The present invention relates generally to bathtub drain and overflow assemblies.
Modern bathtubs have a drain opening and an overflow opening. The drain opening is positioned at the lowest point in a bathtub bottom wall, and allows water to be drained from the bathtub when it is no longer needed. The overflow opening is positioned in a bathtub end wall, usually below the taps, and allows for excess water to drain from the bathtub when it is overfilled. While drain openings often are set in the bathtub bottom walls so as to be level with the ground, overflow openings are often set in line with the slope of the bathtub end walls, which often extend upwardly from the bathtub bottom walls at a non-vertical angle.
Drain and overflow openings are typically connected to household waste plumbing with drain and overflow fittings, which attach sealingly to the respective drain and overflow openings, and conduits which connect the drain and overflow fittings to the household waste water plumbing. Recently innovative manufacturers have provided the drain fittings, overflow fittings, and conduits together and sold them as a kit, along with other plumbing fittings and trim fittings, such as for example faceplates and drain baskets.
There have been numerous attempts at overcoming problems associated with prior art bathtub drain and overflow kits.
Bathtubs come in a variety of designs. The relative positions of drain and overflow openings often vary from bathtub to bathtub. Similarly, the slope of bathtub end walls varies from bathtub to bathtub as does the size of the overflow openings. Both the slope of the bathtub end wall and the location of the overflow opening create challenges for the creation of bathtub drain and overflow kits that can be used on more than one bathtub design. The various differences in bathtub designs has therefore required manufacturers to make bathtub overflow kits specific to the several different bathtub designs, which is burdensome for resellers who need to stock several different kits. Furthermore, if fixed fittings are used between the overflow opening and the drain, then stress will be added to the system, particularly if force is required to connect the fittings between the drain and overflow opening. Often fittings will be connected together permanently using solvent cement.
U.S. Pat. No. 6,886,193 (McAlpine) discloses one attempt at overcoming the problem of the relative alignment of the overflow and the drain. McAlpine discloses an overflow head which is connected to a down pipe by a ball and socket joint. The ball and socket joint in McAlpine allows for relative alignment of the overflow head and the outlet. However, McAlpine teaches fixing the ball and socket joint to retain its position after the installation. A problem with the McAlpine overflow head is that it requires a cumbersome brass circular nut to secure the joint together. The preferred form of the McAlpine bath waste is said to have the nut fixed or “factory sealed” onto the joint, using glue or welding, to prevent users from disassembling the joint. The tightness of the fixed nut is sufficient to permit a degree of movement of the ball and socket joint, to allow the relative alignment of the head and outlet to be adjusted. However, a failure to properly tighten the brass circular nut can cause problems. For example, if the brass nut is not sufficiently tightened, the joint may leak. On the other hand if the brass nut is overtightened the joint may become a fixed joint, which is undesirable because it can add stress to the system. The use of welding or glue can also cause the joint to become a fixed joint. The McAlpine bath waste is also susceptible to leaking from the joint loosening over time from repetitive expansions and contractions of the joint and the pipes connected to it, in response to cycles of hot bath water draining through the system.
Furthermore, it is common for municipal plumbing codes to require plumbing joints that are located in an inaccessible location, such as inside a wall or floor, to be permanent. This means that a detachable connection between the drain and overflow openings is not permitted by most municipal plumbing codes since it is not a permanent connection.
Another problem with the variability of bathtub designs is that the variability in bathtub end wall slopes creates challenges for properly aligning and installing the sealing gaskets at the overflow openings. The problem of properly installing overflow gaskets also arises in those cases where different bathtubs have different sizes of overflow openings. Prior bathtub drain and overflow kits often have overflow gaskets that are difficult to fix into place during assembly of the overflow fitting. The prior art gaskets are often disc-shaped washer-type seals that are held in place through pressure, which means that misalignment can occur easily. Proper sealing of the overflow gasket often requires the gasket to be properly centered with respect to the overflow opening. Misalignment of the gasket at the overflow opening will result in a leaking connection.
Another problem with prior art bathtub drain and overflow fittings is that different gasket designs are required depending on whether it is used for a drain opening or an overflow opening. This problem arises because the openings in the bathtub walls are generally different sizes for the drain and the overflow. For example, U.S. Pat. No. 2,880,425 (Lengyel) discloses a drain apparatus which has an interposed sealing gasket for sealing the overflow opening. The sealing gasket is shown having a slanted portion which seals against the bath tub. However, Lengyel discloses two separate gaskets for the overflow opening and the drain opening. This means that separate seals must be specifically designed for each of the openings. Furthermore, if replacement parts are required, for example, if a gasket is lost or damaged, a different gasket part would be required depending on whether the replacement part is to be connected to the overflow opening or the drain opening. Moreover, this means that if a drain and overflow kit is sold with replacement pieces, different replacement gaskets would be required for each of the drain and overflow openings, adding to the complexity of the system.
