Filter assembly and integrated cooker

The combined design of filter components formed of porous carbon blocks or activated carbon, frames and adhesive components solves the problem of easy breakage of filter materials, achieves the reliability and life extension of filter components, and improves the oil fume filtration effect and user experience.

CN222978242UActive Publication Date: 2025-06-13FOSHAN SHUNDE MIDEA ELECTRICAL HEATING APPLIANCES MFG CO LTD
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Patent Information

Application Number
CN202422138835.5
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

In existing integrated smoke and stove products, carbon block filters and activated carbon filter materials are easy to break, resulting in poor filter material reliability and difficulty in effectively filtering out oil smoke and odor.

Method used

The filter components are made of porous carbon blocks or activated carbon, combined with the design of frame and bonding components. The frame provides external protection, the bonding components fix the filter components to avoid collisions, the separation components optimize the installation position, and the gripping components and anti-foolproof design are set to improve reliability.

Benefits of technology

It improves the structural reliability of the filter component, extends the service life of the filter material, reduces the failure rate, and improves the filtering performance and user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a filter assembly and an integrated cooker, and relates to the technical field of cooking equipment. The filtering part is arranged in the frame, and the filtering part is used for filtering oil smoke; the bonding part is used for bonding the frame and the filtering part; wherein the filtering part comprises a porous carbon block. By arranging the frame, the filtering component can be protected on the outer side of the filtering component so as to reduce damage of external impact to the filtering component, and by arranging the bonding component, the filtering component can be fixed on the inner side of the frame so as to avoid mutual collision between the frame and the filtering component, so that effective protection is provided for the filtering component; the technical effects of improving the structural reliability of the filter assembly, prolonging the service life of the filter material and reducing the failure rate of the filter assembly 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 a filtering component and an integrated range hood. Background Art

[0002] For the integrated range hood products on the market, through the oil removal and odor removal treatment of oil fume, the oil fume can be turned into clean air and discharged into the indoor or outdoor environment.

[0003] In the related art, filter materials are mostly prepared from materials such as carbon block filters and activated carbon. When the oil fume passes through the microporous channels inside the filter material, it will be adsorbed by the filter material, thus playing a role in odor purification.

[0004] However, the carbon block filter and activated carbon are brittle in texture, resulting in the technical problems of easy fragmentation of the filter material and poor reliability of the filter material in the product. 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] To this end, a first aspect of the utility model provides a filtering component.

[0007] A second aspect of the utility model provides an integrated range hood.

[0008] In view of this, a first aspect of the utility model provides a filtering component, which includes: a frame; a filtering member disposed within the frame for filtering oil fume; and an adhesive member for adhesively connecting the frame and the filtering member; wherein, the filtering member includes a porous carbon block.

[0009] In this technical solution, a filtering component is defined, which can be applied to an integrated range hood. Specifically, by filtering the oil fume drawn into the integrated range hood, the odor of the gas discharged from the integrated range hood can be reduced, thereby reducing the environmental pollution caused by the integrated range hood. Especially when the integrated range hood is an internal exhaust integrated range hood, the filtering component can avoid the secondary pollution of the indoor environment by the oil fume.

[0010] The filtering component includes a filtering member, which can be formed by a porous carbon block or activated carbon. The filtering member contains a large number of microporous channels, which can filter the odor-emitting substances in the oil fume, thereby realizing the odor removal treatment of the oil fume.

[0011] Specifically, the porous carbon block and activated carbon materials have the advantages of excellent filtering performance and low density, which are beneficial to improving the filtering performance of the filtering component and realizing the lightweight design of the filtering component.

[0012] On this basis, the filtering component further includes a frame and an adhesive member.

[0013] The frame is wrapped around the outside of the filtering component. An opening structure is provided on the frame, and cooking fumes can penetrate through the filtering component via the opening, ensuring that the filtering component can filter the cooking fumes. The frame can provide positioning and protection for the internal filtering component. Specifically, when suffering external impacts, the frame can replace the filtering component to absorb the impact force, so as to prevent the filtering component from being broken due to direct impact.

[0014] The bonding component is arranged between the inner surface of the frame and the filtering component. The bonding component is used to bond the filtering component to the inner surface of the frame, so as to fix the filtering component inside the frame, prevent the filtering component from shaking in the frame, thereby reducing the collision between the filtering component and the frame, and reducing the probability of the filtering component being broken due to collision with the frame.

