Integrated cooker

By using a diversion structure in the integrated stove to divide the smoke cavity into multiple smoke cavity, the problem of low smoke exhaust efficiency of the integrated stove is solved, and more efficient smoke collection and emission is achieved, improving user health and user experience.

CN223036473UActive Publication Date: 2025-06-27HANDAN MIDEA INTELLIGENT KITCHEN ELECTRIC MFG CO LTD
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Patent Information

Application Number
CN202421795167.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-26
Publication Date
2025-06-27
Estimated Expiration
2034-07-26

AI Technical Summary

Technical Problem

The integrated stove has low smoke exhaust efficiency, which causes oil smoke to be unable to be discharged from the kitchen to the outdoors in time, which has adverse effects on the user's physical health.

Method used

An integrated stove is designed, using a diversion structure to divide the smoke-closing cavity into at least two smoke-closing cavity, and a diversion surface is set in the left and right directions so that the smoke gas can be more effectively closed and guided to the smoke exhaust port.

Benefits of technology

Through the design of the diverting structure, it can effectively reduce the inter-traffic between flue gases and the extension of flow paths, improve the smoke exhaust efficiency of the integrated stove, reduce the chance of flue gases escaping, and improve user health and user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an integrated cooker which comprises a cooker body, a range hood head and a flow dividing structure, the range hood head is located above the cooker body and connected with the cooker body, the range hood head is provided with a smoke gathering cavity, 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 cooker. Flow dividing surfaces are formed on the two opposite sides of the flow dividing structure in the left-right direction, the flow dividing surfaces form part of the wall surface of the smoke gathering sub-cavity, and the distance between the two flow dividing surfaces in the left-right direction is reduced in the back-to-front direction of the integrated cooker. 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 technical field of household appliances, and particularly to an integrated range hood. Background Art

[0002] With the development of technology, people's living standards have improved, and the use of household appliances such as integrated range hoods has become more and more common. An integrated range hood is a kitchen appliance that combines multiple functions such as a range hood and a gas stove. It has the advantages of saving space, energy conservation, low consumption, and environmental protection.

[0003] In the related art, the smoke exhaust efficiency of the integrated range hood is relatively low, resulting in the inability of the oil fume to be discharged from the kitchen to the outside in a timely manner, which has an adverse impact on the health of users and affects the user experience. Therefore, how to effectively improve the smoke exhaust efficiency of the integrated range hood has become an urgent problem to be solved. Utility Model Content

[0004] The embodiments of this application provide an integrated range hood that can improve the smoke exhaust efficiency of the integrated range hood.

[0005] The embodiments of this application provide an integrated range hood, which includes a range hood body, a smoke head, and a flow splitting structure. The smoke head is located above the range hood body and is connected to the range hood body. The smoke head has a smoke gathering cavity.

[0006] The flow splitting structure is arranged in the smoke gathering cavity and divides the smoke gathering cavity into at least two smoke gathering sub-cavities. At least two of the smoke gathering sub-cavities are arranged along the left-right direction of the integrated range hood.

[0007] Wherein, flow splitting surfaces are formed on both opposite sides of the flow splitting structure in the left-right direction. The flow splitting surfaces constitute part of the wall surfaces of the smoke gathering sub-cavities, and in the direction from the rear to the front of the integrated range hood, the distance between the two flow splitting surfaces along the left-right direction is set to decrease.

[0008] In some embodiments, in the direction from the rear to the front of the integrated range hood, one of the two flow splitting surfaces is inclined towards the other.

[0009] In some embodiments, both of the two flow splitting surfaces form an angle with the front-rear direction of the integrated range hood, so that both of the two flow splitting surfaces are inclined.

[0010] In some embodiments, the angle between the flow splitting surface and the left-right direction is not greater than 80 degrees.

[0011] In some embodiments, the smoke head includes a front panel and a rear panel.

[0012] The rear panel is disposed opposite to the front panel in the front-rear direction of the integrated stove, and cooperates with at least the diversion surface and the front panel to define the smoke collection sub-chamber;

[0013] Wherein, the front side surface of the diversion structure in the front-rear direction abuts against the front panel, and the rear side surface in the front-rear direction abuts against the rear panel.

