Milk mixing device with electromagnetic heating function, kettle and health preserving kettle

By employing electromagnetic heating technology in formula makers, kettles, and health pots, and using electromagnetic heat-conducting components and sensors that are in direct contact with the liquid, the problem of slow heating speed has been solved, achieving rapid and efficient heating and the goals of energy saving and environmental protection.

CN223569125UActive Publication Date: 2025-11-21JOYSTAR ELECTRICAL APPLIANCES MFG CO LTD
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Patent Information

Application Number
CN202422538242.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-21
Publication Date
2025-11-21
Estimated Expiration
2034-10-21

AI Technical Summary

Technical Problem

Existing formula makers, kettles, and health pots use indirect contact heating methods, resulting in slow heating speed and low thermal efficiency.

Method used

Electromagnetic heating technology is used, which involves direct contact between electromagnetic heat-conducting components and the liquid. Eddy currents are generated using the principle of electromagnetic induction for heating, and temperature and water level sensors are combined to achieve efficient heating control.

Benefits of technology

It achieves a rapid and efficient heating process, reduces energy consumption, improves production efficiency, and meets green and environmental protection requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a milk mixing device, a kettle and a health preserving kettle with an electromagnetic heating function, which comprise a heating base and a liquid storage container, an electromagnetic heating component is arranged on the heating base, an electromagnetic heat conduction piece matched with the electromagnetic heating component is arranged in the liquid storage container, and the electromagnetic heating component is started to heat the electromagnetic heat conduction piece. The electromagnetic heat-conducting part cooperates with the electromagnetic heating part to heat the liquid storage container. And the electromagnetic heat conduction part connected with the electromagnetic heating part is arranged in the liquid storage container and is in direct contact with the liquid, so that the heating efficiency is high.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of electromagnetic heating, and particularly relates to a milk frother, kettle and health-care pot with electromagnetic heating function. BACKGROUND

[0002] The existing milk frother, kettle and health-care pot are heated by the form of electric heating film of heating disc, and these heating modes are indirectly contacted with liquid, heat is conducted to the container to heat the liquid in the container. The liquid is indirectly heated, and the heating speed of the liquid is slow. For example, a heating disc type milk frother disclosed in Chinese patent No. ZL202320696100 comprises a host computer and a cup assembly. The host computer comprises a casing, a lower coupler and a circuit board. The cup assembly comprises a glass cup body, a cup cover assembly, a handle, an electric heating disc, an elastic device, a cup seat, a base and an upper coupler. The cup seat is coupled and fixed with the base, and supports the glass cup body. The elastic device is in sliding cooperation with the base and the electric heating disc is fixed. The electric heating disc moves up and down in the cup seat. The bottom plate of the glass cup body is attached to the electric heating disc. The handle is fixed with the glass cup body and the cup seat. The upper coupler is fixed on the base. The casing supports the base. The upper coupler and the lower coupler are coupled. The glass cup body and the electric heating disc are integrated and tightly attached by the elastic device, and the heat efficiency is high. SUMMARY

[0003] The utility model aims at providing a milk frother, kettle and health-care pot with electromagnetic heating function. An electromagnetic heat conduction piece is arranged in the liquid storage container and directly contacted with the liquid to improve the heating efficiency.

[0004] The utility model is achieved as follows:

[0005] A milk frother with electromagnetic heating function comprises a heating base and a liquid storage container. An electromagnetic heating component is arranged on the heating base. An electromagnetic heat conduction piece is arranged in the liquid storage container and matched with the electromagnetic heating component. The electromagnetic heating component is started to heat the liquid storage container by the electromagnetic heat conduction piece.

[0006] A cover is arranged on the liquid storage container. The cover is provided with a connection piece extending towards the bottom of the inner cavity of the liquid storage container. One end of the connection piece is connected with the cover, and the other end of the connection piece is connected with the electromagnetic heat conduction piece.

[0007] The cover is detachably mounted on the liquid storage container.

[0008] A temperature sensor for detecting the heating temperature of the liquid in the liquid storage container is arranged on the connection piece. The temperature probe of the temperature sensor faces the inner side of the inner cavity of the liquid storage container. Alternatively, the temperature sensor is arranged on the side or bottom of the liquid storage container.

[0009] The adapter is provided with a water level sensor for detecting the liquid level of the liquid storage container, or the water level sensor is arranged on the side of the liquid storage container.

[0010] The cover body is provided with a cover body circuit board, and the cover body circuit board is provided with a cover body power supply module for supplying power to the temperature sensor and the water level sensor.

