Gas cooker

By setting heat dissipation slots and a linked stove emitter on the side wall of the gas stove bottom shell, the problem of heat dissipation in the gas stove is solved, achieving effective heat dissipation, extending service life and improving safety.

CN223564267UActive Publication Date: 2025-11-18SHENGZHOU KEON ELECTRICAL APPLIANCE
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Patent Information

Application Number
CN202423254051.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-11-18
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

Gas stoves do not dissipate heat easily during use, leading to excessive internal temperature rise, accelerated component aging, shortened lifespan, and safety hazards.

Method used

Heat dissipation slots are set on the side wall of the bottom shell of the gas stove to increase the heat dissipation area, and the stove emitter is linked with the range hood to optimize heat dissipation performance.

Benefits of technology

It effectively dissipates heat, reduces internal temperature, minimizes component aging, extends service life, improves safety, simplifies the cooking process, and increases cooking efficiency.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223564267U_ABST
    Figure CN223564267U_ABST
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Abstract

The utility model discloses a gas cooker which comprises a bottom shell, a cooker panel and a cooking range, the cooker panel is arranged on the bottom shell, a mounting cavity is arranged in the bottom shell, a heat dissipation slotted hole is arranged on the side wall of the bottom shell, and the heat dissipation slotted hole is communicated with the mounting cavity. The gas stove is reasonable in design and high in practicability, the heat dissipation groove holes are formed in the side wall of the bottom shell, so that heat generated in the mounting cavity can be effectively dissipated through the heat dissipation groove holes, the internal temperature is reduced, aging and damage of parts caused by high temperature are reduced, the service life of the gas stove is prolonged, and the service life of the gas stove is prolonged. And by optimizing the heat dissipation performance of the gas stove, potential safety hazards caused by high temperature in the using process of the gas stove can be reduced, and the using safety of equipment is improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of the range, specifically relates to a gas range. BACKGROUND

[0002] The gas range is a kind of kitchen utensil using natural gas or liquefied gas as fuel, its function is to provide flame and heat, for cooking, heating food etc.Gas range is usually installed with range hood on top, for the oil fume generated in the cooking process is discharged to public flue or outdoor.Gas range will appear the problem that the combustion heat in bottom shell is not easy to dissipate in the use process, to cause internal temperature to be too high, accelerate internal component aging, shorten service life, and the heat not dissipating accumulation can also cause security risks. CONTENT OF UTILITY MODEL

[0003] The utility model aims at solving the above-mentioned technical problems existing in prior art, provide a kind of gas range, design is reasonable, practicality is strong, it is set on the side wall of bottom shell with heat dissipation groove hole, so that the heat generated in installation cavity can be effectively dissipated, reduce internal temperature, reduce the component aging and damage caused by high temperature, to prolong the service life of gas range, and by optimizing the heat dissipation performance of gas range, can reduce the security risks caused by high temperature in the use of gas range, improve equipment use safety.

[0004] To solve the above technical problems, the utility model adopts the following technical scheme:

[0005] A kind of gas range, including bottom shell, range panel and burner, range panel is located on bottom shell, installation cavity is arranged in bottom shell, heat dissipation groove hole is set on the side wall of bottom shell, and heat dissipation groove hole is communicated with installation cavity.

[0006] Further, the bottom surface of the bottom shell is provided with a support leg, and the support leg has a cylindrical structure with a large upper part and a small lower part.

[0007] Further, the bottom surface of the bottom shell is outwardly convex to form a positioning boss, the positioning boss is provided with a positioning hole one, the support leg is attached to the positioning boss, the support leg is provided with a positioning hole two penetrating through the inside, and the bottom of the support leg is provided with a cavity slot communicated with the positioning hole two.

[0008] Further, a recessed cavity is formed in the installation cavity corresponding to the positioning boss, and a protruding column is arranged at the center of the recessed cavity.

[0009] Further, the top surface of the bottom shell is provided with an extension part at the outer edge, and the extension part is supported and shielded at the bottom surface of the range panel.

[0010] Further, the connection between the extension part and the bottom shell is connected by a circular arc segment.

[0011] Further, the outer edge of the extension part is upwardly bent to form a bent flange, and the bent flange is in contact with the top surface of the extension part.

