Tea coffee machine

By combining multiple heating devices and sensor-controlled tea and coffee machines, the problems of large space occupation and cumbersome operation of traditional milk tea shop tea extraction machines have been solved. This has enabled precise extraction of tea leaves, reduced waste, and enhanced the aroma and flavor of the tea.

CN223569167UActive Publication Date: 2025-11-21宇咖商贸(佛山)有限公司
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Patent Information

Application Number
CN202422816111.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2025-11-21
Estimated Expiration
2034-11-19

AI Technical Summary

Technical Problem

Milk tea shops and coffee shops on the market need to use two machines for tea extraction and coffee making, which takes up a lot of space and is cumbersome to operate. At the same time, traditional milk tea shops' tea extraction machines cannot accurately control the extraction temperature and steeping time, which affects the taste of the tea and is easy to waste.

Method used

The system employs a combination of a first boiler, a second boiler, a steam boiler, a first instant heating element, and a second instant heating element, along with a left extraction head and a right extraction head. Controlled by a temperature sensor and a solenoid valve, it achieves multiple water output modes and precise extraction temperature and steeping time, using pressure to brew tea leaves to obtain a rich and mellow tea liquor.

Benefits of technology

It reduces usage costs, avoids water waste, and ensures the rich and mellow taste of tea by precisely controlling extraction conditions. It offers 24 different tea extraction methods, is easy to operate, and has excellent extraction results.

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    Figure CN223569167U_ABST
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Abstract

The utility model particularly relates to a tea coffee machine which comprises a shell, a right operation box, a left operation box, a hot water pipe and a steam pipe are respectively arranged on the shell, a right extraction head is arranged on the lower surface of the right operation box, and a left extraction head is arranged on the lower surface of the left operation box. A first boiler, a second boiler, a steam boiler, a first instant heating pipe and a second instant heating pipe are arranged in the shell, the first boiler and the second boiler are respectively connected with the hot water pipe, the steam boiler is connected with a five-way pipe, the five-way pipe is respectively connected with the first boiler and the second boiler, and the steam boiler is connected with the steam pipe. The instant tea brewing device has the advantages that the first instant heating pipe and the second instant heating pipe are adopted, water temperature can be more stable, the left extraction head and the right extraction head are used for brewing tea leaves in a pressure mode, the tea leaves are stretched in hot water and soaked for a short time, the hot water fully permeates the tea leaves, and then fragrant and mellow tea juice is obtained.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a tea and coffee machine. BACKGROUND

[0002] The tea and coffee machines need two machines to make tea and coffee, which occupies a large space and is complicated to operate.

[0003] The traditional tea machine has the following disadvantages: the tea soup demand is large, the tea is directly boiled, a large pot is boiled at one time, the freshness and original flavor of the tea are lost; the tea leaves need to be crushed before extraction, and the extraction temperature and soaking time of different tea leaves are different, which cannot be accurately controlled, affecting the taste of the tea; the amount cannot be grasped, a large pot is boiled at one time, which is easy to waste and the cost is too large; the crushed tea is over-extracted, so the extracted tea has a heavy bitter taste. SUMMARY

[0004] The utility model aims at at least solving one of the technical problems existing in the prior art. To this end, one object of the utility model is to provide a tea and coffee machine which avoids waste, reduces cost, accurately grasps the extraction temperature and soaking time, and extracts tea with rich aroma.

[0005] According to the tea and coffee machine, the right extraction head is arranged on the lower surface of the right operation box, the left extraction head is arranged on the lower surface of the left operation box, the first boiler, the second boiler, the steam boiler, the first instant heating pipe and the second instant heating pipe are arranged in the shell, the second instant heating pipe is connected with the right extraction head through the right temperature detection joint, the first instant heating pipe is connected with the left extraction head through the left temperature detection joint, the first boiler and the second boiler are connected with the hot water pipe, the steam boiler is connected with the five-way pipe, the five-way pipe is connected with the first boiler and the second boiler, and the steam boiler is connected with the steam pipe.

[0006] Further, the left extraction head and the left temperature detection joint are connected through the left extraction head stop valve and the left four-way valve, and the right extraction head and the right temperature detection joint are connected through the right extraction head stop valve and the right four-way valve.

[0007] Further, the left four-way valve and the right four-way valve are connected through the fourth electromagnetic valve group.

[0008] Further, the left extraction head is provided with a third temperature sensor, and the right extraction head is provided with a second temperature sensor.

