Integrated cooker

By providing multiple outlets and multiple loading postures on the integrated stove grease separation component, the problem of easy misinstallation of the grease separation component is solved, the practicality and reliability are improved, the assembly difficulty is reduced, and secondary pollution is reduced.

CN222978243UActive Publication Date: 2025-06-13FOSHAN SHUNDE MIDEA ELECTRICAL HEATING APPLIANCES MFG CO LTD
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Patent Information

Application Number
CN202422138866.0
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 existing integrated stove grease separation components are easy to be installed incorrectly, resulting in poor grease separation effect, increasing assembly difficulty and the risk of secondary contamination.

Method used

The grease separation component is designed with multiple outlets and multiple loading postures to ensure that the inlet is connected with the smoke inlet and the outlet is connected with the second section, providing multiple optional loading postures to reduce the probability of incorrect installation.

Benefits of technology

The practicability of the grease separation component is improved, the assembly difficulty is reduced, the service life is extended, and the secondary pollution is reduced.

✦ 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 in the first section part, the grease separation assembly comprises an inlet and a plurality of outlets, the grease separation assembly comprises a plurality of postures, the postures correspond to the outlets in a one-to-one mode, the inlet is communicated with the smoke inlet, and the outlets corresponding to the postures are communicated with the second section part. The outlets corresponding to the multiple loading postures are formed in the grease separation assembly, the multiple loading postures can be provided for a user, and then the technical effects that the practicability of the grease separation assembly is improved, and the assembling operation difficulty of the grease separation assembly is reduced are achieved.
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Description

Technical Field

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

[0002] The integrated stove reduces the pollution of the environment by sucking oil fumes. The oil fumes drawn into the interior of the integrated stove are separated from the water vapor and oil in the oil fumes through an oil separation component, so as to reduce the secondary pollution of the exhausted oil fumes.

[0003] In the related art, the oil separation component includes a gas inlet side and a gas outlet side. When assembling, it is necessary to install the oil separation component in a preset direction to ensure the normal use of the oil separation component.

[0004] After the assembly is completed, if the orientation of the gas outlet side is incorrect, the oil separation component will block the oil fumes, resulting in the technical problem that the oil separation component of the integrated stove is prone to be misassembled. Summary of the Utility Model

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

[0006] For this reason, the utility model provides an integrated stove.

[0007] In view of this, the utility model provides an integrated stove, which includes: a main body, the main body includes a smoke inlet and a smoke outlet, the interior of the main body includes a flue, the flue includes a first section and a second section which are connected, the first section is connected to the smoke inlet, and the second section is connected to the smoke outlet; an oil separation component, the oil separation component is arranged in the first section, the oil separation component includes an inlet and a plurality of outlets, the oil separation component includes a plurality of postures, the plurality of postures correspond to the plurality of outlets one by one, the inlet is connected to the smoke inlet, and the outlet corresponding to the posture is connected to the second section.

[0008] In this technical solution, the integrated stove includes a main body, the main body is the main frame structure of the integrated stove, the top of the main body forms the cooking surface of the integrated stove, and cooking utensils are heated on the cooking surface. A smoke inlet is opened on the cooking surface. A flue is formed inside the main body, and a smoke outlet is also opened at the bottom of the main 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 outlet. The integrated stove sucks external oil fumes through the smoke inlet, and the oil fumes enter the flue and are filtered in the flue, and the filtered oil fumes are discharged from the smoke outlet out of the flue.

[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, the grease separation component is provided with an inlet and multiple outlets, and the multiple outlets are respectively provided at multiple different positions of the grease separation component. After the grease separation component is assembled, the inlet is connected to the smoke inlet on the upwind side, and one of the multiple outlets is connected to the second section on the downwind side.

[0012] In this regard, the grease separation component can be installed in the first section in a variety of postures, the number of postures is the same as the number of outlets, and the multiple postures correspond to the multiple outlets. After the grease separation component is assembled, the grease separation component is connected to the second section through the outlet corresponding to the current posture, so as to ensure that the grease separation component in a variety of postures can be connected to the smoke inlet and the second section, thereby providing users with a variety of optional installation postures.

[0013] It can be seen that by opening outlets corresponding to multiple loading postures on the grease separation component, multiple loading postures can be provided for the user, so that the user can select any one of the multiple postures to load the grease separation component, and ensure that the loaded grease separation component can be used normally. Compared with the solution in the related art that can only be installed in a single preset direction, the multiple outlets provided for each loading posture can reduce the probability of the grease separation component being installed incorrectly, thereby solving the technical problems existing in the related art. This further achieves the technical effect of improving the practicality of the grease separation component and reducing the difficulty of the grease separation component assembly operation.

