Title
Experimental analysis of the substrate influence in tool life in slot milling of stainless steelAuthor
xmlui.dri2xhtml.METS-1.0.item-contributorDepartment
Mecánica y Producción IndustrialVersion
Published versionDocument type
Conference ObjectLanguage
EnglishRights
© 2025 by the author(s)Access
Open accessPublisher’s version
https://doi.org/10.21741/9781644903599-192xmlui.dri2xhtml.METS-1.0.item-identifier
https://katalogoa.mondragon.edu/janium-bin/janium_login_opac.pl?find&ficha_no=189704Published at
Materials Research Proceedings Publisher
Association of American PublishersKeywords
Millingstainless steel
Wear
Tool Life
Subject (UNESCO Thesaurus)
Mechanical engineeringMachine tool
http://vocabularies.unesco.org/thesaurus/concept607
Abstract
Stainless steels are widely known as difficult-to-cut materials, especially under hard
machining conditions pushing the solid carbide end mill up to its breakage. This study examines
the influence o ... [+]
Stainless steels are widely known as difficult-to-cut materials, especially under hard
machining conditions pushing the solid carbide end mill up to its breakage. This study examines
the influence of different tool substrates in conventional slot milling of AISI 316L at demanding
cutting conditions to analyze the tool’s life. The employed tools are four-flute, 12 mm diameter
end mills with identical geometries and TiAlN coatings, differing only in substrate material. Mean
and peak cutting forces were recorded, with tool wear on the edge and flank face measured every
two minutes. As machining progressed, both cutting forces and tool wear increased until tool
failure, with tool life ranging from 8 to 15 minutes. The difference between the different substrates
has been quantified showing that tool life can be improved by 50% with the right substrate. Finally,
the composition of the substrate, as well as the microstructure, was analysed in a SEM being able
this way to link this input with the wear and the breakage that occurred during the machining tests. [-]
Funder
Gobierno VascoGobierno Vasco
Program
Hazitek 2023Hazitek 2024
Number
ZL-2023-00242ZL-2024-00651
Project
Herramientas de corte avanzadas con vida útil predecible, con empleo de una combinación de recubrimiento-sustrato optimizada, para utilizarse en la industria del mecanizado de acero inoxidable (TOPCAPI)emelo digital para mecanizado de componentes de precisión en el sector de aeronáutica (DIGIAERO)
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