Electrodeposition of Co-B/SiC Composite Coatings: Characterization and Evaluation of Wear Volume and Hardness

In this research work, Co-B/SiC composite coatings were synthesized by electrochemical deposition from colloidal suspensions with different content of SiC. The Co-B/SiC films obtained were heat treatment at 350 °C. The composition, morphology, and structure of the Co-B/SiC composite coating...

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Main Authors: A. Villa-Mondragón, A. Martínez-Hernández, F. Manríquez, Y. Meas, J. J. Pérez-Bueno, Francisco J. Rodríguez-Valadez, J.C. Ballesteros, J. Morales-Hernández, Alia Méndez-Albores, G. Trejo
Format: Article
Language:English
Published: MDPI AG 2019-04-01
Series:Coatings
Subjects:
Online Access:https://www.mdpi.com/2079-6412/9/4/279
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spelling doaj-2f3f44fb7a614ae08758960f2e5866742020-11-25T01:27:08ZengMDPI AGCoatings2079-64122019-04-019427910.3390/coatings9040279coatings9040279Electrodeposition of Co-B/SiC Composite Coatings: Characterization and Evaluation of Wear Volume and HardnessA. Villa-Mondragón0A. Martínez-Hernández1F. Manríquez2Y. Meas3J. J. Pérez-Bueno4Francisco J. Rodríguez-Valadez5J.C. Ballesteros6J. Morales-Hernández7Alia Méndez-Albores8G. Trejo9Centro de Investigación y Desarrollo Tecnológico en Electroquímica (CIDETEQ), Parque Tecnológico Sanfandila, Pedro Escobedo C.P. 76703, Querétaro, MexicoCentro de Investigación y Desarrollo Tecnológico en Electroquímica (CIDETEQ), Parque Tecnológico Sanfandila, Pedro Escobedo C.P. 76703, Querétaro, MexicoCentro de Investigación y Desarrollo Tecnológico en Electroquímica (CIDETEQ), Parque Tecnológico Sanfandila, Pedro Escobedo C.P. 76703, Querétaro, MexicoCentro de Investigación y Desarrollo Tecnológico en Electroquímica (CIDETEQ), Parque Tecnológico Sanfandila, Pedro Escobedo C.P. 76703, Querétaro, MexicoCentro de Investigación y Desarrollo Tecnológico en Electroquímica (CIDETEQ), Parque Tecnológico Sanfandila, Pedro Escobedo C.P. 76703, Querétaro, MexicoCentro de Investigación y Desarrollo Tecnológico en Electroquímica (CIDETEQ), Parque Tecnológico Sanfandila, Pedro Escobedo C.P. 76703, Querétaro, MexicoUniversidad Politécnica de Lázaro Cárdenas (UPLC), Laboratorio de Sustentabilidad Energética, Avenida Galeanas S/N, Colonia Las 600 Casas, Lázaro Cárdenas C.P. 60950, Michoacán, MexicoCentro de Investigación y Desarrollo Tecnológico en Electroquímica (CIDETEQ), Parque Tecnológico Sanfandila, Pedro Escobedo C.P. 76703, Querétaro, MexicoScience Institute-ICUAP Benemérita Universidad Autónoma de Puebla, Ciudad Universitaria Puebla, Puebla 72530, MexicoCentro de Investigación y Desarrollo Tecnológico en Electroquímica (CIDETEQ), Parque Tecnológico Sanfandila, Pedro Escobedo C.P. 76703, Querétaro, MexicoIn this research work, Co-B/SiC composite coatings were synthesized by electrochemical deposition from colloidal suspensions with different content of SiC. The Co-B/SiC films obtained were heat treatment at 350 &#176;C. The composition, morphology, and structure of the Co-B/SiC composite coatings were analyzed using glow discharge spectrometry (GDS), scanning electron microscopy (SEM) coupled with energy-dispersive spectroscopy (EDS), and X-ray diffraction (XRD). Hardness and tribological properties were also studied. The results showed that an increase in the SiC concentration in the colloidal suspensions resulted in both an increase in the SiC content and a decrease in the B content in the obtained Co-B/SiC coatings. The Co-B/SiC coatings were adherent, glossy, and soft, and exhibited a homogeneous composition in all thicknesses. Besides, an increase in the SiC particle content of the Co-B/SiC composite coating from 0 to 2.56 at.% SiC reduced the hardness of the film from 680 to 360 HV and decreased the wear volume values from 1180 to 23 &#956;m<sup>3</sup> N<sup>&#8722;1</sup> m<sup>&#8722;1</sup>, respectively (that is, the wear resistance increased). Moreover, when the Co-B/SiC coatings with SiC content ranging from 0 to 2.56 at.% SiC were subjected to a heat treatment process, the obtained coating hardness values were in the range of 1200 to 1500 HV, and the wear volume values were in the range of 382 to 19 &#956;m<sup>3</sup> N<sup>&#8722;1</sup> m<sup>&#8722;1</sup>.https://www.mdpi.com/2079-6412/9/4/279Co-B/SiC composite coatingselectrodepositionhard coatingswear volume
