The Study of Multiradius Roller Running Process

The results of theoretical and experimental studies of the surface of the sample of steel 45 after surface plastic deformation (SPD) with multi-radius roller (MR-roller) is shown. The goal of this study is to expand the technological capabilities of the method of SPD through the use of a new design...

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Main Authors: Krechetov Andrey, Mitrofanova Kristina
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2019/46/matecconf_ispcime18_05003.pdf
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spelling doaj-1d6aaa3889cf45679c39f347b5775ccd2021-02-02T00:19:09ZengEDP SciencesMATEC Web of Conferences2261-236X2019-01-012970500310.1051/matecconf/201929705003matecconf_ispcime18_05003The Study of Multiradius Roller Running ProcessKrechetov Andrey0Mitrofanova Kristina1T.F. Gorbachev Kuzbass State Technical University, Department of mechanical engineering technologyT.F. Gorbachev Kuzbass State Technical University, Department of mechanical engineering technologyThe results of theoretical and experimental studies of the surface of the sample of steel 45 after surface plastic deformation (SPD) with multi-radius roller (MR-roller) is shown. The goal of this study is to expand the technological capabilities of the method of SPD through the use of a new design of the deforming tool developed at the Department of Engineering Technology of KuzSTU. The advantage of the MR-roller (Patent RU № 2557377) over the traditional tool for SPD (single-radius roller) is the possibility of creating a large hydrostatic pressure in the deformation zone, without destroying the surface layer of the processed material. The research technique included finite element modeling (FEM), microhardness measurement, metallographic studies of the sample structure. As a result of the study, some regularities of the process of hardening by a multi-radius tool with high hydrostatic pressure and a large number of quasi-monotonic deformation sites were revealed. The results indicate a significant hardening without metal destruction and the formation of nanoscale grains, which allows to improve the properties of rolled products in the application of high operating loads.https://www.matec-conferences.org/articles/matecconf/pdf/2019/46/matecconf_ispcime18_05003.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Krechetov Andrey
Mitrofanova Kristina
spellingShingle Krechetov Andrey
Mitrofanova Kristina
The Study of Multiradius Roller Running Process
MATEC Web of Conferences
author_facet Krechetov Andrey
Mitrofanova Kristina
author_sort Krechetov Andrey
title The Study of Multiradius Roller Running Process
title_short The Study of Multiradius Roller Running Process
title_full The Study of Multiradius Roller Running Process
title_fullStr The Study of Multiradius Roller Running Process
title_full_unstemmed The Study of Multiradius Roller Running Process
title_sort study of multiradius roller running process
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2019-01-01
description The results of theoretical and experimental studies of the surface of the sample of steel 45 after surface plastic deformation (SPD) with multi-radius roller (MR-roller) is shown. The goal of this study is to expand the technological capabilities of the method of SPD through the use of a new design of the deforming tool developed at the Department of Engineering Technology of KuzSTU. The advantage of the MR-roller (Patent RU № 2557377) over the traditional tool for SPD (single-radius roller) is the possibility of creating a large hydrostatic pressure in the deformation zone, without destroying the surface layer of the processed material. The research technique included finite element modeling (FEM), microhardness measurement, metallographic studies of the sample structure. As a result of the study, some regularities of the process of hardening by a multi-radius tool with high hydrostatic pressure and a large number of quasi-monotonic deformation sites were revealed. The results indicate a significant hardening without metal destruction and the formation of nanoscale grains, which allows to improve the properties of rolled products in the application of high operating loads.
url https://www.matec-conferences.org/articles/matecconf/pdf/2019/46/matecconf_ispcime18_05003.pdf
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