[0014] In some embodiments, the front side surface fits with the front panel; and / or,

[0015] The rear side surface fits with the rear panel.

[0016] In some embodiments, in the front-rear direction, the thickness of the diversion structure is equal to the distance between the front panel and the rear panel, so that the front side surface can fit with the front panel, and the rear side surface can fit with the rear panel.

[0017] In some embodiments, the front side surface includes a smoke-facing surface and an abutting surface. The smoke-facing surface is higher than the front panel in the up-down direction of the integrated stove. The abutting surface is located below the smoke-facing surface in the up-down direction and abuts against the front panel;

[0018] Wherein, in the front-rear direction, the abutting surface is blocked by the front panel.

[0019] In some embodiments, in the up-down direction, the upper edge of the abutting surface is flush with the upper edge of the front panel.

[0020] In some embodiments, the front side surface further includes an oil guiding surface. The oil guiding surface is connected between the smoke-facing surface and the abutting surface in the up-down direction and extends obliquely downward in the front-to-back direction of the integrated stove.

[0021] In some embodiments, the included angle between the smoke-facing surface and the oil guiding surface is not less than 120 degrees.

[0022] Based on the integrated stove of the embodiments of the present application, the smoke collection cavity is divided into at least two smoke collection sub-chambers by the diversion structure, and the distance between the two diversion surfaces of the diversion structure decreases in the left-right direction, so that the integrated stove of this embodiment has at least the following technical effects:

[0023] First, when multiple burners located on the left and right sides of the stove body work simultaneously, the fumes generated will be collected by the corresponding smoke collecting cavities. This can reduce the possibility of the fumes intermixing and extending the flow path of the fumes, effectively improving the smoke exhaust effect of the integrated stove. When a single burner among the multiple burners located on the left and right sides of the stove body works alone, the fumes generated will also be collected by the corresponding smoke collecting cavity as much as possible, reducing the possibility of the fumes flowing into other smoke collecting cavities and causing the flow path to extend, effectively improving the smoke exhaust effect of the integrated stove.

[0024] Secondly, on the basis that the distance between the two diversion surfaces in the left-right direction becomes smaller in the front-to-back direction of the integrated stove, it can enlarge the opening area of the cavity opening of at least one smoke collecting cavity, thereby being able to increase the flow rate of the fumes flowing into this smoke collecting cavity, improving the smoke collecting effect of the smoke head, and effectively reducing the probability of the fumes escaping. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on the structures shown in these drawings.

[0026] Figure 1 Structural schematic diagram of an integrated stove according to an embodiment of the present application;

[0027] Figure 2 For Figure 1 Partial structural schematic diagram of the integrated stove in

[0028] Figure 3 For Figure 1 Front view of the diversion structure in

[0029] Figure 4 For Figure 1 Top view of the diversion structure in

[0030] Figure 5 For Figure 1 Side view of the diversion structure in

[0031] Figure 6 Structural schematic diagram of the integrated stove with the side plate hidden according to an embodiment of the present application;

[0032] Figure 7 Structural schematic diagram of the integrated stove with the side plate hidden according to another embodiment of the present application.

[0033] Explanation of the reference numerals in the drawings:

[0034] 1. Integrated stove; 10. Stove body; 20. Smoke head; 20A. Smoke collection cavity; 20B. Sub-smoke collection cavity; 211. Front panel; 212. Rear panel; 213. Side panel; 30. Flow splitting structure; 31. Flow splitting surface; 32. Front side; 321. Smoke-facing surface; 322. Contact surface; 323. Oil guide surface; 33. Rear side; 40. Oil cup.

[0035] The realization of the purpose of this application, functional features and advantages will be further described in conjunction with embodiments with reference to the accompanying drawings. Specific embodiments

[0036] To make the purpose, technical solutions and advantages of this application clearer, the following will further describe the embodiments of this application in detail with reference to the accompanying drawings.

[0037] When the following description relates to the accompanying drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. On the contrary, they are only examples of devices and methods that are consistent with some aspects of this application as detailed in the appended claims.

