Claims
- 1. A compressor comprising:
a casing having at least one slot, the slot having a pair of side edges, each side edge having a groove; a plurality of vane units, each vane unit having a base and airfoil vane projecting from the base the base having a pair of holes; and a pin extending between the holes in adjacent bases of the vane units for forming a ring from a plurality of vane units.
- 2. The compressor of claim 1 further comprising at least one shim interposed between a pair of adjacent vane units, the shim having a hole through which the pin between the adjacent vane units extends.
- 3. The compressor of claim 1 wherein the pin is a slotted spring pin having a hollow cylindrical tube having a longitudinal slot.
- 4. The compressor of claim 3 wherein the cylindrical tube has chamfered ends.
- 5. A compressor comprising:
a rotor having a plurality of blades; a casing for encircling the rotor; a plurality of vane units, each vane unit having a base and at least one airfoil vane projecting from the base; the casing having at least one slot for retaining the vanes; a coupling device extending between adjacent bases for forming a ring unit from a plurality of vane units to stiffen the airfoil vanes.
- 6. The compressor of claim 5 wherein the coupling device is at least one pin extending between holes in adjacent bases.
- 7. The compressor of claim 6 wherein the pin is a slotted spring pin having a hollow cylindrical tube having a longitudinal slot.
- 8. The compressor of claim 5 wherein the coupling device is a projection on one base received by a hole on the adjacent base.
- 9. The compressor of claim 5 wherein the coupling device is a groove on one vane unit for receiving a tongue on an adjacent vane unit.
- 10. A stator vane system comprising:
a casing having a curved inner surface and a pair of mounting edges for mounting with at least another casing for encircling a rotor of compressor; the casing having at least one slot, the slot extending from one mounting edge to the other mounting edge, the slot having a bottom and a pair of side edges, each side edge having a groove extending from one mounting edge to the other mounting edge; a plurality of vane units, each vane unit having a base and airfoil vane projecting from the base, the base having a pair of mountings sides opposite each other and each having a projection receivable by the groove in the slot for retaining the vane unit, and a pair of engaging edge opposite each other for engaging adjacent vane units; each vane unit having a hole in each engaging edge; and a pin extending between the holes in adjacent bases of the units for damping the movement of the vane.
- 11. A repair kit for repairing a compressor comprising:
a device for placing a hole in a base of a vane unit; a device for inserting a pin into the hole of the base; and a blade assembly tool for positioning and connecting adjacent vane units.
- 12. A blade assembly tool comprising:
a main portion having a pair of face edges and a pair of side edges, the main portion having a curvature and a width for receipt of the pair of side edges by a slot in a casing; and a pair of contact blocks, each contact block secured to one of the face edges.
- 13. The blade assembly of claim 12 wherein the contact blocks have a width for fitting between a pair of side walls of the slot and the main portion having a pair of holes and a series of scribe lines.
- 14. A method of repairing at least one loose stator vane comprising the steps of:
providing a casing having a slot and mechanism for retaining a plurality of vane units to the casing; and securing at least one vane unit to another vane unit for stiffening the vane units.
- 15. The method of repairing at least one loose stator vane of claim 14 wherein the step of:
securing at least one vane unit to another vane unit by connecting the plurality of vane units to each other by a plurality of pins.
- 16. The method of repairing a compressor of claim 15 further comprising the steps of:
providing each vane unit has a base having a pair of mounting surfaces and a pair of engaging surfaces and at least one airfoil projecting from the base; and drilling a hole in at least one of the engaging surfaces for receiving one of the pins for connecting to another engaging surface of another vane unit.
- 17. The method of repairing of a compressor of claim 16 further comprising the step of removing the existing vane units from the casing of the compressor, and the step of drilling of the hole in the base of the vane unit is drilling a hole in the base of the vane units removed from the casing.
- 18. The method of repairing of a compressor of claim 15 wherein the step of connecting the plurality of vane units to each other by a plurality of pins for stiffening the vane units includes the steps of:
positioning a vane unit at the dead center of the casing; sliding at least one assembly tool in the slot by placing the edges of the assembly tool in the grooves in the slot and engaging the vane unit with the contact block for maintaining the position of the vane unit; sliding a second vane unit with a pin projecting from the engaging side of the base into the slot with the projection of the mounting edge received by the groove in the slot; and driving the pin into the hole on the engaging edge of the base of the first vane unit by sliding at least one assembly tool in the slot by placing the edges of the assembly tool in the grooves in the slot and engaging the vane unit with the contact block and driving the second vane unit towards the first vane unit.
