Water purifier and waterway system applied to tea table
By designing a water purifier system specifically for tea tables, and using solenoid valves and booster pumps to control water flow, the problem of water purifiers not being usable under tea tables has been solved. This allows for the production and flexible use of pure water without the need for separate pipes, ensuring water safety and ease of use.
Patent Information
- Application Number
- CN202422884701.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2034-11-26
AI Technical Summary
Existing water purifiers require the installation of separate water supply and wastewater discharge pipes, making it impossible to use RO reverse osmosis water purifiers under the tea table. Furthermore, bottled water is prone to bacterial growth over long periods of use, posing a safety hazard.
A water purifier system specifically designed for tea tables is presented, including a filter element, inlet pipe, wastewater pipe, pure water pipe, pure water tank, and storage tank. The water flow direction is controlled by a solenoid valve and a booster pump, enabling the production of pure water without the need for a separate pipeline. It can also be connected to the tea table's built-in pipeline via a bypass pipe for flexible use.
It achieves pure water production without independent pipes, avoiding bacterial growth and providing hygienic and clean drinking water. It is suitable for tea table environments and is convenient and flexible to use.
Smart Images

Figure CN223646355U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a water system for a water purifier used on a tea table, specifically to a water purifier used on a tea table. Background Technology
[0002] Existing water purification equipment includes under-sink, countertop, commercial, and wall-mounted models, which achieve water purification through a combination of pre-filters such as PP cotton filters, activated carbon filters, RO reverse osmosis membrane filters, and composite filters.
[0003] Because water purifiers require the installation of separate water supply and wastewater discharge pipes, most water purifier products on the market cannot be used under a tea table. RO reverse osmosis water purifiers cannot be placed or used under a tea table. Customers with strict requirements for water sources generally need external bottled water to obtain better water quality for brewing tea. However, prolonged use of bottled water can breed a large number of bacteria, easily causing safety hazards.
[0004] This utility model was proposed in response to the shortcomings of the existing technology. Utility Model Content
[0005] In view of the aforementioned existing technology, where water purifiers require the installation of independent water supply and wastewater discharge pipes, making it impossible to use water purifiers under a tea table, and thus impossible to place and use an RO reverse osmosis water purifier under a tea table, the technical solution adopted by this utility model to solve this technical problem is: a water circuit system for a water purifier applied to a tea table, including: a filter element, an inlet pipe, a wastewater pipe, a pure water pipe, a pure water tank, and a storage tank. The filter element has a raw water end, a wastewater end, and a pure water end. The storage tank has a first interface and a second interface. One end of the pure water pipe is connected to the pure water end, and the other end of the pure water pipe is connected to the pure water tank. One end of the inlet pipe is connected to the first interface, and the other end of the inlet pipe is connected to the raw water end. The inlet pipe is connected in series with a first solenoid valve and a booster pump in the direction of water flow. One end of the wastewater pipe is connected to the wastewater end, and the other end of the wastewater pipe is connected to the second interface. The wastewater pipe is connected in series with a second solenoid valve.
[0006] As described above, a water system for a water purifier used on a tea table includes a three-way connector A connected in series between the inlet pipe and the first interface and the first solenoid valve. One end of the three-way connector A is connected to a bypass inlet pipe, and a valve A is connected in series between the inlet pipe and the three-way connector A.
[0007] As described above, in the water system of a water purifier applied to a tea table, the inlet end of the bypass inlet pipe is provided with a plug A for closing the bypass inlet pipe.
[0008] As described above, a water system for a water purifier applied to a tea table includes a wastewater pipe connected in series with a tee connector B between the second interface and the second solenoid valve. One end of the tee connector B is connected to a bypass wastewater pipe, and a valve B is connected in series between the wastewater pipe and the tee connector B.
[0009] As described above, in the water system of a water purifier applied to a tea table, the outlet end of the bypass wastewater pipe is provided with a plug B for closing the bypass wastewater pipe.
[0010] Based on the above concept, the present invention provides a water system for a water purifier applied to a tea table, comprising: a filter element, an inlet pipe, a wastewater pipe, a pure water pipe, a pure water tank, and a storage tank. The filter element has a raw water end, a wastewater end, and a pure water end. The storage tank has a third interface. One end of the pure water pipe is connected to the pure water end, and the other end of the pure water pipe is connected to the pure water tank. One end of the inlet pipe is connected to the third interface, and the other end of the inlet pipe is connected to the raw water end. A first solenoid valve and a booster pump are connected in series along the water flow direction in the inlet pipe. One end of the wastewater pipe is connected to the wastewater end, and a second solenoid valve is connected in series in the wastewater pipe. A three-way connector C is connected in series between the third interface and the first solenoid valve in the inlet pipe. One end of the three-way connector C is connected to a bypass inlet pipe. A valve C is connected in series between the storage tank and the three-way connector C in the inlet pipe.