Other prior art patents of general interest in the field of plumbing connections and fittings include:
Therefore there is a continuing need for improvement in the design of bathtub drain and overflow fitting kits.
The present invention is directed to improved drain fittings, overflow fittings, an adapter fitting, and a gasket, for a bathtub drain and overflow kit, which overcome at least some of the problems associated with the prior art.
According to preferred embodiments of the present invention the drain, overflow, and adapter fittings are configured to retain the gasket at their inlets. Accordingly, the preferred fittings have at their inlets a flange which includes a retaining feature for interengaging with matching retaining features on the gasket to retain the gasket thereon. The flange is also sized and shape to seal to a sealing side of the gasket around the bathtub drain or overflow openings.
Preferably, the drain and overflow fittings are adjustable in angle relative to each other to accommodate for variations in the slopes of bathtub end walls. Accordingly, the drain and overflow fittings have a joint ball and joint socket and a snap ring to permanently join the joint ball and the joint socket to form a leak resistant joint that permits a range of angles between the inlet and outlet of the fitting to facilitate ease of installation.
According to one embodiment of the present invention, the range of angles between the joint ball and joint socket is limited to ensure the joint ball and joint socket will not pass beyond a range of angles in which the joint can operate in a leakproof manner. For example the adjustable fitting can include an abutment member extending from an outer surface of the joint ball and positioned to engage an edge of the joint socket at a predetermined angle which limits the range of angles created by the joint socket and joint ball within a range of angles of about 10°.
The preferred gasket can be used at either the drain opening or the overflow opening of a bathtub. Accordingly, the preferred gasket has a first sealing portion, a second sealing portion and a tapered sealing portion between the first and second sealing portions. The first sealing portion is sized and positioned to seal against a bottom wall of the bathtub around a drain opening in the bottom wall of the bathtub. The tapered sealing portion is sized and positioned to wedge into an overflow opening formed in the bathtub end wall to form a primary seal. The second sealing portion is sized and positioned to seal against a bathtub end wall around the overflow opening to form a secondary seal.
Therefore, according to one aspect of the present invention, there is provided a gasket for a bathtub drain and overflow kit, said gasket having a sealing side, said gasket comprising:
an aperture positioned substantially through a centre of said gasket, said aperture being sized and shaped to accommodate a drain basket or a faceplate retainer;
a first sealing portion extending around said aperture on said sealing side, said first sealing portion being sized and positioned on said gasket to seal against a bottom wall of said bathtub around a drain opening formed in said bottom wall of said bathtub;
a second sealing portion extending around said first sealing portion on said sealing side, said first sealing portion being raised relative to said second sealing portion, said second sealing portion being sized and positioned to seal against a bathtub end wall around an overflow opening to form a secondary seal around said overflow opening; and
a tapered sealing portion extending between said first sealing portion and said second sealing portion, said tapered sealing portion being sized and positioned to wedge into said overflow opening formed in said bathtub end wall to form a primary seal;
wherein the same gasket can be used at either said drain opening or said overflow opening.
According to another aspect of the present invention, there is provided a fitting for a bathtub drain and overflow kit, said fitting having an inlet comprising:
a flange sized and shaped to seal a sealing side of a gasket around a bathtub drain opening or a bathtub overflow opening, said gasket having a retaining feature on the opposite side of said gasket from said sealing side; and
a matching retaining feature formed on said flange;
wherein said retaining feature and said matching retaining feature interengage to retain said gasket on said flange.
According to yet another aspect of the present invention, there is provided an adjustable bathtub drain or overflow fitting for a bathtub drain and overflow kit, said adjustable bathtub drain or overflow fitting comprising:
an inlet body defining an inlet at one end and one of a joint socket and a joint ball at the other end, said joint socket having a part spherical inner surface, said joint ball having a part spherical outer surface that is sized and shaped to mate with said joint socket;
an outlet body defining an outlet at one end and the other of said joint socket and said joint ball at the other end;
a seal member positioned between said outer surface of said joint ball and said inner surface of said joint socket; and
a snap ring configured to permanently join said joint ball and said seal member to said joint socket to form a leak resistant joint, said snap ring having one or more locking features configured to interengage with one or more corresponding locking features on an outer surface of said joint socket; and
a passageway between said inlet and said outlet;
wherein said fitting permits a range of angles between said inlet and said outlet to facilitate ease of installation.
