CONTROL OF SUPPLY OF AIR TO A PNEUMATIC VALVE ACTUATOR
20190145542 ยท 2019-05-16
Assignee
Inventors
Cpc classification
F16K31/1221
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/655
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/7052
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B11/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/5153
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/50518
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/124
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/8855
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16K31/122
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A technology is disclosed for controlling the function of a pneumatic valve actuator. The piston of the valve actuator is biased to be in first state and move to a second state when pressurized. A conduit connects the pressure side and non-pressure sides of the valve actuator for supplying the non-pressure side of the valve actuator with gas from the pressure side of the valve actuator. A control valve is connected to the conduit for controlling a release of gas from the pressure side of the valve actuator. The valve controller also has pressure-relief valve connected to the conduit between the control valve and the non-pressure side of the valve actuator for reducing the pressure in the conduit.
Claims
1. An assembly comprising a valve actuator and an actuator controller for controlling the function of the valve actuator, wherein the valve actuator is pneumatically operated, configured for being operatively connected to a valve, and comprises a cylinder and a piston movable inside the cylinder, the valve actuator has a pressure side and a non-pressure side separated by the piston, the piston is biased to be in a first position and is configured to move to a second position at a pressure increase on the pressure side of the valve actuator, and wherein the actuator controller comprises: a conduit connecting the pressure and non-pressure sides of the valve actuator for supplying the non-pressure side of the valve actuator with gas from the pressure side of the valve actuator, a control valve connected to the conduit between the pressure and non-pressure sides for controlling a release of gas from the pressure side of the valve actuator into the conduit, and a pressure-relief valve connected to the conduit between the control valve and the non-pressure side of the valve actuator for reducing the pressure in the conduit.
2. The assembly according to claim 1, wherein the control valve comprises: an inlet for being connected to and receive a pressurized gas from a pressure source, a combined inlet and outlet, and an outlet, wherein the control valve has a first state in which it can lead pressurized gas from the inlet to the combined inlet and outlet and a second state in which it can lead pressurized gas from the combined inlet and outlet to the outlet, and wherein the conduit comprises: a first conduit section connecting the combined inlet and outlet of the control valve to the pressure side of the valve actuator, and a second conduit section connecting the outlet of the control valve and to the non-pressure side of the valve actuator, wherein the pressure-relief valve forms part of the second conduit section.
3. The assembly according to claim 2, wherein the valve actuator comprises: a first combined inlet and outlet for allowing gas to enter and escape the pressure side of the valve actuator, wherein the first combined inlet and outlet is connected to the first conduit section, and a second combined inlet and outlet for allowing gas to enter and escape the non-pressure side of the valve actuator, wherein the second combined inlet and outlet is connected to the second conduit section.
4. The assembly according to claim 1, wherein the pressure-relief valve is a non-return valve configured to prevent air from the surrounding atmosphere from entering the conduit.
5. The assembly according to claim 4, wherein the pressure-relief valve is configured to reduce the pressure in the conduit to a pressure level at the pressure level of the surrounding atmosphere.
6. The assembly according to claim 1, wherein the pressure-relief valve comprises an aperture for allowing gas to be released from the conduit to the surrounding atmosphere and a flexible membrane covering and pressing against the aperture for preventing air from the surrounding atmosphere from entering the conduit.
7. An actuator controller for controlling the function of a valve actuator, wherein the valve actuator is pneumatically operated, configured for being operatively connected to a valve, and comprises a cylinder and a piston movable inside the cylinder, the valve actuator has a pressure side and a non-pressure side separated by the piston, the piston is biased to be in a first position and is configured to move to a second position at a pressure increase on the pressure side of the valve actuator, and wherein the actuator controller comprises: a conduit configured for being connected the pressure and non-pressure sides of the valve actuator for supplying the non-pressure side of the valve actuator with gas from the pressure side of the valve actuator, a control valve connected to the conduit between the pressure and non-pressure sides for controlling a release of gas from the pressure side of the valve actuator into the conduit, and a pressure-relief valve connected to the conduit between the control valve and the non-pressure-side of the valve actuator and configured for reducing the pressure in the conduit.
8. The actuator controller according to claim 7, wherein the control valve comprises: an inlet configured for being connected to and receive a pressurized gas from a pressure source, a combined inlet and outlet, and an outlet, wherein the control valve has a first state in which it can lead pressurized gas from the inlet to the combined inlet and outlet and a second state in which it can lead pressurized gas from the combined inlet and outlet to the outlet, and wherein the conduit comprises: a first conduit section configured for connecting the combined inlet and outlet of the control valve to the pressure side of the actuator, and a second conduit section configured for connecting the outlet of the control valve and to the non-pressure side of the valve actuator, wherein the pressure-relief valve forms part of the second conduit section.
