Cooking module and integrated cooker

By installing sheet metal parts on the periphery of the inner liner of the cooking module to form a heat insulation cavity, the problem of heat diffusion in the integrated stove affecting the life of the gas stove and control module is solved, and the long life of the gas stove and control module is achieved, thereby extending the service life of the integrated stove.

CN223271305UActive Publication Date: 2025-08-26HANDAN MIDEA INTELLIGENT KITCHEN ELECTRIC MFG CO LTD
View PDF 0 Cites 1 Cited by

Patent Information

Application Number
CN202422024201.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-20
Publication Date
2025-08-26
Estimated Expiration
2034-08-20

AI Technical Summary

Technical Problem

The heat generated during the cooking module of the integrated stove is easily diffused outward, affecting the service life of the gas stove and control module, resulting in a short overall service life of the integrated stove.

Method used

A sheet metal piece is installed on the outer periphery of the cooking module to form a heat insulation cavity to prevent heat from diffusion outward. A heat insulation cavity is formed by a sheet metal piece and the outer wall of the inner and outer walls to reduce the probability of damage to the gas stove and control module.

Benefits of technology

The service life of the gas stove and control module is extended, thereby extending the overall service life of the integrated stove.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223271305U_ABST
    Figure CN223271305U_ABST
Patent Text Reader

Abstract

The embodiment of the utility model discloses a cooking module and an integrated cooker, the cooking module comprises an inner container, a supporting piece and a sheet metal part, and the inner container is provided with a cooking cavity; the supporting piece is connected with the outer wall of the inner container. The sheet metal part is arranged outside the inner container in a surrounding mode and connected with the side, away from the inner container, of the supporting part. Wherein the sheet metal part and the outer wall of the inner container are encircled to form a heat insulation cavity to prevent heat in the cooking cavity from diffusing outwards, so that the probability of damage of the gas stove module and the control module can be reduced, the gas stove module and the control module can have longer service life, and the integrated stove can have longer service life.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present application relates to the technical field of integrated stoves, and in particular to a cooking module and an integrated stove. Background Art

[0002] With the improvement of consumers' material living standards, integrated stoves have gradually entered thousands of households. Integrated stoves are an integrated device with a range hood, gas stove and cooking module.

[0003] In the relevant technical field, the cooking module of the integrated stove is located below the gas stove, and the control module of the cooking module is also arranged near the cooking module. The internal temperature of the cooking module working room gradually increases, causing the surrounding side of the cooking module to also increase, which easily affects the service life of the gas stove and the control module, resulting in a shorter overall service life of the integrated stove. Utility Model Content

[0004] The embodiments of the present application provide a cooking module and an integrated stove, which are designed to use sheet metal to surround the outside of an inner pot, so that the sheet metal and the outer wall of the inner pot form an insulating cavity to prevent the heat in the cooking cavity from diffusing outward, thereby reducing the probability of damage to the gas stove module and the control module, so that the gas stove module and the control module can have a longer service life, and thus the integrated stove can have a longer service life.

[0005] An embodiment of the present application provides a cooking module, which includes an inner pot, a support member and a sheet metal member. The inner pot has a cooking cavity; the support member is connected to the outer wall of the inner pot; the sheet metal member is arranged outside the inner pot and is connected to the side of the support member away from the inner pot; wherein the sheet metal member and the outer wall of the inner pot form an insulating cavity to prevent the heat in the cooking cavity from diffusing outward.

[0006] In some embodiments, the inner pot has a flow opening connected to the cooking cavity, the sheet metal part includes a main body and a bent portion, the main body is connected to the support part; the bent portion is connected to the main body and extends toward the inner pot and abuts against the outer wall of the inner pot, the bent portion is arranged around the flow opening and forms an avoidance opening, and the avoidance opening is connected to the flow opening.

[0007] In some embodiments, the cooking module includes a plurality of support members, which are at least spaced apart and arranged around the flow channel opening to connect the outer wall of the inner pot and the body.

[0008] In some embodiments, the flow channel opening includes at least one of a smoke exhaust opening, an air inlet, and an exhaust opening.

