Integrated energy gathering ring and stove

Through the integrated design of the foot and energy-concentrating ring plate, the existing energy-concentrating ring production cost and low assembly efficiency are solved, and more efficient production and better appearance integrity are achieved, while improving anti-slip performance and heat accumulation effect.

CN223178886UActive Publication Date: 2025-08-01GUANGDONG HEYUNG ELECTRIC CO LTD
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Patent Information

Application Number
CN202422452992.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-10
Publication Date
2025-08-01
Estimated Expiration
2034-10-10

AI Technical Summary

Technical Problem

The separation design of the existing energy-concentrating ring and the energy-concentrating ring plate leads to high production costs, low assembly efficiency and poor appearance integrity.

Method used

The bottom foot and the lower energy-concentrating ring plate are integrated into the design, and a removable anti-slip pad is connected to the bottom of the foot. The bottom foot is a multi-sided cone or cone meter structure with wide upper and narrow upper bottom. A heat insulation cavity is formed between the energy-concentrating ring plates. It is connected by folding edges and a plug-in hole is set on the bottom foot to cooperate with the pot support foot.

Benefits of technology

Reduce the number of parts assembled, reduce production costs, improve assembly efficiency, improve the integrity and appearance quality of the energy-concentrating ring, and enhance the anti-slip performance and heat accumulation effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The integrated energy-gathering ring comprises an energy-gathering ring body and a plurality of pot supporting legs, the pot supporting legs are connected to the upper side of the energy-gathering ring body at equal intervals in the circumferential direction, the energy-gathering ring body comprises an upper energy-gathering ring plate and a lower energy-gathering ring plate, the inner edge and the outer edge of the upper energy-gathering ring plate are connected, and a plurality of bottom legs are evenly distributed on the lower side of the lower energy-gathering ring plate in the circumferential direction. The bottom feet and the lower energy gathering ring plate are integrally formed through stamping. According to the integrated energy-gathering ring, the bottom feet and the lower energy-gathering ring plate can be integrally formed, the assembly number of parts can be reduced, the production cost is reduced, meanwhile, the production and assembly efficiency can be improved, in addition, the integrality of the energy-gathering ring and the bottom feet is better, and the appearance of the energy-gathering ring is improved.
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Description

Technical Field

[0001] The utility model relates to the field of cookers, in particular to an integrated energy-gathering ring and a cooker. Background Art

[0002] Gas cookers are important kitchen utensils in people's daily life. With the improvement of people's living standards, higher and higher requirements are put forward for the performance of gas cookers. In the prior art, some pot supports are provided with energy-gathering rings, and the energy-gathering rings have the functions of gathering energy and preventing heat dissipation. At present, the structure of the energy-gathering ring is as shown in a pot support with an energy-gathering ring and an integrated stove in Chinese patent document with the application number:

[0003] CN202011583725.X. As disclosed in paragraph 0060 of the specification, the energy-gathering ring further includes a bottom foot, a plurality of convex platforms are provided on the lower energy-gathering ring plate, a first positioning member is provided on the convex platform, the bottom foot is detachably connected to the convex platform, and a second positioning member for cooperating with the first positioning member is provided on the bottom foot. The bottom foot of this structure is connected to the energy-gathering ring in a detachable manner, resulting in a poor overall appearance of the pot support, and the independently produced bottom foot increases the production cost and reduces the production and assembly efficiency. Therefore, the energy-gathering ring of the prior art needs to be further improved. Summary of the Utility Model

[0004] The purpose of the utility model is to solve the above existing problems, and provide an integrated energy-gathering ring and a cooker with simple and reasonable structures, and its function is to enable the bottom foot to be integrally formed with the lower energy-gathering ring plate, which can reduce the number of parts to be assembled.

[0005] The integrated energy-gathering ring includes an energy-gathering ring and a plurality of pot feet. The plurality of pot feet are circumferentially and equally spaced and connected to the upper side of the energy-gathering ring. The energy-gathering ring includes an upper energy-gathering ring plate and a lower energy-gathering ring plate with their inner and outer edges connected. A plurality of bottom feet are circumferentially and evenly distributed on the lower side of the lower energy-gathering ring plate, and the plurality of bottom feet are integrally formed with the lower energy-gathering ring plate by stamping.