[0011] As described above, in the water system of a water purifier applied to a tea table, the inlet end of the bypass inlet pipe is provided with a plug C for closing the bypass inlet pipe.
[0012] Based on the above concept, the present invention provides a water system for a water purifier applied to a tea table, comprising: a filter element, an inlet pipe, a wastewater pipe, a pure water pipe, a pure water tank, and a storage tank. The filter element has a raw water end, a wastewater end, and a pure water end. The storage tank has a fourth interface. One end of the pure water pipe is connected to the pure water end, and the other end of the pure water pipe is connected to the pure water tank. One end of the inlet pipe is connected to a water source, and the other end of the inlet pipe is connected to the raw water end. A first solenoid valve and a booster pump are connected in series along the water flow direction in the inlet pipe. One end of the wastewater pipe is connected to the wastewater end, and the other end of the wastewater pipe is connected to the fourth interface. A second solenoid valve is connected in series in the wastewater pipe. A three-way connector D is connected in series between the fourth interface and the second solenoid valve in the wastewater pipe. One end of the three-way connector D is connected to a bypass wastewater pipe. A valve D is connected in series between the storage tank and the three-way connector D in the wastewater pipe.
[0013] As described above, in the water system of a water purifier applied to a tea table, the outlet end of the bypass wastewater pipe is provided with a plug D for closing the bypass wastewater pipe.
[0014] This utility model discloses a water purifier for use on a tea table, wherein the water purifier for use on a tea table includes the water system described above.
[0015] The beneficial effects of this utility model are:
[0016] 1. The water system of this utility model for a water purifier applied to a tea table draws water from a storage tank, which then passes through a filter to produce pure water and wastewater (with a higher TDS value). The pure water is transported to a pure water tank, and the wastewater is transported back to the storage tank. This allows for the production of pure water even without an independent water supply pipe or drainage system. When the water in the storage tank is used up or the TDS value is too high, water can be added to the storage tank. This system is convenient to use and is particularly suitable for tea tables where there is no independent water supply and drainage system. Moreover, the fresh water produced each time is hygienic and clean.
[0017] 2. When the tea table has an independent water supply pipe, simply connect the bypass water inlet pipe to the independent water supply pipe and close valve A. There is no need to worry about the water inlet. In this case, the water storage tank is only used to collect wastewater. Once the water storage tank is full, simply empty the water from the tank.
[0018] 3. When the tea table has an independent drainage pipe, connect the bypass wastewater pipe 23 to the independent drainage pipe and close valve B. It can then be used without worrying about drainage. At this time, the water storage tank is only used for water supply. When the water storage tank is used up, it can be replenished in time.
[0019] 4. When the tea table has an independent water supply pipe and an independent drainage pipe, connect the bypass water inlet pipe to the independent water supply pipe and close valve A. At the same time, connect the bypass wastewater pipe to the independent drainage pipe and close valve B. The water storage tank will not work at this time and will be used as a backup. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the water system of Embodiment 1 of this utility model;
[0021] Figure 2 This is a schematic diagram of the water system of Embodiment 2 of this utility model;
[0022] Figure 3 This is a schematic diagram of the water system of Embodiment 3 of this utility model;
[0023] Figure 4 This is a schematic diagram of the water system of Embodiment 4 of this utility model;
[0024] Figure 5 This is a schematic diagram of the water system of Embodiment 5 of this utility model;
[0025] Figure 6 This is a schematic diagram of the water system of Embodiment 6 of this utility model. Detailed Implementation
[0026] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.
[0027] like Figures 1 to 6 As shown, this utility model has 6 embodiments, which will now be described separately.
