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POLZER, A.; VANČURA, T.; TRČKA, T.
Original Title
New Developed Software for Processing and Analysing of the Cutting Forces Records Verified when Machining by Modern Circle-Segment End Mills
English Title
Type
Paper in proceedings (conference paper)
Original Abstract
At present, 5-axis machining is often realized with ball end mills that do not achieve the advantages of the modern circle-segment end mills. In recent studies, these tools have been compared concerning the quality of the machined surfaces, machining times and cutting forces. An essential part of the research was an analysis of the force loading of the used tools. To get accurate data about force acting during the machining process, it was necessary to undergo experimental measuring using a cutting force dynamometer. For a force records analysis, the new software was developed based on the MATLAB platform. Evaluated results obtained by the new software are presented in the paper and compared with recent studies.
English abstract
Keywords
force loading, software, end mill, analysing, cutting force
Key words in English
Authors
RIV year
2021
Released
10.11.2020
Publisher
IOP Publishing Ltd
Location
Galati
Book
IOP Conference Series: Materials Science and Engineering
Edition
968
ISBN
1757-8981
Periodical
Volume
012017
Number
State
United Kingdom of Great Britain and Northern Ireland
Pages from
1
Pages to
11
Pages count
URL
https://iopscience.iop.org/article/10.1088/1757-899X/968/1/012017
BibTex
@inproceedings{BUT165578, author="Aleš {Polzer} and Tomáš {Vančura} and Tomáš {Trčka}", title="New Developed Software for Processing and Analysing of the Cutting Forces Records Verified when Machining by Modern Circle-Segment End Mills", booktitle="IOP Conference Series: Materials Science and Engineering", year="2020", series="968", journal="IOP Conference Series: Materials Science and Engineering", volume="012017", number="968", pages="1--11", publisher="IOP Publishing Ltd", address="Galati", doi="10.1088/1757-899X/968/1/012017", issn="1757-8981", url="https://iopscience.iop.org/article/10.1088/1757-899X/968/1/012017" }