[0038] In the description of this application, it should be understood that the terms "first", "second", etc. are only used for descriptive purposes and cannot be understood as indicating or implying relative importance. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to specific circumstances. In addition, in the description of this application, unless otherwise specified, "a plurality" means two or more. "And / or" describes the association relationship of associated objects and indicates that three relationships can exist. For example, A and / or B can represent: A exists alone, A and B exist simultaneously, and B exists alone. The character " / " generally represents an "or" relationship between the front and rear associated objects.

[0039] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those of ordinary skill in the technical field to which this application belongs. The terms used in the description of this specification are only for the purpose of describing specific embodiments and are not intended to limit this application. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.

[0040] Please refer to Figures 1 to 2 , this application proposes an integrated stove 1. In the embodiment of this application, the integrated stove 1 can be integrated with functions such as cooking, sucking oil fumes, steaming and baking, etc., and this embodiment does not limit this. Taking the integrated stove 1 integrated with cooking and sucking oil fumes as an example, the integrated stove 1 of this embodiment includes a stove body 10, a smoke head 20 and a flow splitting structure 30.

[0041] The stove body 10 is the main part of the integrated stove 1. The stove body 10 may include components such as a casing, a cooking appliance, and a smoke extraction component. Among them, the cooking appliance can be installed on the upper part of the casing, and the smoke extraction component can be arranged inside the casing. The smoke extraction component includes a fan, and the fan is used to communicate with the smoke head 20 to suck the cooking fumes flowing into the smoke head 20 and then discharge them outdoors.

[0042] The smoke head 20 has a smoke gathering function. The smoke head 20 is located above the stove body 10 and is connected to the stove body 10, for example, fixedly connected to the casing of the stove body 10. Among them, the smoke head 20 has a smoke gathering cavity 20A, and the smoke gathering cavity 20A communicates with the fan. It can be understood that under the operation of the fan, the cooking fumes generated at the cooking appliance will first flow into the smoke gathering cavity 20A, then flow from the smoke gathering cavity 20A to the fan, and finally the fan discharges the cooking fumes outdoors, preventing the cooking fumes from escaping indoors and affecting the user's health and usage experience.

[0043] The diversion structure 30 can be in a columnar structure, such as a cylindrical or prismatic structure, so that the shape is regular and easy to manufacture. And the diversion structure 30 can be made of metal, so as to have the advantages of better corrosion resistance, smooth and beautiful surface, and not easy to adhere to oil stains. Of course, the diversion structure 30 can also be made of plastic, so as to have the advantages of lower cost and lighter weight. In this embodiment, the shape and material of the diversion structure 30 are not specifically limited, and the specific shape and material of the diversion structure 30 can be selected according to actual needs.

[0044] The diversion structure 30 can guide and divert the cooking fumes flowing into the smoke gathering cavity 20A. The diversion structure 30 is arranged in the smoke gathering cavity 20A and divides the smoke gathering cavity 20A into at least two smoke gathering sub-cavities 20B. The at least two smoke gathering sub-cavities 20B are arranged along the left-right direction of the integrated stove 1. Among them, the number of the diversion structures 30 can be one or more. For example, when the number of the diversion structures 30 is one, the diversion structure 30 divides the smoke gathering cavity 20A into two smoke gathering sub-cavities 20B; and for another example, when the number of the diversion structures 30 is two, the two diversion structures 30 are arranged at intervals along the left-right direction of the integrated stove 1 and can divide the smoke gathering cavity 20A into three smoke gathering sub-cavities 20B. The number of the diversion structures 30 is not specifically limited in this embodiment.

[0045] It can be understood that the number of the burners of the cooking appliance is the same as and corresponds one by one to the number of the smoke gathering sub-cavities 20B. For example, when the number of the burners is two, and one smoke gathering sub-cavity 20B is correspondingly arranged above one burner, so that each smoke gathering sub-cavity 20B can gather the cooking fumes generated by the corresponding burner during cooking. It can be referred to Figure 1 for understanding. Figure 1The dotted line therein is the flow path of the flue gas. The flue gas generated by the burner head on the left side during cooking will be collected by the corresponding smoke collection cavity 20B, that is, by the smoke collection cavity 20B on the left side, and the flue gas generated by the burner head on the right side during cooking will be collected by the corresponding smoke collection cavity 20B, that is, by the smoke collection cavity 20B on the right side.