[0015] Thus, by providing the frame, the filtering component can be protected on the outside to reduce the damage to the filtering component caused by external impacts. By providing the bonding component, the filtering component can be fixed inside the frame to prevent the frame and the filtering component from colliding with each other, thereby providing effective protection for the filtering component, solving the technical problems of easy fragmentation of the filter material and poor reliability of the filter material in the related art, and further achieving the technical effects of improving the structural reliability of the filtering component, extending the service life of the filter material, and reducing the failure rate of the filtering component.

[0016] In addition, the above filtering component provided by the present utility model may also have the following additional technical features:

[0017] In some technical solutions of the present utility model, optionally, the filtering component further includes: a partitioning component. The partitioning component is arranged inside the frame. The partitioning component partitions multiple installation positions inside the frame, and each installation position is provided with a filtering component.

[0018] In this technical solution, a partitioning component is arranged on the inner side of the frame. After assembly, the frame can divide the space inside the frame into multiple installation positions. Among them, the number of installation positions is the same as the number of filtering components, and each installation position is embedded with a filtering component.

[0019] By providing the partitioning component, the size of a single filtering component can be reduced, thereby reducing the process complexity of the filtering component and improving the production efficiency of the filtering component. Moreover, the shape and size of the installation positions partitioned by the partitioning component are controllable. By partitioning the installation positions adapted to the filtering component by the partitioning component, the assembly difficulty of the filtering component can be reduced, so that the filtering components of the same model can be applied to different models of frames.

[0020] Specifically, the partitioning component can be formed on the inner side of the frame by an integral molding process to reduce the process complexity and production cost. The partitioning component can also be inserted on the inner side of the frame after the frame is formed, and the user can select the insertion position of the partitioning component according to actual needs to adjust the shape and size of the installation positions.

[0021] In some technical solutions of the present invention, optionally, the bonding component includes: a first adhesive layer, the first adhesive layer bonds the outer surface of the filter component and the inner surface of the frame, and / or a second adhesive layer, the second adhesive layer bonds the outer surface of the filter component and the partition component.

[0022] In this technical solution, the bonding component includes a first adhesive layer, which is arranged between the outer surface of the filter component and the inner surface of the frame. The first adhesive layer can bond a part of the outer surface of the filter component to the inner surface of the frame, thereby fixing the filter component on the frame. During use, the first adhesive layer can prevent the filter component from shaking relative to the frame, thereby avoiding collision between the filter component and the frame, thereby achieving the technical effect of improving the positioning reliability of the filter component and extending the service life of the filter component.

[0023] Specifically, the bonding component includes a second adhesive layer, which is arranged between the outer surface of the filter component and the partition component. The second adhesive layer can bond a part of the outer surface of the filter component to the partition component, thereby fixing the filter component on the partition component, and the partition component is fixed on the inner side of the frame. The filter component is indirectly fixed to the inner side of the frame through the second adhesive layer and the partition component. During use, the second adhesive layer can prevent the filter component from shaking relative to the partition component, thereby avoiding collision between the filter component and the partition component, and avoiding collision between the filter component and the frame, thereby achieving the technical effect of improving the positioning reliability of the filter component and extending the service life of the filter component.

[0024] Specifically, the first adhesive layer and the second adhesive layer may be simultaneously disposed on the outer side of the filter component to achieve multi-side positioning of the filter component, thereby improving the positioning accuracy of the filter component and reducing the probability of collision damage of the filter component.

[0025] Specifically, the first adhesive layer avoids the air inlet side and the air outlet side of the filter component, and similarly, the second adhesive layer avoids the air inlet side and the air outlet side of the filter component to ensure that the adhesive component does not affect the circulation of oil smoke.

[0026] In some technical schemes of the utility model, optionally, the frame includes: a box body, the bottom of the box body includes a first opening, the top of the box body includes a second opening, and a limiting rib is arranged in the first opening; a grille, the grille is detachably connected to the box body, and the grille covers the second opening; wherein the partition component is a partition, and the partition is horizontally arranged in the box body.

[0027] In this technical solution, the frame includes a box body and a grille, the filter component is placed in the box body, a first opening is provided at the bottom of the box body, a second opening is provided at the top of the box body, and the filter component can be loaded into the box body through the second opening. A limiting rib is provided in the first opening, and the limiting rib can block the filter component to prevent the filter component from falling out of the first opening.