[0012] Further, the corners of the bottom shell, the corners of the cooktop panel and the corners of the extension part are all provided with arc chamfers.

[0013] Further, the four side walls of the bottom shell are all provided with heat dissipation groove holes, and the heat dissipation groove holes are in a strip shape.

[0014] Further, the installation cavity is provided with a linkage cooktop transmitter, and the gas stove sends signals to the control module of the range hood through the linkage cooktop transmitter, so as to realize the linkage between the range hood and the gas stove.

[0015] The utility model has the following beneficial effects due to the adoption of the above technical scheme:

[0016] The utility model discloses reasonable, practical, is provided with heat dissipation groove hole on the side wall of bottom shell, and the heat generated in the installation cavity can be effectively dissipated through the heat dissipation groove hole, reduces the internal temperature, reduces the component aging and damage caused by high temperature, thereby prolongs the service life of gas stove, and through optimizing the heat dissipation performance of gas stove, can reduce the security hidden danger caused by high temperature in the use of gas stove, improves equipment use safety. DRAWINGS

[0017] The utility model will be further described below in combination with the drawings:

[0018] Figure 1 It is the structure schematic diagram of a kind of gas stove of the utility model;

[0019] Figure 2 It is the back structure schematic diagram of Figure 1 ;

[0020] Figure 3 It is the bottom structure schematic diagram of Figure 1 ;

[0021] Figure 4 It is the position layout structure schematic diagram of linkage cooktop transmitter in installation cavity in the utility model;

[0022] Figure 5 It is the structure schematic diagram of bottom shell in the utility model;

[0023] Figure 6 It is the bottom structure schematic diagram of Figure 5 ;

[0024] Figure 7 It is the structure schematic diagram of support leg in the utility model;

[0025] Figure 8 is a bottom structure schematic view of the utility model; Figure 7

[0026] Figure 9 is a internal section structure schematic view of the support leg in the utility model;

[0027] Figure 10 is a position layout structure schematic view of the nozzle in the utility model.

[0028] In the figure, 1 - bottom shell;2 - stove panel;3 - stove head;4 - pot support;5 - installation cavity;6 - heat dissipation groove hole;7 - support leg;8 - positioning boss;9 - positioning hole one;10 - positioning hole two;11 - recessed cavity;12 - protruding column;13 - extension;14 - circular arc chamfer;15 - bending flanging;16 - circular arc segment;17 - linkage stove emitter;18 - cavity groove;19 - positioning sheet;20 - nozzle. DETAILED DESCRIPTION

[0029] As Figures 1 to 10 shown, it is a gas stove of the utility model, including bottom shell 1, stove panel 2 and stove head 3, stove panel 2 is located on bottom shell 1, and stove head 3 is provided with pot support 4.The gas stove of the present application is an updraft stove, and the nozzle 20 in the stove head 3 is arranged above the stove panel 2, and all the oxygen required for combustion is taken from above the stove panel 2, so that the cabinet can be completely sealed, and it is also convenient for subsequent dredging and cleaning of the nozzle 20, and the nozzle is preferably designed as three, two are outer ring nozzles, and one is a center nozzle, and has a smoke stove linkage function, the heat load of the stove is large (5.2kW rated), and the thermal efficiency reaches more than 66%, so that the equipment can heat food faster, shorten the cooking time and improve the cooking efficiency.

[0030] The bottom shell 1 is provided with an installation cavity 5, and the side wall of the bottom shell 1 is provided with a heat dissipation groove hole 6, the heat dissipation groove hole 6 is communicated with the installation cavity 5, and the four side walls of the bottom shell 1 are provided with heat dissipation groove holes 6, and the four side walls are provided with uniformly distributed heat dissipation groove holes 6, which can significantly increase the heat dissipation area of the bottom shell 1, improve the heat dissipation efficiency of heat, and ensure the stability of the operation of the stove, and the heat dissipation groove hole 6 is in the shape of a long strip, and the design of the long strip can effectively ensure the heat dissipation area, promote the transmission and emission of heat.