[0009] Further, the steam boiler and the five-way pipe are connected through the steam boiler connecting pipe, and the surface of the steam boiler is provided with a first temperature sensor.

[0010] Specifically further, the steam boiler connecting pipe is provided with a first electromagnetic valve.

[0011] Specifically further, the five-way pipe is respectively connected with a second electromagnetic valve, a third electromagnetic valve, a fifth electromagnetic valve and a sixth electromagnetic valve.

[0012] Specifically further, the steam boiler is connected with a rotary pump.

[0013] Specifically further, the front surface of the right operation box is provided with a right operation panel, the front surface of the left operation box is provided with a left operation panel, the front surface of the shell is provided with a supporting plate, and the front surface of the shell is provided with a water receiving tray.

[0014] Specifically further, the front surface of the shell is provided with a left piezoelectric meter and a right piezoelectric meter, and the shell is internally provided with an inner frame body, and the first boiler, the second boiler and the steam boiler are respectively located on the inner frame body.

[0015] The beneficial effects of the present application are as follows:

[0016] I. The structure adopts the combination of the first boiler, the second boiler, the steam boiler, the first instant heating pipe and the second instant heating pipe, implements multiple water outlet modes, and further integrates the overall scheme after combination, thereby reducing the use cost and the controllable water consumption to avoid waste.

[0017] II. The first instant heating pipe and the second instant heating pipe can make the water temperature more stable, and the left extraction head and the right extraction head are used to implement pressure type tea leaf brewing, so that the tea leaves are stretched and briefly soaked in hot water, the hot water fully penetrates the tea leaves, and then the fragrant tea juice is obtained.

[0018] III. The hot water pipe, the steam pipe, the left extraction head and the right extraction head can set 24 different tea extraction modes, the operation is simple, the extraction temperature and the soaking time are accurately grasped, and the extracted tea is fragrant and thick. BRIEF DESCRIPTION OF DRAWINGS

[0019] The above and / or additional aspects and advantages of the present application will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings.

[0020] Figure 1 is a structural diagram of the present application.

[0021] Figure 2 is a schematic diagram of the internal structure of the present application.

[0022] Figure 3 is a top view structural schematic diagram of the present application.

[0023] Figure 4 is a schematic diagram of the three-dimensional structure of the present application.

[0024] Figure 5 is Figure 4 another perspective view of the structure.

[0025] The labels shown in the figures are as follows:

[0026] Housing 1, inner frame 101, right operation box 2, right operation panel 201, second temperature sensor 202, right extraction head 203, right extraction head stop valve 204, right four-way valve 205, left operation box 3, left operation panel 301, third temperature sensor 302, left extraction head 303, left extraction head stop valve 304, left four-way valve 305, right piezoelectric table 4, left piezoelectric table 5, support plate 6, water tray 7, water outlet pipe 8, steam boiler 9, steam boiler connecting pipe 901, first temperature sensor 902, first boiler 10, second boiler 11, right temperature detection connector 12, left temperature detection connector 13, first electromagnetic valve 14, five-way pipe 15, second electromagnetic valve 16, third electromagnetic valve 17, fourth electromagnetic valve group 18, fifth electromagnetic valve 19, sixth electromagnetic valve 20. DETAILED DESCRIPTION

[0027] The embodiments of the present application are described below in detail, examples of which are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present application, and cannot be understood as a limitation of the present application.

[0028] A tea and coffee machine according to an embodiment of the present application is described below with reference to Figures 1 to 5 The tea and coffee machine according to the embodiment of the present application includes a housing 1, the housing 1 is respectively provided with a right operation box 2, a left operation box 3, a hot water pipe 8 and a steam pipe 801, a lower surface of the right operation box 2 is provided with a right extraction head 203, a lower surface of the left operation box 3 is provided with a left extraction head 303, the housing 1 is provided with a first boiler 10, a second boiler 11, a steam boiler 9, a first instant heating pipe 21 and a second instant heating pipe 22, the second instant heating pipe 22 is connected with the right extraction head 203 through a right temperature detection connector 12, the first instant heating pipe 21 is connected with the left extraction head 303 through a left temperature detection connector 13, the first boiler 10 and the second boiler 11 are respectively connected with the hot water pipe 8, the steam boiler 9 is connected with a five-way pipe 15, the five-way pipe 15 is respectively connected with the first boiler 10 and the second boiler 11, and the steam boiler 9 is connected with the steam pipe 801.