According to yet another aspect of the present invention, there is provided an adjustable bathtub drain or overflow fitting for a bathtub drain and overflow kit, said adjustable bathtub drain or overflow fitting comprising:
an inlet body defining an inlet at one end and one of a joint socket and a joint ball at the other end, said joint socket having a part spherical inner surface, said joint ball having a part spherical outer surface that is sized and shaped to mate with said joint socket;
an outlet body defining an outlet at one end and the other of said joint ball and said joint socket at the other end;
a seal member positioned between said outer surface of said joint ball and said inner surface of said joint socket; and
said joint socket and said joint ball being sized an shaped to permit said joint socket and said joint ball to be snapped together to form a leak resistant joint over a range of angles;
a passageway between said inlet and said outlet; and
an abutment member extending from said outer surface of said joint ball, and
positioned to engage an edge of said joint socket at a predetermined angle of said inlet body relative to said outlet body;
wherein said abutment member and said edge limit said range of angles to about 10°.
Reference will now be made to the preferred embodiments of the present invention with reference, by way of example only, to the following drawings in which:
The present invention is described in more detail with reference to exemplary embodiments thereof as shown in the appended drawing. While the present invention is described below including preferred embodiments, it should be understood that the present invention is not limited thereto. Those of ordinary skill in the art having access to the teachings herein will recognize additional implementations, modifications, and embodiments which are within the scope of the present invention as disclosed and claimed herein. For the purposes of clarity, not every component is labelled in every figure, nor is every component of each embodiment of the invention shown where illustration is not necessary to allow those of ordinary skill in the art to understand the invention.
A bathtub drain and overflow kit 10 according to an embodiment of the present invention is shown in
A bathtub drain fitting 34 is attached at the drain opening 36 in the bathtub bottom wall 38 with a threaded portion 40 of a drain basket 42 passing through the drain opening 36 into threaded engagement with a threaded portion 43 in the inlet 44 of the drain fitting 34. A gasket 28 is attached to the inlet 44 of the drain fitting 34 such that the gasket 28 is compressed between the drain fitting 34 and the outside surface of the bathtub bottom wall 38 when the drain basket 42 is secured to the drain fitting 34, thus forming a watertight seal. As will be discussed in more detail below, the gasket 28 installed at the overflow opening 16 is preferably identical to the gasket 28 installed at the drain opening 36. Although not shown, the drain fitting 14 may also be provided with a ball and socket joint between its inlet 44 and its outlet 46, to accommodate for variations in how the fitting may be connected, including the slope S′ of the bathtub bottom wall, the slope S of the bathtub end wall or the installation of the fitting around other pipes or studs around the bathtub.
Preferably, the outlets 32, 46 of the overflow fitting 14 and the drain fitting 34 are sized and shaped to attach to standard plumbing fittings, such as for example pipes, elbows, T-connectors, Y-connectors, and the like. As shown in
As will be appreciated, with the exception of the gasket 28, the other components of the bathtub drain and overflow kit will preferably be formed from plastics such as, for example, PVC or ABS by injection moulding, and joined together by solvent bonding, adhesive bonding or the like. Preferably the ball and socket joint will be factory assembled and made permanent with a snap ring as discussed in more detail below. The gasket 28 will preferably be formed from rubber, plastic, re-grinded resin from pre-existing products, or other resilient material(s) having watertight sealing qualities. It is important that the gasket that is made from a material that is flexible to ensure a proper seal. The gasket may be constructed by various means, such as for example, by injection moulding, re-grinding pre-existing materials, or using 3D printing. However, other materials, manufacturing methods, and joining methods, will be available to persons skilled in the art, and all such materials and methods are contemplated by the present invention.
The components of the preferred bathtub drain and overflow kit 10 are best seen in the exploded view shown in
Referring now to
Although, the embodiment of the overflow fitting 14 shown in
The joint ball 60 and joint socket 64 connection permits a range of angles in all directions between the inlet 26 and the outlet 32 which facilitates ease of installation and relieves stress by providing a live joint.
Preferably, an abutment member 70 is positioned on the joint ball 60, extending from the outer surface of the joint ball 60, to engage an edge 72 of the joint socket 64 at a predetermined angle of the inlet body 58 relative to the outlet body 62 of the overflow fitting 14. Preferably, the abutment member 70 and the edge 72 of the joint socket 64 interact to limit the range of angles to about 10°.
