Logo Logo
  • Home
    • Home
    • Editorial Board
    • Goal of the Journal
    • Submission of Papers
    • License Agreement
    • Open Access Statement
    • Guidelines for Authors
    • Peer Review Process
    • Archiving and Deposit Policies
    • Ethics of the Journal
    • Browse Journal Archive
  • Browse journal archive
  • Home
  • Archive: 2020
30 Oct 2020
  • 2020
  • V. 19
  • 1-2
  • (p.89 - 97)

Ferromagnetic resonance in cast microwires and its application for noncontact diagnostics

CZU: [537.226.4+537.311.22]:004.8

DOI: 10.5281/zenodo.4118691

Authors:

Adar Eliezer; Baranov S.; Sobolev Nikolai; Yosher A.

Summary:

Ferromagnetic resonance in glass-coated Fe-based cast amorphous microwires reveals large residual stresses appearing in the microwire core during casting. These stresses, together with magnetostriction, determine the magnetoelastic anisotropy. Ferromagnetic resonance frequency is affected, in addition to residual and internal stresses, by external stresses applied to the microwire or a composite containing it (so-called stress effect). The dependence of ferromagnetic resonance frequency on the deformation of microwires is proposed to be used in the distant diagnostics of dangerous deformations of critical infrastructure objects and in medical application.

Rezonanța ferromagnetică în microfire amorfe pe bază de Fe, în inveliș de sticlă, manifestă tensiuni reziduale mari care apar în miezul microfirului în timpul turnării. Aceste tensiuni împreună cu magnetostricția, determină anisotropia magnetoelastică. Frecvența de rezonanță feromagnetică este influențată, atât de tensiunile interne și reziduale, cât și de tensiunile externe aplicate microfirului sau compozitului său (așa-numitul efect de stres). Dependența frecvenței de rezonanță feromagnetică de deformarea microfirelor este propusă a fi utilizată în diagnosticarea la distanță a deformațiilor periculoase ale obiectelor critice de infrastructură și în scopuri medicale.

Download PDF

Export Metadata

Google Scholar

<meta name="citation_title" content="<p>Ferromagnetic resonance in cast microwires and its application  for noncontact diagnostics</p>">
<meta name="citation_author" content="Adar Eliezer">
<meta name="citation_author" content="Baranov S.">
<meta name="citation_author" content="Sobolev Nikolai">
<meta name="citation_author" content="Yosher A.">
<meta name="citation_publication_date" content="2020/10/30">
<meta name="citation_journal_title" content="Moldavian Journal of the Physical Sciences">
<meta name="citation_volume" content="19">
<meta name="citation_issue" content="1-2">
<meta name="citation_firstpage" content="89">
<meta name="citation_lastpage" content="97">
<meta name="citation_pdf_url" content="https://ibn.idsi.md/sites/default/files/imag_file/INS_06_Baranov-%D1%81or.pdf">

Crossref

<?xml version='1.0' encoding='utf-8'?>
<doi_batch version='4.3.7' xmlns='http://www.crossref.org/schema/4.3.7' xmlns:xsi='http://www.w3.org/2001/XMLSchema-instance' xsi:schemaLocation='http://www.crossref.org/schema/4.3.7 http://www.crossref.org/schema/deposit/crossref4.3.7.xsd'>
<head>
<doi_batch_id>ibn-112703</doi_batch_id>
<timestamp>1604342190</timestamp>
<depositor>
<depositor_name>Information Society Development Instiute, Republic of Moldova</depositor_name>
<email_address>mjps@nanotech.md</email_address>
</depositor>
<registrant>Institutul de Inginerie Electronică şi Nanotehnologii "D. Ghiţu" al AŞM</registrant>
</head>
<body>
<journal>
<journal_metadata>
<full_title>Moldavian Journal of the Physical Sciences</full_title>
<issn media_type='print'>1810648X</issn>
</journal_metadata>
<journal_issue>
<publication_date media_type='print'>
<year>2020</year>
</publication_date>
<issue>1-2(19)</issue>
</journal_issue>
<journal_article publication_type='full_text'><titles>
<title><p>Ferromagnetic resonance in cast microwires and its application  for noncontact diagnostics</p></title>
</titles>
<contributors>
<person_name sequence='first' contributor_role='author'>
<given_name>Eliezer</given_name>
<surname>Adar</surname>
</person_name>
<person_name sequence='additional' contributor_role='author'>
<given_name>Serghei</given_name>
<surname>Baranov</surname>
</person_name>
<person_name sequence='additional' contributor_role='author'>
<given_name>Nicolai</given_name>
<surname>Sobolev</surname>
</person_name>
<person_name sequence='additional' contributor_role='author'>
<given_name>Anatolii</given_name>
<surname>Yosher</surname>
</person_name>
</contributors>
<publication_date media_type='print'>
<year>2020</year>
</publication_date>
<pages>
<first_page>89</first_page>
<last_page>97</last_page>
</pages>
<doi_data>
<doi>10.5281/zenodo.4118691</doi>
<resource>http://www.crossref.org/</resource>
</doi_data>
</journal_article>
</journal>
</body>
</doi_batch>

