Integrated cooker

By setting limiting components in the integrated stove, such as brackets, grooves and ribs, the problem of easy misinstallation of the grease separation component is solved, the normal circulation of oil smoke and component protection are achieved, and the service life and environmental protection of the integrated stove are improved.

CN222978244UActive Publication Date: 2025-06-13FOSHAN SHUNDE MIDEA ELECTRICAL HEATING APPLIANCES MFG CO LTD
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Patent Information

Application Number
CN202422139041.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-06-13
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

The grease separation components in existing integrated stoves are easily installed incorrectly, resulting in the inability of oil smoke to circulate normally, affecting the use effect.

Method used

Limiting components are set in the integrated stove, such as brackets, grooves and ribs, notches, convex sections, limiting bosses, etc., to ensure that the grease separation components are installed in the correct posture, avoid reverse installation, and ensure smooth circulation of oil smoke.

Benefits of technology

It reduces the difficulty of assembling the grease separation component, ensures the normal circulation of oil smoke, protects the filter component and range hood component from being contaminated by oil and water, extends the service life of the integrated stove, and avoids secondary pollution.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an integrated cooker and relates to the technical field of cooking equipment. The integrated cooker comprises a body, the body comprises a smoke inlet and a smoke outlet, a flue is arranged in the body and comprises a first section and a second section which are communicated, the first section is communicated with the smoke inlet, and the second section is communicated with the smoke outlet; the grease separation assembly is arranged on the first section part, the grease separation assembly comprises an inlet and an outlet, the grease separation assembly has a first posture, and when the grease separation assembly is in the first posture, the inlet is communicated with the smoke inlet, and the outlet is communicated with the second section part; the limiting part is arranged on the body, when the grease separation assembly is in the first posture, the limiting part avoids the grease separation assembly, and when the grease separation assembly is not in the first posture, the limiting part interferes with the grease separation assembly or the grease separation assembly interferes with the body. The technical effects that the assembling difficulty of the grease separation assembly is reduced, and convenient conditions are provided for users are achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of cooking equipment, in particular to an integrated stove. Background Art

[0002] Integrated stoves reduce the pollution of oil smoke to the environment by extracting oil smoke. The oil smoke drawn into the integrated stove is separated into water vapor and oil in the oil smoke through a grease separation component to reduce secondary pollution from the re-exhaust oil smoke.

[0003] In the related art, the grease separation component includes a gas inlet side and a gas outlet side. During assembly, the grease separation component needs to be installed in a preset direction to ensure normal use of the grease separation component.

[0004] After assembly is completed, if the orientation of the gas outflow side is incorrect, the grease separation component will block the oil smoke, resulting in a technical problem that the grease separation component of the integrated stove is easily misinstalled. Utility Model Content

[0005] The utility model aims to solve at least one of the technical problems existing in the prior art.

[0006] Therefore, the utility model proposes an integrated stove.

[0007] In view of this, the utility model provides an integrated stove, which includes: a main body, which includes a smoke inlet and a smoke exhaust port, and the main body includes a flue, which includes a first section and a second section that are connected, the first section is connected to the smoke inlet, and the second section is connected to the smoke exhaust port; a grease separation component, which is arranged at the first section, the grease separation component includes an inlet and an outlet, and the grease separation component includes a first posture, when the grease separation component is in the first posture, the inlet is connected to the smoke inlet, and the outlet is connected to the second section; a limiting part, which is arranged at the main body, when the grease separation component is in the first posture, the limiting part avoids the grease separation component, and when the grease separation component is not in the first posture, the limiting part interferes with the grease separation component, or the grease separation component interferes with the main body.

[0008] In this technical solution, the integrated stove includes a body, which is the main frame structure of the integrated stove. The top of the body forms the table of the integrated stove, and the cooking utensils are heated on the table. A smoke inlet is provided on the table. A flue is formed inside the body, and a smoke exhaust port is provided at the bottom of the body. The first end of the flue is connected to the smoke inlet, and the second end of the flue is connected to the smoke exhaust port. The integrated stove draws external oil smoke through the smoke inlet, and the oil smoke is filtered in the flue after entering the flue. The filtered oil smoke is discharged from the flue through the smoke exhaust port.

[0009] The grease separation component is arranged in the flue, and is arranged opposite to the smoke inlet on the flue. After the oil smoke flows into the smoke inlet, it needs to flow through the grease separation component first. The grease separation component can separate the grease and water vapor mixed in the oil smoke, complete the pre-oil-water separation of the oil smoke, and prevent the oil smoke from carrying oil and water into the filter component and the range hood component, thereby protecting the filter component and the range hood component from being polluted by oil and water, extending the service life of the integrated stove, and preventing the oil and water accumulated in the flue from generating odor, and preventing the oil smoke treated by the integrated stove from causing secondary pollution to the environment.

[0010] According to the location of the grease separation component, the flue is divided into a first section and a second section. The grease separation component is arranged in the first section, and the oil smoke enters the first section through the smoke inlet. The second section is located on the leeward side of the grease separation component. The oil smoke processed by the grease separation component enters the second section and is finally discharged out of the flue through the smoke exhaust port.

[0011] On this basis, an inlet and an outlet are provided on the grease separation component, the inlet is provided at the top of the grease separation component, the outlet is provided at the peripheral side of the grease separation component, and the outlet faces one of the directions around the grease separation component. After the grease separation component is installed into the smoke inlet according to the first posture, the inlet is connected with the smoke inlet on the upwind side, and the outlet is connected with the second section on the leeward side, so that the oil smoke can pass through the grease separation component and flow smoothly into the second section. If the grease separation component is not installed into the smoke inlet according to the first posture, the outlet cannot be aligned with the second section on the leeward side, resulting in the oil smoke failing to flow smoothly into the second section, affecting the normal use of the integrated stove.

