Bionic ecological flowing water tea table
By using a limiting guide block and filter structure in the tea table, combined with a pump and switchable return platform design, the problem of water circulation blockage in the tea table is solved, achieving water flow control that combines stability and flexibility, and improving the user experience of the tea table.
Patent Information
- Application Number
- CN202310760219.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-26
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2043-06-26
AI Technical Summary
The existing water channels in tea tables are prone to water circulation blockage when biomimetic objects or foreign objects are placed on them, which affects the user experience of the tea table.
It adopts a limiting guide block and filter screen structure, combined with pumping component design. The limiting guide block prevents heavy objects from sinking, and the filter screen filters light objects, ensuring stable water circulation. The switchable return platform and collection platform design realizes flexible control of water flow direction.
It improves the stability of water circulation and the tea-drinking experience at the tea table, reduces the possibility of blockage by foreign objects, and meets the water flow direction needs of different users.
Smart Images

Figure CN116831378B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of tea tables, and in particular to a simulated eco-friendly flowing water tea table. Background Technology
[0002] Tea drinking and tea appreciation have a very long history in the Chinese nation. Tea tables are used for brewing tea, drinking tea, and entertaining guests. With the improvement of modern living standards, people's requirements for the tea table experience are also getting higher and higher.
[0003] Reference Figure 1 In the prior art, a water trough 11 is provided on the upper surface of the tea table body 1. A return platform 8 is installed above one side of the tea table body 1 along the length of the water trough 11, and a collection platform 9 is installed below the other side of the tea table body 1 along the length of the water trough 11. The collection platform 9 and the return platform 8 are connected by pipelines and a pump body. The pump body pumps water from the collection platform 9 into the return platform 8. The water can be discharged into the water trough 11 through the return port 81 of the return platform 8, and then fall back into the collection platform 9 through the water trough 11, realizing the circulation of water flow. Pebbles or shells and other biomimetic objects can be placed in the water trough 11, and the return platform 8 and the collection platform 9 can be used to place simulated objects such as vegetation or artificial mountains, thereby forming a biomimetic water tea table and improving people's tea drinking experience.
[0004] However, in the water circulation process of this type of tea table, if lightweight biomimetic objects such as seashells or foreign objects such as tea leaves are placed in the water trough, these foreign objects are easily carried by the water flow and fall into the collection platform along the opening of the water trough, causing blockage of the pump or pipeline of the collection platform, which in turn affects the water circulation. Therefore, further improvements are needed. Summary of the Invention
[0005] To reduce the possibility of foreign objects falling into the collection platform along the water trough, this application provides an eco-friendly flowing water tea table.
[0006] The simulated eco-friendly flowing water tea table provided in this application adopts the following technical solution:
[0007] An eco-friendly flowing water tea table includes a tea table body, a first return platform, and a first collection platform. The surface of the tea table body has a water channel, one end of which penetrates the side wall of the tea table body to form a first opening. The first return platform is located on the side of the tea table body away from the first opening, and has a first return outlet facing the first opening. The first collection platform is located at the bottom of the tea table body to connect with the first opening, and a pumping component is provided between the first collection platform and the first return platform. A first limiting guide block protrudes from the bottom wall of the water channel at the first opening, forming a placement area for placing biomimetic elements within the water channel. A first filter screen is provided on the top wall of the first limiting guide block.
[0008] By adopting the above technical solution, through the setting of the first limiting guide block and the first filter screen, the water from the first collection platform is pumped to the first return platform by the pumping component. The water can flow into the water tank along the first return port. When the water level in the water tank is higher than the height of the first limiting guide block, the water flows over the first limiting guide block and falls back into the first collection platform, realizing the circulation of water flow and forming an ecological water flow tea table, which enhances people's tea drinking experience. After heavy foreign objects fall into the water tank, they sink to the placement area under their own gravity. The first limiting guide block acts as a barrier, reducing the possibility of foreign objects falling into the first collection platform along the first trough opening. After light foreign objects such as tea leaves and paper towels fall into the water tank, they float on the water surface. The first filter screen can filter such foreign objects, reducing the possibility of foreign objects falling into the first collection platform and causing the pumping component to become blocked, further improving the filtration effect of the overall structure, thereby improving the circulation stability of the water flow.
[0009] Optionally, it also includes a second return platform and a second collection platform. The end of the water trough away from the first opening penetrates through the side wall of the tea table body to form a second opening. A second limiting guide block is provided protruding from the bottom wall of the water trough at the second opening. The second collection platform is disposed at the bottom of the tea table body to connect with the second opening. A return pipe is provided between the first collection platform and the second collection platform, and the first collection platform and the second collection platform are connected through the return pipe. The second return platform is disposed on the side of the tea table body away from the second opening. The second return platform has a second return port facing the second opening. A connecting pipe is connected between the first return platform and the second return platform, and the first return platform and the second return platform are connected through the connecting pipe. The first return platform is provided with a switching device for opening and closing the first return port or opening and closing the connecting pipe.