CERIF

<?xml version='1.0' encoding='utf-8'?>
<CERIF xmlns='urn:xmlns:org:eurocris:cerif-1.5-1' xsi:schemaLocation='urn:xmlns:org:eurocris:cerif-1.5-1 http://www.eurocris.org/Uploads/Web%20pages/CERIF-1.5/CERIF_1.5_1.xsd' xmlns:xsi='http://www.w3.org/2001/XMLSchema-instance' release='1.5' date='2012-10-07' sourceDatabase='Output Profile'>
<cfResPubl>
<cfResPublId>ibn-ResPubl-112703</cfResPublId>
<cfResPublDate>2020-10-30</cfResPublDate>
<cfVol>19</cfVol>
<cfIssue>1-2</cfIssue>
<cfStartPage>89</cfStartPage>
<cfISSN>1810-648X</cfISSN>
<cfURI>http://mjps.utm.md/archive/2020/article/112703</cfURI>
<cfTitle cfLangCode='EN' cfTrans='o'><p>Ferromagnetic resonance in cast microwires and its application  for noncontact diagnostics</p></cfTitle>
<cfKeyw cfLangCode='EN' cfTrans='o'>Magnetic microwire; Magnetostriction; Ferromagnetic resonance; magnetoelastic anisotropy; microfir magnetic; magnetostricție; rezonanță feromagnetică; anisotropie magnetoelastică</cfKeyw>
<cfAbstr cfLangCode='EN' cfTrans='o'><p>Ferromagnetic resonance in glass-coated Fe-based cast amorphous microwires reveals large residual stresses appearing in the microwire core during casting. These stresses, together with magnetostriction, determine the magnetoelastic anisotropy. Ferromagnetic resonance frequency is affected, in addition to residual and internal stresses, by external stresses applied to the microwire or a composite containing it (so-called stress effect). The dependence of ferromagnetic resonance frequency on the deformation of microwires is proposed to be used in the distant diagnostics of dangerous deformations of critical infrastructure objects and in medical application.</p></cfAbstr>
<cfAbstr cfLangCode='RO' cfTrans='o'><p>Rezonanța ferromagnetică &icirc;n microfire amorfe pe bază de Fe, &icirc;n inveliș de sticlă, manifestă tensiuni reziduale mari care apar &icirc;n miezul microfirului &icirc;n timpul turnării. Aceste tensiuni &icirc;mpreună cu magnetostricția, determină anisotropia magnetoelastică. Frecvența de rezonanță feromagnetică este influențată, at&acirc;t de tensiunile interne și reziduale, c&acirc;t și de tensiunile externe aplicate microfirului sau compozitului său (așa-numitul efect de stres). Dependența frecvenței de rezonanță feromagnetică de deformarea microfirelor este propusă a fi utilizată &icirc;n diagnosticarea la distanță a deformațiilor periculoase ale obiectelor critice de infrastructură și &icirc;n scopuri medicale.</p></cfAbstr>
<cfResPubl_Class>
<cfClassId>eda2d9e9-34c5-11e1-b86c-0800200c9a66</cfClassId>
<cfClassSchemeId>759af938-34ae-11e1-b86c-0800200c9a66</cfClassSchemeId>
<cfStartDate>2020-10-30T24:00:00</cfStartDate>
</cfResPubl_Class>
<cfResPubl_Class>
<cfClassId>e601872f-4b7e-4d88-929f-7df027b226c9</cfClassId>
<cfClassSchemeId>40e90e2f-446d-460a-98e5-5dce57550c48</cfClassSchemeId>
<cfStartDate>2020-10-30T24:00:00</cfStartDate>
</cfResPubl_Class>
<cfPers_ResPubl>
<cfPersId>ibn-person-63691</cfPersId>
<cfClassId>49815870-1cfe-11e1-8bc2-0800200c9a66</cfClassId>
<cfClassSchemeId>b7135ad0-1d00-11e1-8bc2-0800200c9a66</cfClassSchemeId>
<cfStartDate>2020-10-30T24:00:00</cfStartDate>
</cfPers_ResPubl>
<cfPers_ResPubl>
<cfPersId>ibn-person-11133</cfPersId>