[0012] In this regard, a limiting part is also provided on the main body. When the grease separation component is installed into the smoke inlet in the first posture, the limiting part avoids the grease separation component, so that the grease separation component can be smoothly installed to the predetermined position. Correspondingly, when the grease separation component is installed into the smoke inlet in other postures except the first posture, the limiting part can block the grease separation component on the installation track of the grease separation component, thereby preventing the grease separation component from moving to the predetermined position through structural interference, or the structure on the grease separation component that was originally avoided by the limiting part interferes with the main body, so that the user can understand that the grease separation component is incorrectly assembled through the phenomenon that the grease separation component cannot be installed smoothly, so as to prompt the user to adjust the grease separation component to the correct first posture in time.

[0013] It can be seen that by setting the limiter, the anti-reverse design of the grease separation component can be realized, ensuring that the grease separation component installed in the first section can communicate with the smoke inlet and the second section, and preventing the reversed grease separation component from affecting the normal circulation of oil smoke. This solves the technical problems existing in the relevant technology, and further achieves the technical effect of reducing the difficulty of assembling the grease separation component and providing convenient conditions for users.

[0014] In addition, the above integrated stove provided by the utility model may also have the following additional technical features:

[0015] In some technical solutions of the present utility model, optionally, the grease separation component includes: a frame, the inlet is located at the top of the frame, and the outlet is located at the peripheral side of the frame.

[0016] In this technical solution, the grease separation component includes a frame, which is wrapped on the outside. The frame can provide positioning, protection and support for the internal structure to ensure the effectiveness of the separation component in separating oil and water.

[0017] Among them, the inlet is set at the top of the frame. After assembly, the inlet is opposite to the smoke inlet at the top, and the smoke can enter the frame from top to bottom. The outlet is set on the side of the frame, and the smoke flows horizontally after entering the frame.

[0018] In some technical solutions of the utility model, optionally, the limiting part includes: a bracket, the bracket is arranged at the smoke inlet, and the bracket is located on the peripheral side of the frame; wherein, one of the bracket and the frame is provided with a groove, and the other is provided with a convex rib; when the grease separation component is in the first posture, the convex rib is at least partially embedded in the groove; when the grease separation component is not in the first posture, the convex rib interferes with the bracket, or the convex rib interferes with the frame.

[0019] In this technical solution, the limiting part includes a bracket, which is fixed on the body. After the grease separation assembly is inserted into the smoke inlet, the bracket surrounds the frame. Specifically, the bracket can be installed above the smoke inlet, or the bracket can be embedded inside the smoke inlet.

[0020] Among them, the bracket and the frame are respectively provided with grooves and convex ribs, the grooves and the convex ribs are arranged asymmetrically, the shapes of the grooves and the convex ribs are adapted, and when the convex ribs are aligned with the grooves, the convex ribs can be inserted or embedded in the grooves.

[0021] On this basis, when the grease separation component is installed into the smoke inlet according to the first posture, the convex rib is aligned with the groove, and the convex rib can be smoothly inserted into the groove, so that the grease separation component can be smoothly installed to the predetermined position, and the outlet on the frame is ensured to be aligned with the second section on the downwind side. Correspondingly, when the grease separation component is not installed into the smoke inlet according to the first posture, the protrusion and the groove are staggered, the convex rib will be blocked by the bracket, or the frame will be blocked by the convex rib, so as to prevent the grease separation component from continuing to be inserted into the first section, thereby prompting the user that the installation posture of the grease separation component is incorrect.

[0022] It can be seen that by providing the bracket, the groove and the convex rib, the anti-reverse design of the grease separation component can be realized, ensuring that the grease separation component installed in the first section can communicate with the smoke inlet and the second section, and preventing the reversed grease separation component from affecting the normal circulation of oil smoke. This solves the technical problems existing in the related technology, and further achieves the technical effect of reducing the difficulty of assembling the grease separation component and providing convenient conditions for users.

[0023] In some technical schemes of the utility model, optionally, the limiting portion includes: a notch, the notch is arranged on the peripheral side of the smoke inlet, and the notch is connected to the smoke inlet; wherein the frame includes an outward protrusion section; when the grease separation component is in the first posture, the outward protrusion section is embedded in the notch; when the grease separation component is not in the first posture, the outward protrusion section interferes with the main body.

[0024] In this technical solution, the limiting part includes a notch, which is opened at the edge of the smoke inlet and extends to the peripheral side of the smoke inlet. Correspondingly, the frame is provided with a convex section protruding to the peripheral side of the frame, and the shape of the convex section is adapted to the shape of the notch, so that the convex section can be inserted into the notch.

[0025] On this basis, when the grease separation component is installed into the smoke inlet according to the first posture, the convex section is aligned with the notch, and the convex section can be smoothly inserted into the notch, so that the grease separation component can be smoothly installed to the predetermined position, and the outlet on the frame is ensured to be aligned with the second section on the downwind side. Correspondingly, when the grease separation component is not installed into the smoke inlet according to the first posture, the convex section and the notch are offset, and the convex section will be blocked by the smoke inlet to prevent the grease separation component from continuing to be inserted into the first section, thereby prompting the user that the installation posture of the grease separation component is incorrect.