[0046] Wherein, the diversion structure 30 is formed with diversion surfaces 31 on both opposite sides in the left-right direction, and the diversion surfaces 31 constitute part of the wall surface of the smoke collection cavity 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 cavities 20B located on the left and right sides of the diversion structure 30 respectively.

[0047] The diversion surface 31 has a front edge and a rear edge in the front-rear direction, and the front edge constitutes the orifice of the smoke collection cavity 20B. In the direction from the rear to the front of the integrated stove 1, the distance between the two diversion surfaces 31 in the left-right direction is set to become smaller. In this way, the distance between the front edges of the two diversion surfaces 31 in the left-right direction is smaller than the distance between the rear edges of the two diversion surfaces 31 in the left-right direction, so as to at least expand the opening area of the orifice of one smoke collection cavity 20B, so as to increase the flow rate of the flue gas flowing into this smoke collection cavity 20B, improve the smoke collection effect, and effectively reduce the probability of the flue gas escaping.

[0048] The technical solution of the present application divides the smoke collection cavity 20A into at least two smoke collection cavities 20B through the diversion structure 30, and the distance between the two diversion surfaces 31 of the diversion structure 30 in the left-right direction is set to become smaller, so that the integrated stove 1 of this embodiment has at least the following technical effects:

[0049] First of all, the flue gas generated when multiple burner heads on the left and right sides of the stove body 10 work simultaneously will be collected by the corresponding smoke collection cavities 20B. In this way, the possibility of the flue gas intermixing and extending the flow path of the flue gas can be reduced, and the smoke exhaust effect of the integrated stove 1 can be effectively improved; and when a single one of the multiple burner heads on the left and right sides of the stove body 10 works, the flue gas generated by it will also be collected by the corresponding smoke collection cavity 20B as much as possible, reducing the possibility of the flue gas running to other smoke collection cavities 20B and causing the flow path to extend, and effectively improving the smoke exhaust effect of the integrated stove 1.

[0050] Secondly, on the basis that the distance between the two diversion surfaces 31 in the left-right direction becomes smaller in the direction from the rear to the front of the integrated stove 1, it can make the opening area of the orifice of at least one smoke collection cavity 20B expand, so as to increase the flow rate of the flue gas flowing into this smoke collection cavity 20B, improve the smoke collection effect of the smoke machine head 20, and effectively reduce the probability of the flue gas escaping.

[0051] Please refer to Figures 1 to 3, in some embodiments, in the direction from the rear to the front of the integrated range 1, one of the two diversion surfaces 31 is inclined with respect to the other. For example, one of the two diversion surfaces 31 may be parallel to the front-rear direction, and the other is inclined with respect to the diversion surface 31 parallel to the front-rear direction. With this arrangement, by inclining one of the two diversion surfaces 31 with respect to the other, the distance between the two diversion surfaces 31 in the left-right direction can be made to decrease in the direction from the rear to the front of the integrated range 1. The structure is simple and convenient for manufacturing and processing.

[0052] Of course, the diversion surface 31 may be in the shape of an arc surface, that is, the diversion surface 31 extends in a curved manner toward the other in the direction from the rear to the front of the integrated range 1, which can also make the distance between the two diversion surfaces 31 in the left-right direction decrease in the direction from the rear to the front of the integrated range 1. This embodiment does not limit this.

[0053] Please refer to Figures 2 to 4 , further, both of the two diversion surfaces 31 form an angle with the front-rear direction of the integrated range 1, so that both of the two diversion surfaces 31 are inclined. In this way, the opening areas of the openings of at least two smoke-gathering sub-chambers 20B can be enlarged, thereby effectively increasing the flow rate of the smoke flowing into the smoke-gathering sub-chambers 20B, more effectively improving the smoke-gathering effect of the smoke head 20, and better reducing the probability of smoke escaping.

