Split type double-layer energy-gathering pot rack

By designing a split double-layer energy-concentrating pot rack, and utilizing a unique gas outlet and heat insulation groove structure, the problem of poor heat concentration in traditional pot racks is solved, achieving efficient energy utilization and rapid cooking, while reducing gas consumption.

CN223740848UActive Publication Date: 2025-12-30SHAOXING SHUANGYUAN METAL MFG CO LTD
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Patent Information

Application Number
CN202520192749.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-07
Publication Date
2025-12-30
Estimated Expiration
2035-02-07

AI Technical Summary

Technical Problem

Traditional pot racks cannot effectively concentrate heat, leading to a significant increase in gas consumption, which is inconsistent with the concept of green and environmentally friendly development.

Method used

A split-type double-layer energy-concentrating pot rack was designed, including a stove, a lower pot rack, an upper pot rack, a conveying component, and a heat-concentrating ring. Through a unique air outlet design and heat insulation groove structure, the heat accumulation efficiency is improved.

Benefits of technology

It effectively reduces heat loss, improves energy efficiency, shortens cooking time, reduces energy costs, meets the demand for fast meal preparation, and improves restaurant operational efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of energy-gathering pot racks, and discloses a split type double-layer energy-gathering pot rack which comprises a cooking bench, a switch is arranged on the outer surface of the cooking bench, a hole is formed in the back of the cooking bench, the interior of the cooking bench is hollow, a lower-layer pot rack is arranged at the top of the cooking bench, and four heat insulation grooves are formed in the outer surface of the lower-layer pot rack. The split type double-layer pot rack comprises a cooking bench, a heat insulation groove is formed in the cooking bench, foot pieces are clamped in the heat insulation groove, the conveying assembly is installed in the cooking bench and used for conveying gas to the split type double-layer pot rack, a transverse frame is arranged in the cooking bench, and a surrounding plate is arranged at the top of the transverse frame. Gas can be sprayed out in a specific mode, flame heat is effectively gathered, heat dissipated to the surrounding environment is reduced, the utilization efficiency of energy is greatly improved, and therefore consumption of energy such as fuel gas is reduced. In commercial catering places, it means that a large amount of energy cost expenditure can be reduced.
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Description

Technical Field

[0001] This utility model relates to the field of energy-concentrating pot rack technology, specifically a split-type double-layer energy-concentrating pot rack. Background Technology

[0002] From an environmental perspective, the world is paying increasing attention to energy conservation and emission reduction. As a major energy consumer in homes and businesses, kitchens have made improving the energy efficiency of stoves an important direction for industry development. Traditional pot racks cannot effectively concentrate heat, which leads to a significant increase in the consumption of gas and other energy sources, which is not in line with the current green and environmentally friendly development concept.

[0003] In terms of technological innovation, various new materials and manufacturing processes have emerged in recent years, but their application in the field of pot racks has lagged behind. For example, new heat insulation materials and efficient energy-concentrating technologies have not been fully applied to the design of traditional pot racks, resulting in a lack of breakthroughs in performance improvement.

[0004] Publication number: CN218721738U. This utility model discloses an energy-concentrating pot rack, including: a support ring, an energy-concentrating ring seat, and support feet. The support feet are circumferentially distributed on the support ring, and the support ring is located inside the energy-concentrating ring seat so that the energy-concentrating ring seat surrounds the support ring. The energy-concentrating ring seat has a support part distributed circumferentially inside, and the support part is detachably connected to the support ring. This utility model has a novel structure, is easy to assemble and disassemble, has a good energy-concentrating effect, and is highly practical.

[0005] To address these issues, traditional pot racks are unable to effectively concentrate heat and consume too much gas. Therefore, we have proposed a split-type double-layer energy-concentrating pot rack. Utility Model Content

[0006] To address the shortcomings of existing technologies, this utility model provides a split-type double-layer energy-concentrating pot rack, which solves the aforementioned problems.