[0014] In addition, the filter assembly provided by the present invention 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 with an inlet located at the top of the frame and an outlet located on the periphery of the frame; a separation component disposed within the frame for separating grease in the cooking fume between the inlet and the outlet.

[0016] In this technical solution, the grease separation component includes a frame and a separation component. The separation component can filter the water vapor and grease in the cooking fume. Specifically, a metal filter screen can be selected as the separation component. The water vapor and grease in the cooking fume condense on the metal filter screen after contacting it, and the gas penetrates through the mesh holes on the metal filter screen, thus realizing the separation of oil and water in the cooking fume.

[0017] The frame is wrapped outside the separation component. The frame can provide positioning, protection and support outside the separation component to ensure the effectiveness of the separation component in separating oil and water.

[0018] Among them, the inlet is arranged at the top of the frame. After assembly, the inlet is opposite to the smoke inlet at the top, and the cooking fume can enter the frame from top to bottom. The outlet is arranged on the periphery of the frame, and multiple outlets are respectively arranged in different positions of the frame. The filtering component is arranged between the inlet and the outlet. The cooking fume flows horizontally after entering the frame and penetrates through the separation component before flowing towards the outlet.

[0019] By arranging multiple outlets around the frame, the grease separation component can be rotated to switch postures, facilitating the user to select the required posture among multiple postures, thereby reducing the assembly difficulty of the grease separation component.

[0020] In some technical solutions of the present utility model, optionally, the outlet includes a first outlet and a second outlet, and the first outlet and the second outlet are located on opposite sides of the frame; the postures include a first posture and a second posture, and the grease separation component in the first posture is opposite to the grease separation component in the second posture.

[0021] In this technical solution, a first outlet and a second outlet are arranged on the frame, and the first outlet and the second outlet are respectively arranged on opposite sides of the frame. Correspondingly, the grease separation component includes a first posture and a second posture.

[0022] When the grease separation component is in the first posture, the first outlet faces the second section part. The grease separation component is connected to the second section part through the first outlet, and the cooking fume penetrates through the grease separation component through the inlet and the first outlet. At the same time, the second outlet faces away from the second section part, and the second outlet is blocked by the inner wall of the first section part, and the second outlet does not participate in the circulation of the cooking fume.

[0023] When it is necessary to switch the oil-grease separation component from the first posture to the second posture, operate the oil-grease separation component to rotate 180° in the first rotation direction to reverse the orientations of the first outlet and the second outlet. At this time, the second outlet faces the second section, and the oil-grease separation component communicates with the second section through the second outlet, and the oil fume passes through the inlet and the second outlet through the oil-grease separation component. At the same time, the first outlet faces away from the second section, and the first outlet is blocked by the inner wall of the first section, and the first outlet does not participate in the circulation of the oil fume.

[0024] It can be seen that by providing the first outlet and the second outlet, two installation postures can be provided for the oil-grease separation component. If the first outlet facing the second section is defined as the correct installation, even if the user installs the oil-grease separation component in the reverse direction according to the second posture, the function of the oil-grease separation component can still be ensured to be effective, thereby achieving the technical effects of reducing the assembly difficulty of the oil-grease separation component and improving the reliability of the integrated range hood.

[0025] On this basis, different areas on the filtering component are used for oil-water separation in the first posture and the second posture respectively. After the integrated range hood has long-term oil fume treatment through the oil-grease separation component in the first posture, the user can switch the oil-grease separation component to the second posture to call another part of the area of the filtering component, thereby prolonging the service life of the oil-grease separation component.

[0026] In some technical solutions of the present utility model, optionally, the peripheral side of the frame includes two wide faces and two narrow faces, and the first outlet and the second outlet are respectively arranged on the two wide faces.

[0027] In this technical solution, the frame includes two opposite wide faces and two opposite narrow faces, and the two wide faces and the two narrow faces are connected end to end to form the peripheral side wall of the frame.

[0028] On this basis, the first outlet and the second outlet are respectively opened on the two wide faces. Opening the outlets on the wide faces can increase the size of the outlets, thereby improving the processing efficiency of the oil-grease separation component for the oil fume, and further improving the suction efficiency of the integrated range hood for the oil fume.

[0029] In some technical solutions of the present utility model, optionally, one of the two narrow faces is provided with a first identifier corresponding to the first posture; the other narrow face is provided with a second identifier corresponding to the second posture.

