Barkhausen noise emission in hard milled surfaces of steel C55

dc.contributor.authorNeslušan Miroslavcs
dc.contributor.authorMajerik Jozefcs
dc.contributor.authorKejzlar Pavelcs
dc.contributor.authorČilliková Máriacs
dc.contributor.authorMičietová Annacs
dc.date.accessioned2020-05-31T15:55:15Z
dc.date.available01-04-2016en
dc.date.available2020-05-31T15:55:15Z
dc.date.issued2016cs
dc.date.updated19-48-2017en
dc.description.abstractThis paper deals with the application of the Barkhausen noise technique in the nondestructive monitoring of hard milled surfaces. The paper discusses strong magnetic anisotropy linked with microstructural transformations of a machined surface with regard to variable flank wear of cutting inserts. Effective values of Barkhausen noise, peak positions derived from the raw Barkhausen noise signals, the shape of hysteresis loops as well as the Barkhausen noise envelopes are compared with metallographic observations and theoretical background regarding the magnetic domains configuration in the near surface region. A possible concept by which hard milled surfaces could be monitored in real industrial conditions in a non-destructive manner is driven by the specific surface state of the microstructure as well as by the magnetic point of view.
dc.format.extent10cs
dc.identifier.issn1333-1124cs
dc.identifier.urihttps://dspace.tul.cz/handle/15240/154906
dc.identifier.urihttps://www.researchgate.net/publication/298046531_Barkhausen_noise_emission_in_hard_milled_surfaces_of_steel_C55
dc.language.isoengcs
dc.relation.ispartofTransactions of FAMENA
dc.relation.ispartofseries1cs
dc.subjectBarkhausen noisecs
dc.subjecthard millingcs
dc.subjectsurface integritycs
dc.titleBarkhausen noise emission in hard milled surfaces of steel C55cs
local.citation.epage55-64cs
local.citation.spage55-64cs
local.identifier.publikace2954
local.identifier.wok000369643600005en
local.relation.issue4cs
local.relation.issue4
local.relation.volume39
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