Turbomachine rotor blade milling machine system and method of field repairing a turbomachine rotor blade
09988906 ยท 2018-06-05
Assignee
Inventors
- Jason Matthew Clark (Loveland, OH, US)
- John William Herbold (Fountain Inn, SC, US)
- James Bradford Holmes (Fountain Inn, SC, US)
Cpc classification
F05D2220/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2230/80
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2240/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2230/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B23C9/00
PERFORMING OPERATIONS; TRANSPORTING
Y10T29/49318
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F01D5/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D25/285
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D5/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B23C3/30
PERFORMING OPERATIONS; TRANSPORTING
B23P6/002
PERFORMING OPERATIONS; TRANSPORTING
Y10T29/37
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F01D5/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/324
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B23C3/30
PERFORMING OPERATIONS; TRANSPORTING
F04D29/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D5/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D5/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B23C9/00
PERFORMING OPERATIONS; TRANSPORTING
F01D5/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A turbomachine rotor blade milling machine system includes a fixture having a body including first and second opposing surfaces and a slot. The fixture is configured and disposed to connect with first and second rotor blade sections mounted in a rotor wheel. A mounting system includes at least one mounting element coupled to one of the first and second opposing surfaces of the body at the slot. A milling machine is coupled to the one of the first and second opposing surfaces through the at least one mounting element. The milling machine includes a cutter and is configured and disposed to form an opening extending axially through a dovetail portion of a third rotor blade section arranged between the first and second rotor blade sections.
Claims
1. A turbomachine, comprising: a compressor portion comprising: a compressor rotor wheel defining a plurality of slots; and a plurality of compressor rotor blades, each compressor rotor blade comprising a root section received by one of the plurality of slots of the compressor rotor wheel; a combustor assembly; a turbine portion comprising: a turbine rotor wheel defining a plurality of slots; and a plurality of turbine rotor blades, each turbine rotor blade comprising a root section received by one of the plurality of slots of the turbine rotor wheel; and a machining system comprising a fixture mounted to the root section of one of the compressor rotor blades or the root section of one of the turbine rotor blades.
2. The turbomachine of claim 1, wherein the fixture mounts to the root sections of two of the plurality of compressor rotor blades or to the root sections of two of the plurality of turbine rotor blades.
3. The turbomachine of claim 1, further comprising: a dummy dovetail section positioned in one of the plurality of slots in the compressor rotor wheel or in one of the plurality of slots in the turbine rotor wheel, wherein the fixture mounts to the dummy dovetail section.
4. The turbomachine of claim 1, wherein the fixture mounts to the root section of one of the plurality of compressor rotor blades.
5. The turbomachine of claim 1, wherein the fixture mounts to the root section of one of the plurality of turbine rotor blades.
6. The turbomachine of claim 1, wherein the compressor rotor wheel defines a plurality of dovetail slots.
7. The turbomachine of claim 1, wherein the turbine rotor wheel defines a plurality of dovetail slots.
8. The turbomachine of claim 1, wherein the root portion of one of the plurality of compressor rotor blades or the root portion of one of the plurality of turbine rotor blades define a plurality of openings.
9. The turbomachine of claim 8, wherein the fixture defines a plurality of openings, and wherein each of the plurality of openings defined by the fixture are axially and circumferentially aligned with one of the plurality of openings defined by the root portion of one of the plurality of compressor rotor blades or the root portion of one of the plurality of turbine rotor blades.
10. The turbomachine of claim 1, wherein the machining system comprises a milling machine, the milling machine comprising a cutter for forming an opening in the root portion of one of the plurality of compressor rotor blades or the root portion of one of the plurality of turbine rotor blades.
11. The turbomachine of claim 10, wherein the machining system comprises a mounting system for coupling the milling machine to the fixture.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) The subject matter, which is regarded as the invention, is particularly pointed out and distinctly claimed in the claims at the conclusion of the specification. The foregoing and other features, and advantages of the invention are apparent from the following detailed description taken in conjunction with the accompanying drawings in which:
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(10) The detailed description explains embodiments of the invention, together with advantages and features, by way of example with reference to the drawings.