[0028] The grille is detachably connected to the box body. After assembly, the grille covers the second opening. The grille can also block the filter component. The limiting ribs and the grille realize the clamping and positioning of the filter component, thereby reducing the probability of the filter component loosening and misaligning inside the frame.

[0029] By setting the split box body and grille, on the one hand, the process complexity can be reduced, and on the other hand, it can provide convenient conditions for the disassembly and assembly of the filter component. When the filter component needs to be cleaned or replaced, the grille can be removed to take out the filter component.

[0030] Specifically, the separating component is a partition board. The partition board is horizontally arranged inside the box body. The partition board can separate two installation positions in the length direction of the box body, and the two filter components are respectively arranged on both sides of the partition board.

[0031] Specifically, the partition board and the box body are an integrally formed structure by injection molding. The partition board can completely separate the space inside the box body, or can leave a communicating pore between the two installation positions.

[0032] In some technical solutions of the present utility model, optionally, the filter assembly further includes: a holding component, the holding component is arranged on the outer side of the frame, and the holding component is connected to the frame.

[0033] In this technical solution, a holding component is further arranged on the outer side of the frame. The holding component is connected to the frame, and the user can move the frame and the filter component by grasping the holding component.

[0034] Specifically, the holding component includes structures such as a handle, a lifting handle, a pull ring, etc. By setting the holding component, a force application area can be provided for the user on the outer side of the frame, which is convenient for the user to take the filter assembly, thereby reducing the disassembly and assembly difficulty of the filter assembly on the integrated stove, and further achieving the technical effect of improving the practicability of the filter assembly.

[0035] In some technical solutions of the present utility model, optionally, the frame includes an air inlet side and an air outlet side, and the holding component includes: a first holding component, the first holding component is arranged on the air inlet side of the frame, and / or a second holding component, the second holding component is arranged on the air outlet side of the frame.

[0036] In this technical solution, the frame includes an air inlet side and an air outlet side. When the filter assembly is correctly installed, the cooking fume enters the inside of the frame from the air inlet side of the frame, and is filtered by the filter component inside the frame. The filtered cooking fume finally exits the frame from the air outlet side of the frame.

[0037] On this basis, a first holding member is provided on the air inlet side of the frame, and a second holding member is provided on the air outlet side of the frame. By respectively providing the first holding member and the second holding member on both sides of the frame, both sides of the frame are convenient to grasp, thereby further reducing the disassembly and assembly difficulty of the filter component, and further achieving the technical effect of improving the practicality of the filter component.

[0038] Specifically, the first holding member and the second holding member can be distinguished by size or shape. By providing the first holding member and the second holding member with different shapes or sizes, users can distinguish the air inlet side and the air outlet side of the frame through observation, so as to reduce the probability that the filter component is installed backwards when the user installs the filter component into the integrated stove, thereby realizing the anti-fool design of the filter component, and further improving the practicality of the filter component.

[0039] In some technical solutions of the present utility model, optionally, the holding member and the frame are of an integral structure.

[0040] In this technical solution, the holding member and the frame are integrally formed by an injection molding process. Integrally forming the holding member and the frame by an injection molding process can reduce the process complexity and improve the production efficiency.

[0041] Among them, there is no structural cross-section between the integral holding member and the frame, and the structural strength is relatively high. When the user takes the filter component through the holding member, the probability of the holding member being bent or even broken is relatively low, thereby achieving the technical effects of improving the structural strength of the filter component and reducing the failure rate of the filter component.

[0042] In some technical solutions of the present utility model, optionally, the holding member is rotatably connected to the frame.

[0043] In this technical solution, the holding member is rotatably connected to the frame. Specifically, the holding member can be hinged to the frame so that the holding member can rotate on the frame.

[0044] By providing a holding member that can rotate relative to the frame, the holding member can adjust its posture through a rotating operation, so that the user can avoid interference between the holding member and the internal structure of the integrated stove by rotating the holding member during the process of installing the filter component into the integrated stove, thereby reducing the probability of interference between the holding member and the internal structure of the integrated stove, and achieving the technical effects of reducing the disassembly and assembly difficulty of the filter component and improving the practicality of the filter component.

[0045] Specifically, taking the pull ring as the holding member as an example, the pull ring can be rotated to fit on the outer surface of the frame to avoid the upturned pull ring occupying too much space.

