Double-heating structure of tea purifying and drinking bar machine
By employing a dual heating structure and a water-vapor separation design, the problems of low heating efficiency and unstable water temperature in tea bar machines are solved, enabling rapid and stable heating and multiple water dispensing methods, thus enhancing the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2026-03-24
AI Technical Summary
Existing tea bar machines have low heating efficiency, requiring users to wait a long time for the water temperature to rise. This is especially true when boiling water is needed, as the heating process is even slower, and the water temperature is easily lost during transport, resulting in unstable outlet water temperature.
It adopts a dual heating structure, including a rapid heating module and an electric kettle. The rapid heating module is used to initially heat to 90°C, and the electric kettle is used to further heat to boiling. Combined with a water vapor separation box and a control module, it achieves rapid and stable heating.
It shortens heating time, reduces heat loss, improves heating efficiency, provides multiple water outlet options, enhances user experience, and features water vapor separation and water level detection functions, making disassembly and maintenance convenient.
Smart Images

Figure CN224023362U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to tea bar machine technical field, especially in pure drink tea bar machine's double heating structure. BACKGROUND
[0002] Tea bar machine is a kind of domestic or commercial water drinking equipment with the functions of water purification, heating, tea brewing and heat preservation. It combines the functions of traditional water dispenser and electric kettle, optimizes the heating system, and makes it more intelligent and convenient, suitable for office, home and tea room scenes. The heating structure of tea bar machine usually refers to the device used for heating water or brewing tea, which can meet the needs of water purification and tea brewing.
[0003] The existing tea bar machine has low heating efficiency, and users need to wait for a long time for water temperature to rise, especially when boiling water is needed, heating is more slow, at the same time, water temperature is easy to lose in the conveying process, resulting in unstable outlet water temperature, which cannot meet the drinking needs of users. UTILITY MODEL CONTENT
[0004] The technical problem to be solved by the utility model is to provide a double heating structure of pure drink tea bar machine, which adopts double heating mode, shortens heating time, effectively reduces heat loss and improves heating efficiency.
[0005] To solve the above technical problems, the double heating structure of pure drink tea bar machine of the utility model comprises a pedestal assembly, a backrest assembly is arranged on the pedestal assembly, the backrest assembly comprises a shell, a front end cover is arranged on the shell, a first water outlet connector and a second water outlet connector are arranged at the bottom of the front end cover, a first heating assembly is arranged in the shell, a second heating assembly is arranged on the pedestal assembly, the second heating assembly is arranged below the second water outlet connector, the first heating assembly comprises a rapid heating module, a first hot water outlet pipe and a second hot water outlet pipe connected to the rapid heating module, the first hot water outlet pipe is connected to the first water outlet connector, the second hot water outlet pipe is connected to the second water outlet connector, a reversing valve is further arranged on the rapid heating module, and the reversing valve controls the on-off of the first hot water outlet pipe and the second hot water outlet pipe.
[0006] The second heating assembly comprises a coupler and an electric kettle, the pedestal assembly comprises a storage table, the coupler is arranged on the storage table, the electric kettle is connected to the coupler, and the electric kettle is arranged corresponding to the second water outlet connector.
[0007] A first water-vapor separation box is arranged between the first water outlet connector and the first hot water outlet pipe, and a second water-vapor separation box is arranged between the second water outlet connector and the second hot water outlet pipe.
[0008] The rear end of the shell is provided with a water making tank, and a first cold water outlet pipe is connected to the water making tank and communicates with the first water-vapor separation box.
[0009] The base is further provided with an external water storage kettle, and a second cold water outlet pipe is connected to the external water storage kettle and communicates with the second water-vapor separation box.
[0010] The bottom of the external water storage kettle is provided with a one-way valve assembly, and the base is provided with a water inlet interface assembly connected with a water inlet pipe.
[0011] The shell is provided with a control module, a liquid level sensor for detecting the water level in the external water storage kettle is arranged on the first cold water outlet pipe, the control module is electrically connected with the liquid level sensor, and the control module controls water making and water feeding into the external water storage kettle based on the feedback signal of the liquid level sensor.