[0028] Example 1:
[0029] like Figure 1 As shown, the water system of a water purifier applied to a tea table according to this embodiment includes: a filter element 11, an inlet water pipe 12, a wastewater pipe 13, a pure water pipe 14, a pure water tank 15, and a storage tank 16. The filter element 11 is provided with a raw water end 111, a wastewater end 112, and a pure water end 113. The storage tank 16 is provided with a first interface 161 and a second interface 162. One end of the pure water pipe 14 is connected to the pure water end 113, and the other end of the pure water pipe 14 is connected to the pure water end 113. The water tank 15 is connected, one end of the water inlet pipe 12 is connected to the first interface 161, and the other end of the water inlet pipe 12 is connected to the raw water end 111. The water inlet pipe 12 is connected in series with the first solenoid valve 171 and the booster pump 18 along the water flow direction. One end of the wastewater pipe 13 is connected to the wastewater end 112, and the other end of the wastewater pipe 13 is connected to the second interface 162. The wastewater pipe 13 is connected in series with the second solenoid valve 172. This utility model discloses a water system for a water purifier applied to a tea table. Water is drawn from a storage tank, filtered through a filter to obtain pure water and wastewater (with a higher TDS value). The pure water is transported to a pure water tank, and the wastewater is transported back to the storage tank. This system enables the production of pure water even without an independent water supply and drainage system. When the water in the storage tank is depleted or the TDS value is too high, water can be added to the storage tank. It is convenient to use and particularly suitable for tea tables where there is no independent water supply and drainage system. Moreover, the fresh water produced each time is hygienic and clean.
[0030] Example 2:
[0031] like Figure 2As shown, the difference between this embodiment and Embodiment 1 is that in this embodiment, a three-way connector A191 is connected in series between the first interface 161 and the first solenoid valve 171 in the water inlet pipe 12. One end of the three-way connector A191 is connected to a bypass water inlet pipe 20, and a valve A211 is connected in series between the water inlet pipe 12, the water storage tank 16, and the three-way connector A191. When the tea table has an independent water supply pipe, it can be used simply by connecting the bypass water inlet pipe 20 to the independent water supply pipe and closing the valve A. There is no need to worry about the water inlet. At this time, the water storage tank is only used to collect wastewater. After the water storage tank is full, the water in the water storage tank can be emptied.
[0032] A plug A221 for closing the bypass inlet pipe 20 is provided at the inlet end of the bypass inlet pipe 20. If the bypass inlet pipe 20 is not in use, simply open valve A and close the bypass inlet pipe 20 with plug A221.
[0033] Example 3:
[0034] like Figure 3 As shown, the difference between this embodiment and Embodiment 1 is that in this embodiment, a three-way connector B192 is connected in series between the wastewater pipe 13 and the second interface 162 and the second solenoid valve 172. One end of the three-way connector B192 is connected to a bypass wastewater pipe 23, and a valve B212 is connected in series between the wastewater pipe 13 and the water storage tank 16 and the three-way connector B192. When the tea table has an independent drainage pipe, simply connect the bypass wastewater pipe 23 to the independent drainage pipe and close the valve B; there is no need to worry about drainage. In this case, the water storage tank is only used for water supply, and it can be replenished promptly after use.
[0035] A plug B222 for closing the bypass wastewater pipe 23 is provided at the outlet end. If the bypass wastewater pipe is not in use, simply open valve B and close the bypass wastewater pipe using plug B.
[0036] Example 4:
[0037] like Figure 4As shown, the difference between this embodiment and Embodiment 1 is that: in this embodiment, a tee connector A191 is connected in series between the first interface 161 and the first solenoid valve 171 in the water inlet pipe 12. One end of the tee connector A191 is connected to a bypass water inlet pipe 20. A valve A211 is connected in series between the water inlet pipe 12 and the water storage tank 16 and the tee connector A191. A tee connector B192 is connected in series between the second interface 162 and the second solenoid valve 172 in the wastewater pipe 13. One end of the tee connector B192 is connected to a bypass wastewater pipe 23. A valve B212 is connected in series between the wastewater pipe 13 and the water storage tank 16 and the tee connector B192. When the tea table has an independent water supply pipe and an independent drainage pipe, connect the bypass water inlet pipe to the independent water supply pipe and close valve A. At the same time, connect the bypass wastewater pipe to the independent drainage pipe and close valve B. The water storage tank will not work at this time and will be used as a backup.
[0038] A plug A221 for closing the bypass inlet pipe 20 is provided at the inlet end of the bypass inlet pipe 20. If the bypass inlet pipe 20 is not in use, simply open valve A and close the bypass inlet pipe 20 with plug A221.
[0039] A plug B222 for closing the bypass wastewater pipe 23 is provided at the outlet end. If the bypass wastewater pipe is not in use, simply open valve B and close the bypass wastewater pipe using plug B.
