Water supply time delay assembly for a toilet flush tank of a sanitary appliance

The water supply time delay assembly addresses inefficient water consumption in flush tanks by delaying the water supply, optimizing water usage and reducing component wear.

FR3161442A1Pending Publication Date: 2025-10-24SIMON FABIEN
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Patent Information

Application Number
FR2025001227
Authority / Receiving Office
FR · FR
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-04-19
Filing Date
2025-02-06
Publication Date
2025-10-24

AI Technical Summary

Technical Problem

Conventional flush tank systems waste water due to simultaneous operation of inlet and outlet valves, leading to inefficient water consumption and increased wear on components.

Method used

A water supply time delay assembly with a perforated washer and calibrated valve positioned between the stopcock and flush tank to delay the opening of the water supply, preventing simultaneous flow and optimizing water usage.

Benefits of technology

Reduces unnecessary water consumption and extends component life by ensuring synchronized water supply and evacuation, enhancing system efficiency and durability.

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Abstract

The invention relates to a water supply delay assembly for a flush tank of a sanitary appliance, comprising a clean water supply pipe connected to a supplying stopcock and a flush tank of a sanitary appliance having a flush activation mechanism. It comprises: a water supply delay device positioned between said stopcock and said flush tank, said water supply delay device comprises an element configured to delay the opening of the clean water supply after activation of the flush. Figure for abstract: Fig. 1
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Description

Title of the invention: Water supply time delay assembly for a flush tank of a sanitary appliance Technical field of the invention

[0001] The present invention relates to a water supply timing assembly for a flush tank of a sanitary appliance.

[0002] The field is devices for managing and controlling the water supply for sanitary equipment, in particular toilet flush tanks. This is the sector of plumbing and hydraulic systems aimed at optimizing water consumption by delaying the opening of the supply after the activation of the flush. It falls under technologies for reducing water waste and improving the efficiency of sanitary installations. Prior art

[0003] Typically, a sanitary appliance equipped with a flushing mechanism comprises a tank designed to store the water required to flush waste. This tank is supplied by a water inlet controlled by a tap or inlet valve, which allows it to be filled after each use. A water outlet valve is also provided to release the water accumulated in the tank and thus cause the toilet to flush.

[0004] A flush control device is installed in the tank in order to to ensure automatic filling operation. This device generally incorporates a float, which is mechanically or hydraulically connected to the water inlet valve. The float plays an essential role in regulating the water level: when the water reaches a predefined level, the float activates the inlet valve to stop the water supply.

[0005] When a user flushes the toilet, the outlet valve opens, allowing the water stored in the tank to drain. As a result, the water level in the tank gradually decreases, causing the float to descend. As soon as the float drops below a given threshold, it releases the inlet valve mechanism, causing the latter to open and the tank to begin filling. The cycle continues until the float reaches its high level again, thus closing the inlet valve and stopping the water supply.

[0006] One of the major drawbacks of this type of device is that the inlet valve and the outlet valve operate simultaneously for part of the cycle. This is because as soon as the toilet is flushed, the float begins to descend, which immediately opens the water inlet valve. This means that Water begins to flow into the cistern even while the flush water is still flowing through the outlet valve. This configuration results in water waste, as additional water enters the cistern without being immediately needed for flushing. This excessive water consumption reduces the overall efficiency of the system and is a significant weakness of conventional sanitary ware.

[0007] There are several disadvantages to current solutions. As soon as the toilet is flushed, water immediately begins to enter the tank, resulting in excessive water consumption even before the flush is complete. The system does not allow for an optimized delay in the supply of water to the tank, which does not significantly reduce water waste.

[0008] Integration and maintenance of the existing system requires specific components and a more elaborate configuration. Some devices are designed primarily for specific models of flushing toilets, which limits its adaptability to other sanitary installations.

[0009] Some prior art documents also propose systems for controlling the water supply depending on the level of the tank. For example, publication document FR2942815 is known. The solution is integrated into the float valve with an additional tank to delay the water supply, which requires replacing it to achieve savings. Presentation of the invention

[0010] The present invention aims to remedy these drawbacks with a completely innovative approach.

[0011] The invention aims to provide a more efficient, adaptable system that allows the water inlet to be delayed in order to reduce unnecessary consumption.

