Double-kettle constant-temperature electric kettle device

By designing a dual-pot constant temperature electric kettle device, the problem that existing electric kettles cannot provide different water temperatures at the same time is solved, and a high convenience and flexibility of water temperature output is achieved.

CN223025843UActive Publication Date: 2025-06-27FOSHAN SHUNDE GUJIN IND DESIGN CO LTD
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Patent Information

Application Number
CN202422066628.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-26
Publication Date
2025-06-27
Estimated Expiration
2034-08-26

AI Technical Summary

Technical Problem

Existing electric kettles cannot provide different water temperatures at the same time, and they are less convenient to use, which has certain limitations.

Method used

A dual-pot constant temperature electric kettle device is designed, including a machine seat, a first kettle body and a second kettle body. The machine seat is equipped with a control module and an upper and lower water outlet, and the output of two different water temperatures is achieved through the first and second water outlet pipes, solenoid valves and water pumps.

Benefits of technology

It realizes the functions of providing two different water temperatures at the same time, which are convenient to use, good compatibility, high flexibility in use, and wide application range.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a double-kettle constant temperature electric kettle device, which comprises a machine base, a first kettle body and a second kettle body, a control module and an upper water outlet are arranged on the machine base, the upper water outlet is communicated and connected with the first kettle body and the second kettle body, a lower water outlet is further arranged on the machine base, and the lower water outlet is communicated and connected with the first kettle body and the second kettle body. The double-kettle constant-temperature electric kettle device can provide different water temperatures and has the advantages of being good in use convenience, good in compatibility, high in use flexibility and wide in application range.
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Description

Technical Field

[0001] The utility model relates to the technical field of household appliances, and particularly relates to an electric kettle device with two kettles for constant temperature. Background Art

[0002] The electric kettle is a commonly used electrical appliance in people's daily life. It has the advantages of fast heating, light weight and safety, and is widely used in places such as families and offices. Most of the existing electric kettles only have one kettle body. However, when people make tea, brew coffee or make milk powder, there are special requirements for the water temperature. For example, when making tea or brewing coffee, hot water above 90 °C is required, while when making milk powder, warm water at 45 °C is required. The existing electric kettles cannot meet the use requirements of providing two different water temperatures at the same time, and the use convenience is poor, with certain limitations. Content of the Utility Model

[0003] The technical problem to be solved by the utility model is to overcome the deficiencies of the prior art and provide an electric kettle device with two kettles for constant temperature, which can provide different water temperatures, has good use convenience, good compatibility, high use flexibility and wide application range.

[0004] To solve the above technical problem, the utility model adopts the following technical solutions:

[0005] An electric kettle device with two kettles for constant temperature, comprising a machine base, a first kettle body and a second kettle body. A control module and an upper water outlet are arranged on the machine base. The upper water outlet is connected to the first kettle body and the second kettle body in a communicating manner. A lower water outlet is also arranged on the machine base, and the lower water outlet is connected to the first kettle body and the second kettle body in a communicating manner.

[0006] As a further improvement of the above technical solution:

[0007] The lower water outlet includes a first lower water outlet and a second lower water outlet. The first lower water outlet is connected to the first kettle body in a communicating manner, and the second lower water outlet is connected to the second kettle body in a communicating manner.

[0008] A first water outlet pipeline is arranged in the machine base. The input end of the first water outlet pipeline is connected to the first kettle body in a communicating manner. The output end of the first water outlet pipeline is divided into two paths through a first electromagnetic valve. One path is connected to the upper water outlet in a communicating manner, and the other path is connected to the first lower water outlet in a communicating manner. The first electromagnetic valve is electrically connected to the control module.

[0009] A first water pump is connected to the first water outlet pipeline in a communicating manner. The first water pump is located between the first kettle body and the first electromagnetic valve, and the first water pump is electrically connected to the control module.

[0010] A second water outlet pipeline is provided inside the machine base. The input end of the second water outlet pipeline is communicated with the second kettle body. The output end of the second water outlet pipeline is divided into two paths through a second electromagnetic valve. One path is communicated with the upper water outlet, and the other path is communicated with the second lower water outlet. The second electromagnetic valve is electrically connected with the control module.