[0010] By adopting the above technical solution, through the setting of the second collection platform, the second return platform, and the switching component, the switching component is closed at the first return port and opened at the connecting pipe. After the water from the first collection platform is pumped into the first return platform, it flows along the connecting pipe to the second return platform. The second return port of the second return platform faces the second slot, so that the water can flow through the second slot to the second collection platform, and then flow back to the first collection platform through the return pipe, thereby realizing the circulation of water flow and changing the direction of water flow to meet the different needs of users for water flow direction.
[0011] Optionally, the switching component includes a cover plate, one side of which is hinged to the side wall of the first reflux stage for opening and closing the first reflux port or the connecting pipe. The cover plate normally covers the connecting pipe and is open at the first reflux port. When the cover plate is closed at the first reflux port, the cover plate is open at the connecting pipe.
[0012] By adopting the above technical solution, the cover plate is hinged to the side wall of the first return platform on one side. By flipping the cover plate, it can be opened and closed at the first return port or the connecting pipe. When the cover plate is closed at the connecting pipe, it is open at the first return port, and the water can flow through the first return platform to the first opening of the water tank. When the cover plate is closed at the first return port, it is open at the connecting pipe, and the water can flow through the second return platform to the second opening of the water tank, thus improving the convenience of switching the water flow direction.
[0013] Optionally, the second limiting guide block is slidably installed on the side wall of the water channel. The second limiting guide block is provided with an adjusting member that drives the second limiting guide block to slide along the height direction. Normally, the height of the first limiting guide block is lower than the height of the second limiting guide block. When the cover plate closes the first return port and opens the connecting pipe, the adjusting member forces the height of the second limiting guide block to be lower than the height of the first limiting guide block.
[0014] By adopting the above technical solution and through the setting of the adjusting component, under normal conditions, the height of the first limiting guide block is lower than the height of the second limiting guide block. After the water flows into the water tank along the first return platform, the water in the water tank can first overflow the first limiting guide block and flow into the first collection platform. When the water flow changes direction, the adjusting component forces the height of the second limiting guide block to be lower than the height of the first limiting guide block. After the water flows into the water tank along the second return platform, the water in the water tank can first overflow the second limiting guide block and flow into the second collection platform. The heights of the first limiting guide block and the second limiting guide block are set to be different to ensure that the water flow in the water tank can flow in one direction.
[0015] Optionally, the bottom wall of the water trough at the second trough opening is provided with a sliding groove, and the second limiting guide block is slidably installed in the sliding groove; the adjusting component includes a pull rope and a return spring, one end of the pull rope is connected to the cover plate, and the other end is connected to the second limiting guide block; the return spring is installed between the sliding groove and the second limiting guide block, and the return spring normally causes the height of the second limiting guide block to be higher than the height of the first limiting guide block. When the cover plate is closed on the first return port, the pull rope forces the height of the second limiting guide block to be lower than the height of the first limiting guide block.
[0016] By adopting the above technical solution, through the setting of the pull rope and the return spring, under normal conditions, the return spring forces the height of the second limiting guide block to be higher than the height of the first limiting guide block, so that the water flowing from the first return platform to the water tank can flow through the first slot to the first collection platform; when switching the water flow direction, it drives the cover plate to close the first return port, so as to force the cover plate to open the connecting pipe, and the water from the first return platform can flow through the connecting pipe to the second return platform and flow into the water tank through the second return port; during the rotation of the cover plate, the pull rope is pulled, and the pull rope is forced to pull the second limiting guide block, so that the height of the second limiting guide block is lower than the height of the first limiting guide block, and the water flowing into the water tank from the second return port can flow into the second collection platform through the second slot, improving the convenience of adjusting the height of the second limiting guide block, and thus improving the convenience of water flow reversal.
[0017] Optionally, a rotating shaft is fixed to one side of the cover plate, and the rotating shaft is rotatably mounted on two opposite side walls of the first reflux platform. The cover plate is hinged to the first reflux platform through the rotating shaft. The rotating shaft is provided with a limiting member, which is used to keep the cover plate closed to the first reflux port or closed to the connecting pipe.
[0018] Optionally, the outer wall of the first reflux stage is provided with a first limiting hole and a second limiting hole. The limiting component includes a rotating handle and a limiting rod. The rotating handle is fixedly installed on the end face of the rotating shaft. The limiting rod is slidably installed on the rotating handle for insertion into the first limiting hole or the second limiting hole. When the limiting rod is inserted into the first limiting hole, the cover plate covers the connecting pipe. When the limiting rod is inserted into the second limiting hole, the cover plate covers the first reflux port.