[0026] It can be seen that by setting the notch and the convex section, the anti-reverse design of the grease separation component can be realized, ensuring that the grease separation component installed in the first section can communicate with the smoke inlet and the second section, and preventing the reversed grease separation component from affecting the normal circulation of oil smoke. This solves the technical problems existing in the relevant technology, and further achieves the technical effect of reducing the difficulty of assembling the grease separation component and providing convenient conditions for users.

[0027] In some technical schemes of the utility model, optionally, the limiting part includes: a limiting boss, which is arranged in the first section, and a first mating surface is provided on the side of the limiting boss facing the smoke inlet; wherein, a second mating surface is provided on the side of the frame facing away from the smoke inlet; when the grease separation component is in the first posture, the first mating surface is opposite to the second mating surface, and the first mating surface is in contact with the second mating surface, or the first mating surface avoids the second mating surface; when the grease separation component is not in the first posture, the first mating surface is staggered with the second mating surface, and the frame interferes with the first mating surface.

[0028] In this technical solution, the limiting part includes a limiting boss, the limiting boss is arranged on the bottom wall of the first section part, and the limiting boss is opposite to the smoke inlet above, and a first mating surface is arranged on the top of the limiting boss facing the smoke inlet. Correspondingly, a second mating surface is arranged at the bottom of the grease separation component, and the shape of the second mating surface is adapted to the shape of the second mating surface.

[0029] On this basis, when the grease separation component is installed into the smoke inlet in the first posture, the first mating surface and the second mating surface face each other, and the limiting boss and the grease separation component avoid each other through the first mating surface and the second mating surface, so that the grease separation component can be smoothly installed to the predetermined position, and it is ensured that the outlet on the frame is aligned with the second section part on the downwind side. Specifically, after the assembly is completed, the first mating surface and the second mating surface are attached together, or the first mating surface and the second mating surface are spaced apart. Correspondingly, when the grease separation component is not installed into the smoke inlet in the first posture, the first mating surface and the second mating surface are staggered, and the area on the frame where the second mating surface is not arranged is blocked by the second mating surface to prevent the grease separation component from continuing to be inserted into the first section part, thereby prompting the user that the installation posture of the grease separation component is incorrect.

[0030] It can be seen that by setting the limiting boss, the first mating surface and the second mating surface, the anti-reverse design of the grease separation component can be realized, ensuring that the grease separation component installed in the first section part can connect the smoke inlet and the second section part, and avoiding the influence of the reversely installed grease separation component on the normal flow of oil fume. Thus, the technical problems existing in the related technology are solved, and further the technical effect of reducing the assembly difficulty of the grease separation component and providing convenient conditions for users is achieved.

[0031] In some technical solutions of the present utility model, optionally, the shapes of the first mating surface and the second mating surface are the same; the shapes of the first mating surface and the second mating surface include: stepped shape, ramp shape or wavy shape.

[0032] In this technical solution, the shapes of the first mating surface and the second mating surface are the same. After the grease separation component is smoothly installed into the predetermined position in the first posture, the first mating surface and the second mating surface are attached together, so as to provide support for the frame through the positioning boss, improve the positioning accuracy of the grease separation component, reduce the probability of loosening and dislocation of the grease separation component during the working process, and further achieve the improvement of the working stability of the grease separation component.

[0033] Specifically, the shapes of the first mating surface and the second mating surface can be designed as a stepped shape, or the shapes of the first mating surface and the second mating surface can be designed as a ramp shape, or the shapes of the first mating surface and the second mating surface can be designed as a wavy shape.

[0034] In some technical solutions of the present utility model, optionally, the grease separation component further includes: a separation component, which is arranged in the frame and is used to separate the grease in the oil smoke between the inlet and the outlet.

[0035] In this technical solution, the separation component can filter the water vapor and grease in the oil fume. Specifically, a metal filter can be selected as the separation component. The water vapor and grease in the oil fume condense on the metal filter after contacting the metal filter, and the gas passes through the metal filter through the mesh holes on the metal filter, thereby realizing the separation of oil and water in the oil fume.

[0036] The frame is wrapped around the outside of the separation component, and the frame can provide positioning, protection and support on the outside of the separation component to ensure the effectiveness of the separation component in oil-water separation.

[0037] Among them, the inlet is arranged at the top of the frame. After the assembly is completed, the inlet is opposite to the smoke inlet at the top, and the oil smoke can enter the frame from top to bottom. The outlet is arranged on the peripheral side of the frame, and multiple outlets are arranged at different positions of the frame. The filter component is arranged between the inlet and the outlet. After entering the frame, the oil smoke flows horizontally and passes through the separation component before flowing to the outlet.

[0038] In some technical solutions of the present utility model, optionally, the separation component is an asymmetric structure.

[0039] In this technical solution, the separation component installed on the inner side of the frame is an asymmetric structure. The asymmetric separation component presents different shapes when it is installed into the smoke inlet in different postures. Therefore, the user can determine whether the grease separation component is installed into the smoke inlet in the correct first posture by observing the shape of the separation component, thereby ensuring that the grease separation component can be installed correctly, thereby achieving the technical effect of reducing the difficulty of assembling the grease separation component and providing convenient conditions for users.

[0040] In some technical solutions of the present invention, optionally, when the grease separation assembly is in the first posture, the grease separation assembly is located inside the smoke inlet; when the grease separation assembly is not in the first posture, the grease separation assembly is at least partially located outside the smoke inlet.

[0041] In this technical solution, when the grease separation component is inserted into the smoke inlet in a first posture, the limiting portion avoids the grease separation component, allowing the grease separation component to move smoothly to a predetermined position. The grease separation component moved to the predetermined position enters the first section as a whole, so as to facilitate the installation of the grille at the smoke inlet.