[0011] The cover body circuit board is provided with a first wireless communication module, and the heating base is provided with a main control circuit board, and the main control circuit board is provided with a second wireless communication module.

[0012] The power supply module of the cover body is a battery, or the power supply module of the cover body is a power line socket, and the temperature sensor and the water level sensor are supplied with power by an external power source through a power line.

[0013] Alternatively, the cover body and the heating base are provided with an electrical coupling connection part, and the temperature sensor and the water level sensor are respectively connected to the main control circuit board of the heating base through the electrical coupling connection part.

[0014] The heating base is provided with a guide part on one side, and the guide part is provided with a conductive plug-in port at one end extending upward toward the cover body.

[0015] The adapter is provided with a wire cavity for inserting wires.

[0016] The other end of the adapter and the inner bottom wall of the liquid storage container are provided with a spacing, so that the electromagnetic heat conduction part is suspended above the inner bottom wall of the liquid storage container.

[0017] Alternatively, the inner bottom wall of the liquid storage container is provided with a support for supporting the electromagnetic heat conduction part, and the electromagnetic heat conduction part is away from the inner bottom wall of the liquid storage container through the support.

[0018] The electromagnetic heat conduction part is suspended and away from the inner bottom wall of the liquid storage container, which prevents the bottom wall of the liquid storage container from being heated to a high temperature and avoids deformation of the bottom of the liquid storage container due to high temperature.

[0019] The electromagnetic heat conduction part is made of food-grade metal, and the material of the electromagnetic heat conduction part is 304 stainless steel or metal titanium.

[0020] A kettle with electromagnetic heating function, which replaces the milk frother with electromagnetic heating function mentioned above.

[0021] A health pot with electromagnetic heating function, which replaces the milk frother with electromagnetic heating function mentioned above.

[0022] The beneficial effects of the present utility model are as follows:

[0023] The electromagnetic heat conduction component cooperates with the electromagnetic heating component to form an electromagnetic heat conduction structure, which has an efficient and energy-saving heating mode.

[0024] The electromagnetic heat conduction structure has the following characteristics and advantages:

[0025] ‌Efficient heating: electromagnetic heat conduction technology can directly convert electrical energy into heat energy, with almost no energy loss during heating, greatly improving energy utilization efficiency.

[0026] ‌Energy saving and environmental protection: Compared with traditional heating methods, electromagnetic heat conduction structure can significantly reduce energy consumption and operating costs, while reducing environmental pollution and meeting green environmental protection requirements.

[0027] ‌Fast heating: Because it can directly act on the material, the heating speed is fast, which can improve production efficiency and rapidly increase output. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 It is a three-dimensional structure schematic diagram of the milk frother of an embodiment of the present utility model.

[0029] Figure 2 It is a cross-sectional structure schematic diagram of the milk frother.

[0030] Figure 3 It is a cross-sectional structure schematic diagram of the milk frother liquid storage container provided with a support.

[0031] Figure 4 It is a result schematic diagram of the milk frother cover and the heating base provided with an electrically coupled connection part.

[0032] Figure 5 It is a structure schematic diagram of the electromagnetic heat conduction component supported on the support. DETAILED DESCRIPTION

[0033] The present utility model will be further described below in combination with the drawings and embodiments.

[0034] Reference Figures 1-5The utility model provides a kind of milk warmer with electromagnetic heating function, including heating base 1 and liquid storage container 2, electromagnetic heating component 3 is equipped on the heating base 1, electromagnetic heat conduction piece 4 is equipped in liquid storage container 2, and electromagnetic heating component 3 is started, and electromagnetic heat conduction piece 4 cooperates electromagnetic heating component 3 and heats liquid storage container 2.

[0035] The liquid storage container 2 is provided with a cover 5, which is provided with a connector 6 extending towards the bottom of the inner cavity of the liquid storage container 2. One end of the connector 6 is connected to the cover 5, and the other end of the connector 6 is connected to the electromagnetic heat conduction piece 4.

[0036] The cover 5 is detachably mounted on the liquid storage container 2.

[0037] In this embodiment, the cover 5 is fitted over the opening of the liquid storage container 2, and the cover 5 is provided with a connecting hole into which the connector 6 is inserted.

[0038] In this embodiment, the electromagnetic heating component 3 is an electromagnetic coil disc or an electromagnetic stove heating coil disc.