[0029] The structure adopts the combination of the first boiler 10, the second boiler 11, the steam boiler 9, the first instant heating pipe 21 and the second instant heating pipe 22, implements multiple water outlet modes, and further integrates the overall scheme after combination, reduces the use cost, controls the water consumption, avoids waste, and the like.

[0030] The structure adopts the first instant heating pipe 21 and the second instant heating pipe 22, can make the water temperature more stable, implements pressure type tea leaf brewing by the left extraction head 303 and the right extraction head 203, makes the leaves expand and temporarily soak in hot water, and hot water fully penetrates the tea leaves, and then the fragrant tea juice is obtained; wherein the first instant heating pipe 21 and the second instant heating pipe 22 can quickly heat.

[0031] The hot water pipe 8, the steam pipe 801, the left extraction head 303 and the right extraction head 203 can set 24 different tea extraction modes, the operation is simple, the extraction temperature and soaking time are accurately grasped, and the extracted tea is fragrant and thick.

[0032] The structure is connected through the left extraction head stop valve 304 and the left four-way valve 305 between the left extraction head 303 and the left temperature detection joint 13, and is connected through the right extraction head stop valve 204 and the right four-way valve 205 between the right extraction head 203 and the right temperature detection joint 12. The left extraction head 303 and the right extraction head stop valve 204 respectively adopt 58mm commercial grade extraction heads, have uniform water outlet, increase water outlet, and guarantee extraction conditions.

[0033] The structure is connected through the fourth electromagnetic valve group 18 between the left four-way valve 305 and the right four-way valve 205. The fourth electromagnetic valve group 18 is used for implementation of conduction or closing, and the left four-way valve 305 and the right four-way valve 205 are connected.

[0034] The structure is provided with the third temperature sensor 302 on the left extraction head 303. The third temperature sensor 302 is used for detecting the water temperature of the left extraction head 303; the second temperature sensor 202 is arranged on the right extraction head 203, and is used for detecting the water temperature of the right extraction head 203; heating pipes are respectively arranged in the first boiler 10, the second boiler 11 and the steam boiler 9, and liquid is heated.

[0035] The structure is connected through the steam boiler connecting pipe 901 between the steam boiler 9 and the five-way pipe 15, and is provided with the first temperature sensor 902 on the surface of the steam boiler 9. The first temperature sensor 902 and the third temperature sensor 302 are respectively connected to the control panel, the control panel is connected with the first instant heating pipe 21 and the second instant heating pipe 22, and is used for controlling the working state of the first instant heating pipe 21 and the second instant heating pipe 22.

[0036] The first solenoid valve 14 is arranged on the steam boiler connecting pipe 901. The control panel is connected with the first solenoid valve 14. The five-way pipe 15 is connected with the second solenoid valve 16, the third solenoid valve 17, the fifth solenoid valve 19 and the sixth solenoid valve 20 respectively. The control panel is connected with the second solenoid valve 16, the third solenoid valve 17, the fifth solenoid valve 19 and the sixth solenoid valve 20 respectively, controls the working state of the second solenoid valve 16, the third solenoid valve 17, the fifth solenoid valve 19 and the sixth solenoid valve 20, implements the on or off of the corresponding pipe body, and can also control the water flow. The second solenoid valve 16 and the fifth solenoid valve 19 are connected with the second boiler 11 respectively, and the third solenoid valve 17 and the sixth solenoid valve 20 are connected with the first boiler 10 respectively.

[0037] The steam boiler 9 is connected with the rotary pump 23. The first instant heating pipe 21 and the second instant heating pipe 22 are connected with the rotary pump 23 respectively, and the rotary pump 23 can ensure the water pressure of the first instant heating pipe 21 and the second instant heating pipe 22. The rotary pump 23 is connected with the control panel, and the control panel controls the working state of the rotary pump 23. The rotary pump 23 is connected with the first boiler 10, the second boiler 11, the steam boiler 9, the first instant heating pipe 21 and the second instant heating pipe 22 through the water distributor, implements sufficient water supply, and the first boiler 10, the second boiler 11 and the steam boiler 9 are all water-in bottom, and the first instant heating pipe 21 and the second instant heating pipe 22 are both water-in another end.