[0042] Correspondingly, when the grease separation component is not inserted into the smoke inlet in the first posture, the grease separation component interferes with the limiting part or the main body, resulting in part of the stuck grease separation component being exposed outside the smoke inlet. In this case, the user can know that the assembly posture of the grease separation component is incorrect by observing the part of the grease separation component protruding from the smoke inlet, so as to adjust the grease separation component to the first posture in time, thereby achieving the technical effects of improving the recognition of the anti-reverse design of the grease separation component and reducing the probability of misassembly of the grease separation component.

[0043] In some technical solutions of the present invention, optionally, the integrated stove further includes: a smoke machine component, the smoke machine component is connected to the main body, and the smoke machine component is communicated with the smoke exhaust port, and the smoke machine component is used for sucking oil fume.

[0044] In this technical solution, the integrated stove is further provided with a smoke machine component. The smoke machine component is fixed below the main body. The smoke machine component is communicated with the flue through the smoke exhaust port. The smoke machine component sucks the oil fume above the main body through the flue, so as to achieve the centralized discharge of the oil fume.

[0045] The additional aspects and advantages of the present invention will become obvious in the following description part, or be understood through the practice of the present invention. Description of the Drawings

[0046] The above and / or additional aspects and advantages of the present invention will become obvious and easy to understand from the description of the embodiments in conjunction with the following drawings, wherein:

[0047] Figure 1 Shows an exploded view of an integrated stove according to an embodiment of the present invention;

[0048] Figure 2 Shows a schematic structural diagram of an integrated stove according to an embodiment of the present invention;

[0049] Figure 3 Shows a schematic structural diagram of an integrated stove according to an embodiment of the present invention;

[0050] Figure 4 Shows an exploded view of a grease separation component according to an embodiment of the present invention;

[0051] Figure 5 Shows a schematic structural diagram of a grease separation component according to an embodiment of the present invention;

[0052] Figure 6 Shows a schematic structural diagram of a grease separation component according to an embodiment of the present invention;

[0053] Figure 7 Shows a schematic structural diagram of an integrated stove according to an embodiment of the present invention;

[0054] Figure 8 is Figure 7 a partial enlarged view of the integrated cooker in the A area in the illustrated embodiment;

[0055] Figure 9 shows a schematic structural diagram of an integrated cooker according to an embodiment of the present invention;

[0056] Figure 10 shows a schematic structural diagram of an integrated cooker according to an embodiment of the present invention;

[0057] Figure 11 shows a schematic structural diagram of a main body according to an embodiment of the present invention;

[0058] Figure 12 shows a schematic structural diagram of an oil separation component according to an embodiment of the present invention;

[0059] Figure 13 shows a schematic structural diagram of a main body according to an embodiment of the present invention;

[0060] Figure 14 shows a schematic structural diagram of a main body according to an embodiment of the present invention;

[0061] Figure 15 shows a schematic structural diagram of an integrated cooker according to an embodiment of the present invention;

[0062] Figure 16 is Figure 15 a partial enlarged view of the integrated cooker in the B area in the illustrated embodiment;

[0063] Figure 17 shows a schematic structural diagram of an integrated cooker according to an embodiment of the present invention;

[0064] Figure 18 shows a schematic structural diagram of an integrated cooker according to an embodiment of the present invention.

[0065] Among them, Figures 1 to 18 the corresponding relationship between the reference numerals in the drawings and the component names is as follows:

[0066] 100 integrated cooker, 110 main body, 1102 smoke inlet, 1104 smoke outlet, 112 flue, 1122 first section, 1124 second section, 120 oil separation component, 1202 inlet, 1204 outlet, 122 frame, 1222 groove, 1224 outward convex section, 1226 second mating surface, 124 separation component, 130 limiting part, 132 bracket, 1322 rib, 134 notch, 136 limiting boss, 1362 first mating surface, 140 range hood assembly. DETAILED DESCRIPTION

[0067] In order to more clearly understand the above-mentioned purpose, features and advantages of the utility model, the utility model is further described in detail below in conjunction with the accompanying drawings and specific implementation methods. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.

[0068] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the protection scope of the present invention is not limited to the specific embodiments disclosed below.

[0069] Refer to the following Figures 1 to 18 An integrated stove according to some embodiments of the present invention is described.

[0070] like Figure 1 , Figure 2 and Figure 3 As shown, an embodiment of the utility model provides an integrated stove 100, which includes: a body 110, the body 110 includes a smoke inlet 1102 and a smoke exhaust port 1104, the body 110 includes a flue 112, the flue 112 includes a first section 1122 and a second section 1124 that are connected, the first section 1122 is connected to the smoke inlet 1102, and the second section 1124 is connected to the smoke exhaust port 1104; a grease separation component 120, the grease separation component 120 is arranged in the first section 1122, and the grease separation component 120 includes an inlet 120 2 and an outlet 1204, the grease separation component 120 includes a first posture, when the grease separation component 120 is in the first posture, the inlet 1202 is communicated with the smoke inlet 1102, and the outlet 1204 is communicated with the second section 1124; a limiting portion 130, the limiting portion 130 is arranged on the body 110, when the grease separation component 120 is in the first posture, the limiting portion 130 avoids the grease separation component 120, when the grease separation component 120 is not in the first posture, the limiting portion 130 interferes with the grease separation component 120, or the grease separation component 120 interferes with the body 110.

[0071] Figure 1 , Figure 2 and Figure 3 In the embodiment, the grease separation assembly 120 is in a first posture, Figure 3 The arrow a in the middle shows the flow direction of the oil smoke.