[0012] The water making tank is provided with a mounting groove, and the shell is provided with a corresponding protrusion which is slidingly connected in the mounting groove.
[0013] The water making tank is provided with a cover body, and the shell is provided with a reach sensor for detecting the cover body.
[0014] The front end cover is provided with a control panel.
[0015] When the user needs hot water, the control module starts the first heating assembly, and the cold water is rapidly heated to about 90 DEG C after passing through the rapid heating module, and the heated water is conveyed to the first water outlet joint through the first hot water outlet pipe for the user to use, if the user needs boiling water, the reversing valve makes the first hot water outlet pipe close, and the water is poured into the electric kettle from the second water outlet joint after passing through the second hot water outlet pipe, and the hot water is slightly cooled after leaving the second water outlet joint, at the same time, the electric kettle further heats the water until it reaches the boiling state of 100 DEG C. If the user does not need rapid heating, the cold water in the external water storage kettle can be directly poured into the electric kettle, and only the second heating assembly is used for heating.
[0016] The utility model brings the beneficial effect that:
[0017] The utility model adopts double heating mode, shortens heating time, effectively reduces heat loss, and improves heating efficiency.
[0018] The utility model has multiple water outlet modes, provides more choices for the user, and improves the user's use experience.
[0019] The utility model has the functions of water-vapor separation, water level detection, etc., the water making tank is installed in a sliding rail mode, is convenient to disassemble, maintain and improve use experience. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 is a structural schematic view of the utility model.
[0021] Figure 2 is a structural schematic view of another angle of the utility model.
[0022] Figure 3 is a structural schematic view of the pedestal assembly of the utility model.
[0023] Figure 4 is a structural schematic view of the removal shell and water making tank of the utility model.
[0024] Figure 5 is a structural schematic view of the external water storage kettle of the utility model.
[0025] Figure 6 is a structural schematic view of the shell of the utility model.
[0026] Figure 7 is a structural schematic view of another angle of the shell of the utility model.
[0027] Figure 8 is a structural schematic view of the water making tank of the utility model.
[0028] In the figure: 1, pedestal assembly;2, backrest assembly;3, shell;4, front end cover;5, first water outlet joint;6, second water outlet joint;7, rapid heating module;8, first hot water outlet pipe;9, second hot water outlet pipe;10, reversing valve;11, coupler;12, first water vapor separation box;13, second water vapor separation box;14, water making tank;15, first cold water outlet pipe;16, base;17, external water storage kettle;18, second cold water outlet pipe;19, one-way valve assembly;20, water inlet interface assembly;21, water inlet pipe;22, control module;23, liquid level sensor;24, mounting groove;25, protruding block;26, cover;37, in-place sensor;28, control panel;29, electric kettle;30, placement table. DETAILED DESCRIPTION
[0029] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model; obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments; based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0030] According to Figures 1 to 4As shown, the double heating structure of the net tea bar machine comprises a pedestal assembly 1, the pedestal assembly 1 is provided with a backrest assembly 2, the backrest assembly 2 comprises a shell 3, the shell 3 is provided with a front end cover 4, the front end cover 4 is provided with a first water outlet joint 5 and a second water outlet joint 6, so as to output different types of hot water respectively. In the shell 3, a first heating assembly is arranged, and a second heating assembly is arranged on the pedestal assembly 1, and the second heating assembly is located below the second water outlet joint 6, so that the water flow is further heated in the water outlet process, and the overall heating efficiency is improved.
