Barkhausen Noise Emission in Milled Surfaces

This paper deals with the non-destructive evaluation of surface made of roll bearing steel 100Cr6 after milling cycles via Barkhausen noise technique. The paper discusses magnetic anisotropy linked with the structure transformations with regard to variable flank wear of cutting tool. Effective value...

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Main Authors: Miroslav Neslusan, Tomas Hrabovsky, Maria Cillikova, Anna Micietova
Format: Article
Language:English
Published: University of Žilina 2015-08-01
Series:Communications
Subjects:
Online Access:https://komunikacie.uniza.sk/artkey/csl-201503-0009_barkhausen-noise-emission-in-milled-surfaces.php
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author Miroslav Neslusan
Tomas Hrabovsky
Maria Cillikova
Anna Micietova
author_facet Miroslav Neslusan
Tomas Hrabovsky
Maria Cillikova
Anna Micietova
author_sort Miroslav Neslusan
collection DOAJ
description This paper deals with the non-destructive evaluation of surface made of roll bearing steel 100Cr6 after milling cycles via Barkhausen noise technique. The paper discusses magnetic anisotropy linked with the structure transformations with regard to variable flank wear of cutting tool. Effective value of Barkhausen noise (BN), Peak Position and Full Width at Half Maximum (FWHM) derived from the raw BN signals are compared with metallographic observations and residual stress profiles. Surface integrity is also expressed in term of surface roughness due to comparable BN sensitive layer and the height of surface roughness profile.
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spelling doaj.art-ae3598f084e4425e98559210602c0e132023-04-14T06:31:00ZengUniversity of ŽilinaCommunications1335-42052585-78782015-08-01173576110.26552/com.C.2015.3.57-61csl-201503-0009Barkhausen Noise Emission in Milled SurfacesMiroslav Neslusan0Tomas Hrabovsky1Maria Cillikova2Anna Micietova3Department of Machining and Manufacturing, Faculty of Mechanical Engineering, University of Zilina, SlovakiaDepartment of Machining and Manufacturing, Faculty of Mechanical Engineering, University of Zilina, SlovakiaDepartment of Machining and Manufacturing, Faculty of Mechanical Engineering, University of Zilina, SlovakiaDepartment of Machining and Manufacturing, Faculty of Mechanical Engineering, University of Zilina, SlovakiaThis paper deals with the non-destructive evaluation of surface made of roll bearing steel 100Cr6 after milling cycles via Barkhausen noise technique. The paper discusses magnetic anisotropy linked with the structure transformations with regard to variable flank wear of cutting tool. Effective value of Barkhausen noise (BN), Peak Position and Full Width at Half Maximum (FWHM) derived from the raw BN signals are compared with metallographic observations and residual stress profiles. Surface integrity is also expressed in term of surface roughness due to comparable BN sensitive layer and the height of surface roughness profile.https://komunikacie.uniza.sk/artkey/csl-201503-0009_barkhausen-noise-emission-in-milled-surfaces.phpbarkhausen noisemillingsurface integrity
spellingShingle Miroslav Neslusan
Tomas Hrabovsky
Maria Cillikova
Anna Micietova
Barkhausen Noise Emission in Milled Surfaces
Communications
barkhausen noise
milling
surface integrity
title Barkhausen Noise Emission in Milled Surfaces
title_full Barkhausen Noise Emission in Milled Surfaces
title_fullStr Barkhausen Noise Emission in Milled Surfaces
title_full_unstemmed Barkhausen Noise Emission in Milled Surfaces
title_short Barkhausen Noise Emission in Milled Surfaces
title_sort barkhausen noise emission in milled surfaces
topic barkhausen noise
milling
surface integrity
url https://komunikacie.uniza.sk/artkey/csl-201503-0009_barkhausen-noise-emission-in-milled-surfaces.php
work_keys_str_mv AT miroslavneslusan barkhausennoiseemissioninmilledsurfaces
AT tomashrabovsky barkhausennoiseemissioninmilledsurfaces
AT mariacillikova barkhausennoiseemissioninmilledsurfaces
AT annamicietova barkhausennoiseemissioninmilledsurfaces