[0009] In some embodiments, the flow channel includes an air inlet and an exhaust port, and the air inlet and the exhaust port are spaced apart; the cooking module also includes a first structural member, a second structural member, a fan and a heating device, and the first structural member is connected to the sheet metal member; the second structural member is connected to the sheet metal member and the first structural member, and the first structural member, the second structural member and the sheet metal member are surrounded to form a flow channel, and the flow channel connects the air inlet and the exhaust port; the fan is connected to the first structural member and the second structural member, and the air outlet and air inlet of the fan are both connected to the flow channel; the heating device has a hot cavity, and the hot cavity is connected to the flow channel.

[0010] In some embodiments, the flow channel opening includes an exhaust port and multiple air inlets, the exhaust port and the air inlet are spaced apart, and two adjacent air inlets are spaced apart; the first structural member is arranged on the periphery of the exhaust port, the outer wall of the inner tank and the first structural member form an exhaust cavity, the hot cavity is connected to the exhaust cavity, the first structural member has a first connecting port, and the first connecting port is connected to the flow channel; the second structural member has a second connecting port, and the second connecting port is connected to the flow channel; the multiple air inlets are all arranged between the first structural member and the second structural member; the fan is a centrifugal fan, and the centrifugal fan is connected to the first connecting port and the second connecting port; the air inlet of the fan is connected to the exhaust cavity, and the air outlet of the fan is connected to the flow channel.

[0011] In some embodiments, the heating device includes at least one of an electric heater and a burner.

[0012] In some embodiments, the support member includes two first support parts and a second support part, the two first support parts are connected to the outer wall of the inner tank; the second support part is connected to the first support part and protrudes from the surface where the two first support parts are located, and the second support part is connected to the sheet metal part.

[0013] In some embodiments, the first support portion is welded to the outer wall of the inner container, and the second support portion is welded, screwed or riveted to the sheet metal.

[0014] In some embodiments, the sheet metal part includes a through slot, and the cooking module further includes an enamel hanging part, which is welded to the outer wall of the inner pot and exposed through the through slot.

[0015] In some embodiments, the inner container is an enameled inner container, and the support member is an enameled support member.

[0016] An embodiment of the present application further provides an integrated stove, comprising a cooking module and a gas stove module, wherein the gas stove module is arranged above the cooking module.

[0017] Based on the cooking module of the present application, an insulating cavity is formed by the sheet metal parts and the outer wall of the inner pot to prevent the heat in the cooking cavity from diffusing outward, thereby reducing the probability of damage to the gas stove module and the control module, so that the gas stove module and the control module can have a longer service life, and thus the integrated stove can have a longer service life. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For those skilled in the art, other drawings can be obtained based on these drawings without paying any creative work.

[0019] Figure 1 This is a structural diagram of an integrated stove in an embodiment of the present application;

[0020] Figure 2 This is a structural diagram of a cooking module in one embodiment of the present application;

[0021] Figure 3 This is a structural schematic diagram of a welding assembly from one perspective in one embodiment of the present application;

[0022] Figure 4 This is a structural schematic diagram of a welding assembly from another perspective in one embodiment of the present application;

[0023] Figure 5 For the Figure 2 Schematic diagram of the local cross-section structure along the AA line;

[0024] Figure 6 for Figure 5 Schematic diagram of the enlarged structure at B in the middle;

[0025] Figure 7 For the Figure 2 Schematic diagram of the local cross-section structure of the center CC line;

[0026] Figure 8 This is a schematic structural diagram of a support member in one embodiment of the present application;

[0027] Figure 9 This is a flow chart of a manufacturing process of a cooking module in one embodiment of the present application;

[0028] Figure 10 This is a flow chart of a manufacturing process of a cooking module in another embodiment of the present application;

[0029] Figure 11 This is a flow chart of a manufacturing process of a cooking module in another embodiment of the present application.

[0030] Explanation of the accompanying drawings: 1. Integrated stove; 11. Gas stove module; 12. Oil fume extraction module; 2. Cooking module; 21. Inner pot; 21A. Cooking cavity; 21B. Take-out port; 21C. Flow channel port; 21C1. Smoke exhaust port; 21C2. Air inlet port; 21C3. Exhaust port; 22. Support member; 221. First support portion; 222. Second support portion; 23. Sheet metal member; 23A. Insulation cavity; 231. Main body; 232. Bending portion; 232A. Avoidance port; 24. First structural member; 24A. Exhaust cavity; 24B. First connecting port; 25. Second structural member; 25A. Flow channel; 25B. Second connecting port; 26. Fan; 27. Heating device; 28. Enamel hanging member. DETAILED DESCRIPTION

[0031] In order to make the purpose, technical solutions and advantages of this application more clearly understood, the present application is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this application and are not intended to limit this application.