[0006] The utility model can also adopt the following technical measures to solve:

[0007] As a more specific solution, a detachable anti-slip pad is connected to the bottom surface of the bottom foot.

[0008] As a further solution, a drain hole is opened on the bottom surface of the bottom foot, and a drain avoidance hole corresponding to the drain hole is opened on the anti-slip pad.

[0009] As a further solution, the bottom foot is a multi-sided frustum structure or a conical frustum structure with a wider upper part and a narrower lower part.

[0010] As a further solution, the cross section of the upper energy focusing ring plate is an inclined straight line, and the cross section of the lower energy focusing ring plate is a curve. The lower energy focusing ring plate is connected to the upper energy focusing ring plate, and a heat insulation cavity is formed therebetween.

[0011] As a further solution, the outer edge and inner edge of the upper energy focusing ring plate are respectively bent with an outer edge fold and an inner edge fold, and the upper energy focusing ring plate and the lower energy focusing ring plate are connected by folding the outer edge fold to the outer edge of the lower energy focusing ring plate and folding the inner edge fold to the inner edge of the lower energy focusing ring plate.

[0012] As a further solution, two plug-in square holes are provided on the upper energy-gathering ring plate corresponding to each pot support leg. The two plug-in square holes are one long and one short and are arranged radially. The bottom of the pot support leg is provided with long pins and short pins corresponding to the two plug-in square holes respectively. The pot support leg is respectively plugged into the two plug-in square holes through the long pins and the short pins to realize assembly connection with the upper energy-gathering ring plate.

[0013] As a further solution, a positioning groove matching the shape of the anti-slip pad is concavely provided on the bottom surface of the base foot, and the anti-slip pad is placed in the positioning groove.

[0014] As a further solution, a plurality of undercut holes are provided on the bottom of the base foot, and the anti-slip pad is integrally connected with elastic undercut columns corresponding to the plurality of undercut holes and buckled on the upper side of the undercut holes.

[0015] A stove comprises a stove body, on which the above-mentioned integrated energy-gathering ring can be detachably mounted.

[0016] The utility model discloses an integrated energy-gathering ring and a stove. This integrated energy-gathering ring enables the base to be integrally formed with the lower energy-gathering ring plate, which can reduce the number of parts to be assembled, reduce production costs, and improve production and assembly efficiency. In addition, the integrity of the energy-gathering ring and the base is better, thereby improving the appearance of the energy-gathering ring. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a structural diagram of Example 1 of the present utility model.

[0018] Figure 2 It is a schematic diagram of the cross-sectional structure of the present utility model.

[0019] Figure 3 This is a schematic diagram of the connection structure of the middle pot support legs of the utility model.

[0020] Figure 4 It is a schematic diagram of the decomposition structure of the utility model.

[0021] Figure 5 This is a schematic diagram of the anti-slip pad connection structure in the utility model.

[0022] Figure 6This is a schematic diagram of the structure of the second embodiment in the present utility model.

[0023] Figure 7 This is a schematic diagram of the structure of the stove in the present utility model. Specific embodiments

[0024] The present utility model will be further described below in conjunction with the drawings and embodiments. Embodiment 1:

[0025] As Figures 1 to 5 shown, the integrated energy-gathering ring includes an energy-gathering ring 1 and several pot feet 2. The several pot feet 2 are connected to the upper side of the energy-gathering ring 1 at equal intervals in the circumferential direction. The energy-gathering ring 1 includes an upper energy-gathering ring plate 3 and a lower energy-gathering ring plate 4 with connected inner and outer edges. A plurality of bottom feet 5 are circumferentially and evenly distributed on the lower side of the lower energy-gathering ring plate 4. The plurality of bottom feet 5 are integrally formed with the lower energy-gathering ring plate 4 by stamping.