[0019] By adopting the above technical solution, through the setting of the limiting rod, the cover plate is forced to flip by rotating the handle. When the limiting rod rotates to be opposite to the first limiting hole, the limiting rod is slidably inserted into the first limiting hole to fix the position of the rotating shaft, forcing the cover plate to remain closed to the connecting pipe and open to the first reflux port. When the limiting rod rotates to be opposite to the second limiting hole, the limiting rod is slidably inserted into the second limiting hole, forcing the cover plate to remain closed to the first reflux port and open to the connecting pipe, which greatly improves the convenience of opening and closing the first reflux port and the connecting pipe.
[0020] Optionally, a first magnet is fixed to the sidewall of both the first limiting hole and the sidewall of the second limiting hole, and a second magnet for magnetic attraction to the first magnet is fixed to the end face of the limiting rod near the first return table.
[0021] By adopting the above technical solution, and by setting the first magnet and the second magnet, when the limiting rod is inserted into the first limiting groove or the second limiting groove, the first magnet is attracted to the second magnet. The magnetic attraction forces the limiting rod to remain in the first limiting groove or the second limiting groove, reducing the possibility of the limiting rod detaching from the first limiting groove or the second limiting groove and causing the cover plate to flip freely, thereby improving the stability of the overall structure.
[0022] Optionally, the bottom wall of the first return stage is provided with a connecting hole, and the connecting pipe extends out of the connecting hole away from the second return stage to form a docking part; the side wall of the cover plate near the connecting pipe is provided with a docking groove, and the docking groove is provided with a sealing ring arranged in an annular shape. The sealing ring is elastically arranged. When the cover plate is closed on the connecting pipe, the docking part is inserted into the docking groove and the sealing ring is sleeved on the outer peripheral wall of the docking part.
[0023] By adopting the above technical solution, through the setting of the docking part and the sealing ring, when the cover plate is closed on the connecting pipe, the sealing ring is sleeved on the outer peripheral wall of the docking part, which improves the sealing effect between the cover plate and the connecting pipe; on the other hand, the docking part protrudes from the connecting hole, so that the peripheral wall of the docking part forms a blocking effect for foreign objects, reducing the possibility of foreign objects in the first return stage falling into the connecting pipe.
[0024] Optionally, the pumping component includes a water pump and a water pipe, one end of the water pipe being connected to the first collection platform and the other end being connected to the first return platform; the water pump is disposed on the water pipe to drive the water pump of the first collection platform to the first return platform.
[0025] By adopting the above technical solution, and by setting up a water pump and a water pipe, the water that falls into the first collection platform can be pumped back to the first return platform to achieve water circulation.
[0026] In summary, this application includes at least one of the following beneficial technical effects:
[0027] 1. By setting the first limiting guide block and the first filter screen, the water from the first collection platform is pumped to the first return platform by the pumping component. The water can flow into the water tank along the first return port. When the water level in the water tank is higher than the height of the first limiting guide block, the water flows over the first limiting guide block and falls into the first collection platform, realizing the circulation of water flow and forming an ecological water tea table, which enhances people's tea drinking experience. After heavy foreign objects fall into the water tank, they sink to the placement area under their own gravity. The first limiting guide block acts as a barrier, reducing the possibility of foreign objects falling into the first collection platform along the first trough opening. After light foreign objects such as tea leaves and paper towels fall into the water tank, they float on the water surface. The first filter screen can filter such foreign objects, reducing the possibility of foreign objects falling into the first collection platform and causing the pumping component to become blocked, further improving the filtration effect of the overall structure, thereby improving the circulation stability of the water flow.
[0028] 2. By setting up a second collection platform, a second return platform, and a switching component, the switching component closes at the first return port and opens at the connecting pipe. After the water pumped into the first return platform from the first collection platform, it flows along the connecting pipe to the second return platform. The second return port of the second return platform faces the second slot, so that the water can flow through the second slot to the second collection platform, and then flow back to the first collection platform through the return pipe, thereby realizing the circulation of water flow and changing the direction of water flow to meet the different needs of users for water flow direction.
