Vane stages
11408296 · 2022-08-09
Assignee
Inventors
Cpc classification
F05D2300/603
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2220/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D25/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D11/001
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D9/041
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2230/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2240/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2300/133
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2230/60
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2240/55
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D25/246
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D11/003
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D25/243
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01D9/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D11/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D25/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A vane stage includes an arcuate platform defining an axial centerline axis having a pair of flanges that extend radially inward from the platform. The flanges are axially spaced from one another and from respective forward and aft ends of the platform. The vane stage includes a vane extending radially outward from the platform and a seal carrier mounted to the flanges of the platform. A method for constructing a vane stage includes sliding a seal carrier between flanges of an arcuate platform. Each flange includes at least a pair of through holes and interfaces with a respective axial side of the seal carrier. The method includes drilling through holes in each axial side of the seal carrier by using the through holes of each flange as guides.
Claims
1. A component of a vane stage, comprising: a plurality of arcuate vane platforms, each arcuate vane platform of the plurality of arcuate vane platforms having a pair of flanges that extend radially inward from each arcuate vane platform of the plurality of arcuate vane platforms, wherein the pair of flanges are axially spaced apart from one another and from a respective forward end and aft end of each arcuate platform of the plurality of arcuate vane platforms and wherein each flange of the pair of flanges includes at least two through holes; a vane extending radially outward from each arcuate vane platform of the plurality of arcuate vane platforms; a seal carrier mounted axially between the pair of flanges of each arcuate vane platform of the plurality of arcuate vane platforms so that inner surfaces of the pair of flanges of each arcuate vane platform of the plurality of arcuate vane platforms interface with outer surfaces of the seal carrier; and a plurality of washers, each washer of the plurality of washers being mounted to the seal carrier opposite to a respective one of each of the pair of flanges of each one of the plurality of arcuate vane platforms across an axial thickness of a respective side of the seal carrier, wherein a portion of the seal carrier located between each washer of the plurality of washers and the respective one of each of the pair of flanges of each one of the plurality of arcuate vane platforms includes at least two through holes extending in an axial direction for receiving fasteners, and wherein each washer of the plurality of washers includes at least two through holes that align with the at least two through holes of the respective one of each of the pair of flanges of each arcuate vane platform of the plurality of arcuate vane platforms and the at least two through holes of the portion of the seal carrier located between each washer of the plurality of washers and the respective one of each of the pair of flanges of each one of the plurality of arcuate vane platforms, wherein a cross-sectional area of a surface of each washer of the plurality of washers that interfaces with a surface of the seal carrier is at least eight times greater in area than a total cross-sectional area of the at least two through holes in the portion of the seal carrier located between each washer of the plurality of washers and the respective one of each of the pair of flanges of each one of the plurality of arcuate vane platforms and each washer of the plurality of washers assists in spreading out fastener pre-load over inwardly facing sides of the seal carrier.
2. The component vane stage as recited in claim 1, wherein each washer of the plurality of washers has a race-track shape.
3. The component as in claim 1, wherein the seal carrier is formed from a different material than the plurality of arcuate vane platforms and the vane extending radially outward from each arcuate vane platform of the plurality of arcuate vane platforms.
4. The component as in claim 3, wherein the seal carrier is formed from a composite material.
5. The component as in claim 3, wherein the seal carrier is formed from a composite material and the vane extending radially outward from each arcuate vane platform of the plurality of arcuate vane platforms is formed from titanium.
6. The component as in claim 1, wherein the seal carrier is secured to the pair of flanges of each arcuate vane platform of the plurality of arcuate vane platforms without a bushing or an adhesive.
7. The component as in claim 6, wherein the seal carrier is formed from a different material than the plurality of arcuate vane platforms and the vane extending radially outward from each arcuate vane platform of the plurality of arcuate vane platforms.
8. The component as in claim 7, wherein the seal carrier is formed from a composite material.
9. The component as in claim 7, wherein the seal carrier is formed from a composite material and the vane extending radially outward from each arcuate vane platform of the plurality of arcuate vane platforms is formed from titanium.