[0026] This integrated energy-gathering ring enables the bottom feet 5 to be integrally formed with the lower energy-gathering ring plate 4, which can reduce the number of parts to be assembled, lower the production cost, and improve the production and assembly efficiency. In addition, it makes the integrity of the energy-gathering ring and the bottom feet better and improves the appearance of the energy-gathering ring.

[0027] A detachable anti-slip pad 6 is connected to the bottom surface of the bottom foot 5; it plays an anti-slip role when the energy-gathering ring is in use. The anti-slip pad 6 is integrally formed of silicone material, or the bottom surface of the anti-slip pad 6 is provided with an anti-slip pattern structure to play an anti-slip role.

[0028] The bottom foot 5 is a multi-sided frustum structure or a conical frustum structure with a wider upper part and a narrower lower part; the bottom foot 5 of this shape has better support.

[0029] The cross-section of the upper energy-gathering ring plate 3 is an inclined straight line shape, and the cross-section of the lower energy-gathering ring plate 4 is a curved line shape. The lower energy-gathering ring plate 4 is connected to the upper energy-gathering ring plate 3, and a heat insulation cavity 7 is formed between the two; the heat insulation cavity 7 can reduce the outward radiation of the heat of the burner head and improve the energy-gathering effect.

[0030] An outer edge fold 31 and an inner edge fold 32 are respectively bent on the outer edge and the inner edge of the upper energy-gathering ring plate 3. By folding the outer edge fold 31 on the outer edge of the lower energy-gathering ring plate 4 and the inner edge fold 32 on the inner edge of the lower energy-gathering ring plate 4, the upper energy-gathering ring plate 3 and the lower energy-gathering ring plate 4 are connected; the structure is simple and convenient for installation and production. After stamping and bending the outer edge fold 31 and the inner edge fold 32, the connection is completed. To further improve the connection strength, welding can also be performed at the joint.

[0031] The upper energy-gathering ring plate 3 is provided with two plug-in square holes 301 corresponding to each pot support leg 2. The two plug-in square holes 301 are one long and one short and are arranged radially. The bottom of the pot support leg 2 is provided with a long plug pin 21 and a short plug pin 22 corresponding to the two plug-in square holes 301 respectively. The pot support leg 2 is respectively plugged into the two plug-in square holes 301 through the long plug pin 21 and the short plug pin 22 to achieve assembly connection with the upper energy-gathering ring plate 3; the long and short plug-in square holes 301 are used in conjunction with the long plug pin 21 and the short plug pin 22 to prevent the assembly of the pot support leg 2 and improve assembly efficiency.

[0032] The bottom surface of the base foot 5 is upwardly concave with a positioning groove 501 that matches the shape of the anti-slip pad 6, and the anti-slip pad 6 is placed in the positioning groove 501; the stamped base foot 5 has a larger bottom area and is positioned in conjunction with the positioning groove 501, so that the anti-slip pad 6 is not easy to loosen.

[0033] The bottom of the base foot 5 is provided with a plurality of inverted holes 502, and the anti-slip pad 6 is integrally connected with the corresponding plurality of inverted holes 502 and is buckled onto the upper side of the inverted holes 502; the anti-slip pad 6 is connected by the elastic inverted columns 61, which can facilitate the disassembly and assembly of the anti-slip pad 6, has a simple structure, low production cost, and a firm and stable connection.

[0034] In this embodiment, three bottom feet 5 are evenly distributed on the lower circumference of the lower energy focusing ring plate 4, and five pot support feet 2 are connected to the upper circumference of the upper energy focusing ring plate 3; in addition, in other embodiments, the number of bottom feet 5 and pot support feet 2 can be adjusted according to the diameter of the energy focusing ring, and is not limited to this. Example 2:

[0035] The difference between the second embodiment and the first embodiment is that: Figure 6 As shown, a drainage hole 503 is provided on the bottom surface of the base 5, and a drainage avoidance hole 601 is provided on the anti-slip pad 6 corresponding to the drainage hole. The drainage hole 503 and the drainage avoidance hole 601 are connected from top to bottom. This structure solves the problem that water entering the energy gathering circle during cleaning can be discharged through the drainage hole 503 and the drainage avoidance hole 601.