[0032] Please refer to Figure 1 , an embodiment of the present application provides an integrated stove 1, including a cooking module 2 and a gas stove module 11.

[0033] The cooking module 2 is arranged below the cooking module 2, and the cooking module 2 can have steaming, baking and microwave functions to meet different user needs.

[0034] The oil smoke absorption module 12 can absorb the oil smoke near the gas stove module 11 to improve the cooking environment.

[0035] It is understandable that the integrated stove 1 may further include a control module, which is disposed between the gas stove module 11 and the cooking module 2 , and is used to control the operation of the cooking module 2 .

[0036] It is understandable that the integrated stove 1 may further include an oil fume suction module 12 , which can absorb oil fume from the gas stove module 11 and the cooking module 2 to improve the cooking environment.

[0037] During the operation of the cooking module 2, as the internal temperature increases, the ambient temperature around the cooking module 2 will also increase, especially near the sides of the cooking module 2. The increase in the ambient temperature near the sides of the cooking module 2 will affect the operating temperature of the gas stove module 11 and the operating temperature of the control module, causing the gas stove module 11 and the control module to be prone to failure, affecting the user experience.

[0038] Please refer to Figure 2-5 In one embodiment, the cooking module 2 includes an inner pot 21 , a support member 22 and a sheet metal member 23 .

[0039] The inner pot 21 has a cooking cavity 21A and a take-out port 21B connected to the cooking cavity 21A. The user can place the ingredients to be cooked in the cooking cavity 21A through the take-out port 21B; the cooked food can also be taken out through the take-out port 21B. Exemplarily, the shape of the inner pot 21 can be a cylinder or a cuboid. In the embodiment of the present application, there is no limitation on the specific shape of the inner pot 21. The material of the inner pot 21 can be metal so that the inner pot 21 can withstand high temperatures. It can be understood that in order to improve the safety performance of the inner pot 21, the inner pot 21 can be an enameled inner pot 21. Specifically, enamel is an inorganic glass enamel coated on the surface of a metal base. Applying enamel on the metal surface can prevent the metal from rusting, prevent the metal from forming an oxide layer on the surface when heated, and resist the erosion of various liquids.

[0040] The sheet metal member 23 is disposed outside the inner pot 21, so that the sheet metal member 23 and the outer wall of the inner pot 21 form an insulating cavity 23A to prevent heat from dissipating outward from the cooking cavity 21A. This reduces the probability of damage to the gas stove module 11 and the control module, thereby extending the service life of the gas stove module 11 and the control module, and thereby extending the service life of the integrated stove 1. For example, the sheet metal member 23 can be formed through a stamping or bending process. The sheet metal member 23 can be made of metal to ensure a long service life and reduce the probability of damage to the sheet metal member 23, ensuring that the insulating cavity 23A can prevent heat from dissipating outward from the cooking cavity 21A. It is understood that if a door frame is connected to the access opening 21B of the inner pot 21, the sheet metal member 23 can also be connected to the door frame, and the insulating cavity 23A can similarly be formed by the door frame, the outer wall of the inner pot 21, and the sheet metal member 23. In the embodiment of the present application, there is no limitation on the specific formation method of the thermal insulation cavity 23A.

[0041] It is understandable that the sheet metal part 23 can be integrally formed from a single piece of sheet metal, or can be obtained by splicing multiple pieces of sheet metal. In the embodiment of the present application, there is no specific limitation on this.

[0042] The support member 22 is connected to the outer wall of the inner pot 21 and to the sheet metal member 23 to support the sheet metal member 23, reducing the probability of the sheet metal member 23 contacting the outer wall of the inner pot 21 after deformation, and ensuring that an insulating cavity 23A is formed between the sheet metal member 23 and the exterior of the inner pot 21. This ensures that the insulating cavity 23A can block the heat within the cooking cavity 21A from dissipating outward, thereby reducing the probability of damage to the gas stove module 11 and the control module. For example, the support member 22 can also be formed through a stamping or bending process to ensure a stable structure of the support member 22, thereby ensuring that the support member 22 can stably connect the inner pot 21 and the sheet metal member 23, thereby ensuring the stability of the insulating cavity 23A, ensuring that the insulating cavity 23A can block the heat within the cooking cavity 21A from dissipating outward, reducing the probability of damage to the gas stove module 11 and the control module, and thus extending the service life of the gas stove module 11 and the control module, thereby extending the service life of the integrated stove 1.