[0030] In this technical solution, the first identifier and the second identifier are respectively arranged on the two opposite narrow faces. During the installation process of the user installing the oil-grease separation component, if the first identifier faces the user, the oil-grease separation component is in the first posture, and after the assembly is completed, the second section can be communicated through the first outlet. Correspondingly, if the second identifier faces the user, the oil-grease separation component is in the second posture, and after the assembly is completed, the second section can be communicated through the second outlet.

[0031] For example, taking D-1 as the first identifier and D-2 as the second identifier, the user can distinguish the first posture and the second posture by observing the letters and numbers.

[0032] Thus, by setting the first identifier and the second identifier, the user can distinguish the current posture of the oil separation component, making the assembly of the oil separation component more controllable, thereby achieving the technical effect of reducing the assembly complexity of the oil separation component and providing convenient conditions for the user.

[0033] Specifically, the first identifier and the second identifier can be convex structures injection-molded together with the frame, or they can be paint layers pasted on the narrow surface. There is no strict limitation on this technical solution, as long as it can fulfill the function of posture prompt.

[0034] In some technical solutions of the present utility model, optionally, the separation component includes: a first filter screen, the first filter screen includes a plurality of bent segments, the bent segments are located between the inlet and one of the plurality of outlets, and the plurality of bent segments correspond to the plurality of outlets one by one.

[0035] In this technical solution, the separation component includes a first filter screen. The first filter screen is formed with a plurality of bent segments by bending. After the first filter screen is precisely installed inside the frame, the plurality of bent segments are respectively opposite to the plurality of outlets, and each bent segment performs oil-water separation on the oil fume between the inlet and the outlet corresponding to this bent segment.

[0036] For example, when the outlets include a first outlet and a second outlet, a metal filter screen is bent to form two symmetric bent segments, and the two bent segments are respectively opposite to the two outlets on the two wide surfaces. When the oil separation component is installed in the first section in the first posture, the bent segment opposite to the first outlet becomes effective, and the other bent segment opposite to the second outlet becomes ineffective. Similarly, when the oil separation component is installed in the first section in the second posture, the bent segment opposite to the second outlet becomes effective, and the other bent segment opposite to the first outlet becomes ineffective.

[0037] Thus, this technical solution can simultaneously meet the oil-water separation requirements of multiple postures through a single metal filter screen, thereby reducing the structural complexity of the filtering component, the process complexity of the filtering component, and the production cost.

[0038] In some technical solutions of the present utility model, optionally, the frame includes a slot, the slot is opposite to the bottom wall of the frame, the first end of the bent segment is inserted into the slot, and the oil separation component further includes: a limiting rib, the limiting rib is arranged on the bottom wall of the frame, and the second end of the bent segment abuts against the limiting rib.

[0039] In this technical solution, a slot is provided inside the frame. The slot is arranged below the entrance and is opposite to the bottom wall of the frame. After the separation component is inserted into the frame from the entrance, the upper end of the bent section is snapped into the slot to position the multiple bent sections, so that the filtering component can be maintained in a predetermined shape, ensuring that the filtering component can meet the oil-water separation requirements in multiple postures.

[0040] On this basis, limiting ribs are also provided on the bottom wall of the frame. The lower end of the bent section abuts against the limiting ribs. The limiting ribs can cooperate with the slot to perform double-end positioning on the separation component, thereby improving the positioning accuracy of the separation component and further improving the reliability of the oil-water separation function of the separation component.

[0041] In some technical solutions of the present utility model, optionally, the separation component includes: a plurality of second filter meshes. The second filter meshes are located between the entrance and one of the plurality of outlets, and the plurality of second filter meshes correspond to the plurality of outlets one by one.

[0042] In this technical solution, another structural form of the separation component is proposed. Specifically, a plurality of second filter meshes are installed in the frame. The plurality of second filter meshes are respectively opposite to the plurality of outlets. Each second filter mesh performs oil-water separation on the oil fume between the entrance and the outlet corresponding to this second filter mesh.

[0043] For example, when the outlets include a first outlet and a second outlet, the two second filter meshes are respectively opposite to the two outlets on the two wide faces. When the grease separation component is inserted into the first section part in the first posture, the second filter mesh opposite to the first outlet becomes effective, and the other second filter mesh opposite to the second outlet becomes ineffective. Similarly, when the grease separation component is inserted into the first section part in the second posture, the second filter mesh opposite to the second outlet becomes effective, and the other second filter mesh opposite to the first outlet becomes ineffective.

[0044] It can be seen that the plurality of second filter meshes can meet the oil-water separation requirements in multiple postures, thereby reducing the assembly complexity of the grease separation component and improving the practicability of the integrated range hood.