[0029] 3. By adjusting the components, under normal conditions, the height of the first limiting guide block is lower than the height of the second limiting guide block. After the water flows into the water tank along the first return platform, the water in the water tank can first overflow the first limiting guide block and flow into the first collection platform. When the water flow changes direction, the adjusting components force the height of the second limiting guide block to be lower than the height of the first limiting guide block. After the water flows into the water tank along the second return platform, the water in the water tank can first overflow the second limiting guide block and flow into the second collection platform. The heights of the first limiting guide block and the second limiting guide block are set differently to ensure that the water flow in the water tank can flow in one direction. Attached Figure Description
[0030] Figure 1 This is a schematic diagram of the overall structure of the tea table body in the background technology;
[0031] Figure 2 This is a schematic diagram of the overall structure of this embodiment;
[0032] Figure 3 It is a partial sectional view showing the internal structure of the water tank;
[0033] Figure 4 yes Figure 3 Enlarged view of point A in the middle;
[0034] Figure 5 It is a partial cross-sectional view showing the cover plate closing onto the first return port;
[0035] Figure 6 This is a structural diagram illustrating the limiting component;
[0036] Figure 7 It is a partial cross-sectional view showing the first and second magnets;
[0037] Figure 8 yes Figure 3 Enlarged view of point B in the middle.
[0038] Explanation of reference numerals in the attached drawings: 1. Tea table body; 11. Water channel; 111. Sliding channel; 12. First channel opening; 13. First limiting guide block; 131. First filter screen; 14. Placement area; 15. Second channel opening; 16. Second limiting guide block; 161. Second filter screen; 17. Support leg; 18. Water platform; 19. Tabletop; 2. First return platform; 21. First return port; 22. Connecting pipe; 221. Connecting part; 23. Cover plate; 231. Rotating shaft; 232. Connecting groove; 233. Sealing ring; 24. Limiting component; 241. Rotating handle; 242. Limiting rod; 243. Second magnet; 25. First limiting hole; 26. Second limiting hole; 27. First magnet; 28. Connecting hole; 29. Mounting slot; 3. First collecting platform; 31. First collecting chamber; 4. Pumping component; 41. Pumping pipe; 42. Pump; 5. Second return platform; 51. Second return port; 6. Second collecting platform; 61. Return pipe; 62. Second collecting chamber; 7. Adjusting component; 71. Pull rope; 72. Return spring; 8. Return platform; 81. Return port; 9. Collecting platform. Detailed Implementation
[0039] The following is in conjunction with the appendix Figure 2-8 This application will be described in further detail.
[0040] This application discloses an eco-friendly flowing water tea table.
[0041] Reference Figure 2 , Figure 3 An eco-friendly flowing water tea table includes a tea table body 1, a first return platform 2, a second return platform 5, a first collection platform 3, and a second collection platform 6. Two support legs 17 are fixedly installed at the bottom of the tea table body 1, and the tea table body 1 is supported on the ground by the two support legs 17.
[0042] Reference Figure 2 , Figure 3The tea table body 1 includes a water flow platform 18 and a table board 19. The water flow platform 18 is arranged in a strip shape, and there are two table boards 19, which are symmetrically installed on two opposite side walls in the width direction of the water flow platform 18. A water flow groove 11 is opened on the upper surface of the water flow platform 18. In this embodiment, the two ends of the water flow groove 11 pass through the two opposite side walls in the length direction of the water flow platform 18 and form a first groove opening 12 and a second groove opening 15.
[0043] Reference Figure 2 , Figure 3 The first return platform 2 and the second return platform 5 are respectively installed on the top wall of the tea table body 1. Specifically, the first return platform 2 is installed between the two tabletops 19 and above the second slot 15, and the second return platform 5 is installed between the two tabletops 19 and above the first slot 12. In this embodiment, the top walls of the first return platform 2 and the second return platform 5 are provided with return grooves. The return grooves of the first return platform 2 and the second return platform 5 can be used to place artificial rocks and other biomimetic objects.
[0044] Reference Figure 2 , Figure 3 The first return platform 2 has a first return port 21 facing the first slot 12, and the second return platform 5 has a second return port 51 facing the second slot 15. A connecting pipe 22 is installed between the first return platform 2 and the second return platform 5. The connecting pipe 22 is located at the bottom of the flow platform 18. One end of the connecting pipe 22 passes through the flow platform 18 and the first return platform 2 in sequence and is connected to the return slot of the first return platform 2. The other end of the connecting pipe 22 passes through the flow platform 18 and the second return platform 5 in sequence and is connected to the return slot of the second return platform 5. The first return platform 2 and the second return platform 5 are connected to each other through the connecting pipe 22.
[0045] Reference Figure 2 , Figure 3 The first collection platform 3 and the second collection platform 6 are symmetrically installed on both sides of the bottom of the tea table body 1. The first collection platform 3 is set at the bottom of the tea table body 1 to connect with the first slot 12, and the second collection platform 6 is set at the bottom of the tea table body 1 to connect with the second slot 15. Specifically, the top wall of the first collection platform 3 and the top wall of the second collection platform 6 are provided with collection slots. The collection slot of the first collection platform 3 is directly opposite the first slot 12, and the collection slot of the second collection platform 6 is directly opposite the second slot 15. The collection slots of the first collection platform 3 and the second collection platform 6 can be used to place biomimetic objects such as plants.
