Search Results - "Andryushina, I.N."
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Multi-element ferroactive materials based on KNN-PZT compositions with fundamentally different physical properties
Published in Heliyon (01-02-2020)“…Quasibinary section solid solutions of a four-component system of the (1-x)(Na0.5K0.5)NbO3-xPb(Ti0.5Zr0.5)O3 composition, based on compositions with…”
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Structurization, Phase Rule Diagram, Relaxation Processes and Radio-Absorbing Properties of Solid Solutions Based on a Binary System BaNb2O6-SrNb2O6
Published in Applied sciences (01-10-2018)“…The investigation results of the processes of phase formation in barium niobate, strontium, and their solid solutions in the conditions of the variability of…”
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Crystal structure, polarization properties and reverse nonlinearity of solid solutions of the KNN-PZT system in a wide range of external influences
Published in Ceramics international (01-01-2021)“…Experimental research of the crystal structure, polarization properties, and reverse nonlinearity of ceramic solid solutions of the (1-x)…”
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Evolution of the macroresponses during the transition from two-to six-component systems of the solid solutions with fundamentally different properties
Published in Ceramics international (01-10-2023)“…The solid solutions (SS) of the n-component (n = 2 … 6) systems with the participation of two fundamentally different bases – (Na, K)NbO3 (NKN) and Pb(Ti,…”
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The effects of the modification of the BST-system solid solutions with rare earth elements
Published in Ceramics international (15-01-2022)“…The conditions for the preparation of the solid solutions of a binary system of barium-strontium titanates with the substitutions in the A-sublattice with the…”
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The influence of thermodynamic background on the phase picture, macroresponses and the effects of the temporary aging of lead titanium doped with alkaline earth metal oxides
Published in Ceramics international (15-02-2021)“…The solid solutions of the (Pb1−α1−α2Srα1Baα2)TiO3 system with α1 = 0.02–0.36, α2 = 0.0073–0.1339 were obtained by the two-stage solid-phase synthesis followed…”
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Features of the structure and macro responses in hard ferro piezoceramics based on the PZT system
Published in Ceramics international (15-10-2018)“…The structure, microstructure, dielectric and piezoelectric properties of two ferroelectric materials based on the modified PbTiO3-PbZrO3 (PZT) system,…”
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Crystal structure, microstructure and electrophysical properties of highly sensitive ferroactive materials based on the Pb(Zr1-xTix)O3 system
Published in Materials science & engineering. B, Solid-state materials for advanced technology (01-09-2022)“…[Display omitted] •Selected promising compositions - the basis of functional materials.•Comprehensive studies of PZT-based materials have been carried…”
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Multicomponent ferroactive materials for low-frequency applications: Features of the crystal and grain structure, macro-responses
Published in Ceramics international (01-10-2019)“…Two-stage solid-phase synthesis followed by sintering according to the usual ceramic technology prepared high-density solid solutions of the composition…”
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Preparation, Structure, and Dielectric and Magnetic Properties of Sr[Fe.sub.2/3][W.sub.1/3][O.sub.3] Ceramics
Published in Physics of the solid state (01-03-2018)“…Polycrystalline samples of Sr[Fe.sub.2/3][W.sub.1/3][O.sub.3] (SFWO) ceramic were obtained by solid-phase reactions with subsequent sintering using…”
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From binary PZT system to multi-component ferroactive materials
Published in Materialia (01-03-2024)“…For the first time, ceramic solid solutions of the five-component system 1-x)(0.5(Na0.5K0.5)NbO3–0.5Pb(Zr0.5Ti0.5)O3)-x/2CdNb2O6 with concentrations of…”
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The PZT system (PbTixZr1−xO3, 0≤x≤1.0): High temperature X-ray diffraction studies. Complete x-T phase diagram of real solid solutions (Part 3)
Published in Ceramics international (01-04-2013)“…Based on high temperature x-ray diffraction studies of the PZT system (PbTixZr1−xO3, 0.0≤x≤1.0) the complete x-T phase diagram of solid solutions is built,…”
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The PZT system (PbTixZr1–xO3, 0≤x≤1.0): The real phase diagram of solid solutions (room temperature) (Part 2)
Published in Ceramics international (01-03-2013)“…The sequence of phase transformations in the ceramic system PbTixZr1−xO3 (0≤x≤1.0) is determined and the real phase diagram of solid solutions is built. The…”
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Effect of specific features of the phase formation on structural transformations and the formation of properties of solid solutions of the Pb[Zr.sub.1-x][Ti.sub.x][O.sub.3] system
Published in Physics of the solid state (01-04-2015)“…The x-T phase diagram (T = 25°C) of the Pb[Zr.sub.1-x][Ti.sub.x][O.sub.3] system has been constructed in the entire solubility range of components 0 ≤ x [less…”
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Refined phase portrait of the rhombohedral region of the x-T diagram of the Pb[O.sub.3] system and singularities of dielectric spectra of its solid solutions
Published in Physics of the solid state (01-12-2015)“…The boundaries of the phase states of solid solutions in the rhombohedral region of the Pb([Zr.sub.1-x][Ti.sub.x])[O.sub.3] (0 [less than or equal to] x ≤…”
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The PZT system (PbTixZr1−xO3, 0≤x≤1.0): Dielectric response of solid solutions in broad temperature (10≤T≤1000K) and frequency (10−2≤f≤107Hz) ranges (Part 4)
Published in Ceramics international (01-05-2013)“…Solid solution (SS) ceramics of the PZT (PbTixZr1−xO3, 0≤x≤1.0) system were studied in broad temperature (10≤T≤1000K) and electric field frequency…”
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The PZT system (PbZr1-xTixO3, 0.0≤x≤1.0): Specific features of recrystallization sintering and microstructures of solid solutions (Part 1)
Published in Ceramics international (01-01-2013)“…This work is concerned with the specific features of sintering of solid solutions of the PZT system (PbZr1−xTixO3, 0.0≤x≤1.0) depending on composition. The…”
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The PZT system (PbTixZr1−xO3, 0≤x≤1.0): The dependences of electrophysical properties of solid solutions on the electric field strength and component concentration (Part 5)
Published in Ceramics international (01-09-2013)“…The physical properties of PZT (PbTixZr1−xO3, 0.0≤x≤1.0) ceramics were studied in broad ranges of constant and alternating electric field strengths…”
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