9. The actuator controller according to claim 8, wherein the valve actuator comprises: a first combined inlet and outlet for allowing gas to enter and escape the pressure side of the valve actuator, wherein the first conduit section is configured for being connected to the first combined inlet and outlet, and a second combined inlet and outlet for allowing gas to enter and escape the non-pressure side of the valve actuator, wherein the second conduit section is configured for being connected to the second combined inlet and outlet.
10. The actuator controller according to claim 7, wherein the pressure-relief valve is a non-return valve configured to prevent air from the surrounding atmosphere from entering the conduit.
11. The actuator controller according to claim 7, wherein the pressure-relief valve is configured to reduce the pressure in the conduit to a pressure level at the pressure level of the surrounding atmosphere.
12. The actuator controller according to claim 7, wherein the pressure-relief valve comprises an aperture for allowing gas to be released from the conduit to the surrounding atmosphere and a flexible membrane covering and pressing against the aperture for preventing air from the surrounding atmosphere from entering the conduit.
13. A valve system comprising a valve and an assembly according to claim 1 operatively connected to the controlling the valve.
14. A method of retrofitting a pressure-relief valve in an assembly comprising a valve actuator and an actuator controller for controlling the function of the valve actuator, wherein the valve actuator is pneumatically operated, configured for being operatively connected to a valve, and comprises a cylinder and a piston movable inside the cylinder, wherein the valve actuator has a pressure side and a non-pressure side separated by the piston, the piston is biased to be in a first position and is configured to move to a second position at a pressure increase on the pressure side of the valve actuator, and wherein the actuator controller comprises: a control valve for controlling a release of gas from the pressure side of the valve actuator, wherein the control valve comprises an inlet for being connected to and receive a pressurized gas from a pressure source, a combined inlet and outlet, and an outlet, wherein the control valve has a first state in which it can lead pressurized gas from the inlet to the combined inlet and outlet and a second state in which it can lead pressurized gas from the combined inlet and outlet to the outlet, the assembly further comprises a first conduit section connecting the combined inlet and outlet of the control valve to the pressure side of the actuator, and wherein the method comprises: providing second conduit section and a pressure-relief valve forming part of the second conduit section, and establishing a connection between the outlet of the control valve and the non-pressure side of the valve actuator with the second conduit section, wherein the first conduit section, the control valve, the second conduit section, and the pressure-relief valve form parts of a conduit connecting the pressure and non-pressure sides of the valve actuator for supplying the non-pressure side of the valve actuator with gas from the pressure side of the valve actuator, wherein the a pressure-relief valve is configured for reducing the pressure in the second conduit section.
15. The method according to claim 14, wherein the valve actuator comprises a first combined inlet and outlet for allowing gas to enter and escape the pressure side of the valve actuator and a second combined inlet and outlet for allowing gas to enter and escape the non-pressure side of the valve actuator, wherein the first combined inlet and outlet is connected to the first conduit section, and wherein the method comprises: establishing a connection between the outlet of the control valve and the second combined inlet and outlet with the second conduit section.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Embodiments of the invention will now be described, by way of example, with reference to the accompanying schematic drawings, in which
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[0031]
[0032]
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[0035]
DETAILED DESCRIPTION
[0036] A schematic view of a valve system 10 is shown in
[0037] The piston 22 has a piston rod 60 connected to a valve stem 62 of the valve 18, and when the piston moves the stem opens and closes the valve 18, as shown in
[0038] A coil spring 68 is located inside the cylinder on the non-pressure side 26 and acting on the wall 72 of the cylinder 14 and on the piston 22, as illustrated in
[0039] The valve actuator 14 has a first combined inlet and outlet 52 that allows gas to enter and escape the cylinder 20 on the pressure side 24 of the valve actuator 14. Similarly, the valve actuator 14 has a second combined inlet and outlet 54 that allows gas to enter and escape the cylinder 20 on the non-pressure side 26 of the valve actuator 14.
[0040] The actuator controller 16 has a control valve 30 in the form of a solenoid valve that controls the function of the valve actuator 14. The control valve 30 has an inlet 38 connected to an external source 76 of compressed air not forming part of the valve system 10. The control valve 30 further has a combined inlet and outlet 40 that is connected to the first combined inlet and outlet 52 of the valve actuator 14 by a first conduit section 48, thus also connecting the combined inlet and outlet 40 to the pressure side 24 of the valve actuator 14. The control valve 30 also has an outlet 42 that is connected to the second combined inlet and outlet 54 of the valve actuator 14 by a second conduit section 50, thereby connecting the outlet 42 to the non-pressure side 24 of the valve actuator 14.
