Integrated cooker and assembling method thereof

By employing a combination of diversion and hook structures in the integrated stove, the smoke collection chamber is divided into multiple sub-chambers, solving the problem of low smoke exhaust efficiency in integrated stoves. This achieves more efficient smoke collection and exhaust, improving user health and user experience.

CN121408730APending Publication Date: 2026-01-27MIDEA GROUP CO LTD +1
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Patent Information

Application Number
CN202411017668.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-07-26
Publication Date
2026-01-27

AI Technical Summary

Technical Problem

Integrated cooktops have low smoke extraction efficiency, which means that cooking fumes cannot be discharged from the kitchen to the outside in a timely manner, affecting the user's health and user experience.

Method used

The smoke collection chamber is divided into at least two sub-chambers by a diversion structure. Through a specific assembly method of the first hook structure and the second hook structure, it is ensured that the diversion structure does not interfere with the top shell during the assembly process, so as to achieve effective diversion and collection of flue gas.

Benefits of technology

It improves the smoke extraction effect of integrated cooktops when multiple burners are working simultaneously or individually, reduces the possibility of smoke mixing, ensures smooth smoke discharge, and improves user health and user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an integrated cooker and an assembling method thereof, and the integrated cooker comprises a cooker body, a range hood head and a flow dividing structure; the range hood head is located above the stove body and connected with the stove body, the range hood head is provided with a smoke gathering cavity and comprises a top shell, the top shell is provided with a part extending out of the smoke gathering cavity, the cavity side wall of the smoke gathering cavity is provided with a first clamping hook structure, the flow dividing structure is arranged in the smoke gathering cavity and divides the smoke gathering cavity into at least two smoke gathering sub-cavities, and the at least two smoke gathering sub-cavities are arranged in the left-right direction of the integrated stove. The shunting structure is provided with a second clamping hook structure, and the second clamping hook structure can only be assembled with the first clamping hook structure from bottom to top in the vertical direction of the integrated cooker, so that interference between the shunting structure and the top shell is avoided in the assembling process. According to the technical scheme, the smoke exhaust efficiency of the integrated cooker can be improved.
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Description

Technical Field

[0001] This application relates to the field of household appliance technology, and in particular to an integrated stove and its assembly method. Background Technology

[0002] With the development of technology and the improvement of people's living standards, the use of household appliances such as integrated cooktops is increasing. An integrated cooktop is a kitchen appliance that combines multiple functions such as a range hood and a gas stove, and it has advantages such as saving space, energy saving, low consumption and environmental protection.

[0003] In related technologies, integrated cooktops have relatively low smoke extraction efficiency, resulting in cooking fumes not being promptly exhausted from the kitchen to the outdoors, adversely affecting users' health and user experience. Therefore, how to effectively improve the smoke extraction efficiency of integrated cooktops has become an urgent problem to be solved. Summary of the Invention

[0004] This application provides an integrated stove and its assembly method, which can improve the smoke extraction efficiency of the integrated stove.

[0005] In a first aspect, embodiments of this application provide an integrated stove, which includes a stove body, a range hood head, and a diversion structure; the range hood head is located above the stove body and connected to the stove body, the range hood head has a smoke collection cavity and includes a top shell, the top shell forming part of the smoke collection cavity, and the cavity sidewall of the smoke collection cavity is provided with a first hook structure;

[0006] The diversion structure is located in the smoke collection chamber and divides the smoke collection chamber into at least two smoke collection sub-chambers. The at least two smoke collection sub-chambers are arranged along the left and right directions of the integrated stove. The diversion structure is provided with a second hook structure.

[0007] The second hook structure can only be assembled with the first hook structure in the vertical direction of the integrated stove from bottom to top, so as to avoid interference between the diversion structure and the top shell during the assembly process.

[0008] In some embodiments, the first hook structure includes a first hook member, which is connected to the side wall of the smoke collection chamber and cooperates with the side wall of the smoke collection chamber to form a hook groove, the hook groove having an inlet opening downwards;

[0009] The second hook structure is a snap-in component, which is connected to the diversion structure and can only be inserted into the inlet in the vertical direction of the integrated stove from bottom to top to snap into the hook groove.

[0010] In some embodiments, the first hook member includes a connecting body and a hook body;

[0011] The connecting body is connected to the side wall of the smoke collection chamber, and the hook body is connected to the connecting body, and cooperates with the connecting body and the side wall of the smoke collection chamber to form the hook groove.

[0012] In some embodiments, the first hook member includes at least two, and the at least two first hook members are arranged at intervals along the left-right direction;

[0013] The locking member extends in the left-right direction in a strip shape and can be locked into the hook slots of at least two of the first hooks.

[0014] In some embodiments, the first hook structure includes a plurality of hook groups, the plurality of hook groups being arranged at intervals along the vertical direction, and the hook group including at least two first hook members arranged at intervals along the horizontal direction.

[0015] The snap-fit ​​component includes multiple components, and each snap-fit ​​component is snapped into the hook slot of at least two first hooks of one hook group.

[0016] In some embodiments, the diversion structure forms an open receiving cavity; the snap-fit ​​member is received within the receiving cavity and includes a snap-fit ​​body and a reinforcing body;

[0017] The inserting body can be inserted into the hook slots of at least two of the first hooks. The reinforcing body is connected to the inserting body and is set at an angle to the inserting body. The two ends of the reinforcing body that are opposite to each other along the left and right directions are respectively connected to the two cavity sidewalls opposite to the receiving cavity.

[0018] In some embodiments, the first hook structure is disposed on the rear side wall of the smoke collection chamber, and the second hook structure moves from front to back in the front-to-back direction of the integrated stove to abut against the rear side wall of the smoke collection chamber, and then is assembled with the first hook structure from bottom to top; or,

[0019] The first hook structure is located on the front side wall of the smoke collection chamber, and the second hook structure moves from back to front in the front-back direction of the integrated stove to abut against the front side wall of the smoke collection chamber, and then is assembled with the first hook structure from bottom to top.

[0020] In some embodiments, the first hook structure includes a second hook member, the second hook member being connected to the sidewall of the smoke-collecting chamber, and the second hook structure being a first slot disposed within the diversion structure, the second hook member being hooked into the first slot; or...

[0021] The first hook structure is a second slot provided on the side wall of the smoke collection chamber, and the second hook structure is a third hook member. The third hook member is connected to the diversion structure and is hooked into the second slot.

[0022] In some embodiments, the integrated stove further includes a mounting plate connected to the side wall of the smoke collection chamber, the mounting plate being provided with the first hook structure and being an integral part of the first hook structure.

[0023] In some embodiments, the surface of the diversion structure facing the top shell is fitted with the top shell.

