Butterfly check valve
11339882 · 2022-05-24
Assignee
Inventors
- Bentley F. Gleeson (Malvern, PA, US)
- George J. McHugh, IV (Malvern, PA, US)
- James P. McHugh (Newtown Square, PA, US)
Cpc classification
F16K31/60
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K2200/201
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K1/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K15/03
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K15/1821
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16K15/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K15/03
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A butterfly check valve is disclosed, which includes a housing defining an interior chamber having an inlet and an outlet; a control valve configured to control a flow between the inlet and the outlet, the control valve including a valve member movable to an open position in which a flow is permitted between the inlet and the outlet and a closed position in which the flow is blocked between the inlet and the outlet; and a check valve arranged downstream of the control valve, the check valve including a dome-shaped clapper configured to seal against an outer periphery of a clapper seat within the interior chamber of the housing in a reverse flow from the outlet to the inlet.
Claims
1. A butterfly check valve, comprising: a housing defining an interior chamber having an inlet and an outlet; a control valve configured to control a flow between the inlet and the outlet, the control valve including a disk-shaped valve member movable to an open position in which a flow is permitted between the inlet and the outlet and a closed position in which the flow is blocked between the inlet and the outlet; a check valve arranged immediately downstream of the control valve, the check valve including a dome-shaped clapper configured to seal against an outer periphery of a clapper seat within the interior chamber of the housing in a reverse flow from the outlet to the inlet; and wherein the dome-shaped clapper is configured to allow the disk-shaped valve member of the control valve to rotate within the dome-shaped clapper when the control valve is actuated between the open position and the closed position.
2. The butterfly check valve according to claim 1, further comprising: a valve operator configured to enable the disc-shaped valve member to be moved manually between the open position and the closed position by rotating a handle.
3. The butterfly check valve according to claim 1, further comprising: a concave-shape profile on an upstream side of the dome-shaped clapper.
4. The butterfly check valve according to claim 3, wherein an outer periphery of the dome-shaped clapper is generally circular.
5. The butterfly check valve according to claim 1, wherein the inlet and the outlet are generally collinear with one another.
6. The butterfly check valve according to claim 1, wherein the disk-shaped valve member comprises a disk which is rotatable about an axis.
7. The butterfly check valve according to claim 6, wherein the disk includes an outer periphery having a generally round shape.
8. The butterfly check valve according to claim 7, wherein the disk in cross-section includes one or more grooves in a central portion of the disk.
9. The butterfly check valve according to claim 1, wherein the dome-shaped clapper is a spring-loaded clapper configured to rotate upward upon the flow being permitted between the inlet and the outlet of the housing.
10. The butterfly check valve according to claim 9, wherein the dome-shaped clapper includes a hinge on a downstream side of the dome-shaped clapper.
11. The butterfly check valve according to claim 1, wherein the clapper seat is a full-port clapper seat.
12. The butterfly check valve according to claim 1, further comprising: a system port configured to receive an externally mounted gauge, the system port configured to measure a pressure upstream of the dome-shaped clapper and having a reduced diameter through hole on a bottom edge of the system port.
13. The butterfly check valve according to claim 1, wherein the inlet and the outlet of the housing are configured to be connected to another plumbing fitting.
14. The butterfly check valve according to claim 1, wherein each of the inlet and the outlet includes a female threaded end.
15. The butterfly check valve according to claim 1, wherein the control valve and the check valve are contained within a single valve body.
16. A butterfly check valve, comprising: a housing defining an interior chamber having an inlet and an outlet; a control valve configured to control a flow between the inlet and the outlet, the control valve including a disk-shaped valve member movable to an open position in which a flow is permitted between the inlet and the outlet and a closed position in which the flow is blocked between the inlet and the outlet; a check valve arranged immediately downstream of the control valve, the check valve including a dome-shaped clapper configured to seal against an outer periphery of a clapper seat within the interior chamber of the housing in a reverse flow from the outlet to the inlet, the dome-shaped clapper being a spring-loaded clapper configured to rotate upward upon the flow being permitted between the inlet and the outlet of the housing; and wherein the dome-shaped clapper is configured to allow the disk-shaped valve member of the control valve to rotate within the dome-shaped clapper when the control valve is actuated between the open position and the closed position.
