Tea bar machine with vertical water supply structure
By designing an upper and lower water supply structure on the tea bar machine, eliminating the water outlet connector on the back panel, and using a diaphragm pump to control the water outlet and ice tank cooling, the tea bar machine achieves a simple and beautiful appearance and low-cost operation, thus improving the user experience.
Patent Information
- Application Number
- CN202422858302.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2034-11-22
AI Technical Summary
Existing tea bar machines require water outlets to be installed on the back panel, which takes up space and affects aesthetics and ease of operation, while also being costly.
Design a tea bar machine with an upper and lower water supply structure. Water is collected from the top and bottom of the table, eliminating the need for a water outlet connector on the back panel. First and second diaphragm pumps control the water outlets respectively, and combined with the cooling water flow of the ice tank, it provides a choice of hot water and ice water.
This design avoids taking up space on the display screen, resulting in a simple and aesthetically pleasing appearance for the tea bar machine, reducing manufacturing costs, and improving operational flexibility and user experience.
Smart Images

Figure CN223817362U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to tea bar machine technical field, especially a kind of tea bar machine with upper and lower water supply structure. BACKGROUND
[0002] Tea bar machine is a kind of multifunctional household appliance, specially designed for tea, boiling, heat preservation and other purposes, especially suitable for placing in home or office to provide hot water and tea service.Tea bar machine usually combines the functions of water dispenser and electric kettle, not only can heat water, but also can provide normal temperature water or cold water.
[0003] Some existing tea bar machine needs to set water outlet joint on back plate to supply water, which not only occupies space, but also may affect the overall appearance and operation convenience of equipment, in addition, the kettle position of water from the bottom needs to be designed to cooperate, and the cost is higher. UTILITY MODEL CONTENT
[0004] The technical problem to be solved by the utility model is to provide a tea bar machine with upper and lower water supply structure, which can receive water from above and below the table plate, without setting water outlet joint on back plate, avoiding the occupation of display screen area, reducing cost, and making the appearance of tea bar machine more simple and beautiful.
[0005] To solve the above technical problems, the utility model provides a tea bar machine with upper and lower water supply structure, which comprises a tea bar machine body, the tea bar machine body comprises a table plate, the back side of the table plate is provided with a back plate, the back plate is provided with a display screen, the lower side of the table plate is provided with a supporting plate, a water receiving cavity is arranged between the table plate and the supporting plate, a first kettle position is arranged on the table plate, a second kettle position is arranged in the water receiving cavity, a coupler is arranged on the table plate, a first water outlet nozzle is arranged on the coupler, a tea kettle is arranged on the first kettle position, the coupler is connected with the tea kettle, the first water outlet nozzle is communicated with the tea kettle, a second water outlet nozzle is arranged below the table plate, and the second kettle position is arranged below the second water outlet nozzle.
[0006] A connecting joint is arranged on the supporting plate, a water receiving device is arranged above the supporting plate, first and second diaphragm pumps are arranged behind the water receiving device, the connecting joint is connected with first and second water inlet pipes, the first water inlet pipe is connected with the first diaphragm pump, the first diaphragm pump is connected with a first water outlet pipe, and the first water outlet pipe is connected with the first water outlet nozzle;The second water inlet pipe is connected with the second diaphragm pump, the second diaphragm pump is connected with a second water outlet pipe, and the second water outlet pipe is connected with the second water outlet nozzle.
[0007] The water receiving device comprises a water receiving partition plate, a side plate is arranged on the water receiving partition plate, a water receiving cavity is formed between the water receiving partition plate and the side plate, a mounting plate is arranged on the side plate, and the mounting plate is connected to the tea bar machine body.
[0008] The ice tank is arranged behind the water receiving device and is connected with the second water outlet pipe.
[0009] The mounting plate is provided with a mounting bracket, and the second water outlet nozzle is mounted on the mounting bracket.
[0010] The side plate is provided with a through hole, and the second water outlet nozzle is arranged in the through hole.
[0011] The bottom of the tea kettle is provided with a water inlet, the upper portion of the water inlet is provided with a valve mechanism, and the upper portion of the valve mechanism is provided with a water inlet pipe.