[0046] Reference Figure 2 , Figure 3The first collection platform 3 has a first collection cavity 31 inside, which is located below the collection groove of the first collection platform 3 and is connected to the collection groove of the first collection platform 3. The second collection platform 6 has a second collection cavity 62 inside, which is located below the collection groove of the first collection platform 3 and is connected to the collection groove of the second collection platform 6. In this embodiment, the height of the first collection cavity 31 is lower than the height of the second collection cavity 62. A return pipe 61 is installed between the first collection cavity 31 and the second collection cavity 62. One end of the return pipe 61 passes through the side wall of the first collection platform 3 and is connected to the first collection cavity 31. The other end of the return pipe 61 passes through the side wall of the second collection platform 6 and is connected to the second collection cavity 62. The first collection platform 3 and the second collection platform 6 are connected to each other through the return pipe 61.
[0047] Reference Figure 2 , Figure 3 A pumping component 4 is installed between the first collection platform 3 and the first return platform 2. The pumping component 4 includes a water pumping pipe 41 and a water pump 42. In this embodiment, the water pump 42 is a submersible pump. The water pump 42 is installed in the first collection chamber 31. One end of the water pumping pipe 41 is connected to the outlet end of the water pump 42, and the other end passes through the side wall of the first collection platform 3, the side wall of the water flow platform 18, and the bottom wall of the first return platform 2 in sequence and is connected to the return groove of the first return platform 2.
[0048] Reference Figure 3 , Figure 4 The bottom of the return channel of the first return station 2 is provided with an installation slot 29. The bottom wall of the installation slot 29 is provided with a connecting hole 28 that penetrates the first return station 2. The end of the connecting pipe 22 away from the second return station 5 is connected to the connecting hole 28. The connecting pipe 22 is connected to the return channel of the first return station 2 through the connecting hole 28 and the installation slot 29. The side wall of the installation slot 29 is provided with a switching component for opening and closing the first return port 21 or opening and closing the connecting pipe 22. In this embodiment, the switching component is set as a cover plate 23. A rotating shaft 231 is fixedly installed on one side of the cover plate 23. The two ends of the rotating shaft 231 are respectively rotatably installed on two opposite side walls of the installation slot 29. One side of the cover plate 23 is hinged to the side wall of the installation slot 29 through the rotating shaft 231. The cover plate 23 normally covers the installation slot 29 to close the connecting pipe 22 and open the first return port 21. When the cover plate 23 covers the first return port 21, the cover plate 23 is open to the connecting pipe 22.
[0049] With this design, the cover plate 23 normally covers the mounting groove 29, thus closing the connecting pipe 22 and opening the first return port 21. The water pump 42 is started, pumping the water in the first collection chamber 31 to the return trough of the first return platform 2. The water can flow through the first return port 21 into the flow trough 11 of the water flow platform 18, and then flow back into the collection trough of the first collection platform 3 through the first trough opening 12, realizing the circulation of water flow and making the tea table body 1 form an ecological water flow tea table. When it is necessary to change the direction of water flow, the cover plate 23 is driven to flip and close the first return port 21. At this time, the cover plate 23 is open in the connecting pipe 22. The water pumped into the first return platform 2 can flow through the connecting pipe 22 to the return trough of the second return platform 5, and then flow through the second return port 51 to the second trough opening 15, and then flow back to the first collection platform 3 through the second collection platform 6 and the return pipe 61 in sequence, realizing the reversal of water flow circulation and improving people's tea drinking experience.
[0050] Reference Figure 4 , Figure 5 The end face of the connecting pipe 22 away from the second return platform 5 is higher than the bottom wall of the mounting groove 29 and forms a docking part 221. The cover plate 23 has a docking groove 232 on its side wall near the connecting pipe 22. In this embodiment, a sealing ring 233 is fixedly installed in the docking groove 232. The sealing ring 233 is elastically set and is arranged in a ring around the outer peripheral wall of the connecting pipe 22. When the cover plate 23 is closed on the mounting groove 29, the docking part 221 of the connecting pipe 22 is inserted into the docking groove 232, and the sealing ring 233 is sleeved on the outer peripheral wall of the docking part 221. With this design, when the cover plate 23 is closed on the mounting groove 29, the sealing ring 233 improves the sealing effect between the cover plate 23 and the connecting pipe 22, thereby allowing water to flow outward along the first return port 21. The peripheral wall of the docking part 221 has a blocking effect, reducing the possibility of foreign objects falling into the mounting groove 29 entering the connecting pipe 22, thereby reducing the possibility of blockage of the connecting pipe 22.
