IP Library › Granted Patent US 7,112,909
Granted Patent B2
US 7,112,909 · App. 10/780,178 · Granted Sep 26, 2006

Method and system for measuring wedge tightness

Assignee: General Electric Company
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Quick Facts
Patent No.
US 7,112,909
App. No.
10/780,178
Granted
Sep 26, 2006
Kind
B2
Abstract

A method for measuring wedge tightness in an electromechanical device includes providing a top ripple spring that includes a conductive portion and a non-conductive portion, positioning the top ripple spring at least partially within a stator slot defined within the electromechanical device, mapping a profile of the top ripple spring, and using the mapped profile to determine the wedge tightness in the electromechanical device.

Claims (28)

1. A method for measuring wedge tightness in an electromechanical device, said method comprising:

providing a top ripple spring that includes a conductive portion and a non-conductive portion;

positioning the top ripple spring at least partially within a stator slot defined within the electromechanical device;

mapping a profile of the top ripple spring via transmitting energy from an excitation coil to the conductive portion of the top ripple spring, and receiving, energy reflected from the conductive portion using a sensing, coil; and

using the mapped profile to determine the wedge tightness in the electromechanical device.

2. A method in accordance with claim 1 wherein the mapped profile corresponds to a particular pressure on the top ripple spring.

3. A method in accordance with claim 1 wherein measuring wedge tightness in an electromechanical device comprises measuring wedge tightness in an electrical generator.

4. A method in accordance with claim 1 further compressed inserting at least one wedge into the stator slot until the top ripple spring is compressed between approximately four one-thousandths of an inch and six one-thousandths of an inch thick.

5. A method in accordance with claim 1 further comprising repositioning a measuring apparatus along the stator slot until the entire top ripple spring profile is mapped.

6. A method in accordance with claim 1 wherein providing a top ripple spring that includes a conductive portion further comprises providing a top ripple spring wherein the conductive portion has a profile that is substantially similar to a profile of the top ripple spring.

7. A stator wedge measurement system comprising:

a top ripple spring comprising a conductive portion and a non-conductive portion, said top ripple spring positioned at least partially within a stator slot;

a measuring apparatus for mapping a profile of the top ripple spring, said measuring apparatus configured to transmit energy from an excitation coil to said top ripple spring conductive portion, and receive energy reflected from said conductive portion using a sensing coil; and

said measuring apparatus further configured to determine the wedge tightness in an electromechanical device based on the mapped profile.

8. A stator wedge measurement system in accordance with claim 7 wherein said each said profile mapped of said top ripple spring by said measuring apparatus corresponds to a particular pressure induced on said top ripple spring.

9. A stator wedge measurement system in accordance with claim 7 wherein said measuring device is further configured to determine a wedge tightness in an electric generator.

10. A stator wedge measurement system in accordance with claim 7 further comprising at least one wedge configured to compress said top ripple spring until said top ripple spring is between approximately four one-thousandths of an inch and approximately six one-thousandths of an inch thick.

11. A stator wedge measurement system in accordance with claim 7 wherein said measurement apparatus is further configured to move along the stator slot during mapping of said top ripple spring.

12. A stator wedge measurement system in accordance with claim 7 wherein a profile of said top ripple spring conductive portion is substantially similar to a profile of said top ripple spring.

13. An electric generator comprising;

a stator comprising a plurality of slots;

a plurality of top ripple springs, each said top ripple spring comprising a conductive portion and a non-conductive portion, each said top ripple spring positioned at least partially within each said respective stator slot;

a measuring apparatus for mapping a profile of each said top ripple spring, said measuring apparatus configured to transmit energy from an excitation coil to said too ripple spring conductive portion, and receive energy reflected from said conductive portion using a sensing coil; and

said measuring apparatus for mapping a profile of each said top ripple spring, further configured to determine the wedge tightness in said electric generator based on the mapped profile.

14. An electric generator in accordance with claim 13 wherein each said profile mapped of said top ripple spring by said measuring apparatus corresponds to a particular pressure induced on said top ripple spring.

15. An electric generator in accordance with claim 13 further comprising at least one wedge configured to compress said top ripple spring until said top ripple spring is between approximately four one-thousandths of an inch and approximately six one-thousandths of an inch thick.

16. An electric generator in accordance with claim 13 wherein said measurement apparatus is further configured to move along said stator slot during mapping of said top ripple spring.

17. An electric generator in accordance with claim 13 wherein a profile of said top ripple spring conductive portion is substantially similar to a profile of said top ripple spring.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 17, 2004
From: SWARTOUT, RICHARD NEIL; PEZZANO, LEONARD GEORGE
To: GENERAL ELECTRIC COMPANY
Reel/Frame 015003/0382 →
Continuity (1)
Related Publication 20050284241A1 · Dec 29, 2005