[0012] The valve mechanism comprises a valve body, the upper end of the valve body is communicated with the water inlet pipe, a valve core is arranged in the valve body, a top rod is arranged below the valve core, a movable block is arranged above the valve core, a spring is arranged above the movable block, and the upper end of the spring is abutted against the valve body.
[0013] The top rod is provided with a limiting block, the valve body is provided with a stepped portion, the limiting block is abutted against the stepped portion, and a water inlet groove is arranged on the limiting block.
[0014] When the utility model is used, water flows into the upper portion of the supporting plate through the first water outlet nozzle and is guided to the first water inlet pipe and the second water inlet pipe, and then flows into the first diaphragm pump and the second diaphragm pump through the pipes, the first diaphragm pump sends water to the first water outlet nozzle through the first water outlet pipe, and the second diaphragm pump sends water to the second water outlet nozzle through the second water outlet pipe. If the user selects hot water, the tea kettle is placed on the coupler, the valve core is opened by the top rod through the first water outlet nozzle, water flows into the tea kettle, and under the action of the heating system, the water temperature is controlled in a suitable range, so that hot water is provided. In addition, the water flow is cooled by the ice tank, and after the water temperature is reduced, the water enters the second water outlet pipe, the user places the kettle or the cup in the water receiving chamber, and then the ice water can be obtained through the second water outlet nozzle, the display screen can feed back the water temperature and the heating state in real time, so that the user can clearly understand the working state of the tea bar machine, and the use experience of the equipment is improved.
[0015] The utility model brings the beneficial effect that:
[0016] The first kettle position supplies water through the first water outlet nozzle, the water outlet connector is not arranged on the back plate, the display screen area is not occupied, the appearance of the tea bar machine is more simple and beautiful, and the first kettle position is arranged on the back plate.
[0017] The second water outlet nozzle can be used to receive water below the table plate, two first kettle positions are not arranged, the manufacturing cost is effectively reduced, and the performance-cost ratio of the tea bar machine is improved.
[0018] The user can select normal temperature water and ice water through the two water outlet connectors, and heat the water into hot water through the first kettle position, so that the operation is more flexible and convenient. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the structure of this utility model.
[0020] Figure 2 This is a structural schematic diagram of the water receiving device of this utility model.
[0021] Figure 3 This is a structural schematic diagram of the main body of the tea bar machine of this utility model.
[0022] Figure 4 This is a structural schematic diagram of the tea bar machine body from another angle.
[0023] Figure 5 This is a cross-sectional view of the first kettle position of this utility model.
[0024] Figure 6 yes Figure 5 A magnified view of A in the middle.
[0025] In the diagram: 1. Tea bar machine body; 2. Tabletop; 3. Back panel; 4. Display screen; 5. Support plate; 6. Water inlet chamber; 7. Connecting connector; 8. Water receiving device; 9. Second water outlet; 10. Coupler; 11. First water outlet; 12. Tea kettle; 13. First diaphragm pump; 14. Second diaphragm pump; 15. First water inlet pipe; 16. Second water inlet pipe; 17. First water outlet pipe; 18. Second water outlet pipe; 19. Water receiving baffle. 20. Side plate; 21. Water inlet chamber; 22. Mounting plate; 23. Ice liner; 24. Mounting bracket; 25. Through hole; 26. Mounting pin; 27. Mounting hole; 28. Water inlet interface; 29. Valve mechanism; 30. Water supply pipe; 31. Valve body; 32. Valve core; 33. Top rod; 34. Movable block; 35. Spring; 36. Limiting block; 37. Step section; 38. Water inlet groove; 39. First water kettle position; 40. Second water kettle position. Detailed Implementation
[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.
[0027] according to Figures 1 to 4As shown, this utility model discloses a tea bar machine with an upper and lower water supply structure, including a tea bar machine body 1 and a platform 2 mounted on the tea bar machine body 1. A back plate 3 is installed on the platform 2, and a display screen 4 is integrated on the back plate 3 to display parameters such as water temperature, water volume, and heating status of the tea bar machine in real time, allowing users to monitor the operating status of the tea bar machine at any time during use, thus improving the convenience and safety of use. The platform 2 has a first kettle position 39, which can hold one or two kettles. A support plate 5 is provided inside the tea bar machine body 1, and an upper water chamber 6 is provided below the support plate 5 for storing water and ensuring the water supply. The water flows smoothly. A connecting joint 7 is installed on the support plate 5 to guide the water flow to other components. A water receiving device 8 is also provided above the support plate 5. A second water outlet 9 is provided at the lower end of the platform 2. The second water outlet 9 is installed on the water receiving device 8. A second kettle position 40 is provided inside the water receiving device 8, so that the user can collect water through the water receiving device 8. A coupler 10 is provided on the platform 2. A teapot 12 is provided on the first kettle position 39. A first water outlet 11 is installed at the center of the coupler 10, and the coupler 10 is connected to the teapot 12, so that the first water outlet 11 and the teapot 12 can communicate, thereby realizing the upward output of water.