[0024] In some embodiments, the top shell includes a first shell, a second shell, and a lamp panel;

[0025] The first housing extends along the front-to-back direction of the integrated stove, the second housing is located below the first housing and extends downward at an angle in the front-to-back direction of the integrated stove, and the lamp panel is connected to the plate surface of the second housing facing the diversion structure;

[0026] The surface of the diversion structure facing the lamp panel is inclined, and the inclined surface is in contact with the lamp panel.

[0027] In some embodiments, the diversion structure has diversion surfaces on both opposite sides in the left-right direction, and the diversion surfaces form part of the wall surface of the smoke collection chamber;

[0028] In the integrated stove, the distance between the two diversion surfaces decreases along the left-right direction in the direction from back to front.

[0029] In some embodiments, one of the two diversion surfaces of the integrated stove is inclined toward the other in the back-to-front direction.

[0030] In some embodiments, the range hood head further includes a casing, the casing comprising a front panel and a rear panel;

[0031] The back panel is disposed opposite to the front panel in the front-rear direction of the integrated stove, and is connected to the top shell and the stove body on opposite sides in the up-down direction, respectively. The back panel, together with the diversion surface, the front panel and the top shell, forms the smoke collection chamber.

[0032] The front side of the diversion structure abuts against the front panel along the front-rear direction, and the rear side abuts against the rear panel along the front-rear direction.

[0033] In some embodiments, the front side is fitted to the front panel; and / or,

[0034] The rear side panel is fitted to the rear back panel.

[0035] Secondly, embodiments of this application provide an assembly method for an integrated stove as described above, the assembly method comprising:

[0036] Connect the range hood head to the cooktop;

[0037] Assemble the second hook structure with the first hook structure along the bottom-up direction of the integrated stove;

[0038] The diversion structure is fixedly installed inside the smoke collection chamber.

[0039] In some embodiments, before the step of assembling the second hook structure with the first hook structure along the bottom-up direction of the integrated stove, the method further includes:

[0040] Move the diversion structure along the integrated stove from front to back until the second hook structure abuts against the rear wall of the smoke collection chamber; or,

[0041] Move the diversion structure along the integrated stove from back to front until the second hook structure abuts against the front side wall of the smoke collection chamber.

[0042] Based on the integrated stove and its assembly method according to the embodiments of this application, the smoke collection chamber is divided into at least two smoke collection sub-chambers by a diversion structure, and the second hook structure can only be assembled with the first hook structure in an upward direction, so that the integrated stove of this embodiment has at least the following technical effects:

[0043] First, when the multiple burners on the left and right sides of the cooktop are working simultaneously, the fumes produced are collected by the corresponding smoke-gathering chambers. This reduces the possibility of fumes flowing between different chambers and prolonging their path, effectively improving the smoke extraction performance of the integrated cooktop. Furthermore, when only one of the burners on the left and right sides is working, the fumes produced are also collected by the corresponding smoke-gathering chambers as much as possible, reducing the possibility of fumes flowing into other chambers and prolonging their path, further enhancing the smoke extraction performance of the integrated cooktop.

[0044] Secondly, the first hook structure can limit the second hook structure, thereby limiting the flow divider structure. Furthermore, when assembling the second hook structure with the first hook structure, the flow divider structure as a whole can only move from bottom to top, so that the flow divider structure will not interfere with the top shell, thus enabling the smooth installation of the flow divider structure. Attached Figure Description

[0045] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0046] Figure 1 This is a schematic diagram of the structure of an integrated stove according to an embodiment of this application;

[0047] Figure 2 for Figure 1 A partial structural diagram of a Chinese integrated stove;

[0048] Figure 3 This is a schematic diagram of the diversion structure, part of the smoke hood head, and the connection of the mounting plate according to an embodiment of this application;

[0049] Figure 4 for Figure 3 A schematic diagram showing the connection between the mounting plate and the first latch structure;

[0050] Figure 5 for Figure 3 Rear view of the splitter structure;

[0051] Figure 6 for Figure 5 Partial sectional view of section AA in the middle;

[0052] Figure 7 for Figure 3 Front view of the split-type structure;

[0053] Figure 8 for Figure 3 Top view of the split-flow structure;

[0054] Figure 9 for Figure 3 Side view of the center splitter structure;

[0055] Figure 10 This is a schematic diagram of the structure of the hidden side panel of an integrated stove according to an embodiment of this application;

[0056] Figure 11 This is a schematic diagram of the structure of the hidden side panel of the integrated stove according to another embodiment of this application;

[0057] Figure 12 A schematic flowchart illustrating an assembly method for an integrated stove provided in this application embodiment;

[0058] Figure 13 A schematic flowchart illustrating an assembly method for an integrated stove provided in this application embodiment;

[0059] Figure 14 This is a flowchart illustrating an assembly method for an integrated stove provided in an embodiment of this application.

[0060] Explanation of icon numbers:

[0061] 1. Integrated cooktop; 10. Cooktop body; 20. Range hood head; 20A. Smoke collection chamber; 20B. Smoke collection sub-chamber; 21. Enclosure; 211. Front panel; 212. Back panel; 213. Side panel; 22. Top shell; 221. First shell; 222. Second shell; 223. Light panel; 23. First hook structure; 231. First hook component; 2311. Connecting body; 2312. Hook body; 23 13. Hook groove; 2314. Inlet; 24. Hook assembly; 30. Diversion structure; 31. Diversion surface; 32. Front side; 321. Smoke-facing surface; 322. Abutting surface; 323. Oil guiding surface; 33. Rear side; 34. Second hook structure; 341. Insertion piece; 3411. Insertion body; 3412. Reinforcing body; 35. Receiving cavity; 36. Inclined surface; 40. Oil cup; 50. Mounting plate.

[0062] The realization of the purpose, functional features and advantages of this application will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0063] To make the objectives, technical solutions, and advantages of this application clearer, the embodiments of this application will be described in further detail below with reference to the accompanying drawings.

[0064] Where the following description relates to the accompanying drawings, unless otherwise indicated, the same numbers in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this application as detailed in the appended claims.

[0065] In the description of this application, it should be understood that the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances. Furthermore, in the description of this application, unless otherwise stated, "multiple" refers to two or more. "And / or" describes the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, or B existing alone. The character " / " generally indicates that the preceding and following related objects are in an "or" relationship.

[0066] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of this application. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0067] Please see Figure 1 This application proposes an integrated stove 1. In this embodiment, the integrated stove 1 can integrate cooking, fume extraction and steaming / grilling functions, etc. This embodiment does not limit this.

[0068] Taking the integrated cooktop 1, which integrates cooking and fume extraction functions, as an example, please refer to the following: Figures 1 to 3 The integrated stove 1 in this embodiment includes a stove body 10, a range hood head 20, and a diversion structure 30.