[0012] More specifically, the invention aims to limit or eliminate the overlap of the opening of the inlet tap and the outlet valve of the tank in order to avoid wasting water during evacuation.

[0013] These objectives, as well as others which will appear subsequently, are achieved, using a water supply time delay assembly for a flush tank of a sanitary appliance, comprising a clean water supply pipe connected to a stopcock supplying a flush tank of a sanitary appliance comprising a flush activation mechanism, remarkable in that it comprises: a water supply delay device positioned between said shutoff valve and said flush tank, said water supply delay device comprising an element configured to delay the opening of the clean water supply after activation of the flush.

[0014] Thanks to these provisions, one of the main advantages of the invention lies in its ability to delay the opening of the water supply after the activation of the flush. Unlike conventional systems where water immediately begins to fill the cistern as soon as the flush begins, the time delay device prevents this premature filling. This makes it possible to avoid the simultaneous flow of supply water and waste water, thus reducing unnecessary losses and contributing to more efficient management of water resources.

[0015] Thanks to the timing element integrated into the device, the water supply is only opened once the flushing has been completed. This synchronization optimizes the flow and avoids any interference between the water inlet and outlet. This feature ensures more efficient filling of the tank and avoids any possible disruption in the water flow, particularly in the event of pressure variations in the supply network.

[0016] The water supply time delay device is designed to be positioned directly between the stopcock and the flush tank, making it easy to integrate into existing systems. Its compatibility with standard sanitary infrastructure allows it to be installed without requiring major modifications, making it an easily adoptable solution for new constructions as well as for renovations.

[0017] By preventing the immediate triggering of the filling of the cistern, the invention reduces premature wear of the components of the flushing mechanism, such as the float and the inlet valve. By reducing the simultaneous stress on these elements, it helps to extend their service life and limit the risks of malfunction, thus reducing the need for maintenance and replacement of parts.

[0018] The invention is part of a sustainable water resource management approach by saving several deciliters of water with each flush. This reduction in consumption is particularly relevant in a context of awareness of water conservation and meets the growing requirements for eco-design of sanitary equipment.

[0019] The addition of a water supply delay device between the stopcock and the flush tank constitutes a technical advance that is not present in conventional systems. This distinctive feature allows the invention to stand out from existing solutions, by providing an effective response to the problem of water waste.

[0020] Thanks to these various advantages, the proposed water supply time delay assembly represents a significant improvement in flushing devices. traditional water systems, optimizing their operation while ensuring more responsible water consumption.

[0021] The invention is advantageously implemented according to the embodiments and variants set out below, which are to be considered individually or according to any technically effective combination.

[0022] In one embodiment, said water supply delay device comprises a cylindrical body with a male thread and a female thread at each end, one of the ends comprises a clean water pipe water inlet and the other end is a water outlet connected to the water from the stopcock.

[0023] In one embodiment, said cylindrical body is a threaded body, the male thread is a threaded inlet fitting, the female thread is a threaded outlet fitting.

[0024] In one variant, the female thread is a threaded inlet fitting, the male thread is a threaded outlet fitting.

[0025] In one embodiment, said water supply delay device comprises at least one perforated washer configured to reduce the speed of water introduced into said device.

[0026] This feature makes it possible to provide precise control of the water flow rate as soon as it enters, which constitutes a significant improvement over traditional devices which do not have specific means of regulating the flow rate upstream of the main supply circuit.

[0027] The integration of a perforated washer into the water supply timing device allows for a gradual reduction in water pressure before it passes into the internal components of the device. Unlike existing systems where water flows freely as soon as the inlet valve is opened, the arrangement of the perforated washer results in a controlled dissipation of the kinetic energy of the water, which contributes to more efficient regulation of the response time of the device.

[0028] A key advantage of this design is that it avoids hydraulic jolts and sudden pressure changes that could affect the stability of the device and its durability. Indeed, in conventional flushing systems, the immediate influx of pressurized water causes the internal mechanisms to trigger quickly, thus compromising the effectiveness of the desired delay. Thanks to the perforated washer, the pressure build-up in the device chamber is more gradual, which ensures smooth and predictable operation.

