Micro-Scale Abrasive Wear Testing of CrN Duplex PVD Coating on Pre-Nitrided Tool Steel

Specific wear rates were calculated from a series of micro-scale abrasive tests by means of the calotte-grinding method. The tested material was a CrN coating deposited by arc evaporation on ionnitrided AISI H13 steel. Characterizations included: phase analysis, chemical composition, metallography,...

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Autores principales: Mercado Solis, Rafael David, Mata Maldonado, José Guadalupe, Quiñones Salinas, Miguel Ángel, Rodriguez de Anda, Eduardo, Servín Castañeda, Rumualdo
Formato: Artículo
Lenguaje:inglés
Publicado: 2017
Acceso en línea:http://eprints.uanl.mx/17583/1/367.pdf
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author Mercado Solis, Rafael David
Mata Maldonado, José Guadalupe
Quiñones Salinas, Miguel Ángel
Rodriguez de Anda, Eduardo
Servín Castañeda, Rumualdo
author_facet Mercado Solis, Rafael David
Mata Maldonado, José Guadalupe
Quiñones Salinas, Miguel Ángel
Rodriguez de Anda, Eduardo
Servín Castañeda, Rumualdo
author_sort Mercado Solis, Rafael David
collection Repositorio Institucional
description Specific wear rates were calculated from a series of micro-scale abrasive tests by means of the calotte-grinding method. The tested material was a CrN coating deposited by arc evaporation on ionnitrided AISI H13 steel. Characterizations included: phase analysis, chemical composition, metallography, microhardness, micro-scratch resistance and nano-indentation hardness. On wear testing, the counter body was a 30 mm diameter steel ball rotating at a tangential speed of 9.42 m/min and normal load of 0.54 N. The abrasive was a mono-crystalline diamond micro abrasive paste, 1 micrometer grit. Wear volumes were calculated by measuring the wear scars at various test intervals. In non-perforating tests, Archard’s wear equation was directly employed for calculating coating wear rate as the slope of the linear least square data fit. In perforating tests, Allsopp’s method was employed for the simultaneous determination of coating and substrate wear rates, from the slope and intercept values of the linear least square data fit. Coating specific wear rate values obtained from both non-perforating and perforating tests were very consistent, with a relative difference within 6%. Relative errors in specific wear rate values were estimated to be of the order of 0.05 for the coating and 0.2 for the substrate. Keywords: Micro-scale abrasion, duplex surface treatment, specific wear rate, calotte grinding method, PVD coating, ion nitriding
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spelling eprints-175832020-06-02T20:57:54Z http://eprints.uanl.mx/17583/ Micro-Scale Abrasive Wear Testing of CrN Duplex PVD Coating on Pre-Nitrided Tool Steel Mercado Solis, Rafael David Mata Maldonado, José Guadalupe Quiñones Salinas, Miguel Ángel Rodriguez de Anda, Eduardo Servín Castañeda, Rumualdo Specific wear rates were calculated from a series of micro-scale abrasive tests by means of the calotte-grinding method. The tested material was a CrN coating deposited by arc evaporation on ionnitrided AISI H13 steel. Characterizations included: phase analysis, chemical composition, metallography, microhardness, micro-scratch resistance and nano-indentation hardness. On wear testing, the counter body was a 30 mm diameter steel ball rotating at a tangential speed of 9.42 m/min and normal load of 0.54 N. The abrasive was a mono-crystalline diamond micro abrasive paste, 1 micrometer grit. Wear volumes were calculated by measuring the wear scars at various test intervals. In non-perforating tests, Archard’s wear equation was directly employed for calculating coating wear rate as the slope of the linear least square data fit. In perforating tests, Allsopp’s method was employed for the simultaneous determination of coating and substrate wear rates, from the slope and intercept values of the linear least square data fit. Coating specific wear rate values obtained from both non-perforating and perforating tests were very consistent, with a relative difference within 6%. Relative errors in specific wear rate values were estimated to be of the order of 0.05 for the coating and 0.2 for the substrate. Keywords: Micro-scale abrasion, duplex surface treatment, specific wear rate, calotte grinding method, PVD coating, ion nitriding 2017-05-22 Article PeerReviewed text en cc_by_nc_nd http://eprints.uanl.mx/17583/1/367.pdf http://eprints.uanl.mx/17583/1.haspreviewThumbnailVersion/367.pdf Mercado Solis, Rafael David y Mata Maldonado, José Guadalupe y Quiñones Salinas, Miguel Ángel y Rodriguez de Anda, Eduardo y Servín Castañeda, Rumualdo (2017) Micro-Scale Abrasive Wear Testing of CrN Duplex PVD Coating on Pre-Nitrided Tool Steel. Materials Research, 20 (4). pp. 1092-1102. ISSN 1516-1439 http://doi.org/10.1590/1980-5373-MR-2016-0757 doi:10.1590/1980-5373-MR-2016-0757
spellingShingle Mercado Solis, Rafael David
Mata Maldonado, José Guadalupe
Quiñones Salinas, Miguel Ángel
Rodriguez de Anda, Eduardo
Servín Castañeda, Rumualdo
Micro-Scale Abrasive Wear Testing of CrN Duplex PVD Coating on Pre-Nitrided Tool Steel
thumbnail https://rediab.uanl.mx/themes/sandal5/images/online.png
title Micro-Scale Abrasive Wear Testing of CrN Duplex PVD Coating on Pre-Nitrided Tool Steel
title_full Micro-Scale Abrasive Wear Testing of CrN Duplex PVD Coating on Pre-Nitrided Tool Steel
title_fullStr Micro-Scale Abrasive Wear Testing of CrN Duplex PVD Coating on Pre-Nitrided Tool Steel
title_full_unstemmed Micro-Scale Abrasive Wear Testing of CrN Duplex PVD Coating on Pre-Nitrided Tool Steel
title_short Micro-Scale Abrasive Wear Testing of CrN Duplex PVD Coating on Pre-Nitrided Tool Steel
title_sort micro scale abrasive wear testing of crn duplex pvd coating on pre nitrided tool steel
url http://eprints.uanl.mx/17583/1/367.pdf
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