion tests were carried out in accordance with the ASTM G065-16 standard. The provisional results show that to increase wear resistance, high destabilisation temperatures (1050 ◦C) followed by slow cooling to room temperature (RT) and subsequent tempering at 400 ◦C are most favourable. This is because these conditions are favourable to maintaining a certain tetragonality of the martensite after tempering and also, because of the presence of a high density of mixed carbides M7C3, through a secondary precipitation during cooling. Oil quenching and a high tempering temperature (550 ◦C) with long dwell times of 6 h were found to increase impact toughness. These conditions favour a lack of retained austenite. The presence of retained austenite was found unfavourable for both wear resistance and toughness, whereas tempering at 400 ◦C has been shown to be insufficient to transform martensite on tempering, which in turn seemed to increase the hardness of the matrix constituent.
Palabras chave
Hierro fundido
Metales - Desgaste
Desgaste (Mecánica)
Resistencia de los materiales
White cast irons with 25% Cr
Resistance to abrasive wear
Impact toughness
Microstructure correlation
Destabilisation of austenite
Secondary carbides
 
Versión do editor
https://doi.org/10.3390/met11040595
Dereitos
Atribución 4.0 Internacional
ISSN
2075-4701

Listar

Todo RUCComunidades e colecciónsPor data de publicaciónAutoresTítulosMateriasGrupo de InvestigaciónTitulaciónEsta colecciónPor data de publicaciónAutoresTítulosMateriasGrupo de InvestigaciónTitulación

A miña conta

AccederRexistro

Estatísticas

Ver Estatísticas de uso
Sherpa
OpenArchives
OAIster
Scholar Google
UNIVERSIDADE DA CORUÑA. Servizo de Biblioteca.    DSpace Software Copyright © 2002-2013 Duraspace - Suxestións