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dc.contributor.authorZubar, Tatiana
dc.contributor.authorGrabchikov, Sergey
dc.contributor.authorKotelnikova, Anna
dc.contributor.authorKaniukov, Egor
dc.contributor.authorKutuzau, Maksim
dc.contributor.authorLeistner, Karin
dc.contributor.authorNielsch, Kornelius
dc.contributor.authorVershinina, Tatiana
dc.contributor.authorTishkevich, Daria
dc.contributor.authorKanafyev, Oleg
dc.contributor.authorKozlovskiy, Artem
dc.contributor.authorZdorovets, Maxim
dc.contributor.authorFedosyuk, Valery
dc.contributor.authorTrukhanov, Alex
dc.date.accessioned2024-12-27T04:16:43Z
dc.date.available2024-12-27T04:16:43Z
dc.date.issued2021
dc.identifier.citationZubar, T.; Grabchikov, S.; Kotelnikova, A.; Kaniukov, E.; Kutuzau, M.; Leistner, K.; Nielsch, K.; Vershinina, T.; Tishkevich, D.; Kanafyev, O.; et al. Efficiency of Magnetostatic Protection Using Nanostructured Permalloy Shielding Coatings Depending on Their Microstructure. Nanomaterials 2021, 11, 634. https://doi.org/10.3390/ nano11030634ru
dc.identifier.issn2079-4991
dc.identifier.otherdoi.org/10.3390/ nano11030634
dc.identifier.urihttp://rep.enu.kz/handle/enu/20481
dc.description.abstractThe effect of microstructure on the efficiency of shielding or shunting of the magnetic flux by permalloy shields was investigated in the present work. For this purpose, the FeNi shielding coatings with different grain structures were obtained using stationary and pulsed electrodeposition. The coatings’ composition, crystal structure, surface microstructure, magnetic domain structure, and shielding efficiency were studied. It has been shown that coatings with 0.2–0.6 µm grains have a disordered domain structure. Consequently, a higher value of the shielding efficiency was achieved, but the working range was too limited. The reason for this is probably the hindered movement of the domain boundaries. Samples with nanosized grains have an ordered two-domain magnetic structure with a permissible partial transition to a superparamagnetic state in regions with a grain size of less than 100 nm. The ordered magnetic structure, the small size of the domain, and the coexistence of ferromagnetic and superparamagnetic regions, although they reduce the maximum value of the shielding efficiency, significantly expand the working range in the nanostructured permalloy shielding coatings. As a result, a dependence between the grain and domain structure and the efficiency of magnetostatic shielding was found.ru
dc.language.isoenru
dc.publisherNanomaterialsru
dc.relation.ispartofseries11, 634;
dc.subjectpermalloyru
dc.subjectpulsed electrodepositionru
dc.subjectnanostructured coatingru
dc.subjectmicrostructureru
dc.subjectmagnetostatic shieldingru
dc.titleEfficiency of Magnetostatic Protection Using Nanostructured Permalloy Shielding Coatings Depending on Their Microstructureru
dc.typeArticleru


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