OUT OF CENTER COOLING BORE DRILLING FOR GAS TURBINE ROTOR
20240278344 ยท 2024-08-22
Inventors
- Karol TUCKI (Warszawa Polska, PL)
- Valentin STENZ (Baden Szwajcaria, CH)
- Lukasz SAJDAK (Warszawa Polska, PL)
- Mateusz KORUS (Warszawa Polska, PL)
Cpc classification
F01D5/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B23D77/025
PERFORMING OPERATIONS; TRANSPORTING
B23B2247/12
PERFORMING OPERATIONS; TRANSPORTING
B23B2247/04
PERFORMING OPERATIONS; TRANSPORTING
B23D77/14
PERFORMING OPERATIONS; TRANSPORTING
B23D75/00
PERFORMING OPERATIONS; TRANSPORTING
B23B13/123
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23D77/14
PERFORMING OPERATIONS; TRANSPORTING
B23D77/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A cooling bore guide for reaming an enlarged portion into a cooling bore of a rotor. The cooling bore guide may include a cutter guide for insertion into the cooling bore and a guide lock for insertion into an adjacent cooling bore.
Claims
1. A cooling bore guide for reaming an enlarged portion into a cooling bore of a rotor, comprising: a cutter guide for insertion into the cooling bore; and a guide lock for insertion into an adjacent cooling bore.
2. The cooling bore guide of claim 1, further comprising a mounting plate for mounting the cutter guide and the guide lock thereon.
3. The cooling bore guide of claim 1, wherein the cutter guide comprises an elongated sleeve.
4. The cooling bore guide of claim 3, wherein the elongated sleeve comprises a semicircular trough-like shape.
5. The cooling bore guide of claim 4, wherein the semicircular trough-like shape comprises an open end.
6. The cooling bore guide of claim 3, wherein the elongated sleeve comprises a grove therein.
7. The cooling bore guide of claim 1, wherein the cutter guide comprises a sleeve base.
8. The cooling bore guide of claim 7, wherein the sleeve base comprises a tube fitting in communication with an air hose.
9. The cooling bore guide of claim 7, wherein the sleeve base comprises a sleeve bearing therein.
10. The cooling bore guide of claim 1, wherein the guide lock comprises a guide locking sleeve.
11. The cooling bore guide of claim 10, wherein the guide lock comprises a guide lock screw positioned within the guide locking sleeve.
12. The cooling bore guide of claim 1, further comprising a reaming tool positioned within the cutter guide.
13. The cooling bore guide of claim 1, wherein the enlarged portion comprises a half moon shape.
14. The cooling bore guide of claim 1, wherein the enlarged portion comprises an enlarged diameter of about five to about twenty percent of a diameter of the cooling bore.
15. A method of enlarging a cooling bore in a rotor of a turbine, comprising: positioning a cutter guide in the cooling bore; positioning a guide lock in an adjacent cooling bore; locking the guide lock within the adjacent cooling bore; inserting a reaming tool within the cutter guide; and reaming the cooling bore to create an off-center enlarged portion.
16. A cooling bore guide for reaming an enlarged portion into a cooling bore of a rotor, comprising: a cutter guide for insertion into the cooling bore; the cutter guide comprising a semicircular shape; a guide lock for insertion into an adjacent cooling bore; and a mounting plate for mounting the cutter guide and the guide lock thereon.
17. The cooling bore guide of claim 16, wherein the cutter guide comprises an elongated sleeve with an open top end.
18. The cooling bore guide of claim 17, wherein the elongated sleeve comprises a grove therein.
19. The cooling bore guide of claim 16, wherein the guide lock comprises a guide locking sleeve and a guide lock screw positioned therein.
20. The cooling bore guide of claim 16, further comprising a reaming tool positioned within the cutter guide.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0020] Referring now to the drawings, in which like numerals refer to like elements throughout the several views,
[0021] The gas turbine engine 10 may use natural gas, various types of syngas, liquid fuels, and/or other types of fuels and blends thereof. The gas turbine engine 10 may be any one of a number of different gas turbine engines offered by General Electric Company of Schenectady, New York, including, but not limited to, those such as a GT1IN gas turbine engine and the like. The gas turbine engine 10 may be part of a simple cycle or a combined cycle power generation system. The gas turbine engine 10 may have different configurations and may use other types of components. Other types of gas turbine engines also may be used herein. Multiple gas turbine engines, other types of turbines, and other types of power generation equipment also may be used herein together.