<cfClassId>49815870-1cfe-11e1-8bc2-0800200c9a66</cfClassId>
<cfClassSchemeId>b7135ad0-1d00-11e1-8bc2-0800200c9a66</cfClassSchemeId>
<cfStartDate>2020-10-30T24:00:00</cfStartDate>
</cfPers_ResPubl>
<cfPers_ResPubl>
<cfPersId>ibn-person-20048</cfPersId>
<cfClassId>49815870-1cfe-11e1-8bc2-0800200c9a66</cfClassId>
<cfClassSchemeId>b7135ad0-1d00-11e1-8bc2-0800200c9a66</cfClassSchemeId>
<cfStartDate>2020-10-30T24:00:00</cfStartDate>
</cfPers_ResPubl>
<cfPers_ResPubl>
<cfPersId>ibn-person-73866</cfPersId>
<cfClassId>49815870-1cfe-11e1-8bc2-0800200c9a66</cfClassId>
<cfClassSchemeId>b7135ad0-1d00-11e1-8bc2-0800200c9a66</cfClassSchemeId>
<cfStartDate>2020-10-30T24:00:00</cfStartDate>
</cfPers_ResPubl>
<cfFedId>
<cfFedIdId>ibn-doi-112703</cfFedIdId>
<cfFedId>10.5281/zenodo.4118691</cfFedId>
<cfStartDate>2020-10-30T24:00:00</cfStartDate>
<cfFedId_Class>
<cfClassId>31d222b4-11e0-434b-b5ae-088119c51189</cfClassId>
<cfClassSchemeId>bccb3266-689d-4740-a039-c96594b4d916</cfClassSchemeId>
</cfFedId_Class>
<cfFedId_Srv>
<cfSrvId>5123451</cfSrvId>
<cfClassId>eda2b2e2-34c5-11e1-b86c-0800200c9a66</cfClassId>
<cfClassSchemeId>5a270628-f593-4ff4-a44a-95660c76e182</cfClassSchemeId>
</cfFedId_Srv>
</cfFedId>
</cfResPubl>
<cfPers>
<cfPersId>ibn-Pers-63691</cfPersId>
<cfPersName_Pers>
<cfPersNameId>ibn-PersName-63691-3</cfPersNameId>
<cfClassId>55f90543-d631-42eb-8d47-d8d9266cbb26</cfClassId>
<cfClassSchemeId>7375609d-cfa6-45ce-a803-75de69abe21f</cfClassSchemeId>
<cfStartDate>2020-10-30T24:00:00</cfStartDate>
<cfFamilyNames>Adar</cfFamilyNames>
<cfFirstNames>Eliezer</cfFirstNames>
</cfPersName_Pers>
</cfPers>
<cfPers>
<cfPersId>ibn-Pers-11133</cfPersId>
<cfPersName_Pers>
<cfPersNameId>ibn-PersName-11133-3</cfPersNameId>
<cfClassId>55f90543-d631-42eb-8d47-d8d9266cbb26</cfClassId>
<cfClassSchemeId>7375609d-cfa6-45ce-a803-75de69abe21f</cfClassSchemeId>
<cfStartDate>2020-10-30T24:00:00</cfStartDate>
<cfFamilyNames>Baranov</cfFamilyNames>
<cfFirstNames>S.</cfFirstNames>
<cfFamilyNames>Баранов</cfFamilyNames>
<cfFirstNames>Сергей</cfFirstNames>
</cfPersName_Pers>
</cfPers>
<cfPers>
<cfPersId>ibn-Pers-20048</cfPersId>
<cfPersName_Pers>
<cfPersNameId>ibn-PersName-20048-3</cfPersNameId>
<cfClassId>55f90543-d631-42eb-8d47-d8d9266cbb26</cfClassId>
<cfClassSchemeId>7375609d-cfa6-45ce-a803-75de69abe21f</cfClassSchemeId>
<cfStartDate>2020-10-30T24:00:00</cfStartDate>
<cfFamilyNames>Sobolev</cfFamilyNames>
<cfFirstNames>Nikolai</cfFirstNames>
</cfPersName_Pers>
</cfPers>
<cfPers>
<cfPersId>ibn-Pers-73866</cfPersId>
<cfPersName_Pers>
<cfPersNameId>ibn-PersName-73866-3</cfPersNameId>
<cfClassId>55f90543-d631-42eb-8d47-d8d9266cbb26</cfClassId>
<cfClassSchemeId>7375609d-cfa6-45ce-a803-75de69abe21f</cfClassSchemeId>
<cfStartDate>2020-10-30T24:00:00</cfStartDate>
<cfFamilyNames>Yosher</cfFamilyNames>
<cfFirstNames>A.</cfFirstNames>
</cfPersName_Pers>
</cfPers>
<cfSrv>
<cfSrvId>5123451</cfSrvId>
<cfName cfLangCode='en' cfTrans='o'>CrossRef DOI prefix service</cfName>
<cfDescr cfLangCode='en' cfTrans='o'>The service of issuing DOI prefixes to publishers</cfDescr>
<cfKeyw cfLangCode='en' cfTrans='o'>persistent identifier; Digital Object Identifier</cfKeyw>
</cfSrv>
</CERIF>