[0031] The utility model adopts the double heating mode, first, cold water is heated through the first heating assembly, and the first heating assembly comprises a rapid heating module 7, the rapid heating module 7 is provided with a first hot water outlet pipe 8 and a second hot water outlet pipe 9, and is connected with the first water outlet joint 5 and the second water outlet joint 6 respectively. The heated hot water can be directly supplied through the first water outlet joint 5, and can also be further heated through the second water outlet joint 6 into the second heating assembly. The second heating assembly comprises a coupler 11, the coupler 11 is installed on the object placing table 30, and the coupler 11 is connected with the electric kettle 29, and the water inlet of the electric kettle 29 is opposite to the second water outlet joint 6. In the water outlet process, the water flow is subjected to secondary heating, and finally the water is heated to boiling state, so that the water temperature is stable and the overall heating efficiency is improved.
[0032] In the water outlet process, since the water flow may experience a certain heat loss, a single heating structure may not be able to fully guarantee the final water temperature, and the double heating structure of the utility model effectively makes up for this problem, so that the water flow is subjected to secondary heating, and the water temperature reaches the set requirement. In order to improve the heating stability, the first water vapor separation box 12 is arranged between the first water outlet joint 5 and the first hot water outlet pipe 8, and the second water vapor separation box 13 is arranged between the second water outlet joint 6 and the second hot water outlet pipe 9, so as to effectively reduce the mixing of water vapor and improve the stability of water outlet.
[0033] According to Figures 5 to 8 As shown, the rear end of the shell 3 is provided with a water making tank 14, the water making tank 14 is connected with a first cold water outlet pipe 15, and the first cold water outlet pipe 15 is communicated with the first water vapor separation box 12, so as to adjust the temperature of hot water. At the same time, the object placing table 30 is also provided with a base 16, and the base 16 is provided with an external water storage kettle 17, and the external water storage kettle 17 is communicated with the second water vapor separation box 13 through a second cold water outlet pipe 18. In order to prevent water backflow, the bottom of the external water storage kettle 17 is provided with a one-way valve assembly 19, and the base 16 is provided with a water inlet interface assembly 20, and the interface assembly is connected with a water inlet pipe 21, so as to ensure the orderly entry of water flow and prevent pollution.
[0034] The control module 22 is connected with a liquid level sensor 23 arranged on the first cold water outlet pipe 15, can detect the water level in the external water storage kettle 17, and controls the water making process based on the feedback signal of the liquid level sensor 23, realizes the function of automatically feeding water into the external water storage kettle 17, and improves the intelligent degree of the equipment. In addition, in order to facilitate disassembly and installation, the water making tank 14 is provided with a mounting groove 24, and the shell 3 is provided with a corresponding protrusion 25, the protrusion 25 is slidingly connected in the mounting groove 24, which ensures the stability of the structure and facilitates disassembly and installation. Meanwhile, the water making tank 14 is also provided with a cover body 26, and the shell 3 is provided with a home sensor 37 for detecting the cover body 26, and the cover body 26 is provided with a sensing magnet, and the home sensor 37 can detect the position of the sensing magnet, so as to ensure the correct installation of the cover body 26 and improve the safety of the equipment.
[0035] In addition, the front end cover 4 is integrated with a control panel 28, and the user can perform various operations such as temperature adjustment and water quantity control through the panel, so that the use of the pure tea bar machine is more humanized and intelligent.
[0036] When the user needs hot water, the control module 22 starts the first heating assembly, the cold water is rapidly heated to about 90 DEG C after passing through the rapid heating module 7, and the heated water is delivered to the first water outlet joint 5 through the first hot water outlet pipe 8 for the user to use, if the user needs boiling water, the reversing valve 10 makes the first hot water outlet pipe 8 close, the water passes through the second hot water outlet pipe 9 and is poured into the electric kettle 29 from the second water outlet joint 6, and the hot water is slightly cooled after leaving the second water outlet joint 6, and at the same time, the electric kettle 29 further heats the water until it reaches the boiling state of 100 DEG C. If the user does not need rapid heating, the cold water in the external water storage kettle 17 can be directly poured into the electric kettle 29, and only the second heating assembly is used for heating.
[0037] The utility model discloses a beneficial effect is:
[0038] The utility model discloses adopt double heating mode, shorten heating time, effectively reduce heat loss, improve heating efficiency.
