Phase Evolution in Yttria‐Stabilized Zirconia Thermal Barrier Coatings Studied by Rietveld Refinement of X‐Ray Powder Diffraction Patterns

Фазовая эволюция теплозащитных покрытий из диоксида циркония, стабилизированного оксидом иттрия, исследованная методом уточнения Ритвельда по дифракционным картинам рентгеновской порошковой дифракции
Walter Steurer, Valery Shklover, G. Witz, Sharath Bachegowda, Hans‐Peter Boßmann
2007-08-02

Rietveld refinementX-ray diffractionphase transformationthermal barrier coatingsyttria-stabilized zirconia
One failure mechanism of thermal barrier coatings composed of yttria‐stabilized zirconia (YSZ) has been proposed to be caused, in part, by the transformation of the tetragonal phase of YSZ into its monoclinic phase. Normally, studies of phase evolution are performed by X‐ray diffraction (XRD) and by evaluating the intensities of a few diffraction peaks for each phase. However, this method misses some important information that can be obtained with the Rietveld method. Using Rietveld's refinement of XRD patterns, we observed, upon annealing of YSZ coatings, an increase of cubic phase content, a reduction in as‐deposited tetragonal phase content, and the appearance of a new tetragonal phase having a lower yttria content that coexists with the as‐deposited tetragonal phase of YSZ.
1
A new tetragonal phase with lower yttria content appears during annealing and coexists with the as-deposited tetragonal phase.
2
Annealing YSZ thermal barrier coatings increases the fraction of the cubic phase.
3
Annealing reduces the content of the as-deposited tetragonal YSZ phase.
4
Rietveld refinement of X-ray diffraction patterns reveals more comprehensive YSZ phase evolution than evaluating a few individual diffraction-peak intensities.
5
The observed phase evolution provides evidence relevant to the proposed tetragonal-to-monoclinic transformation failure mechanism, although the abstract specifically reports cubic and tetragonal changes.

yttria-stabilized zirconia (YSZ) thermal barrier coatings

phase evolution during annealing, including cubic-phase increase, reduction of the as-deposited tetragonal phase, and formation of a lower-yttria tetragonal phase

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2007-08-02
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Walter Steurer
Valery Shklover
G. Witz
Sharath Bachegowda
Hans‐Peter Boßmann
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