Advanced ceramic-coating development for industrial/utility gas turbines. Final report
Technical Report
·
OSTI ID:6225035
A program was conducted with the objective of developing advanced thermal barrier coating (TBC) systems. Coating application was by plasma spray. Duplex, triplex and graded coatings were tested. Coating systems incorporated both NiCrAlY and CoCrAlY bond coats. Four ceramic overlays were tested: ZrO/sub 2/.8Y/sub 2/O/sub 3/; CaO.TiO/sub 2/; 2CaO.SiO/sub 2/; and MgO.Al/sub 2/O/sub 3/. The best overall results were obtained with a CaO.TiO/sub 2/ coating applied to a NiCrAlY bond coat. This coating was less sensitive than the ZrO/sub 2/.8Y/sub 2/O/sub 3/ coating to process variables and part geometry. Testing with fuels contaminated with compounds containing sulfur, phosphorus and alkali metals showed the zirconia coatings were destabilized. The calcium titanate coatings were not affected by these contaminants. However, when fuels were used containing 50 ppM of vanadium and 150 ppM of magnesium, heavy deposits were formed on the test specimens and combustor components that required frequent cleaning of the test rig. During the program Mars engine first-stage turbine blades were coated and installed for an engine cyclic endurance run with the zirconia, calcium titanate, and calcium silicate coatings. Heavy spalling developed with the calcium silicate system. The zirconia and calcium titantate systems survived the full test duration. It was concluded that these two TBC's showed potential for application in gas turbines. Process variables and substrate composition were found to be critical and further work is required to relate them to coating performance.
- Research Organization:
- Solar Turbines, Inc., San Diego, CA (USA)
- DOE Contract Number:
- AI01-77ET13111
- OSTI ID:
- 6225035
- Report Number(s):
- DOE/NASA/0109-1; NASA-CR-167852; ON: DE83012326
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
42 ENGINEERING
420200* -- Engineering-- Facilities
Equipment
& Techniques
ALKALINE EARTH METAL COMPOUNDS
ALUMINIUM COMPOUNDS
ALUMINIUM OXIDES
CALCIUM COMPOUNDS
CALCIUM OXIDES
CERAMICS
CHALCOGENIDES
CHEMICAL REACTIONS
COATINGS
CORROSION RESISTANCE
DEPOSITION
FUELS
GAS TURBINES
IMPURITIES
MACHINERY
MAGNESIUM COMPOUNDS
MAGNESIUM OXIDES
OXIDATION
OXIDES
OXYGEN COMPOUNDS
PERFORMANCE TESTING
PLASMA ARC SPRAYING
PROTECTIVE COATINGS
SPRAY COATING
SURFACE COATING
TESTING
THERMAL CYCLING
TITANIUM COMPOUNDS
TITANIUM OXIDES
TRANSITION ELEMENT COMPOUNDS
TURBINE BLADES
TURBINES
TURBOMACHINERY
YTTRIUM COMPOUNDS
YTTRIUM OXIDES
ZIRCONIUM COMPOUNDS
ZIRCONIUM OXIDES
420200* -- Engineering-- Facilities
Equipment
& Techniques
ALKALINE EARTH METAL COMPOUNDS
ALUMINIUM COMPOUNDS
ALUMINIUM OXIDES
CALCIUM COMPOUNDS
CALCIUM OXIDES
CERAMICS
CHALCOGENIDES
CHEMICAL REACTIONS
COATINGS
CORROSION RESISTANCE
DEPOSITION
FUELS
GAS TURBINES
IMPURITIES
MACHINERY
MAGNESIUM COMPOUNDS
MAGNESIUM OXIDES
OXIDATION
OXIDES
OXYGEN COMPOUNDS
PERFORMANCE TESTING
PLASMA ARC SPRAYING
PROTECTIVE COATINGS
SPRAY COATING
SURFACE COATING
TESTING
THERMAL CYCLING
TITANIUM COMPOUNDS
TITANIUM OXIDES
TRANSITION ELEMENT COMPOUNDS
TURBINE BLADES
TURBINES
TURBOMACHINERY
YTTRIUM COMPOUNDS
YTTRIUM OXIDES
ZIRCONIUM COMPOUNDS
ZIRCONIUM OXIDES