Influence of Cutting Edge Geometry on Force Build-up Process in Intermittent Turning

In the intermittent turning and milling processes, during the entry phase the cutting edges are subjected to high impact loads that can give rise to dynamical and strength issues which in general cause tool life reduction. In this study the effect of geometrical features of the cutting tool on the f...

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Published in7th HPC 2016 – CIRP Conference on High Performance Cutting,Chemnitz, Germany,2016-05-31 - 2016-06-02 Vol. 46; pp. 364 - 367
Main Authors Agic, A., Gutnichenko, O., Eynian, M., Ståhl, J.-E.
Format Journal Article Conference Proceeding
LanguageEnglish
Published Elsevier B.V 2016
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Abstract In the intermittent turning and milling processes, during the entry phase the cutting edges are subjected to high impact loads that can give rise to dynamical and strength issues which in general cause tool life reduction. In this study the effect of geometrical features of the cutting tool on the force generation during the entry phase is investigated. Cutting forces are measured by a stiff dynamometer at a high sampling frequency. In addition, the chip load area is analyzed and related to the measured cutting force. The results show that micro-geometrical features, in particular the protection chamfer, significantly affect the force generation during the entry phase.
AbstractList In the intermittent turning and milling processes, during the entry phase the cutting edges are subjected to high impact loads that can give rise to dynamical and strength issues which in general cause tool life reduction. In this study the effect of geometrical features of the cutting tool on the force generation during the entry phase is investigated. Cutting forces are measured by a stiff dynamometer at a high sampling frequency. In addition, the chip load area is analyzed and related to the measured cutting force. The results show that micro-geometrical features, in particular the protection chamfer, significantly affect the force generation during the entry phase.
Author Agic, A.
Ståhl, J.-E.
Eynian, M.
Gutnichenko, O.
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Keywords cutting
edge
chip
force
dynamic
turning
Language English
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References Zhou, Andersson, Ståhl (bib0010) 1997
Altintas (bib0015) 2012
Ståhl (bib0005) 2012
Sturesson (bib0020) 1998
Sturesson (10.1016/j.procir.2016.04.013_bib0020) 1998
Zhou (10.1016/j.procir.2016.04.013_bib0010) 1997
Altintas (10.1016/j.procir.2016.04.013_bib0015) 2012
Ståhl (10.1016/j.procir.2016.04.013_bib0005) 2012
References_xml – year: 1998
  ident: bib0020
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  publication-title: Department of Production & Materials Engineering, Lund University Library
  contributor:
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– year: 2012
  ident: bib0005
  article-title: Metal cutting: theories and models
  publication-title: Division of Production and Materials Engineering, Lund University in cooperation with Seco Tools, Lund, Swden
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  article-title: Analysis of Mechanical Load in the Cutting Tool at Entry and Exit Phase of the Intermittent Cut
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  ident: bib0015
  article-title: Manufacturing automation: metal cutting mechanics, machine tool vibrations, and CNC design
  contributor:
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  article-title: Metal cutting: theories and models
  publication-title: Division of Production and Materials Engineering, Lund University in cooperation with Seco Tools, Lund, Swden
  contributor:
    fullname: Ståhl
– year: 2012
  ident: 10.1016/j.procir.2016.04.013_bib0015
  contributor:
    fullname: Altintas
– year: 1998
  ident: 10.1016/j.procir.2016.04.013_bib0020
  article-title: Modelling and Analysis of Cutting Forces, Traction Loads and Thermoelasticity of Carbide Cutting Tools in Turning Operations - Theory and Experiments
  publication-title: Department of Production & Materials Engineering, Lund University Library
  contributor:
    fullname: Sturesson
– year: 1997
  ident: 10.1016/j.procir.2016.04.013_bib0010
  article-title: Analysis of Mechanical Load in the Cutting Tool at Entry and Exit Phase of the Intermittent Cut
  publication-title: Submmited to Proceedings of Institution of Mechanical Engineering
  contributor:
    fullname: Zhou
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StartPage 364
SubjectTerms chip
Cutting
dynamic
edge
Engineering and Technology
force
Manufacturing and materials engineering
Materials Engineering
Materialteknik
Produktions- och materialteknik
Teknik
turning
Title Influence of Cutting Edge Geometry on Force Build-up Process in Intermittent Turning
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