IP Library Granted Patent US 8,028,604
Granted Patent B2
US 8,028,604 · App. 11/627,776 · Granted Oct 4, 2011

Methods and systems for turning rotary components within rotary machines

Assignee: General Electric Company
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Quick Facts
Patent No.
US 8,028,604
App. No.
11/627,776
Granted
Oct 4, 2011
Kind
B2
Abstract

A method and apparatus of turning rotary components of a rotary machine having a brake disc includes providing a turning gear assembly. The turning gear assembly includes a gear plate, a pinion gear and a gear motor coupled to the pinion gear. The method also includes coupling the turning gear assembly within the rotary machine using the gear plate such that the pinion gear engages with the brake disc, detecting a motion of the rotary machine, and rotating the brake disc using the pinion gear based on the detected motion.

Claims (37)

1. A method of turning rotary components of a rotary machine including a brake disc, said method comprising:

providing a turning gear assembly comprising a gear plate, a pinion gear and a gear motor, the gear motor coupled to the pinion gear;

coupling the turning gear assembly within the rotary machine using the gear plate such that the pinion gear engages with the brake disc;

detecting a motion of the rotary machine;

rotating the brake disc using the pinion gear based on the detected motion; and

transferring energy to the gear motor based on the detected motion.

2. A method according to claim 1 wherein detecting a motion of the rotary machine comprises sensing a motion of a pendulum.

3. A method according to claim 2 wherein sensing a motion of a pendulum comprises sensing a pendulum motion with a proximity sensor.

4. A method according to claim 1 further comprising triggering a count down relay to open a power relay based on the detected motion.

5. A method according to claim 1 wherein detecting a motion comprises detecting a vibration.

6. A turning gear control system for rotating rotary components of a rotary machine including a brake disc, said turning gear control system comprising:

a turning gear assembly comprising a gear plate, a pinion gear and a gear motor, said gear plate coupling said turning gear assembly within said rotary machine such that said pinion gear engages with said brake disc;

a sensor configured to detect a motion of said turning gear assembly; and

a power source configured to transfer energy to said gear motor based on the detected motion.

7. A system according to claim 6 wherein said pinion gear is configured to rotate said brake disc based on the detected motion.

8. A system according to claim 6 further comprising a pendulum configured to move in response to motions experienced by said turning gear assembly.

9. A system according to claim 8 wherein said sensor is a proximity sensor configured to sense a motion of said pendulum.

10. A system according to claim 6 wherein said sensor is a proximity sensor.

11. A system according to claim 6 further comprising a count down relay configured to trigger a power relay to open based on the detected motion such that energy is transferred to said gear motor.

12. A system according to claim 6 wherein said sensor is configured to detect a vibration of said turning gear assembly.

13. A nacelle for a rotary machine comprising:

a brake disc;

a turning gear assembly comprising a gear plate, a pinion gear and a gear motor, said gear plate coupling said turning gear assembly coupled within said rotary machine such that said pinion gear engages with said brake disc;

a sensor configured to detect a motion of said turning gear assembly; and

a power source configured to transfer energy to said gear motor based on the detected motion.

14. A nacelle according to claim 13 wherein said pinion gear is configured to rotate said brake disc based on the detected motion.

15. A nacelle according to claim 13 further comprising a pendulum configured to move in response to motions experienced by said turning gear assembly.

16. A nacelle according to claim 15 wherein said sensor is a proximity sensor configured to sense a motion of said pendulum.

17. A nacelle according to claim 13 wherein said sensor is a proximity sensor.

18. A nacelle according to claim 13 further comprising a count down relay configured to trigger a power relay to open based on the detected motion such that energy is transferred to said gear motor.

19. A nacelle according to claim 13 wherein said sensor is configured to detect a vibration of said turning gear assembly.

20. A turning gear assembly for rotating rotary components of a rotary machine including a brake disc, said turning gear assembly comprising:

at least one gear; and

a switch comprising a motion sensor configured to detect a motion of said turning gear assembly and comprising a power relay configured to be activated based on the detected motion and configured to activate said turning gear assembly such that said at least one gear engages and rotates the brake disc.

21. A turning gear assembly according to claim 20 wherein said at least one gear is configured to rotate said brake disc based on the detected motion.

22. A turning gear assembly according to claim 20 further comprising a pendulum configured to move in response to motions experienced by said turning gear assembly.

23. A turning gear assembly according to claim 22 wherein said switch comprises a motion sensor configured to detect a motion of said pendulum.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2023
From: GENERAL ELECTRIC COMPANY
To: GE INFRASTRUCTURE TECHNOLOGY LLC
Reel/Frame 065727/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 26, 2007
From: MOORE, BRADLEY GRAHAM; HUDNALL, DAVID RAY; MILLER, BRADLEY
To: GENERAL ELECTRIC COMPANY
Reel/Frame 018813/0231 →
Continuity (1)
Related Publication 20080181761A1 · Jul 31, 2008