Flip cover heat dissipation multi-head induction cooker

By setting heat dissipation vents and channels on the induction cooker, combined with the design of a flip-top and a cooling fan, the problem of heat accumulation inside the induction cooker is solved, enabling automatic or manual heat dissipation and extending the lifespan of the induction cooker.

CN224551600UActive Publication Date: 2026-07-24FOSHAN LISAI ELECTRICAL TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FOSHAN LISAI ELECTRICAL TECHNOLOGY CO LTD
Filing Date
2025-06-13
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

If the heat cannot be dissipated in time during the heating process, the induction cooker will overheat internally, damage components, and shorten its service life.

Method used

A multi-head induction cooker with a flip-top heat dissipation design was created. By setting heat dissipation vents and channels on the panel, the heat dissipation vents can be opened or closed by moving or rotating the flip-top, and a cooling fan is provided to expel hot air. Combined with a temperature sensor and a temperature control system on the main control board, the heat dissipation mode can be manually or automatically activated.

Benefits of technology

It effectively reduces the internal temperature of the induction cooker and extends its service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a multi -head electromagnetic range of turning -over cover heat dissipation, its characterized in that including base, two and above's electromagnetic range heating pot structure, panel, heat dissipation passage and turning -over cover, the panel is established on the base, the electromagnetic range heating pot structure is established in the base and is located below the panel, and the space is left between adjacent electromagnetic range heating pot structure, is equipped with the heat dissipation mouth on the panel, the heat dissipation passage is equipped in the space, and more than one air vent is equipped with in the side of heat dissipation passage adjacent electromagnetic range heating pot structure, and the hot gas of electromagnetic range heating pot structure enters the air vent and is discharged to the heat dissipation mouth through the heat dissipation passage, the turning -over cover is established on the panel and is located at the heat dissipation mouth, and the turning -over cover is movable or rotates, and the turning -over cover moves or rotates to open or close the heat dissipation mouth. Its advantage is when the electromagnetic range inside overheats, and the electromagnetic range can open the heat dissipation mode manually, reduces the temperature in the electromagnetic range inside, prolongs the service life of electromagnetic range.
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Description

Technical Field

[0001] This utility model relates to a multi-burner induction cooker with a flip-top heat dissipation design. Background Technology

[0002] Currently, induction cookers are widely used in households. However, the following problems may arise during their use: During the heating process, the heating element of the induction cooker generates heat. If this heat cannot be dissipated in time after prolonged use, it can lead to overheating inside the induction cooker, causing damage to components and reducing its lifespan. Summary of the Invention

[0003] The purpose of this invention is to overcome the shortcomings of the prior art and provide a multi-head induction cooker with a flip-top heat dissipation function. When the inside of the induction cooker is overheated, the heat dissipation mode can be manually activated to reduce the internal temperature and extend the service life of the induction cooker.

[0004] To achieve the above objectives, this utility model is implemented as follows: it is a flip-top heat dissipation multi-head induction cooker, including a base, two or more induction cooker heating element structures and a panel; the panel is disposed on the base, the induction cooker heating element structures are disposed inside the base below the panel, and there is space between adjacent induction cooker heating element structures; heat dissipation vents are provided on the panel. Heat dissipation channel; the heat dissipation channel is located in the space, and one or more vents are provided on the side of the heating element structure of the induction cooker adjacent to the heat dissipation channel. The hot air of the heating element structure of the induction cooker enters the vent and is discharged to the heat dissipation vent through the heat dissipation channel. A flip cover; the flip cover is located on the panel and at the heat dissipation vent, and the flip cover can be moved or rotated to open or close the heat dissipation vent.

[0005] This technical solution also includes a cooling fan, which is located in the heat dissipation channel to exhaust hot air from the heat dissipation port.

[0006] In this technical solution, a receiving space is provided inside the panel, and the flip cover is provided on the panel and can be moved to the receiving space to open or close the heat dissipation vent.

[0007] In this technical solution, a push handle is provided on the flip cover.

[0008] In this technical solution, an oil-proof mesh is also provided at the heat dissipation vent, and the oil-proof mesh is located at the bottom of the flip cover.