[0007] To achieve the aforementioned objectives, this utility model provides the following technical solution: a split-type double-layer energy-concentrating pot rack, including a stovetop, a switch on the outer surface of the stovetop, holes on the back of the stovetop, a hollow interior, a lower pot rack on the top of the stovetop, four heat-insulating grooves on the outer surface of the lower pot rack, and feet snapped into the interior of the heat-insulating grooves; further comprising:

[0008] The conveying assembly, installed inside the stove, is used to convey gas to the split double-layer pot rack, and the stove is equipped with a horizontal frame inside, with a panel on top of the horizontal frame.

[0009] Preferably, a switch is fixedly connected to the outer surface of the stove, and a groove is provided on the top of the stove, with a lower pot rack fixedly connected to the top of the groove, and a heat insulation groove is provided on the outer surface of the lower pot rack.

[0010] Preferably, the heat insulation groove has foot pieces snapped into it, and the top of the foot pieces is fixedly connected to an upper pot rack. The upper pot rack is a ring-shaped structure that is wider at the top and narrower at the bottom, and four anti-slip brackets are fixedly installed on the top of the upper pot rack.

[0011] Preferably, the conveying assembly includes a through hole, a crossbeam, a flame-gathering ring, an air outlet, a surrounding plate, and a protective sleeve. The crossbeam is fixedly connected to the inside of the stove, and the protective sleeve is fixedly connected to the top of the crossbeam. The protective sleeve has a through hole inside, and the surrounding plate is fixedly connected to the top of the protective sleeve. The flame-gathering ring is fixedly installed inside the surrounding plate, and the inner wall of the flame-gathering ring has an air outlet. The air outlet is triangular and consists of three small holes.

[0012] Preferably, the back of the stove has a hole, and a gas pipe is fixedly connected inside the hole. A nut is threaded to one end of the gas pipe, and a leather sleeve is fitted over the top of the gas pipe.

[0013] Preferably, the outer part of the heat-gathering ring abuts against the inside of the lower pot rack, and the bottom of the lower pot rack is engaged with the top of the stove, and a control valve is provided at the outer end of the gas pipe away from the sleeve.

[0014] Compared with the prior art, this utility model provides a split double-layer energy-concentrating pot rack, which has the following beneficial effects:

[0015] 1. This split-type double-layer energy-concentrating pot rack features a flame-concentrating ring and a unique air outlet design in its delivery component. This design allows gas to be ejected in a specific manner, effectively concentrating the heat from the flame and reducing heat loss to the surrounding environment. Compared to traditional pot racks, heat is more concentrated on the bottom of the pot, significantly improving energy efficiency and saving on gas and other energy consumption. In commercial catering establishments, this translates to substantial reductions in energy costs.

[0016] 2. This split-type double-layer energy-concentrating pot rack, due to the heat-concentrating ring, allows the bottom of the pot to absorb heat more quickly, thereby speeding up the cooking process. For home cooking, it can shorten cooking time and allow users to enjoy their food sooner. In the commercial catering industry, it can better meet the demand for fast food preparation, improve the operational efficiency of restaurants, and thus increase customer traffic and revenue. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0018] Figure 2 This is a schematic diagram of the pot rack of this utility model;

[0019] Figure 3 This is a schematic diagram of the conveying component of this utility model;

[0020] Figure 4This is a schematic diagram of the pipeline of this utility model.

[0021] In the diagram: 1. Stove; 2. Switch; 3. Lower pot rack; 4. Upper pot rack; 5. Anti-slip rack; 6. Foot plate; 7. Through hole; 8. Heat insulation groove; 9. Gas pipe; 10. Nut; 11. Leather sleeve; 12. Horizontal frame; 13. Heat-concentrating ring; 14. Gas outlet; 15. Enclosure panel; 16. Protective cover. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] Please see Figure 1-4 The split-type double-layer energy-concentrating pot rack includes a cooktop 1, a switch 2 on the outer surface of the cooktop 1, a hole on the back of the cooktop 1, a hollow interior, a lower pot rack 3 on the top of the cooktop 1, four heat insulation grooves 8 on the outer surface of the lower pot rack 3, and feet 6 snapped into the inside of the heat insulation grooves 8. It also includes:

[0024] A conveying assembly is installed inside the stove 1 to convey gas to the split double-layer pot rack. The stove 1 is equipped with a horizontal frame 12, and the top of the horizontal frame 12 is equipped with a surrounding plate 15.