[0051] Reference Figure 6 The outer wall of the first return stage 2 is provided with a first limiting hole 25 and a second limiting hole 26, which are spaced apart around the central axis of the rotating shaft 231. A limiting member 24 is installed between the rotating shaft 231 and the first return stage 2. The limiting member 24 is used to keep the cover plate 23 closed to the first return port 21 or closed to the connecting pipe 22.
[0052] Reference Figure 6In this embodiment, the limiting member 24 includes a rotating handle 241 and a limiting rod 242. One end of the rotating shaft 231 passes through the side wall of the first return table 2 and is fixedly installed on the rotating handle 241. A third limiting hole is provided on the side wall of the rotating handle 241 near the first limiting hole 25, penetrating the rotating handle 241. When the rotating handle 241 rotates around the rotating shaft 231, the third limiting hole can rotate to be opposite to the first limiting hole 25 or opposite to the second limiting hole 26. The limiting rod 242 is slidably installed in the third limiting hole. When the limiting rod 242 is inserted into the first limiting hole 25... When the cover plate 23 is closed on the connecting pipe 22 and open at the first return port 21, when the limiting rod 242 is inserted into the second limiting hole 26, the cover plate 23 is closed on the first return port 21 and open at the connecting pipe 22. With this design, rotating the rotating handle 241 forces the limiting rod 242 to be inserted into the first limiting hole 25 or the second limiting hole 26 to fix the position of the rotating shaft 231, so that the cover plate 23 can be closed on the connecting pipe 22 or the first return port 21, improving the convenience of opening and closing between the connecting pipe 22 and the first return port 21, and thus improving the convenience of switching the water flow direction.
[0053] Reference Figure 6 , Figure 7 A first magnet 27 is fixedly installed on the side wall of the first limiting hole 25 and the side wall of the second limiting hole 26. A second magnet 243 is fixedly installed on the end face of the limiting rod 242 near the first return table 2. When the limiting rod 242 is inserted into the first limiting hole 25 or the second limiting hole 26, the first magnet 27 is attracted to the second magnet 243. With this design, after the first magnet 27 and the second magnet 243 are attracted to each other, the magnetic attraction can fix the limiting rod 242, so that the limiting rod 242 is kept inserted in the first limiting hole 25 or the second limiting hole 26, thereby improving the stability of the cover plate 23 after it is closed on the connecting pipe 22 or the first return port 21.
[0054] Reference Figure 3 , Figure 4 A first limiting guide block 13 is fixedly installed on the bottom wall of the first opening 12 of the water trough 11. A sliding groove 111 is opened on the bottom wall of the second opening 15 of the water trough 11. A second limiting guide block 16 is slidably installed in the sliding groove 111. The second limiting block is slidably installed on the side wall of the water trough 11 through the sliding groove 111. A placement area 14 is formed between the first limiting guide block 13 and the second limiting guide block 16. The placement area 14 of the water trough 11 can be used to place biomimetic objects such as pebbles or shells. With this design, when biomimetic objects such as pebbles or shells are placed in the placement area 14, the first limiting guide block 13 and the second limiting guide block 16 block the biomimetic objects in the placement area 14, reducing the possibility that the biomimetic objects will be washed off the water platform 18 by the water flow.
[0055] Reference Figure 3 , Figure 4 , Figure 8 In this embodiment, a first filter screen 131 is fixedly installed on the top wall of the first limiting guide block 13, and a second filter screen 161 is fixedly installed on the top wall of the second limiting guide block 16. Both the first filter screen 131 and the second filter screen 161 are vertically arranged. The bottom wall of the first return platform 2 is provided with a clearance groove for avoiding the second filter screen 161. With this design, when lightweight foreign objects such as tea leaves, paper towels, or tea packaging bags fall into the water tank 11, these foreign objects float on the water surface and are carried by the water flow towards the first slot 12 or the second slot 15. The first filter screen 131 and the second filter screen 161 can filter them, reducing the possibility of foreign objects falling into the first collection platform 3 and the second collection platform 6, causing the water pump 42 to become blocked.
[0056] Reference Figure 3 , Figure 4 The second limiting guide block 16 is equipped with an adjusting member 7 for driving the second limiting guide block 16 to slide along the height direction. When the cover plate 23 closes the connecting pipe 22 and opens the first return port 21, the adjusting member 7 forces the height of the second limiting guide block 16 to be higher than the height of the first limiting guide block 13. When the cover plate 23 closes the first return port 21 and opens the connecting pipe 22, the adjusting member 7 forces the height of the second limiting guide block 16 to be lower than the height of the first limiting guide block 13.