[0069] The cooktop 10 is the main body of the integrated cooktop 1. The cooktop 10 may include components such as the casing, cooktop, and smoke extraction component. The cooktop may be installed on the upper part of the casing, and the smoke extraction component may be located inside the casing. The smoke extraction component includes a fan, which is used to communicate with the range hood head 20 to extract the oil fumes flowing into the range hood head 20 and then exhaust them outdoors.

[0070] The range hood head 20 has a smoke-collecting function. It is located above and connected to the cooktop 10, for example, by being fixedly connected to the cooktop 10's casing. The range hood head 20 has a smoke-collecting chamber 20A, which is connected to a fan. Under the operation of the fan, the smoke generated at the cooktop first flows into the smoke-collecting chamber 20A, then flows from the chamber to the fan, and finally the fan exhausts the smoke outdoors, preventing smoke from escaping indoors and affecting the user's health and experience. The range hood head 20 includes a top shell 22, which is located at the top of the range hood head 20 and forms part of the smoke-collecting chamber 20A.

[0071] The diversion structure 30 can be columnar, such as cylindrical or prismatic, to make its shape more regular and easier to manufacture. Furthermore, the diversion structure 30 can be made of metal, which has advantages such as better corrosion resistance, smooth and beautiful surface, and less adhesion of oil stains. Of course, the diversion structure 30 can also be made of plastic, which has advantages such as lower cost and lighter weight. This embodiment does not specifically limit the shape and material of the diversion structure 30, and the specific shape and material of the diversion structure 30 can be selected according to actual needs.

[0072] The diversion structure 30 guides and diverts the flue gas flowing into the smoke collection chamber 20A. The diversion structure 30 is located within the smoke collection chamber 20A and divides it into at least two smoke collection sub-chambers 20B, which are arranged along the left-right direction of the integrated stove 1. The number of diversion structures 30 can be one or more. For example, if there is only one diversion structure 30, it divides the smoke collection chamber 20A into two smoke collection sub-chambers 20B; or if there are two diversion structures 30, they are arranged alternately along the left-right direction of the integrated stove 1, dividing the smoke collection chamber 20A into three smoke collection sub-chambers 20B. This embodiment does not specifically limit the number of diversion structures 30.

[0073] The smoke collection chamber 20A has a first hook structure 23 on its sidewall. For example, the first hook structure 23 can be located on the front sidewall of the smoke collection chamber 20A along the front-rear direction of the integrated stove 1, or the second hook structure 34 can be located on the rear sidewall of the smoke collection chamber 20A. This embodiment does not limit this. The diversion structure 30 has a second hook structure 34. The first hook structure 23 can be assembled with the second hook structure 34, and the second hook structure 34 can be limited, for example, in the direction from back to front and / or from bottom to top of the integrated stove 1, so that the diversion structure 30 is relatively fixed in the smoke collection chamber 20A. It can be understood that after the second hook structure 34 is assembled with the first hook structure 23, the fixed connection between the diversion structure 30 and the sidewall of the smoke collection chamber 20A can be achieved by means of threaded connection or other methods.

[0074] The second hook structure 34 can only be assembled with the first hook structure 23 in the vertical direction of the integrated stove 1 from bottom to top, so as to avoid interference between the diversion structure 30 and the top shell 22 during the assembly process.

[0075] The technical solution of this application divides the smoke collection chamber 20A into at least two smoke collection sub-chambers 20B through the diversion structure 30, and the second hook structure 34 can only be assembled with the first hook structure 23 in an upward direction, so that the integrated stove 1 of this embodiment has at least the following technical effects:

[0076] First, when the multiple burners on the left and right sides of the cooktop 10 are working simultaneously, the fumes generated are collected by the corresponding smoke-collecting chambers 20B. This reduces the possibility of fumes flowing between each other and prolonging the flow path of the fumes, effectively improving the smoke extraction effect of the integrated cooktop 1. When only one of the multiple burners on the left and right sides of the cooktop 10 is working, the fumes generated are also collected by the corresponding smoke-collecting chambers 20B as much as possible, reducing the possibility of fumes flowing to other smoke-collecting chambers 20B and prolonging the flow path, effectively improving the smoke extraction effect of the integrated cooktop 1.

[0077] Secondly, the first hook structure 23 can limit the second hook structure 34, thereby limiting the diversion structure 30. Furthermore, when the second hook structure 34 and the first hook structure 23 are assembled, the diversion structure 30 can only move from bottom to top, so that the diversion structure 30 will not interfere with the top shell 22, thus enabling the installation of the diversion structure 30 to be completed smoothly.

[0078] Please refer to the following: Figures 3 to 4 In some embodiments, the first hook structure 23 includes a first hook member 231, which may be hook-shaped. The first hook member 231 is connected to the side wall of the smoke collecting chamber 20A. The first hook member 231 and the side wall of the smoke collecting chamber 20A may be an integral structure or separate structures; this embodiment does not impose any restrictions on this. The first hook member 231 and the side wall of the smoke collecting chamber 20A form a hook groove 2313, and the hook groove 2313 has a downwardly opening inlet 2314.

[0079] The second hook structure 34 is a snap-in component 341, which can be rectangular or L-shaped. The snap-in component 341 is connected to the diversion structure 30. The snap-in component 341 and the diversion structure 30 can be separate or integrated; this embodiment does not impose any restrictions. The snap-in component 341 can only extend into the inlet 2314 in the vertical direction of the integrated stove 1 from bottom to top, so as to snap into the hook groove 2313.

[0080] Thus, in this embodiment, the first hook structure 23 can limit the second hook structure 34 through the cooperation of the insert 341 and the hook groove 2313. That is, the groove wall of the hook groove 2313 is used to limit the insert 341, so as to achieve a good limiting effect while making the structure of the first hook structure 23 and the second hook structure 34 relatively simple and easy to manufacture.

[0081] Please see Figure 4 Furthermore, the first hook component 231 includes a connecting body 2311 and a hook body 2312. The connecting body 2311 is connected to the side wall of the smoke collection chamber 20A, therefore the connecting body 2311 is the part of the first hook component 231 used to connect with the smoke collection chamber 20A. The connecting body 2311 can first extend along the left-right direction of the integrated stove 1, and then bend forward.

[0082] The hook body 2312 is connected to the connecting body 2311, and the hook body 2312, the connecting body 2311, and the cavity sidewall of the smoke collecting chamber 20A cooperate to form a hook groove 2313. With this configuration, the hook body 2312 can cooperate with the connecting body 2311 and the cavity sidewall of the smoke collecting chamber 20A to form the hook groove 2313. Compared to a structure where the hook body 2312 itself directly forms the hook groove 2313, the structure of the hook body 2312 in this embodiment is simpler and uses less material.

[0083] Please refer to the following: Figures 4 to 5 Optionally, the first hook 231 includes at least two, such as two, three or four, etc., and at least two first hooks 231 are arranged at intervals in the left and right direction.