[0043] In the embodiment of the present application, an insulating cavity 23A formed by the sheet metal 23 and the outer wall of the inner pot 21 is used to prevent the heat in the cooking cavity 21A from diffusing outward, thereby reducing the probability of damage to the gas stove module 11 and the control module, so that the gas stove module 11 and the control module can have a longer service life, and thus the integrated stove 1 can have a longer service life.

[0044] Please refer to Figure 2-6 In one embodiment, the inner pot 21 has a flow channel 21C connected to the cooking cavity 21A. The sheet metal part 23 includes a main body 231 and a bent portion 232. The main body 231 is connected to the support member 22; the bent portion 232 is connected to the main body 231 and extends toward the inner pot 21 and abuts against the outer wall of the inner pot 21. The bent portion 232 is arranged around the flow channel opening 21C and forms an avoidance opening 232A. The avoidance opening 232A is connected to the flow channel opening 21C, so that the bent portion 232 is used to block the hot air from the flow channel opening 21C from entering the insulation cavity 23A, thereby lowering the temperature of the insulation cavity 23A, preventing the gas stove module 11 and the control module from being overheated, and further reducing the probability of damage to the gas stove module 11 and the control module, so that the gas stove module 11 and the control module can have a longer service life, so that the integrated stove 1 can have a longer service life.

[0045] Furthermore, since the avoidance opening 232A is communicated with the flow channel opening 21C, the inner container 21 can exchange gas with the outside through the flow channel opening 21C and the avoidance opening 232A.

[0046] Please refer to Figure 2-4It is understood that the flow channel 21C includes at least one of a smoke exhaust port 21C1, an air inlet 21C2, and an exhaust port 21C3. The smoke exhaust port 21C1 is used to exhaust cooking fumes from the cooking cavity 21A. The smoke exhausted from the smoke exhaust port 21C1 can be sucked into the fume extraction module 12 and discharged outdoors. In this embodiment of the present application, the smoke exhaust port 21C1 can be located at the top of the inner pot 21 to facilitate the exhaust of cooking fumes. The air inlet 21C2 and the exhaust port 21C3 can achieve air circulation heating in the inner pot 21, thereby heating the cooking cavity 21A and cooking the ingredients.

[0047] It is understood that the shape of the flow channel opening 21C can be at least one of a circle, a triangle, a rectangle, and a polygon. In other embodiments, the flow channel opening 21C can also have other shapes. In the embodiment of the present application, the shape of the flow channel opening 21C is not specifically limited. It is understood that the shape and size of the smoke exhaust port 21C1, the air inlet 21C2, and the exhaust port 21C3 can all be different to adapt to different usage requirements.

[0048] Please refer to Figure 2-4 In one embodiment, the cooking module 2 may include a plurality of support members 22, which are at least spaced apart and arranged around the flow channel opening 21C to connect the outer wall of the inner pot 21 and the main body 231, so that the bent portion 232 can stably abut against the side of the flow channel opening 21C to reduce the probability of hot air from the flow channel opening 21C entering the insulation cavity 23A, thereby preventing the temperature of the gas stove module 11 and the control module from being too high, so that the gas stove module 11 and the control module can have a longer service life.

[0049] Please refer to Figure 4 and Figure 5 In one embodiment, the flow channel 21C may include an air inlet 21C2 and an exhaust port 21C3, and the air inlet 21C2 and the exhaust port 21C3 are arranged at intervals; the cooking module 2 also includes a first structural member 24, a second structural member 25, a fan 26 and a heating device 27, the first structural member 24 is connected to the sheet metal member 23; the second structural member 25 is connected to the sheet metal member 23 and the first structural member 24, the first structural member 24, the second structural member 25 and the sheet metal member 23 are surrounded by a flow channel 25A, and the flow channel 25A is connected to the air inlet 21C2 and the exhaust port 21C3; the fan 26 is connected to the first structural member 24 and the second structural member 25, and the air outlet and air inlet of the fan 26 are both connected to the flow channel 25A; the heating device 27 has a hot cavity, and the hot cavity is connected to the flow channel 25A.

