Assembly to Extend the Height of a Popup Sprinkler Nozzle
20210323020 ยท 2021-10-21
Inventors
Cpc classification
B05B15/656
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
Disclosed herein is an assembly consisting of two cooperating components. The first component, referred to as a sleeve, is in the shape of a hollow cylinder having an inner surface and an outer surface. The sleeve has a threaded attachment means at its proximal end to be releasably attached to the sprinkler's housing and a similar threaded attachment means at its distal end to be releasably attached to the sprinkler's cap. Within the sleeve is a retaining ring, orientated about its proximal end, protruding inwardly about the circumference of the inner surface of the sleeve, the retaining ring acting as a stop for the sprinkler's internal spring and riser.
Claims
1. An assembly to extend a sprinkler head that is mounted between the distal end of the sprinkler's housing and the proximal end of the sprinkler's cap the assembly comprising: a sleeve in the form of a hollow cylinder with an internal surface and open proximal and distal ends said sleeve having: a threaded first attachment means at its proximal end configured for attachment to the distal end of a sprinkler's housing, a threaded second attachment means at its distal end configured for attachment to the proximal end of a sprinkler cap, and a retaining ring protruding from said internal surface being proximate to said first attachment means; and a riser extension in the form of a hollow cylinder with open proximal and distal ends having: a threaded first attachment means at its proximal end configured for attachment to the distal end of a sprinkler's riser, a threaded second attachment means at its distal end configured for attachment to the proximal end of a sprinkler's nozzle.
2. An assembly to extend a sprinkler head that is mounted between the distal end of the sprinkler's housing, or the distal end of a previously installed assembly, and the proximal end of the sprinkler's cap the assembly comprising: a sleeve in the form of a hollow cylinder with an internal surface and open proximal and distal ends said sleeve having: a threaded first attachment means at its proximal end configured for attachment to the distal end of a sprinkler's housing or to the distal end of a previously installed sleeve, a threaded second attachment means at its distal end configured for attachment to the proximal end of a sprinkler cap, and a retaining ring protruding from said internal surface being proximate to said first attachment means; and a riser extension in the form of a hollow cylinder with open proximal and distal ends having: a threaded first attachment means at its proximal end configured for attachment to the distal end of a sprinkler's riser or to the distal end of a previously installed riser extension, a threaded second attachment means at its distal end configured for attachment to the proximal end of a sprinkler's nozzle.
3. The assembly of claim 1 wherein said internal surface of said sleeve is cylindrical.
4. The assembly of claim 2 wherein said internal surface of said sleeve is cylindrical.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0014] The present invention will become more fully understood from the detailed description and accompanying drawings. Other systems, methods, features, and advantages of the invention will be or will become apparent to one with skill in the art upon examination of the following figures and detailed description. It is intended that all such additional systems, methods, features, and advantages be included within this description, be within the scope of the invention, and be protected by the accompanying claims. Component parts shown in the drawings are not necessarily to scale and may be exaggerated to better illustrate the important features of the invention. Dimensions disclosed or shown are exemplary only. In the drawings, like reference numerals may designate like parts throughout the different views, wherein:
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[0023]
DEFINITIONS
[0024] Spring constant is a characteristic of a spring which measures the ratio of the force affecting the spring to the displacement caused by it. In other words, it describes how stiff a spring is and how much it will stretch or compress. Springs with larger spring constants will have smaller displacements than springs with lesser spring constants for the same mass added.
DETAILED DESCRIPTION OF THE INVENTION
[0025] The following description of the preferred embodiment(s) is merely exemplary in nature and is in no way intended to limit the invention, its application, or uses. The foregoing problems installing risers on existing pop-up sprinklers are overcome by the assembly disclosed herein. In one embodiment, the extension kit consists of two cooperating parts: an external sleeve and an internal riser extension.
[0026] Broadly,
[0027] housing 28 contains riser 32 which is slidably or otherwise movably received within housing 28 between a retracted, non-operational position (as shown in
[0028] cap 36 is releasably joined to housing 28 by matching male and female threads found on cap 36 and housing 28. Centrally located within cap 36 is a cylindrical opening of a diameter slightly greater than the diameter of riser 32 wherethrough riser 32 passes when the water pressure present in water line 22 overcomes the spring constant of spring 34. The cylindrical opening is shown in
[0029] Atop riser 32 is found nozzle 38, nozzle 38 is releasable joined to riser 32 by matching ale and female threads found on riser 32 and nozzle 38. Nozzle 38 has small openings to release water when pressure from water line 22 overcomes the spring constant of spring 34 and water passes from water line 22, into housing 28 and through riser 32. About the upper edge of nozzle 38 is found a flange that prevents nozzle 38 from passing through the cylindrical opening in cap 36 when the water pressure in water line 22 fails to overcome spring 34 spring constant.
[0030] housing 28 is generally a hollow cylinder with openings at both ends of the cylinder. The lower opening of housing 28 is releasably joined to threaded riser 26 by matching male and female threads while the upper opening of housing 28 is releasably joined to cap 36 by matching male and female threads, housing 28, on its internal walls, may contain one or more alignment features having the appearance of splines extending along the longitudinal length of housing 28 to engage matching alignment features found at the base of riser 32. These alignment features are not shown in this disclosure as they are not essential to the assembly being disclosed. Threaded riser 26, just as housing 28, is generally a hollow cylinder with openings at both ends of the cylinder that are threaded. As described above, the upper opening of threaded riser 26 is joined to matching threads found at the lower opening of housing 28 while the lower opening of threaded riser 26 is joined to matching threads found on tee junction 24. Water within water line 22 may freely pass-through tee junction 24 and threaded riser 26 into housing 28.
[0031] About riser 32 and within housing 28 is found spring 34, Spring 34 is bounded at its lower end by the flange found at the base of riser 32 and at its upper end by cap 36. When the pressure of the water in water line 22 is unable to overcome the force of spring 34 expansion, spring 34 will fully extend within housing 28 thus retracting riser 32 within housing 28 and nozzle 38 within cap 36. The close abutment of the walls of cap 36 with the walls of nozzle 38 will block the flow of any residual water out of the small openings present in nozzle 38. When the pressure of the water in water line 22 is able to overcome the expansion force of spring 34, spring 34 will collapse within housing 28 thus allowing riser 32 to extend upwards from housing 28 through cap 36. As long as the pressure of the water in water line 22 is able to overcome the expansion force of spring 34, water will rise through tee junction 24 through threaded riser 26 through housing 28 through riser 32 and out through the small openings in nozzle 38. This is depicted in
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[0035] The length of sleeve 40 and riser extension 44 may be fabricated to raise nozzle 38 to different heights. Thus, consumers may purchase the assembly of the present invention to raise nozzle 38 by half an inch, an inch, or other such lengths. Additionally, threading or diameter on sleeve 40 and riser extension 44 may be varied to accommodate the threading or diameter used by the various manufacturers of sprinkler heads. Finally, sleeve 40 and riser extension 44 may be paired with additional sleeve 40 and riser extension 44 to further increase the height of nozzle 38.
[0036]
[0037]
[0038] Exemplary embodiments of the invention have been disclosed in an illustrative style. Accordingly, the terminology employed throughout should be read in a non-limiting manner. Although minor modifications to the teachings herein will occur to those well versed in the art, it shall be understood that what is intended to be circumscribed within the scope of the patent warranted hereon are all such embodiments that reasonably fall within the scope of the advancement to the art hereby contributed, and that that scope shall not be restricted, except in light of the appended claims and their equivalents.