[0039] The utility model discloses have multiple water outlet mode, provide more choice for the user, improve the user's use experience.
[0040] The utility model discloses possess water vapor separation, water level detection, etc. function, water making tank slide rail type installation, disassembly and maintenance are convenient, promote use experience.
[0041] The above-mentioned is only the preferred implementation manner of the utility model, therefore, the equivalent change or modification of the structure, feature and principle that is described in the utility model patent application range is included in the utility model patent application range.
Claims
1. A double heating structure of a net tea bar machine, comprising a pedestal assembly (1), a backrest assembly (2) is arranged on the pedestal assembly (1), characterized in that: The backrest assembly (2) comprises a shell (3), the shell (3) is provided with a front end cover (4), the bottom of the front end cover (4) is provided with a first water outlet joint (5) and a second water outlet joint (6), the shell (3) is provided with a first heating assembly, the pedestal assembly (1) is provided with a second heating assembly, the second heating assembly is arranged below the second water outlet joint (6), the first heating assembly comprises a quick heating module (7) and a first hot water outlet pipe (8) and a second hot water outlet pipe (9) connected to the quick heating module (7), the first hot water outlet pipe (8) is connected with the first water outlet joint (5), the second hot water outlet pipe (9) is connected with the second water outlet joint (6), the quick heating module (7) is further provided with a reversing valve (10), the reversing valve (10) controls the on-off of the first hot water outlet pipe (8) and the second hot water outlet pipe (9).
2. The double heating structure of the net tea bar machine according to claim 1, characterized in that: The second heating assembly comprises a coupler (11) and an electric kettle (29), the pedestal assembly (1) comprises a placement table (30), the coupler (11) is arranged on the placement table (30), the electric kettle (29) is connected to the coupler (11), and the electric kettle (29) is arranged corresponding to the second water outlet joint (6).
3. The double heating structure of the net tea bar machine according to claim 2, characterized in that: The first water outlet joint (5) and the first hot water outlet pipe (8) are provided with a first water vapor separation box (12), and the second water outlet joint (6) and the second hot water outlet pipe (9) are provided with a second water vapor separation box (13).
4. The double heating structure of the net tea bar machine according to claim 3, characterized in that: The rear end of the shell (3) is provided with a water making tank (14), the water making tank (14) is connected with a first cold water outlet pipe (15), and the first cold water outlet pipe (15) communicates with the first water vapor separation box (12).
5. The double heating structure of the net tea bar machine according to claim 3, characterized in that: The placement table (30) is further provided with a base (16), the base (16) is provided with an external water storage kettle (17), the external water storage kettle (17) is connected with a second cold water outlet pipe (18), and the second cold water outlet pipe (18) communicates with the second water vapor separation box (13).
6. The double heating structure of the net tea bar machine according to claim 5, characterized in that: The bottom of the external water storage kettle (17) is provided with a one-way valve assembly (19), the base (16) is provided with a water inlet interface assembly (20), and the water inlet interface assembly (20) is connected with a water inlet pipe (21).
7. The double heating structure of the net tea bar machine according to claim 4, characterized in that: The shell (3) is provided with a control module (22), the first cold water outlet pipe (15) is provided with a liquid level sensor (23) for detecting the water level in the external water storage kettle (17), the control module (22) is electrically connected with the liquid level sensor (23), and the control module (22) controls water making and water feeding into the external water storage kettle (17) based on the feedback signal of the liquid level sensor (23).
8. The double heating structure of the net tea bar machine according to claim 4, characterized in that: The water making tank (14) is provided with a mounting groove (24), and the shell (3) is provided with a corresponding protrusion (25) which is slidingly connected in the mounting groove (24).
9. The double heating structure of the net tea bar machine according to claim 4, characterized in that: The water making tank (14) is provided with a cover body (26), and the shell (3) is provided with a position sensor (37) for detecting the cover body (26).
10. The dual heating structure of the net tea bar machine according to claim 1, characterized in that: The front end cover (4) is provided with a control panel (28).