[0072] In this embodiment, the integrated stove 100 includes a main body 110. The main body 110 is the main frame 122 structure of the integrated stove 100. The top of the main body 110 forms the countertop of the integrated stove 100, and cooking utensils are heated on the countertop. A smoke inlet 1102 is formed on the countertop. A flue 112 is formed inside the main body 110. A smoke outlet 1104 is also formed at the bottom of the main body 110. The first end of the flue 112 is communicated with the smoke inlet 1102, and the second end of the flue 112 is communicated with the smoke outlet 1104. The integrated stove 100 sucks external oil fume through the smoke inlet 1102. After the oil fume enters the flue 112, it is filtered in the flue 112, and the filtered oil fume is discharged from the flue 112 through the smoke outlet 1104.

[0073] An oil-grease separation component 120 is arranged in the flue 112. The oil-grease separation component 120 is arranged opposite to the smoke inlet 1102 on the flue 112. After the oil fume flows into the smoke inlet 1102, it needs to flow through the oil-grease separation component 120 first. The oil-grease separation component 120 can separate the oil and water vapor mixed in the oil fume, complete the pre-stage oil-water separation of the oil fume, and avoid the oil fume carrying oil and water into the filter component and the smoke machine component 140. Thus, on the one hand, it protects the filter component and the smoke machine component 140 from being polluted by oil and water, prolongs the service life of the integrated stove 100. On the other hand, it avoids the oil and water accumulated in the flue 112 from generating peculiar smells. On the third hand, it avoids the oil fume processed by the integrated stove 100 from causing secondary pollution to the environment.

[0074] According to the position of the oil-grease separation component 120, the flue 112 is divided into a first section 1122 and a second section 1124. The oil-grease separation component 120 is arranged in the first section 1122. The oil fume enters the first section 1122 through the smoke inlet 1102. The second section 1124 is located on the downwind side of the oil-grease separation component 120. After being processed by the oil-grease separation component 120, the oil fume enters the second section 1124 and is finally discharged out of the flue 112 through the smoke outlet 1104.

[0075] On this basis, an inlet 1202 and an outlet 1204 are arranged on the oil-grease separation component 120. The inlet 1202 is arranged at the top of the oil-grease separation component 120, and the outlet 1204 is arranged on the periphery of the oil-grease separation component 120, and the outlet 1204 faces one of the directions around the oil-grease separation component 120. After the oil-grease separation component 120 is installed into the smoke inlet 1102 in the first posture, the inlet 1202 is communicated with the smoke inlet 1102 on the upwind side, and the outlet 1204 is communicated with the second section 1124 on the downwind side, so that the oil fume can pass through the oil-grease separation component 120 and smoothly flow into the second section 1124. If the oil-grease separation component 120 is not installed into the smoke inlet 1102 in the first posture, the outlet 1204 cannot be aligned with the second section 1124 on the downwind side, resulting in the oil fume being unable to smoothly flow into the second section 1124 and affecting the normal use of the integrated stove 100.

[0076] In this regard, the body 110 is also provided with a limiting portion 130. When the grease separation component 120 is installed into the smoke inlet 1102 in the first posture, the limiting portion 130 avoids the grease separation component 120, so that the grease separation component 120 can be smoothly installed to the predetermined position. Correspondingly, when the grease separation component 120 is installed into the smoke inlet 1102 in a posture other than the first posture, the limiting portion 130 can block the grease separation component 120 on the installation track of the grease separation component 120, thereby preventing the grease separation component 120 from moving to the predetermined position through structural interference, or the structure on the grease separation component 120 that was originally avoided by the limiting portion 130 interferes with the body 110, so that the user can understand that the assembly posture of the grease separation component 120 is incorrect through the phenomenon that the grease separation component 120 cannot be installed smoothly, so as to prompt the user to adjust the grease separation component 120 to the correct first posture in time.

[0077] It can be seen that by setting the limiting part 130, the anti-reverse design of the grease separation component 120 can be realized, ensuring that the grease separation component 120 installed in the first section 1122 can communicate with the smoke inlet 1102 and the second section 1124, and preventing the reversed grease separation component 120 from affecting the normal circulation of oil smoke. This solves the technical problems existing in the related technology, and further achieves the technical effect of reducing the difficulty of assembling the grease separation component 120 and providing convenient conditions for users.

[0078] like Figure 4 , Figure 5 and Figure 6 As shown, in some embodiments of the present invention, optionally, the grease separation assembly 120 includes: a frame 122 , an inlet 1202 located at the top of the frame 122 , and an outlet 1204 located at the peripheral side of the frame 122 .

[0079] Figure 5 The arrow b in the middle shows the flow direction of the oil smoke.

[0080] In this embodiment, the grease separation component 120 includes a frame 122, which is wrapped on the outside. The frame 122 can provide positioning, protection and support for the internal structure to ensure the effectiveness of the separation component 124 in separating oil and water.

[0081] Among them, the inlet 1202 is set at the top of the frame 122. After assembly, the inlet 1202 is opposite to the smoke inlet 1102 at the top, and the smoke can enter the frame 122 from top to bottom. The outlet 1204 is set on the side of the frame 122, and the smoke flows horizontally after entering the frame 122.

[0082] like Figure 7 , Figure 8 , Figure 9 andFigure 10 As shown, in some embodiments of the utility model, optionally, the limiting portion 130 includes: a bracket 132, the bracket 132 is arranged at the smoke inlet 1102, and the bracket 132 is located on the peripheral side of the frame 122; wherein, one of the bracket 132 and the frame 122 is provided with a groove 1222, and the other is provided with a rib 1322; when the grease separation component 120 is in the first posture, the rib 1322 is at least partially embedded in the groove 1222; when the grease separation component 120 is not in the first posture, the rib 1322 interferes with the bracket 132, or the rib 1322 interferes with the frame 122.