[0029] Finally, the implementation of such a perforated washer in the timing device offers a simple, robust and inexpensive solution to produce, without requiring complex modifications to existing installations. Unlike advanced electronic or mechanical solutions which involve high costs and a regular maintenance, this passive solution ensures a reliable delay effect without requiring additional intervention after its installation.

[0030] All of these advantages demonstrate that the use of a perforated washer to reduce the speed of the water constitutes a new and inventive technical characteristic, providing a significant improvement in terms of management of the water supply in sanitary appliances.

[0031] In one embodiment, with a plurality of adjacent perforated washers positioned adjacent to each other, each perforated washer has a plurality of holes, each hole in a perforated washer not being aligned with each hole in the adjacent washer.

[0032] In one embodiment, said water supply delay device comprises a calibrated valve configured to reduce the flow rate of water passing through said device; the calibrated valve is centered relative to the longitudinal axis of said water supply delay device.

[0033] The presence of the calibrated valve allows precise control of the flow of water entering the device. Unlike conventional systems where water flows immediately and without restriction, the calibrated valve limits the inflow of water to a very small quantity, thus delaying the rise in pressure of the fluid in the mechanism. This delay makes it possible to delay the opening of the main water supply circuit, thus avoiding unnecessary consumption of water as soon as the flush is activated.

[0034] This configuration improves the management of the filling of the flush tank. Thanks to the restriction imposed by the calibrated valve, the water introduced into the system acts gradually on the internal elements of the device, in particular the piston and the flapper. This delayed operation ensures that the water is only delivered into the tank after a sufficient period of time, thus avoiding the overlapping of the opening of the inlet tap and the outlet valve. This makes it possible to optimize water consumption and avoid the waste observed in conventional devices.

[0035] Furthermore, the integration of a calibrated valve gives the device great robustness and better reliability in terms of flow regulation. The reduced and controlled flow of water reduces wear on the mechanical components of the device, in particular the piston and the valve, thus extending the service life of the system. This feature ensures stable and reproducible operation, even after a large number of usage cycles.

[0036] In one embodiment, said water supply delay device comprises a push button having a closed position configured to block the passage of water and an open position configured to allow the passage of water. Thus, when the button is in the intermediate position, the flow rate water is limited. In the closed position the water is blocked, in the open position the water passes.

[0037] When the push button is used, the stopcock is replaced. The water supply time delay device is directly connected to the clean water supply line.

[0038] In one embodiment, said water supply delay device comprises a piston actuated by water pressure and configured to reduce the flow rate of water passing through said device, said piston having an initial position and a final position.

[0039] In one embodiment, said piston is held in the initial position by a piston spring and configured to have a progressive movement of said piston to the final position.

[0040] In one embodiment, the calibrated valve is positioned on a threaded sleeve comprising at least one water passage orifice, in the initial position the piston blocks the water passage orifice, in the final position the piston allows water to pass through the water passage orifice.

[0041] The arrangement of the valve on a threaded sleeve having at least one water passage orifice allows for compact and efficient integration of the flow control device. Unlike conventional systems where the valve is independent or positioned downstream of the inlet circuit, this integrated configuration simplifies the design by limiting the number of components required and optimizing assembly. This reduces the risk of potential leaks and improves the reliability of the mechanism.

[0042] The fact that the piston, in its initial position, blocks the water passage orifice constitutes a solution allowing the opening of the main circuit to be delayed. In traditional devices, the water begins to flow immediately upon activation of the flush, which results in simultaneous consumption of water entering and leaving the cistern. Here, the invention makes it possible to keep the circuit closed until the progressive pressure exerted on the piston causes it to move. This mechanical delay constitutes a major advantage in terms of water saving, by avoiding unnecessary overconsumption when the flush is triggered.

[0043] When the piston reaches its final position and releases the water passage orifice, the supply of the tank is then authorized with a slight delay compared to the opening of the inlet valve. This sequenced operation is unprecedented in conventional flushing systems, where supply and evacuation occur simultaneously. Thanks to this characteristic, the invention allows better management of the incoming flow, which optimizes the filling of the tank without causing hydraulic disturbances or pressure fluctuations that could damage the mechanism.

