Title
Fe nanoparticles produced by electric explosion of wire for new generation of magneto-rheological fluidsAuthor (from another institution)
xmlui.dri2xhtml.METS-1.0.item-contributorOtherinstitution
https://ror.org/000xsnr85Institute of Natural Sciences and Mathematics, Ekaterinburg
https://ror.org/051jjt714
Version
http://purl.org/coar/version/c_ab4af688f83e57aa
Rights
© 2018 IOP PublishingAccess
http://purl.org/coar/access_right/c_abf2Publisher’s version
https://doi.org/10.1088/1361-665X/aaadedPublished at
Smart Materials and Structures Vol. 27. Nº 4. IOP Publishing Ltd, 2018Publisher
IOP PublishingKeywords
Iron
magnetorheological fluids
Nanomagnetics
Nanoparticles ... [+]
magnetorheological fluids
Nanomagnetics
Nanoparticles ... [+]
Iron
magnetorheological fluids
Nanomagnetics
Nanoparticles
Wire
Yield stress [-]
magnetorheological fluids
Nanomagnetics
Nanoparticles
Wire
Yield stress [-]
Abstract
Iron magnetic nanoparticles were produced by the technique of the electric explosion of a wire (EEW). The major crystalline phase (95 ± 1%) was α-Fe with lattice parameter a = 0.2863(3) nm. The size o ... [+]
Iron magnetic nanoparticles were produced by the technique of the electric explosion of a wire (EEW). The major crystalline phase (95 ± 1%) was α-Fe with lattice parameter a = 0.2863(3) nm. The size of the coherent diffraction domains of this phase was 77 ± 3 nm. The EEW MNPs presented a large saturation magnetization value, reaching about 87% of the saturation magnetization of the bulk iron. EEW NMPs demonstrated an improved magnetic performance when used in magnetorheological (MR) fluids with respect to the commercial carbonyl iron particles (CIPs) micron-sized particles studied for comparison. The MR fluids composed with the EEW nanoparticles showed larger yield stress values than those with CIP micron-sized particles, so proving that the EEW MNPs have a high potential for MR fluids applications. [-]
xmlui.dri2xhtml.METS-1.0.item-sponsorship
Gobierno Vascoxmlui.dri2xhtml.METS-1.0.item-projectID
info:eu-repo/grantAgreement/GV/Ikertalde Convocatoria 2016-2021/IT1009-16/CAPV/Mecánica de fluidosCollections
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