[0084] The engaging member 341 extends in a strip-like manner in the left-right direction and can engage with the hook slots 2313 of at least two first hooks. This improves the limiting effect of the first hook structure 23 and the second hook structure 34 in the left-right direction, making the diversion structure 30 more stable within the smoke collection chamber 20A and less prone to displacement. Furthermore, the strip-like engaging member 341 can engage with the hook slots 2313 of at least two first hooks simultaneously, making operation convenient.

[0085] Of course, this application is not limited to this. In other embodiments, the insert 341 may include at least two inserts, and the at least two inserts 341 may be arranged at intervals in the left and right direction, with one insert 341 corresponding to the hook groove 2313 of the first hook.

[0086] Please refer to the following: Figures 4 to 5 In some structural forms, the first hook structure 23 includes multiple hook groups 24, such as two, three or four, etc. The multiple hook groups 24 are arranged at intervals in the vertical direction, and the hook group 24 includes at least two first hook pieces 231 arranged at intervals in the horizontal direction.

[0087] The locking element 341 includes multiple locking elements 341, which are arranged at intervals in the vertical direction, and each locking element 341 is locked into the hook groove 2313 of at least two first hooks of a hook assembly 24. In this way, the limiting effect of the first hook structure 23 and the second hook structure 34 in the vertical direction is improved, making the diversion structure 30 more stable in the smoke collection chamber 20A and less prone to displacement.

[0088] Please refer to the following: Figures 5 to 6In some embodiments, the diversion structure 30 forms an open receiving cavity 35, that is, the diversion structure 30 is hollow, and the snap-fit ​​member 341 is received within the receiving cavity 35. It is understood that the snap-fit ​​hook body 2312 can extend into the receiving cavity 35 through the open so that the snap-fit ​​member 341 can subsequently snap into the snap-fit ​​groove 2313.

[0089] The snap-fit ​​part 341 includes a snap-fit ​​body 3411 and a reinforcing body 3412. The snap-fit ​​body 3411 is the part of the snap-fit ​​part 341 that snaps into the hook groove 2313. Specifically, the snap-fit ​​body 3411 extends in the left-right direction and can snap into the hook groove 2313 of at least two first hooks.

[0090] The reinforcing body 3412 is connected to the snap-in body 3411 and is set at an angle to the snap-in body 3411, for example, when the angle is 90 degrees, the two can fit together to form an L-shaped structure. The reinforcing body 3412 extends in the left and right direction, and the two opposite ends of the reinforcing body 3412 in the left and right direction are respectively connected to the two cavity sidewalls of the receiving cavity 35. In this way, the reinforcing body 3412 can be used to improve the overall strength of the diversion structure 30, and avoid structural deformation caused by poor structural strength of the diversion structure 30.

[0091] Please see Figure 3 In some embodiments, the first hook structure 23 is disposed on the rear side wall of the smoke collection chamber 20A, and the second hook structure 34 moves from front to back in the front-to-back direction of the integrated stove 1 to abut against the rear side wall of the smoke collection chamber 20A, and then assembles with the first hook structure 23 from bottom to top. This arrangement can prevent interference between the diversion structure 30 and the stove body 10 when the second hook structure 34 moves from front to back, thereby facilitating the installation of the diversion structure 30 in the smoke collection chamber 20A.

[0092] Optionally, the first hook structure 23 is disposed on the front side wall of the smoke collection chamber 20A, and the second hook structure 34 moves from back to front in the front-rear direction of the integrated stove 1 to abut against the front side wall of the smoke collection chamber 20A, and then is assembled with the first hook structure 23 from bottom to top. In this way, when the second hook structure 34 moves from back to front, interference between the diversion structure 30 and the stove body 10 can be avoided, thereby facilitating the installation of the diversion structure 30 in the smoke collection chamber 20A.

[0093] In some embodiments, the first hook structure 23 includes a second hook member (not shown in the figure), which is connected to the side wall of the smoke collection chamber 20A. The second hook structure 34 is a first slot (not shown in the figure) provided in the diversion structure 30, and the second hook member is hooked into the first slot. Thus, the second hook structure 34 in this embodiment is formed as a slot structure in the diversion structure 30, so that the second hook member can directly cooperate with the first slot to achieve assembly. The structure is simple and has a small number of structural components.

[0094] In some embodiments, the first hook structure 23 is a second slot (not shown in the figure) provided on the side wall of the smoke collection chamber 20A, and the second hook structure 34 is a third hook member (not shown in the figure). The third hook member is connected to the diversion structure 30 and is hooked into the second slot. Thus, in this embodiment, the first hook structure 23 is formed as a groove structure in the side wall of the smoke collection chamber 20A, so that the third hook member can directly cooperate with the second slot to achieve assembly. The structure is simple and has a small number of structural components.

[0095] Please see Figure 3 In some embodiments, the integrated stove 1 also includes a mounting plate 50, which may be rectangular in shape and may be made of metal or plastic. This embodiment does not limit this.

[0096] The mounting plate 50 and the smoke machine head 20 are separately configured. Specifically, the mounting plate 50 is connected to the side wall of the smoke collection chamber 20A. The mounting plate 50 is provided with a first hook structure 23, and is integral with the first hook structure 23. In this way, the mounting plate 50 can be formed separately and then connected to the side wall of the smoke collection chamber 20A, thus eliminating the need to form the first hook structure 23 on the side wall of the smoke collection chamber 20A, which is convenient for manufacturing and production.

[0097] Please refer to the following: Figures 2 to 3 In some embodiments, the surface of the diversion structure 30 facing the top shell 22 is in contact with the top shell 22. This prevents flue gas from flowing in through the gap between the surface of the diversion structure 30 facing the top shell 22 and the top shell 22, thereby preventing oil stains from forming between the surface of the diversion structure 30 facing the top shell 22 and the top shell 22.

[0098] Furthermore, the top shell 22 includes a first shell 221, a second shell 222, and a light panel 223. The first shell 221 extends along the front-rear direction of the integrated stove 1. The first shell 221 may be provided with a shelf, which is configured to place items such as bottles, jars, bowls, and plates, so that users can easily pick them up and put them down without having to move them back and forth.

[0099] The second housing 222 is located below the first housing 221 and is connected to the first housing 221. The second housing 222 extends downward in a front-to-back direction in the integrated stove 1.

[0100] The lamp panel 223 has a light-emitting function. It is understood that the lamp panel 223 includes a panel and a light-emitting element. The light-emitting element is housed within the panel and emits light that passes through the panel, thus achieving light emission. The lamp panel 223 is connected to the surface of the second housing 222 facing the diversion structure 30. Thus, the lamp panel 223 is angled to the countertop of the stove, allowing the light to illuminate the countertop as much as possible and reducing the generation of shadows.

