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Tailoring the Hybrid Magnetron Sputtering Process (HiPIMS and dcMS) to Manufacture Ceramic Multilayers: Powering Conditions, Target Materials, and Base Layers

The mechanical and wear behavior of CrN/CrAlN multilayers were improved by tailoring the experimental conditions of a hybrid magnetron sputtering process based on a high-power impulse (HiPIMS) and two direct current magnetron sputtering (dcMS) power supplies. To this end, the influence of the base l...

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Autores principales: de Castilho, Bruno César Noronha Marques, de Sousa Mazuco, Felipe, Rodrigues, Alisson Mendes, Avila, Pedro Renato Tavares, Apolinario, Raira Chefer, Daum, Philipp, da Costa, Fabiana Pereira, Menezes, Romualdo Rodrigues, de Araújo Neves, Gelmires, Greiner, Christian, Pinto, Haroldo Cavalcanti
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9321003/
https://www.ncbi.nlm.nih.gov/pubmed/35889689
http://dx.doi.org/10.3390/nano12142465
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author de Castilho, Bruno César Noronha Marques
de Sousa Mazuco, Felipe
Rodrigues, Alisson Mendes
Avila, Pedro Renato Tavares
Apolinario, Raira Chefer
Daum, Philipp
da Costa, Fabiana Pereira
Menezes, Romualdo Rodrigues
de Araújo Neves, Gelmires
Greiner, Christian
Pinto, Haroldo Cavalcanti
author_facet de Castilho, Bruno César Noronha Marques
de Sousa Mazuco, Felipe
Rodrigues, Alisson Mendes
Avila, Pedro Renato Tavares
Apolinario, Raira Chefer
Daum, Philipp
da Costa, Fabiana Pereira
Menezes, Romualdo Rodrigues
de Araújo Neves, Gelmires
Greiner, Christian
Pinto, Haroldo Cavalcanti
author_sort de Castilho, Bruno César Noronha Marques
collection PubMed
description The mechanical and wear behavior of CrN/CrAlN multilayers were improved by tailoring the experimental conditions of a hybrid magnetron sputtering process based on a high-power impulse (HiPIMS) and two direct current magnetron sputtering (dcMS) power supplies. To this end, the influence of the base layer and of the combination of Cr and CrAl targets, which were switched to the dcMS and HiPIMS power supplies in different configurations, were investigated with respect to the growth of ceramic CrN/CrAlN multilayers onto commercial gas-nitrided diesel piston rings. The microstructure, grain morphology, and mechanical properties were evaluated by field emission scanning electron microscopy (FE-SEM), atomic force microscopy (AFM), X-ray diffraction (XRD), and instrumented nanoindentation. Bench wear tests simulating the operation of a combustion engine were conducted against a gray cast iron cylinder liner under reciprocating conditions using 0W20 oil as a lubricating agent enriched with Al(2)O(3) particles. The results revealed a significant increase in hardness, resistance to plastic strain, and wear resistance when two CrAl targets were switched to a HiPIMS and a dcMS power supply, and a Cr target was powered by another dcMS power supply. The compressive coating stresses were slightly reduced due to the soft Cr base layer that enabled stress relief within the multilayer. The proposed concept of hybrid magnetron sputtering outperformed the commercial PVD coatings of CrN for diesel piston rings manufactured by cathodic arc evaporation.
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spelling pubmed-93210032022-07-27 Tailoring the Hybrid Magnetron Sputtering Process (HiPIMS and dcMS) to Manufacture Ceramic Multilayers: Powering Conditions, Target Materials, and Base Layers de Castilho, Bruno César Noronha Marques de Sousa Mazuco, Felipe Rodrigues, Alisson Mendes Avila, Pedro Renato Tavares Apolinario, Raira Chefer Daum, Philipp da Costa, Fabiana Pereira Menezes, Romualdo Rodrigues de Araújo Neves, Gelmires Greiner, Christian Pinto, Haroldo Cavalcanti Nanomaterials (Basel) Article The mechanical and wear behavior of CrN/CrAlN multilayers were improved by tailoring the experimental conditions of a hybrid magnetron sputtering process based on a high-power impulse (HiPIMS) and two direct current magnetron sputtering (dcMS) power supplies. To this end, the influence of the base layer and of the combination of Cr and CrAl targets, which were switched to the dcMS and HiPIMS power supplies in different configurations, were investigated with respect to the growth of ceramic CrN/CrAlN multilayers onto commercial gas-nitrided diesel piston rings. The microstructure, grain morphology, and mechanical properties were evaluated by field emission scanning electron microscopy (FE-SEM), atomic force microscopy (AFM), X-ray diffraction (XRD), and instrumented nanoindentation. Bench wear tests simulating the operation of a combustion engine were conducted against a gray cast iron cylinder liner under reciprocating conditions using 0W20 oil as a lubricating agent enriched with Al(2)O(3) particles. The results revealed a significant increase in hardness, resistance to plastic strain, and wear resistance when two CrAl targets were switched to a HiPIMS and a dcMS power supply, and a Cr target was powered by another dcMS power supply. The compressive coating stresses were slightly reduced due to the soft Cr base layer that enabled stress relief within the multilayer. The proposed concept of hybrid magnetron sputtering outperformed the commercial PVD coatings of CrN for diesel piston rings manufactured by cathodic arc evaporation. MDPI 2022-07-18 /pmc/articles/PMC9321003/ /pubmed/35889689 http://dx.doi.org/10.3390/nano12142465 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
de Castilho, Bruno César Noronha Marques
de Sousa Mazuco, Felipe
Rodrigues, Alisson Mendes
Avila, Pedro Renato Tavares
Apolinario, Raira Chefer
Daum, Philipp
da Costa, Fabiana Pereira
Menezes, Romualdo Rodrigues
de Araújo Neves, Gelmires
Greiner, Christian
Pinto, Haroldo Cavalcanti
Tailoring the Hybrid Magnetron Sputtering Process (HiPIMS and dcMS) to Manufacture Ceramic Multilayers: Powering Conditions, Target Materials, and Base Layers
title Tailoring the Hybrid Magnetron Sputtering Process (HiPIMS and dcMS) to Manufacture Ceramic Multilayers: Powering Conditions, Target Materials, and Base Layers
title_full Tailoring the Hybrid Magnetron Sputtering Process (HiPIMS and dcMS) to Manufacture Ceramic Multilayers: Powering Conditions, Target Materials, and Base Layers
title_fullStr Tailoring the Hybrid Magnetron Sputtering Process (HiPIMS and dcMS) to Manufacture Ceramic Multilayers: Powering Conditions, Target Materials, and Base Layers
title_full_unstemmed Tailoring the Hybrid Magnetron Sputtering Process (HiPIMS and dcMS) to Manufacture Ceramic Multilayers: Powering Conditions, Target Materials, and Base Layers
title_short Tailoring the Hybrid Magnetron Sputtering Process (HiPIMS and dcMS) to Manufacture Ceramic Multilayers: Powering Conditions, Target Materials, and Base Layers
title_sort tailoring the hybrid magnetron sputtering process (hipims and dcms) to manufacture ceramic multilayers: powering conditions, target materials, and base layers
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9321003/
https://www.ncbi.nlm.nih.gov/pubmed/35889689
http://dx.doi.org/10.3390/nano12142465
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