[0011] A second water pump is connected in communication on the second water outlet pipeline. The second water pump is located between the second kettle body and the second electromagnetic valve. The second water pump is electrically connected with the control module.

[0012] A connecting column is provided on the machine base. The control module and the upper water outlet are arranged on the connecting column.

[0013] A first clearance concave position adapted to the outer wall of the first kettle body and a second clearance concave position adapted to the outer wall of the second kettle body are formed on the connecting column.

[0014] A first positioning concave position adapted to the bottom of the first kettle body and a second positioning concave position adapted to the bottom of the second kettle body are formed on the machine base.

[0015] Container concave positions corresponding to the first lower water outlet, the upper water outlet and the second lower water outlet are formed on the machine base.

[0016] A water storage box is arranged inside the machine base. Through holes communicated with the water storage box are formed in the container concave positions.

[0017] The control module includes a touch screen arranged on the outer wall of the connecting column.

[0018] A first electric heating device and a first temperature controller are provided at the bottom of the first kettle body. A second electric heating device and a second temperature controller are provided at the bottom of the second kettle body. A first coupler electrically connected with the first electric heating device and a second coupler electrically connected with the second electric heating device are provided inside the machine base. The control module is electrically connected with the first electric heating device, the first temperature controller, the second electric heating device and the second temperature controller.

[0019] Compared with the prior art, the advantages of the present utility model are as follows:

[0020] The dual-kettle constant-temperature electric kettle device of the present utility model is provided with a first kettle body and a second kettle body on the base, replacing the technical solution with only one kettle body in the prior art. Users can keep the water in the first kettle body at the first temperature and the water in the second kettle body at the second temperature through the control module, capable of providing two different water temperatures simultaneously, meeting various usage requirements of users, having good usage convenience. Moreover, the base is also provided with an upper water outlet and a lower water outlet communicating with the first kettle body and the second kettle body, having two water outlet modes of upper water outlet and lower water outlet, with the advantages of good compatibility, high usage flexibility, and wide application range. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 FIG. is a schematic structural diagram of the dual-kettle constant-temperature electric kettle device.

[0022] Figure 2 FIG. is a schematic structural diagram of the dual-kettle constant-temperature electric kettle device from the bottom view angle.

[0023] Figure 3 FIG. is a schematic structural diagram of the dual-kettle constant-temperature electric kettle device in a disassembled state.

[0024] Figure 4 FIG. is a schematic diagram of the working principle of the dual-kettle constant-temperature electric kettle device.

[0025] Figure 5 FIG. is an application example diagram of the dual-kettle constant-temperature electric kettle device.

[0026] LEGEND DESCRIPTION:

[0027] 1. Base; 101. First positioning concave position; 102. Second positioning concave position; 103. Container concave position; 104. Water storage box; 105. Through hole; 2. First kettle body; 201. First electric heating device; 202. First temperature controller; 3. Second kettle body; 301. Second electric heating device; 302. Second temperature controller; 4. Connecting column; 401. First clearance concave position; 402. Second clearance concave position; 5. Control module; 501. Touch screen; 6. Upper water outlet; 7. First lower water outlet; 8. Second lower water outlet; 9. First water outlet pipeline; 10. First solenoid valve; 11. First water pump; 12. Second water outlet pipeline; 13. Second solenoid valve; 14. Second water pump; 100. Bottom water inlet container; 200. Top water inlet container. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0028] The following further elaborates on the present utility model in detail in conjunction with the drawings and specific embodiments.