collection DOAJ
language English
format Article
sources DOAJ
author A. Villa-Mondragón
A. Martínez-Hernández
F. Manríquez
Y. Meas
J. J. Pérez-Bueno
Francisco J. Rodríguez-Valadez
J.C. Ballesteros
J. Morales-Hernández
Alia Méndez-Albores
G. Trejo
spellingShingle A. Villa-Mondragón
A. Martínez-Hernández
F. Manríquez
Y. Meas
J. J. Pérez-Bueno
Francisco J. Rodríguez-Valadez
J.C. Ballesteros
J. Morales-Hernández
Alia Méndez-Albores
G. Trejo
Electrodeposition of Co-B/SiC Composite Coatings: Characterization and Evaluation of Wear Volume and Hardness
Coatings
Co-B/SiC composite coatings
electrodeposition
hard coatings
wear volume
author_facet A. Villa-Mondragón
A. Martínez-Hernández
F. Manríquez
Y. Meas
J. J. Pérez-Bueno
Francisco J. Rodríguez-Valadez
J.C. Ballesteros
J. Morales-Hernández
Alia Méndez-Albores
G. Trejo
author_sort A. Villa-Mondragón
title Electrodeposition of Co-B/SiC Composite Coatings: Characterization and Evaluation of Wear Volume and Hardness
title_short Electrodeposition of Co-B/SiC Composite Coatings: Characterization and Evaluation of Wear Volume and Hardness
title_full Electrodeposition of Co-B/SiC Composite Coatings: Characterization and Evaluation of Wear Volume and Hardness
title_fullStr Electrodeposition of Co-B/SiC Composite Coatings: Characterization and Evaluation of Wear Volume and Hardness
title_full_unstemmed Electrodeposition of Co-B/SiC Composite Coatings: Characterization and Evaluation of Wear Volume and Hardness
title_sort electrodeposition of co-b/sic composite coatings: characterization and evaluation of wear volume and hardness
publisher MDPI AG
series Coatings
issn 2079-6412
publishDate 2019-04-01
description In this research work, Co-B/SiC composite coatings were synthesized by electrochemical deposition from colloidal suspensions with different content of SiC. The Co-B/SiC films obtained were heat treatment at 350 &#176;C. The composition, morphology, and structure of the Co-B/SiC composite coatings were analyzed using glow discharge spectrometry (GDS), scanning electron microscopy (SEM) coupled with energy-dispersive spectroscopy (EDS), and X-ray diffraction (XRD). Hardness and tribological properties were also studied. The results showed that an increase in the SiC concentration in the colloidal suspensions resulted in both an increase in the SiC content and a decrease in the B content in the obtained Co-B/SiC coatings. The Co-B/SiC coatings were adherent, glossy, and soft, and exhibited a homogeneous composition in all thicknesses. Besides, an increase in the SiC particle content of the Co-B/SiC composite coating from 0 to 2.56 at.% SiC reduced the hardness of the film from 680 to 360 HV and decreased the wear volume values from 1180 to 23 &#956;m<sup>3</sup> N<sup>&#8722;1</sup> m<sup>&#8722;1</sup>, respectively (that is, the wear resistance increased). Moreover, when the Co-B/SiC coatings with SiC content ranging from 0 to 2.56 at.% SiC were subjected to a heat treatment process, the obtained coating hardness values were in the range of 1200 to 1500 HV, and the wear volume values were in the range of 382 to 19 &#956;m<sup>3</sup> N<sup>&#8722;1</sup> m<sup>&#8722;1</sup>.
topic Co-B/SiC composite coatings
electrodeposition
hard coatings
wear volume
url https://www.mdpi.com/2079-6412/9/4/279
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