[0045] In some technical solutions of the present utility model, optionally, the first section part extends in the height direction of the integrated range hood, and the grease separation component can be inserted into the first section part along the height direction of the integrated range hood; the second section part extends in the length direction of the integrated range hood, and the outlet corresponding to the posture is opposite to the second section part in the length direction of the integrated range hood.

[0046] In this technical solution, the first section part extends in the height direction of the integrated range hood, and the grease separation component can be inserted into the first section part from top to bottom. The second section part is arranged on the periphery of the first section part and extends in the length direction of the integrated range hood.

[0047] By setting the vertical first-stage part, the disassembly and assembly difficulty of the grease separation component can be reduced, enabling the grease separation component to be smoothly installed in the designated position. By setting the horizontally extending second-stage part, the horizontal space inside the main body can be reasonably utilized, thereby reducing the thickness of the main body and providing convenient conditions for the ultra-thin design of the integrated stove.

[0048] In some technical solutions of the present utility model, optionally, the integrated stove further includes: a smoke machine component, which is connected to the main body and communicates with the smoke exhaust port, and the smoke machine component is used for sucking oil fumes.

[0049] In this technical solution, the integrated stove is further provided with a smoke machine component, which is fixed below the main body. The smoke machine component communicates with the flue through the smoke exhaust port, and the smoke machine component sucks the oil fumes above the main body through the flue, thereby realizing the centralized discharge of oil fumes.

[0050] The additional aspects and advantages of the present utility model will become obvious in the following description part, or be understood through the practice of the present utility model. Description of the Drawings

[0051] The above and / or additional aspects and advantages of the present utility model will become obvious and easy to understand from the description of the embodiments in conjunction with the following drawings, wherein:

[0052] Figure 1 Shows a schematic structural diagram of an integrated stove according to an embodiment of the present utility model;

[0053] Figure 2 Shows a schematic structural diagram of an integrated stove according to an embodiment of the present utility model;

[0054] Figure 3 Shows a schematic structural diagram of a grease separation component according to an embodiment of the present utility model;

[0055] Figure 4 Shows a schematic structural diagram of a grease separation component according to an embodiment of the present utility model;

[0056] Figure 5 Shows a schematic structural diagram of a grease separation component according to an embodiment of the present utility model;

[0057] Figure 6 For Figure 5 A cross-sectional view of the grease separation component in the A-A direction in the shown embodiment;

[0058] Figure 7 Shows an exploded view of a grease separation component according to an embodiment of the present utility model.

[0059] Among them, Figures 1 to 7 The corresponding relationship between the reference numerals in

[0060] 100 Integrated stove, 110 Main body, 1102 Smoke inlet, 1104 Smoke exhaust port, 112 Flue, 1122 First section, 1124 Second section, 120 Grease separation component, 1202 Inlet, 1204 Outlet, 12042 First outlet, 12044 Second outlet, 122 Frame, 1222 Slot, 1224 Limit rib, 124 Separation component, 1242 First filter screen, 12422 Bent section, 1244 Second filter screen, 126 First identifier, 128 Second identifier, 130 Range hood component. Detailed implementation manners

[0061] In order to more clearly understand the above objects, features and advantages of the present invention, the present invention will be further described in detail below with reference to the drawings and specific implementation manners. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments may be combined with each other.

[0062] Many specific details are set forth in the following description in order to fully understand 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 by the specific embodiments disclosed below.

[0063] The following refers to Figures 1 to 7 Describe an integrated stove according to some embodiments of the present invention.

[0064] As Figure 1 , Figure 2 And Figure 3 As shown in

[0065] In this embodiment, the integrated range hood 100 includes a main body 110, and the main body 110 is the main frame 122 structure of the integrated range hood 100. The top of the main body 110 forms the cooking surface of the integrated range hood 100, and cooking utensils are heated on the cooking surface. A smoke inlet 1102 is provided on the cooking surface. A flue 112 is formed inside the main body 110, and a smoke outlet 1104 is also provided 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 range hood 100 sucks external cooking fumes through the smoke inlet 1102. After the cooking fumes enter the flue 112, they are filtered in the flue 112, and the filtered cooking fumes are discharged from the flue 112 through the smoke outlet 1104.

[0066] An oil-grease separation assembly 120 is arranged in the flue 112. The oil-grease separation assembly 120 is disposed opposite to the smoke inlet 1102 on the flue 112. After the cooking fumes flow into the smoke inlet 1102, they need to flow through the oil-grease separation assembly first. The oil-grease separation assembly 120 can separate the oil-grease and water vapor mixed in the cooking fumes, completing the pre-stage oil-water separation of the cooking fumes, avoiding the cooking fumes carrying oil and water into the filter assembly and the smoke machine assembly 130. Thus, on the one hand, it protects the filter assembly and the smoke machine assembly 130 from being polluted by oil and water, extending the service life of the integrated range hood 100; on the other hand, it avoids the oil and water accumulated in the flue 112 from generating peculiar smells; and on the third hand, it avoids the cooking fumes processed by the integrated range hood 100 from causing secondary pollution to the environment.