[0009] In this technical solution, a pivot is provided on the flip cover, and the pivot rotates in conjunction with the panel, thereby opening or closing the heat dissipation vent by rotating the flip cover.

[0010] The advantages of this invention compared to the prior art are: when the inside of the induction cooker is overheated, the induction cooker can be manually turned on in the heat dissipation mode to reduce the internal temperature of the induction cooker and extend its service life. Attached Figure Description

[0011] Figure 1 This is a perspective view of the present invention; Figure 2 This is a reference diagram showing the usage state of Embodiment 1 of this utility model; Figure 3 yes Figure 2 A magnified view of part A; Figure 4 This is a top view of Embodiment 1 of this utility model; Figure 5 yes Figure 4 AA section view; Figure 6 yes Figure 5 A magnified view of part B; Figure 7 yes Figure 1 Remove the 3D image from the panel; Figure 8 This is a reference diagram showing the usage state of Embodiment 2 of this utility model; Figure 9 This is a top view of Embodiment 2 of this utility model; Figure 10 yes Figure 9 BB cross-sectional view; Figure 11 yes Figure 10 A magnified view of a portion of C. Detailed Implementation

[0012] The specific embodiments of this utility model will be further described below with reference to the accompanying drawings. It should be noted that these descriptions are for the purpose of aiding understanding of this utility model, but do not constitute a limitation thereof. Furthermore, the technical features involved in the various embodiments of this utility model described below can be combined with each other as long as they do not conflict with each other.

[0013] In the description of this utility model, the terms "upper" and "lower" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and do not require that this utility model must be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting this utility model.

[0014] In this utility model, unless otherwise explicitly specified and limited, the term "set" and other terms should be interpreted broadly. For example, it can refer to a fixed connection, a detachable connection, or a detachable arrangement or an integral part; it can refer to a mechanical connection, a direct connection, or an indirect connection through an intermediate medium; it can refer to the internal communication of two components or the interaction relationship between two components. For those skilled in the art, the specific meaning of the above terms in this utility model can be understood according to the specific circumstances. Example

[0015] like Figures 1 to 6 As shown, it is a flip-top heat dissipation multi-head induction cooker, consisting of a base 1, two or more induction cooker heating element structures 5, and a panel 2; the panel 2 is located on the base 1, the induction cooker heating element structures 5 are located inside the base 1 below the panel 2, and there is space between adjacent induction cooker heating element structures 5; heat dissipation vents are provided on the panel 2. Heat dissipation channel 7; The heat dissipation channel 7 is located in the space, and one or more vents 71 are provided on the side of the induction cooker heating element structure 5 adjacent to the heat dissipation channel 7. The hot air of the induction cooker heating element structure 5 enters the vents 71 and is discharged to the heat dissipation outlet through the heat dissipation channel 7. Flip cover 4; the flip cover 4 is provided on the panel 2 and located at the heat dissipation vent. The flip cover 4 rotates to open or close the heat dissipation vent.

[0016] When the induction cooker is in operation, during manual operation, simply flip open the lid 4. The lighter hot air will rise and be expelled through the heat dissipation channel 7 to the heat dissipation vent. When the temperature sensor inside the induction cooker detects that the internal temperature is too high, the temperature sensor will transmit a signal to the main control board. The main control board will then activate the cooling fan 6 and issue an alarm, which can notify the user to manually open the lid 4 to dissipate heat, reduce the internal temperature of the induction cooker, and extend the service life of the induction cooker.

[0017] In this embodiment, a cooling fan 6 is also included, which is located in the heat dissipation channel 7 to exhaust hot air from the heat dissipation port.

[0018] The induction cooker overheats, causing the drive device 3 to rotate the flip cover 4, and the cooling fan 6 to start, thus reducing the internal temperature of the induction cooker.

