BACKFLOW AND BREAKAWAY CHECK VALVE
20170307097 · 2017-10-26
Inventors
Cpc classification
F16K17/34
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K37/0041
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K17/363
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16K17/36
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K17/34
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K15/03
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A dual plate backflow and breakaway check valve designed to mount above grade. The dual plate check valve includes a barrel assembly having an upper portion, a lower portion and an annular groove. An upper dual valve includes an upper front plate and an upper back plate. A lower dual valve includes a lower front plate and a lower back plate. A lower valve keeper bar moves up from between a plurality of lower valve stay tabs upon breakage of the annular groove thereby allowing the lower front plate and the lower back plate to rotate about a lower valve pin and closing the lower dual valve upon a lower barrel bevel and simultaneously allowing the upper front plate and the upper back plate to rotate about an upper valve pin and closing upon an upper barrel bevel.
Claims
1. A dual plate backflow and breakaway check valve comprising: a barrel assembly having an upper portion, a lower portion and an groove; an upper dual valve having an upper front plate and an upper back plate; a lower dual valve having a lower front plate and a lower back plate; and a lower valve keeper bar arranged within the upper portion, the lower valve keeper bar moves up from between a plurality of lower valve tabs upon breakage of the groove thereby allowing the lower front plate and the lower back plate to rotate about a lower valve pin and closing the lower dual valve upon a lower barrel bevel and allowing the upper front plate and the upper back plate to rotate about an upper valve pin and closing upon an upper barrel bevel.
2. The dual plate backflow and breakaway check valve of claim 1 wherein the breakage of the groove causes a residual back pressure of fluid in at least one pipeline connected to the dual plate backflow and breakaway check valve.
3. The dual plate backflow and breakaway check valve of claim 1 further comprises a top mounting flange attached to the upper portion and a bottom mounting flange attached to the lower portion.
4. The dual plate backflow and breakaway check valve of claim 3 wherein a circumference of the top mounting flange and the bottom mounting flange is arranged with a plurality of flange holes.
5. The dual plate backflow and breakaway check valve of claim 1 wherein the upper front plate and the upper back plate are arranged inside the upper portion of the barrel assembly utilizing a plurality of upper valve springs and an upper valve pin designed to insert through a plurality of upper plate pin holes.
6. The dual plate backflow and breakaway check valve of claim 1 further comprises at least one upper pin mounting hole to connect the upper dual valve and the upper portion of the barrel assembly together utilizing at least one upper pin set screw.
7. The dual plate backflow and breakaway check valve of claim 1 further comprises an upper valve bar and a lower valve bar attached inside the upper portion and the lower portion respectively.
8. The dual plate backflow and breakaway check valve of claim 1 wherein the lower front plate and the lower back plate are arranged inside the lower portion of the barrel assembly utilizing a plurality of lower valve springs and a lower valve pin designed to insert through a plurality of lower plate pin holes.
9. The dual plate backflow and breakaway check valve of claim 1 further comprises at least one lower pin mounting hole to connect the lower dual valve and the lower portion of the barrel assembly together utilizing at least one lower pin set screw.
10. The dual plate backflow and breakaway check valve of claim 1 further comprises a plurality of holes located at the lower front plate and the lower back plate that enables quick visualization of location of damage to a fire hydrant and the at least one pipeline.
11. The dual plate backflow and breakaway check valve of claim 1 wherein the plurality of lower valve tabs is attached perpendicular to the lower front plate and the lower back plate.
12. A dual plate backflow and breakaway check valve comprising: a barrel assembly having an upper portion, a lower portion, a top mounting flange, a bottom mounting flange and a groove; an upper dual valve having an upper front plate and an upper back plate arranged inside the upper portion of the barrel assembly utilizing an upper valve pin and a plurality of upper valve springs; a lower dual valve having a lower front plate and a lower back plate arranged inside the lower portion of the barrel assembly utilizing a lower valve pin and a plurality of lower valve springs; a plurality of holes located at lower front plate and the lower back plate; and a lower valve keeper bar arranged within the upper portion of the barrel assembly, the lower valve keeper bar moves up from between a plurality of lower valve tabs upon breakage of the groove thereby allowing the lower front plate and the lower back plate to rotate about the lower valve pin and closing the lower dual valve upon a lower barrel bevel and simultaneously allowing the upper front plate and the upper back plate to rotate about the upper valve pin and closing upon an upper barrel bevel;
13. The dual plate backflow and breakaway check valve of claim 12 wherein the upper valve pin is designed to insert through a plurality of upper plate pin holes and the lower valve pin is designed to insert through a plurality of lower plate pin holes.
14. The dual plate backflow and breakaway check valve of claim 12 further comprises at least one upper pin mounting hole to connect the upper dual valve and the upper portion of the barrel assembly together utilizing at least one upper pin set screw.
15. The dual plate backflow and breakaway check valve of claim 12 further comprises an upper valve bar and a lower valve bar attached inside the upper portion and the lower portion respectively.
16. The dual plate backflow and breakaway check valve of claim 12 further comprises at least one lower pin mounting hole to connect the lower dual valve and the lower portion of the barrel assembly together utilizing at least one lower pin set screw.
17. The dual plate backflow and breakaway check valve of claim 12 wherein the breakage of the groove causes a residual back pressure of fluid in at least one pipeline connected to dual plate backflow and breakaway check valve.
18. The dual plate backflow and breakaway check valve of claim 12 wherein the plurality of lower valve tabs is attached perpendicular to the lower front plate and the lower back plate.
