Embodiments of the present disclosure relate to wall-mounted pool water skimmers for above-ground pools (AGPs) and, more particularly, to skimmers mounted by a thread-and-nut system. The present disclosure further relates to methods for attaching a pool water skimmer to a vertical wall of an AGP.
Above-ground pools and cleaning systems for AGPs are known in the art. Typically, AGPs are constructed of steel, resin, plastic, or other materials. AGPs generally are constructed using a perimeter frame, of various designs, with a heavy plastic, vinyl, or fabric liner to contain water. Additionally, AGPs may be collapsible to enable convenient storage, and they may include portals. Typically, AGPs are constructed entirely above ground. So, in a typical configuration, a suitably level site is chosen, and the pool is assembled and filled in place.
Typically, AGPs include a skimmer system. Traditional wall-mounted skimmer systems for AGPs include a skimmer basket on one side of the vertical wall and a bracket placed on the other side of the wall such that the skimmer basket and bracket are joined through a hole in the vertical wall. Generally, the skimmer basket and bracket are attached to a vertical wall of the AGP with a number of screws, and they are sealed with one or more gaskets or seals. Accordingly, in a typical configuration, the vertical wall and the seals are sandwiched between the bracket and the skimmer basket, and the skimmer system is sealed through the compression provided by the screws. In various traditional skimmer systems, the intake to the skimmer is provided with a weir that allows solids (e.g., leaves, branches, pool toys, large insects) to enter the skimmer unit while preventing the solids from exiting the skimmer and going back into the pool.
But traditional skimmer systems are problematic. They are difficult and time-consuming to install because of the number of screws (or other fastening means) necessary to secure the skimmer basket and bracket to the vertical wall while creating a watertight seal. Further, the compression provided by the screws often fails to create a watertight seal as the force provided by the screws, which are dispersed apart from one another, is not uniform across the surface of the bracket, skimmer basket, or vertical wall.
Thus it would be desirable to develop an improved skimmer system for an above-ground pool that is easy and convenient to install, and that provides an improved watertight seal. It is to the foregoing that the present disclosure is primarily directed.
Various features and advantages of the present disclosure may be more readily understood with reference to the following detailed description taken in conjunction with the accompanying drawing sheets.
The present disclosure can be understood more readily by reference to the following detailed description of exemplary embodiments and the examples included herein. Before the exemplary embodiments of the devices and methods according to the present disclosure are disclosed and described, it is to be understood that embodiments are not limited to those described within this disclosure. Numerous modifications and variations therein will be apparent to those skilled in the art and remain within the scope of the disclosure. It is also to be understood that the terminology used herein is for the purpose of describing specific embodiments only and is not intended to be limiting.
Unless otherwise noted, the terms used herein are to be understood according to conventional usage by those of ordinary skill in the relevant art. In addition to any definitions of terms provided below, it is to be understood that as used in the specification and in the claims, “a” or “an” can mean one or more, depending upon the context in which it is used.
Also, in describing the exemplary embodiments, terminology will be resorted to for the sake of clarity. It is intended that each term contemplates its broadest meaning as understood by those skilled in the art and includes all technical equivalents that operate in a similar manner to accomplish a similar purpose. As used herein, the term “pool” shall refer to and include any above ground or free-standing swimming pool, spa, water tank, or other above-ground liquid containment enclosure.
To facilitate an understanding of the principles and features of the embodiments of the present disclosure, exemplary embodiments are explained hereinafter with reference to their implementation in an illustrative embodiment. Such illustrative embodiments are not, however, intended to be limiting.
The materials described hereinafter as making up the various elements of the embodiments of the present disclosure are intended to be illustrative and not restrictive. Many suitable materials that would perform the same or a similar function as the materials described herein are intended to be embraced within the scope of the exemplary embodiments. Such other materials not described herein can include, but are not limited to, materials that are developed after the time of the development of the invention, for example.
Referring now to the drawings, wherein like reference numerals represent like parts throughout,
Four different containers upon which embodiments of the present disclosure (or traditional skimmer systems 100) can be installed are shown in the perspective views illustrated in
The AGP 200 can be a frame pool or a pop-up type of pool, both of which may be collapsible in nature. Generally, a frame pool is prefabricated and includes a plurality of external vertical braces or frames 260 for supporting the frame pool above the ground, as shown in
Typically, an AGP 200 is formed with the base 210 and side wall 120. The base 210 and side wall 120 can be manufactured out of many different materials and can be formed of the same materials or each a different material. For example, a base 210 and a side wall 120 can be formed from a synthetic material such as, for example, plastic, polyurethane, PVC, nylon, or other synthetic material, or a base 210 and a side wall 120 can be formed from other suitable materials. Generally, the materials should be treated to retain water. For example, such materials could be adhered to, laminated with, coated with, or bonded to a material impermeable to water. In some embodiments, a base 210 can be formed from a nylon shell, which can be laminated or otherwise treated to hold water. Similarly, a wall 120 of an AGP 200 can be constructed from these materials, or other materials having similar suitable qualities. Many of the materials that are used are selected for their durability.