[0057] With this design, under normal conditions, the cover plate 23 covers the connecting pipe 22. The water pumped from the first collection platform 3 to the first return platform 2 falls into the water tank 11 through the first return port 21. At this time, the height of the second limiting guide block 16 is higher than the height of the first limiting guide block 13. The water can first overflow the first limiting guide block 13 and fall back into the first collection platform 3, realizing the circulation of water. When the water flow changes direction, the cover plate 23 covers the first return port 21. The water pumped from the first collection platform 3 to the first return platform 2 falls into the water tank 11 through the connecting pipe 22 and the second return port 51 of the second return platform 5. At this time, driven by the adjusting component 7, the height of the second limiting guide block 16 is lower than the height of the first limiting guide block 13. The water can first overflow the second limiting guide block 16 and then pass through the second collection platform 6 and the return pipe 61 to circulate back to the first collection platform 3, realizing the change of water flow direction.
[0058] Reference Figure 3 , Figure 4The adjusting component 7 includes a pull rope 71 and a return spring 72. One end of the pull rope 71 is fixedly connected to the cover plate 23, and the other end passes through the first return platform 2 and the flow platform 18 in sequence and extends to the sliding groove 111, and then is fixedly connected to the bottom wall of the second limiting guide block 16. Multiple return springs 72 are provided, and all return springs 72 are installed in the sliding groove 111. One end of the return spring 72 is fixedly installed on the bottom wall of the second limiting guide block 16, and the other end is fixedly installed on the bottom wall of the sliding groove 111. Normally, the return spring 72 makes the height of the second limiting guide block 16 higher than the height of the first limiting guide block 13. When the cover plate 23 is closed on the first return port 21, the pull rope 71 pulls the second limiting guide block 16 and forces the height of the second limiting guide block 16 to be lower than the height of the first limiting guide block 13.
[0059] The implementation principle of the simulated ecological flowing water tea table in this application embodiment is as follows: Under normal conditions, the cover plate 23 is closed in the mounting groove 29 to close the connecting pipe 22 and open the first return port 21. At this time, the height of the second limiting guide block 16 is higher than the first limiting guide block 13 under the action of the reset spring 72. The water pump 42 is started to pump the water from the first collection platform 3 into the first return platform 2. The water flows through the first return port 21, the water trough 11 and the first limiting guide block 13 in sequence and falls back into the first collection platform 3, forming a water circulation, so that the tea table body 1 forms a simulated ecological flowing water tea table, improving people's tea drinking experience.
[0060] When switching the water flow direction, the cover plate 23 is closed to the first return port 21 by rotating the handle 241 to open the connecting pipe 22. At this time, the height of the second limiting guide block 16 is lower than the first limiting guide block 13 under the action of the pull rope 71. The water flow of the first return platform 2 flows back to the first collection platform 3 through the connecting pipe 22, the second return port 51 of the second return platform 5, the water trough 11, the second limiting guide block 16, the second collection platform 6 and the return pipe 61 in sequence, forming a water flow reversal cycle to meet the needs of different users for water flow direction.
[0061] Heavier foreign objects sink into the placement area 14 after falling into the water tank 11. The first limiting guide block 13 and the second limiting guide block 16 can block the foreign objects, reducing the possibility of foreign objects falling into the first collection platform 3 or the second collection platform 6. Lighter foreign objects float on the water surface after falling into the water tank 11. The first filter screen 131 and the second filter screen 161 can filter the water flow, reducing the possibility of lighter foreign objects flowing over the first limiting guide block 13 or the second limiting guide block 16. This further reduces the possibility of foreign objects falling into the first collection platform 3 or the second collection platform 6 and causing blockage of the water pump 42, the water pipe 41, and the return pipe 61.