It will now be appreciated, that although the preferred overflow fitting 14 has an inlet body 58 with the inlet 26 at a 90° angle relative to its outlet 74, the attachment of an outlet body 62 to the outlet 74 of the inlet body 58 with a ball and socket joint permits a range of angles between the inlet 26 and the outlet 32 of the overflow fitting 14.
As mentioned above, the outlet 32 of the overflow fitting 14 is preferably attached to conduit 50, which in turn is attached to waste conduit 54 via T-connector 48, which also connects the drain fitting 34 via conduit 52.
The inlet 26 of the overflow fitting 14 is configure to carry gasket 28 and seal the inlet 26 to the overflow opening 16 of the bathtub end wall 18. Preferably, the inlet 26 includes a flange 76 sized and shaped to seal a sealing side 78 gasket 28 around the bathtub overflow opening 16. Preferably, the gasket 28 can be used at either the drain opening 36 or the overflow opening 16.
As discussed in more detail below, the gasket 28 preferably has a retaining feature 80 on the opposite side of the gasket from the sealing side 78. A matching retaining feature 82 is formed on the flange 76, and the retaining feature 80 and the matching retaining feature 82 interengage to retain the gasket 28 on the flange 76. Preferably, the retaining feature 80 is a substantially annular recessed portion 84, and the matching retaining feature 82 is a substantially annular raised portion 86 on the flange 76, and the interengagement is an interference fit coupling or the like. For example, the recessed portion 84 may include a continuous or discontinuous overhang 124 for engaging a matching lip or outwardly flared portion 126 of the raised portion 86 as shown in
As shown in
Referring now to
The inlet 44 of the drain fitting 34 is configure to carry gasket 28 and seal the inlet 44 to the drain opening 36 of the bathtub bottom wall 38. Preferably, the inlet 44 includes a flange 102 sized and shaped to seal the sealing side 78 of gasket 28 around the bathtub drain opening 36. As mentioned above, preferably the gasket 28 can be used at either the drain opening 36 or said overflow opening 16.
As discussed above, the preferred gasket 28 has a retaining feature 80 on the opposite side of the gasket from the sealing side 78. A matching retaining feature 104 is formed on the flange 102, and the retaining feature 80 and the matching retaining feature 104 interengage to retain the gasket 28 on the flange 102. Preferably, the retaining feature 80 is a substantially annular recessed portion 84, and the matching retaining feature 104 is a substantially annular raised portion 106 on the flange 102, and the interengagement is an interference fit coupling or the like. For example, the recessed portion 84 may include a continuous or discontinuous overhang 124 for engaging a matching lip or outwardly flared portion 126 of the raised portion 106 as shown in
As shown in
Referring now to
As can be seen, the aperture 116 is positioned substantially through a centre of the gasket 28. Preferably the aperture 116 is sized and shaped to accommodate a drain basket 42 or a faceplate retainer 22. In this respect, good results have been obtained using a circular aperture having a diameter of 2.58 cm to 2.62 cm. The first sealing portion 114 extends around the aperture 116 on the sealing side 78 and is sized and positioned on the gasket 28 to seal against the bathtub bottom wall 38 around the drain opening 36 formed in the bathtub bottom wall 38. The preferred first sealing portion 114 is annular and has an outside diameter of 3.04 cm to 3.08 cm.
The second sealing portion 96 extends around the first sealing portion 114 on the sealing side 78, and is raised relative to the second sealing portion 96. Preferably, the first sealing portion 114 is raised from the second sealing portion 96. The second sealing portion 96 is sized and positioned to seal against the bathtub end wall 18 around the overflow opening 16 to form a secondary seal around the overflow opening 16. The preferred second sealing portion is annular. The second sealing portion may have an outside diameter that matches the diameter of the bathtub drain fitting 34 or the bathtub overflow fitting 14, although different outer diameters are possible. The tapered sealing portion 94 extends between the first sealing portion 114 and the second sealing portion 96. The tapered sealing portion 94 is sized and positioned to wedge into the overflow opening 16 formed in the bathtub end wall 18 to form a primary seal, as best seen in
Preferably, the first sealing portion 114 and/or the second sealing portion 96 comprise one or more sealing features 120. The sealing features 120 are resilient ribs or ridges extending from the first and/or second sealing portions 114, 96 to assist in providing a watertight seal. However, sealing features 120 may be altogether omitted.