[0038] The front surface of the right operation box 2 is provided with the right operation panel 201, and the front surface of the left operation box 3 is provided with the left operation panel 301. The right operation panel 201 and the left operation panel 301 can be a key or a touch panel, and the key or the touch panel is connected with the control panel respectively. The control panel is a conventional control panel, and the structure is not disclosed herein. The control panel is used for receiving operation information and controlling the corresponding device to start or stop working, such as starting heating of the first instant heating pipe 21 and the second instant heating pipe 22. The front surface of the shell 1 is provided with the supporting plate 6, and the supporting plate 6 is welded with the shell 1. The supporting plate 6 is used for supporting the container. The front surface of the shell 1 is provided with the water collecting disc 7, which is used for recycling the dripping water droplets or overflowing water, and is convenient for maintenance. The right operation panel 201 and the left operation panel 301 are connected with the control panel respectively, and the right operation panel 201 and the left operation panel 301 can input operation information and input to the control panel.

[0039] The front surface of the shell 1 is provided with a right piezoelectric meter 4 and a left piezoelectric meter 5, the right piezoelectric meter 4 and the left piezoelectric meter 5 are connected with pipes respectively, two steam pipes 801 are arranged on the front surface of the shell 1, the right piezoelectric meter 4 and the left piezoelectric meter 5 are installed on the two steam pipes 801 respectively, and the water pressure output by the steam pipes 801 is detected; an inner frame 101 is arranged in the shell 1, and a first boiler 10, a second boiler 11 and a steam boiler 9 are arranged on the inner frame 101 respectively; and the bottom surfaces of the first boiler 10, the second boiler 11 and the steam boiler 9 are welded with bases respectively, and the bases are fixed with the inner frame 101 through screws.

[0040] Although the embodiments of the utility model have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and purposes of the utility model, and the scope of the utility model is defined by the claims and their equivalents.

Claims

1. A tea maker comprising a housing (1), characterized in that: The shell (1) is respectively provided with a right operation box (2), a left operation box (3), a hot water pipe (8) and a steam pipe (801), the lower surface of the right operation box (2) is provided with a right extraction head (203), the lower surface of the left operation box (3) is provided with a left extraction head (303), the shell (1) is provided with a first boiler (10), a second boiler (11), a steam boiler (9), a first instant heating pipe (21) and a second instant heating pipe (22), the second instant heating pipe (22) is connected with the right extraction head (203) through a right temperature detection joint (12), the first instant heating pipe (21) is connected with the left extraction head (303) through a left temperature detection joint (13), the first boiler (10) and the second boiler (11) are connected with the hot water pipe (8), the steam boiler (9) is connected with a five-way pipe (15), the five-way pipe (15) is connected with the first boiler (10) and the second boiler (11), and the steam boiler (9) is connected with the steam pipe (801).

2. The tea maker of claim 1, wherein: The left extraction head (303) and the left temperature detection joint (13) are connected through a left extraction head stop valve (304) and a left four-way valve (305), the right extraction head (203) and the right temperature detection joint (12) are connected through a right extraction head stop valve (204) and a right four-way valve (205).

3. The tea maker of claim 2, wherein: The left four-way valve (305) and the right four-way valve (205) are connected through a fourth electromagnetic valve group (18).

4. The tea maker according to claim 1 or 2, wherein: The left extraction head (303) is provided with a third temperature sensor (302), and the right extraction head (203) is provided with a second temperature sensor (202).

5. The tea maker of claim 1, wherein: The steam boiler (9) and the five-way pipe (15) are connected through a steam boiler connecting pipe (901), and the surface of the steam boiler (9) is provided with a first temperature sensor (902).

6. The tea maker of claim 5, wherein: The steam boiler connecting pipe (901) is provided with a first electromagnetic valve (14).

7. The tea maker of claim 1, wherein: The five-way pipe (15) is connected with a second electromagnetic valve (16), a third electromagnetic valve (17), a fifth electromagnetic valve (19) and a sixth electromagnetic valve (20).

8. The tea maker of claim 1, wherein: The steam boiler (9) is connected with a rotary pump (23).

9. The tea maker of claim 1, wherein: The front surface of the right operation box (2) is provided with a right operation panel (201), the front surface of the left operation box (3) is provided with a left operation panel (301), the front surface of the shell (1) is provided with a supporting plate (6), and the front surface of the shell (1) is provided with a water pan (7).

10. The tea maker of claim 1, wherein: The front surface of the shell (1) is provided with a left piezoelectric meter (5) and a right piezoelectric meter (4), and the shell (1) is provided with an inner frame body (101), the first boiler (10), the second boiler (11) and the steam boiler (9) are arranged on the inner frame body (101).