[0025] Furthermore, a switch 2 is fixedly connected to the outer surface of the stove 1, and a groove is provided on the top of the stove 1. A lower pot rack 3 is fixedly connected to the top of the groove, and a heat insulation groove 8 is provided on the outer surface of the lower pot rack 3.

[0026] Furthermore, the heat insulation groove 8 is fitted with foot pieces 6, and the top of the foot pieces 6 is fixedly connected to the upper pot rack 4. The upper pot rack 4 is a ring with a larger top and a smaller bottom, and four anti-slip brackets 5 are fixedly installed on the top of the upper pot rack 4.

[0027] Furthermore, the conveying assembly includes a through hole 7, a crossbeam 12, a fire-gathering ring 13, a gas outlet 14, a surrounding plate 15, and a protective sleeve 16. The crossbeam 12 is fixedly connected inside the stove 1, and the protective sleeve 16 is fixedly connected to the top of the crossbeam 12. The protective sleeve 16 has a through hole 7 inside, and the surrounding plate 15 is fixedly connected to the top of the protective sleeve 16. The fire-gathering ring 13 is fixedly installed inside the surrounding plate 15, and the gas outlet 14 is triangular in shape and consists of three small holes.

[0028] Furthermore, the back of the stove 1 has a hole, and a gas pipe 9 is fixedly connected inside the hole. A nut 10 is threaded to one end of the gas pipe 9, and a leather sleeve 11 is fitted to the top of the gas pipe 9.

[0029] Furthermore, the outside of the fire-gathering ring 13 abuts against the inside of the lower pot rack 3, and the bottom of the lower pot rack 3 is engaged with the top of the stove 1, and a control valve is provided at the end of the gas pipe 9 away from the sleeve 11.

[0030] Structural Description: Stovetop: As the basic supporting structure of the entire pot rack, it provides a stable placement platform. Its hollow interior design provides space for the installation of components such as gas pipes and crossbars. At the same time, a specific structure at the top is used to engage with the lower pot rack, ensuring the stable placement of the lower pot rack.

[0031] Switch: Used to control the on / off of gas on the stove. It is a key component for users to turn cooking energy on and off. Through simple operation, the gas supply can be easily started or stopped, ensuring the safety and convenience of the cooking process.

[0032] The lower pot rack mainly supports the upper pot rack and places some of the weight of the pots. Its bottom is designed to snap into the stovetop, ensuring stable placement on the stovetop. The heat-insulating grooves on the outer surface not only connect the feet to support the upper pot rack, but also have a heat-insulating function, reducing heat transfer to the outside.

[0033] Upper pot rack: Directly used to place various pots and pans. Its unique ring design, which is larger at the top and smaller at the bottom, can accommodate pots and pans of different sizes. It is connected to the lower pot rack through the feet, and together they form a stable support structure to ensure the stability of the pots and pans during cooking.

[0034] Anti-slip rack: Installed on top of the upper pot rack, it increases the friction between the pot and the upper pot rack, preventing the pot from sliding during placement or cooking, and further improving the safety of pot placement.

[0035] Foot plate: As a key component connecting the upper and lower pot racks, it engages with the heat insulation groove of the lower pot rack to achieve a stable connection between the upper and lower pot racks, making the upper and lower pot racks form an integral support structure.

[0036] Through hole: Located inside the protective sleeve, it is the channel through which gas is transported from inside the stove to the flame-gathering ring, ensuring that gas can enter the flame-gathering ring stably and orderly, providing a basis for subsequent combustion and heat accumulation.

[0037] Insulation groove: It has a dual function. On the one hand, it provides a locking position for the foot piece to ensure a stable connection between the upper and lower pot racks. On the other hand, it uses special insulation materials or structures to effectively block heat from being transferred from the inside of the pot rack to the outside, thus playing a role in heat insulation protection.

[0038] Gas pipeline: It is responsible for transporting gas from the gas source to the inside of the stove. It is a key channel for gas transmission. It is connected to the hole on the back of the stove and the connection is sealed with nuts and leather sleeves to ensure the safe transmission of gas.