[0044] Finally, the combination of the movable piston and the perforated threaded sleeve allows for a fully mechanical system, requiring neither electronic sensors nor an external power supply. This approach guarantees increased durability, simplified maintenance and compatibility with a wide range of sanitary appliances without requiring complex modifications to the existing circuit. Brief description of the figures

[0045] Other advantages, aims and characteristics of the present invention emerge from the following description, given for explanatory and in no way limiting purposes, with reference to the appended drawings, in which:

[0046] [Fig.l] shows a sanitary appliance equipped with a flushing mechanism with a zoomed-in view of the water supply timing device;

[0047] [Fig.2] represents a perspective view of the water supply delay device which is the subject of the present invention;

[0048] [Fig. 3] represents a sectional view of the water supply delay device which is the subject of the present invention;

[0049] [Fig.4] shows a sectional view of the water entering the water supply timing device;

[0050] [Fig.5] shows another sectional view of the water entering the water supply timing device;

[0051] [Fig.6] shows another sectional view of the water entering the water supply timing device;

[0052] [Fig.7] represents a variant of a perspective view of the water supply delay device which is the subject of the present invention. Description of the embodiments

[0053] [Fig.l] shows a sanitary appliance equipped with a flushing mechanism comprising a tank 16 intended to store the water necessary for evacuating waste. The tank is supplied with water by a stopcock 15, which allows water to pass after each activation of the flush.

[0054] Between the stopcock 15 and the flush tank 16, the water supply delay device, which is the subject of the present invention, is positioned. This water supply delay device is designed to delay the opening of the main water supply circuit in order to avoid wasting water and comprises a threaded body 1.

[0055] Naturally, the invention is described in the above by way of example. It is understood that those skilled in the art are able to carry out different variant embodiments of the invention without departing from the scope of the invention.

[0056] [Fig.2] shows the water supply time delay device. It comprises a threaded body 1 provided with a threaded inlet connection 2 and a threaded outlet connection 3, facilitating its arrangement in the existing circuit. Inside the device, a series of components ensures its sequential operation.

[0057] [Fig.3] shows a sectional view of the water supply timing device.

[0058] This figure shows the different elements in initial position.

[0059] The threaded inlet connection 2 and the threaded outlet connection 3 are connected by the threaded body 1.

[0060] Between the threaded inlet fitting 2 and the threaded body 1 is positioned an inlet O-ring 13.

[0061] Between the threaded outlet connection 3 and the threaded body 1 is positioned an outlet O-ring 12.

[0062] Figures 4 to 6 show the water entering the water supply timing device.

[0063] At rest, water is present throughout the system and the springs 10 and 11 push the piston 9 and the valve 7 back to the stop. This exerts a force from the valve seal 8 on the orifice(s) of the threaded sleeve 6, which closes the main water supply circuit.

[0064] The threaded sleeve 6 is connected to the thread of the threaded body 1.

[0065] When the flush is activated, the water supply valve which is part of the The float valve lets the water in. The stopcock 15 then lets the water through. The system begins operation. The water passes through a series of perforated washers 4 through several small holes, which reduces the speed of the water introduced into the system.

[0066] The stopcock 15 is only used to close the circuit manually.

[0067] Each perforated washer 4 reduces the water passage section. Technically, the washers serve to slow the speed of the water and reduce the internal pressure by acting on the path of the water by offsetting the passage holes.

[0068] Each perforated washer 4 has holes. The perforated washers 4 are positioned next to each other in an adjacent manner.

[0069] In one variant, the holes are aligned, in another variant the holes of each perforated washer 4 are not aligned.

[0070] The plurality of perforated washers 4 is held by an internal stop circlip 14.

[0071] This configuration makes it possible to improve the accuracy of the timing time of the device. By controlling the water inlet speed, the perforated washer 4 acts in synergy with the calibrated valve 5 and the other internal elements of the device to ensure an optimal time lag between the opening of the outlet valve and that of the main water supply circuit. This technical approach thus makes it possible to eliminate or significantly reduce the overlap of the openings, thereby reducing unnecessary water consumption.

[0072] Then, the water passes through a calibrated valve 5 which reduces the flow rate to a very small quantity of water. The calibrated valve 5 reduces the passage section of the water.

[0073] The piston 9 is movable in rectilinear translation along the longitudinal axis of the device.

