APPLICATION OF X-RAY DIFFRACTION AND BARKHAUSEN NOISE ANALYSIS FOR STABILITY CONTROL DURING MACHINING
The contribution is focused on the recent experience of X-ray Diffraction Laboratory of the Czech Technical University in Prague and Department of Machining and Assembly of the Technical University of Liberec with industrial applications of X-ray diffraction residual stress measurement and Barkhause...
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Univerzity of Zilina. Faculty of Mechanical Engineering
2011-07-01
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Online Access: | http://fstroj.uniza.sk/journal-mi/PDF/2011/09-2011.pdf |
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doaj-fe0503dce8064b04a723ffcb9c12a01b2020-11-24T23:51:21ZengUniverzity of Zilina. Faculty of Mechanical EngineeringMateriálové Inžinierstvo 1335-08031338-61742011-07-011824956APPLICATION OF X-RAY DIFFRACTION AND BARKHAUSEN NOISE ANALYSIS FOR STABILITY CONTROL DURING MACHININGKamil KolaříkNikolaj GanevJan JersákThe contribution is focused on the recent experience of X-ray Diffraction Laboratory of the Czech Technical University in Prague and Department of Machining and Assembly of the Technical University of Liberec with industrial applications of X-ray diffraction residual stress measurement and Barkhausen noise analysis. Both methods are used for control and optimization of technological parameters during final surface machining of camshafts. They verify whether the required level of residual stresses in given subsurface areas was achieved and serve also as a fast output inspection of machine parts´ surface quality. http://fstroj.uniza.sk/journal-mi/PDF/2011/09-2011.pdfX-ray diffractionResidual stressBarkhausen noise analysisSurface integrity |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kamil Kolařík Nikolaj Ganev Jan Jersák |
spellingShingle |
Kamil Kolařík Nikolaj Ganev Jan Jersák APPLICATION OF X-RAY DIFFRACTION AND BARKHAUSEN NOISE ANALYSIS FOR STABILITY CONTROL DURING MACHINING Materiálové Inžinierstvo X-ray diffraction Residual stress Barkhausen noise analysis Surface integrity |
author_facet |
Kamil Kolařík Nikolaj Ganev Jan Jersák |
author_sort |
Kamil Kolařík |
title |
APPLICATION OF X-RAY DIFFRACTION AND BARKHAUSEN NOISE ANALYSIS FOR STABILITY CONTROL DURING MACHINING |
title_short |
APPLICATION OF X-RAY DIFFRACTION AND BARKHAUSEN NOISE ANALYSIS FOR STABILITY CONTROL DURING MACHINING |
title_full |
APPLICATION OF X-RAY DIFFRACTION AND BARKHAUSEN NOISE ANALYSIS FOR STABILITY CONTROL DURING MACHINING |
title_fullStr |
APPLICATION OF X-RAY DIFFRACTION AND BARKHAUSEN NOISE ANALYSIS FOR STABILITY CONTROL DURING MACHINING |
title_full_unstemmed |
APPLICATION OF X-RAY DIFFRACTION AND BARKHAUSEN NOISE ANALYSIS FOR STABILITY CONTROL DURING MACHINING |
title_sort |
application of x-ray diffraction and barkhausen noise analysis for stability control during machining |
publisher |
Univerzity of Zilina. Faculty of Mechanical Engineering |
series |
Materiálové Inžinierstvo |
issn |
1335-0803 1338-6174 |
publishDate |
2011-07-01 |
description |
The contribution is focused on the recent experience of X-ray Diffraction Laboratory of the Czech Technical University in Prague and Department of Machining and Assembly of the Technical University of Liberec with industrial applications of X-ray diffraction residual stress measurement and Barkhausen noise analysis. Both methods are used for control and optimization of technological parameters during final surface machining of camshafts. They verify whether the required level of residual stresses in given subsurface areas was achieved and serve also as a fast output inspection of machine parts´ surface quality. |
topic |
X-ray diffraction Residual stress Barkhausen noise analysis Surface integrity |
url |
http://fstroj.uniza.sk/journal-mi/PDF/2011/09-2011.pdf |
work_keys_str_mv |
AT kamilkolarik applicationofxraydiffractionandbarkhausennoiseanalysisforstabilitycontrolduringmachining AT nikolajganev applicationofxraydiffractionandbarkhausennoiseanalysisforstabilitycontrolduringmachining AT janjersak applicationofxraydiffractionandbarkhausennoiseanalysisforstabilitycontrolduringmachining |
_version_ |
1725476132128555008 |