Автори | V.G. Andreev1,2, V.G. Kostishyn1 , A.G. Nalogin3 , A.Yu. Adamtsov1 , P.A. Ryapolov4 |
Афіліація | 1 National University of Science and Technology "MISiS", 4, Leninsky prosp., 119049, Moscow, Russia 2 Kuznetsk Institute of Information and Management Technologies, 57A, Mayakovsky str., 442530 Kuznetsk, Penza Region, Russia 3 JSC “RPC “ISTOK” named after Shokin”, 2A, Vokzalnaya st., 141190 Fryazino, Moscow region, Russia 4 Southwest State University, 94, 50 Let Octyabrya st., 305040 Kursk, Russian |
Е-mail | drvgkostishyn@mail.ru |
Випуск | Том 8, Рік 2016, Номер 4 |
Дати | Одержано 22.07.2016, опубліковано online - 23.12.2016 |
Цитування | V.G. Andreev, V.G. Kostishyn, A.G. Nalogin, et al., J. Nano- Electron. Phys. 8 No 4(2), 04079 (2016) |
DOI | 10.21272/jnep.8(4(2)).04079 |
PACS Number(s) | 75.50.Gg, 75.75. + a |
Ключові слова | Barium hexaferrite (3) , Wet grinding (2) , Surfactants (2) . |
Анотація | Study the influence of citric acid and isopropyl alcohol on processes of wet grinding mixture of starting ferrite constituting components and synthesized ferrite charge. Found that the introduction of additives during wet grinding allows to significantly reduce the temperature of synthesis and sintering ferrite raw blanks. Increased activity of powders is explained by the formation of active the gelled layers on the surface of particles in the process of wet grinding. |
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