[0040] Example 5:
[0041] like Figure 5As shown, the water system of a water purifier applied to a tea table according to this embodiment includes: a filter element 11, an inlet pipe 12, a wastewater pipe 13, a pure water pipe 14, a pure water tank 15, and a storage tank 16. The filter element 11 is provided with a raw water end 111, a wastewater end 112, and a pure water end 113. The storage tank 16 is provided with a third interface 163. One end of the pure water pipe 14 is connected to the pure water end 113, and the other end of the pure water pipe 14 is connected to the pure water tank 15. One end of the inlet pipe 12 is connected to the third interface 163, and the other end of the inlet pipe 12 is connected to the raw water end 111, the wastewater end 112, and the pure water end 113. The water inlet pipe 12 is connected to the water outlet 111. A first solenoid valve 171 and a booster pump 18 are connected in series along the water flow direction. One end of the wastewater pipe 13 is connected to the wastewater outlet 112, and a second solenoid valve 172 is connected in series on the wastewater pipe 13. A tee connector C193 is connected in series between the third interface 163 and the first solenoid valve 171 in the water inlet pipe 12. One end of the tee connector C193 is connected to a bypass water inlet pipe 20. A valve C213 is connected in series between the water inlet pipe 12 and the water storage tank 16 and the tee connector C193. This water system is suitable for systems with independent drainage pipes. The water inlet can be either from a water storage tank or tap water, switched via valve C.
[0042] The inlet end of the bypass inlet pipe 20 is equipped with a plug C223 for closing the bypass inlet pipe 20. If the bypass inlet pipe 20 is not in use, simply open valve C and close the bypass inlet pipe 20 with plug C.
[0043] Example 6:
[0044] like Figure 6As shown, a water system for a water purifier applied to a tea table according to this embodiment includes: a filter element 11, an inlet pipe 12, a wastewater pipe 13, a pure water pipe 14, a pure water tank 15, and a storage tank 16. The filter element 11 has a raw water end 111, a wastewater end 112, and a pure water end 113. The storage tank 16 has a fourth interface 164. One end of the pure water pipe 14 is connected to the pure water end 113, and the other end of the pure water pipe 14 is connected to the pure water tank 15. One end of the inlet pipe 12 is connected to a water source, and the other end of the inlet pipe 12 is connected to the raw water end 111. A first solenoid valve 171 and a booster pump 18 are connected in series along the water flow direction in channel 12. One end of the wastewater pipeline 13 is connected to the wastewater end 112, and the other end of the wastewater pipeline 13 is connected to the fourth interface 164. A second solenoid valve 172 is connected in series on the wastewater pipeline 13. A tee connector D194 is connected in series between the wastewater pipeline 13 and the fourth interface 164 and the second solenoid valve 172. One end of the tee connector D194 is connected to a bypass wastewater pipeline 23. A valve D214 is connected in series between the wastewater pipeline 13 and the water storage tank 16 and the tee connector D194. The water system of this embodiment is suitable for systems with independent inlet pipes. Drainage can be selected from either a water storage tank or an independent drain pipe, which can be switched via valve D.
[0045] The outlet end of the bypass wastewater pipe 23 is equipped with a plug D224 for closing the bypass wastewater pipe 23. If the bypass wastewater pipe is not in use, simply open valve D and close the bypass wastewater pipe using plug D.
[0046] This utility model discloses a water purifier for use on a tea table, wherein the water purifier for use on a tea table includes a water system as described in embodiments 1-6 above.
[0047] The above examples are merely illustrative of the technical content of this utility model to facilitate reader understanding, but do not imply that the implementation of this utility model is limited to these embodiments. Any technical extensions or re-creations made based on this utility model are protected by this utility model. The scope of protection of this utility model is defined by the claims.
Claims
1. A water system for a water purifier used on a tea table, characterized in that, include: The system comprises a filter element (11), an inlet water pipe (12), a wastewater pipe (13), a pure water pipe (14), a pure water tank (15), and a storage tank (16). The filter element (11) has a raw water end (111), a wastewater end (112), and a pure water end (113). The storage tank (16) has a first interface (161) and a second interface (162). One end of the pure water pipe (14) is connected to the pure water end (113), and the other end of the pure water pipe (14) is connected to the pure water tank (15). One end of the water inlet pipe (12) is connected to the first interface (161), and the other end of the water inlet pipe (12) is connected to the raw water end (111). The water inlet pipe (12) is connected in series with the first solenoid valve (171) and the booster pump (18) in the direction of water flow. One end of the wastewater pipe (13) is connected to the wastewater end (112), and the other end of the wastewater pipe (13) is connected to the second interface (162). The wastewater pipe (13) is connected in series with the second solenoid valve (172).