[0050] The fan 26 sucks the air in the cooking cavity 21A out through the exhaust port 21C3, the heating device 27 heats the hot cavity and the air sucked out from the cooking cavity 21A, and then uses the flow channel 25A to blow the heated air into the cooking cavity 21A through the air inlet 21C2. This cycle is repeated to heat the air in the cooking cavity 21A, thereby heating the food placed in the cooking cavity 21A.

[0051] It is understandable that the heating device 27 includes at least one of an electric heater and a burner. In the embodiment of the present application, there is no limitation on the specific form of the heating device 27, and it can be selected according to different design requirements.

[0052] It is understood that the connection methods between the first structural member 24, the second structural member 25 and the sheet metal member 23 include but are not limited to screwing, welding and riveting. In the embodiment of the present application, the connection methods between the first structural member 24, the second structural member 25 and the sheet metal member 23 are not limited.

[0053] Please refer to Figure 4-6 In one embodiment, the flow channel 21C includes an exhaust port 21C3 and a plurality of air inlets 21C2. The exhaust port 21C3 and the air inlet 21C2 are spaced apart, and two adjacent air inlets 21C2 are spaced apart. The first structural member 24 is disposed around the exhaust port 21C3 to form an exhaust cavity 24A with the outer wall of the liner 21 and the first structural member 24. The heat cavity is connected to the exhaust cavity 24A. The first structural member 24 has a first connecting port 24B. The first connecting port 24B is connected to the flow channel 25A; the second structural member 25 has a second connecting port 25B, which is connected to the flow channel 25A; multiple air inlets 21C2 are all arranged between the first structural member 24 and the second structural member 25; the fan 26 is a centrifugal fan 26, which is connected to the first connecting port 24B and the second connecting port 25B; the air inlet of the fan 26 is connected to the exhaust chamber 24A, and the air outlet of the fan 26 is connected to the flow channel 25A.

[0054] In the embodiment of the present application, a centrifugal fan 26 is used to suck the air in the cooking cavity 21A into the exhaust cavity 24A through the exhaust port 21C3, so that the air in the cooking cavity 21A is mixed with the hot air in the hot cavity in the exhaust cavity 24A to heat the air sucked out of the cooking cavity 21A. The heated air then enters the flow channel 25A through the air outlet of the fan 26 and enters the cooking cavity 21A through multiple air inlets 21C2 to circulate and heat the air in the cooking cavity 21A, thereby achieving the purpose of cooking ingredients.

[0055] Furthermore, by using multiple air inlets 21C2 to blow air into the cooking cavity 21A, the air in the cooking cavity 21A can be heated evenly, so that the food can be heated evenly, thereby improving the processing efficiency and quality of the food.

[0056] Please refer to Figure 4 For example, the flow channel 21C may include one exhaust port 21C3 and six inlet ports 21C2, with the six inlet ports 21C2 evenly divided into two groups, with the two groups of inlet ports 21C2 located on either side of the exhaust port 21C3. In other embodiments, there is no specific limitation on the number of exhaust ports 21C3 and inlet ports 21C2, nor on their arrangement.

[0057] It can be understood that the fan 26 can also be a cross-flow fan 26. In this case, the cross-flow fan 26 can absorb the air in the cooking cavity 21A from the flow channel 25A through the air inlet, and blow the sucked air into the cooking cavity 21A through the exhaust cavity 24A and the air outlet. When the air enters the exhaust cavity 24A, it will mix with the hot air in the hot cavity to heat the air. Then the hot air enters the cooking cavity 21A through the air outlet, and can also circulate and heat the air in the cooking cavity 21A, thereby achieving the purpose of cooking ingredients.

[0058] Please refer to Figure 5-8 In one embodiment, the support member 22 includes two first support portions 221 and a second support portion 222. The two first support portions 221 are connected to the outer wall of the inner container 21. The second support portion 222 is connected to the first support portion 221 and protrudes from the surface where the two first support portions 221 are located. The second support portion 222 is connected to the sheet metal member 23. The support member 22 can be formed into two first support portions 221 and one second support portion 222 by four bends, which makes the structure of the support member 22 stable.