[0046] In some technical solutions of the present utility model, optionally, the holding member is a flexible structure.

[0047] In this technical solution, the holding component can be prepared from a flexible material, enabling the holding component to change its posture through deformation.

[0048] Specifically, the holding component includes a cloth belt, a rubber strip, and a cord.

[0049] The flexible structure can freely change its posture through deformation. During the process of disassembling and assembling the filter component, the flexible structure can avoid the internal structure of the integrated stove through deformation, reducing the probability of interference between the holding component and the internal structure of the integrated stove, thereby achieving the technical effects of reducing the difficulty of disassembling and assembling the filter component and improving the practicality of the filter component.

[0050] The second aspect of the present utility model provides an integrated stove, which includes: a main body, and a flue is formed inside the main body; a filter component as described in any of the above technical solutions, and the filter component is arranged in the flue.

[0051] In this technical solution, an integrated stove provided with the filter component as described in any of the above technical solutions is defined. Therefore, this integrated stove has the advantages of the filter component as described in any of the above technical solutions and can achieve the technical effects that the filter component as described in any of the above technical solutions can achieve. To avoid repetition, it will not be elaborated here.

[0052] On this basis, the integrated stove includes a main body, and a flue is formed inside the main body. The integrated stove can suck cooking fumes through the flue to achieve the collection of cooking fumes and avoid the spread of cooking fumes everywhere.

[0053] Among them, the filter component is installed in the flue. The cooking fumes flowing in the flue need to pass through the filter component, so that the filter component in the filter component can filter the cooking fumes to reduce the odor of the cooking fumes, avoid secondary pollution of the environment by the cooking fumes, and further achieve the technical effects of improving the reliability of the integrated stove and enhancing the user experience.

[0054] In some technical solutions of the present utility model, optionally, the integrated stove further includes: an oil-gas separation component, the oil-gas separation component is arranged in the flue, and the oil-gas separation component is located on the upwind side of the filter component.

[0055] In this technical solution, an oil-gas separation component is also installed in the flue. The oil-gas separation component is arranged opposite to the smoke inlet on the flue. After the cooking fumes flow into the smoke inlet, they need to flow through the oil-gas separation component first and then through the filter component. The oil-gas separation component can separate the oil and water vapor mixed in the cooking fumes to complete the pre-stage oil-water separation of the cooking fumes, avoid the cooking fumes carrying oil and water into the filter component, thereby protecting the filter component from being polluted by oil and water on the one hand, extending the service life of the filter component, on the other hand, avoiding the generation of odor caused by the oil and water accumulated in the flue, and on the third hand, avoiding secondary pollution of the environment by the cooking fumes treated by the integrated stove.

[0056] In some technical solutions of the present utility model, optionally, the integrated range hood further includes: a positioning component disposed in the flue; wherein, a protruding portion is provided on the air inlet side of the frame, and the filter assembly includes a first posture and a second posture; when the filter assembly is in the first posture, the protruding portion faces away from the positioning component, and the air outlet side of the frame contacts the positioning component; when the filter assembly is in the second posture, the protruding portion abuts against the positioning component, and the frame interferes with the grease separation component.

[0057] In this technical solution, a positioning component is further disposed in the flue. The positioning component is connected to the main body, and the main body positions the filter assembly at a predetermined position in the flue through the positioning component to ensure that the filter assembly can filter cooking fumes at the predetermined position and prevent the filter assembly from failing due to misalignment during installation.

[0058] On this basis, a protruding portion is provided on the air inlet side of the frame. Specifically, a convex edge structure can be provided on the air inlet side of the frame, and the protruding portion is formed by the convex edge structure.

[0059] The filter assembly installed in the flue includes a first posture and a second posture. When the filter assembly is in the first posture, the filter assembly is correctly installed. At this time, the air inlet side of the frame faces the grease separation component, and the air outlet side of the frame faces the positioning component. At this time, the protruding portion faces away from the positioning component, and the air outlet side of the frame can fit with the positioning component. Correspondingly, when the filter assembly is in the second posture, the filter assembly is incorrectly installed. At this time, the air inlet side of the frame faces the positioning component, and the protruding portion abuts against the positioning component, resulting in the frame being unable to fit with the positioning component and causing the frame to extend outward relative to the positioning component. Among them, the extended frame will occupy the assembly space of the grease separation component, resulting in interference between the frame and the grease separation component, and causing the grease separation component to be unable to be smoothly installed in the designated position, thereby prompting the user that the filter assembly is installed backwards and preventing the backwards-installed filter assembly from effectively filtering cooking fumes.

