Claims
- 1. A support and alignment assembly for supporting and aligning a vane segment, said support and alignment assembly comprising:
- a torque plate defining an opening for adjustably receiving an eccentric pin and a locking end member for receiving a lock socket member;
- said eccentric pin adjustably supported by said torque plate opening and functioning to support and align said vane segment; and
- said lock socket member adapted to securely receive said eccentric pin in locking engagement therewith so as to rotate with the eccentric pin, and adjustably engage said torque plate locking end member, such that when said eccentric pin is adjusted to align said vane segment said lock socket member engages said torque plate locking end member to secure the vane segment.
- 2. The supporting and aligning assembly of claim 1 wherein said lock socket member further comprises:
- a plurality of equidistant protruding edges that receive said torque plate locking end member.
- 3. The supporting and aligning assembly of claim 1 wherein said torque plate locking end member is hexagonal in shape.
- 4. The support and alignment assembly of claim 1 wherein said eccentric pin is comprised of a pin tip, a tapered cylindrical portion, a generally square body portion, and a tapered pin end, wherein said tapered cylindrical portion and generally square body portion share a common axis, distinct from said tapered pin end axis.
- 5. A support and alignment assembly for supporting and aligning a vane segment, said support and alignment assembly comprising:
- a torque plate adapted to receive an eccentric pin;
- said eccentric pin in adjustable communication with said torque plate and in supporting and aligning communication with said vane segment; and
- a locking member in adjustable locking communication with said eccentric pin and in adjustable locking communication with said torque plate for locking said vane segment in alignment.
- 6. The support and alignment assembly of claim 5 wherein said locking member comprises:
- a plurality of equidistant protruding members for adjustably receiving said torque plate.
- 7. The support and alignment assembly of claim 6 wherein said torque plate comprises a hexagonal torque plate locking end member for receiving said locking member.
- 8. A combustion turbine comprising:
- an inlet portion;
- a turbine section having an outer cylinder and an inner cylinder;
- a vane segment having a fixed mounting end and an adjustable support end, said vane segment fixed mounting end fixedly coupled to said outer cylinder, and said adjustable support end adjustably coupled to said inner cylinder; and
- a vane segment supporting and alignment assembly for supporting and aligning said vane segment at said vane segment adjustable support end and inner cylinder, said vane segment assembly comprising a torque plate adapted to receive an eccentric pin, said eccentric pin in adjustable communication with said torque plate and in supporting and aligning communication with said vane segment adjustable support end, and a locking member in locking engagement with said eccentric pin so as to rotate with the eccentric pin, and in adjustable locking communication with said torque plate for locking said vane segment in the proper alignment.
- 9. The combustion turbine in claim 3 wherein said locking member further comprises:
- a plurality of equidistant protruding edges for adjustably receiving said torque plate.
- 10. The combustion turbine in claim 8 wherein said torque plate has a hexagonal locking end member.
- 11. The combustion turbine in claim 3 wherein said torque plate defines a central opening, and said eccentric pin is adapted to be in adjustable communication with said torque plate central opening.
STATEMENT OF GOVERNMENT INTEREST
Development for this invention was supported in part by United States Department of Energy contract DE-FC21-95MC32267. Accordingly, the United States government has certain rights in the invention.
US Referenced Citations (9)
Foreign Referenced Citations (1)
Number |
Date |
Country |
0780545 |
Jun 1997 |
EPX |