Analytical model of temperature distribution in metal cutting based on Potential Theory

Temperature fields evolving during metal cutting processes have also been of major interest. Temperatures in the tool influence the wear behaviour and hence costs, temperatures in the work-piece are directly responsible for later product quality. Due to the high significance of temperatures, many mo...

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Main Authors: F. Klocke, M. Brockmann, S. Gierlings, D. Veselovac
Format: Article
Language:English
Published: Copernicus Publications 2015-07-01
Series:Mechanical Sciences
Online Access:http://www.mech-sci.net/6/89/2015/ms-6-89-2015.pdf
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spelling doaj-5cf52cfb35be40aa91471b52761d6f3a2020-11-24T23:08:04ZengCopernicus PublicationsMechanical Sciences2191-91512191-916X2015-07-0162899410.5194/ms-6-89-2015Analytical model of temperature distribution in metal cutting based on Potential TheoryF. Klocke0M. Brockmann1S. Gierlings2D. Veselovac3Laboratory for Machine Tools and Production Engineering (WZL), Aachen, GermanyLaboratory for Machine Tools and Production Engineering (WZL), Aachen, GermanyLaboratory for Machine Tools and Production Engineering (WZL), Aachen, GermanyLaboratory for Machine Tools and Production Engineering (WZL), Aachen, GermanyTemperature fields evolving during metal cutting processes have also been of major interest. Temperatures in the tool influence the wear behaviour and hence costs, temperatures in the work-piece are directly responsible for later product quality. Due to the high significance of temperatures, many modelling attempts for temperature fields have been conducted, however failed to deliver satisfying results. The present paper describes a novel analytical model using complex functions based on potential theory. Relevant heat sources in metal cutting as well as changing material constants are considered. The model was validated by an orthogonal cutting process and different real machining processes.http://www.mech-sci.net/6/89/2015/ms-6-89-2015.pdf
collection DOAJ
language English
format Article
sources DOAJ
author F. Klocke
M. Brockmann
S. Gierlings
D. Veselovac
spellingShingle F. Klocke
M. Brockmann
S. Gierlings
D. Veselovac
Analytical model of temperature distribution in metal cutting based on Potential Theory
Mechanical Sciences
author_facet F. Klocke
M. Brockmann
S. Gierlings
D. Veselovac
author_sort F. Klocke
title Analytical model of temperature distribution in metal cutting based on Potential Theory
title_short Analytical model of temperature distribution in metal cutting based on Potential Theory
title_full Analytical model of temperature distribution in metal cutting based on Potential Theory
title_fullStr Analytical model of temperature distribution in metal cutting based on Potential Theory
title_full_unstemmed Analytical model of temperature distribution in metal cutting based on Potential Theory
title_sort analytical model of temperature distribution in metal cutting based on potential theory
publisher Copernicus Publications
series Mechanical Sciences
issn 2191-9151
2191-916X
publishDate 2015-07-01
description Temperature fields evolving during metal cutting processes have also been of major interest. Temperatures in the tool influence the wear behaviour and hence costs, temperatures in the work-piece are directly responsible for later product quality. Due to the high significance of temperatures, many modelling attempts for temperature fields have been conducted, however failed to deliver satisfying results. The present paper describes a novel analytical model using complex functions based on potential theory. Relevant heat sources in metal cutting as well as changing material constants are considered. The model was validated by an orthogonal cutting process and different real machining processes.
url http://www.mech-sci.net/6/89/2015/ms-6-89-2015.pdf
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AT mbrockmann analyticalmodeloftemperaturedistributioninmetalcuttingbasedonpotentialtheory
AT sgierlings analyticalmodeloftemperaturedistributioninmetalcuttingbasedonpotentialtheory
AT dveselovac analyticalmodeloftemperaturedistributioninmetalcuttingbasedonpotentialtheory
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