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Feasibility Analysis of Machining Cobalt-Chromium Alloy (Stellite-6) Using TiN Coated Binary Inserts

The objective of the study was to check the feasibility of machining Stellite 6, a cobalt–chromium superalloy, using TiN-coated carbide inserts in an end milling operation. The inserts were coated using the magnetron sputtering process. The sputtering power and gas flow rate were considered as the v...

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Autores principales: Shah, Saurabh, Joshi, Anand, Chauhan, Kamlesh, Oza, Ankit, Prakash, Chander, Campilho, Raul Duarte Salgueiral Gomes, Kumar, Sandeep
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9609657/
https://www.ncbi.nlm.nih.gov/pubmed/36295359
http://dx.doi.org/10.3390/ma15207294
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author Shah, Saurabh
Joshi, Anand
Chauhan, Kamlesh
Oza, Ankit
Prakash, Chander
Campilho, Raul Duarte Salgueiral Gomes
Kumar, Sandeep
author_facet Shah, Saurabh
Joshi, Anand
Chauhan, Kamlesh
Oza, Ankit
Prakash, Chander
Campilho, Raul Duarte Salgueiral Gomes
Kumar, Sandeep
author_sort Shah, Saurabh
collection PubMed
description The objective of the study was to check the feasibility of machining Stellite 6, a cobalt–chromium superalloy, using TiN-coated carbide inserts in an end milling operation. The inserts were coated using the magnetron sputtering process. The sputtering power and gas flow rate were considered as the variables during the coating process. The performance of the coated binary carbide insert was checked during the end milling of Stellite 6 (~45 HRC) through an experiment with a Taguchi design. Experimental runs based on an orthogonal array were executed for each insert type to check the feasibility of machining this cobalt-based alloy. Adequate precision and the optimum parametric conditions were determined and are reported in this study. Analysis of variance (ANOVA) with a two-factor interaction model was also undertaken to forecast the key elements influencing surface roughness. Based on the ANOVA model, the depth of the cut, combined with the insert type, was the factor that had the greatest influence on surface roughness, followed by the cutting feed, whereas the cutting velocity had the least significance based on the tests. Moreover, the regression analysis demonstrated that the created model can be used to accurately forecast surface roughness in end milling of Stellite 6 with confidence intervals of 95%.
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spelling pubmed-96096572022-10-28 Feasibility Analysis of Machining Cobalt-Chromium Alloy (Stellite-6) Using TiN Coated Binary Inserts Shah, Saurabh Joshi, Anand Chauhan, Kamlesh Oza, Ankit Prakash, Chander Campilho, Raul Duarte Salgueiral Gomes Kumar, Sandeep Materials (Basel) Article The objective of the study was to check the feasibility of machining Stellite 6, a cobalt–chromium superalloy, using TiN-coated carbide inserts in an end milling operation. The inserts were coated using the magnetron sputtering process. The sputtering power and gas flow rate were considered as the variables during the coating process. The performance of the coated binary carbide insert was checked during the end milling of Stellite 6 (~45 HRC) through an experiment with a Taguchi design. Experimental runs based on an orthogonal array were executed for each insert type to check the feasibility of machining this cobalt-based alloy. Adequate precision and the optimum parametric conditions were determined and are reported in this study. Analysis of variance (ANOVA) with a two-factor interaction model was also undertaken to forecast the key elements influencing surface roughness. Based on the ANOVA model, the depth of the cut, combined with the insert type, was the factor that had the greatest influence on surface roughness, followed by the cutting feed, whereas the cutting velocity had the least significance based on the tests. Moreover, the regression analysis demonstrated that the created model can be used to accurately forecast surface roughness in end milling of Stellite 6 with confidence intervals of 95%. MDPI 2022-10-18 /pmc/articles/PMC9609657/ /pubmed/36295359 http://dx.doi.org/10.3390/ma15207294 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
Shah, Saurabh
Joshi, Anand
Chauhan, Kamlesh
Oza, Ankit
Prakash, Chander
Campilho, Raul Duarte Salgueiral Gomes
Kumar, Sandeep
Feasibility Analysis of Machining Cobalt-Chromium Alloy (Stellite-6) Using TiN Coated Binary Inserts
title Feasibility Analysis of Machining Cobalt-Chromium Alloy (Stellite-6) Using TiN Coated Binary Inserts
title_full Feasibility Analysis of Machining Cobalt-Chromium Alloy (Stellite-6) Using TiN Coated Binary Inserts
title_fullStr Feasibility Analysis of Machining Cobalt-Chromium Alloy (Stellite-6) Using TiN Coated Binary Inserts
title_full_unstemmed Feasibility Analysis of Machining Cobalt-Chromium Alloy (Stellite-6) Using TiN Coated Binary Inserts
title_short Feasibility Analysis of Machining Cobalt-Chromium Alloy (Stellite-6) Using TiN Coated Binary Inserts
title_sort feasibility analysis of machining cobalt-chromium alloy (stellite-6) using tin coated binary inserts
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9609657/
https://www.ncbi.nlm.nih.gov/pubmed/36295359
http://dx.doi.org/10.3390/ma15207294
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