BibTeX

@article{ibn_112703,
author = {Adar, E. and Baranov, S.A. and Sobolev, N.A. and Yosher, A.M.},
title = {<p>Ferromagnetic resonance in cast microwires and its application  for noncontact diagnostics</p>},
journal = {Moldavian Journal of the Physical Sciences},
year = {2020},
volume = {19 (1-2)},
pages = {89-97},
month = {Oct},
abstract = {(EN) <p>Ferromagnetic resonance in glass-coated Fe-based cast amorphous microwires reveals large residual stresses appearing in the microwire core during casting. These stresses, together with magnetostriction, determine the magnetoelastic anisotropy. Ferromagnetic resonance frequency is affected, in addition to residual and internal stresses, by external stresses applied to the microwire or a composite containing it (so-called stress effect). The dependence of ferromagnetic resonance frequency on the deformation of microwires is proposed to be used in the distant diagnostics of dangerous deformations of critical infrastructure objects and in medical application.</p>},
abstract = {(RO) <p>Rezonanța ferromagnetică &icirc;n microfire amorfe pe bază de Fe, &icirc;n inveliș de sticlă, manifestă tensiuni reziduale mari care apar &icirc;n miezul microfirului &icirc;n timpul turnării. Aceste tensiuni &icirc;mpreună cu magnetostricția, determină anisotropia magnetoelastică. Frecvența de rezonanță feromagnetică este influențată, at&acirc;t de tensiunile interne și reziduale, c&acirc;t și de tensiunile externe aplicate microfirului sau compozitului său (așa-numitul efect de stres). Dependența frecvenței de rezonanță feromagnetică de deformarea microfirelor este propusă a fi utilizată &icirc;n diagnosticarea la distanță a deformațiilor periculoase ale obiectelor critice de infrastructură și &icirc;n scopuri medicale.</p>},
doi = {10.5281/zenodo.4118691},
url = {https://ibn.idsi.md/vizualizare_articol/112703},
keywords = {Magnetic microwire, Magnetostriction, Ferromagnetic resonance, magnetoelastic anisotropy, microfir magnetic, magnetostricție, rezonanță feromagnetică, anisotropie magnetoelastică}
}

