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EXAFS Study of Yttria‐Stabilized Zirconia
Journal of the American Ceramic Society, 1986The local structural environments of Y 3+ and Zr 4+ in 18 wt% Y 2 O 3 ‐stabilized zirconia were studied using extended X‐ray absorption fine structure spectroscopy over the ...
C. R. A. CATLOW +3 more
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Vanadia reactions with yttria stabilized zirconia
Journal of Applied Physics, 1988The reaction of vanadia films with yttria stabilized single-crystal cubic and polycrystalline cubic-tetragonal zirconias was studied using Rutherford backscattering (RBS) and x-ray diffraction, with some selected depth profiling studies. Vandium on zirconia readily oxidizes at 500 °C to form vanadia films.
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Uniform precipitation of Yttria-Stabilized zirconia
Refractories, 1995An experiment on precipitation of zirconia by urea, urotropin, and ammonium hydroxide precipitants is described. The morphological and phase composition of the precipitated powders are investigated. It is shown that a buffer has a positive effect on reducing the agglomeration.
L. I. Podzorova +5 more
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Thermal Expansion of Yttria‐Stabilized Zirconia
Journal of the American Ceramic Society, 1964The thermal expansion of yttria-stabilized zirconia was measured in air and in a high-oxygen atmosphere. Room temperature-to-1000 deg C expansion measurements were made in an automatic recording dilatometer. Measurements above 1000 deg C were made in an oxide induction furnace and the change in length of the specimen was measured with telemicroscopes ...
T. H. NIELSEN, M. H. LEIPOLD
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Preparation of nanocrystalline yttria-stabilized zirconia
Journal of Materials Research, 1995Nanocrystalline powder with an average crystallite size of 8–12 nm, which was produced by a combustion synthesis process, was used to prepare dense, nanocrystalline articles. Green compacts of high green density were prepared by dry pressing and densified by a fast-firing process.
K.R. Venkatachari +4 more
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The Defect Structure of Yttria Stabilized Zirconia
MRS Proceedings, 1985AbstractWe present results of EXAFS and computer simulation studies of the defect structure of yttria-stabilised zirconia. The results are analysed in terms of dopant-vacancy association models for this phase.
C.R.A. Catlow +5 more
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Electrostatic dispersion of yttria-stabilized zirconia
Powder Technology, 1987Abstract These results merely indicate that the isoelectric point for this powder is substantially different than that commonly accepted for ‘stabilized zirconia’. It is recommended that this difference be taken into account in designing process systems for the material.
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Creep in Yttria‐ and Scandia‐Stabilized Zirconia
Journal of the American Ceramic Society, 1970Compression creep measurements at constant load on ZrO 2 ‐6 mol% Sc 2 O 3 (grain size ∼1 μm), ZrO 2 ‐6 mol% Y 2 O
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In Vitro Aging of Yttria‐Stabilized Zirconia
Journal of the American Ceramic Society, 1989Yttria‐stabilized zirconia was aged in distilled water, saline, and Ringer's solution for 140, 304, and 453 d. The significant decreases in strength (13% to 22%) is attributed to the phase transformation of zirconia from tetragonal to monoclinic. The effect of aging stabilized zirconia in physiological media is still unresolved.
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EXAFS Studies of Yttria Stabilized Zirconia
1984Yttria stabilized zirconia is a well known solid electrolyte which exhibits fast anion conduction at elevated temperatures. Below 1200° C pure zirconia (ZrO2) is monoclinic, but forms a stabilized cubic phase with the fluorite structure in a solid solution with 9.4 to 24 mole percent Y2O3.
A. I. Goldman +4 more
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