For example, a base 210 can be formed from materials that can be more durable than a side wall 120, as a base 210 may be subjected to more wear than that experienced by a side wall 120. Also, in some embodiments, a base 210 and a side wall 120 can be formed from a combination of materials, which can be adhered or bonded together. The materials used for the various portions of an AGP 200, including, for example, a base 210 and a side wall 120, can be joined (i.e., connected) by way of a number of commonly known suitable techniques, such as sewing, adhesives, bonding, lamination, RF welding, and other suitable joining techniques. The connection of a base 210 to a side wall 120 can be along the bottom 222 of the side wall 120, as shown in
As discussed in relation to
In some embodiments, an AGP 200 may have one or more braces or structural support members 260, as is shown in
As is shown in
In example embodiments, the diameter of a skimmer unit securing nut 320 is substantially equal to the diameter of an intake 315. Accordingly, a skimmer unit securing nut 310 can be threaded onto an intake 315 to create a watertight seal or near-watertight seal (i.e., substantially watertight seal) between the skimmer system 300 and the side wall 110 of the AGP 200. In some embodiments, a watertight seal of a skimmer system 300 can be achieved by the exerted compression force provided by hand-tightening a skimmer unit securing nut 320 onto an intake 315. Accordingly, in some embodiments, a skimmer unit securing nut 320 may be configured with threads that allow for a user or installer to secure a skimmer unit securing nut 320 to an intake 315 using hand-tight force such that hand-tight force is sufficient to achieve a watertight or near-watertight seal between a skimmer system 300 and a side wall 110 when a skimmer unit securing nut 320, intake 315, skimmer unit 310, seal ring 325 (and any other seals or gaskets) are joined together. Typically, it is preferable that a skimmer unit securing nut 320 not be overtightened as overtightening can cause wrinkles in a side wall 120, which may ultimately compromise the integrity of a side wall 120.
In example embodiments, a skimmer unit securing nut 320 may be provided with surface features 335 that allow for a secure grip by a user or installer while securing a skimmer unit securing nut 320 onto an intake 315. As shown in
Numerous characteristics and advantages have been set forth in the foregoing description, together with details of structure and function. While various embodiments of the present disclosure have been presented, it will be apparent of those skilled in the art that many modifications, additions, and deletions, especially in matters of shape, size, and arrangement of parts, can be made therein without departing from the spirit and scope of the disclosure and its equivalents as set forth in the following claims. Therefore, other modifications or embodiments as may be suggested by the teachings herein are particularly reserved as they fall within the breadth and scope of the claims here appended.
This application claims the benefit, under 35 U.S.C. § 120 to U.S. patent application Ser. No. 14/946,910 entitled “THREADED ATTACHMENT SYSTEM FOR WALL-MOUNTED POOL SKIMMER,” filed 20 Nov. 2015, which claims benefit under 35 U.S.C. § 119(e), of U.S. Provisional Patent Application No. 62/083,955, filed 25 Nov. 2014, entitled “THREADED ATTACHMENT SYSTEM FOR WALL-MOUNTED POOL SKIMMER,” the entire contents and substance of which is incorporated herein by reference in its entirety as if fully set forth below.
Number | Name | Date | Kind |
---|---|---|---|
3401958 | Demyon | Sep 1968 | A |
3552567 | Arp | Jan 1971 | A |
3839750 | Baker et al. | Oct 1974 | A |
4179038 | Rosan, Jr. | Dec 1979 | A |
4359790 | Chalberg | Nov 1982 | A |
4426286 | Puckett et al. | Jan 1984 | A |
4454035 | Stefan | Jun 1984 | A |
4903351 | Dengel et al. | Feb 1990 | A |
20020178494 | Marbach | Dec 2002 | A1 |
20080216877 | Lawson | Sep 2008 | A1 |
Number | Date | Country |
---|---|---|
201265265 | Jul 2009 | CN |
103657206 | Mar 2014 | CN |
Number | Date | Country | |
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20190383049 A1 | Dec 2019 | US |
Number | Date | Country | |
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62083955 | Nov 2014 | US |
Number | Date | Country | |
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Parent | 14946910 | Nov 2015 | US |
Child | 16553767 | US |