[0039] Nuts: Used to thread gas pipes to holes on the back of the stove. Tightening the nuts creates a tight and secure connection between the gas pipes and the stove, while preventing gas leaks.

[0040] Sleeve: A sleeve is fitted over the top of the gas pipe as an additional sealing measure to further enhance the sealing of the connection between the gas pipe and the stove, eliminating the risk of gas leakage.

[0041] Horizontal support: Installed inside the stove, it supports the protective sleeve and guides the gas delivery path, ensuring that the gas can be smoothly delivered upward through the through holes inside the protective sleeve, thus guaranteeing a stable gas supply.

[0042] The heat-concentrating ring is the core component for heat accumulation. Its uniquely designed air outlet allows the gas to be ejected through the outlet, forming a specific airflow pattern that concentrates the flame around the bottom of the pot, effectively reducing heat loss and improving energy efficiency.

[0043] Gas outlet: It consists of a triangular structure composed of three carefully designed small holes located on the inner wall of the flame-gathering ring. The angle and position of the small holes are precisely calculated to ensure that a specific airflow is formed when the gas is ejected, so that the flame is concentrated at the bottom of the pot and the heat is gathered efficiently.

[0044] Enclosure: Fixed to the protective sleeve at the top of the cross frame, with a fire-concentrating ring installed inside. The function of the enclosure is to surround the fire-concentrating ring, further guide the direction of the flame, and make it more concentrated on the bottom of the pot. It also plays a certain role in wind protection and ensuring the stability of the flame.

[0045] Protective sleeve: Installed on the top of the cross frame, with through holes inside. It not only protects the through holes from external interference, but also ensures that the gas can be stably transported upward along the predetermined path, while also providing a certain degree of protection for the internal gas transport structure.

[0046] Instructions for use

[0047] Gas pipe 9 serves as the gas transmission channel. One end is tightly secured to a pre-drilled hole on the back of stove 1 via a nut 10 using a threaded connection. This threaded connection not only ensures a stable connection between the pipe and the stove but also effectively prevents gas leakage through the tight engagement of the threads. A sleeve 11 is fitted over the top of the gas pipe, acting as a second sealing barrier to further enhance the seal at the connection and eliminate any potential risk of gas escape. When the user is ready to cook, they can easily adjust the gas flow by operating the control valve at the end of the gas pipe furthest from the sleeve. The control valve acts as a precise flow regulator, allowing the user to flexibly increase the heat according to different cooking methods such as frying, stir-frying, stewing, and boiling. Or reduce the gas output. Changes in gas flow directly determine the size and intensity of the flame, thus meeting diverse cooking scenarios. Gas supplied from the gas pipeline first enters the space inside the stove. Here, the crossbar 12 plays a crucial supporting and guiding role. The protective sleeve 16 at the top of the crossbar not only protects the internal through-hole 7 but also ensures that the gas can be stably transported upward along the predetermined path. After passing through the through-hole 7, the gas enters directly into the heat-gathering ring 13. The heat-gathering ring 13 is the core part of heat gathering. Its inner wall has a triangular gas outlet 14 composed of three carefully designed small holes. The angle and position of these three small holes are precisely calculated. When the gas is ejected from these small holes, it forms a specific airflow pattern, allowing the flame to... The heat is concentrated around the bottom of the pot in a highly concentrated manner. This unique design effectively reduces heat loss to the surrounding air, allowing heat to be applied to the bottom of the pot to the maximum extent, thus greatly improving energy efficiency. For example, when stir-frying, it can quickly heat the bottom of the pot to the required temperature, shortening cooking time and reducing gas consumption. The bottom of the lower pot rack 3 is specially designed to fit perfectly into the top of the stove. This locking method makes the lower pot rack very stable on the stove and not easy to shift. In daily use, even when performing vigorous cooking operations on the stove, such as rapid stir-frying, the lower pot rack remains stable. The upper pot rack 4 is tightly locked to the heat insulation groove 8 on the outer surface of the lower pot rack 3 through the feet 6. The grooves not only ensure a stable connection between the upper and lower pot racks, but also allow the upper pot rack to flexibly adapt to different height adjustment needs. The unique ring design of the upper pot rack 4, which is wider at the top and narrower at the bottom, along with the four anti-slip racks 5 on top, provides reliable support for various pots and pans. Whether it's a round wok, a square frying pan, or a soup pot of different sizes, they can all find a stable place on the upper pot rack. During cooking, even if the pot is filled with a lot of food, it can effectively prevent the pot from shaking, shifting, or even tipping over, creating a safe cooking environment for the user. The heat-insulating grooves 8 on the outer surface of the lower pot rack 3 have a dual function. On the one hand, they provide a stable locking position for the feet 6, ensuring the stability of the upper and lower pot rack structure. On the other hand...The heat-insulating grooves utilize special heat-insulating materials or design structures to effectively prevent heat transfer from the inside of the pot rack to the outside. During cooking, the pot rack inevitably absorbs a significant amount of heat from the flame. Without heat insulation, the outer layer of the pot rack would rapidly heat up, posing a risk of burns to the user. The heat-insulating grooves act like a thermal barrier, greatly slowing down heat conduction. Even when the inside of the pot rack has absorbed a lot of heat, the outer temperature remains within a safe range due to the heat-insulating grooves, reducing the risk of burns from accidental contact and providing a safer and more reliable user experience.

