The present disclosure relates to flush tanks, and more particularly, to the valve assembly associated with toilet bowl flush tanks.
Both consumer and institutional toilets can be ordered in a wide variety of sizes, styles, and colors. Regardless of this wide variety of available options, most toilets are operated by a valve assembly installed at the discharge hole of the flush tank. However, discharge holes can vary in size, requiring different sized valve parts. Traditionally, toilets have utilized tanks with two inch diameter discharge holes. In recent years, toilet manufacturers have introduced “high flow” toilets that increase flushing capabilities by using larger, usually three inch, diameter discharge holes. The varying sizes of discharge holes in toilet tanks create a challenge for repair or installation and a need in the market for valve parts that differ in size and configuration.
There is a need for a universal kit with valve assembly parts that are appropriate for installation into flush tanks with different sized discharge holes. The present disclosure is directed to a kit, an adapter cup and a method for installing a valve assembly using the kit components, whereby a single flush tank valve assembly can be installed into toilet tanks with different sized discharge holes.
According to one embodiment of the disclosed device, a cup for use in a multi-piece valve assembly in a flush tank with a discharge hole is provided. The cup has a substantially cylindrical lower portion and an upper rim. The rim has an outer surface and an inner surface that defines a bore. The lower portion has an outer diameter D2 that corresponds substantially to the diameter of the discharge hole. The rim is configured for fluid tight attachment to another separate piece of the valve assembly. The substantially cylindrical lower portion can be inserted into the discharge hole to create a fluid tight seal therewith.
In another embodiment, a flush valve kit for use in a flush tank having a discharge hole has a first adapter cup, an additional cup and a main body fitting. The first adapter cup defines a first passage with a rim and a lower portion. The lower portion has an outer diameter D1 and is configured for insertion into a discharge hole. The additional adapter cup defines a second passage and has a rim that is substantially identical to the first cup rim and a lower portion. The additional cup lower portion has an outer diameter D2. The additional cup lower portion is configured for insertion into a different size discharge hole than the first adapter cup. The main body fitting has an inlet opposite an outlet. The main body fitting is configured to cooperate with either of the substantially identical rims of the first cup and additional cup. The cooperation creates a fluid tight connection between the main body fitting and the respective cup rim proximate the main body fitting outlet. A flapper is configured to swingably attach to the main body fitting. The flapper can swing between a closed position abutting the main body fitting inlet and an open position raised from the inlet. When in the closed position, the flapper creates a fluid tight seal with the inlet.
In another embodiment, the first cup has an axial length and a cylindrical rim with an outer surface and an inner surface that defines an upper bore with a diameter D1. The inner surface of the rim has a slot adapted to achieve a bayonet fitting. The first cup also has a cylindrical lower portion that defines a lower bore that is in fluid communication with the upper bore. The lower portion has a threaded outer surface and an outer diameter of approximately three inches. An octagonal intermediate portion is positioned axially between the rim and the lower portion and projects radially beyond the respective outer surfaces. The additional cup has a cylindrical rim that is substantially identical to the rim of the first cup. Also present is an additional cylindrical lower portion that defines a second lower bore in fluid communication with the additional upper bore. The additional lower portion also has a threaded outer surface and an outer diameter of approximately two inches. Like on the first cup, an octagonal intermediate portion is positioned axially between the additional cup's upper and lower portions and projects radially beyond their respective outer surfaces. The main body fitting has a cylindrical wall with a first end defining an inlet and a second end defining an outlet. A channel spans between the inlet and outlet. The inlet has a sloped face. The outer surface of the cylindrical wall has a slot proximate the outlet adapted to achieve a bayonet fitting. The bayonet fitting on the cylindrical wall is configured for cooperation with either of the bayonet fittings of the inner surfaces of the substantially identical adapter cup rims. A substantially L-shaped passage extends from a lateral opening in the cylindrical wall and is in fluid communication with the channel. A generally circular flapper is configured to abut the cylindrical wall of the main body fitting at the inlet. When the flapper abuts the cylindrical wall, the outer radial edge of the flapper extends radially beyond the cylindrical wall. The flapper has a projection configured for swingable attachment to the outer surface of the substantially L-shaped passage. Depending on the diameter of the tank's discharge hole, either the first cup lower portion or the additional cup lower portion is inserted into the discharge hole, creating a fluid tight seal therewith. The main body fitting is connected to the rim of the chosen cup via the respective cooperating bayonet fittings. When in a closed position, the flapper abuts the cylindrical wall at the inlet and fluidly seals the tank from the outlet. When a force F is applied on the flapper in the direction away from the inlet, the flapper swings from the closed position to an open position away from the inlet, thus creating fluid communication between the tank and the outlet.
In yet another embodiment, a method of installing a flush tank valve system in a flush tank having a substantially cylindrical discharge hole from a kit is disclosed. The kit comprises a plurality of cups with substantially identical rims and different sized substantially cylindrical lower portions, a main body fitting and a flapper. The substantially identical cup rims are configured to cooperate with the main body fitting to create a fluid tight attachment. The size of the discharge hole is first identified. A cup with a lower portion that corresponds substantially to the size of the discharge hole is chosen from the kit. The lower portion of the chosen cup is then inserted into the discharge hole, creating a fluid tight seal therewith. The main body fitting is attached to and engages with the rim of the chosen cup, thereby cooperating to create a fluid tight connection.