[0054] Please refer to Figures 2 to 4 , 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. With this arrangement, it is beneficial to increase the flow rate of the smoke flowing into the smoke-gathering sub-chambers 20B. It can be understood that if α is greater than 80 degrees, the inclination degree of the diversion surface 31 is small, and the opening area of the opening of the smoke-gathering sub-chamber 20B cannot be well enlarged, resulting in a small flow rate of the smoke flowing into the smoke-gathering sub-chamber 20B.

[0055] Exemplarily, the specific value of the angle α may be 10 degrees, 20 degrees, 30 degrees, 40 degrees, 50 degrees, 60 degrees, 70 degrees, 80 degrees, etc. This embodiment does not make specific limitations on this.

[0056] Please refer to Figures 5 to 6 , in some embodiments, the smoke head 20 includes a front panel 211 and a rear panel 212. Both the front panel 211 and the rear panel 212 may be in the form of plate structures and are both square in shape, so that the shape is relatively regular and convenient for manufacturing and processing. The front panel 211 and the rear panel 212 are arranged opposite to each other in the front-rear direction of the integrated range 1, and the front panel 211 at least cooperates with the diversion surface 31 and the rear panel 212 to define the smoke-gathering sub-chamber 20B.

[0057] Among them, the front side surface 32 of the flow splitting structure 30 in the front-back direction abuts against the front panel 211, which is beneficial to reducing the probability that the flue gas in one smoke collecting cavity 20B flows from the gap between the front side surface 32 and the front panel 211 to another smoke collecting cavity 20B, ensuring the shortening of the flow path of the flue gas, and improving the smoke exhaust effect of the integrated stove 1.

[0058] The rear side surface 33 of the flow splitting structure 30 in the front-back direction abuts against the rear back panel 212, which is beneficial to reducing the probability that the flue gas in one smoke collecting cavity 20B flows from the gap between the rear side surface 33 and the rear back panel 212 to another smoke collecting cavity 20B, ensuring the shortening of the flow path of the flue gas, and improving the smoke exhaust effect of the integrated stove 1.

[0059] In this way, in this embodiment, the risk of the flue gas escaping from the gap between the front side surface 32 and the front panel 211 and the gap between the rear side surface 33 and the rear back panel 212 can be effectively reduced, better ensuring the shortening of the flow path of the flue gas and improving the smoke exhaust effect of the integrated stove 1.

[0060] Please refer to Figures 5 to 6 further, the front side surface 32 and the front panel 211 are in close contact. In this way, the front side surface 32 and the front panel 211 are closely attached, more effectively avoiding the probability that the flue gas flows from the gap between the front side surface 32 and the front panel 211 to another smoke collecting cavity 20B.

[0061] Or, the rear side surface 33 and the rear panel are in close contact. In this way, the rear side surface 33 and the rear back panel 212 are closely attached, more effectively avoiding the probability that the flue gas flows from the gap between the rear side surface 33 and the rear back panel 212 to another smoke collecting cavity 20B.

[0062] Or, the front side surface 32 and the front panel 211 are in close contact, and the rear side surface 33 and the rear panel are in close contact. In this way, the front side surface 32 and the front panel 211 are closely attached, more effectively avoiding the probability that the flue gas flows from the gap between the front side surface 32 and the front panel 211 to another smoke collecting cavity 20B, and at the same time, the rear side surface 33 and the rear back panel 212 are closely attached, more effectively avoiding the probability that the flue gas flows from the gap between the rear side surface 33 and the rear back panel 212 to another smoke collecting cavity 20B.

[0063] On the basis that the front side surface 32 and the front panel 211 are in close contact, and the rear side surface 33 and the rear panel are in close contact, please refer to Figures 5 to 6 further, in the front-back direction, the thickness of the flow splitting structure 30 is equal to the distance between the front panel 211 and the rear back panel 212, so that the front side surface 32 can be in close contact with the front panel 211, and the rear side surface 33 can be in close contact with the rear back panel 212.