[0028] The water receiving device 8 is equipped with a first diaphragm pump 13 and a second diaphragm pump 14. The connecting joint 7 is connected to a first water inlet pipe 15 and a second water inlet pipe 16 respectively. The first water inlet pipe 15 is connected to the first diaphragm pump 13. The outlet of the first diaphragm pump 13 is connected to a first water outlet pipe 17, through which water is led to the first water outlet 11. Similarly, the second water inlet pipe 16 is connected to the second diaphragm pump 14. The outlet of the second diaphragm pump 14 is connected to the second water outlet pipe 18, and the second water outlet pipe 18 is connected to the second water outlet 9.
[0029] The water receiving device 8 includes a water receiving partition 19, on which a side plate 20 is provided. A water receiving chamber 21 for receiving water is formed between the water receiving partition 19 and the side plate 20. A mounting plate 22 is provided on the side plate 20. The mounting plate 22 is connected to the tea bar machine body 1, further enhancing the stability and ease of installation of the water receiving device 8. A mounting bracket 24 is also provided on the mounting plate 22 to support and fix the second water outlet 9 to ensure stable water output. A through hole 25 is provided on the side plate 20. The second water outlet 9 passes through the through hole 25 and is fixed in the through hole 25 to ensure accurate water flow. For easy assembly and fixing, the mounting plate 22 is provided with multiple mounting pins 26, which correspond to the corresponding mounting holes 27 on the tea bar machine body 1. After the mounting pins 26 are inserted into the mounting holes 27, the entire water receiving device 8 can be more firmly fixed to the tea bar machine body 1, thereby ensuring the stability and durability of the equipment during use.
[0030] An ice chamber 23 is provided behind the water receiving device 8. The ice chamber 23 is connected to the second water outlet pipe 18. When water flows through the ice chamber 23, the water temperature reaches a suitable low temperature for drinking through the cooling effect of the ice chamber 23. Then, the cold water is led to the second water outlet 9 through the second water outlet pipe 18, making it convenient for users to obtain cold water.
[0031] according to Figure 5 and Figure 6 As shown, the teapot 12 has a water inlet 28 at the bottom, and a valve mechanism 29 is installed above the water inlet 28. The valve mechanism 29 is connected to the water supply pipe 30. The valve mechanism 29 includes a valve body 31, the upper end of which is connected to the water supply pipe 30, and a valve core 32 is installed inside it to control the flow of water. A push rod 33 is installed below the valve core 32. The valve core 32 is opened and closed by the up and down movement of the push rod 33. A movable block 34 is provided above the valve core 32, and a spring 35 is installed above the movable block 34. The upper end of the spring 35 abuts against the valve body 31, thereby providing a restoring elastic force for the valve core 32, so that the valve core 32 remains closed when there is no external force. A limit block 36 is provided on the push rod 33. The limit block 36 abuts against the step 37 of the valve body 31 to limit the movement of the push rod 33 and prevent it from falling off. A water inlet groove 38 is provided on the limit block 36 to achieve a smooth water supply. This structure allows the teapot 12 to be filled with water from the bottom, eliminating the need for a water outlet connector on the back panel 3 and saving space on the display screen 4.
