PRESSURE REGULATOR WITH CHECK VALVE FOR SPRINKLERS
20220226851 · 2022-07-21
Inventors
Cpc classification
B05B12/087
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A water pressure regulator with check valve for sprinklers comprising a housing, a shaft assembly, a spring, and a skirt element. The pressure regulator is a separate unit that can be inserted into the stem or movable riser of a typical pop-up sprinkler or other sprinklers. As the irrigation water passes through the pressure regulator of the present invention, the water pressure displaces the shaft assembly upward relative to the housing. The higher the shaft assembly is displaced, the smaller the cross-sectional area through which water passes within the housing or skirt element. The variation in the size of the cross-sectional area allows the present invention to regulate the out flowing water pressure of the irrigation water. When the flow of irrigation water stops, the spring pushes the shaft assembly downward so as to seal the hole through which water flows thus serving as a check valve. The separate unit design allows the pressure regulator of the present invention to be retrofittable into a common pop-up sprinkler.
Claims
1. A water pressure regulator comprising: a spring; a housing having a bottom plate with a hole, an opening, and a slot having a housing rib; a shaft assembly having a shaft and a seal plate; a skirt element having a bottom opening, atop opening, a sidewall, a skirt rib, and a tube; wherein said shaft is inserted through said spring and through said tube of said skirt element that is inserted into said housing such that said seal plate rests against said bottom plate; and wherein said skirt element is retained within said housing by said skirt rib and said housing rib.
2. The water pressure regulator of claim 1 wherein said sidewall of said skirt element comprises an inner diameter formed by an inner section that is sloped such that said inner diameter is greater at said bottom opening and less at said top opening.
3. The water pressure regulator of claim 1 further comprising a slot located at the top of said tube of said skirt element.
4. The water pressure regulator of claim 1 wherein said shaft assembly further comprises a spring wall.
5. The water pressure regulator of claim 1 wherein said housing and said skirt element are both tubular in shape and said tube is concentrically attached within said skirt element by a plurality of ribs.
6. The water pressure regulator of claim 5 wherein said plurality of ribs have an angled edge that is angled to match with a chamfer on the top edge of a spring wall in said shaft assembly.
7. The water pressure regulator of claim 1 further comprising a gasket placed on a bottom face of said seal plate.
8. The water pressure regulator of claim 1 further comprising a plurality of nubs extending radially outward from said seal plate.
9. The water pressure regulator of claim 1 further comprising a spring wall extending upward from said seal plate.
10. The water pressure regulator of claim 1 further comprising a plurality of flanges extending outward from a bottom edge of said housing.
11. The water pressure regulator of claim 1 further comprising a second slot below said slot and having a second housing rib wherein said skirt element is retained within said housing by said skirt rib and said second housing rib.
12. The water pressure regulator of claim 1 further comprising an o-ring around said housing.
13. The water pressure regulator of claim 1 wherein said housing is inserted into a riser tube of a pop-up sprinkler with said bottom plate facing downward.
14. The water pressure regulator of claim 13 further comprising an o-ring around said housing that creates a radial seal with said riser tube and further comprising a rib around said housing that keeps said housing concentric within said riser tube.
15. A water pressure regulator comprising: a spring; a housing having a bottom plate with a hole, an opening, and a slot; a shaft assembly having a shaft and a seal plate; a skirt element having a bottom opening, a top opening, a sidewall, a skirt rib, and a tube; wherein said shaft is inserted through said spring and through said tube of said skirt element that is held within said housing such that said seal plate rests against said bottom plate; and wherein said skirt element is retained within said housing by said skirt rib inserted into said slot.
16. The water pressure regulator of claim 15 wherein said sidewall of said skirt element comprises an inner diameter formed by an inner section that is sloped such that said inner diameter is greater at said bottom opening and less at said top opening.
17. The water pressure regulator of claim 15 further comprising a slot located at the top of said tube of said skirt element.
18. The water pressure regulator of claim 15 wherein said shaft assembly further comprises a spring wall.
19. The water pressure regulator of claim 15 wherein said housing and said skirt element are both tubular in shape and said tube is concentrically attached within said skirt element by a plurality of ribs.
20. The water pressure regulator of claim 19 wherein said plurality of ribs have an angled edge that is angled to match with a chamfer on the top edge of a spring wall in said shaft assembly.
21. The water pressure regulator of claim 15 further comprising a gasket placed on a bottom face of said seal plate.
22. The water pressure regulator of claim 15 further comprising a plurality of nubs extending radially outward from said seal plate.
23. The water pressure regulator of claim 15 further comprising a spring wall extending upward from said seal plate.
24. The water pressure regulator of claim 15 further comprising a plurality of flanges extending outward from a bottom edge of said housing.
25. The water pressure regulator of claim 15 further comprising a second slot below said slot and having a second housing rib wherein said skirt element is retained within said housing by said skirt rib and said second housing rib.
26. The water pressure regulator of claim 15 further comprising an o-ring around said housing.
27. The water pressure regulator of claim 15 wherein said housing is inserted into a riser tube of a pop-up sprinkler with said bottom plate facing downward.
