The study on dynamic properties of monolithic ball end mills with various slenderness

The reliable determination of modal mass, damping and stiffness coefficient (modal parameters) for the particular machine-toolholder-tool system is essential for the accurate estimation of vibrations, stability and thus the machined surface finish formed during the milling process. Therefore, this p...

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Main Authors: Wojciechowski Szymon, Tabaszewski Maciej, Krolczyk Grzegorz M., Maruda Radosław W.
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:E3S Web of Conferences
Online Access:https://doi.org/10.1051/e3sconf/20171903014
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spelling doaj-23c1ea4a93df4688a96b95ec8948a7a22021-02-02T01:37:42ZengEDP SciencesE3S Web of Conferences2267-12422017-01-01190301410.1051/e3sconf/20171903014e3sconf_eems2017_03014The study on dynamic properties of monolithic ball end mills with various slendernessWojciechowski SzymonTabaszewski MaciejKrolczyk Grzegorz M.Maruda Radosław W.The reliable determination of modal mass, damping and stiffness coefficient (modal parameters) for the particular machine-toolholder-tool system is essential for the accurate estimation of vibrations, stability and thus the machined surface finish formed during the milling process. Therefore, this paper focuses on the analysis of ball end mill's dynamical properties. The tools investigated during this study are monolithic ball end mills with different slenderness values, made of coated cemented carbide. These kinds of tools are very often applied during the precise milling of curvilinear surfaces. The research program included the impulse test carried out for the investigated tools clamped in the hydraulic toolholder. The obtained modal parameters were further applied in the developed tool's instantaneous deflection model, in order to estimate the tool's working part vibrations during precise milling. The application of the proposed dynamics model involved also the determination of instantaneous cutting forces on the basis of the mechanistic approach. The research revealed that ball end mill's slenderness can be considered as an important milling dynamics and machined surface quality indicator.https://doi.org/10.1051/e3sconf/20171903014
collection DOAJ
language English
format Article
sources DOAJ
author Wojciechowski Szymon
Tabaszewski Maciej
Krolczyk Grzegorz M.
Maruda Radosław W.
spellingShingle Wojciechowski Szymon
Tabaszewski Maciej
Krolczyk Grzegorz M.
Maruda Radosław W.
The study on dynamic properties of monolithic ball end mills with various slenderness
E3S Web of Conferences
author_facet Wojciechowski Szymon
Tabaszewski Maciej
Krolczyk Grzegorz M.
Maruda Radosław W.
author_sort Wojciechowski Szymon
title The study on dynamic properties of monolithic ball end mills with various slenderness
title_short The study on dynamic properties of monolithic ball end mills with various slenderness
title_full The study on dynamic properties of monolithic ball end mills with various slenderness
title_fullStr The study on dynamic properties of monolithic ball end mills with various slenderness
title_full_unstemmed The study on dynamic properties of monolithic ball end mills with various slenderness
title_sort study on dynamic properties of monolithic ball end mills with various slenderness
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2017-01-01
description The reliable determination of modal mass, damping and stiffness coefficient (modal parameters) for the particular machine-toolholder-tool system is essential for the accurate estimation of vibrations, stability and thus the machined surface finish formed during the milling process. Therefore, this paper focuses on the analysis of ball end mill's dynamical properties. The tools investigated during this study are monolithic ball end mills with different slenderness values, made of coated cemented carbide. These kinds of tools are very often applied during the precise milling of curvilinear surfaces. The research program included the impulse test carried out for the investigated tools clamped in the hydraulic toolholder. The obtained modal parameters were further applied in the developed tool's instantaneous deflection model, in order to estimate the tool's working part vibrations during precise milling. The application of the proposed dynamics model involved also the determination of instantaneous cutting forces on the basis of the mechanistic approach. The research revealed that ball end mill's slenderness can be considered as an important milling dynamics and machined surface quality indicator.
url https://doi.org/10.1051/e3sconf/20171903014
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