[0032] In use, water flows through the first outlet 7 into the support plate 5 and is guided to the first inlet pipe 15 and the second inlet pipe 16. The water then flows through these pipes into the first diaphragm pump 13 and the second diaphragm pump 14. The first diaphragm pump 13 delivers water to the first outlet 11 through the first outlet pipe 17, and the second diaphragm pump 14 delivers water to the second outlet 9 through the second outlet pipe 18. If the user selects hot water, the teapot 12 is placed on the coupler 10. The first outlet 11 opens the valve core 32 via the push rod 33, allowing water to flow into the teapot 12. Under the action of the heating system, the water temperature is controlled within a suitable range, ensuring the supply of hot water. In addition, the water is cooled by the ice chamber 23. After the water temperature drops, the water enters the second water outlet pipe 18. The user can place the kettle or cup in the water receiving chamber 21 and then collect the ice water through the second water outlet 9. The display screen 4 provides real-time feedback on water temperature, heating status and other information, allowing the user to clearly understand the working status of the tea bar machine, thereby improving the user experience of the equipment.
[0033] The beneficial effects of this utility model are:
[0034] The first kettle position supplies water through the first water outlet, eliminating the need for a water outlet connector on the back panel, thus avoiding the occupation of the display screen area and making the tea bar machine more concise and beautiful in appearance.
[0035] Water can be collected from under the countertop via a second spout, eliminating the need for two primary kettle positions, effectively reducing manufacturing costs and improving the cost-effectiveness of the tea bar machine.
[0036] Users can select between room temperature water and ice water through two water outlets, and heat the water into hot water through the first kettle position, making the operation more flexible and convenient.
[0037] The above description is only a preferred embodiment of the present utility model. Therefore, all equivalent changes or modifications made to the structure, features and principles described in the claims of the present utility model patent application are included in the scope of the present utility model patent application.
Claims
1. A tea bar machine with an upper and lower water supply structure, comprising a tea bar machine body, the tea bar machine body including a table, a back panel provided on the rear side of the table, and a display screen provided on the back panel, characterized in that: A support plate is provided below the platform, and a water receiving chamber is provided between the platform and the support plate. A first kettle position is provided on the platform, and a second kettle position is provided in the water receiving chamber. A coupler is provided on the platform, and a first water outlet is provided on the coupler. A teapot is provided at the first kettle position, and the coupler is connected to the teapot. The first water outlet is connected to the teapot. A second water outlet is provided below the platform, and the second kettle position is located below the second water outlet.
2. A tea bar machine with an upper and lower water supply structure according to claim 1, characterized in that: A connecting joint is provided on the support plate, and a water receiving device is provided above the support plate. A first diaphragm pump and a second diaphragm pump are provided behind the water receiving device. A first water inlet pipe and a second water inlet pipe are connected to the connecting joint. The first water inlet pipe is connected to the first diaphragm pump, and the first water outlet pipe is connected to the first water outlet. The second water inlet pipe is connected to the second diaphragm pump, and the second water outlet pipe is connected to the second water outlet.
3. A tea bar machine with an upper and lower water supply structure according to claim 2, characterized in that: The water receiving device includes a water receiving partition, a side plate on the water receiving partition, a water receiving chamber formed between the water receiving partition and the side plate, and a mounting plate on the side plate, which is connected to the tea bar machine body.
4. A tea bar machine with an upper and lower water supply structure according to claim 2, characterized in that: An ice chamber is located behind the water receiving device, and the ice chamber is connected to the second water outlet pipe.
5. A tea bar machine with an upper and lower water supply structure according to claim 3, characterized in that: The mounting plate is provided with a mounting bracket, and the second water outlet is mounted on the mounting bracket.
6. A tea bar machine with an upper and lower water supply structure according to claim 3, characterized in that: The side plate is provided with a through hole, and the second water outlet is inserted into the through hole.
7. A tea bar machine with an upper and lower water supply structure according to claim 1, characterized in that: The teapot is equipped with a water inlet at the bottom, a valve mechanism above the water inlet, and a water inlet pipe above the valve mechanism.
8. A tea bar machine with an upper and lower water supply structure according to claim 7, characterized in that: The valve mechanism includes a valve body, the upper end of which is connected to a water inlet pipe. A valve core is provided inside the valve body, a top rod is provided below the valve core, a movable block is provided above the valve core, and a spring is provided above the movable block. The upper end of the spring abuts against the valve body.
9. A tea bar machine with an upper and lower water supply structure according to claim 8, characterized in that: The top rod is provided with a limiting block, the valve body is provided with a stepped portion, the limiting block abuts against the stepped portion, and the limiting block is provided with a water inlet groove.