[0059] Exemplarily, the connection method between the first support portion 221 and the outer wall of the inner liner 21 may be, but is not limited to, welding, screwing, or riveting. In other embodiments, the connection method between the first support portion 221 and the outer wall of the inner liner 21 may also be other forms. In the embodiment of the present application, there is no specific limitation on the connection method between the first support portion 221 and the outer wall of the inner liner 21. Exemplarily, the connection method between the second support portion 222 and the sheet metal 23 may be, but is not limited to, welding, screwing, or riveting. In other embodiments, the connection method between the second support portion 222 and the sheet metal 23 may also be other forms. In the embodiment of the present application, there is no specific limitation on the connection method between the second support portion 222 and the sheet metal 23.

[0060] Please refer to Figure 5-8In one embodiment, in order to prevent the appearance of screw heads on the inner wall of the inner pot 21, the first support portion 221 is welded to the outer wall of the inner pot 21 to ensure that the inner wall of the inner pot 21 can remain intact. When the user places ingredients and takes food, the probability of the screw heads exposed on the inner wall of the inner pot 21 scratching the user is reduced, thereby providing reliable protection for the user's health.

[0061] Please refer to Figure 4 In one embodiment, the sheet metal part 23 includes a through groove (not shown in the figure), and the cooking module 2 also includes an enamel hanging part 28, which is welded to the outer wall of the inner pot 21 and exposed through the through groove. This can make the distance between the sheet metal part 23 and the inner pot 21 smaller, so as to reduce the space occupied by the insulation cavity 23A in the cooking module 2, thereby making the volume of the cooking module 2 smaller, so that the volume of the integrated stove 1 is smaller.

[0062] The enamel hanging part 28 can be used to enamel the inner pot 21, the support part 22 and the welding assembly formed by the enamel hanging part 28, so that the inner pot 21 and the support part 22 can have a longer service life, thereby making the cooking module 2 have a longer service life, and further making the integrated stove 1 have a longer service life.

[0063] Please refer to Figure 4 、 Figure 5 and Figure 9 The embodiment of the present application further provides a manufacturing process of a cooking module 2, the manufacturing process comprising:

[0064] Step S10: forming the inner container 21, the support member 22, the enamel member 28 and the sheet metal member 23 respectively.

[0065] In an embodiment of the present application, the inner liner 21, the support member 22, the enameled member 28 and the sheet metal member 23 can be formed by stamping, so that the inner liner 21, the support member 22, the enameled member 28 and the sheet metal member 23 each have good mechanical properties, reducing the probability of damage to the inner liner 21, the support member 22, the enameled member 28 and the sheet metal member 23, thereby allowing the inner liner 21, the support member 22, the enameled member 28 and the sheet metal member 23 to have a longer service life.

[0066] Step S20 : ​​Weld the support member 22 and the enamel member 28 to the outer peripheral side of the inner container 21 to form a welded assembly.

[0067] In an embodiment of the present application, in order to prevent the appearance of screw heads on the inner wall of the inner pot 21, the support member 22 can be welded to the outer wall of the inner pot 21 to ensure that the inner wall of the inner pot 21 can remain intact. When the user places ingredients and takes food, the probability of the screw heads exposed on the inner wall of the inner pot 21 scratching the user can be reduced, thereby providing reliable protection for the user's health.

[0068] Step S30: suspend the welding assembly through the enamel hanging member 28 and spray enamel on the welding assembly.

[0069] In an embodiment of the present application, the inner pot 21, the support part 22 and the welding assembly formed by the enameling part 28 can be enameled using the enameling part 28, so that the inner pot 21 and the support part 22 can have a longer service life, thereby the cooking module 2 can have a longer service life, and further the integrated stove 1 can have a longer service life.

[0070] Step S40 , threading the sheet metal component 23 to the side of the support component 22 away from the inner container 21 .

[0071] In an embodiment of the present application, the support member 22 may have a threaded hole on the side away from the inner pot 21, and a through hole is provided at a position corresponding to the threaded hole of the sheet metal 23. The threaded end of the bolt can pass through the through hole and be threadedly connected to the threaded hole, so that the sheet metal member 23 is connected to the support member 22, which can facilitate the installation of the sheet metal member 23 and the support member 22, thereby improving the assembly efficiency of the sheet metal member 23 and the welding assembly, and then improving the assembly efficiency of the cooking module 2, thereby improving the assembly efficiency of the integrated stove 1.