[0064] It can be understood that the flow splitting structure 30 can be first installed on the rear panel 212, and then the front panel 211 can be covered on the front side of the flow splitting structure 30. Based on the fact that the thickness of the flow splitting structure 30 is equal to the distance between the front panel 211 and the rear panel 212, after the front panel 211 is covered, the front panel 211 will directly fit with the front side 32, and the rear panel 212 will directly fit with the rear side 33, which is convenient for operation.

[0065] Of course, the present application is not limited to this. In other embodiments, the thickness of the flow splitting 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 is performed through the gap between the flow splitting structure 30 and 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.

[0066] Please refer to Figures 6 to 7 , in some embodiments, the front side 32 includes a smoke-facing surface 321 and an abutting surface 322. Among them, the smoke-facing surface 321 is higher than the front panel 211 in the up-down direction of the integrated stove 1. It can be understood that when the flue gas flows towards the smoke collecting cavity 20A, part of the flue gas will flow towards the smoke-facing surface 321. Therefore, the smoke-facing surface 321 is the part of the front side 32 that receives the flue gas.

[0067] The abutting surface 322 is located below the smoke-facing surface 321 in the up-down direction and abuts against the front panel 211, for example, fits 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.

[0068] Among them, in the front-rear direction, the abutting surface 322 is blocked by the front panel 211. Among them, in the up-down direction, the height of the abutting 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 abutting surface 322.

[0069] It can be understood that on the basis that the abutting surface 322 can abut against the front panel 211, in the front-rear direction, the abutting surface 322 is closer to the front panel 211 than the smoke-facing surface 321. Based on this, the front panel 211 can be used to block the abutting surface 322, so that when the user uses the integrated stove 1, the distance between the user's viewing angle and the flow splitting structure 30 in the front-rear direction is short, and moreover, the front panel 211 blocking the abutting surface 322 can reduce the exposed area of the flow splitting structure 30 in the smoke collecting cavity 20A, making the overall integrated stove 1 more beautiful.

[0070] Please refer to Figures 5 to 6 , in some embodiments, the front side 32 further includes an oil guiding surface 323, and the oil guiding surface 323 is connected between the smoke-facing surface 321 and the abutting surface 322 in the up-down direction. The oil guiding surface 323 extends obliquely downward in the front-to-back direction of the integrated stove 1.

[0071] It can be understood that after the flue gas flows through the smoke-facing surface 321, oil stains will be generated on the smoke-facing surface 321. Under the action of its own gravity, the oil stains will flow towards the oil-guiding surface 323. Then, under the guidance of the oil-guiding surface 323, the oil stains will flow towards the diversion surfaces 31 on both sides of the diversion structure 30 and continue to flow downward. In this way, it is possible to avoid oil stain residues adhering to the smoke-facing surface 321.

[0072] Please refer to Figure 5 , optionally, the included angle between the smoke-facing surface 321 and the oil-guiding surface 323 is β, and the included angle β is not less than 120 degrees. In this way, the guiding effect of the oil-guiding surface 323 on the oil stains can be ensured, so that the oil stains can flow downward. It can be understood that if the included angle β is less than 120 degrees, the inclination degree of the oil-guiding surface 323 is small, and the oil stains cannot be guided downward well, resulting in the oil stains being easily accumulated on the oil-guiding surface 323.

[0073] Exemplarily, the specific value of the included angle β can be 120 degrees, 130 degrees, 140 degrees, 150 degrees, 160 degrees, 170 degrees, etc., and this embodiment does not limit this.

[0074] Please refer to Figure 7 , further, along the up-down direction, the upper edge of the abutting surface 322 is flush with the upper edge of the front panel 211. In this way, on the basis of ensuring that the abutting surface 322 is blocked by the front panel 211, the height of the abutting surface 322 can be increased as much as possible, and the upper edge of the abutting surface 322 is flush with the upper edge of the front panel 211, so as to effectively reduce the probability that the flue gas escapes from the gap between the front side surface 32 of the diversion structure 30 and the front panel 211 into another smoke-gathering sub-chamber 20B.