[0031] ​The bottom surface of the bottom shell 1 is provided with support legs 7, which are uniformly distributed on the four corners of the bottom shell 1, ensuring the stability and balance of the device. The design of the support legs 7 can raise the height of the bottom shell 1, which is beneficial to the ventilation and heat dissipation of the bottom of the bottom shell 1, ensures the heat dissipation performance of the device, and makes the bottom surface of the bottom shell 1 and the placement surface have a certain distance, which can avoid the damage caused by the water on the placement surface to the device. The support legs 7 are in a cylindrical structure with a large upper part and a small lower part. The larger diameter of the upper part of the support legs 7 enables the support legs 7 to withstand greater vertical pressure, enhancing the weighing capacity and structural stability.

[0032] The bottom surface of the bottom shell 1 is provided with a positioning boss 8, which is outwardly convex. A positioning hole one 9 is arranged on the positioning boss 8. The support legs 7 are supported and attached to the positioning boss 8. A positioning hole two 10 is arranged in the support legs 7. A cavity groove 18 is arranged at the bottom of the support legs 7 and communicates with the positioning hole two 10. The positioning hole one 9 and the positioning hole two 10 correspond and match, and cooperate with the bolt assembly to install and fix the support legs 7. The design of the positioning boss 8 can ensure the flatness of the installation of the support legs 7 on the bottom surface of the bottom shell 1, provide a clear installation reference for the support legs 7, and facilitate the installation and positioning of the support legs 7 on the bottom shell 1. Through the cooperation of the positioning boss 8 and the positioning hole, the precise positioning of the support legs 7 can be realized, making the installation of the support legs 7 more convenient and fast. Only by aligning the positioning boss 8 and inserting the bolt assembly can the installation of the support legs 7 be completed. The design of the cavity groove 18 on the support legs 7 can cooperate with the positioning hole two 10, making the installation and disassembly of the bolt assembly more simple and convenient.

[0033] A recessed cavity 11 is formed in the installation cavity 5 corresponding to the positioning boss 8. A protruding column 12 is arranged at the center of the recessed cavity 11. The positioning hole one 9 penetrates the protruding column 12. The design is ingenious. The protruding column 12 can enhance the structural stability. The design that the positioning hole one 9 penetrates the protruding column 12 enables the bolt assembly to be embedded deeper into the bottom shell 1 when installed, increasing the contact area between the bolt assembly and the bottom shell 1, thereby improving the connection strength and stability.

[0034] An extension 13 is arranged at the outer edge of the top surface of the bottom shell 1. The extension 13 supports and shields the bottom surface of the cooktop panel 2. The extension 13 and the bottom shell 1 are integrally formed, enhancing the overall structural strength and facilitating actual processing and molding. The extension 13 can increase the contact area between the cooktop panel 2 and the bottom shell 1, improving the structural stability and reliability of the entire device. The extension 13 completely shields the bottom surface of the cooktop panel 2, ensuring the overall aesthetics of the cooktop. The connection between the extension 13 and the bottom shell 1 adopts a circular arc segment 16 for transition connection. The design of the circular arc segment 16 can disperse the stress at the connection, making the connection between the extension 13 and the bottom shell 1 more firm and stable, improving the overall structural strength of the cooktop, and the lines connected by the circular arc segment 16 are smooth and natural, which can improve the aesthetics of the product.

[0035] The outer edge of the extension part 13 is bent upwards to form a bent flange 15 which is in contact with the top surface of the extension part 13. The design of the bent flange 15 can enhance the structural strength of the outer edge of the extension part 13, so that the structure is not easy to deform, and the bent flange 15 is attached to the top surface of the extension part 13 after being turned over as a whole, which can flatten the burrs and facilitate the movement and transportation of the cooker.

[0036] The corners of the bottom shell 1, the corners of the cooker panel 2 and the corners of the extension part 13 are all provided with arc chamfers 14. The design of the arc chamfer 14 can reduce the safety risks such as scratching and collision caused by sharp corners, increase the safety of the cooker in use, and the arc chamfer 14 can also disperse the stress at the corners and prolong the service life of the cooker. In addition, the line of the arc chamfer 14 is soft and smooth, which can improve the appearance quality of the product, make the appearance of the cooker more beautiful, and improve the user experience.