[0101] The surface of the diversion structure 30 facing the lamp panel 223 is an inclined surface 36, and the inclined surface 36 is in contact with the lamp panel 223. In this way, it is possible to prevent flue gas from flowing in through the gap between the inclined surface 36 and the lamp panel 223, thereby preventing oil stains from forming between the inclined surface 36 and the lamp panel 223.

[0102] Please see Figure 2 In some embodiments, the diversion structure 30 has diversion surfaces 31 formed on opposite sides in the left-right direction, and the diversion surfaces 31 form part of the wall surface of the smoke collection chamber 20B. It can be understood that the flue gas flowing into the smoke machine head 20 is guided and diverted by the diversion surfaces 31 so that the flue gas flows to the two smoke collection chambers 20B located on the left and right sides of the diversion structure 30 respectively.

[0103] The diversion surface 31 has a front edge and a rear edge along the front-to-back direction, with the front edge forming the opening of the smoke-collecting chamber 20B. In the direction from back to front of the integrated stove 1, the distance between the two diversion surfaces 31 in the left-to-right direction decreases. Thus, the distance between the front edges of the two diversion surfaces 31 in the left-to-right direction is smaller than the distance between the rear edges of the two diversion surfaces 31 in the left-to-right direction. This allows for an increase in the opening area of ​​at least one smoke-collecting chamber 20B, thereby increasing the flow rate of smoke into the smoke-collecting chamber 20B, improving the smoke collection effect, and effectively reducing the probability of smoke escape.

[0104] In this way, the opening area of ​​at least one smoke collection chamber 20B can be enlarged, thereby increasing the flow rate of smoke into the smoke collection chamber 20B, improving the smoke collection effect of the smoke machine head 20, and effectively reducing the probability of smoke escape.

[0105] Please see Figure 2Furthermore, in the direction from back to front of the integrated stove 1, one of the two diversion surfaces 31 is inclined towards the other. For example, one of the two diversion surfaces 31 can be parallel to the front-back direction, while the other is inclined towards the diversion surface 31 that is parallel to the front-back direction. With this arrangement, by having one of the two diversion surfaces 31 inclined towards the other, the distance between the two diversion surfaces 31 in the left-right direction can be reduced in the direction from back to front of the integrated stove 1, resulting in a simple structure that is easy to manufacture and process.

[0106] Of course, the diversion surface 31 can be arranged in an arc shape, that is, the diversion surface 31 can be curved and extended to the other side in the direction from back to front of the integrated stove 1. It is also possible to make the distance between the diversion surfaces 31 in the left and right directions decrease in the direction from back to front of the integrated stove 1. This embodiment does not limit this.

[0107] Please see Figure 8 Furthermore, both diversion surfaces 31 are angled to the front-rear direction of the integrated stove 1, so that both diversion surfaces 31 are inclined. In this way, the opening area of ​​at least two smoke-collecting chambers 20B can be enlarged, thereby effectively increasing the flow rate of smoke into the smoke-collecting chambers 20B, further improving the smoke-collecting effect of the range hood head 20, and better reducing the probability of smoke escape.

[0108] Please see Figure 8 Optionally, the angle between the diversion surface 31 and the left-right direction is α, and the angle α is not greater than 80 degrees. This setting is beneficial to increasing the flow rate of flue gas into the flue gas collecting chamber 20B. It can be understood that if the angle is greater than 80 degrees, the inclination of the diversion surface 31 is too small, which cannot allow the opening area of ​​the flue gas collecting chamber 20B to be expanded well, resulting in a smaller flow rate of flue gas into the flue gas collecting chamber 20B.

[0109] For example, the specific value of the included angle can be 10 degrees, 20 degrees, 30 degrees, 40 degrees, 50 degrees, 60 degrees, 70 degrees and 80 degrees, etc., and this embodiment does not impose specific limitations on it.

[0110] Please refer to the following: Figures 10 to 11 In some embodiments, the range hood head 20 includes a casing 21, which includes a front panel 211 and a back panel 212. Both the front panel 211 and the back panel 212 are plate-like structures and are square in shape to facilitate manufacturing and processing due to their regularity. The front panel 211 and the back panel 212 are arranged opposite to each other in the front-rear direction of the integrated stove 1. The opposite sides of the back panel 212 in the vertical direction are connected to the top shell 22 and the stove body 10, respectively. Furthermore, the back panel 212, the diversion surface 31, the front panel 211, and the top shell 22 cooperate to form the smoke collection chamber 20B.

[0111] The front side 32 of the diversion structure 30 abuts against the front panel 211 in the front-to-back direction. This helps to reduce the probability of smoke in one smoke collection chamber 20B flowing from the gap between the front side 32 and the front panel 211 to another smoke collection chamber 20B, thus ensuring a shorter smoke flow path and improving the smoke exhaust effect of the integrated stove 1.

[0112] The rear side 33 of the diversion structure 30 abuts against the rear back panel 212 in the front-to-back direction. This helps to reduce the probability of smoke in one smoke collection chamber 20B flowing from the gap between the rear side 33 and the rear back panel 212 to another smoke collection chamber 20B, ensuring that the flow path of the smoke is shortened and improving the smoke exhaust effect of the integrated stove 1.

[0113] Thus, in this embodiment, the risk of smoke escaping through the gap between the front side 32 and the front panel 211 and the gap between the rear side 33 and the back panel 212 can be effectively reduced, ensuring a shorter smoke flow path and improving the smoke exhaust effect of the integrated stove 1.

[0114] Optionally, the casing 21 of the smoke hood head 20 also includes a side plate 213, which is connected between the front panel 211 and the rear panel 212, and cooperates with at least the front panel 211, the diversion surface 31 and the rear panel 212 to form a smoke collection chamber 20B, thereby improving the smoke collection effect.

[0115] Please refer to the following: Figures 10 to 11 Furthermore, the front side 32 is fitted to the front panel 211. This ensures a tight fit between the front side 32 and the front panel 211, more effectively preventing smoke from flowing through the gap between the front side 32 and the front panel 211 into the other smoke collection chamber 20B.

[0116] Alternatively, the rear side 33 can be fitted to the rear panel. This ensures a tight fit between the rear side 33 and the rear back panel 212, more effectively preventing smoke from flowing through the gap between the rear side 33 and the rear back panel 212 into the other smoke collection chamber 20B.

[0117] Alternatively, the front side 32 can be fitted to the front panel 211, and the rear side 33 can be fitted to the rear panel. This ensures a tight fit between the front side 32 and the front panel 211, effectively preventing smoke from flowing through the gap between the front side 32 and the front panel 211 to the other smoke collection chamber 20B. At the same time, a tight fit between the rear side 33 and the rear back panel 212 further reduces the likelihood of smoke flowing through the gap between the rear side 33 and the rear back panel 212 to the other smoke collection chamber 20B.