[0072] Please refer to Figure 4 、 Figure 6 and Figure 10 In one embodiment, step S40 includes:

[0073] Step S41 , the sheet metal part 23 is covered on the inner container 21 and the peripheral side of the support part 22 , with a minimum distance L1 between the sheet metal part 23 and the support part 22 , and L1 satisfies: 0.5 mm ≤ L1 ≤ 1 mm.

[0074] In the embodiment of the present application, after the sheet metal 23 is covered on the sides of the inner pot 21 and the support member 22, there is a minimum distance L1 between the sheet metal 23 and the support member 22, and L1 satisfies: 0.5mm≤L1≤1mm. After the bolts are tightened, the bent portion 232 of the sheet metal 23 can be abutted against the outer wall of the inner pot 21, so that the bent portion 232 can be used to block the hot air from the flow channel 21C from entering the insulation cavity 23A, thereby making the temperature of the insulation cavity 23A lower, so as to prevent the temperature of the gas stove module 11 and the control module from being too high, and thereby reduce the probability of damage to the gas stove module 11 and the control module, so that the gas stove module 11 and the control module can have a longer service life, so that the integrated stove 1 can have a longer service life.

[0075] If L1 is less than 0.5 mm, the distance between the sheet metal part 23 and the support part 22 will be smaller, so that the contact force between the bending part 232 and the outer wall of the inner pot 21 will be larger, which will easily damage the enamel layer of the outer wall of the inner pot 21 and affect the service life of the inner pot 21. In addition, since the contact force between the bending part 232 and the outer wall of the inner pot 21 is large, the bolts will be subjected to greater force, causing the bolts to be easily damaged. The damaged bolts will easily cause the flow channel 21C to be connected with the insulation cavity 23A, so that the hot air from the flow channel 21C can easily enter the insulation cavity 23A, causing the temperature of the gas stove module 11 and the control module to be too high, resulting in a higher probability of damage to the gas stove module 11 and the control module, affecting the service life of the gas stove module 11 and the control module.

[0076] If L1>1mm, the distance between the sheet metal 23 and the support member 22 will be larger, resulting in a smaller abutment force between the bent portion 232 and the outer wall of the inner tank 21 after the sheet metal 23 and the support member 22 are locked, causing the hot air at the flow channel 21C to easily enter the insulation cavity 23A, resulting in the temperature of the gas stove module 11 and the control module being too high, resulting in a higher probability of damage to the gas stove module 11 and the control module, affecting the service life of the gas stove module 11 and the control module.

[0077] Step S42 : Use bolts to connect the sheet metal component 23 and the support component 22 so that the sheet metal component 23 and the support component 22 are in contact with each other.

[0078] In the embodiment of the present application, the sheet metal part 23 and the support part 22 are connected by bolts, which can improve the connection efficiency between the sheet metal part 23 and the support part 22, thereby improving the assembly efficiency of the cooking module 2, and further improving the assembly efficiency of the integrated stove 1.

[0079] Please refer to Figure 4 、 Figure 5 and Figure 11 In one embodiment, after step S40, the manufacturing process further includes:

[0080] Step S50 : forming the first structural component 24 and the second structural component 25 .

[0081] In the embodiment of the present application, the first structural member 24 and the second structural member 25 can be formed by stamping or bending. It is understood that the first structural member 24 and the second structural member 25 can also be formed by other processing methods. In the embodiment of the present application, there is no limitation on the forming method of the first structural member 24 and the second structural member 25.

[0082] Step S60 : Connect the first structural member 24 and the second structural member 25 to the sheet metal member 23 respectively.

[0083] In the embodiment of the present application, the connection method between the first support portion 221 and the outer wall of the inner liner 21 can be, but is not limited to, welding, screwing, or riveting. In other embodiments, the connection method between the first support portion 221 and the outer wall of the inner liner 21 can also be other forms. In the embodiment of the present application, there is no specific limitation on the connection method between the first support portion 221 and the outer wall of the inner liner 21. For example, the connection method between the second support portion 222 and the sheet metal part 23 can be, but is not limited to, welding, screwing, or riveting. In other embodiments, the connection method between the second support portion 222 and the sheet metal part 23 can also be other forms. In the embodiment of the present application, there is no specific limitation on the connection method between the second support portion 222 and the sheet metal part 23.