[0067] According to the position of the oil-grease separation assembly 120, the flue 112 is divided into a first section 1122 and a second section 1124. The oil-grease separation assembly 120 is arranged in the first section 1122. The cooking fumes enter the first section 1122 through the smoke inlet 1102. The second section 1124 is located on the downwind side of the oil-grease separation assembly 120. After being processed by the oil-grease separation assembly 120, the cooking fumes enter the second section 1124 and are finally discharged out of the flue 112 through the smoke outlet 1104.

[0068] On this basis, an inlet 1202 and a plurality of outlets 1204 are provided on the oil-grease separation assembly 120, and the plurality of outlets 1204 are respectively arranged at a plurality of different orientations of the oil-grease separation assembly 120. After the assembly of the oil-grease separation assembly 120 is completed, the inlet 1202 is communicated with the smoke inlet 1102 on the upwind side, and one of the plurality of outlets 1204 is communicated with the second section 1124 on the downwind side.

[0069] In this regard, the grease separation component 120 can be installed in the first section 1122 in multiple postures, and the number of postures is the same as the number of outlets 1204. The multiple postures correspond to the multiple outlets 1204 one by one. After the assembly of the grease separation component 120 is completed, the grease separation component 120 communicates with the second section 1124 through the outlet 1204 corresponding to the current posture, so as to ensure that the grease separation component 120 can communicate with the smoke inlet 1102 and the second section 1124 in multiple postures, thereby providing multiple installable postures for users to choose from.

[0070] It can be seen that by providing outlets 1204 corresponding to multiple installation postures on the grease separation component 120, multiple installation postures can be provided for users, enabling users to choose any one of the multiple postures to install the grease separation component 120 and ensuring that the installed grease separation component 120 can be used normally. Compared with the solution in the related art that can only be installed in a single preset direction, the multiple outlets 1204 provided for each installation posture can reduce the probability of misinstallation of the grease separation component 120, thereby solving the technical problems existing in the related art. Furthermore, the technical effects of improving the practicability of the grease separation component 120 and reducing the assembly operation difficulty of the grease separation component 120 are achieved.

[0071] As Figure 4 and Figure 5 shown, in some embodiments of the present invention, optionally, the grease separation component 120 includes: a frame 122, an inlet 1202 is located at the top of the frame 122, and an outlet 1204 is located on the periphery of the frame 122; a separation component 124, the separation component 124 is disposed inside 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.

[0072] In this embodiment, the grease separation component 120 includes a frame 122 and a separation component 124. 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 penetrates 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.

[0073] The frame 122 is wrapped outside the separation component 124. The frame 122 can provide positioning, protection and support outside the separation component 124 to ensure the effectiveness of the separation component 124 in separating oil and water.

[0074] Among them, the inlet 1202 is arranged 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 oil fume can enter the frame 122 from top to bottom. The outlet 1204 is arranged on the peripheral side of the frame 122, and multiple outlets 1204 are respectively arranged at different positions of the frame 122. The filtering component is arranged between the inlet 1202 and the outlet 1204. The oil fume flows horizontally after entering the frame 122 and passes through the separation component 124 before flowing towards the outlet 1204.

[0075] By arranging multiple outlets 1204 around the frame 122, the grease separation assembly 120 can switch its posture by rotation, facilitating the user to select the required posture from multiple postures, thereby reducing the assembly difficulty of the grease separation assembly 120.

[0076] Such as Figure 3 、 Figure 4 and Figure 5 As shown, in some embodiments of the present invention, optionally, the outlet 1204 includes a first outlet 12042 and a second outlet 12044. The first outlet 12042 and the second outlet 12044 are located on opposite sides of the frame 122; the postures include a first posture and a second posture, and the grease separation assembly 120 in the first posture is opposite to the grease separation assembly 120 in the second posture.

[0077] In this embodiment, the first outlet 12042 and the second outlet 12044 are arranged on the frame 122, and the first outlet 12042 and the second outlet 12044 are respectively arranged on opposite sides of the frame 122. Correspondingly, the grease separation assembly 120 includes a first posture and a second posture.