[0062] The above are preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made to the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A simulated eco-friendly flowing water tea table, comprising a tea table body (1), a first return platform (2), and a first collection platform (3), characterized in that: A water channel (11) is provided on the surface of the tea table body (1). One end of the water channel (11) penetrates the side wall of the tea table body (1) and forms a first groove (12). A first return platform (2) is located on the side of the tea table body (1) away from the first groove (12). The first return platform (2) has a first return port (21) facing the first groove (12). A first collection platform (3) is located at the bottom of the tea table body (1) to connect with the first groove (12). A pumping component (4) is provided between the first collection platform (3) and the first return platform (2). The water channel (11) is located on the first... A first limiting guide block (13) is provided protruding from the bottom wall of the slot (12). The first limiting guide block (13) makes the water channel (11) form a placement area (14) for placing biomimetic objects. The top wall of the first limiting guide block (13) is provided with a first filter screen (131). It also includes a second return platform (5) and a second collection platform (6). The end of the water channel (11) away from the first slot (12) penetrates the side wall of the tea table body (1) and forms a second slot (15). The bottom wall of the water channel (11) located at the second slot (15) is provided with a second limiting guide block (16). The second collection platform (6) is provided with a first filter screen (131) for placing biomimetic objects. The first collection platform (3) is placed at the bottom of the tea table body (1) to connect with the second slot (15). A return pipe (61) is provided between the first collection platform (3) and the second collection platform (6), and the first collection platform (3) and the second collection platform (6) are connected by the return pipe (61). The second return platform (5) is located on the side of the tea table body (1) away from the second slot (15). The second return platform (5) has a second return port (51) and faces the second slot (15). A connecting pipe (22) is connected between the first return platform (2) and the second return platform (5). The two return stations (5) are connected by the connecting pipe (22); the first return station (2) is provided with a switching component for opening and closing the first return port (21) or opening and closing the connecting pipe (22); the switching component includes a cover plate (23), one side of the cover plate (23) is hinged to the side wall of the first return station (2) for opening and closing the first return port (21) or opening and closing the connecting pipe (22), the cover plate (23) normally covers the connecting pipe (22) and is open at the first return port (21), when the cover plate (23) is covered at the first return port (21), the cover plate (23) is open at the connecting pipe (22);The second limiting guide block (16) is slidably installed on the side wall of the water tank (11). The second limiting guide block (16) is provided with an adjusting member (7) that drives the second limiting guide block (16) to slide along the height direction. Under normal conditions, the height of the first limiting guide block (13) is lower than the height of the second limiting guide block (16). When the cover plate (23) closes the first return port (21) and opens the connecting pipe (22), the adjusting member (7) forces the height of the second limiting guide block (16) to be lower than the height of the first limiting guide block (13). The water tank (11) has a sliding groove (111) on the bottom wall of the second groove opening (15). The second limiting guide block (16) is slidably installed on the side wall of the water tank (11). 6) Sliding installation in the sliding groove (111); The adjusting component (7) includes a pull rope (71) and a return spring (72). One end of the pull rope (71) is connected to the cover plate (23), and the other end is connected to the second limiting guide block (16). The return spring (72) is installed between the sliding groove (111) and the second limiting guide block (16). Normally, the return spring (72) makes the height of the second limiting guide block (16) higher than the height of the first limiting guide block (13). When the cover plate (23) is closed on the first return port (21), the pull rope (71) forces the height of the second limiting guide block (16) to be lower than the height of the first limiting guide block (13).
2. The eco-friendly flowing water tea table according to claim 1, characterized in that: A rotating shaft (231) is fixed on one side of the cover plate (23). The rotating shaft (231) is rotatably mounted on two opposite side walls of the first return table (2). The cover plate (23) is hinged to the first return table (2) through the rotating shaft (231). The rotating shaft (231) is provided with a limiting member (24). The limiting member (24) is used to keep the cover plate (23) closed to the first return port (21) or closed to the connecting pipe (22).
3. The eco-friendly flowing water tea table according to claim 2, characterized in that: The outer wall of the first reflux table (2) is provided with a first limiting hole (25) and a second limiting hole (26). The limiting component (24) includes a rotating handle (241) and a limiting rod (242). The rotating handle (241) is fixedly installed on the end face of the rotating shaft (231). The limiting rod (242) is slidably installed on the rotating handle (241) for insertion into the first limiting hole (25) or the second limiting hole (26). When the limiting rod (242) is inserted into the first limiting hole (25), the cover plate (23) covers the connecting pipe (22). When the limiting rod (242) is inserted into the second limiting hole (26), the cover plate (23) covers the first reflux port (21).
4. The eco-friendly flowing water tea table according to claim 3, characterized in that: The sidewalls of the first limiting hole (25) and the second limiting hole (26) are both fixed with a first magnet (27), and the end face of the limiting rod (242) near the first return table (2) is fixed with a second magnet (243) for magnetic attraction to the first magnet (27).
5. The eco-friendly flowing water tea table according to claim 1, characterized in that: The bottom wall of the first return stage (2) is provided with a connecting hole (28), and the connecting pipe (22) passes through the connecting hole (28) away from the second return stage (5) to form a docking part (221); the cover plate (23) is provided with a docking groove (232) on the side wall near the connecting pipe (22), and the docking groove (232) is provided with a sealing ring (233) arranged in an annular shape. The sealing ring (233) is elastically arranged. When the cover plate (23) covers the connecting pipe (22), the docking part (221) is inserted into the docking groove (232) and the sealing ring (233) is sleeved on the outer peripheral wall of the docking part (221).
6. The eco-friendly flowing water tea table according to claim 1, characterized in that: The pumping component (4) includes a water pump (41) and a water pump (42). One end of the water pump (41) is connected to the first collection platform (3), and the other end is connected to the first return platform (2). The water pump (42) is installed on the water pump (41) to drive the water pump of the first collection platform (3) to the first return platform (2).
Citation Information
Patent Citations
Tea table making water flow circularly
CN107518594A