[0083] In this embodiment, the limiting part 130 includes a bracket 132, which is fixed to the body 110. After the grease separation assembly 120 is inserted into the smoke inlet 1102, the bracket 132 surrounds the frame 122. Specifically, the bracket 132 can be installed above the smoke inlet 1102, or the bracket 132 can be embedded inside the smoke inlet 1102.

[0084] Among them, the bracket 132 and the frame 122 are respectively provided with a groove 1222 and a convex rib 1322, the groove 1222 and the convex rib 1322 are asymmetrically arranged, and the shapes of the groove 1222 and the convex rib 1322 are adapted. When the convex rib 1322 is aligned with the groove 1222, the convex rib 1322 can be inserted or embedded in the groove 1222.

[0085] On this basis, when the grease separation component 120 is installed into the smoke inlet 1102 in the first posture, the convex rib 1322 is aligned with the groove 1222, and the convex rib 1322 can be smoothly inserted into the groove 1222, so that the grease separation component 120 can be smoothly installed to the predetermined position, and ensure that the outlet 1204 on the frame 122 is aligned with the second section 1124 on the downwind side. Correspondingly, when the grease separation component 120 is not installed into the smoke inlet 1102 in the first posture, the protrusion and the groove 1222 are staggered, and the convex rib 1322 will be blocked by the bracket 132, or the frame 122 will be blocked by the convex rib 1322, so as to prevent the grease separation component 120 from continuing to be inserted into the first section 1122, thereby prompting the user that the installation posture of the grease separation component 120 is incorrect.

[0086] It can be seen that by providing the bracket 132, the groove 1222 and the convex rib 1322, the anti-reverse design of the grease separation component 120 can be realized, ensuring that the grease separation component 120 installed in the first section 1122 can communicate with the smoke inlet 1102 and the second section 1124, and preventing the reversed grease separation component 120 from affecting the normal circulation of oil smoke. This solves the technical problems existing in the related art, and further achieves the technical effect of reducing the difficulty of assembling the grease separation component 120 and providing convenient conditions for users.

[0087] like Figure 11 ,Figure 12 , Figure 13 and Figure 14 As shown, in some embodiments of the utility model, optionally, the limiting portion 130 includes: a notch 134, the notch 134 is arranged on the peripheral side of the smoke inlet 1102, and the notch 134 is connected to the smoke inlet 1102; wherein, the frame 122 includes a convex section 1224; when the grease separation component 120 is in the first posture, the convex section 1224 is embedded in the notch 134; when the grease separation component 120 is not in the first posture, the convex section 1224 interferes with the body 110.

[0088] In this embodiment, the limiting portion 130 includes a notch 134, which is provided at the edge of the smoke inlet 1102 and extends toward the peripheral side of the smoke inlet 1102. Correspondingly, the frame 122 is provided with an outer convex section 1224 protruding toward the peripheral side of the frame 122, and the shape of the outer convex section 1224 is adapted to the shape of the notch 134, so that the outer convex section 1224 can be inserted into the notch 134.

[0089] On this basis, when the grease separation component 120 is installed into the smoke inlet 1102 in the first posture, the convex section 1224 is aligned with the notch 134, and the convex section 1224 can be smoothly inserted into the notch 134, so that the grease separation component 120 can be smoothly installed to the predetermined position, and the outlet 1204 on the frame 122 is ensured to be aligned with the second section 1124 on the downwind side. Correspondingly, when the grease separation component 120 is not installed into the smoke inlet 1102 in the first posture, the convex section 1224 and the notch 134 are staggered, and the convex section 1224 will be blocked by the smoke inlet 1102 to prevent the grease separation component 120 from continuing to be inserted into the first section 1122, thereby prompting the user that the installation posture of the grease separation component 120 is incorrect.

[0090] It can be seen that by providing the notch 134 and the convex section 1224, the anti-reverse design of the grease separation component 120 can be achieved, ensuring that the grease separation component 120 installed in the first section 1122 can communicate with the smoke inlet 1102 and the second section 1124, and preventing the reversed grease separation component 120 from affecting the normal circulation of oil smoke. This solves the technical problems existing in the related art, and further achieves the technical effect of reducing the difficulty of assembling the grease separation component 120 and providing convenient conditions for users.

[0091] like Figure 15 , Figure 16 , Figure 17 and Figure 18As shown, in some embodiments of the utility model, optionally, the limiting portion 130 includes: a limiting boss 136, which is arranged in the first section 1122, and a first mating surface 1362 is provided on the side of the limiting boss 136 facing the smoke inlet 1102; wherein, a second mating surface 1226 is provided on the side of the frame 122 facing away from the smoke inlet 1102; when the grease separation component 120 is in the first posture, the first mating surface 1362 is opposite to the second mating surface 1226, and the first mating surface 1362 is in contact with the second mating surface 1226, or the first mating surface 1362 avoids the second mating surface 1226; when the grease separation component 120 is not in the first posture, the first mating surface 1362 is staggered with the second mating surface 1226, and the frame 122 interferes with the first mating surface 1362.

[0092] In this embodiment, the limiting portion 130 includes a limiting boss 136, which is disposed on the bottom wall of the first section 1122, and the limiting boss 136 is opposite to the upper smoke inlet 1102, and the limiting boss 136 is provided with a first mating surface 1362 facing the top of the smoke inlet 1102. Correspondingly, the bottom of the grease separation component 120 is provided with a second mating surface 1226, and the shape of the second mating surface 1226 is adapted to the shape of the second mating surface 1226.