[0118] Based on the adhesion between the front side 32 and the front panel 211, and the adhesion between the rear side 33 and the rear panel, please refer to the following: Figures 10 to 11Furthermore, in the front-to-back direction, the thickness of the diversion structure 30 is equal to the distance between the front panel 211 and the rear panel 212, so that the front side 32 can fit against the front panel 211 and the rear side 33 can fit against the rear panel 212.

[0119] Understandably, the diversion structure 30 can be installed on the rear panel 212 first, and then the front panel 211 can be placed on the front side of the diversion structure 30. With the thickness of the diversion structure 30 equal to the distance between the front panel 211 and the rear panel 212, after the front panel 211 is placed, it will directly fit against the front side 32, and the rear panel 212 will directly fit against the rear side 33, which is convenient to operate.

[0120] Of course, this application is not limited to this. In other embodiments, the thickness of the diversion structure 30 can be set to be greater than the distance between the front panel 211 and the rear panel 212, and an interference fit can be made between the diversion structure 30 and the gap between the front panel 211 and the rear panel 212, so that the front panel 211 fits with the front side 32 and the rear panel 212 fits with the rear side 33.

[0121] Please refer to the following: Figures 9 to 11 In some embodiments, the front side 32 includes a smoke-receiving surface 321 and an abutting surface 322. The smoke-receiving surface 321 is higher than the front panel 211 along the vertical direction of the integrated stove 1. It can be understood that when the smoke flows to the smoke collection chamber 20A, part of it will flow to the smoke-receiving surface 321. Therefore, the smoke-receiving surface 321 is the part of the front side 32 that receives the smoke.

[0122] The abutting surface 322 is located below the smoke-facing surface 321 in the vertical direction and abuts against the front panel 211, for example, it is in contact with the front panel 211. Therefore, the abutting surface 322 is the part of the front side 32 that abuts against the front panel 211.

[0123] In the front-to-back direction, the contact surface 322 is blocked by the front panel 211. In the vertical direction, the height of the contact surface 322 can be lower than or equal to the height of the front panel 211, so that the front panel 211 can block the contact surface 322.

[0124] Understandably, given that the contact surface 322 can abut against the front panel 211, along the front-back direction, the contact surface 322 will be closer to the front panel 211 than the smoke-facing surface 321. Based on this, the front panel 211 can be used to shield the contact surface 322, resulting in a shorter distance between the user's viewing angle and the diversion structure 30 along the front-back direction when using the integrated stove 1. Furthermore, the shielding of the contact surface 322 by the front panel 211 reduces the area of ​​the diversion structure 30 exposed within the smoke-collecting chamber 20A, making the integrated stove 1 more aesthetically pleasing overall.

[0125] Please refer to the following: Figures 9 to 11 In some embodiments, the front side 32 also includes an oil guiding surface 323, which connects the smoke-receiving surface 321 and the contact surface 322 in a vertical direction. The oil guiding surface 323 extends downward at an angle in the direction from back to front of the integrated stove 1.

[0126] Understandably, after the flue gas flows through the smoke-facing surface 321, it will produce oil stains on the smoke-facing surface 321. Under its own gravity, the oil stains will flow to the oil-guiding surface 323, and then, guided by the oil-guiding surface 323, the oil stains will flow to the diversion surfaces 31 on both sides of the diversion structure 30, and then continue to flow downwards. In this way, oil stains can be prevented from adhering to the smoke-facing surface 321.

[0127] Please refer to the following: Figures 9 to 11 Optionally, the angle between the smoke-facing surface 321 and the oil-guiding surface 323 is β, and the angle β is not less than 120 degrees. This ensures that the oil-guiding surface 323 effectively guides the oil, allowing it to flow downwards. Understandably, if the angle β is less than 120 degrees, the inclination of the oil-guiding surface 323 is too small, failing to effectively guide the oil downwards, leading to oil accumulation on the oil-guiding surface 323.

[0128] For example, the specific value of the included angle can be 120 degrees, 130 degrees, 140 degrees, 150 degrees, 160 degrees, 170 degrees, etc., and this embodiment does not limit it.

[0129] Please see Figure 11 Furthermore, along the vertical direction, the upper edge of the contact surface 322 is flush with the upper edge of the front panel 211. In this way, while ensuring that the contact surface 322 is blocked by the front panel 211, the height of the contact surface 322 can be increased as much as possible, and increased to the point that the upper edge of the contact surface 322 is flush with the upper edge of the front panel 211, thereby effectively reducing the probability of smoke escaping from the gap between the front side 32 of the diversion structure 30 and the front panel 211 into another smoke collection chamber 20B.

[0130] Please refer to the following: Figures 9 to 11 In some embodiments, the integrated stove 1 also includes an oil cup 40, which is located at the bottom of the casing of the stove body 10. It is understood that after the oil flows to the diversion surface 31, it will continue to flow downwards due to its own gravity and eventually flow to the oil cup 40, where it will be collected, thus preventing the oil cup 40 from flowing to other places inside the casing.

[0131] In another aspect, this application proposes a method for assembling an integrated stove 1. The specific structure of the integrated stove 1 is as described in the above embodiments. Since the assembly method of this integrated stove 1 adopts all the technical solutions of all the above embodiments, it has at least all the beneficial effects brought about by the technical solutions of the above embodiments, which will not be repeated here.

[0132] Please see Figure 12 This is a flowchart illustrating an assembly method for an integrated stove 1 provided in an embodiment of this application. Figure 12 As shown, the assembly method of this application embodiment may include the following steps S101-S103.

[0133] S101, connect the range hood head 20 to the cooktop body 10.

[0134] Specifically, the connection between the range hood head 20 and the cooktop body 10 can be achieved by using connection methods such as threaded connection and snap-fit ​​connection. For example, the back plate 212 of the range hood head 20, which is already connected to the top plate, can be fixedly connected to the cooktop body 10 by using threaded connection, snap-fit ​​connection or other methods, so that the range hood head 20 and the cooktop body 10 are connected.

[0135] S102, the second hook structure 34 is assembled with the first hook structure 23 in the direction from bottom to top of the integrated stove 1.

[0136] Specifically, the diversion structure 30 can be pushed from bottom to top, causing the second hook structure 34 provided on the diversion structure 30 to move from bottom to top and be assembled with the first hook structure 23. Thus, the first hook structure 23 can limit the second hook structure 34, thereby limiting the diversion structure 30.

[0137] S103, the diversion structure 30 is fixedly installed in the smoke collection chamber 20A so that the smoke collection chamber 20A is divided into at least two smoke collection sub-chambers 20B.

