Model of the Ultimate Stress State of the Coated Tool Cutter Material

The article proposes a model of the ultimate stress state of the material of the coated tool cutter. It is found that with an increase in the fracture toughness of a tool in connection with the material ductility the machining accuracy deteriorates due to arising elastic-plastic vibrations of the to...

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Main Authors: Osinnii Aleksei, Bublikov Jury, Chigarev Anatoli, Okun’kova Anna, Kapustina Nataliya
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:EPJ Web of Conferences
Online Access:https://www.epj-conferences.org/articles/epjconf/pdf/2021/02/epjconf_mnps2021_04009.pdf
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spelling doaj-83fe4fa44b274ca3af186246f82516dc2021-08-02T22:27:18ZengEDP SciencesEPJ Web of Conferences2100-014X2021-01-012480400910.1051/epjconf/202124804009epjconf_mnps2021_04009Model of the Ultimate Stress State of the Coated Tool Cutter MaterialOsinnii Aleksei0Bublikov Jury1Chigarev Anatoli2Okun’kova Anna3Kapustina Nataliya4Moscow State Technological University “STANKIN”IDTI RASBelarusian State UniversityMoscow State Technological University “STANKIN”Moscow State Technological University “STANKIN”The article proposes a model of the ultimate stress state of the material of the coated tool cutter. It is found that with an increase in the fracture toughness of a tool in connection with the material ductility the machining accuracy deteriorates due to arising elastic-plastic vibrations of the tool cutter. In case when no ultimate stress state is reached, that is, a tool operates in the elastic region, then an alternating stress distribution diagram is realized for the tool cutter at the beam approximation. Therefore, in addition to the frictional vibrations, arising from the interaction between the tool cutter and a workpiece, the elastic vibrations can arise, which affects the machining accuracy and the service life of the coated tool cutter. The use of coatings makes it possible not only to increase the wear resistance of cutting tools, but also to transform the stress distribution diagrams of the normal σN and tangential τγ contact stresses acting on the rake face of the cutting tool. In particular, it is possible to control the length of the total contact area between the chips and the tool rake face.https://www.epj-conferences.org/articles/epjconf/pdf/2021/02/epjconf_mnps2021_04009.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Osinnii Aleksei
Bublikov Jury
Chigarev Anatoli
Okun’kova Anna
Kapustina Nataliya
spellingShingle Osinnii Aleksei
Bublikov Jury
Chigarev Anatoli
Okun’kova Anna
Kapustina Nataliya
Model of the Ultimate Stress State of the Coated Tool Cutter Material
EPJ Web of Conferences
author_facet Osinnii Aleksei
Bublikov Jury
Chigarev Anatoli
Okun’kova Anna
Kapustina Nataliya
author_sort Osinnii Aleksei
title Model of the Ultimate Stress State of the Coated Tool Cutter Material
title_short Model of the Ultimate Stress State of the Coated Tool Cutter Material
title_full Model of the Ultimate Stress State of the Coated Tool Cutter Material
title_fullStr Model of the Ultimate Stress State of the Coated Tool Cutter Material
title_full_unstemmed Model of the Ultimate Stress State of the Coated Tool Cutter Material
title_sort model of the ultimate stress state of the coated tool cutter material
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2021-01-01
description The article proposes a model of the ultimate stress state of the material of the coated tool cutter. It is found that with an increase in the fracture toughness of a tool in connection with the material ductility the machining accuracy deteriorates due to arising elastic-plastic vibrations of the tool cutter. In case when no ultimate stress state is reached, that is, a tool operates in the elastic region, then an alternating stress distribution diagram is realized for the tool cutter at the beam approximation. Therefore, in addition to the frictional vibrations, arising from the interaction between the tool cutter and a workpiece, the elastic vibrations can arise, which affects the machining accuracy and the service life of the coated tool cutter. The use of coatings makes it possible not only to increase the wear resistance of cutting tools, but also to transform the stress distribution diagrams of the normal σN and tangential τγ contact stresses acting on the rake face of the cutting tool. In particular, it is possible to control the length of the total contact area between the chips and the tool rake face.
url https://www.epj-conferences.org/articles/epjconf/pdf/2021/02/epjconf_mnps2021_04009.pdf
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