DataCite

<?xml version='1.0' encoding='utf-8'?>
<resource xmlns:xsi='http://www.w3.org/2001/XMLSchema-instance' xmlns='http://datacite.org/schema/kernel-3' xsi:schemaLocation='http://datacite.org/schema/kernel-3 http://schema.datacite.org/meta/kernel-3/metadata.xsd'>
<identifier identifierType='DOI'>10.5281/zenodo.4118691</identifier>
<creators>
<creator>
<creatorName>Adar, E.</creatorName>
<affiliation>WMT-Wire Machine technologies LTD, Israel</affiliation>
</creator>
<creator>
<creatorName>Baranov, S.A.</creatorName>
<affiliation>Institutul de Fizică Aplicată, Moldova, Republica</affiliation>
</creator>
<creator>
<creatorName>Sobolev, N.A.</creatorName>
<affiliation>Национальный исследовательский технологический университет „МИСиС“, Rusia</affiliation>
</creator>
<creator>
<creatorName>Yosher, A.M.</creatorName>
<affiliation>WMT-Wire Machine technologies LTD, Israel</affiliation>
</creator>
</creators>
<titles>
<title xml:lang='en'><p>Ferromagnetic resonance in cast microwires and its application  for noncontact diagnostics</p></title>
</titles>
<publisher>Instrumentul Bibliometric National</publisher>
<publicationYear>2020</publicationYear>
<relatedIdentifier relatedIdentifierType='ISSN' relationType='IsPartOf'>1810-648X</relatedIdentifier>
<subjects>
<subject>Magnetic microwire</subject>
<subject>Magnetostriction</subject>
<subject>Ferromagnetic resonance</subject>
<subject>magnetoelastic anisotropy</subject>
<subject>microfir magnetic</subject>
<subject>magnetostricție</subject>
<subject>rezonanță feromagnetică</subject>
<subject>anisotropie magnetoelastică</subject>
<subject schemeURI='http://udcdata.info/' subjectScheme='UDC'>[537.226.4+537.311.22]:004.8</subject>
</subjects>
<dates>
<date dateType='Issued'>2020-10-30</date>
</dates>
<resourceType resourceTypeGeneral='Text'>Journal article</resourceType>
<descriptions>
<description xml:lang='en' descriptionType='Abstract'><p>Ferromagnetic resonance in glass-coated Fe-based cast amorphous microwires reveals large residual stresses appearing in the microwire core during casting. These stresses, together with magnetostriction, determine the magnetoelastic anisotropy. Ferromagnetic resonance frequency is affected, in addition to residual and internal stresses, by external stresses applied to the microwire or a composite containing it (so-called stress effect). The dependence of ferromagnetic resonance frequency on the deformation of microwires is proposed to be used in the distant diagnostics of dangerous deformations of critical infrastructure objects and in medical application.</p></description>
<description xml:lang='ro' descriptionType='Abstract'><p>Rezonanța ferromagnetică &icirc;n microfire amorfe pe bază de Fe, &icirc;n inveliș de sticlă, manifestă tensiuni reziduale mari care apar &icirc;n miezul microfirului &icirc;n timpul turnării. Aceste tensiuni &icirc;mpreună cu magnetostricția, determină anisotropia magnetoelastică. Frecvența de rezonanță feromagnetică este influențată, at&acirc;t de tensiunile interne și reziduale, c&acirc;t și de tensiunile externe aplicate microfirului sau compozitului său (așa-numitul efect de stres). Dependența frecvenței de rezonanță feromagnetică de deformarea microfirelor este propusă a fi utilizată &icirc;n diagnosticarea la distanță a deformațiilor periculoase ale obiectelor critice de infrastructură și &icirc;n scopuri medicale.</p></description>
</descriptions>
<formats>
<format>application/pdf</format>
</formats>
</resource>