10. The component as in claim 1, wherein the seal carrier has a first leg extending from a base, and a second leg spaced apart from the first leg, the second leg extending from the base.
11. The component as in claim 1, wherein the seal carrier has a “U” shaped configuration.
12. A vane stage comprising a plurality of components as recited in claim 1.
13. A method for constructing a component of a vane stage comprising: sliding a seal carrier between flanges of a plurality of arcuate platforms, wherein the flanges of each of the plurality of arcuate platforms are axially spaced apart from one another and extend radially inward from each of the plurality of arcuate platforms, wherein each flange of the flanges of the plurality of arcuate platforms includes at least a pair of through holes, and wherein each flange of the flanges of the plurality of arcuate platforms interfaces with a respective axial side of the seal carrier; drilling through holes in the respective axial side of the seal carrier by using the pair of through holes of each flange of the flanges of the plurality of arcuate platforms as guides; placing a plurality of washers opposite each flange of the flanges of the plurality of arcuate platforms across a portion of the seal carrier, wherein each washer of the plurality of washers includes at least two through holes for receiving fasteners for securing the respective axial side of the seal carrier to a respective flange of the flanges of the plurality of arcuate platforms, wherein the at least two through holes of each washer of the plurality of washers corresponds to the pair of through holes of each flange of the flanges of the plurality of arcuate platforms; and securing the respective axial side of the seal carrier to a respective flange of the flanges of the plurality of arcuate platforms with fasteners inserted through the through the holes in the respective axial side of the seal carrier and the pair of through holes of each flange of the flanges of the plurality of arcuate platforms, wherein a cross-sectional area of a surface of each washer of the plurality of washers that interfaces with a surface of the seal carrier is at least eight times greater in area than a total cross-sectional area of the at least two through holes in a portion of the seal carrier located between each washer of the plurality of washers and a respective one of each of the pair of flanges of each one of the plurality of arcuate vane platforms and each washer of the plurality of washers assists in spreading out fastener pre-load over inwardly facing sides of the seal carrier.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) So that those skilled in the art to which the subject disclosure appertains will readily understand how to make and use the devices and methods of the subject disclosure without undue experimentation, preferred embodiments thereof will be described in detail herein below with reference to certain figures, wherein:
(2)
(3)
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(6) Reference will now be made to the drawings wherein like reference numerals identify similar structural features or aspects of the subject disclosure. For purposes of explanation and illustration, and not limitation, a perspective view of an exemplary embodiment of a portion of a vane stage for a gas turbine engine constructed in accordance with the disclosure is shown in
(7) As shown in
(8) With continued reference to
(9) Vane stage 100 allows vanes 110 and platforms 102 to be joined to seal carrier 112 without the need for adhesives and without the need for bushings adhered to the composite. Adhesives are generally are not capable of operating at high operating temperatures and bushings tend to add weight to the vane stage assembly and tend to increase manufacturing complexity. Additionally, vane stage 100 overcomes traditional problems with using fasteners such as limitations to hole alignment and drilling, and slippage under low flange stack compression and access to fasteners inside the seal carrier.
(10) As shown in
(11) With reference now to
(12) With continued reference to
(13) As shown in
(14) With reference now to
(15) Method 200 includes securing the axial sides of the seal carrier to respective flanges with fasteners, for example, fasteners 114, inserted through the through holes of the flanges and the seal carrier, as shown in box 206. Securing the axial sides of the seal carrier to respective flanges includes placing a washer, for example, washer 124, opposite each flange across the seal carrier, also shown in box 206. Each washer includes at least two through holes, for example, through holes 130, for receiving the fasteners. The through holes of each washer correspond to the pair of through holes on each flange.
(16) The methods and systems of the present disclosure, as described above and shown in the drawings, provide for gas turbine engines and vane stages with superior properties including reduced weight and increased stiffness. While the apparatus and methods of the subject disclosure have been shown and described with reference to preferred embodiments, those skilled in the art will readily appreciate that changes and/or modifications may be made thereto without departing from the spirit and scope of the subject disclosure.