[0084] The same or similar numbers in the drawings of this embodiment correspond to the same or similar parts; in the description of this application, it should be understood that if the terms "upper", "lower", "left", "right", etc. indicate an orientation or position relationship, they are based on the orientation or position relationship shown in the drawings. This is only for the convenience of describing this application and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation. Therefore, the terms describing the position relationship in the drawings are only used for illustrative purposes and cannot be understood as a limitation on this patent. For ordinary technicians in this field, the specific meanings of the above terms can be understood according to specific circumstances.

[0085] The above are only preferred embodiments of the present application and are not intended to limit the present application. Any modifications, equivalent replacements, and improvements made within the spirit and principles of the present application should be included in the scope of protection of the present application.

Claims

1. A cooking module, characterized in that: include: an inner pot having a cooking cavity; A support member connected to the outer wall of the inner container; as well as A sheet metal component is disposed around the inner container and connected to a side of the support component away from the inner container; The sheet metal part and the outer wall of the inner pot are arranged to form a heat-insulating cavity to prevent the heat in the cooking cavity from diffusing outwards.

2. The cooking module according to claim 1, wherein The inner pot has a flow channel communicating with the cooking cavity, and the sheet metal part includes: a body connected to the support member; The bent portion is connected to the body and extends toward the inner container and abuts against the outer wall of the inner container. The bent portion is arranged around the flow channel opening and forms a avoidance opening, which is communicated with the flow channel opening.

3. The cooking module according to claim 2, wherein The cooking module includes a plurality of support members, which are at least spaced apart and arranged around the flow channel opening to connect the outer wall of the inner pot and the body.

4. The cooking module according to claim 2, wherein The flow channel opening includes at least one of a smoke exhaust opening, an air inlet, and an exhaust opening.

5. The cooking module according to claim 2, wherein The flow channel opening includes an air inlet and an exhaust port, and the air inlet and the exhaust port are spaced apart; The cooking module further comprises: a first structural member connected to the sheet metal member; a second structural member connected to the sheet metal member and the first structural member, wherein the first structural member, the second structural member, and the sheet metal member enclose a flow channel, and the flow channel communicates with the air inlet and the exhaust port; a fan connected to the first structural member and the second structural member, wherein the air outlet and the air inlet of the fan are both in communication with the flow channel; and The heating device comprises a heat chamber which is communicated with the flow channel.

6. The cooking module according to claim 5, characterized in that The flow channel opening includes an exhaust port and a plurality of air inlets, the exhaust port and the air inlet are spaced apart, and two adjacent air inlets are spaced apart; The first structural member is disposed around the exhaust port to form an exhaust cavity with the outer wall of the inner container and the first structural member, the heat cavity is in communication with the exhaust cavity, and the first structural member has a first connecting port, which is in communication with the flow channel; The second structural member has a second connecting port, and the second connecting port is communicated with the flow channel; the plurality of air inlets are all arranged between the first structural member and the second structural member; The fan is a centrifugal fan, which is connected to the first connecting port and the second connecting port; the air inlet of the fan is connected to the exhaust cavity, and the air outlet of the fan is connected to the flow channel.

7. The cooking module according to claim 5, wherein The heating device includes at least one of an electric heater and a burner.

8. The cooking module according to claim 1, wherein The support member comprises: Two first supporting parts connected to the outer wall of the inner container; The second supporting portion is connected to the first supporting portion and is protruding from the surfaces where the two first supporting portions are located. The second supporting portion is connected to the sheet metal component.

9. The cooking module according to claim 8, wherein The first support portion is welded to the outer wall of the inner container, and the second support portion is welded, screwed or riveted to the sheet metal component.

10. The cooking module according to claim 1, wherein The sheet metal part includes a through slot, and the cooking module further includes: The enamel hanging piece is welded to the outer wall of the inner container and exposed through the through groove.

11. The cooking module according to any one of claims 1 to 10, characterized in that The inner liner is an enamel inner liner, and the support member is an enamel support member.

12. An integrated stove, characterized in that: include: The cooking module according to any one of claims 1 to 11; The gas stove module is arranged above the cooking module.

Citation Information

Cited By

  • Cooking equipment

    CN121474597A