O. I. Pen’kova
Russian Academy of Sciences
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by O. I. Pen’kova.
Inorganic Materials | 2013
L. I. Podzorova; L. I. Shvorneva; A. A. Il’icheva; N. A. Alad’ev; O. I. Pen’kova
This paper presents our findings on phase formation processes during heat treatment of sol-gel synthesis products with the composition (mol %) 65(88ZrO2 + 12CeO2) + 35Al2O3 modified with 1 mol % MgO or Y2O3. The composites modified with 1 mol % MgO have been shown to differ significantly in phase composition from the parent nanopowders. Sintering is accompanied by partial decomposition of the tetragonal zirconia (T-ZrO2) based solid solution and the formation of a monoclinic zirconia (M-ZrO2) based solid solution and two aluminum-containing phases: corundum and the mixed oxide MgAl11CeO19. The addition of 1 mol % Y2O3 leads to successive formation of T-ZrO2 and corundum and improvement of their structural perfection. The observed differences in phase formation during heat treatment result in different grain size compositions in the microstructure of the composites.
Glass Physics and Chemistry | 2007
L. I. Podzorova; A. A. Il’icheva; L. I. Shvorneva; S. V. Kutsev; N. A. Mikhailina; O. I. Pen’kova
The phase transformations in nanosized precursors (precipitation products) prepared by the sol-gel processing and the formation of the microstructure of ceramic materials in the t-ZrO2-Al2O3 system are investigated. It is demonstrated that the phase transformation occurring during the precipitation depends on the precrystallization state that is governed by a sequence of precipitation of the components in the Al2O3-ZrO2-CeO2 system in the course of the synthesis of precursors. The nascent metastable phases of solid solutions based on t-ZrO2 and θ-Al2O3 subsequently have a substantial effect on the sizes of grains in the microstructure of the corresponding ceramics.
Refractories and Industrial Ceramics | 1999
L. I. Podzorova; A. A. Il’icheva; N. A. Mikhailina; O. I. Pen’kova
The effect of Lu2O3 on low-temperature stabilization of the tetragonal modification of ZrO2 is considered. The subject of study is ZrO2- Lu2O3 binary systems with 1 –9 mole % Lu2O3 for specimens of ZrO2 powders prepared by the method invented by the authors. It is established that low-temperature stabilization oft- ZrO2 occurs in the region of 6 –8 mole % concentration of Lu2O3. The obtained ceramic material has a density of 99.8% of the theoretical value, an ultimate bending strength of at least 800 MPa, and a crack resistance of at least 13 MPa · m1/2 at a content of Lu2O3 equal to 6 –8 mole %
Inorganic Materials | 2018
L. I. Podzorova; A. A. Il’icheva; O. I. Pen’kova; Vladimir P. Sirotinkin; O. S. Antonova; A. A. Konovalov
We have studied phase formation in calcium-modified Al2O3–ZrO2–CeO2 nanopowders during sol–gel synthesis. The results demonstrate that heat treatment of the nanopowders first leads to the formation of a zirconium dioxide-based solid solution stabilized with cerium cations. Raising the heat treatment temperature helps the crystallization of corundum, a stable phase of aluminum oxide, to reach completion. In the temperature range 1400–1550°C, we observe the formation of a second aluminum-containing phase: calcium cerium hexaaluminate consisting of long prismatic grains.
Inorganic Materials: Applied Research | 2017
L. I. Podzorova; S.A. Titov; A. A. Il’icheva; N. A. Mikhailina; O. I. Pen’kova; L. I. Shvorneva; V.E. Gubareva; T. N. Penkina
The effect of low-temperature aging of ceramics Zr0.97Y0.03O2 (Y-TZP) and Zr0.98Y0.02O2 (Yb-TZP) by the methods of the high-grade diffraction analysis and atomic force microckopy is studied. Formation of the phase M-ZrO2 in ceramic (Y-TZP) in a large quantity after hydrothermal impact in subsurface layers of ceramic samples is shown. A positive effect of the stabilizing cation Yb+3 on the phase composition stability and strength properties of ceramic based on T-ZrO2 is registered. Adaptation of the structural ceramic based on T-ZrO2 according to medical requirements is the aim of this study.
Glass and Ceramics | 2017
L. I. Podzorova; A. A. Il’icheva; O. I. Pen’kova; N. A. Alad’ev; A. S. Baikin; A. A. Konovalov; Egor Morokov
The production of composites based on nanopowders synthesized by the sol-gel method in the system aluminum oxide and tetragonal zirconium dioxide stabilized by cerium cations (Al2O3–[Ce–TZP]) is described. It is shown that modification of the compositions by calcium oxide promotes the formation of composites of a dispersion-hardening phase in the form of long-prismatic grains in the sintering process. The presence of this phase affects the increase of strength and resistance to brittle fracture of composites with a ZrO2 matrix and with an Al2O3 matrix. The strength in static bending of the composites reaches 1000 MPa and the cracking resistance K1c increases to 11.0 MPa·m1/2.
Inorganic Materials: Applied Research | 2016
L. I. Podzorova; A. A. Il’icheva; O. I. Pen’kova; N. A. Alad’ev; V. A. Volchenkova; S. V. Kutsev; L. I. Shvorneva
This article presents an investigation of the influence of modification of Al2O3–(Ce-TZP) with alkaline earth elements Ca+2 and Mg+2 on the phase composition, microstructure, and strength characteristics of composites. It is established that modification of Mg+2 compositions leads to a decrease in the strength parameters of composites, while introduction of Ca+2 contributes to an increase in the strength parameters of the respective composites owing to aggregation of effects of transformational and dispersive hardening. The obtained high-strength composites can be applied as constructional materials in engineering and medicine.
Glass Physics and Chemistry | 2014
L. I. Podzorova; A. A. Il’yicheva; O. I. Pen’kova; L. I. Shvorneva
The results of the investigations on the influence of CeO2 adding on the transformation of the metastable Al2O3 forms obtained by thermal treatment of xerogels are presented. It is established that in the presence of CeO2 the process of the formation of a stable phase of α-Al2O3 (corundum) takes place in a wider temperature range and is accomplished at a higher temperature (1300°C). It is suggested that the revealed mismatches on the diffractograms between the intensity values of the main analytical peaks of the corundum and its content in the samples are associated with the effect of screening caused by the differences in the mass coefficients of absorption of (μ) CeO2 and Al2O3.
Inorganic Materials: Applied Research | 2018
L. I. Podzorova; S. G. Chuklina; A. A. Il’icheva; A. A. Konovalov; O. I. Pen’kova; S. A. Maslenkova; A. I. Pylinina
Perspektivnye Materialy | 2017
L. I. Podzorova; S.A. Titov; A. A. Il’icheva; N.A. Michalina; O. I. Pen’kova; L. I. Shvorneva; V.E. Gubareva; T. N. Penkina