[0074] The calibrated valve 5 pushes the piston 9. The piston 9 is retained by the piston spring 10 is then slowly pushed by the small quantity of water. It will take several seconds for the piston 9 to come into contact with the valve 7.

[0075] Once the piston 9 is in the stop position, it exerts its force on the valve 7 and compresses the spring of the valve 11. This has the effect of releasing the contact between the valve seal 8 and the orifices of the threaded sleeve 6 and thus opening the main water circuit and supplying the flush tank 16.

[0076] As soon as the flush tank 16 is filled, the float deactivates the water supply passing through the stopcock 15 and the entire system returns to its initial position.

[0077] The few seconds taken by the piston 9 to open the device make it possible to delay the supply of water to the tank 16, which avoids the waste of several decilitres of water with each flush.

[0078] [Fig.7] shows a variant.

[0079] The water supply timing device comprises a push button 17 having a closed position configured to block the passage of water and an open position configured to allow the passage of water. It is possible to have an intermediate position.

[0080] When the push button is used, the stopcock 15 is replaced. The water supply timing device is directly connected to the clean water supply pipe.

[0081] It is emphasized that all features, as they emerge for a person skilled in the art from the present description, the drawings and the attached features, even if concretely they have only been described in relation to other determined features, both individually and in any combinations, can be combined with other features or groups of features disclosed herein, insofar as this has not been expressly excluded. or that technical circumstances make such combinations impossible or meaningless.

[0082] List of reference signs [Tables 1] References Designations 1 Threaded body 2 Threaded inlet connection 3 Threaded outlet connection 4 Perforated washer 5 Calibrated valve 6 Threaded sleeve 7 Valve 8 Valve seal 9 Piston 10 Piston spring 11 Valve spring 12 Outlet O-ring 13 Inlet O-ring 14 Internal stop circlips 15 Stop valve 16 Flush tank 17 Push button

Claims

Claims

1. Water supply delay assembly for a flush tank of a sanitary appliance, comprising a clean water supply pipe connected to a stopcock (15) supplying a flush tank (16) of a sanitary appliance having a flush activation mechanism, characterized in that it comprises: a water supply delay device positioned between said stopcock (15) and said flush tank (16), said water supply delay device comprises an element configured to delay the opening of the clean water supply after activation of the flush.

2. An assembly according to claim 1, wherein said water supply delay device comprises a cylindrical body with a male thread and a female thread at each end, one end comprises a clean water pipe water inlet and the other end is a water outlet connected to the water of the stopcock (16).

3. An assembly according to claim 2, wherein said cylindrical body is a threaded body (1), the male thread is a threaded inlet fitting (2), the female thread is a threaded outlet fitting (3).

4. An assembly according to claim 1, wherein said water supply delay device comprises at least one perforated washer (4) configured to reduce the speed of water introduced into said device.

5. An assembly according to claim 4, wherein a plurality of adjacent perforated washers (4) are positioned next to each other, each perforated washer (4) has a plurality of holes, and each hole of a perforated washer (4) is not aligned with each hole of the adjacent washer.

6. An assembly according to claim 1, wherein said water supply delay device comprises a calibrated valve (5) configured to reduce the flow rate of water passing through said device; the calibrated valve (5) is centered relative to the longitudinal axis of said water supply delay device.

7. An assembly according to claim 1, wherein said water supply delay device comprises a push button (17) having a closed position configured to block the passage of water and an open position configured to allow the passage of water.

8. An assembly according to claim 1, wherein said water supply delay device comprises a piston (9) actuated by water pressure and configured to reduce the flow of water passing through said device, said piston (9) having an initial position and a final position.

9. An assembly according to claim 8, wherein said piston (9) is held in the initial position by a piston spring (10) and configured to have a progressive movement of said piston (9) to the final position.

10. Assembly according to claims 6 and 8, in which the calibrated valve (5) is positioned on a threaded sleeve (6) comprising at least one water passage orifice, in the initial position the piston (9) blocks the water passage orifice, in the final position the piston (9) allows water to pass through the water passage orifice.

Citation Information

Patent Citations

  • Self-closing water tap - has tappet forming operating valve in conjunction with seal in valve plunger

    DE2946558A1

  • DELAYED FLUSH TOILET

    FR2942815A1