IP Library Granted Patent US 8,608,128
Granted Patent B2
US 8,608,128 · App. 13/313,872 · Granted Dec 17, 2013

Non-contact torque sensing for valve actuators

Inventors: William T. Dolenti (Lynchburg, VA); Byron A. Fleury (Lynchburg, VA)
Assignee: Flowserve Management Company
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Quick Facts
Patent No.
US 8,608,128
App. No.
13/313,872
Granted
Dec 17, 2013
Kind
B2
Abstract

Non-contact torque, thrust, strain, and other data sensing of a valve actuator or valve is disclosed. A sensor may include a surface acoustic wave device.

Claims (34)

1. An electric valve system, comprising:

an electric valve actuator;

a valve;

a rotating member; and

a sensor comprising at least one surface acoustic wave device, the at least one surface acoustic wave device attached to the rotating member, wherein the at least one surface acoustic wave device outputs a uniquely identifiable signal to a wireless receiver, wherein the surface acoustic wave device is configured to measure one or more of a torque and an axial thrust associated with the rotating member.

2. The valve actuator of claim 1 , wherein the at least one surface acoustic wave device comprises two surface acoustic wave devices placed at opposing angles to each other on the rotating member.

3. The valve actuator of claim 1 , wherein the at least one surface acoustic wave device measures axial thrust.

4. The valve actuator of claim 1 , wherein the at least one surface acoustic wave device measures torque.

5. The valve actuator of claim 1 , wherein the rotating member is selected from the group consisting of a valve stem, worm shaft, motor drive shaft, drive sleeve, handwheel adapter, teeth of worm gear, declutch mechanism, declutch handle, and input shaft for an encoder.

6. The valve actuator of claim 1 , wherein the sensor comprises a plurality of surface acoustic wave devices and wherein each surface acoustic wave device of the plurality of surface acoustic wave devices outputs a uniquely identifiable signal to a wireless receiver.

7. The valve actuator of claim 1 , wherein the at least one surface acoustic wave device comprises a first surface acoustic wave device that outputs a uniquely identifiable wireless signal within a first frequency range and a second surface acoustic wave device that outputs a uniquely identifiable wireless signal within a second frequency range wherein the second frequency range does not overlap the first frequency range.

8. An electric valve system, comprising:

an electric valve actuator;

a valve;

a rotatable component of the electric valve actuator or valve; and

at least one non contact sensor operably mounted on the rotatable component, the at least one non contact sensor configured to generate torque or thrust data, wherein the at least one non contact sensor outputs a uniquely identifiable signal to a wireless receiver, wherein the at least one non contact sensor comprises at least one surface acoustic wave device.

9. The electric valve system of claim 8 , wherein the at least one surface acoustic wave device measures axial thrust.

10. The electric valve system of claim 8 , wherein the at least one surface acoustic wave device operates at a frequency range of about 3 megahertz to about 3 gigahertz.

11. The electric valve system of claim 8 , wherein the at least one surface acoustic wave device comprises two surface acoustic wave devices placed at opposing angles to each other on the rotatable component.

12. The electric valve system of claim 8 , wherein the at least one surface acoustic wave device comprises a first surface acoustic wave device that outputs a uniquely identifiable wireless signal within a first frequency range and a second surface acoustic wave device that outputs a uniquely identifiable wireless signal within a second frequency range wherein the second frequency range does not overlap the first frequency range.

13. The electric valve system of claim 8 , further comprising a display that indicates output values associated with the at least one surface acoustic wave device.

14. An electric valve system, comprising:

an electric valve actuator;

a valve;

a rotatable component of the electric valve actuator or valve; and

a plurality of non contact sensors operably mounted on the rotatable component and configured to generate torque or thrust data, the plurality of non contact sensors comprising:

a first non contact sensor that outputs a uniquely identifiable wireless signal within a first frequency range; and

a second non contact sensor that outputs a uniquely identifiable wireless signal within a second frequency range wherein the second frequency range does not overlap the first frequency range.

15. The electric valve system of claim 14 , wherein the plurality of non contact sensors comprises strain gauges attached to the rotatable component.

16. The electric valve system of claim 14 , wherein the at least plurality of non contact sensors comprises two optical sensors placed in line on the rotatable component relative to a rotational axis of the rotatable component.

17. The electric valve system of claim 14 , wherein the rotatable component is selected from the group consisting of a worm shaft, motor drive shaft, drive sleeve, handwheel adapter, teeth of worm gear, declutch mechanism, declutch handle, and input shaft for an encoder.

18. The electric valve system of claim 14 , wherein the rotatable component is a valve stem.

19. The electric valve system of claim 14 , wherein the plurality of non contact sensors comprises a plurality of surface acoustic wave devices and wherein each surface acoustic wave device of the plurality of surface acoustic wave devices outputs a uniquely identifiable signal to a wireless receiver.

20. The electric valve system of claim 14 , wherein the rotatable component is a linear moving valve stem.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 17, 2023
From: FLOWSERVE MANAGEMENT COMPANY
To: FLOWSERVE PTE. LTD.
Reel/Frame 063363/0001 →
Continuity (3)
Division 12070184 · Feb 15, 2008
Provisional Application 60902029 · Feb 16, 2007
Related Publication 20120080622A1 · Apr 5, 2012