[0029] As Figures 1 to 4As shown in the figure, the electric kettle device with double-kettle constant temperature in this embodiment includes a base 1, a first kettle body 2, and a second kettle body 3. A control module 5 and an upper water outlet 6 are provided on the base 1. The upper water outlet 6 is connected to the first kettle body 2 and the second kettle body 3 in a communicating manner. A lower water outlet is also provided on the base 1, and the lower water outlet is connected to the first kettle body 2 and the second kettle body 3 in a communicating manner. By providing the first kettle body 2 and the second kettle body 3 on the base 1, the electric kettle device with double-kettle constant temperature replaces the technical solution with only one kettle body in the prior art. The user can keep the water in the first kettle body 2 at a first temperature (such as 45 °C) and the water in the second kettle body 3 at a second temperature (such as 90 °C) through the control module 5, which can provide two different water temperatures at the same time, meet various usage needs of users, and has good usage convenience. Moreover, an upper water outlet 6 and a lower water outlet that are connected to the first kettle body 2 and the second kettle body 3 are also provided on the base 1, which has two water outlet methods of upper water outlet and lower water outlet, and has the advantages of good compatibility, high usage flexibility, and wide application range.

[0030] Preferably, the lower water outlet includes a first lower water outlet 7 and a second lower water outlet 8. The first lower water outlet 7 is connected to the first kettle body 2 in a communicating manner, and the second lower water outlet 8 is connected to the second kettle body 3 in a communicating manner. In this embodiment, the upper water outlet 6 is set as one group, and the lower water outlet is set as two groups, including the first lower water outlet 7 and the second lower water outlet 8; in other embodiments, the upper water outlet 6 can also be set as two groups, including a first upper water outlet and a second upper water outlet. The first upper water outlet is connected to the first kettle body 2 in a communicating manner, and the second upper water outlet is connected to the second kettle body 3 in a communicating manner. The lower water outlet can also be set as one group, which is not limited to this embodiment.

[0031] It should be noted that a first electric heating device 201 and a first temperature controller 202 are provided at the bottom of the first kettle body 2, a second electric heating device 301 and a second temperature controller 302 are provided at the bottom of the second kettle body 3, a first coupler electrically connected to the first electric heating device 201 and a second coupler electrically connected to the second electric heating device 301 are provided in the base 1, and the control module 5 is electrically connected to the first electric heating device 201, the first temperature controller 202, the second electric heating device 301, and the second temperature controller 302. In this embodiment, an electric heating device is provided at the bottom of the kettle body, and a coupler is provided in the base 1, which is a conventional heating method in existing electric kettle products. The first kettle body 2 and the second kettle body 3 can be common electric kettles with a constant temperature function on the market. Their specific structures and working principles are prior art and will not be elaborated here; the preset temperatures of the first kettle body 2 and the second kettle body 3 are set respectively through the control module 5. The temperature controller detects the water temperature in real time. When the water temperature is lower than the preset temperature, the temperature controller sends a signal to the control module 5 to make the electric heating device work for heating. When the water temperature reaches the preset temperature, the temperature controller sends a signal to the control module 5 to make the electric heating device stop working, so as to achieve the effect of constant temperature.

[0032] Preferably, a first water outlet pipeline 9 is provided in the machine base 1. The input end of the first water outlet pipeline 9 is communicated with the first kettle body 2. The output end of the first water outlet pipeline 9 is divided into two paths through a first electromagnetic valve 10. One path is communicated with the upper water outlet 6, and the other path is communicated with the first lower water outlet 7. The first electromagnetic valve 10 is electrically connected to the control module 5.

[0033] Preferably, a first water pump 11 is connected in communication with the first water outlet pipeline 9. The first water pump 11 is located between the first kettle body 2 and the first electromagnetic valve 10. The first water pump 11 is electrically connected to the control module 5. In this embodiment, a first water pump 11 and a first electromagnetic valve 10 are arranged in the first water outlet pipeline 9. The control module 5 can drive the first water pump 11 to act to pump the water in the first kettle body 2, and at the same time, the control module 5 can drive the first electromagnetic valve 10 to act to select the water outlet mode of the upper water outlet 6 or the water outlet mode of the first lower water outlet 7.

[0034] Preferably, a second water outlet pipeline 12 is provided in the machine base 1. The input end of the second water outlet pipeline 12 is communicated with the second kettle body 3. The output end of the second water outlet pipeline 12 is divided into two paths through a second electromagnetic valve 13. One path is communicated with the upper water outlet 6, and the other path is communicated with the second lower water outlet 8. The second electromagnetic valve 13 is electrically connected to the control module 5.

