Claims
- 1. A turbine vane assembly comprising:
an outer vane support; an inner vane support in a fixed spaced apart position from the outer vane support; and, at least one airfoil shaped vane supported between the outer and inner vane supports; wherein:
the vane is of a low ductility material having a room temperature tensile ductility no greater than about 1%; the outer and inner vane supports are of material having a room temperature tensile ductility of at least about 5%; and, a high temperature resistant compliant seal is disposed between the vane and at least one of the outer and inner vane supports, substantially sealing the vane from passage of fluid between the vane and the vane support, the compliant seal isolating the vane from the vane support, enabling the vane to expand and contract independently of the vane support.
- 2. The assembly of claim 1 in which the outer and inner vane supports are of high temperature metal alloy based on at least one element selected from the group consisting of Fe, Co and Ni, and having a room temperature tensile ductility in the range of about 5-15%.
- 3. The assembly of claim 2 in which the vane comprises a ceramic matrix composite (CMC) material having a room temperature tensile ductility in the range of about 0.4-0.7%.
- 4. The assembly of claim 2 in which the vane comprises a NiAl intermetallic material having a room temperature tensile ductility in the range of about 0.1-1%.
- 5. The turbine vane assembly of claim 1 in which:
the at least one airfoil shaped vane includes a vane radially outer end and a vane radially inner end; the outer vane support includes therein at least one outer support opening defined by an outer support opening wall sized generally to receive the vane outer end, the outer vane support made of a material having a first coefficient of thermal expansion (CTE); the inner vane support includes therein at least one inner support opening defined by an inner support opening wall generally sized to receive the vane inner end, the inner vane support made of a material having a second CTE; the vane low ductility material has a third CTE different from the first CTE and second CTE, the ratio of the average of the first CTE and the second CTE to the third CTE being at least about 0.8; at least one of the vane outer end and the vane inner end being releasably disposed in the respective support opening in juxtaposition with the respective support opening wall; the high temperature resistant compliant seal being disposed between the at least one vane end and the respective support opening wall, substantially sealing the vane end from passage of fluid thereabout.
- 6. The assembly of claim 5 in which the low ductility material is selected from the group consisting of ceramic base materials and intermetallic base materials.
- 7. The assembly of claim 6 in which:
the low ductility material comprises a ceramic matrix composite; and, the ratio is in the range of about 1.4-6.7.
- 8. The assembly of claim 6 in which:
the low ductility material comprises a NiAl; and, the ratio is in the range of about 0.8-1.2.
- 9. The assembly of claim 6 in which the low ductility material has a fracture toughness of less than about 20 ksi·inch½.
- 10. The assembly of claim 5 in which a seal retainer is disposed over the compliant seal and bonded with the vane support to retain the compliant seal at the support opening wall.
- 11. The assembly of claim 6 in which the outer vane support and the inner vane support are high temperature metal alloys based on at least one element selected from the group consisting of Fe, Co, and Ni, and having a CTE of at least about 7 microinch/inch/° F.
- 12. The assembly of claim 9 in which the low ductility material comprises a ceramic matrix composite material having a room temperature tensile ductility in the range of about 0.4-0.7%, a third CTE in the range of about 1.5-5 microinch/inch/° F., and a fracture toughness in the range of about 5-20 ksi·inch½.
- 13. The assembly of claim 9 in which the low ductility material comprises a NiAl intermetallic material having a room temperature tensile ductility in the range of about 0.1-1%, a third CTE in the range of about 8-10 microinch/inch/° F., and a fracture toughness in the range of about 5-1 ksi·inch½.
- 14. The assembly of claim 5 in which:
the vane outer end and the vane inner end each is releasably disposed in the respective outer support opening and the inner support opening in juxtaposition with the respective outer support opening wall and the inner support opening wall; and, a first high temperature resistant compliant seal is disposed between the outer support opening wall and the vane outer end, and a second high temperature resistant compliant seal is disposed between the inner support opening wall and the vane inner end.
- 15. The assembly of claim 14 in which a seal retainer is disposed over each of the first and second compliant seals and bonded with the respective outer and inner vane supports.
Government Interests
[0001] The Government has rights to this invention pursuant to Contract No. N00019-91-C-0165 awarded by the Department of the Navy.