[0041] The control valve 30 has a first state 44, which is schematically illustrated in
[0042] A pressure-relief valve 32 is located between the control valve 30 and the non-pressure-side 26 side of the valve actuator 14 and constitutes a part of the second conduit section 50, as shown in
[0043] The pressure-relief valve 32 has a circular symmetric cylindrical hollow body 78 with two outward facing annular ridges 80 and 82 on either side of the aperture 34. An annular flexible membrane 36 in the form of a ring-shaped rubber band is positioned between and held in place by the ridges 80 and 82. The flexible membrane 36 has a circumference that is slightly smaller than the circumference of the body 78, thus covering and pressing against the aperture 34 so that air from the surrounding atmosphere is prevented from entering the second conduit section 50. This means that the pressure-relief valve 32 has the function of non-return valve. The flexible membrane 36 has a flexibility that allows for the pressure inside the second conduit section 50 to reach the pressure of the surrounding atmosphere, or a slightly higher pressure.
[0044] The first conduit section 48, the control valve 30, the second conduit section 50, and the pressure-relief valve 32 form parts of a conduit 28 that connects the pressure side 24 and non-pressure side 26 of the valve actuator 14 that supplies the non-pressure side 26 of the valve actuator with air from the pressure side 24 of the valve actuator 14. The conduit 28 has the effect that the non-pressure side 26 of the valve actuator 14 will be supplied with non-compressed air from the external source of compressed air 76 via the pressure side 24 of the valve actuator 14. Thus no dust or particles of the surrounding atmosphere will enter the cylinder 20 of the valve actuator 14. Thus, wear on the gasket 23 is reduced and the service lifetime of the valve actuator 14 is increased. It should be noted that air is typically filtered when compressed in compressor and no dust or particles from the surrounding atmosphere will enter the valve actuator 14 via such a source.
[0045] A valve system 10 is shown in
[0046] The actuator controller 16 has a housing 84 that is attached to the valve actuator 14 and in which the control valve 30 and the second conduit section 50 with the pressure-relief valve 32 are situated. The housing 84 is ventilated so that air in the surrounding atmosphere can enter and escape the housing 84.
[0047] The valve system 10 differs from the previous embodiment in that the actuator controller 16 has no second conduit section with a pressure relief valve that connects the outlet 42 of the control valve 30 to the second combined inlet and outlet of the valve actuator 54. Instead, an outlet conduit 86 is coupled to the control valve 30. The outlet conduit 86 is connected at one end to the outlet 42 of the control valve 30. Its other end is outside the housing 84 of the actuator controller 16 and opens to the surrounding atmosphere. Thus, when the control valve is in its first state 44, as shown in
[0048] A combined inlet and outlet conduit 88 is coupled to the valve actuator 14. At one end it is connected to the second combined inlet and outlet 54 of valve actuator 14. Its other end is outside the housing 84 of the actuator controller 16 and opens to the surrounding atmosphere. Thus, when the piston 22 moves from the first position shown in
[0049] Another embodiment of a valve system 10 is shown in
[0050] A pressure-relief valve 32 has been connected to the outlet conduit 86 and the combined inlet and outlet conduit 88 on the outside of the housing 84 of actuator controller 16, thus constituting a retrofitting of the pressure-relief valve 32 to the valve system 10, as shown in
[0051] From the description above follows that, although various embodiments of the invention have been described and shown, the invention is not restricted thereto, but may also be embodied in other ways within the scope of the subject-matter defined in the following claims.
ITEM LIST
[0052] 10 valve system [0053] 12 assembly [0054] 14 valve actuator [0055] 16 actuator controller [0056] 18 valve [0057] 20 cylinder [0058] 22 piston [0059] 23 gasket [0060] 24 pressure side [0061] 26 non-pressure side [0062] 28 conduit [0063] 30 control valve [0064] 32 pressure-relief valve [0065] 34 aperture [0066] 36 flexible membrane [0067] 38 inlet of control valve [0068] 40 combined inlet and outlet of control valve [0069] 42 outlet of control valve [0070] 44 first state [0071] 46 second state [0072] 48 first conduit section [0073] 50 second conduit section [0074] 52 first combined inlet and outlet of valve actuator [0075] 54 second combined inlet and outlet of valve actuator [0076] 60 piston rod [0077] 62 valve stem [0078] 64 threaded bore [0079] 66 threaded end [0080] 68 coil spring [0081] 70 lower disc [0082] 72 cylinder wall [0083] 74 upper disc [0084] 76 external source of compressed air [0085] 78 body of pressure-relief valve [0086] 80 ridge [0087] 82 ridge [0088] 84 housing of actuator controller [0089] 86 outlet conduit [0090] 88 combined inlet and outlet conduit