The Dynamics of Contact Interaction during the Cutting Process

At parts manufacturing using metal-cutting machine tools, the process conditions eliminating high vibration levels are among the most important factors ensuring safe operation of the said metal-cutting machine tools. To solve the task, specific features typical for creation of the dynamic model of m...

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Main Authors: Dmitriy V. Vasilkov, Alexander V. Nikitin, Igor Y. Tarikov
Format: Article
Language:English
Published: International Journal of Mathematical, Engineering and Management Sciences 2019-10-01
Series:International Journal of Mathematical, Engineering and Management Sciences
Subjects:
Online Access:https://www.ijmems.in/assets//96-IJMEMS-18-Y18-Vol.%204,%20No.%205,%201218%E2%80%931227,%202019.pdf
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spelling doaj-f017822593e049458fdbb97ba889873d2020-11-25T02:35:02ZengInternational Journal of Mathematical, Engineering and Management SciencesInternational Journal of Mathematical, Engineering and Management Sciences2455-77492455-77492019-10-01451218122710.33889/IJMEMS.2019.4.5-096The Dynamics of Contact Interaction during the Cutting ProcessDmitriy V. Vasilkov0Alexander V. Nikitin1Igor Y. Tarikov2Baltic State Technical University «VOENMEH», St. Petersburg, 190005, RussiaPeter the Great St. Petersburg Polytechnic University, St. Petersburg, 195220, RussiaBaltic State Technical University «VOENMEH», St. Petersburg, 190005, RussiaAt parts manufacturing using metal-cutting machine tools, the process conditions eliminating high vibration levels are among the most important factors ensuring safe operation of the said metal-cutting machine tools. To solve the task, specific features typical for creation of the dynamic model of mechanical processing in the space of condition variables at contact interaction in the cutting zone based on the piecewise linear approximation were discussed. The contact interaction process was considered as the double-phase one envisaging sequence of retention at adhesion and sliding at adhesion bonds rupture. The cutting tool’ and the workpiece’ contact interactions are presented in the form of rheological models. Conditions of retention and sliding phases sequence are formed by the system itself that is the self-excited one. The set of research performed allowed considering contact interaction of the machined surface with the rear surface of the tool and the of the moving chip with the anterior surface of the tool with the anterior surface of the tool as factors largely defining the conditions of self-sustained oscillations. The contact interaction’ double-phase nature ensures self-organised dosing and selectiveness of the dynamic contours at interaction in the autonomous dynamic process system.https://www.ijmems.in/assets//96-IJMEMS-18-Y18-Vol.%204,%20No.%205,%201218%E2%80%931227,%202019.pdfProcess systemCutting process dynamic modelRheological equationsSlidingretentionPiecewise linear approximation
collection DOAJ
language English
format Article
sources DOAJ
author Dmitriy V. Vasilkov
Alexander V. Nikitin
Igor Y. Tarikov
spellingShingle Dmitriy V. Vasilkov
Alexander V. Nikitin
Igor Y. Tarikov
The Dynamics of Contact Interaction during the Cutting Process
International Journal of Mathematical, Engineering and Management Sciences
Process system
Cutting process dynamic model
Rheological equations
Sliding
retention
Piecewise linear approximation
author_facet Dmitriy V. Vasilkov
Alexander V. Nikitin
Igor Y. Tarikov
author_sort Dmitriy V. Vasilkov
title The Dynamics of Contact Interaction during the Cutting Process
title_short The Dynamics of Contact Interaction during the Cutting Process
title_full The Dynamics of Contact Interaction during the Cutting Process
title_fullStr The Dynamics of Contact Interaction during the Cutting Process
title_full_unstemmed The Dynamics of Contact Interaction during the Cutting Process
title_sort dynamics of contact interaction during the cutting process
publisher International Journal of Mathematical, Engineering and Management Sciences
series International Journal of Mathematical, Engineering and Management Sciences
issn 2455-7749
2455-7749
publishDate 2019-10-01
description At parts manufacturing using metal-cutting machine tools, the process conditions eliminating high vibration levels are among the most important factors ensuring safe operation of the said metal-cutting machine tools. To solve the task, specific features typical for creation of the dynamic model of mechanical processing in the space of condition variables at contact interaction in the cutting zone based on the piecewise linear approximation were discussed. The contact interaction process was considered as the double-phase one envisaging sequence of retention at adhesion and sliding at adhesion bonds rupture. The cutting tool’ and the workpiece’ contact interactions are presented in the form of rheological models. Conditions of retention and sliding phases sequence are formed by the system itself that is the self-excited one. The set of research performed allowed considering contact interaction of the machined surface with the rear surface of the tool and the of the moving chip with the anterior surface of the tool with the anterior surface of the tool as factors largely defining the conditions of self-sustained oscillations. The contact interaction’ double-phase nature ensures self-organised dosing and selectiveness of the dynamic contours at interaction in the autonomous dynamic process system.
topic Process system
Cutting process dynamic model
Rheological equations
Sliding
retention
Piecewise linear approximation
url https://www.ijmems.in/assets//96-IJMEMS-18-Y18-Vol.%204,%20No.%205,%201218%E2%80%931227,%202019.pdf
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