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21 p, 913.7 KB Efficiency of magnetostatic protection using nanostructured permalloy shielding coatings depending on their microstructure / Zubar, Tatiana (Scientific-Practical Materials Research Centre of National Academy of Sciences of Belarus. Laboratory of Magnetic Films Physics (Belarus)) ; Kotelnikova, Anna (Scientific-Practical Materials Research Centre of National Academy of Sciences of Belarus. Laboratory of Magnetic Films Physics (Belarus)) ; Kaniukov, Egor (National University of Science and Technology MISiS. Department of Technology of Electronics Materials (Russia)) ; Kutuzau, Maksim (Leibniz Institute for Solid State and Materials Research Dresden (Germany)) ; Leistner, Karin (Leibniz Institute for Solid State and Materials Research Dresden (Germany)) ; Nielsch, Kornelius (Leibniz Institute for Solid State and Materials Research Dresden (Germany)) ; Vershinina, Tatiana (Joint Institute for Nuclear Research (Russia)) ; Tishkevich, Daria (South Ural State University. Laboratory of Single Crystal Growth (Russia)) ; Kanafyev, Oleg (Scientific-Practical Materials Research Centre of National Academy of Sciences of Belarus. Laboratory of Magnetic Films Physics (Belarus)) ; Kozlovskiy, Artem (The Institute of Nuclear Physics (Kazakhstan)) ; Zdorovets, Maxim (The Ural Federal University. Department of Intelligent Information Technologies (Russia)) ; Fedosyuk, Valery (Scientific-Practical Materials Research Centre of National Academy of Sciences of Belarus. Laboratory of Magnetic Films Physics (Belarus)) ; Trukhanov, Alex (South Ural State University. Laboratory of Single Crystal Growth (Russia)) ; Grabchikov, Sergey (Scientific-Practical Materials Research Centre of National Academy of Sciences of Belarus. Laboratory of Magnetic Films Physics (Belarus))
The 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. [...]
2021 - 10.3390/nano11030634
Nanomaterials, Vol. 11, Issue 3 (March 2021) , art. 634
2 documents

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