28. The water pressure regulator of claim 27 further comprising an o-ring around said housing that creates a radial seal with said riser tube and further comprising a rib around said housing that keeps said housing concentric within said riser tube.
29. A water pressure regulator comprising: a spring; a housing having a bottom plate with a hole, an opening, a sidewall, and a tube; a shaft assembly having a shaft, and a seal plate; and wherein said shaft is inserted through said spring and through said tube such that said seal plate rests against said bottom plate.
30. The water pressure regulator of claim 29 wherein said sidewall of said housing comprises an inner diameter formed by an inner section that is sloped such that said inner diameter is greater at said bottom plate and less at said opening.
31. The water pressure regulator of claim 29 wherein said shaft assembly further comprises a spring wall.
32. The water pressure regulator of claim 29 wherein said housing is tubular in shape and said tube is concentrically attached therewithin by a plurality of ribs.
33. The water pressure regulator of claim 32 wherein said plurality of ribs have an angled edge that is angled to match with a chamfer on the top edge of a spring wall in said shaft assembly.
34. The water pressure regulator of claim 29 further comprising a gasket placed on a bottom face of said seal plate.
35. The water pressure regulator of claim 29 further comprising a plurality of nubs extending radially outward from said seal plate.
36. The water pressure regulator of claim 29 further comprising a plurality of flanges extending outward from a bottom edge of said housing.
37. The water pressure regulator of claim 29 further comprising a second slot in said housing below said slot wherein said shaft assembly is retained therewithin by said retaining element inserted within said second slot.
38. The water pressure regulator of claim 29 further comprising an o-ring around said housing.
39. The water pressure regulator of claim 29 wherein said housing is inserted into a riser tube of a pop-up sprinkler with said bottom plate facing downward.
40. The water pressure regulator of claim 39 further comprising an o-ring around said housing that creates a radial seal with said riser tube and further comprising a rib around said housing that keeps said housing concentric within said riser tube.
Description
DESCRIPTION OF THE DRAWINGS
[0016] The accompanying drawings, which are incorporated herein and form part of the specification, illustrate various embodiments of the present invention and, together with the description, further serve to explain the principles of the invention and to enable a person skilled in the pertinent art to make and use the invention. In the drawings, like reference numbers indicate identical or functional similar elements. A more complete appreciation of the invention and many of the attendant advantages thereof will be readily obtained as the same becomes better understood by reference to the following detailed description considered in connection with the accompanying drawings, wherein:
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DETAILED DESCRIPTION OF THE INVENTION
[0029] Certain terminology is used in the following descriptions for convenience only and is not limiting. The words “right”, “left”, “lower”, and “upper” designate directions in the drawings to which reference is made. The words “inwardly” or “distally” and “outwardly” or “proximally” refer to directions toward and away from, respectively, the geometric center or orientation of the device and instruments and related parts thereof. The terminology includes the above-listed words, derivatives thereof, and words of similar import.
[0030] Although the present invention can be used in connection with any type of sprinkler or irrigation application, it is especially suited for pop-up sprinklers in connection with the irrigation of lawns, trees, and flowers. Accordingly, the present invention will be described herein with reference to pop-up sprinkler applications. However, the preferred system of the present application may also be adapted for with other types of sprinklers or irrigation systems.
[0031] Reference will be made to the drawings in which various elements of the present invention will be given numerical designations and in which the invention will be discussed so as to enable one skilled in the art to make and use the present invention.
[0032] The pressure regulator with check valve for sprinklers 100 of the present invention comprises a housing 10, a shaft assembly 20, a spring 30, and a skirt element 40. A conventional pop-up sprinkler 200 comprises a housing 210, a riser tube 220, and a spring 230 that is placed such that it presses the riser tube 220 downward in the retracted position with the top of the riser tube 220 flush with the ground. When water flows into the pop-up sprinkler 200, the water pressure causes the spring 230 to be compressed thus allowing the riser tube 220 to pop-up above the ground to its extended position. The pressure regulator with check valve for sprinklers 100 of the present invention is inserted into the lower section of the riser tube 220 of a conventional pop-up sprinkler 200 through the bottom opening 225 thereof as shown in
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[0034] As shown in
[0035] As shown in
[0036] As shown in
[0037] Hereinafter, an explanation on the methods of assembling the product of the present invention, the installation thereof to a tree, and the operating states thereof will be given.