[0035] Preferably, a second water pump 14 is connected in communication with the second water outlet pipeline 12. The second water pump 14 is located between the second kettle body 3 and the second electromagnetic valve 13. The second water pump 14 is electrically connected to the control module 5. In this embodiment, a second water pump 14 and a second electromagnetic valve 13 are arranged in the second water outlet pipeline 12. The control module 5 can drive the second water pump 14 to act to pump the water in the second kettle body 3, and at the same time, the control module 5 can drive the second electromagnetic valve 13 to act to select the water outlet mode of the upper water outlet 6 or the water outlet mode of the second lower water outlet 8.

[0036] Specifically, in this embodiment, both the first electromagnetic valve 10 and the second electromagnetic valve 13 adopt three-way electromagnetic valves, which have the advantages of simple structure, convenient control, rapid response and high reliability.

[0037] Preferably, a connecting column 4 is provided on the machine base 1. The control module 5 and the upper water outlet 6 are arranged on the connecting column 4.

[0038] Preferably, a first clearance concave position 401 adapted to the outer wall of the first kettle body 2 and a second clearance concave position 402 adapted to the outer wall of the second kettle body 3 are formed on the connecting column 4, which can reduce the occupied space of the connecting column 4, the first kettle body 2 and the second kettle body 3, thereby further reducing the overall volume of the electric kettle device of the present utility model.

[0039] Preferably, a first positioning concave position 101 adapted to the bottom of the first kettle body 2 and a second positioning concave position 102 adapted to the bottom of the second kettle body 3 are formed on the machine base 1, which can realize the quick positioning of the first kettle body 2 and the second kettle body 3 on the machine base 1, so that the electric heating device and the coupler are aligned and connected.

[0040] Preferably, a container concave position 103 corresponding to the first lower water outlet 7, the upper water outlet 6 and the second lower water outlet 8 is formed on the machine base 1, which can play a role in positioning the water container, facilitating the user to align the water inlet of the water container with the first lower water outlet 7, the upper water outlet 6 or the second lower water outlet 8, and avoiding waste.

[0041] Preferably, a water storage box 104 is arranged inside the machine base 1, and a through hole 105 communicating with the water storage box 104 is opened on the container concave position 103. In this embodiment, the water storage box 104 is detachably arranged in the machine base 1, and the water overflowing during the water filling process can flow into the water storage box 104 through the through hole 105, avoiding wetting the desktop. After using for a period of time, the user can take out the water storage box 104 and pour out the accumulated waste water in the box.

[0042] Preferably, the control module 5 includes a touch screen 501 arranged on the outer wall of the connecting column 4.

[0043] As Figure 5 shown, in actual application, the user can respectively adjust the preset temperatures of the first kettle body 2 and the second kettle body 3 through the touch screen 501. For example, select the target temperature of the first kettle body 2 to be 45 °C and the target temperature of the second kettle body 3 to be 90 °C, and can select the water outlet temperature and the water outlet mode through the touch screen 501. For example, the user uses the top water inlet container 200 and selects the first kettle body 2 and the upper water outlet mode, then the control module 5 drives the first water pump 11 to pump the water in the first kettle body 2, and at the same time the first electromagnetic valve 10 acts to connect the first water pump 11 with the upper water outlet 6, so that the upper water outlet 6 outputs warm water at a temperature of 45 °C; the user uses the bottom water inlet container 100 and selects the second kettle body 3 and the lower water outlet mode, then the control module 5 drives the second water pump 14 to pump the water in the second kettle body 3, and at the same time the second electromagnetic valve 13 acts to connect the second water pump 14 with the second lower water outlet 8, so that the second lower water outlet 8 outputs hot water at a temperature of 90 °C, with high usage flexibility and good convenience, and can meet various usage requirements.