Aspects of the preferred embodiment will be described in reference to the Drawing, where like numerals reflect like elements:
With reference to the drawing wherein like numerals represent like parts throughout the Figures, an adapter cup, a flush valve kit and a method of installing, in a flush tank with a discharge hole (i.e., a traditional toilet bowl tank) are disclosed. Embodiments allow installers to use a single kit or piece to install or replace tank valves in tanks with different discharge hole sizes.
In one embodiment, a single valve kit includes a first adapter cup 10 (an embodiment of which is shown in
Referring first to
The first adapter cup 10 also includes a substantially cylindrical lower portion 26. The inner surface of the lower portion 26 defines a lower bore 28 that fluidly communicates with the upper bore 18. In this embodiment, the lower portion 26 has a threaded outer surface 30 with a diameter D2. In a preferred embodiment, D2 is approximately three inches for use with a conventional toilet tank with a three inch discharge hole. However, this specific diameter is not limitive.
Positioned axially between the rim 16 and lower portion 26 on the first adapter cup 10 of
Depicted in
The additional adapter cup 40 has a substantially cylindrical lower portion 52 with an inner surface and a threaded outer surface 54. The threaded outer surface 54 has a diameter D3. As shown in the Figures, the diameters D2 and D3 of the respective adapter cup lower portions, 26 and 52, are different. In this particular embodiment, D3 is approximately two inches and is appropriate for use in a conventional toilet tank with a two inch discharge hole. The inner surface of the additional cup lower portion 52 defines a second lower bore 56 that is in fluid communication with the second upper bore 44.
Like the embodiment of the first adapter cup 10, positioned axially between the upper and lower portions, 42 and 52, of this additional adapter cup 40 embodiment is an octagonal intermediate portion 58. The additional cup intermediate portion 58 projects radially beyond the outer surfaces of the rim and lower portion, 42 and 52. The flush valve kit contains at least two adapter cups with different sized lower portions, such as those depicted in
In this embodiment, the outer surface 64 of the wall 62 has a bayonet fitting 78 positioned proximate the outlet end 70. The bayonet fitting 78 is configured for engagement with each of the first and second adapter cup bayonet fittings, 24 or 48. As noted in reference to the adapter cups, the bayonet fitting 78 on the main body fitting 60 is not a limiting attachment configuration. Other attachment configurations, such as threading (see
In this embodiment, an L-shaped passage 80 extends from a lateral opening 82 in the cylindrical wall 62 generally below the high edge 74 of the inlet 68. The upper end 84 of the L-shaped passage 80 is configured for engagement with an adjustable overflow tube 86 or like component. The L-shaped passage has an outer surface 88 that is configured for swingable attachment to a generally circular flapper 90. This embodiment features substantially identical projections 92 positioned on opposite lateral sides of the L-shaped passage 80. However, the configuration for attachment to a flapper is not limited in this way.
The flapper 90 may be included in the flush valve kit or may be a conventional commercially available flush valve flapper suitable for swingable attachment to the particular main body fitting. As can be seen in
Typical flush tanks have discharge holes with diameters of either two or three inches. When installing the universal valve system into a flush tank, an installer first identifies the size of the discharge hole and chooses the corresponding adapter cup, 10 or 40, from the kit. For instance, if the tank has a two inch discharge hole, the second adapter cup (
Once the adapter cup 40 is positioned tightly within the discharge hole 12, the main body fitting 60 is attached. Because the respective rims, 16 and 42, of the first and second adapter cups are substantially identical, the same main body fitting and flapper can be employed in any flush tank, regardless of the size of its discharge hole. The adapter cup and main body fitting embodiments depicted in
In
In common toilet tank configurations, the chain 116 depends from a flush rod that extends from a lever (not pictured). Opposite the flush rod, the chain 116 is attached to the flapper 90. When the lever is depressed, the rod pulls the chain 116 upwards and applies a force F on the flapper 90. It is noteworthy that the disclosed embodiments are not limited to the described lever-chain-flapper configuration. Other known means for applying a force on the flapper in the direction away from the inlet can be implemented.
As depicted in
In another embodiment, additional adapter cups, similar to those depicted in
In yet another embodiment, the kit also can include an overflow tube for incorporation into the valve assembly, as depicted in
Not only do the disclosed embodiments provide a flush tank valve kit that allows a flush valve to be installed in tanks with discharge holes of varying sizes, but they enable increased flow to be achieved in tanks with smaller discharge holes. For example, installing the valve assembly of
While a preferred embodiment has been set forth for purposes of illustration, the foregoing description should not be deemed a limitation of the invention herein. Accordingly, various modifications, adaptations and alternatives may occur to one skilled in the art without departing from the spirit of the invention and scope of the claimed coverage.