[0060] It can be seen that by providing the protruding portion and the positioning component, the anti-fool design of the filter assembly is realized, thereby improving the assembly accuracy of the filter assembly and reducing the assembly difficulty of the filter assembly.

[0061] The additional aspects and advantages of the present utility model will become apparent in the following description section or be understood through the practice of the present utility model. BRIEF DESCRIPTION OF THE DRAWINGS

[0062] The above and / or additional aspects and advantages of the present utility model will become apparent and be readily understood from the description of the embodiments in conjunction with the following drawings, wherein:

[0063] Figure 1 shows a schematic structural diagram of a filter assembly according to an embodiment of the present utility model;

[0064] Figure 2Shows an exploded view of a filter assembly according to an embodiment of the present utility model;

[0065] Figure 3 Shows a schematic structural view of a filter assembly according to an embodiment of the present utility model;

[0066] Figure 4 Shows a schematic structural view of a filter assembly according to an embodiment of the present utility model;

[0067] Figure 5 Shows a schematic structural view of a filter assembly according to an embodiment of the present utility model;

[0068] Figure 6 Shows a schematic structural view of an integrated cooking stove according to an embodiment of the present utility model;

[0069] Figure 7 Shows a schematic structural view of a filter assembly according to an embodiment of the present utility model;

[0070] Figure 8 Shows a schematic structural view of a filter assembly according to an embodiment of the present utility model;

[0071] Figure 9 Shows a schematic structural view of a filter assembly according to an embodiment of the present utility model;

[0072] Figure 10 Shows a schematic structural view of an integrated cooking stove according to an embodiment of the present utility model;

[0073] Figure 11 Shows a schematic structural view of a filter assembly according to an embodiment of the present utility model;

[0074] Figure 12 Shows a schematic structural view of an integrated cooking stove according to an embodiment of the present utility model;

[0075] Figure 13 Shows a schematic structural view of an integrated cooking stove according to an embodiment of the present utility model;

[0076] Figure 14 Shows a schematic structural view of a filter assembly according to an embodiment of the present utility model;

[0077] Figure 15 Shows a schematic structural view of an integrated cooking stove according to an embodiment of the present utility model;

[0078] Figure 16 Shows a schematic structural view of an integrated cooking stove according to an embodiment of the present utility model.

[0079] Wherein, Figures 1 to 16The corresponding relationship between the reference numerals in the drawings and the component names is as follows:

[0080] 100 Filter assembly, 110 Frame, 1102 Mounting position, 112 Box body, 1122 First opening, 1124 Second opening, 1126 Limiting rib, 114 Grille, 116 Protrusion, 120 Filter component, 130 Adhesive component, 132 First adhesive layer, 134 Second adhesive layer, 140 Partition component, 150 Holding component, 152 First holding component, 154 Second holding component, 200 Integrated range hood, 210 Body, 2102 Flue, 220 Grease separation assembly, 230 Positioning component. Detailed implementation manners

[0081] 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.

[0082] Many specific details are set forth in the following description in order to fully understand the present invention. However, the present invention may 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.

[0083] Next, refer to Figures 1 to 16 Describe a filter assembly and an integrated range hood according to some embodiments of the present invention.

[0084] As Figure 1 , Figure 2 , Figure 3 and Figure 4 shown, an embodiment of the present invention provides a filter assembly 100, which includes: a frame 110; a filter component 120 disposed within the frame 110 for filtering cooking fumes; and an adhesive component 130 for adhesively bonding the frame 110 and the filter component 120; wherein, the filter component 120 includes a porous carbon block.

[0085] In this embodiment, a filter assembly 100 is defined, which can be applied to an integrated range hood 200. Specifically, by filtering the cooking fumes drawn into the integrated range hood 200, the odor of the gas discharged from the integrated range hood 200 is reduced, thereby reducing the pollution of the integrated range hood 200 to the environment. Especially when the integrated range hood 200 is an internal exhaust integrated range hood 200, the filter assembly 100 can prevent secondary pollution of the indoor environment by cooking fumes.

[0086] The filtering component 100 includes a filtering part 120, which can be formed by a porous carbon block or activated carbon. The filtering part 120 contains a large number of microporous channels, which can filter the odor-emitting substances in the fume, so as to achieve the deodorization treatment of the fume.

