Claims
- 1. A spring pack movement monitoring device for monitoring the movement of the spring pack found within a valve operator, wherein the valve operator includes a driven worm shaft, which in turn drives a worm, which in turn drives a worm gear which in turn drives a valve stem to open and close a valve attached to the valve stem, and a spring pack provided at one end of the worm shaft for compression by the worm, said spring pack movement monitoring device comprising:
- a spring pack engagement member for making contact with the spring pack;
- tension means for maintaining said spring pack engagement member in constant contact with the spring pack;
- said engagement member moving in direct response to movement of the spring pack;
- a linear velocity differential transducer in communication with said spring pack engagement member and comprising a core element movable relative to a bracket element, wherein movement of the spring pack results in a relative movement between said core element and bracket element;
- said linear velocity differential transducer further comprising means for detecting the relative movement between said core element and bracket element; and
- means for recording the detected movement between said core element and bracket element.
- 2. In combination:
- a valve operator including a driven shaft, which in turn drives a worm, which in turn drives a worm gear which in turn drives a valve stem to open and close a valve attached to the valve stem, wherein operation of the valve operator effects movement of said worm;
- worm movement measuring means for measuring the movement of said worm element;
- valve stem load measuring means for measuring an initial load induced on said valve stem by way of said driven shaft;
- means for calibrating said worm movement measuring means to the initial induced stem load on said valve stem is measured by said valve stem load measuring means;
- means for providing a worm movement/time curve in response to the measurement of movement of said worm element; and
- means for correlating said worm movement time curve to the actual load delivered to said valve stem to provide a stem load/time curve.
- 3. Combination of claim 2, wherein said drive shaft of said valve operator is motor driven.
- 4. Combination of claim 2, wherein said worm movement measuring means comprises:
- a spring pack associated with said valve operator which spring pack moves in response to action of said worm element;
- a spring pack engagement member for making contact with the spring pack;
- tension means for maintaining said spring pack engagement member in constant contact with the spring pack;
- said engagement member moving in direct response to movement of the spring pack;
- a linear velocity differential transducer in communication with said spring pack engagement member and comprising a core element moveable relative to a bracket element, wherein movement of the spring pack results in a relative movement between said core element and bracket element;
- said linear velocity differential transducer further comprising means for detecting the relative movement between said core element and bracket element; and
- means for recording the detected movement between said core element and bracket element.
- 5. In combination:
- a valve operator including a motor, a worm shaft driven by said motor, a worm driven by said worm shaft, a worm gear driven by said worm, a valve stem driven by said worm gear, a spring means for reacting to movement of said worm, and a torque switch means for reacting to movement of said worm, said torque switch means being a switch means comprised of a torque switch, said spring means comprising a cluster of compression springs hereinafter called a spring pack;
- a first parameter determining device and a second parameter determining device, each said parameter determining device comprising means for determining a valve operator parameter wherein said parameter is one of either the load on said valve stem or spring pack movement or motor current or torque switch positions, of said valve operator; and
- a correlating and recording device for providing an interrelated time relationship of said valve operator parameters, said parameters comprising those determined by the aforesaid first and second parameter determining devices,
- said parameters being used as a verification and diagnostic tool to determine the operating characteristics of the valve operator.
- 6. Combination of claim 5, further comprising third parameter determining device comprising means for determining a valve parameter wherein said parameter is one of either the load on said valve stem or spring pack movement or motor current or torque switch positions; and wherein said correlating and recording device provides an interrelated time relationship of parameters determined by said first, second and third parameter determining devices.
- 7. A spring pack movement monitoring device for monitoring the movement of the spring pack found within a valve operator, wherein the valve operator includes a driven worm shaft, which in turn drives a worm, which in turn drives a worm gear, which in turn drives a valve stem to open and close a valve attached to the valve stem, and a spring pack provided in communication with the worm for compresssion by the worm, said spring pack movement monitoring device comprising:
- a spring pack interaction member in communication with the spring pack;
- said interaction member moving in direct response to movement of the spring pack;
- movement detecting means for detecting movement of said interaction member; and
- means for recording movement of said interaction member as detected by said detecting means.
- 8. Device of claim 7, wherein said recording means comprises means for providing a spring pack movement/time curve in response to the detection of movement of said interaction member.
- 9. Device of claim 8, further comprising:
- means for calibrating said interaction member movement to the stem load induced on said valve stem by way of said drive shaft; and
- means for correlating said spring pack movement/time curve to the actual load delivered to said valve stem to provide a stem load/time curve.
- 10. In combination:
- a valve operator including a driven shaft, which in turn drives a worm, which in turn drives a worm gear which in turn drives a valve stem to open and close a valve attached to the valve stem, wherein operation of the valve operator effects movement of said worm;
- a spring pack associated with said valve operator which spring pack moves in response to action of said worm element;
- a spring pack interaction member in communication with the spring pack;
- said interaction member moving in direct response to movement of the spring pack;
- movement detecting means for detecting movement of said interaction member;
- recording means for recording movement of said interaction member as detected by said detecting means.
- 11. Combination of claim 10, wherein said recording means comprises means for providing a spring pack movement/time curve in response to the detection of movement of said interaction member.
- 12. Combination of claim 11, further comprising:
- means for calibrating said interaction member movement to the stem load induced on said valve stem by way of said drive shaft; and
- means for correlating said spring pack movement/time curve to the actual load delivered to said valve stem to provide a stem load/time curve.
Parent Case Info
This application is a divisional application Ser. No. 741,861, filed June 6, 1985, which is a continuation of application Ser. No. 515,358, filed July 19, 1983, now U.S. Pat. No. 4,542,649.
US Referenced Citations (17)
Foreign Referenced Citations (2)
Number |
Date |
Country |
649617 |
Dec 1928 |
FRX |
173182 |
Jul 1965 |
SUX |
Non-Patent Literature Citations (1)
Entry |
"Electronic Torque Monitoring for Valve Drives"; vol. 60, pp. 169-171, Sulzer Technical Review; Apr. 1978, F. Konig. |
Divisions (1)
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Number |
Date |
Country |
Parent |
741861 |
Jun 1985 |
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Continuations (1)
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Number |
Date |
Country |
Parent |
515358 |
Jul 1983 |
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