[0138] Specifically, after the first hook structure 23 and the second hook structure 34 are assembled and the second hook structure 34 can be limited, the diversion structure 30 and the side wall of the smoke collection chamber 20A can be fixedly connected by means of threaded connection, snap-fit ​​connection, etc. For example, the bottom of the diversion structure 30 along the vertical direction of the integrated stove 1 has a connecting part, the connecting part is provided with a first threaded hole, the side wall of the smoke collection chamber 20A is provided with a second threaded hole, and a threaded connector is sequentially inserted into the first threaded hole and the second threaded hole so that the diversion structure 30 can be fixedly installed in the smoke collection chamber 20A.

[0139] In this embodiment, by assembling the second hook structure 34 with the first hook structure 23 along the upward direction of the integrated stove 1, interference between the diversion structure 30 and the top shell 22 can be avoided during the assembly process. This facilitates the installation of the diversion structure 30 in the smoke collection chamber 20A. Furthermore, the smoke collection chamber 20A is divided into at least two smoke collection sub-chambers 20B, which reduces the possibility of smoke cross-contamination and prolongs the flow path of the smoke, effectively improving the smoke exhaust effect of the integrated stove 1.

[0140] Please see Figure 13This is a flowchart illustrating an assembly method for an integrated stove 1 provided in an embodiment of this application. Figure 13 As shown, the assembly method of this application embodiment may include the following steps S201-S204.

[0141] S201, connect the range hood head 20 to the cooktop body 10.

[0142] Specifically, the connection between the range hood head 20 and the cooktop body 10 can be achieved by using connection methods such as threaded connection and snap-fit ​​connection. For example, the back plate 212 of the range hood head 20, which is already connected to the top plate, can be fixedly connected to the cooktop body 10 by using threaded connection, snap-fit ​​connection or other methods, so that the range hood head 20 and the cooktop body 10 are connected.

[0143] S202, the diversion structure 30 is moved along the integrated stove 1 from front to back until the second hook structure 34 abuts against the rear side wall of the smoke collection chamber 20A.

[0144] Specifically, moving the diversion structure 30 along the front to back direction of the integrated stove 1, compared to moving the diversion structure 30 along the bottom to top direction of the integrated stove 1, can avoid interference between the diversion structure 30 and the stove body 10, thereby facilitating the installation of the diversion structure 30 in the smoke collection chamber 20A.

[0145] S203, the second hook structure 34 is assembled with the first hook structure 23 in the direction from bottom to top of the integrated stove 1.

[0146] Specifically, the diversion structure 30 can be pushed from bottom to top, causing the second hook structure 34 provided on the diversion structure 30 to move from bottom to top and be assembled with the first hook structure 23. Thus, the first hook structure 23 can limit the second hook structure 34, thereby limiting the diversion structure 30.

[0147] S204, the diversion structure 30 is fixedly installed in the smoke collection chamber 20A so that the smoke collection chamber 20A is divided into at least two smoke collection sub-chambers 20B.

[0148] Specifically, after the first hook structure 23 and the second hook structure 34 are assembled and the second hook structure 34 can be limited, the diversion structure 30 and the side wall of the smoke collection chamber 20A can be fixedly connected by means of threaded connection, snap-fit ​​connection, etc. For example, the bottom of the diversion structure 30 along the vertical direction of the integrated stove 1 has a connecting part, the connecting part is provided with a first threaded hole, the side wall of the smoke collection chamber 20A is provided with a second threaded hole, and a threaded connector is sequentially inserted into the first threaded hole and the second threaded hole so that the diversion structure 30 can be fixedly installed in the smoke collection chamber 20A.

[0149] In this embodiment, the second hook structure 34 can be moved from front to back to avoid interference between the diversion structure 30 and the stove body 10. Then, the second hook structure 34 is assembled with the first hook structure 23 along the bottom to top direction of the integrated stove 1. This avoids interference between the diversion structure 30 and the top shell 22 during the assembly process, thereby facilitating the installation of the diversion structure 30 in the smoke collection chamber 20A. Furthermore, the smoke collection chamber 20A is divided into at least two smoke collection sub-chambers 20B, which can reduce the possibility of smoke cross-contamination and prolong the flow path of the smoke, effectively improving the smoke exhaust effect of the integrated stove 1.

[0150] Please see Figure 14 This is a flowchart illustrating an assembly method for an integrated stove 1 provided in an embodiment of this application. Figure 14 As shown, the assembly method of this application embodiment may include the following steps S301-S304.

[0151] S301, connect the range hood head 20 to the cooktop body 10.

[0152] Specifically, the connection between the range hood head 20 and the cooktop body 10 can be achieved by using connection methods such as threaded connection and snap-fit ​​connection. For example, the back plate 212 of the range hood head 20, which is already connected to the top plate, can be fixedly connected to the cooktop body 10 by using threaded connection, snap-fit ​​connection or other methods, so that the range hood head 20 and the cooktop body 10 are connected.

[0153] S302, the diversion structure 30 is moved along the integrated stove 1 from back to front until the second hook structure 34 abuts against the front side wall of the smoke collection chamber 20A.

[0154] Specifically, moving the diversion structure 30 along the integrated stove 1 from back to front, compared to moving the diversion structure 30 along the integrated stove 1 from bottom to top, can avoid interference between the diversion structure 30 and the stove body 10, thus facilitating the installation of the diversion structure 30 in the smoke collection chamber 20A.

[0155] S303, the second hook structure 34 is assembled with the first hook structure 23 in the direction from bottom to top of the integrated stove 1.

[0156] Specifically, the diversion structure 30 can be pushed from bottom to top, causing the second hook structure 34 provided on the diversion structure 30 to move from bottom to top and be assembled with the first hook structure 23. Thus, the first hook structure 23 can limit the second hook structure 34, thereby limiting the diversion structure 30.

[0157] S304, the diversion structure 30 is fixedly installed in the smoke collection chamber 20A so that the smoke collection chamber 20A is divided into at least two smoke collection sub-chambers 20B.

[0158] Specifically, after the first hook structure 23 and the second hook structure 34 are assembled and the second hook structure 34 can be limited, the diversion structure 30 and the side wall of the smoke collection chamber 20A can be fixedly connected by means of threaded connection, snap-fit ​​connection, etc. For example, the bottom of the diversion structure 30 along the vertical direction of the integrated stove 1 has a connecting part, the connecting part is provided with a first threaded hole, the side wall of the smoke collection chamber 20A is provided with a second threaded hole, and a threaded connector is sequentially inserted into the first threaded hole and the second threaded hole so that the diversion structure 30 can be fixedly installed in the smoke collection chamber 20A.