Dublin Core

<?xml version='1.0' encoding='utf-8'?>
<oai_dc:dc xmlns:dc='http://purl.org/dc/elements/1.1/' xmlns:oai_dc='http://www.openarchives.org/OAI/2.0/oai_dc/' xmlns:xsi='http://www.w3.org/2001/XMLSchema-instance' xsi:schemaLocation='http://www.openarchives.org/OAI/2.0/oai_dc/ http://www.openarchives.org/OAI/2.0/oai_dc.xsd'>
<dc:creator>Adar, E.</dc:creator>
<dc:creator>Baranov, S.A.</dc:creator>
<dc:creator>Sobolev, N.A.</dc:creator>
<dc:creator>Yosher, A.M.</dc:creator>
<dc:date>2020-10-30</dc:date>
<dc:description xml:lang='en'><p>Ferromagnetic resonance in glass-coated Fe-based cast amorphous microwires reveals large residual stresses appearing in the microwire core during casting. These stresses, together with magnetostriction, determine the magnetoelastic anisotropy. Ferromagnetic resonance frequency is affected, in addition to residual and internal stresses, by external stresses applied to the microwire or a composite containing it (so-called stress effect). The dependence of ferromagnetic resonance frequency on the deformation of microwires is proposed to be used in the distant diagnostics of dangerous deformations of critical infrastructure objects and in medical application.</p></dc:description>
<dc:description xml:lang='ro'><p>Rezonanța ferromagnetică &icirc;n microfire amorfe pe bază de Fe, &icirc;n inveliș de sticlă, manifestă tensiuni reziduale mari care apar &icirc;n miezul microfirului &icirc;n timpul turnării. Aceste tensiuni &icirc;mpreună cu magnetostricția, determină anisotropia magnetoelastică. Frecvența de rezonanță feromagnetică este influențată, at&acirc;t de tensiunile interne și reziduale, c&acirc;t și de tensiunile externe aplicate microfirului sau compozitului său (așa-numitul efect de stres). Dependența frecvenței de rezonanță feromagnetică de deformarea microfirelor este propusă a fi utilizată &icirc;n diagnosticarea la distanță a deformațiilor periculoase ale obiectelor critice de infrastructură și &icirc;n scopuri medicale.</p></dc:description>
<dc:identifier>10.5281/zenodo.4118691</dc:identifier>
<dc:source>Moldavian Journal of the Physical Sciences 19 (1-2) 89-97</dc:source>
<dc:subject>Magnetic microwire</dc:subject>
<dc:subject>Magnetostriction</dc:subject>
<dc:subject>Ferromagnetic resonance</dc:subject>
<dc:subject>magnetoelastic anisotropy</dc:subject>
<dc:subject>microfir magnetic</dc:subject>
<dc:subject>magnetostricție</dc:subject>
<dc:subject>rezonanță feromagnetică</dc:subject>
<dc:subject>anisotropie magnetoelastică</dc:subject>
<dc:title><p>Ferromagnetic resonance in cast microwires and its application  for noncontact diagnostics</p></dc:title>
<dc:type>info:eu-repo/semantics/article</dc:type>
</oai_dc:dc>

        

CC BY

Files

Download PDF

“ ... ”

SM ISO690:2012

ADAR, Eliezer; BARANOV, S.; SOBOLEV, Nikolai; YOSHER, A.. Ferromagnetic resonance in cast microwires and its application for noncontact diagnostics. In: Moldavian Journal of the Physical Sciences. 2020, nr. 1-2(19), pp. 89-97. ISSN 1810-648X.

Views & Downloads

  • Views 601
  • Downloads 353

Archives

  • 2023 (8)
  • 2022 (11)
  • 2021 (17)
  • 2020 (8)
  • 2019 (15)
  • 2018 (26)
  • 2017 (19)
  • 2016 (33)
  • 2015 (28)
  • 2014 (28)
  • 2013 (41)
  • 2012 (44)
  • 2011 (48)
  • 2010 (48)
  • 2009 (60)
  • 2008 (67)
  • 2007 (37)
  • 2006 (52)
  • 2005 (68)

Keywords

  • Magnetic microwire
  • Magnetostriction
  • Ferromagnetic resonance
  • magnetoelastic anisotropy
  • microfir magnetic
  • magnetostricție
  • rezonanță feromagnetică
  • anisotropie magnetoelastică
Logo Logo

GHITU INSTITUTE OF ELECTRONIC
ENGINEERING AND NANOTECHNOLOGIES
INSTITUTE OF APPLIED PHYSICS
STATE UNIVERSITY OF MOLDOVA
PHYSICAL SOCIETY OF MOLDOVA

Contact Info

You can contact us in one of the following ways

  • Email: mjps@nanotech.md
  • Phone: +(373 22) 739060, +(373 22) 737092

© Copyright 2026

  • Developed by Morari Constantin