[0039] When the electromagnetic heating component 3 is started, an alternating magnetic field is generated, and the electromagnetic heat conduction piece 4 heats the inner cavity of the liquid storage container 2 under the action of the alternating magnetic field, with high heating efficiency, uniform heating, and high heat conversion rate.

[0040] The connector 6 is provided with a temperature sensor 7 for detecting the heating temperature of the liquid in the liquid storage container 2, and the temperature probe of the temperature sensor 7 is directed towards the inner side of the inner cavity of the liquid storage container 2.

[0041] Alternatively, the temperature sensor 7 is arranged on the side or bottom of the liquid storage container 2.

[0042] In this embodiment, the connector 6 is provided with a first mounting position for mounting the temperature sensor 7.

[0043] The connector 6 is provided with a water level sensor 8 for detecting the liquid level of the liquid storage container 2.

[0044] In this embodiment, the connector 6 is provided with a second mounting position for mounting the water level sensor 8, and when the water level sensor 8 detects that the liquid level of the liquid storage container 2 is below the low water level, the electromagnetic heating component 3 stops heating work.

[0045] Alternatively, the water level sensor 8 is arranged on the side of the liquid storage container 2.

[0046] In this embodiment, the temperature sensor 7 and the water level sensor 8 are integrally formed with the connector 6 through a two-shot injection molding process, which is specifically that the temperature sensor 7 and the water level sensor 8 are placed in the mold cavity of the mold for producing the connector 6, and then when the connector 6 is injection molded, the temperature sensor 7 and the water level sensor 8 can be simultaneously set as a whole with the connector 6.

[0047] Alternatively, the adapter 6 is provided with a fixing hole, and the temperature sensor 7 and the water level sensor 8 are fixed on the fixing hole of the adapter 6 in a threaded manner, and the fixing hole is provided with a sealing ring.

[0048] The cover body 5 is provided with a cover body circuit board 9, and the cover body circuit board 9 is provided with a cover body power supply module 10 for supplying power to the temperature sensor 7 and the water level sensor 8, and the cover body power supply module 10, the temperature sensor 7 and the water level sensor 8 are electrically connected with the cover body circuit board 9 respectively.

[0049] The cover body circuit board 9 is provided with a first wireless communication module, and the heating base 1 is provided with a main control circuit board 11, and the main control circuit board 11 is provided with a second wireless communication module, and the main control circuit board 11 and the cover body circuit board 9 are connected in wireless communication through cooperation of the first wireless communication module and the second wireless communication module.

[0050] In the embodiment, the first wireless communication module and the second wireless communication module are both Bluetooth modules or WiFi modules.

[0051] In the embodiment, the cover body 5 is provided with an electrical compartment for mounting the cover body circuit board 9.

[0052] Alternatively, the cover body 5 and the heating base 1 are provided with an electrical coupling connection part 12, and the temperature sensor 7 and the water level sensor 8 are respectively connected in wired electrical connection with the main control circuit board 11 of the heating base 1 through the electrical coupling connection part 12.

[0053] The heating base 1 is provided with a guide 13 on one side, and the guide 13 is provided with a conductive plug-in port at one end extending upward towards the cover body 5, and the cover body 5 is provided with a plug-in part 14 towards the conductive plug-in port, and the plug-in part 14 is provided with a conductive plug-in terminal forming the electrical coupling connection part 12 with the conductive plug-in port.

[0054] The adapter 6 is provided with a wire routing cavity 15 for inserting wires.

[0055] The other end of the adapter 6 and the inner bottom wall of the liquid storage container 2 are provided with a spacing, so that the electromagnetic heat conduction part 4 is suspended above the inner bottom wall of the liquid storage container 2.

[0056] Alternatively, the inner bottom wall of the liquid storage container 2 is provided with a support 16 for supporting the electromagnetic heat conduction part 4, and the electromagnetic heat conduction part 4 is away from the inner bottom wall of the liquid storage container 2 through the support 16, and the support 16 is protrudingly arranged on the inner bottom wall of the liquid storage container 2.

[0057] In the embodiment, the inner bottom wall of the liquid storage container 2 is provided with two support columns arranged at intervals to form the support 16, and a heating gap is formed between the two support columns.

[0058] The liquid on the bottom wall of the liquid storage container 2 can also be heated in the heating gap, increasing the heat conduction area of the electromagnetic heat conduction member 4, ensuring uniform heating, and preventing the bottom of the liquid storage container 2 from overheating.

[0059] The electromagnetic heat conduction member 4 is a food-grade metal, and the material of the electromagnetic heat conduction member 4 is 304 stainless steel or titanium.