DETAILED DESCRIPTION OF THE INVENTION
(11) A turbomachine is indicated generally at 2 in
(12) In accordance with an exemplary embodiment, turbomachine 2 includes a blade milling system 40 mounted to first stage compressor rotor wheel 16. As will become more evident below, blade milling system 40 is employed to remove frozen compressor rotor blades 18 from first stage compressor rotor wheel 16. More specifically, blade milling system 40 facilitates in field or in situ removal and repair of frozen rotor blades. Blade milling system 40 includes a fixture 44 and a milling machine 48. Fixture 44 serves as an interface between first stage compressor rotor wheel 16 and milling machine 48.
(13) As best seen in
(14) Mounting section 70 includes a plurality of mounting members 79-82 that take the form of recessed openings 84-87 respectively. Recessed openings 84 and 85 are spaced from recessed openings 86 and 87 by a rotor blade width. More specifically, recessed openings 84 and 85 are arranged to align with one rotor blade and recessed openings 86 and 87 are arranged to align with another rotor blade with a third rotor blade being centrally located therebetween as will be detailed more fully below. Guide section 74 extends substantially perpendicularly from mounting section 70 and includes a plurality of threaded openings 90-93. A slot 96 extends through guide section 74 to mounting section 70. Slot 96 is centrally located on fixture 44. Fixture 44 is also shown to include first and second handles 99 and 100 projecting from outer peripheral edge 63 on opposing sides (not separately labeled) of mounting section 70.
(15) In further accordance with an exemplary embodiment, fixture 44 includes a mounting system 106 provided on guide section 74. Mounting system 106 includes first and second mounting elements 108 and 109. First mounting element 108 is secured to guide section 74 through mechanical fasteners (not separately labeled) that engage with threaded openings 90 and 91. Second mounting element 109 is secured to guide section 74 through mechanical fasteners (not separately labeled) that engage with threaded openings 92 and 93. Each mounting element 108 and 109 includes elongated openings or slots (also not separately labeled). Slots provide adjustability for mounting elements 108 and 109 on guide section 74. Mounting system 106 secures a milling machine guide member 116 to guide section 74.
(16) Milling machine guide member 116 includes a first guide element 123 and a second guide element 124. First guide element 123 is coupled to guide section 74. First guide element 123 is also coupled to second guide element 124 through a dovetail interface 130. Dovetail interface 130 allows for a sliding, axial shifting of second guide element 124 relative to first guide element 123. Fixture 44 is also shown to include first and second axial alignment members 137 and 138. Axial alignment members 137 and 138 establish a desired axial alignment of fixture 44 relative to first stage compressor rotor wheel 16. As will be detailed more fully below, fixture 44 supports and aligns milling machine 48 to create an opening in rotor blade 18. More specifically, milling machine 48 is mounted to second guide element 124. Once in position, a cutter 147, mounted to a cutting head 149 of milling machine 48, extends through slot 96. Second guide element 124 is shifted axially over guide section 74 to move cutter 147 through rotor blade 18.
(17) Reference will now follow to
(18) Milling machine 48 is activated and shifted axially across first stage compressor rotor wheel 16 causing cutter 147 to form an axial slot 188 through a dovetail portion 190 of rotor blade 18b, as shown in
(19) At this point it should be understood that the turbomachine rotor blade milling system in accordance with the exemplary embodiments facilitates an in-field removal of frozen, e.g., locked into position, rotor blades. Instead of removing and shipping a rotor wheel to a repair facility, which can cost upwards of a million dollars or more, the rotor wheel may now be repaired in place. It should also be understood that while described in terms of removing frozen rotor blades from a first stage of a compressor, the exemplary embodiment may be employed to remove rotor blades from rotor wheels positioned at any stage of a turbomachine compressor portion. Moreover, the exemplary embodiments may be employed to remove rotor blades from rotor wheels arranged in a turbomachine turbine portion. Further, while described as being joined to the rotor wheel through mechanical fasteners, other structure, such as magnets may also be employed. Magnets may also be employed to join the milling machine guide member to the fixture. In addition, while described as being employed to achieve in-field removal of frozen blades, the exemplary embodiments may also be employed out of the field in a repair shop for example.
(20) While the invention has been described in detail in connection with only a limited number of embodiments, it should be readily understood that the invention is not limited to such disclosed embodiments. Rather, the invention can be modified to incorporate any number of variations, alterations, substitutions or equivalent arrangements not heretofore described, but which are commensurate with the spirit and scope of the invention. Additionally, while various embodiments of the invention have been described, it is to be understood that aspects of the invention may include only some of the described embodiments. Accordingly, the invention is not to be seen as limited by the foregoing description, but is only limited by the scope of the appended claims.