[0038] Assembly of the pressure regulator with check valve for sprinklers 100 of the present invention is accomplished by first placing a spring 30 around the shaft 21 with one end resting on top of the seal plate 22. Second, once the spring 30 is in place around the shaft 21, the top of the shaft 21 is inserted into the skirt element 40 through the bottom opening 41 until the top of the shaft 21 is inserted into the bottom end of the tube 44. Once in place, the shaft assembly 20 is within the skirt element 40 and the spring 30 is held in place by the seal plate 22 in one end and the radial ribs 45 in the other. Third, with the spring 30 and shaft assembly 20 in place, the bottom opening 41 of the skirt element 40 is inserted into the housing 10 through the opening 16. When inserting the skirt element 40 into the housing 10, the skirt ribs 49 must not be in alignment with the housing ribs 19a or 19b. As the skirt element 40 is inserted into the housing 10, the gasket 24 is pressed against the bottom plate 14 such that the spring 30 is compressed. Once the skirt ribs 49 are inserted past the housing ribs 19a, the slot 46 is used to rotate the skirt element 40 with a screwdriver. The skirt element 40 is then released when the skirt ribs 49 are aligned directly under the housing ribs 19a. Once released, the skirt element 40 is held within the housing 10 by the skirt ribs 49 pressing against the housing ribs 19a and the spring partly compressed so as to push the seal plate 22 against the bottom plate 14.
[0039] Alternatively, instead of a skirt element 40 that has to be rotated to be retained within the housing 10, the skirt ribs 49 in the skirt element 40 can be designed to flex so as to serve as a snapping mechanism. Thus, the flexing skirt ribs 49 can then snap into the slots 17a and 17b of the housing 10 so as to retain the skirt element 40 within the housing 10.
[0040] After the pressure regulator with check valve for sprinklers 100 of the present invention is assembled as described above, the housing 10 is inserted into the riser tube 220 of a pop-up sprinkler 200 through the bottom end until the flanges 13 rest on the bottom edge 225 of the riser tube 220 to prevent the pressure regulator with check valve for sprinklers 100 of the present invention from being fully inserted or pushed into the riser tube 220. Once in place, the friction between the O-ring 11 and the inner sidewall of the riser tube 220 holds the pressure regulator with check valve for sprinklers 100 of the present invention in place within the riser tube 220 of the pop-up sprinkler 200.
[0041] With the pressure regulator with check valve for sprinklers 100 of the present invention inserted into the riser tube 220 of a pop-up sprinkler 200, the irrigation water is turned on and water flowing into the pop-up sprinkler 200 is directed to the hole 15. The water pressure then pushes against the gasket 24 and the seal plate 22. As the upward pressure from the water against the seal plate 22 becomes greater than the downward pressure from the spring 30 against the seal plate 22, the seal plate 22 and the shaft assembly 20 are displaced upward to allow the water to flow upward around it until it exists through the opening 16.
[0042] As the irrigation water flows through the pressure regulator with check valve for sprinklers 100 of the present invention, the pressure of the water is regulated by the seal plate 22 and the inner section 48 of the sidewall 43 that is angled or sloped such that the inner diameter of the skirt element 40 varies between its bottom opening 41 and its top opening 42. Essentially, the irrigation water is directed into the pressure regulator with check valve for sprinklers 100 of the present invention and around the seal plate 22 through a cross-section that is defined by the outer edge or circumference of the seal plate 22 and the inner diameter of the skirt element 40. Since the inner diameter of the skirt element 40 is greater towards the bottom opening 41 and less towards the top opening 42, the cross-section through which the irrigation water flows through is greater towards the bottom opening 41 and less towards the top opening 42. Ultimately, the pressure of the irrigation water as it exits the pressure regulator with check valve for sprinklers 100 of the present invention and is ejected out of the pop-up sprinkler 200 is regulated by the size of the cross-section. Essentially, the pressure of the irrigation water ejected out of the pop-up sprinkler 200 is ultimately regulated by the distance that the seal plate 22 is displaced within the skirt element 40 from the bottom plate 14. Displacement of the seal plate 22 ceases when the chamfer 27 is pressed against the an angled edge 47 at the bottom of the ribs 45.
[0043] When assembling the skirt element 40 into the housing 10, the skirt ribs 49 can aligned with the housing ribs 19a of the first slot 17a or the housing ribs 19b of the second slot 17b. Aligning the skirt ribs 49 with housing ribs 19a allows the seal plate 22 to be displaced upwardly a greater distance from the bottom plate 14 than aligning the skirt ribs 49 with the housing ribs 19b because the first slot 17a is higher than the second slot 17b. Essentially, aligning the skirt element 40 with the first slot 17a regulates the irrigation water to flow out of the pop-up sprinkler 200 at a first predetermined water pressure. Similarly, aligning the skirt element 40 with the second slot 17b regulates the irrigation water to flow out of the pop-up sprinkler 200 at a second predetermined water pressure. In addition, to further regulate or set the water pressure, a spring 30 with s specific strength or resistance can be used to correspond to the desired water pressure.
[0044] An alternative embodiment of the pressure regulator with check valve for sprinklers 100 of the present invention eliminates the need of the skirt element 40 and includes the integral characteristics of the skirt element 40 within the housing 10 and shaft assembly 20, as shown in
[0045] It is understood that the described embodiments of the present invention are illustrative only, and that modifications thereof may occur to those skilled in the art. Accordingly, this invention is not to be regarded as limited to the embodiments disclosed, but to be limited only as defined by the appended claims herein.