[0078] When the grease separation assembly 120 is in the first posture, the first outlet 12042 faces the second section 1124, and the grease separation assembly 120 communicates with the second section 1124 through the first outlet 12042. The oil fume passes through the grease separation assembly 120 through the inlet 1202 and the first outlet 12042. At the same time, the second outlet 12044 faces away from the second section 1124, and the second outlet 12044 is blocked by the inner wall of the first section 1122, and the second outlet 12044 does not participate in the circulation of the oil fume.

[0079] When it is necessary to switch the grease separation assembly 120 from the first posture to the second posture, operate the grease separation assembly 120 along the first rotation direction ( Figure 3The arrow d (shown in the figure) rotates 180°, so as to reverse the orientations of the first outlet 12042 and the second outlet 12044. At this time, the second outlet 12044 faces the second section 1124, and the grease separation assembly 120 communicates with the second section 1124 through the second outlet 12044. The cooking fume passes through the inlet 1202 and the second outlet 12044 and penetrates through the grease separation assembly 120. At the same time, the first outlet 12042 faces away from the second section 1124, and the first outlet 12042 is blocked by the inner wall of the first section 1122, and the first outlet 12042 does not participate in the circulation of the cooking fume.

[0080] Wherein, Figure 3 The grease separation assembly within the dashed box e1 is in the first posture, the grease separation assembly within the dashed box e3 is in the second posture, and the grease separation assembly within the dashed box e2 is between the first posture and the second posture.

[0081] It can be seen that by providing the first outlet 12042 and the second outlet 12044, two installation postures can be provided for the grease separation assembly 120. If defining the first outlet 12042 facing the second section 1124 as the correct installation, even if the user installs the grease separation assembly 120 in the reverse posture according to the second posture, the function of the grease separation assembly 120 can still be ensured to be effective, thereby achieving the technical effects of reducing the assembly difficulty of the grease separation assembly 120 and improving the reliability of the integrated cooking stove 100.

[0082] On this basis, different regions on the filtering component are respectively used for oil-water separation in the first posture and the second posture. After the integrated cooking stove 100 has long performed cooking fume treatment through the grease separation assembly 120 in the first posture, the user can switch the grease separation assembly 120 to the second posture to call another part of the region of the filtering component, thereby prolonging the service life of the grease separation assembly 120.

[0083] Such as Figure 3 、 Figure 4 and Figure 5 As shown, in some embodiments of the present invention, optionally, the peripheral side of the frame 122 includes two wide faces and two narrow faces, and the first outlet 12042 and the second outlet 12044 are respectively arranged on the two wide faces.

[0084] In this embodiment, the frame 122 includes two opposite wide faces and two opposite narrow faces, and the two wide faces and the two narrow faces are connected end to end to form the peripheral side wall of the frame 122.

[0085] On this basis, the first outlet 12042 and the second outlet 12044 are respectively opened on the two wide faces. Opening the outlet 1204 on the wide face can increase the size of the outlet 1204, thereby improving the processing efficiency of the grease separation assembly 120 for the cooking fume, and further improving the suction efficiency of the integrated cooking stove 100 for the cooking fume.

[0086] As Figure 3 and Figure 4 shown, in some embodiments of the present utility model, optionally, one of the two narrow faces is provided with a first identifier 126 corresponding to a first posture; the other narrow face is provided with a second identifier 128 corresponding to a second posture.

[0087] In this embodiment, the first identifier 126 and the second identifier 128 are respectively provided on the two opposite narrow faces. During the installation process of the grease separation component 120 by the user, if the first identifier 126 faces the user, the grease separation component 120 is in the first posture, and after assembly, it can communicate with the second section 1124 through the first outlet 12042. Correspondingly, if the second identifier 128 faces the user, the grease separation component 120 is in the second posture, and after assembly, it can communicate with the second section 1124 through the second outlet 12044.

[0088] For example, taking D-1 as the first identifier 126 and D-2 as the second identifier 128, the user can distinguish the first posture and the second posture by observing the letters and numbers.

[0089] It can be seen from this that by setting the first identifier 126 and the second identifier 128, the user can distinguish the current posture of the grease separation component 120, making the assembly of the grease separation component 120 more controllable, and further achieving the technical effect of reducing the assembly complexity of the grease separation component 120 and providing convenient conditions for the user.

[0090] Specifically, the first identifier 126 and the second identifier 128 can be convex structures injection-molded together with the frame 122, and the first identifier 126 and the second identifier 128 can also be paint layers pasted on the narrow faces. This embodiment does not make a rigid limitation on this, as long as it can meet the function of posture prompt.

