Application of Carbide Cutting Inserts as Indenters for Surface Plastic Deformation
Surface plastic deformation has a high productivity and allows for products with unique operational properties, namely: a high quality of the surface layer, increased support stability of the profile of the treated surface, a strengthened surface layer, and the formation of residual compressive stre...
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MDPI AG
2023-03-01
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Series: | Applied Sciences |
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Online Access: | https://www.mdpi.com/2076-3417/13/6/3741 |
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author | Kostiantyn Svirzhevskyi Oleg Zabolotnyi José Machado Anatolii Tkachuk Inna Boiarska |
author_facet | Kostiantyn Svirzhevskyi Oleg Zabolotnyi José Machado Anatolii Tkachuk Inna Boiarska |
author_sort | Kostiantyn Svirzhevskyi |
collection | DOAJ |
description | Surface plastic deformation has a high productivity and allows for products with unique operational properties, namely: a high quality of the surface layer, increased support stability of the profile of the treated surface, a strengthened surface layer, and the formation of residual compressive stresses in the surface layer. The essence of smoothing is that a tool with regulated geometric characteristics of the deforming element (indenter) under specific technological processing modes penetrates the surface layer of the workpiece and slides, deforming the microgeometry formed as a result of previous technological operations. The article considers the option of using carbide-cutting plates as deforming elements. For this, a morphological table of methods of spatial orientation of the indenter-plate has been developed, which includes 27 possible options for its installation. The algorithm for calculating the geometry of the contact zone of the indenter and the workpiece is presented. The contact interaction of the indenter plate and the workpiece was studied. On the basis of morphological analysis and conducted applied studies, rational installation angles of the deforming element were determined. The interdependence of the properties of the surface layer on the technological modes of processing was defined. |
first_indexed | 2024-03-11T06:58:34Z |
format | Article |
id | doaj.art-635242a97ccd4e5197ccc0ce15103c68 |
institution | Directory Open Access Journal |
issn | 2076-3417 |
language | English |
last_indexed | 2024-03-11T06:58:34Z |
publishDate | 2023-03-01 |
publisher | MDPI AG |
record_format | Article |
series | Applied Sciences |
spelling | doaj.art-635242a97ccd4e5197ccc0ce15103c682023-11-17T09:26:19ZengMDPI AGApplied Sciences2076-34172023-03-01136374110.3390/app13063741Application of Carbide Cutting Inserts as Indenters for Surface Plastic DeformationKostiantyn Svirzhevskyi0Oleg Zabolotnyi1José Machado2Anatolii Tkachuk3Inna Boiarska4Applied Mechanics & Mechatronics Department, Lutsk National Technical University, Lvivska Street, 75, 43018 Lutsk, UkraineApplied Mechanics & Mechatronics Department, Lutsk National Technical University, Lvivska Street, 75, 43018 Lutsk, UkraineMEtRICs Research Center, University of Minho, Campus of Azurém, 4800-058 Guimarães, PortugalApplied Mechanics & Mechatronics Department, Lutsk National Technical University, Lvivska Street, 75, 43018 Lutsk, UkraineApplied Mechanics & Mechatronics Department, Lutsk National Technical University, Lvivska Street, 75, 43018 Lutsk, UkraineSurface plastic deformation has a high productivity and allows for products with unique operational properties, namely: a high quality of the surface layer, increased support stability of the profile of the treated surface, a strengthened surface layer, and the formation of residual compressive stresses in the surface layer. The essence of smoothing is that a tool with regulated geometric characteristics of the deforming element (indenter) under specific technological processing modes penetrates the surface layer of the workpiece and slides, deforming the microgeometry formed as a result of previous technological operations. The article considers the option of using carbide-cutting plates as deforming elements. For this, a morphological table of methods of spatial orientation of the indenter-plate has been developed, which includes 27 possible options for its installation. The algorithm for calculating the geometry of the contact zone of the indenter and the workpiece is presented. The contact interaction of the indenter plate and the workpiece was studied. On the basis of morphological analysis and conducted applied studies, rational installation angles of the deforming element were determined. The interdependence of the properties of the surface layer on the technological modes of processing was defined.https://www.mdpi.com/2076-3417/13/6/3741surface plastic deformationdeformation elementcarbide cutting plategeometric characteristics |
spellingShingle | Kostiantyn Svirzhevskyi Oleg Zabolotnyi José Machado Anatolii Tkachuk Inna Boiarska Application of Carbide Cutting Inserts as Indenters for Surface Plastic Deformation Applied Sciences surface plastic deformation deformation element carbide cutting plate geometric characteristics |
title | Application of Carbide Cutting Inserts as Indenters for Surface Plastic Deformation |
title_full | Application of Carbide Cutting Inserts as Indenters for Surface Plastic Deformation |
title_fullStr | Application of Carbide Cutting Inserts as Indenters for Surface Plastic Deformation |
title_full_unstemmed | Application of Carbide Cutting Inserts as Indenters for Surface Plastic Deformation |
title_short | Application of Carbide Cutting Inserts as Indenters for Surface Plastic Deformation |
title_sort | application of carbide cutting inserts as indenters for surface plastic deformation |
topic | surface plastic deformation deformation element carbide cutting plate geometric characteristics |
url | https://www.mdpi.com/2076-3417/13/6/3741 |
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