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[0027] As described above, a rework of the rotor 45 generally may be required to remove indications of cracking and the like on the top surface of the cooling bores 60. Such removal extends the overall rotor lifetime and reduces the risk of failure during turbine operations. Current methods, however, require shipping the rotor 45 to a workshop, with associated downtime and transport costs.
[0028] With the cooling bore guide 120 described herein, the cutter guide 130 is inserted into the first existing cooling bore 280 to be reamed and may be locked into position with the guide lock 140 being inserted into the adjacent second cooling bore 290. Moreover, the use of the guide lock 140 ensures that no vibrations are generated during the reaming process. The shape of the cutter guide 130 may be selected such that the reaming tool 300 is guided only through the material that to be removed to create the enlarged portion 100, i.e., the off-center top part 115 of the bore 60 where the cracks may appear. Specifically, only the upper part of the cooling bore 60 is reamed to create the enlarged portion 100, while the rest of the cooling bore 280 remains the same.
[0029] The cutter guide 130 also is equipped with the groove 200 to allow the purge air 230 to remove debris. The purge air 230 also avoiding excessive wear of the reaming tool 300 so as to obtain the best possible accuracy of the enlarged portion 100. The cooling bore guide 120 thus provides non-concentric or off-center drilling of the cooling bores 60 with the reaming tool 300 without the need of shipping the rotor 45 to specialized workshops, thereby significantly reducing the cost and time spent for the repair.
[0030] It should be apparent that the foregoing relates only to certain embodiments of this application and resultant patent. Numerous changes and modifications may be made herein by one of ordinary skill in the art without departing from the general spirit and scope of the invention as defined by the following claims and the equivalents thereof.
[0031] Further aspects of the invention are provided by the subject matter of the following clauses:
[0032] 1. A cooling bore guide for reaming an enlarged portion into a cooling bore of a rotor, comprising a cutter guide for insertion into the cooling bore and a guide lock for insertion into an adjacent cooling bore.
[0033] 2. The cooling bore guide of any preceding clause, further comprising a mounting plate for mounting the cutter guide and the guide lock thereon.
[0034] 3. The cooling bore guide of any preceding clause, wherein the cutter guide comprises an elongated sleeve.
[0035] 4. The cooling bore guide of any preceding clause, wherein the elongated sleeve comprises a semicircular trough-like shape.
[0036] 5. The cooling bore guide of any preceding clause, wherein the semicircular trough-like shape comprises an open end.
[0037] 6. The cooling bore guide of any preceding clause, wherein the elongated sleeve comprises a grove therein.
[0038] 7. The cooling bore guide of any preceding clause, wherein the cutter guide comprises a sleeve base.
[0039] 8. The cooling bore guide of any preceding clause, wherein the sleeve base comprises a tube fitting in communication with an air hose.
[0040] 9. The cooling bore guide of any preceding clause, wherein the sleeve base comprises a sleeve bearing therein.
[0041] 10. The cooling bore guide of any preceding clause, wherein the guide lock comprises a guide locking sleeve.
[0042] 11. The cooling bore guide of any preceding clause, wherein the guide lock comprises a guide lock screw positioned within the guide locking sleeve.
[0043] 12. The cooling bore guide of any preceding clause, further comprising a reaming tool positioned within the cutter guide.
[0044] 13. The cooling bore guide of any preceding clause, wherein the enlarged portion comprises a half moon shape.
[0045] 14. The cooling bore guide of any preceding clause, wherein the enlarged portion comprises an enlarged diameter of about five to about twenty percent of a diameter of the cooling bore.
[0046] 15. A method of enlarging a cooling bore in a rotor of a turbine, comprising: positioning a cutter guide in the cooling bore; positioning a guide lock in an adjacent cooling bore; locking the guide lock within the adjacent cooling bore; inserting a reaming tool within the cutter guide; and reaming the cooling bore to create an off-center enlarged portion.
[0047] 16. A cooling bore guide for reaming an enlarged portion into a cooling bore of a rotor, comprising: a cutter guide for insertion into the cooling bore; the cutter guide comprising a semicircular shape; a guide lock for insertion into an adjacent cooling bore; and a mounting plate for mounting the cutter guide and the guide lock thereon.
[0048] 17. The cooling bore guide of any preceding clause, wherein the cutter guide comprises an elongated sleeve with an open top end.
[0049] 18. The cooling bore guide of any preceding clause, wherein the elongated sleeve comprises a grove therein.
[0050] 19. The cooling bore guide of any preceding clause, wherein the guide lock comprises a guide locking sleeve and a guide lock screw positioned therein.
[0051] 20. The cooling bore guide of any preceding clause, further comprising a reaming tool positioned within the cutter guide.