[0091] As Figure 5 and Figure 6 shown, in some embodiments of the present utility model, optionally, the separation component 124 includes: a first filter screen 1242, the first filter screen 1242 includes a plurality of bent segments 12422, the bent segments 12422 are located between the inlet 1202 and one of the plurality of outlets 1204, and the plurality of bent segments 12422 correspond to the plurality of outlets 1204 one by one.

[0092] In this embodiment, the separation component 124 includes a first filter screen 1242. The first filter screen 1242 is formed with a plurality of bending segments 12422 by bending. After the first filter screen 1242 is precisely installed inside the frame 122, the plurality of bending segments 12422 are respectively opposite to a plurality of outlets 1204. Each bending segment 12422 performs oil-water separation on the oil fume between the inlet 1202 and the outlet 1204 corresponding to this bending segment 12422.

[0093] For example, when the outlet 1204 includes a first outlet 12042 and a second outlet 12044, a metal filter screen is formed with two symmetric bending segments 12422 by bending, and the two bending segments 12422 are respectively opposite to the two outlets 1204 on two wide surfaces. When the grease separation component 120 is installed into the first section 1122 in the first posture, the bending segment 12422 opposite to the first outlet 12042 becomes effective, and the other bending segment 12422 opposite to the second outlet 12044 becomes ineffective. Similarly, when the grease separation component 120 is installed into the first section 1122 in the second posture, the bending segment 12422 opposite to the second outlet 12044 becomes effective, and the other bending segment 12422 opposite to the first outlet 12042 becomes ineffective.

[0094] It can be seen that this embodiment can simultaneously meet the oil-water separation requirements in multiple postures through a single metal filter screen, thereby reducing the structural complexity of the filtering component, the process complexity of the filtering component, and the production cost.

[0095] As Figure 6 shown, in some embodiments of the present invention, optionally, the frame 122 includes a slot 1222. The slot 1222 is opposite to the bottom wall of the frame 122. The first end of the bending segment 12422 is inserted into the slot 1222. The grease separation component 120 further includes: a limiting rib 1224. The limiting rib 1224 is provided on the bottom wall of the frame 122, and the second end of the bending segment 12422 abuts against the limiting rib 1224.

[0096] Among them, Figure 6 the arrow f in

[0097] shows the flow direction of the oil fume.

[0098] On this basis, a limiting rib 1224 is further provided on the bottom wall of the frame 122. The lower end of the bent section 12422 abuts against the limiting rib 1224. The limiting rib 1224 can cooperate with the slot 1222 to perform double-end positioning on the separating component 124, thereby improving the positioning accuracy of the separating component 124, and further improving the reliability of the oil-water separation function of the separating component 124.

[0099] As Figure 7 shown, in some embodiments of the present invention, optionally, the separating component 124 includes: a plurality of second filter meshes 1244. The second filter meshes 1244 are located between the inlet 1202 and one of the plurality of outlets 1204, and the plurality of second filter meshes 1244 correspond to the plurality of outlets 1204 one by one.

[0100] In this embodiment, another structural form of the separating component 124 is proposed. Specifically, a plurality of second filter meshes 1244 are installed in the frame 122. The plurality of second filter meshes 1244 are respectively opposite to the plurality of outlets 1204. Each second filter mesh 1244 performs oil-water separation on the oil fume between the inlet 1202 and the outlet 1204 corresponding to this second filter mesh 1244.

[0101] For example, when the outlet 1204 includes a first outlet 12042 and a second outlet 12044, the two second filter meshes 1244 are respectively opposite to the two outlets 1204 on the two wide faces. When the grease separation assembly 120 is loaded into the first section 1122 in the first posture, the second filter mesh 1244 opposite to the first outlet 12042 becomes effective, and the other second filter mesh 1244 opposite to the second outlet 12044 becomes ineffective. Similarly, when the grease separation assembly 120 is loaded into the first section 1122 in the second posture, the second filter mesh 1244 opposite to the second outlet 12044 becomes effective, and the other second filter mesh 1244 opposite to the first outlet 12042 becomes ineffective.

[0102] Thus, the plurality of second filter meshes 1244 can meet the oil-water separation requirements of multiple postures, thereby reducing the assembly complexity of the grease separation assembly 120 and improving the practicability of the integrated cooking stove 100.

[0103] As Figure 1 and Figure 2 shown, in some embodiments of the present invention, optionally, the first section 1122 extends in the height direction of the integrated cooking stove 100 ( Figure 2 the arrow b in the figure shows), and the grease separation assembly 120 can be inserted into the first section 1122 along the height direction of the integrated cooking stove 100 ( Figure 1 the arrow a in the figure shows the insertion direction); the second section 1124 is in the length direction of the integrated cooking stove 100 ( Figure 2The arrow c extends upward (as shown), the outlet 1204 corresponding to the posture and the second section 1124 are opposite in the length direction of the integrated cooking stove 100.