- 19. The method of repairing of a compressor of claim 18 further comprising the steps of:
removing of the assembly tool in engagement with the second vane unit; sliding another vane unit with a pin projecting from the engaging side of the base into the slot with the projection of the mounting edge received by the groove in the slot; driving the pin into the hole on the engaging edge of the base of the previous vane unit by sliding at least one assembly tool in the slot by placing the edges of the assembly tool in the grooves in the slot and engaging the vane unit with the contact block and driving the another vane unit towards the previous vane unit; and repeating the process until the vane units fill the slot in the casing.
- 20. The method of repairing a compressor of claim 19 further comprising the step of interposing at least one shim between adjacent vane units for positioning one of the engaging edges of a vane unit within an allowable clearance with the edge of the casing.
- 21. The method of repairing a compressor of claim 19 wherein the pin is a slotted spring pin.
- 22. A method of installing a plurality of vane units into a casing comprising the steps of:
providing the casing having a slot having a pair of side edges, each side edge had a groove for retaining a plurality of vane units to the casing; and providing a plurality of vane units each having a base having a pair of mounting surfaces and a pair of engaging surfaces and at least one airfoil projecting from the base, each of the engaging surfaces having a hole; positioning a vane unit at the dead center of the casing; sliding at least one assembly tool in the slot by placing the edges of the assembly tool in the grooves in the slot and engaging the vane unit with the contact block for maintaining the position of the vane unit; sliding a second vane unit with a pin projecting from the engaging side of the base into the slot with the projection of the mounting edge received by the groove in the slot; driving the pin into the hole on the engaging edge of the base of the first vane unit by sliding at least one assembly tool in the slot by placing the edges of the assembly tool in the grooves in the slot and engaging the vane unit with the contact block and driving the second vane unit towards the first vane unit; removing of the assembly tool in engagement with the second vane unit; sliding another vane unit with a pin projecting from the engaging side of the base into the slot with the projection of the mounting edge received by the groove in the slot; driving the pin into the hole on the engaging edge of the base of the previous vane unit by sliding at least one assembly tool in the slot by placing the edges of the assembly tool in the grooves in the slot and engaging the vane unit with the contact block and driving the another vane unit towards the previous vane unit; and repeating the process until the vane units fill the slot in the casing.
- 23. A compressor comprising:
a rotor having a plurality of blades; a casing for encircling the rotor; a plurality of vane units, each vane unit having a base and at least one airfoil vane projecting from the base; the casing having at least one slot for retaining the vanes and an air extraction slot, the air extraction slot underlying the slot and defining a casing hook; a coupling device extending between adjacent bases for forming a ring unit from a plurality of vane units to stiffen the airfoil vanes; and at least one bracket carried by one vane unit engaging the casing hook.
- 24. The compressor of claim 23 wherein the coupling device is at least one pin extending between holes in adjacent bases.
- 25. The compressor of claim 23 wherein the pin is a slotted spring pin having a hollow cylindrical tube having a longitudinal slot.
- 26. The compressor of claim 25 wherein the cylindrical tube has chamfered ends.
- 27. The compression of claim 23 further comprising at least one shim interposed between a pair of adjacent vane units, the shim having a hole through which the pin between the adjacent vane units extends.
- 28. The compressor of claim 23 wherein the bracket is secured by a fastener extending through the casing and to the base of the vane unit.
- 29. A stator vane system comprising:
a casing having a curved inner surface and a pair of joint surfaces for mounting with at least another casing for encircling a rotor of compressor; the casing having at least one slot, the slot extending from one joint surface edge to the other joint surface, the slot having a bottom and a pair of side edges, each side edge having a groove extending from one joint surface to the other joint surfaces, and an air extraction slot, the air extraction slot underlying the slot and defining a casing hook joint surface; a plurality of vane units, each vane unit having a base and airfoil vane projecting from the base, the base having a pair of mountings sides opposite each other and each having a projection receivable by the groove in the slot for retaining the vane unit, and a pair of engaging edges opposite each other for engaging adjacent vane units; each vane unit having a hole in each engaging edge; a pin extending between the holes in adjacent bases of the units for damping the movement of the vane; and a bracket carried by one of the vane units.
- 30. A method of repairing at least one loose stator vane comprising the steps of:
providing a casing having a slot and mechanism for retaining a plurality of vane units to the casing; securing at least one vane unit to another vane unit for stiffening the vane units; and securing at least one bracket to one of the vane units for securing the casing.
- 31. The method of repairing at least one loose stator vane of claim 30 wherein the step of:
securing at least one vane unit to another vane unit by connecting the plurality of vane units to each other by a plurality of pins.
CROSS REFERENCES TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application No. 60/358,931 filed Feb. 22, 2002, the contents of which are incorporated herein by reference in their entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60358931 |
Feb 2002 |
US |