Cargando…

Characterization of W–Cr Metal Matrix Composite Coatings Reinforced with WC Particles Produced on Low-Carbon Steel Using Laser Processing of Precoat

The paper presents the study results of laser processing of precoat applied on C30 steel. The precoat consisted of powder mixtures with a binder in the form of water glass. Tungsten powder, chromium, and tungsten carbide (WC) were used to produce the precoat. The laser processing was carried out usi...

Descripción completa

Detalles Bibliográficos
Autores principales: Bartkowski, Dariusz, Bartkowska, Aneta, Popielarski, Paweł, Hajkowski, Jakub, Piasecki, Adam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7700380/
https://www.ncbi.nlm.nih.gov/pubmed/33233406
http://dx.doi.org/10.3390/ma13225272
_version_ 1783616266267787264
author Bartkowski, Dariusz
Bartkowska, Aneta
Popielarski, Paweł
Hajkowski, Jakub
Piasecki, Adam
author_facet Bartkowski, Dariusz
Bartkowska, Aneta
Popielarski, Paweł
Hajkowski, Jakub
Piasecki, Adam
author_sort Bartkowski, Dariusz
collection PubMed
description The paper presents the study results of laser processing of precoat applied on C30 steel. The precoat consisted of powder mixtures with a binder in the form of water glass. Tungsten powder, chromium, and tungsten carbide (WC) were used to produce the precoat. The laser processing was carried out using a Yb:YAG disc laser with a rated power of 1 kW. Constant producing parameters (power of laser beam, 600 W; laser beam scanning rate, 400 mm/min) were applied. Chemical composition of the precoat was a variable parameter in coating production. A mixture consisting of 50% W and 50% Cr as a metal matrix was prepared. Subsequently, WC particles in weight ratios of 25%, 50%, and 75% were added to matrix. As a result, W–Cr metal matrix composite coatings reinforced with WC particles were formed. This study focused on investigation of microstructure, microhardness, phase, and chemical composition as well as corrosion and wear resistance, of the newly formed W–Cr/WC coatings. An instrumented nanoindentation test was also used in this study. As a result of laser beam action, the newly formed coatings had an interesting microstructure and good properties which were improved in comparison to substrate material. It is anticipated that the resulting coatings, depending on the treatment parameters (e.g., W–Cr/WC powder mixture) used, can be successfully applied to metal forming or foundry tools.
format Online
Article
Text
id pubmed-7700380
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-77003802020-11-30 Characterization of W–Cr Metal Matrix Composite Coatings Reinforced with WC Particles Produced on Low-Carbon Steel Using Laser Processing of Precoat Bartkowski, Dariusz Bartkowska, Aneta Popielarski, Paweł Hajkowski, Jakub Piasecki, Adam Materials (Basel) Article The paper presents the study results of laser processing of precoat applied on C30 steel. The precoat consisted of powder mixtures with a binder in the form of water glass. Tungsten powder, chromium, and tungsten carbide (WC) were used to produce the precoat. The laser processing was carried out using a Yb:YAG disc laser with a rated power of 1 kW. Constant producing parameters (power of laser beam, 600 W; laser beam scanning rate, 400 mm/min) were applied. Chemical composition of the precoat was a variable parameter in coating production. A mixture consisting of 50% W and 50% Cr as a metal matrix was prepared. Subsequently, WC particles in weight ratios of 25%, 50%, and 75% were added to matrix. As a result, W–Cr metal matrix composite coatings reinforced with WC particles were formed. This study focused on investigation of microstructure, microhardness, phase, and chemical composition as well as corrosion and wear resistance, of the newly formed W–Cr/WC coatings. An instrumented nanoindentation test was also used in this study. As a result of laser beam action, the newly formed coatings had an interesting microstructure and good properties which were improved in comparison to substrate material. It is anticipated that the resulting coatings, depending on the treatment parameters (e.g., W–Cr/WC powder mixture) used, can be successfully applied to metal forming or foundry tools. MDPI 2020-11-21 /pmc/articles/PMC7700380/ /pubmed/33233406 http://dx.doi.org/10.3390/ma13225272 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bartkowski, Dariusz
Bartkowska, Aneta
Popielarski, Paweł
Hajkowski, Jakub
Piasecki, Adam
Characterization of W–Cr Metal Matrix Composite Coatings Reinforced with WC Particles Produced on Low-Carbon Steel Using Laser Processing of Precoat
title Characterization of W–Cr Metal Matrix Composite Coatings Reinforced with WC Particles Produced on Low-Carbon Steel Using Laser Processing of Precoat
title_full Characterization of W–Cr Metal Matrix Composite Coatings Reinforced with WC Particles Produced on Low-Carbon Steel Using Laser Processing of Precoat
title_fullStr Characterization of W–Cr Metal Matrix Composite Coatings Reinforced with WC Particles Produced on Low-Carbon Steel Using Laser Processing of Precoat
title_full_unstemmed Characterization of W–Cr Metal Matrix Composite Coatings Reinforced with WC Particles Produced on Low-Carbon Steel Using Laser Processing of Precoat
title_short Characterization of W–Cr Metal Matrix Composite Coatings Reinforced with WC Particles Produced on Low-Carbon Steel Using Laser Processing of Precoat
title_sort characterization of w–cr metal matrix composite coatings reinforced with wc particles produced on low-carbon steel using laser processing of precoat
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7700380/
https://www.ncbi.nlm.nih.gov/pubmed/33233406
http://dx.doi.org/10.3390/ma13225272
work_keys_str_mv AT bartkowskidariusz characterizationofwcrmetalmatrixcompositecoatingsreinforcedwithwcparticlesproducedonlowcarbonsteelusinglaserprocessingofprecoat
AT bartkowskaaneta characterizationofwcrmetalmatrixcompositecoatingsreinforcedwithwcparticlesproducedonlowcarbonsteelusinglaserprocessingofprecoat
AT popielarskipaweł characterizationofwcrmetalmatrixcompositecoatingsreinforcedwithwcparticlesproducedonlowcarbonsteelusinglaserprocessingofprecoat
AT hajkowskijakub characterizationofwcrmetalmatrixcompositecoatingsreinforcedwithwcparticlesproducedonlowcarbonsteelusinglaserprocessingofprecoat
AT piaseckiadam characterizationofwcrmetalmatrixcompositecoatingsreinforcedwithwcparticlesproducedonlowcarbonsteelusinglaserprocessingofprecoat