System for restoring turbine vane attachment systems in a turbine engine
Abstract
A system and method for repairing turbine vane attachment systems in a turbine engine. In at least one embodiment, the invention may be directed to a system and method for repairing wear on a diaphragm hook fit configured to attach diaphragm airfoils, such as stationary turbine vanes, to a combustion turbine case. The restoration system may be formed from a carriage assembly having an assortment of material processing implements usable to build up material in the worn locations of the turbine vane attachment system to reestablish a diaphragm hook fit within the specified tolerances. The restoration system may be configured so that the restoration process may occur without removing a rotor assembly, which can reduce the repair time by about two weeks. Thus, use of the restoration system can result in a significant time and cost savings.
Claims
exact text as granted — not AI-modified1 . A restoration system for restoring a turbine vane attachment system of a turbine engine, comprising:
a generally curved track adapted to be coupled to a combustion turbine case and adapted to support at least one movable carriage assembly; the at least one movable carriage assembly movably coupled to the generally curved track and including a housing for supporting material processing implements; at least one component drive system coupled to the movable carriage assembly and adapted to receive material processing implements for restoring a hook fit of the turbine vane attachment system; and at least one material processing implement attached to the at least one component drive system.
2 . The restoration system of claim 1 , wherein the generally curved track is formed from a plurality of curved tracks, wherein each track is configured to fit in close proximity to a turbine vane attachment system for a particular turbine vane row.
3 . The restoration system of claim 2 , wherein the plurality of curved tracks are formed from three curved tracks, comprising; a first curved track configured to be attached proximate to a row two turbine vane attachment system, a second track configured to be attached proximate to a row three turbine vane attachment system, and a third track configured to be attached proximate to a row four turbine vane attachment system.
4 . The restoration system of claim 1 , further comprising a transport system coupled to the carriage assembly for moving the carriage assembly relative to the generally curved track.
5 . The restoration system of claim 4 , wherein the transport system comprises a drive motor, a shaft extending from the drive motor, and at least one wheel attached to the shaft, and
6 . The restoration system of claim 5 , wherein the generally curved track comprises a plurality of teeth adapted to mesh with the at least one wheel of the transport system.
7 . The restoration system of claim 5 , wherein the generally curved track comprises first and second curved surfaces with a plurality of teeth adapted to mesh with drive gears of the transport system.
8 . The restoration system of claim 5 , wherein the drive motor is adapted to move the carriage assembly at speeds relative to the generally curved track of between about ½ inch per minute and about 30 inches per minute.
9 . The restoration system of claim 1 , further comprising a position control system for controlling the position of the material processing implements.
10 . The restoration system of claim 1 , further comprising an ancillary device support system including a hydraulic drive assembly coupled to the carriage assembly for driving hydraulic tools.
11 . The restoration system of claim 1 , wherein the at least one material processing implement comprises at least one weld head.
12 . The restoration system of claim 1 , wherein the at least one material processing implement comprises at least one milling cutter.
13 . The restoration system of claim 1 , further comprising a spindle coupled to the at least one component drive system and a spindle drive device in communication with the spindle that is configured to rotate the spindle.
14 . A method of repairing a turbine vane attachment system, comprising:
attaching a generally curved track to a combustion turbine case; attaching at least one movable carriage assembly movably coupled to the generally curved track, wherein the at least one movable carriage assembly includes at least one component drive system comprising a spindle coupled to the movable carriage and adapted to receive material processing implements for restoring a hook fit of the turbine vane attachment system, a spindle drive device in communication with the at least one spindle that is configured to rotate the spindle, a milling cutter coupled to the spindle for removing material from a hook fit of the turbine vane attachment system, and a weld head attached to the at least one moveable carriage assembly; positioning the milling cutter in contact with a portion of a turbine vane attachment system; rotating the milling cutter to prepare a portion of the turbine vane attachment system for material addition; adding material to a worn portion of the turbine vane attachment system using the weld head; rotating the milling cutter to remove some of the material added to the turbine vane attachment system to place the turbine vane attachment system within designed tolerances.
15 . The method of claim 14 , further comprising removing a cover half of a combustor turbine case to provide access to inner aspects of the combustor turbine case and removing stationary turbine vanes and rotatable turbine blades from turbine engine so that the generally curved track of the combustion case may be attached to the combustion turbine without removing a rotor assembly.
16 . The method of claim 14 , wherein attaching a generally curved track to a combustion turbine case comprises attaching the generally curved track over a turbine vane attachment system having adjacent turbine vane attachment systems thereby enabling the milling cutter to restore worn regions of the adjacent turbine vane attachment systems.
17 . The method of claim 14 , further comprising moving the at least one movable carriage assembly along the generally curved track while the milling cutter is in contact with an adjacent turbine vane attachment system.
18 . The method of claim 17 , wherein moving the at least one movable carriage assembly along the generally curved track comprises moving the carriage assembly at a rate of between about ½ inch per minute and about 30 inches per minute.Join the waitlist — get patent alerts
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