[0048] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A split-type double-layer energy-concentrating pot rack, comprising a stove (1), wherein a switch (2) is provided on the outer surface of the stove (1), and a hole is provided on the back of the stove (1), and the interior of the stove (1) is hollow, and a lower pot rack (3) is provided on the top of the stove (1), and four heat insulation grooves (8) are provided on the outer surface of the lower pot rack (3), and foot pieces (6) are snapped into the interior of the heat insulation grooves (8), characterized in that: Also includes: The conveying assembly is installed inside the stove (1) for conveying gas to the split double-layer pot rack, and the stove (1) is provided with a crossbeam (12), and the top of the crossbeam (12) is provided with a panel (15).

2. The split double-layer focus pot stand according to claim 1, characterized in that: A switch (2) is fixedly connected to the outer surface of the stove (1), and a groove is provided on the top of the stove (1). A lower pot rack (3) is fixedly connected to the top of the groove, and a heat insulation groove (8) is provided on the outer surface of the lower pot rack (3).

3. The split double-wall focused fire pot support of claim 1, wherein: The heat insulation groove (8) is fitted with foot pieces (6), and the top of the foot pieces (6) is fixedly connected to the upper pot rack (4). The upper pot rack (4) is a ring with a larger top and a smaller bottom, and four anti-slip brackets (5) are fixedly installed on the top of the upper pot rack (4).

4. The split double-wall focused fire pot support of claim 1, wherein: The conveying assembly includes a through hole (7), a crossbar (12), a fire-gathering ring (13), an air outlet (14), a surrounding plate (15), and a protective sleeve (16). The crossbar (12) is fixedly connected inside the stove (1), and the protective sleeve (16) is fixedly connected to the top of the crossbar (12). The protective sleeve (16) has a through hole (7) inside, and the surrounding plate (15) is fixedly connected to the top of the protective sleeve (16). The fire-gathering ring (13) is fixedly installed inside the surrounding plate (15), and the air outlet (14) is provided on the inner wall of the fire-gathering ring (13). The air outlet (14) is triangular and consists of three small holes.

5. The split two-tier focus pot rack of claim 1, wherein: The stove (1) has a hole on its back, and a gas pipe (9) is fixedly connected inside the hole. A nut (10) is threaded to one end of the gas pipe (9), and a leather sleeve (11) is fitted on the top of the gas pipe (9).

6. The split double-wall focused fire pot support of claim 4, wherein: The outside of the fire-gathering ring (13) abuts against the inside of the lower pot rack (3), and the bottom of the lower pot rack (3) is engaged with the top of the stove (1), and a control valve is provided at the end of the gas pipe (9) away from the leather sleeve (11).

Citation Information

Patent Citations

  • Energy-gathering pot rack

    CN218721738U