DYNAMICS OF STRUCTURAL-PHASE STATES OF NANOCRYSTALLINE Zr[O.sub.2] DURING SINTERING IN A CONSTANT MAGNETIC FIELD

The structure, the phase composition, and the dynamics of phase transformations of nanosystems based on zirconium dioxide Zr[O.sub.2](CaO) synthesized by the plasma-chemical method are studied. In order to lower the sintering temperatures and improve the physical and mechanical properties of the cer...

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Veröffentlicht in:Russian physics journal 2023-02, Vol.65 (10), p.1642
Hauptverfasser: Klishin, A.P, Ghyngazov, S.A
Format: Artikel
Sprache:eng
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Zusammenfassung:The structure, the phase composition, and the dynamics of phase transformations of nanosystems based on zirconium dioxide Zr[O.sub.2](CaO) synthesized by the plasma-chemical method are studied. In order to lower the sintering temperatures and improve the physical and mechanical properties of the ceramics, the Zr[O.sub.2]-CaO nanocrystalline system is subjected to activation sintering in an external magnetic field. A constant magnetic field inside the furnace volume is created by a toroidal coil with a special symmetrized winding. The ceramics sintered in a constant magnetic field of B = 0.02-1 T with a given [C.sub.3] symmetry at 1200-1400[degrees]C exhibits improved physical and mechanical characteristics and more perfect crystalline microstructures. Keywords: magnetic field, sintering, microstructure, zirconia ceramics.
ISSN:1064-8887
DOI:10.1007/s11182-023-02813-7