As best seen in
It is contemplated that in some cases the drain opening 36 and overflow opening 16 may be non-circular. In such cases, the first sealing portion 114 will preferably be formed to have substantially the same shape as the bathtub overflow opening 16, however, the outside dimensions of the first sealing portion 114 will be smaller than the outside dimensions of the bathtub overflow opening 16. Similarly, in cases where the bathtub drain 36 opening is non-circular, the aperture 116 will preferably be formed to have substantially the same shape as the bathtub drain opening 36, and the dimensions of the aperture 116 will be substantially the same as the dimensions of the bathtub drain opening 36.
Preferably, the gasket 28 is formed from an elastomeric material, such as rubber, plastic or like material that is flexible with compression and recovery properties so as to be able to form a watertight seal.
Referring now to
Although, the embodiment of the adjustable overflow fitting 128 shown in FIG. 9 has the joint socket 134 on the inlet body 130, and the joint ball 142 on the outlet body 136, it will be appreciated that the invention comprehends the joint socket 134 being on the outlet body 136, and the joint ball 134 being on the inlet body 132.
It will now be appreciated, that although the preferred adjustable overflow fitting 128 has an inlet body 130 with the inlet 132 at a 90° angle relative to its outlet 140, the attachment of the outlet body 140 to the outlet 152 of the inlet body 130 with a ball and socket joint permits a range of angles between the inlet 132 and the outlet 140 of the adjustable drain or overflow fitting 128.
Referring now to
As discussed above, the gasket 28 preferably has a retaining feature 80 on the opposite side of the gasket from the sealing side 78. A matching retaining feature 104 is formed on the flange 162, and the retaining feature 80 and the matching retaining feature 104 interengage to retain the gasket 28 on the flange 102. Preferably, the retaining feature 80 is a substantially annular recessed portion 84, and the matching retaining feature 104 is a substantially annular raised portion 166 on the flange 162, and the interengagement is an interference fit coupling or the like, such as for example a snap fitting. For example, the recessed portion 84 may include a continuous or discontinuous overhang 124 for engaging a matching lip or outwardly flared portion 168 of the raised portion 166 as shown in
The inlet 158 of the adapter fitting 154 includes a threaded portion 170 which is sized and configured to threadingly accept a faceplate retainer 22 or a drain basket 42.
Referring now to
The second sealing portion 296 extends around the first sealing portion 214 on the sealing side, and is raised relative to the second sealing portion 296. The second sealing portion 296 is sized and positioned to seal against the bathtub end wall 18 (
Preferably, the first sealing portion 214 and/or the second sealing portion 296 comprise one or more sealing features 220. The sealing features 220 are resilient ribs or ridges extending from the first and/or second sealing portions 214, 296 to assist in providing a watertight seal. As shown most clearly in
As best seen in
Referring now to
Referring now to
As shown in
A combination test plug and drain basket wrench tool 304, shown in
The opposite end 314 of the tool 304, is adapted to function as a test plug. It has a flange 316 sized and shaped to cover the drain basket 42 and compress a rubber gasket 318 against the flanged end 112 of the drain basket 42, to form an air tight seal for hydraulic testing purposes. The flange 316 has a tapered raised portion 317 which is sized and shaped to form an air tight seal in a range drain basket diameters. Extending from the centre of the tapered raised portion 317 is a post 320 with a threaded tip 322. The base of the post 320 has a protruding ridge 321 to hold the gasket 318 in place. The post 320 is sized and shaped to reach into the drain basket 42, and bring the threaded tip 322 into contact with and threadingly engage a matching threaded bore 324, which is supported by the crossbar 308 in the centre of the drain basket 42 (best seen in
Preferably, apertures 326 are provided on the extension 312, and the post 320 of the tool 304, into which an elongate lever member, such as a shaft of screw driver, may be inserted and used as a lever to assist the user in applying torque to turn the tool 304.
It will now be appreciated that the tool 304 may be used to secure and tighten the drain basket 42 into the drain fitting 34 when installing the drain portion 98 of the bathtub drain and overflow kit 10 at the drain opening 36 in the bathtub bottom wall 38. Once the installation is complete, the tool 304 may be used to conduct a hydrostatic test of the system, by securing the test plug end 314 to the drain basket 42 to form an air tight seal as discussed above. Once testing is finished, the tool 304 may be removed.
While reference has been made to various preferred embodiments of the invention other variations, implementations, modifications, alterations and embodiments are comprehended by the broad scope of the appended claims. Some of these have been discussed in detail in this specification and others will be apparent to those skilled in the art. Those of ordinary skill in the art having access to the teachings herein will recognize these additional variations, implementations, modifications, alterations and embodiments, all of which are within the scope of the present invention, which invention is limited only by the appended claims.
Number | Date | Country | Kind |
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2829072 | Oct 2013 | CA | national |
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