[0075] Please refer to Figure 1 , in some embodiments, the integrated stove 1 further includes an oil cup 40. The oil cup 40 is arranged at the bottom of the housing of the stove body 10. It can be understood that after the oil stains flow to the diversion surface 31, they will continue to flow downward under their own gravity and finally flow to the oil cup 40 and are collected by the oil cup 40, preventing the oil from flowing to other places in the housing.

[0076] Please refer to Figure 2 , optionally, the smoke head 20 further includes a side plate 213. The side plate 213 is connected between the front panel 211 and the rear panel 212 and at least cooperates with the front panel 211, the diversion surface 31 and the rear panel 212 to define a smoke-gathering sub-chamber 20B, improving the smoke-gathering effect on the flue gas.

[0077] In the accompanying drawings of this embodiment, the same or similar reference numerals correspond to the same or similar components; in the description of the present application, it should be understood that if there are terms such as "upper", "lower", "left", "right", etc. indicating the orientation or positional relationship, they are based on the orientation or positional relationship shown in the accompanying drawings. This is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, the terms describing the positional relationship in the accompanying drawings are only for illustrative purposes and cannot be construed as a limitation of this patent. For those of ordinary skill in the art, the specific meanings of the above terms can be understood according to specific circumstances.

[0078] The above are only the 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 principle of the present application shall be included in the protection scope of the present application.

Claims

1. An integrated stove, characterized in that: include: stove body; A range hood head is located above the stove body and connected to the stove body, and the range hood head has a smoke collecting cavity; as well as A diversion structure is provided in the smoke collecting chamber, and divides the smoke collecting chamber into at least two smoke collecting sub-chambers, wherein the at least two smoke collecting sub-chambers are arranged along the left and right directions of the integrated stove; Among them, the diversion structure is formed with diversion surfaces on both opposite sides in the left and right directions, and the diversion surfaces constitute part of the wall surface of the smoke collecting sub-cavity, and in the direction from back to front of the integrated stove, the distance between the two diversion surfaces along the left and right directions is set to become smaller.

2. The integrated stove according to claim 1, characterized in that: In the direction from back to front of the integrated stove, one of the two diverter surfaces is inclined toward the other.

3. The integrated stove according to claim 2, characterized in that: The two diverter surfaces both form an angle with the front-rear direction of the integrated stove, so that the two diverter surfaces are both inclined.

4. The integrated stove according to claim 3, characterized in that: The included angle between the diverter surface and the left-right direction is no greater than 80 degrees.

5. The integrated stove according to any one of claims 1 to 4, characterized in that: The smoke machine head comprises: front panel; and A rear back plate is arranged opposite to the front panel in the front-rear direction of the integrated stove, and cooperates with at least the diversion surface and the front panel to form the smoke collecting sub-cavity; The front side surface of the diversion structure along the front-to-back direction abuts against the front panel, and the rear side surface along the front-to-back direction abuts against the rear back panel.

6. The integrated stove according to claim 5, characterized in that: The front side surface is in contact with the front panel; and / or, The rear side surface is in contact with the rear back plate.

7. The integrated stove according to claim 6, characterized in that: In the front-to-back direction, the thickness of the diversion structure is equal to the distance between the front panel and the rear panel, so that the front side surface can be attached to the front panel, and the rear side surface can be attached to the rear panel.

8. The integrated stove according to claim 5, characterized in that: The front side comprises: A smoke-facing surface, which is higher than the front panel along the vertical direction of the integrated stove; and an abutting surface, located at the lower side of the smoke-facing surface along the up-down direction and abutting against the front panel; Wherein, along the front-to-back direction, the abutting surface is blocked by the front panel.

9. The integrated stove according to claim 8, characterized in that: Along the up-down direction, the upper edge of the abutting surface is flush with the upper edge of the front panel.

10. The integrated stove according to claim 8, characterized in that: The front side also includes: The oil guide surface is connected between the smoke facing surface and the abutting surface along the up-down direction, and is inclined and extended downward in the direction from the back to the front of the integrated stove.

11. The integrated stove according to claim 10, characterized in that: The angle between the smoke-facing surface and the oil-guiding surface is not less than 120 degrees.