[0093] On this basis, when the grease separation component 120 is installed into the smoke inlet 1102 in the first posture, the first mating surface 1362 and the second mating surface 1226 are opposite to each other, and the limiting boss 136 and the grease separation component 120 avoid each other through the first mating surface 1362 and the second mating surface 1226, so that the grease separation component 120 can be smoothly installed to the predetermined position, and ensure that the outlet 1204 on the frame 122 is aligned with the second section 1124 on the leeward side. Specifically, after the assembly is completed, the first mating surface 1362 and the second mating surface 1226 are fitted together, or the first mating surface 1362 and the second mating surface 1226 are spaced apart. Correspondingly, when the grease separation component 120 is not installed into the smoke inlet 1102 in the first posture, the first mating surface 1362 and the second mating surface 1226 are offset, and the area on the frame 122 where the second mating surface 1226 is not provided is blocked by the second mating surface 1226 to prevent the grease separation component 120 from continuing to be inserted into the first section 1122, thereby prompting the user that the installation posture of the grease separation component 120 is incorrect.

[0094] It can be seen that by providing the limit boss 136, the first mating surface 1362 and the second mating surface 1226, the anti-reverse design of the grease separation component 120 can be achieved, ensuring that the grease separation component 120 installed in the first section 1122 can connect the smoke inlet 1102 and the second section 1124, and preventing the reverse-installed grease separation component 120 from affecting the normal flow of oil fume. Thus, the technical problems existing in the related art are solved, and further, the technical effect of reducing the assembly difficulty of the grease separation component 120 and providing convenient conditions for users is achieved.

[0095] As Figure 17 and Figure 18 shown, in some embodiments of the present invention, optionally, the first mating surface 1362 and the second mating surface 1226 have the same shape; the shapes of the first mating surface 1362 and the second mating surface 1226 include: stepped shape, ramp shape or wavy shape.

[0096] In this embodiment, the first mating surface 1362 and the second mating surface 1226 have the same shape. After the grease separation component 120 is successfully installed in the predetermined position in the first posture, the first mating surface 1362 and the second mating surface 1226 are attached together, so as to provide support for the frame 122 through the positioning boss, thereby improving the positioning accuracy of the grease separation component 120 and reducing the probability of loosening and misalignment of the grease separation component 120 during operation, and further achieving the improvement of the working stability of the grease separation component 120.

[0097] Specifically, the shapes of the first mating surface 1362 and the second mating surface 1226 can be designed as stepped shapes, or the shapes of the first mating surface 1362 and the second mating surface 1226 can be designed as ramp shapes, or the shapes of the first mating surface 1362 and the second mating surface 1226 can be designed as wavy shapes.

[0098] As Figure 4 、 Figure 5 and Figure 6 shown, in some embodiments of the present invention, optionally, the grease separation component 120 further includes: a separation component 124, the separation component 124 is disposed in the frame 122, and the separation component 124 is used to separate the grease in the oil fume between the inlet 1202 and the outlet 1204.

[0099] In this embodiment, the separation component 124 can filter the water vapor and grease in the oil fume. Specifically, a metal filter screen can be selected as the separation component 124. The water vapor and grease in the oil fume condense on the metal filter screen after contacting the metal filter screen, and the gas passes through the metal filter screen through the mesh holes on the metal filter screen, thereby realizing the separation of oil and water in the oil fume.

[0100] The frame 122 is wrapped around the outside of the separation component 124 , and the frame 122 can provide positioning, protection and support on the outside of the separation component 124 to ensure the effectiveness of the separation component 124 in oil-water separation.

[0101] Among them, the inlet 1202 is set at the top of the frame 122. After the assembly is completed, the inlet 1202 is opposite to the smoke inlet 1102 at the top, and the smoke can enter the frame 122 from top to bottom. The outlet 1204 is set on the side of the frame 122, and multiple outlets 1204 are respectively arranged at different positions of the frame 122, and the filter component is arranged between the inlet 1202 and the outlet 1204. After entering the frame 122, the smoke flows horizontally and passes through the separation component 124 before flowing to the outlet 1204.

[0102] like Figure 4 , Figure 5 and Figure 6 As shown, in some embodiments of the present invention, optionally, the separation component 124 is an asymmetric structure.

[0103] In this embodiment, the separation component 124 installed on the inner side of the frame 122 is an asymmetric structure. The asymmetric separation component 124 presents different shapes when it is installed into the smoke inlet 1102 in different postures, so that the user can determine whether the grease separation component 120 is installed into the smoke inlet 1102 in the correct first posture by observing the shape of the separation component 124, thereby ensuring that the grease separation component 120 can be installed correctly, thereby achieving the technical effect of reducing the difficulty of assembling the grease separation component 120 and providing convenient conditions for users.

[0104] like Figure 1 and Figure 2 As shown, in some embodiments of the present invention, optionally, when the grease separation component 120 is in the first posture, the grease separation component 120 is located inside the smoke inlet 1102; when the grease separation component 120 is not in the first posture, the grease separation component 120 is at least partially located outside the smoke inlet 1102.

[0105] In this embodiment, when the grease separation component 120 is inserted into the smoke inlet 1102 in a first posture, the limiting portion 130 avoids the grease separation component 120, so that the grease separation component 120 can be smoothly moved to the predetermined position. The grease separation component 120 moved to the predetermined position enters the first section 1122 as a whole, so as to facilitate the installation of the grille at the smoke inlet 1102.