[0060] A kettle with an electromagnetic heating function, which replaces the milk frother with the electromagnetic heating function described above. The kettle includes the heating base 1 and the liquid storage container 2 described above, and other parts not described are the same as the structure described above, which will not be described in detail here.

[0061] A health-care kettle with an electromagnetic heating function, which replaces the milk frother with the electromagnetic heating function described above. The health-care kettle includes the heating base 1 and the liquid storage container 2 described above, and other parts not described are the same as the structure described above, which will not be described in detail here.

[0062] The above is the preferred scheme of the present application, which shows and describes the basic principle, main features and advantages of the present application. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principle of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A formula warmer with electromagnetic heating function, comprising a heating base (1) and a liquid storage container (2), characterized in that: The heating base (1) is provided with an electromagnetic heating component (3), and the liquid storage container (2) is provided with an electromagnetic heat-conducting component (4) that cooperates with the electromagnetic heating component (3). When the electromagnetic heating component (3) is activated, the electromagnetic heat-conducting component (4) cooperates with the electromagnetic heating component (3) to heat the liquid storage container (2). The liquid storage container (2) is provided with a cover (5), and the cover (5) is provided with a connector (6) extending toward the bottom of the inner cavity of the liquid storage container (2). One end of the connector (6) is connected to the cover (5), and the other end of the connector (6) is connected to the electromagnetic heat-conducting component (4). The cover (5) is detachably installed on the liquid storage container (2); The connector (6) is equipped with a temperature sensor (7) for detecting the heating temperature of the liquid in the liquid storage container (2). The connector (6) is equipped with a water level sensor (8) for detecting the liquid level of the liquid storage container (2). The connector (6) has a wiring cavity (15) for inserting wires.

2. The formula maker with electromagnetic heating function according to claim 1, characterized in that: The temperature sensor (7) has its temperature probe facing the inner side of the liquid storage container (2); the connector (6) is equipped with a water level sensor (8), or the temperature sensor (7) is located on the side or bottom of the liquid storage container (2).

3. The formula maker with electromagnetic heating function according to claim 1, characterized in that: The cover (5) is provided with a cover circuit board (9), and the cover circuit board (9) is provided with a cover power supply module (10) for supplying power to the temperature sensor (7) and the water level sensor (8). The cover power supply module (10), the temperature sensor (7), and the water level sensor (8) are electrically connected to the cover circuit board (9) respectively. The cover circuit board (9) is provided with a first wireless communication module, the heating base (1) is provided with a main control circuit board (11), the main control circuit board (11) is provided with a second wireless communication module, and the main control circuit board (11) and the cover circuit board (9) are connected wirelessly through the cooperation of the first wireless communication module and the second wireless communication module. Alternatively, the cover (5) and the heating base (1) are provided with an electrical coupling connection part (12), and the temperature sensor (7) and the water level sensor (8) are respectively connected to the main control circuit board (11) of the heating base (1) via the electrical coupling connection part (12).

4. The formula maker with electromagnetic heating function according to claim 3, characterized in that: The heating base (1) has a guide (13) on one side. One end of the guide (13) extends upward toward the cover (5) and has a conductive plug-in port. The cover (5) has a plug (14) facing the conductive plug-in port. The plug (14) has a conductive plug-in terminal that forms an electrically coupled connection part (12) with the conductive plug-in port.

5. The formula maker with electromagnetic heating function according to claim 1, characterized in that: The other end of the connector (6) is provided with a gap between it and the bottom wall of the liquid storage container (2) so that the electromagnetic heat-conducting component (4) is suspended above the bottom wall of the liquid storage container (2); Alternatively, the bottom wall of the liquid storage container (2) is provided with a bracket (16) for supporting the electromagnetic heat-conducting component (4), and the electromagnetic heat-conducting component (4) is away from the bottom wall of the liquid storage container (2) through the bracket (16), and the bracket (16) protrudes from the bottom wall of the liquid storage container (2); The electromagnetic heat-conducting component (4) is made of food-grade metal, and the material of the electromagnetic heat-conducting component (4) is 304 stainless steel or titanium.

6. A kettle with electromagnetic heating function, characterized in that: The kettle replaces the milk warmer with electromagnetic heating function as described in any one of claims 1-5.

7. A health-preserving kettle with electromagnetic heating function, characterized in that: The health-preserving kettle replaces the milk warmer with electromagnetic heating function as described in any one of claims 1-5.

Citation Information

Patent Citations

  • Heating disc type milk mixing device

    CN219835522U