[0019] In this embodiment, a pivot 42 is provided on the flip cover 4. The pivot 42 is rotatably engaged with the panel 2, and the flip cover rotates to open or close the heat dissipation vent. Example

[0020] like Figures 6 to 10As shown, it is a flip-top heat dissipation multi-head induction cooker, including a base 1, two or more induction cooker heating element structures 5 and a panel 2; the panel 2 is located on the base 1, the induction cooker heating element structure 5 is located inside the base 1 below the panel 2, and there is space between adjacent induction cooker heating element structures 5. Heat dissipation vents are provided on the panel 2. Heat dissipation channel 7 and heat dissipation fan 6; the heat dissipation channel 7 is provided in the space, and one or more vents 71 are provided on the side of the induction cooker heating element structure 5 adjacent to the heat dissipation channel 7. The heat dissipation fan 6 is provided in the vents 71 to discharge the hot air of the induction cooker heating element structure 5 to the heat dissipation port through the vents 71. Flip cover 4; the flip cover 4 is provided on the panel 2 and located at the heat dissipation vent. The flip cover is movable, and the flip cover 4 can be moved to open or close the heat dissipation vent.

[0021] When the induction cooker is in operation, during manual operation, simply move the flip cover 4 open. The hot air, being lighter, will rise and be expelled through the heat dissipation channel 7 to the heat dissipation vent. When the temperature sensor inside the induction cooker detects that the internal temperature is too high, the temperature sensor will transmit a signal to the main control board. The main control board will then activate the cooling fan 6 and issue an alarm, notifying the user to manually open the flip cover 4 to dissipate heat, reduce the internal temperature of the induction cooker, and extend the service life of the induction cooker.

[0022] In this embodiment, a cooling fan 6 is also included, which is located in the heat dissipation channel 7 to exhaust hot air from the heat dissipation port.

[0023] In this embodiment, a receiving space 21 is provided in the panel 2, and the flip cover 4 is provided on the panel 2 and can be moved to the receiving space 21 to open or close the heat dissipation vent.

[0024] In this embodiment, a push handle 41 is provided on the flip cover 4 to facilitate manual opening of the flip cover 4.

[0025] In this embodiment, an oil-proof mesh is also provided at the heat dissipation vent, and the oil-proof mesh is located at the bottom of the flip cover 4. This prevents oil or food residue from entering the induction cooker after the flip cover 4 is opened.

[0026] The embodiments of this utility model have been described in detail above with reference to the accompanying drawings, but this utility model is not limited to the described embodiments. For those skilled in the art, various changes, modifications, substitutions, and variations of these embodiments without departing from the principles and spirit of this utility model still fall within the protection scope of this utility model.

Claims

1. A multi-burner induction cooker with a flip-top heat dissipation design, characterized in that... include The base (1), two or more induction cooker heating element structures (5) and panel (2); the panel (2) is located on the base (1), the induction cooker heating element structure (5) is located inside the base (1) below the panel (2), there is space between adjacent induction cooker heating element structures (5), and heat dissipation vents are provided on the panel (2). Heat dissipation channel (7); The heat dissipation channel (7) is located in the space, and one or more vents (71) are provided on the side of the induction cooker heating chamber structure (5) adjacent to the heat dissipation channel (7). The hot air of the induction cooker heating chamber structure (5) enters the vent (71) and is discharged to the heat dissipation port through the heat dissipation channel (7). Flip cover (4); the flip cover (4) is located on the panel (2) and at the heat dissipation vent. The flip cover can be moved or rotated, thereby opening or closing the heat dissipation vent.

2. The multi-burner induction cooker with flip-top heat dissipation according to claim 1, characterized in that... It also includes a cooling fan (6), which is located in the heat dissipation channel (7) to exhaust hot air from the heat dissipation port.

3. The multi-burner induction cooker with flip-top heat dissipation according to claim 1, characterized in that... The panel (2) has a receiving space (21), and the flip cover (4) is located on the panel (2) and can be moved to the receiving space (21) to open or close the heat dissipation vent.

4. The multi-burner induction cooker with flip-top heat dissipation according to claim 1, characterized in that... A push handle (41) is provided on the flip cover (4).

5. The multi-burner induction cooker with flip-top heat dissipation according to claim 4, characterized in that... An oil-proof mesh is also provided at the heat dissipation vent, and the oil-proof mesh is located at the bottom of the flip cover (4).

6. The multi-burner induction cooker with flip-top heat dissipation according to claim 1, characterized in that... A pivot (42) is provided on the flip cover (4), and the pivot (42) is rotatably engaged with the panel (2). The flip cover rotates to open or close the heat dissipation vent.