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Efficient calibration of instantaneous cutting force coefficients and runout parameters for general end mills

This paper aims at developing a unified approach to identify the cutting force coefficients together with the cutter runout parameters for general end mills such as cylindrical, ball, bull nose ones, etc. The cutting forces that are modeled using the instantaneous cutting force coefficients are anal...

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Published in:International journal of machine tools & manufacture 2007-09, Vol.47 (11), p.1767-1776
Main Authors: Wan, M., Zhang, W.H., Qin, G.H., Tan, G.
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cited_by cdi_FETCH-LOGICAL-c382t-e92df708b1a8dbb226335db83d83b022742e693867eb4590444de14dfa4b40773
cites cdi_FETCH-LOGICAL-c382t-e92df708b1a8dbb226335db83d83b022742e693867eb4590444de14dfa4b40773
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container_title International journal of machine tools & manufacture
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creator Wan, M.
Zhang, W.H.
Qin, G.H.
Tan, G.
description This paper aims at developing a unified approach to identify the cutting force coefficients together with the cutter runout parameters for general end mills such as cylindrical, ball, bull nose ones, etc. The cutting forces that are modeled using the instantaneous cutting force coefficients are analyzed and separated into two terms: a nominal component independent of the runout and a perturbation component induced by the runout. The nominal component enables the calibration of the instantaneous cutting force coefficients whereas the runout parameters are determined from the perturbation component. The validity of the present method is demonstrated with simulation and experimented data.
doi_str_mv 10.1016/j.ijmachtools.2006.06.012
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subjects Applied sciences
Calibration
Crushing. Screening (sizing). Classification
Cutter runout
Cutting force
Exact sciences and technology
General end mills
Mechanical engineering. Machine design
Metals. Metallurgy
Ores
Production of metals
title Efficient calibration of instantaneous cutting force coefficients and runout parameters for general end mills
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