[0036] A stove, such as Figure 7 As shown, the stove body 8 includes a stove body 8 on which the integrated energy-gathering ring A of the first embodiment or the second embodiment can be detachably mounted.

[0037] The above is the preferred embodiment of the present utility model, which shows and describes the basic principle, main features and advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principle of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and these changes and improvements all fall within the scope of the present utility model claimed. The scope of protection claimed by the present utility model is defined by the appended claims and their equivalents.

Claims

1. One-piece energy-gathering ring, comprising an energy-gathering ring (1) and a plurality of pot feet (2), wherein the plurality of pot feet (2) are circumferentially and equally spaced and connected to the upper side of the energy-gathering ring (1), and it is characterized in that: The energy-gathering ring (1) comprises an upper energy-gathering ring plate (3) and a lower energy-gathering ring plate (4) connected at their inner and outer edges, a plurality of base feet (5) being uniformly distributed along the circumference of the lower side of the lower energy-gathering ring plate (4), and the plurality of base feet (5) are integrally formed with the lower energy-gathering ring plate (4) by stamping.

2. The integrated energy-gathering ring according to claim 1, characterized in that: The bottom surface of the foot (5) is connected to a detachable anti-slip pad (6).

3. The integrated energy-gathering ring according to claim 2, wherein: A drainage hole (503) is provided on the bottom surface of the foot (5), and a drainage avoidance hole (601) is provided on the anti-slip pad (6) corresponding to the drainage hole.

4. The integrated energy-gathering ring according to claim 1, wherein: The base (5) is a polygonal frustum structure or a circular frustum structure that is wide at the top and narrow at the bottom.

5. The integrated energy-gathering ring according to claim 1, wherein: The cross section of the upper energy-gathering ring plate (3) is in the shape of an inclined straight line, and the cross section of the lower energy-gathering ring plate (4) is in the shape of a curve. The lower energy-gathering ring plate (4) is connected to the upper energy-gathering ring plate (3), and a heat-insulating cavity (7) is formed between the two.

6. The integrated energy-gathering ring according to claim 1, wherein: The outer edge and inner edge of the upper energy-gathering ring plate (3) are respectively bent to form an outer edge folding edge (31) and an inner edge folding edge (32). The outer edge folding edge (31) is folded onto the outer edge of the lower energy-gathering ring plate (4), and the inner edge folding edge (32) is folded onto the inner edge of the lower energy-gathering ring plate (4), so that the upper energy-gathering ring plate (3) and the lower energy-gathering ring plate (4) are connected.

7. The integrated energy-gathering ring according to claim 1, wherein: The upper energy-gathering ring plate (3) is provided with two plug-in square holes (301) corresponding to each pot support leg (2). The two plug-in square holes (301) are one long and one short and are arranged radially. The bottom of the pot support leg (2) is provided with a long plug pin (21) and a short plug pin (22) corresponding to the two plug-in square holes (301). The pot support leg (2) is respectively plugged into the two plug-in square holes (301) through the long plug pin (21) and the short plug pin (22), thereby realizing assembly connection with the upper energy-gathering ring plate (3).

8. The integrated energy-gathering ring according to claim 2, characterized in that: The bottom surface of the foot (5) is provided with a positioning groove (501) that matches the shape of the anti-slip pad (6) and is recessed upward, and the anti-slip pad (6) is placed in the positioning groove (501).

9. The integrated energy-gathering ring according to claim 2, wherein: The bottom of the foot (5) is provided with a plurality of undercut holes (502), and the anti-slip pad (6) is integrally connected with elastic undercut columns (61) that are buckled on the upper side of the undercut holes (502) corresponding to the plurality of undercut holes (502).

10. A cooking appliance, comprising a cooking appliance body (8), characterized in that: The stove body (8) is detachably provided with an integrated energy-gathering ring (A) according to any one of claims 1 to 9.

Citation Information

Patent Citations

  • Pot supporting frame with energy gathering ring and integrated cooker

    CN114688581A