2. The water system of a water purifier applied to a tea table according to claim 1, characterized in that, The water inlet pipe (12) is connected in series with a three-way connector A (191) between the first interface (161) and the first solenoid valve (171). One end of the three-way connector A (191) is connected to a bypass water inlet pipe (20). The water inlet pipe (12) is connected in series with a valve A (211) between the water storage tank (16) and the three-way connector A (191).
3. The water system of a water purifier applied to a tea table according to claim 2, characterized in that, The bypass water inlet pipe (20) is provided with a plug A (221) for closing the bypass water inlet pipe (20).
4. The water system of a water purifier applied to a tea table according to any one of claims 1-3, characterized in that, The wastewater pipeline (13) is connected in series with a three-way connector B (192) between the second interface (162) and the second solenoid valve (172). One end of the three-way connector B (192) is connected to a bypass wastewater pipeline (23). The wastewater pipeline (13) is connected in series with a valve B (212) between the water storage tank (16) and the three-way connector B (192).
5. The water system of a water purifier applied to a tea table according to claim 4, characterized in that, The outlet end of the bypass wastewater pipe (23) is provided with a plug B (222) for closing the bypass wastewater pipe (23).
6. A water system for a water purifier used on a tea table, characterized in that, include: The system comprises a filter element (11), an inlet water pipe (12), a wastewater pipe (13), a pure water pipe (14), a pure water tank (15), and a storage tank (16). The filter element (11) has a raw water end (111), a wastewater end (112), and a pure water end (113). The storage tank (16) has a third interface (163). One end of the pure water pipe (14) is connected to the pure water end (113), and the other end of the pure water pipe (14) is connected to the pure water tank (15). One end of the inlet water pipe (12) is connected to the third interface (163), and the other end of the inlet water pipe (12) is connected to the raw water end (111). The inlet pipe (12) is connected in series with a first solenoid valve (171) and a booster pump (18) in the direction of water flow. One end of the wastewater pipe (13) is connected to the wastewater end (112). A second solenoid valve (172) is connected in series on the wastewater pipe (13). A three-way connector C (193) is connected in series between the inlet pipe (12) and the third interface (163) and the first solenoid valve (171). One end of the three-way connector C (193) is connected to a bypass inlet pipe (20). A valve C (213) is connected in series between the inlet pipe (12) and the water storage tank (16) and the three-way connector C (193).
7. The water system of a water purifier applied to a tea table according to claim 6, characterized in that, The bypass water inlet pipe (20) is provided with a plug C (223) for closing the bypass water inlet pipe (20).
8. A water system for a water purifier used on a tea table, characterized in that, include: The system comprises a filter element (11), an inlet pipe (12), a wastewater pipe (13), a pure water pipe (14), a pure water tank (15), and a storage tank (16). The filter element (11) has a raw water end (111), a wastewater end (112), and a pure water end (113). The storage tank (16) has a fourth interface (164). One end of the pure water pipe (14) is connected to the pure water end (113), and the other end of the pure water pipe (14) is connected to the pure water tank (15). One end of the inlet pipe (12) is connected to the water source, and the other end of the inlet pipe (12) is connected to the raw water end (111). The inlet pipe (12) is connected along the direction of water flow. A first solenoid valve (171) and a booster pump (18) are connected in series. One end of the wastewater pipeline (13) is connected to the wastewater end (112), and the other end of the wastewater pipeline (13) is connected to the fourth interface (164). A second solenoid valve (172) is connected in series on the wastewater pipeline (13). A three-way connector D (194) is connected in series between the wastewater pipeline (13) and the fourth interface (164) and the second solenoid valve (172). One end of the three-way connector D (194) is connected to a bypass wastewater pipeline (23). A valve D (214) is connected in series between the wastewater pipeline (13) and the water storage tank (16) and the three-way connector D (194).
9. The water system of a water purifier applied to a tea table according to claim 8, characterized in that, The outlet end of the bypass wastewater pipe (23) is provided with a plug D (224) for closing the bypass wastewater pipe (23).
10. A water purifier for use on a tea table, characterized in that, The water purifier applied to the tea table includes the water system as described in any one of claims 1-9.