Method for making smooth uncreped throughdried sheets |
| OF THE INVENTION Directing attention to the Drawing, the invention will be described in further ... |
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Soft tissue |
| OF THE INVENTION Directing attention to the Drawing, the invention will be described in further ... |
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Method of making soft tissue products |
| It has now been discovered that certain throughdrying fabrics can impart significantly increased ... |
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Soft tissue |
| OF THE INVENTION Directing attention to the Drawing, the invention will be described in further ... |
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Potassium ion-exchange on surface of beta-spodumene |
| We claim: 1. A method for producing a unitary glass-ceramic article of high strength wherein the ... |
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Bent glass-ceramic plate and a method of making glass-ceramic bent plate |
| The present invention is therefore aimed at providing a procedure that makes it possible to produce ... |
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Method of making a leather-like sheet material by coagulating two polymers |
| What is claimed is: 1. A method for producing a leather-like sheet material having a good sponge ... |
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Mixtures of thermoplastic polymers in powder form |
| We claim: 1. A process for the preparation of mixtures of thermoplastic polymers in powder form ... |
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Shape memory polymers |
| OF THE INVENTION Shape memory polymer compositions, articles of manufacture thereof, and methods ... |
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Thermal barrier coating systems and materials
| Details |
Inventors: Maloney, Michael J.;
Assignee: United Technologies Corporation (Hartford, CT)
Primary Examiner: Turner; Archene
Assistant Examiner:
Attorney, Agent or Firm: Morrison, III; F. Tyler
A ceramic material has particular utility as a thermal insulating or thermal barrier coating on metallic substrates. The ceramic material includes gadolinia and zirconia, preferably forming gadolinia-zirconia oxide. The material may include fluorite and pyrochlore structure. This material exhibits chemical stability, thermal stability and thermal insulating properties superior to those of currently used thermal barrier ceramics, and also provides resistance to sintering and erosion comparable to currently used ceramics. A preferred material has between about 5-60 mol. % gadolinia. |
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DETAILED DESCRIPTION I claim: 1. A metallic article comprising a metallic substrate having a ceramic thermal barrier coating on its surface wherein the ceramic thermal barrier coating is composed of gadolinia and zirconia and has a cubic crystal structure. 2. An article as in claim 1, wherein the metallic substrate is selected from the group consisting of steels, superalloys, titanium alloys and copper alloys. 3. An article as in claim 1, wherein the coated article is adopted to be used in environments where the free surface of the ceramic coating will be heated and the free surface of the substrate will be cooled, whereby the ceramic coating will reduce heat flow. 4. An article as in claim 1, wherein the ceramic coating has a columnar microstructure. 5. A metallic article as in claim 1, wherein the metallic article has an oxide scale on its outer surface, the oxide scale consisting essentially of alumina, and wherein the ceramic coating is bonded to the oxide scale. 6. An article as in claim 1, wherein the ceramic coating is composed of gadolinia zirconia oxide having between about 5-60 mol. % gadolinia, balance zirconia. 7. An article as in claim 1, wherein the coating has a thermal conductivity less than about 1 W/(M . degree. C. ). 8. An article as in claim 1, wherein the coating is applied by a process selected from the group consisting of thermal spraying, sputtering and vapor deposition. 9. An article as in claim 1, wherein the coating has a porosity of between about 30-60 vol. %. 10. An article as in claim 1, further comprising: a ceramic bond coat between the ceramic coating and the metallic substrate. 11. An article as in claim 10, wherein the ceramic bond coat is composed of yttria stabilized zirconia. 12. An article as in claim 1, wherein the article defines a gas turbine engine component. 13. A metallic article comprising a metallic substrate, the substrate having an alumina forming coating on its surface and a ceramic thermal barrier coating bonded to the alumina forming coating, wherein the ceramic thermal barrier coating is composed of gadolinia and zirconia has a cubic crystal structure
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