[0037] The installation cavity 5 is provided with a hood-cooker linkage transmitter 17, and the hood-cooker linkage receiver is arranged in the extractor hood. The gas cooker sends signals to the hood-cooker linkage receiver through the hood-cooker linkage transmitter 17, so as to realize the linkage between the extractor hood and the gas cooker. When the hood-cooker linkage transmitter 17 works, it emits 2.4G electromagnetic waves to the corresponding hood-cooker linkage receiver in the extractor hood, so that when the cooker is turned on, the extractor hood will receive the signal and automatically turn on the extractor hood immediately. On the contrary, when the cooker is turned off, the extractor hood will receive the signal and automatically turn off the extractor hood after a delay of 3 minutes. Through the intelligent linkage design of the gas cooker and the extractor hood, the extractor hood can be automatically started when the gas cooker is turned on, which simplifies the cooking process and improves the cooking efficiency. In addition, the hood-cooker linkage also has a delay function, so that after the gas cooker is turned off, the extractor hood can still run for a period of time to completely remove the residual oil fume and waste gas in the kitchen. The hood-cooker linkage transmitter 17 is provided with a positioning piece 19, and the positioning piece 19 is provided with a positioning hole, so as to fix the hood-cooker linkage transmitter 17 in the installation cavity 5.

[0038] The utility model discloses a hood is in the matching mode, and waits for the data transmission of smoke range linkage launcher 17 and matches, when the gas stove opens, and smoke range linkage launcher 17 linkage data (usually 2.4G electromagnetic wave) are given the smoke range linkage receiver of hood, and the signal reception of hood is successful, and the address information of gas stove module is saved to hood, and after matching is completed, and the stable wireless connection of hood and gas stove is established, realizes linkage function, under the linkage state, every certain time, smoke range linkage launcher 17 will send data once and communicates, lets the hood keep in the working condition, if not received the data sent by gas stove in 1 minute, then the hood enters the delay state. When the knob of gas stove resets (namely when the gas stove closes), and the knob of gas stove will detect whether reset, if resets, and the gas stove will send corresponding data to the hood, and let the hood enter the delay mode, and when the hood delay reaches 3 minutes, will close the hood.

[0039] The above is only the specific embodiment of the utility model, but the technical features of the utility model do not limit to this. Any simple change, equivalent replacement or modification, etc. for solving the basically same technical problem and realizing the basically same technical effect based on the utility model, all covers in the protection scope of the utility model.

Claims

1. A gas stove, comprising: The stove includes a bottom shell, a cooktop panel, and a cooktop, with the cooktop panel located on the bottom shell. Its features are: The bottom shell has an installation cavity, and the side wall of the bottom shell has heat dissipation slots that communicate with the installation cavity.

2. A gas stove according to claim 1, characterized in that: The bottom surface of the bottom shell is provided with support legs, which are cylindrical in shape, wider at the top and narrower at the bottom.

3. A gas stove according to claim 2, characterized in that: The bottom surface of the bottom shell protrudes outward to form a positioning boss. A positioning hole one is provided on the positioning boss. The support leg is supported and attached to the positioning boss. A positioning hole two is provided through the support leg. A cavity groove communicating with the positioning hole two is provided at the bottom of the support leg. The positioning hole one and the positioning hole two correspond and match, and the support leg is installed and fixed with bolt assembly.

4. A gas stove according to claim 3, characterized in that: A recessed cavity is formed in the mounting cavity corresponding to the positioning boss, and a protruding post is provided at the center of the recessed cavity. The positioning hole passes through the protruding post.

5. A gas stove according to claim 1, characterized in that: An extension is provided at the outer edge of the top surface of the bottom shell, and the extension supports and covers the bottom surface of the cooktop panel.

6. A gas stove according to claim 5, characterized in that: The connection between the extension and the bottom shell is made by a rounded transition.

7. A gas stove according to claim 5, characterized in that: The outer edge of the extension is bent upward to form a bent flange, and the bent flange is in contact with the top surface of the extension.

8. A gas stove according to claim 5, characterized in that: The corners of the bottom shell, the stove panel, and the extension are all provided with rounded chamfers.

9. A gas stove according to claim 1, characterized in that: The heat dissipation slots are provided on all four side walls of the bottom shell, and the heat dissipation slots are elongated.

10. A gas stove according to claim 1, characterized in that: The installation cavity is equipped with a range hood and stove linkage transmitter, and the range hood is equipped with a range hood and stove linkage receiver. The gas stove sends a signal to the range hood and stove linkage receiver through the range hood and stove linkage transmitter to realize the linkage between the range hood and the gas stove.