17. The butterfly check valve according to claim 16, further comprising: a valve operator configured to enable the disc-shaped valve member to be moved manually between the open position and the closed position by rotating a handle.
18. The butterfly check valve according to claim 16, further comprising: a concave-shape profile on an upstream side of the dome-shaped clapper, and wherein an outer periphery of the dome-shaped clapper is generally circular.
19. The butterfly check valve according to claim 16, wherein the disk-shaped valve member comprises a disk which is rotatable about an axis, the disk including an outer periphery having a generally round shape.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
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DETAILED DESCRIPTION OF EXEMPLARY EMBODIMENTS
(6) Set forth below with reference to the accompanying drawings is a detailed description of embodiments of a butterfly check valve 100.
(7)
(8) As shown in
(9) In accordance with another aspect, an axial length of the butterfly valve 100 can be influenced based on the required port 130, which measures the system side pressure upstream of the clapper 310 of the check valve 300. Usually, the through hole for this port 130 is drilled through the body of the housing and into the interior chamber or interior space (e.g., fluid space) at the full diameter of the tap drill. However, in this particular case, doing so would add undesired distance between a disk 202 of a valve member 200 (
(10)
(11) In accordance with an aspect, the outer periphery 204 of the disk 202 is round or circular. In cross-section (
(12) As shown in
(13) If desired, and if permitted by the applicable codes and regulations, the valve operator 110 may be motorized or otherwise mechanically driven by a motor or by some other arrangement. In accordance with an embodiment, for example, the valve operator 110 can include internal stops so that the valve member 200 may not be moved beyond the open position 400 and may not be moved beyond the closed position 500. If desired, the valve operator 110 may also have an indicator to visually show that the valve member 200 is in a fully open position or in a fully closed position.
(14) In accordance with an embodiment, the valve member 200 may be carried on a lower valve shaft, which may comprise an open tube or pipe. The valve member 200 is free to pivot about the lower shaft between the open position 400 and the closed position 500. If desired, packing or sealing material, for example, an “O-ring” may be provided about the valve shaft 116 between the valve member 200 and the valve housing 120 to prevent or reduce leakage from the valve. A similar packing or sealing material may also be provided about the lower shaft between the valve member 200 and the valve housing 120.
(15) As shown in
(16) In accordance with an aspect, the dome-shaped clapper 310 can enable the check valve 300 to be placed measurably closer to the valve member 200 because of the dome-shape (e.g., concave profile) of the clapper 310 since the profile of the dome-shaped clapper 312, which provides a natural clearance for the disk 202 of the butterfly valve 100 to rotate when the butterfly valve 100 is actuated between the open state 400 and closed state 500. In addition, the dome-shaped 312 of the clapper 310 will have a relatively stronger profile, for example, than a relatively flat disk for resisting backflow pressures and will allow for the use of a relatively larger diameter clapper 310 and/or a relatively thinner material for the clapper 310.
(17) In accordance with an embodiment, the seat 210 for the clapper 310 of the check valve 300 may be a full-port, meaning, for example, that the seat 210 does not cause a reduction in the flow path diameter relative to a nominal diameter of the pipes (e.g., plumbing fittings) which are connect to the housing 120 of the valve 100. Typically, for example, check valves used in fire suppression systems have a reduced port (e.g., through diameter is reduced) to save cost and/or because of a relatively flat profile of the clapper, which can be relatively weak (e.g., can give way under pressure). In the case of where the check valve 300 and the valve member 200 of a butterfly valve are in relative close proximity, a sudden reduction in diameter over a short axial distance would be required when using a traditional reduced port check valve seat, which type of transition may result, for example, in an undesirably high pressure loss. In accordance with an embodiment of the butterfly check valve 100, with the user of a full-port clapper seat 210, the butterfly check valve 100 will have negligible pressure loss and can be used because of the aforementioned strength a dome-shaped 312 profile of the clapper 310.
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(20) The principles, exemplary embodiments and mode of operation of the present invention have been described in the foregoing specification. However, the invention which is intended to be protected is not to be construed as limited to the particular embodiments disclosed. The embodiments are therefore to be regarded as illustrative rather than as restrictive. Variations and changes may be made without departing from the spirit of the present invention. Accordingly, it is expressly intended that all such equivalents, variations and changes which fall within the spirit and scope of the present invention as defined in the claims be embraced thereby.