[0044] The above is only the preferred embodiment of the present invention, and the protection scope of the present invention is not limited to the above embodiments. For those skilled in the art of this technology, the improvements and transformations obtained without departing from the technical concept of the present invention should also be regarded as the protection scope of the present invention.

Claims

1. A dual-pot constant temperature electric kettle device, characterized in that: The invention comprises a machine base (1), a first kettle body (2) and a second kettle body (3); the machine base (1) is provided with a control module (5) and an upper water outlet (6); the upper water outlet (6) is connected to the first kettle body (2) and the second kettle body (3); the machine base (1) is also provided with a lower water outlet; the lower water outlet is connected to the first kettle body (2) and the second kettle body (3).

2. The double-pot constant temperature electric kettle device according to claim 1, characterized in that: The lower water outlet comprises a first lower water outlet (7) and a second lower water outlet (8), the first lower water outlet (7) being connected to the first kettle body (2), and the second lower water outlet (8) being connected to the second kettle body (3).

3. The double-pot constant temperature electric kettle device according to claim 2, characterized in that: A first water outlet pipeline (9) is provided in the machine base (1); an input end of the first water outlet pipeline (9) is connected to the first kettle body (2); an output end of the first water outlet pipeline (9) is divided into two paths through a first electromagnetic valve (10), one path being connected to the upper water outlet (6) and the other path being connected to the first lower water outlet (7); the first electromagnetic valve (10) is electrically connected to the control module (5); The first water outlet pipeline (9) is connected to a first water pump (11); the first water pump (11) is located between the first kettle body (2) and the first solenoid valve (10); and the first water pump (11) is electrically connected to the control module (5).

4. The double-pot constant temperature electric kettle device according to claim 3, characterized in that: A second water outlet pipeline (12) is provided in the machine base (1), the input end of the second water outlet pipeline (12) is connected to the second kettle body (3), the output end of the second water outlet pipeline (12) is divided into two paths through a second solenoid valve (13), one path is connected to the upper water outlet (6), and the other path is connected to the second lower water outlet (8), and the second solenoid valve (13) is electrically connected to the control module (5); The second water outlet pipeline (12) is connected to a second water pump (14); the second water pump (14) is located between the second kettle body (3) and the second solenoid valve (13); and the second water pump (14) is electrically connected to the control module (5).

5. The double-pot constant temperature electric kettle device according to claim 1, characterized in that: The base (1) is provided with a connecting column (4), and the control module (5) and the upper water outlet (6) are arranged on the connecting column (4); The connecting column (4) is formed with a first space-avoiding recess (401) adapted to the outer wall of the first kettle body (2), and a second space-avoiding recess (402) adapted to the outer wall of the second kettle body (3).

6. The double-pot constant temperature electric kettle device according to claim 1, characterized in that: The machine base (1) is formed with a first positioning recess (101) adapted to the bottom of the first kettle body (2), and a second positioning recess (102) adapted to the bottom of the second kettle body (3).

7. The double-pot constant temperature electric kettle device according to claim 2, characterized in that: The machine base (1) is formed with a container recess (103) corresponding to the first lower water outlet (7), the upper water outlet (6) and the second lower water outlet (8).

8. The double-pot constant temperature electric kettle device according to claim 7, characterized in that: A water storage box (104) is arranged inside the machine base (1), and a through hole (105) communicating with the water storage box (104) is provided on the container recess (103).

9. The double-pot constant temperature electric kettle device according to claim 5, characterized in that: The control module (5) comprises a touch screen (501) arranged on the outer wall of the connecting column (4).

10. The double-pot constant temperature electric kettle device according to any one of claims 1 to 9, characterized in that: A first electric heating device (201) and a first temperature controller (202) are provided at the bottom of the first kettle body (2), a second electric heating device (301) and a second temperature controller (302) are provided at the bottom of the second kettle body (3), a first coupler electrically connected to the first electric heating device (201) and a second coupler electrically connected to the second electric heating device (301) are provided in the machine base (1), and the control module (5) is electrically connected to the first electric heating device (201), the first temperature controller (202), the second electric heating device (301) and the second temperature controller (302).