An assembly for a gas turbine engine includes a component and a finger seal. The component has a first surface and a second surface. The first surface has an elevation that differs from an elevation of the second surface. The finger seal is connected to the first surface and extends above the second
An assembly for a gas turbine engine includes a component and a finger seal. The component has a first surface and a second surface. The first surface has an elevation that differs from an elevation of the second surface. The finger seal is connected to the first surface and extends above the second surface. The disposition of the second surface relative to the finger seal creates a cavity below a curved portion of the finger seal.
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1. An assembly for a gas turbine engine, comprising: a component having a main surface, a protrusion extending from the main surface, and a raised mounting surface disposed on the protrusion, wherein the main surface has an elevation that is staggered relative to an elevation of the raised mounting
1. An assembly for a gas turbine engine, comprising: a component having a main surface, a protrusion extending from the main surface, and a raised mounting surface disposed on the protrusion, wherein the main surface has an elevation that is staggered relative to an elevation of the raised mounting surface; anda finger seal having a free end, a first curved section, and a fixed end, wherein the fixed end is connected to the raised mounting surface, the fixed end extending from the raised mounting surface such that the fixed end is offset from and generally parallel to the main surface, and wherein the first curved section is disposed adjacent the fixed end and is positioned over a portion of the main surface that is adjacent the raised mounting surface, and wherein the component has a first thickness at the main surface and a second thickness at the mounting surface, and wherein the second thickness is greater than the first thickness such that an undercut cavity is defined by the main surface and the fixed end of the finger seal, and wherein the finger seal comprises: a first ply; anda second ply extending along a length of the first ply, wherein the first and second plies are attached at the fixed end, and wherein the first ply is connected to the second ply at the free end by overlapping the first ply around an end of the second ply. 2. The assembly of claim 1, wherein the free end and the first curved section of the finger seal has a plurality of slots that extend to connect to keyholes adjacent the free end, and wherein the keyholes are positioned above the main surface. 3. The assembly of claim 1, wherein the free end of the finger seal cantilevers to a second curved section disposed above the main surface. 4. The assembly of claim 1, wherein a cooling air flow is passed along the main surface. 5. The assembly of claim 4, wherein the cooling air flow passes along the curved section of the finger seal. 6. The assembly of claim 1, wherein the staggered elevation of the main surface relative to the raised mounting surface creates an undercut below the curved section of the finger seal. 7. The assembly of claim 1, wherein the main surface is recessed relative to a remainder of the component including the raised mounting surface. 8. An assembly for a gas turbine engine, comprising: a component having a first surface and a second surface, wherein the first surface has an elevation that differs from an elevation of the second surface; anda finger seal connected to the first surface, the finger seal comprising: a curved portion;a fixed end extending from the first surface to the curved portion that is substantially parallel to and spaced from the second surface to define an undercut cavity, wherein a cooling air flow is passed along the second surface and along the curved portion of the finger seat;a first ply; anda second ply extending along a length of the first ply, wherein the first and second plies are fixed at the first surface, and wherein the first ply is connected to the second ply at a free end of the finger seal by overlapping the first ply around an end of the second ply. 9. The assembly of claim 8, wherein the finger seal has a plurality of slots connected to keyholes, and wherein the keyholes are positioned above the undercut cavity. 10. The assembly of claim 8, wherein the second surface is recessed relative to a remainder of the component including the first surface. 11. The assembly of claim 8, wherein the first surface is formed by a raised portion of the component. 12. The assembly of claim 8, wherein the finger seal is fixed to the first surface and cantilevers to a free end that is disposed above the second surface. 13. An assembly for a gas turbine engine, comprising: a component having a first surface, a mounting portion that extends from the first surface, and a second surface disposed on the mounting portion, wherein the second surface is offset from the first surface; anda finger seal connected to the second surface at a fixed end of the finger seal, the fixed end extending from the second surface to a first curved portion of the finger seal, wherein the fixed end of the finger seal is substantially parallel to the second surface, and wherein an undercut cavity is at least partially defined by the fixed end of the finger seal and the first surface. 14. The assembly of claim 13, wherein the finger seal has a plurality of slots connected to keyholes, and wherein the keyholes are positioned above the undercut cavity. 15. The assembly of claim 13, wherein the finger seal is fixed to the second surface and cantilevers to a free end that is spaced from the first surface. 16. The assembly of claim 13, wherein a cooling air flow is passed along the first surface and the first curved portion of the finger seal and into the undercut cavity. 17. The assembly of claim 13, wherein the first surface is recessed relative to a remainder of the component including the second surface. 18. The assembly of claim 13, wherein the first surface of the component and the finger seal at least partially define a main cavity in communication with a cooling air source, and wherein the undercut cavity communicates with the main cavity at the first curved portion. 19. The assembly of claim 18, wherein the finger seal extends at an oblique angle to the second surface to a free end of the finger seal, the free end having a second curved portion adapted to seal against a seal surface of an adjacent component. 20. The assembly of claim 19, wherein the finger seal comprises: a first ply; anda second ply extending along a length of the first ply, wherein the first and second plies are fixed at the second surface, and wherein the first ply is connected to the second ply at the free end of the finger seal by overlapping the first ply around an end of the second ply.
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