Please use this identifier to cite or link to this item: https://dspace.ncfu.ru/handle/123456789/32973
Title: Mechanism for Reducing Agglomeration in YAG Ceramic Powders Using Ammonium Sulfate Dispersant
Authors: Kravtsov, A. A.
Кравцов, А. А.
Malyavin, F. F.
Малявин, Ф. Ф.
Vakalov, D. S.
Вакалов, Д. С.
Tarala, L. V.
Тарала, Л. В.
Lapin, V. A.
Лапин, В. А.
Suprunchuk, V. E.
Супрунчук, В. Е.
Brazhko, E. A.
Бражко, Е. А.
Medyanik, E. V.
Медяник, Е. В.
Tarala, V. A.
Тарала, В. А.
Keywords: Agglomeration;Ammonium sulfate;Ceramic powder;Dispersant;YAG;Yttrium aluminum garnet
Issue Date: 2026
Publisher: Springer
Citation: Kravtsov A. A., Malyavin F. F., Vakalov D. S., Tarala L. V., Lapin V. A., Suprunchuk V. E., Brazhko E. A., Medyanik E. V., Tarala V. A. Mechanism for Reducing Agglomeration in YAG Ceramic Powders Using Ammonium Sulfate Dispersant // Glass and Ceramics (English translation of Steklo i Keramika). - 2026. - 82 (11-12). - pp. 429 - 434. - DOI: 10.1007/s10717-026-00812-x
Series/Report no.: Glass and Ceramics (English translation of Steklo i Keramika)
Abstract: This study examines yttrium aluminum garnet (YAG) powders synthesized by chemical precipitation with and without ammonium sulfate dispersant. The influence of the dispersant on particle size distribution during calcination at various temperatures was evaluated. Scanning electron microscopy (SEM) revealed pronounced changes in the particle size and morphology of the powder, depending on the presence of the dispersant. Phase transformation kinetics were investigated using x-ray diffraction (XRD) and simultaneous thermal analysis (STA). The results support a new mechanism for reducing agglomeration in YAG powders through the addition of ammonium sulfate, which involves the formation of intermediate yttrium sulfate and oxysulfate phases that gradually decompose into the garnet phase.
URI: https://dspace.ncfu.ru/handle/123456789/32973
Appears in Collections:Статьи, проиндексированные в SCOPUS, WOS

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