[0159] In this embodiment, the second hook structure 34 can be moved from back to front to avoid interference between the diversion structure 30 and the stove body 10. Then, the second hook structure 34 is assembled with the first hook structure 23 along the bottom to top direction of the integrated stove 1. This avoids interference between the diversion structure 30 and the top shell 22 during the assembly process, thereby facilitating the installation of the diversion structure 30 in the smoke collection chamber 20A. Furthermore, the smoke collection chamber 20A is divided into at least two smoke collection sub-chambers 20B, which reduces the possibility of smoke cross-contamination and prolongs the flow path of the smoke, effectively improving the smoke exhaust effect of the integrated stove 1.

[0160] In the accompanying drawings of this embodiment, the same or similar reference numerals correspond to the same or similar components. In the description of this application, it should be understood that if terms such as "upper," "lower," "left," and "right" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, they are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms used to describe positional relationships in the accompanying drawings are only for illustrative purposes and should not be construed as limiting this patent. For those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.

[0161] The above are merely preferred embodiments of this application and are not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. An integrated stove, characterized in that, include: stove body; The range hood head is located above the stove body and connected to the stove body. The range hood head has a smoke collection chamber and includes a top shell. The top shell forms part of the smoke collection chamber. The side wall of the smoke collection chamber is provided with a first hook structure. as well as A diversion structure is provided in the smoke collection chamber and divides the smoke collection chamber into at least two smoke collection sub-chambers. The at least two smoke collection sub-chambers are arranged along the left and right directions of the integrated stove. The diversion structure is provided with a second hook structure. The second hook structure can only be assembled with the first hook structure in the vertical direction of the integrated stove from bottom to top, so as to avoid interference between the diversion structure and the top shell during the assembly process.

2. The integrated stove as described in claim 1, characterized in that, The first hook structure includes a first hook member, which is connected to the side wall of the smoke collection chamber and cooperates with the side wall of the smoke collection chamber to form a hook groove, and the hook groove has an inlet opening downward. The second hook structure is a snap-in component, which is connected to the diversion structure and can only be inserted into the inlet in the vertical direction of the integrated stove from bottom to top to snap into the hook groove.

3. The integrated stove as described in claim 2, characterized in that, The first hook component includes: The connecting body is connected to the side wall of the smoke collection chamber; and The hook body is connected to the connecting body, and cooperates with the connecting body and the cavity sidewall of the smoke collection chamber to form the hook groove.

4. The integrated stove as described in claim 2, characterized in that, The first hook component includes at least two, and the at least two first hook components are arranged at intervals along the left-right direction; The locking member extends in the left-right direction in a strip shape and can be locked into the hook slots of at least two of the first hooks.

5. The integrated stove as described in claim 4, characterized in that, The first hook structure includes multiple hook groups, which are arranged at intervals along the vertical direction. Each hook group includes at least two first hook members arranged at intervals along the horizontal direction. The snap-fit ​​component includes multiple components, and each snap-fit ​​component is snapped into the hook slot of at least two first hooks of one hook group.

6. The integrated stove as described in claim 4, characterized in that, The diversion structure forms an open receiving cavity; the snap-fit ​​member is received within the receiving cavity and includes: The body is inserted into the slots of at least two of the first hooks; and The reinforcing body is connected to the snap-in body and is set at an angle to the snap-in body. The two ends of the reinforcing body that are opposite to each other along the left and right directions are respectively connected to the two cavity sidewalls opposite to the receiving cavity.

7. The integrated stove as described in claim 1, characterized in that, The first hook structure is disposed on the rear side wall of the smoke collection chamber, and the second hook structure moves from front to back in the front-to-back direction of the integrated stove to abut against the rear side wall of the smoke collection chamber, and then is assembled with the first hook structure from bottom to top; or, The first hook structure is located on the front side wall of the smoke collection chamber, and the second hook structure moves from back to front in the front-back direction of the integrated stove to abut against the front side wall of the smoke collection chamber, and then is assembled with the first hook structure from bottom to top.

8. The integrated stove as described in claim 1, characterized in that, The first hook structure includes a second hook member, which is connected to the side wall of the smoke collection chamber. The second hook structure is a first slot located within the diversion structure, and the second hook member is hooked into the first slot; or, The first hook structure is a second slot provided on the side wall of the smoke collection chamber, and the second hook structure is a third hook member. The third hook member is connected to the diversion structure and is hooked into the second slot.

9. The integrated stove as described in claim 1, characterized in that, Also includes: The mounting plate is connected to the side wall of the smoke collection chamber. The mounting plate is provided with the first hook structure and is an integral structure with the first hook structure.

10. The integrated stove as described in claim 1, characterized in that, The surface of the diversion structure facing the top shell is in contact with the top shell.

11. The integrated stove as described in claim 10, characterized in that, The top shell includes: The first housing extends along the front-rear direction of the integrated stove; The second housing is located below the first housing and extends downward at an angle in the direction from front to back of the integrated stove; and The lamp panel is connected to the plate surface of the second housing facing the diversion structure; The surface of the diversion structure facing the lamp panel is inclined, and the inclined surface is in contact with the lamp panel.

12. The integrated stove as described in any one of claims 1-11, characterized in that, The diversion structure has diversion surfaces on both opposite sides in the left-right direction, and the diversion surfaces form part of the wall surface of the smoke collection chamber. In the integrated stove, the distance between the two diversion surfaces decreases along the left-right direction in the direction from back to front.

13. The integrated stove as described in claim 12, characterized in that, In the direction from back to front of the integrated stove, one of the two diversion surfaces is inclined toward the other.

14. The integrated stove as described in claim 12, characterized in that, The range hood head also includes a casing, the casing comprising: Front panel; and The back panel is disposed opposite to the front panel in the front-rear direction of the integrated stove, and is connected to the top shell and the stove body on opposite sides in the up-down direction, respectively. The back panel, together with the diversion surface, the front panel and the top shell, forms the smoke collection chamber. The front side of the diversion structure abuts against the front panel along the front-rear direction, and the rear side abuts against the rear panel along the front-rear direction.

15. The integrated stove as described in claim 14, characterized in that, The front side is fitted to the front panel; and / or, The rear side panel is fitted to the rear back panel.

16. A method for assembling an integrated stove as described in any one of claims 1-15, characterized in that, The assembly method includes: Connect the range hood head to the cooktop; Assemble the second hook structure with the first hook structure along the bottom-up direction of the integrated stove; The diversion structure is fixedly installed inside the smoke collection chamber so that the smoke collection chamber is divided into at least two smoke collection sub-chambers.

17. The assembly method as described in claim 16, characterized in that, Before the step of assembling the second hook structure with the first hook structure along the upward direction of the integrated stove, the method further includes: Move the diversion structure along the integrated stove from front to back until the second hook structure abuts against the rear wall of the smoke collection chamber; or, Move the diversion structure along the integrated stove from back to front until the second hook structure abuts against the front side wall of the smoke collection chamber.