19. A dual plate inversely mounted backflow and breakaway check valve comprising: a barrel assembly having an upper portion, a lower portion, a top mounting flange, a bottom mounting flange and a groove; an upper dual valve having an upper front plate and an upper back plate arranged inside the upper portion of the barrel assembly utilizing a plurality of upper valve springs and an upper valve pin designed to insert through a plurality of upper plate pin holes; at least one upper pin mounting hole to connect the upper dual valve and the upper portion of the barrel assembly together utilizing at least one upper pin set screw; an upper valve bar attached inside the upper portion; a lower dual valve having a lower front plate and a lower back plate arranged inside the lower portion of the barrel assembly utilizing a plurality of lower valve springs and a lower valve pin designed to insert through a plurality of lower plate pin holes; at least one lower pin mounting hole to connect the lower dual valve and the lower portion of the barrel assembly together utilizing at least one lower pin set screw; a plurality of holes located at the lower front plate and the lower back plate; a lower valve bar attached inside the lower portion; a plurality of lower valve tabs attached perpendicular to the lower front plate and the lower back plate; and a lower valve keeper bar arranged within the upper portion of the barrel assembly, the lower valve keeper bar moves up from between the plurality of lower valve tabs upon breakage of the groove causing a residual back pressure of fluid in at least one pipeline connected to the dual plate backflow and breakaway check valve thereby allowing the lower front plate and the lower back plate to rotate about the lower valve pin and closing the lower dual valve upon a lower barrel bevel and allowing the upper front plate and the upper back plate to rotate about the upper valve pin and closing upon an upper barrel bevel.
20. The dual plate inversely mounted backflow and breakaway check valve of claim 19 is designed to mount above grade level.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Elements in the figures have not necessarily been drawn to scale in order to enhance their clarity and improve understanding of these various elements and embodiments of the invention. Furthermore, elements that are known to be common and well understood to those in the industry are not depicted in order to provide a clear view of the various embodiments of the invention, thus the drawings are generalized in form in the interest of clarity and conciseness.
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0024] The following describes example embodiments in which the present invention may be practiced. This invention, however, may be embodied in many different ways, and the description provided herein should not be construed as limiting in any way.
[0025] In this document, the terms “a” or “an” are used, as is common in patent documents, to include one or more than one. In this document, the term “or” is used to refer to a nonexclusive “or,” such that “A or B” includes “A but not B,” “B but not A,” and “A and B,” unless otherwise indicated. Furthermore, all publications, patents, and patent documents referred to in this document are incorporated by reference herein in their entirety, as though individually incorporated by reference. In the event of inconsistent usages between this document and those documents so incorporated by reference, the usage in the incorporated reference(s) should be considered supplementary to that of this document; for irreconcilable inconsistencies, the usage in this document controls.
[0026] Various inventive features are described below that can each be used independently of one another or in combination with other features. However, any single inventive feature may not address any of the problems discussed above or only address one of the problems discussed above. Further, one or more of the problems discussed above may not be fully addressed by any of the features described below.
[0027] Referring to
[0028] Referring to
[0029] As shown in
[0030] The upper front plate 44 and the upper back plate 46 are assembled around the upper valve pin 24 inserted through the plurality of upper plate pin holes 48 incorporating the plurality of upper valve springs 33 which keeps the upper dual valve 42 in the closed position against the upper barrel bevel 28 (See
[0031] Similarly, the lower front plate 36 and the lower back plate 38 are assembled around the lower valve pin 25 inserted through the plurality of lower plate pin holes 40 incorporating the plurality of lower valve springs 29 which facilitate the rotation of the lower front plate 36 and lower back plate 38. Upon actuation, the lower valve keeper bar 20 is moved away from the plurality of lower valve stay tabs 58 of the lower dual valve 34. This allows the lower dual valve 34 to close upon the lower barrel bevel 22 (See
[0032] In the preferred embodiment, the plurality of witness holes 60 located at the lower front plate 36 and lower back plate 38 has a diameter of ¼ inch. The location of damage to fire hydrants and pipelines can be indicated and readily visualized by the relatively small size of the witness holes 60. The elevated pressure of the fluid contained within the lower dual valve 34 causes a limited high-pressure stream of effluence 65 (See
[0033] Referring to
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[0037] As shown in
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[0041] The dual plate check valve 10 may be of various diameters and may contain various fluids under pressures ranging between 50 and 200 pounds per square inch. Furthermore, the source of fluid pressure is assumed to have a large capacity such that the fluid flow pressure does not decrease over time, particularly within the timeframe of an automatic closing condition. The lower dual valve 34 which acts as a shutoff valve is arranged in a controlled manner so as to rotate to the closing position to ensure that initial closing results in substantially complete shutoff of fluid flow through the lower dual valve 34. The sudden breakage of the annular groove 18 and the automatic shut off of the lower dual valve 34 and the upper dual valve 42 reduces further damage to wet barrel fire hydrants and/or pipelines conveying fluids of all types.
[0042] As shown in
[0043] An advantage of the present invention is that the dual plate check valve 10 provides an emergency warning system to alert individuals when the wet barrel fire hydrants and/or pipelines are damaged. Another advantage of the present invention is that the dual plate check valve 10 is easy to install under the fire hydrant and/or pipeline and can be reinstalled or replaced under an existing fire hydrant and/or pipeline. Yet another advantage of the of the present invention is that dual plate check valve 10 minimizes the vehicular damages as well as decreases damage caused by inundation of fluids.
[0044] While a particular form of the invention has been illustrated and described, it will be apparent that various modifications can be made without departing from the spirit and scope of the invention. Accordingly, it is not intended that the invention be limited, except as by the appended claims.