IP Library Granted Patent US 8,449,994
Granted Patent B2
US 8,449,994 · App. 12/495,208 · Granted May 28, 2013

Turbine engine components

Inventor: Vladimir K. Tolpygo (Scottsdale, AZ)
Assignee: Honeywell International Inc.
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Quick Facts
Patent No.
US 8,449,994
App. No.
12/495,208
Granted
May 28, 2013
Kind
B2
Abstract

A thermal barrier coating is formed over the substrate. A majority of the thermal barrier coating comprises a multi-phase material comprising a polycrystalline material including two or more phases. Each phase forms an individual grain, adjacent individual grains are separated by grain boundaries, each phase comprises an oxide compound, the multi-phase material is formed from three or more constituents, the three or more constituents consist of different materials that are not completely soluble in each other, and the two or more phases are not completely soluble in each other and do not form only one compound.

Claims (28)

1. A turbine engine component, comprising:

a substrate; and

a thermal barrier coating formed over the substrate, a majority of the thermal barrier coating comprising a multi-phase material, the multi-phase material comprising a polycrystalline material including two or more phases,

wherein:

each phase forms an individual grain,

adjacent individual grains are separated by grain boundaries,

each phase comprises an oxide compound,

the multi-phase material is formed from three or more constituents,

the three or more constituents consist of different materials that are not completely soluble in each other,

the two or more phases are not completely soluble in each other and do not form only one compound,

the three or more constituents comprise ZrO 2 , YO 1.5 , and TaO 2.5 and

the two or more phases consist essentially of (Y+Ta)-doped tetragonal zirconia, yttrium tantalate YTaO 4 , and orthorhombic phase Zr 6 Ta 2 O 17 .

2. The turbine engine component of claim 1 , wherein:

the multi-phase material has a first volume fraction of a first oxide phase and a second volume fraction of a second oxide phase, and

the first volume fraction and the second volume fraction is not uniform across a thickness of the thermal barrier coating.

3. The turbine engine component of claim 1 , wherein each individual grain has an average diameter within a range of about 0.01 microns to about 5 microns.

4. The turbine engine component of claim 1 , wherein the multi-phase material includes pores and a volume fraction of the pores in the thermal barrier coating is in a range of about 0% to about 25%.

5. A turbine engine component, comprising:

a substrate; and

a thermal barrier coating formed over the substrate, a majority of the thermal barrier coating comprising a multi-phase material, the multi-phase material comprising a polycrystalline material including two or more phases,

wherein:

each phase of the two or more phases forms an individual grain,

adjacent individual grains are separated by grain boundaries,

each phase of the two or more phases comprises an oxide compound or a solid solution,

the two or more phases are not completely soluble in each other and do not form only one compound,

the multi-phase material is formed from three or more constituents,

the three or more constituents comprise ZrO 2 , YO 1.5 , and TaO 2.5 , and

the two or more phases consist essentially of (Y+Ta)-doped tetragonal zirconia plus orthorhombic phase Zr 6 Ta 2 O 17 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 30, 2009
From: TOLPYGO, VLADIMIR K.
To: HONEYWELL INTERNATIONAL INC.
Reel/Frame 022897/0339 →
Continuity (1)
Related Publication 20100327213A1 · Dec 30, 2010