[0106] Correspondingly, when the grease separation component 120 is not inserted into the smoke inlet 1102 in the first posture, the grease separation component 120 interferes with the limiting portion 130 or the main body 110, resulting in part of the stuck grease separation component 124 being exposed outside the smoke inlet 1102. In this case, the user can learn that the assembly posture of the grease separation component 120 is incorrect by observing the part of the grease separation component 120 extending out of the smoke inlet 1102, so as to timely adjust the grease separation component 120 to the first posture, thereby achieving the technical effects of improving the anti-reverse design recognition of the grease separation component 120 and reducing the probability of misinstallation of the grease separation component 120.

[0107] As Figure 1 , Figure 2 and Figure 3 shown, in some embodiments of the present invention, optionally, the integrated range hood 100 further includes: a smoke machine assembly 140, the smoke machine assembly 140 is connected to the main body 110, and the smoke machine assembly 140 is communicated with the smoke exhaust port 1104, and the smoke machine assembly 140 is used for sucking oil fume.

[0108] In this embodiment, the integrated range hood 100 is further provided with a smoke machine assembly 140, the smoke machine assembly 140 is fixed below the main body 110, the smoke machine assembly 140 is communicated with the flue 112 through the smoke exhaust port 1104, and the smoke machine assembly 140 sucks the oil fume above the main body 110 through the flue 112, so as to achieve the centralized discharge of the oil fume.

[0109] It should be clear that in the claims, the description and the accompanying drawings of the present invention, the term "a plurality" means two or more, unless otherwise clearly defined. The terms "upper", "lower"

[0110] and other indicated orientations or positional relationships are based on the orientations or positional relationships shown in the drawings, and are only for more conveniently describing the present invention and making the description process simpler, rather than indicating or implying that the device or element referred to must have the specific orientation, be constructed and operated in the specific orientation, so these descriptions cannot be understood as limitations on the present invention; the terms "connection", "installation", "fixation", etc. should all be understood in a broad sense. For example, "connection" can be a fixed connection between multiple objects, or a detachable connection between multiple objects, or an integral connection; it can be a direct connection between multiple objects, or an indirect connection between multiple objects through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to the specific situations of the above data.

[0111] In the claims, description and drawings of the present utility model, the descriptions of terms such as "one embodiment", "some embodiments", "specific embodiments", etc. mean that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present utility model. In the claims, description and drawings of the present utility model, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in a suitable manner in any one or more embodiments or examples.

[0112] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. For those skilled in the art, the present utility model can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. An integrated stove, characterized in that: include: A body, the body comprising a smoke inlet and a smoke exhaust port, the body comprising a smoke duct, the smoke duct comprising a first section and a second section connected to each other, the first section being connected to the smoke inlet, and the second section being connected to the smoke exhaust port; A grease separation component, the grease separation component is arranged at the first section, the grease separation component comprises an inlet and an outlet, the grease separation component comprises a first posture, when the grease separation component is in the first posture, the inlet is communicated with the smoke inlet, and the outlet is communicated with the second section; A limiting portion is provided on the main body, and when the grease separation component is in the first posture, the limiting portion avoids the grease separation component, and when the grease separation component is not in the first posture, the limiting portion interferes with the grease separation component, or the grease separation component interferes with the main body.

2. The integrated stove according to claim 1, characterized in that: The grease separation component comprises: The inlet is located at the top of the frame, and the outlet is located at the side of the frame.

3. The integrated stove according to claim 2, characterized in that: The limiting part comprises: A bracket, the bracket is arranged at the smoke inlet, and the bracket is located at the peripheral side of the frame; Wherein, one of the bracket and the frame is provided with a groove, and the other is provided with a convex rib; When the grease separation component is in the first posture, the convex rib is at least partially embedded in the groove; When the grease separation assembly is not in the first posture, the convex rib interferes with the bracket, or the convex rib interferes with the frame.

4. The integrated stove according to claim 2, characterized in that: The limiting part comprises: A notch, the notch being arranged on the periphery of the smoke inlet and connected to the smoke inlet; Wherein, the frame includes an outer convex section; When the grease separation component is in the first posture, the convex section is embedded in the notch; When the grease separation component is not in the first posture, the convex section interferes with the body.

5. The integrated stove according to claim 2, characterized in that: The limiting part comprises: A limiting boss is provided in the first section, and a first matching surface is provided on a side of the limiting boss facing the smoke inlet; Wherein, a second matching surface is provided on a side of the frame facing away from the smoke inlet; When the grease separation component is in the first posture, the first mating surface is opposite to the second mating surface, and the first mating surface is in contact with the second mating surface, or the first mating surface avoids the second mating surface; When the grease separation component is not in the first posture, the first mating surface is offset from the second mating surface, and the frame interferes with the first mating surface.

6. The integrated stove according to claim 5, characterized in that: The first mating surface and the second mating surface have the same shape; The shapes of the first mating surface and the second mating surface include: step shape, slope shape or wave shape.

7. The integrated stove according to claim 2, characterized in that: The grease separation component also includes: A separation component is arranged in the frame and is used to separate grease from the oil smoke between the inlet and the outlet.

8. The integrated stove according to claim 7, characterized in that: The separation component has an asymmetric structure.

9. The integrated stove according to any one of claims 1 to 8, characterized in that: When the grease separation component is in the first posture, the grease separation component is located inside the smoke inlet; When the grease separation component is not in the first posture, the grease separation component is at least partially located outside the smoke inlet.

10. The integrated stove according to any one of claims 1 to 8, characterized in that: Also includes: A range hood assembly is connected to the body and communicated with the smoke exhaust port, and the range hood assembly is used to extract oil smoke.