[0104] In this embodiment, the first section 1122 extends in the height direction of the integrated cooking stove 100, and the grease separation component 120 can be inserted into the first section 1122 from top to bottom. The second section 1124 is arranged on the periphery of the first section 1122, and the second section 1124 extends in the length direction of the integrated cooking stove 100.

[0105] By providing the vertical first section 1122, the difficulty of disassembling and assembling the grease separation component 120 can be reduced, so that the grease separation component 120 can be smoothly installed in the designated position. By providing the horizontally extending second section 1124, the lateral space inside the body 110 can be reasonably utilized, thereby reducing the thickness of the body 110 and providing convenient conditions for the ultra-thin design of the integrated cooking stove 100.

[0106] As Figure 1 and Figure 2 shown, in some embodiments of the present invention, optionally, the integrated cooking stove 100 further includes: a range hood assembly 130, the range hood assembly 130 is connected to the body 110, and the range hood assembly 130 is communicated with the smoke exhaust port 1104, and the range hood assembly 130 is used for sucking oil fume.

[0107] In this embodiment, the integrated cooking stove 100 is further provided with a range hood assembly 130, the range hood assembly 130 is fixed below the body 110, the range hood assembly 130 is communicated with the flue 112 through the smoke exhaust port 1104, and the range hood assembly 130 sucks the oil fume above the body 110 through the flue 112, so as to realize the centralized discharge of oil fume.

[0108] It should be clear that in the claims, the description and the accompanying drawings of the present invention, the term "a plurality" refers to two or more, unless otherwise clearly defined. The orientation or positional relationship indicated by terms such as "upper" and "lower" is based on the orientation or positional relationship shown in the drawings, and is only for more convenient description of the present invention and to make the description process simpler, rather than to indicate or imply that the device or element referred to must have the specific orientation, be constructed and operated in the specific orientation, so these descriptions should not be construed 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.

[0109] 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 expressions 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.

[0110] The above are only the preferred embodiments of the present utility model and are not used to limit the present utility model. For those skilled in the art, various changes and modifications can be made to the present utility model. 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, wherein the grease separation component is arranged in the first section, the grease separation component comprises an inlet and a plurality of outlets, the grease separation component comprises a plurality of postures, the plurality of postures correspond one to one with the plurality of outlets, the inlet is connected with the smoke inlet, and the outlet corresponding to the posture is connected with the second section.

2. The integrated stove according to claim 1, characterized in that: The grease separation component comprises: A frame, wherein the inlet is located at the top of the frame, and the outlet is located at the peripheral side of the frame; A separation component is arranged in the frame and is used to separate grease from the oil smoke between the inlet and the outlet.

3. The integrated stove according to claim 2, characterized in that: The outlet comprises a first outlet and a second outlet, wherein the first outlet and the second outlet are located on opposite sides of the frame; The posture includes a first posture and a second posture, and the grease separation component in the first posture is opposite to the grease separation component in the second posture.

4. The integrated stove according to claim 3, characterized in that: The peripheral side of the frame includes two wide surfaces and two narrow surfaces, and the first outlet and the second outlet are respectively arranged on the two wide surfaces.

5. The integrated stove according to claim 4, characterized in that: One of the two narrow surfaces is provided with a first mark, and the first mark corresponds to the first posture; The other narrow surface is provided with a second mark, and the second mark corresponds to the second posture.

6. The integrated stove according to claim 2, characterized in that: The separation component comprises: The first filter screen comprises a plurality of bending segments, wherein the bending segments are located between the inlet and one of the plurality of outlets, and the plurality of bending segments correspond to the plurality of outlets one by one.

7. The integrated stove according to claim 6, characterized in that: The frame includes a slot, the slot is opposite to the bottom wall of the frame, the first end of the bent section is inserted into the slot, and the grease separation assembly further includes: A limiting rib is provided on the bottom wall of the frame, and the second end of the bending section abuts against the limiting rib.

8. The integrated stove according to claim 2, characterized in that: The separation component comprises: A plurality of second filter screens are provided, wherein the second filter screens are located between the inlet and one of the plurality of outlets, and the plurality of second filter screens correspond one to one to the plurality of outlets.

9. The integrated stove according to any one of claims 2 to 8, characterized in that: The first section extends in the height direction of the integrated stove, and the grease separation assembly can be inserted into the first section along the height direction of the integrated stove; The second section extends in the length direction of the integrated stove, and the outlet corresponding to the posture and the second section are opposite to each other in the length direction of the integrated stove.

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.