[0087] Specifically, the porous carbon block and activated carbon materials have the advantages of excellent filtering performance and low density, which is beneficial to improving the filtering performance of the filtering component 100 and realizing the lightweight design of the filtering component 100.

[0088] On this basis, the filtering component 100 further includes a frame 110 and an adhesive component 130.

[0089] The frame 110 is wrapped around the outside of the filtering part 120. An opening structure is provided on the frame 110, and the fume can penetrate through the filtering part 120 via the opening, ensuring that the filtering part 120 can filter the fume. The frame 110 can provide positioning and protection for the internal filtering part 120. Specifically, when suffering from an external impact, the frame 110 can absorb the impact force instead of the filtering part 120 to prevent the filtering part 120 from being broken due to direct impact.

[0090] The adhesive component 130 is arranged between the inner surface of the frame 110 and the filtering part 120. The adhesive component 130 is used to bond the filtering part 120 to the inner surface of the frame 110 to fix the filtering part 120 inside the frame 110, preventing the filtering part 120 from shaking in the frame 110, thereby reducing the collision between the filtering part 120 and the frame 110 and lowering the probability of the filtering part 120 being broken due to collision with the frame 110.

[0091] It can be seen that by setting the frame 110, the filtering part 120 can be protected outside to reduce the damage of external impact to the filtering part 120. By setting the adhesive component 130, the filtering part 120 can be fixed inside the frame 110 to prevent the frame 110 and the filtering part 120 from colliding with each other, thereby providing effective protection for the filtering part 120, solving the technical problems of easy fragmentation and poor reliability of the filter material in the related technology, and further achieving the technical effects of the structural reliability of the filtering component 100, extending the service life of the filter material, and reducing the failure rate of the filtering component 100.

[0092] As Figure 2 、 Figure 3 and Figure 4 shown, in some embodiments of the present invention, optionally, the filtering component 100 further includes a separating component 140. The separating component 140 is arranged inside the frame 110. The separating component 140 divides the inside of the frame 110 into a plurality of installation positions 1102, and each installation position 1102 is provided with a filtering part 120.

[0093] In this embodiment, a partition member 140 is provided inside the frame 110. After assembly, the frame 110 can divide the space inside the frame 110 into a plurality of mounting positions 1102. Among them, the number of mounting positions 1102 is the same as the number of filtering members 120, and one filtering member 120 is embedded in each mounting position 1102.

[0094] By providing the partition member 140, the size of a single filtering member 120 can be reduced, thereby reducing the process complexity of the filtering member 120 and improving the production efficiency of the filtering member 120. Moreover, the shape and size of the mounting positions 1102 separated by the partition member 140 are controllable. By separating the mounting positions 1102 adapted to the filtering member 120 through the partition member 140, the assembly difficulty of the filtering member 120 can be reduced, so that the filtering members 120 of the same model can be applied to frames 110 of different models.

[0095] Specifically, the partition member 140 can be formed inside the frame 110 by an integral molding process to reduce the process complexity and production cost. The partition member 140 can also be inserted inside the frame 110 after the frame 110 is formed, and the user can select the insertion position of the partition member 140 according to actual needs to adjust the shape and size of the mounting positions 1102.

[0096] As Figure 3 and Figure 4 shown, in some embodiments of the present invention, optionally, the bonding member 130 includes: a first adhesive layer 132 that bonds the outer surface of the filtering member 120 and the inner surface of the frame 110, and / or a second adhesive layer 134 that bonds the outer surface of the filtering member 120 and the partition member 140.

[0097] In this embodiment, the bonding member 130 includes a first adhesive layer 132. The first adhesive layer 132 is disposed between the outer surface of the filtering member 120 and the inner surface of the frame 110. The first adhesive layer 132 can bond some regions on the outer surface of the filtering member 120 and the inner surface of the frame 110 together, thereby fixing the filtering member 120 on the frame 110. During use, the first adhesive layer 132 can prevent the filtering member 120 from shaking relative to the frame 110, thereby avoiding the mutual collision between the filtering member 120 and the frame 110, and further achieving the technical effects of improving the positioning reliability of the filtering member 120 and extending the service life of the filtering member 120.

[0098] Specifically, the bonding component 130 includes a second adhesive layer 134. The second adhesive layer 134 is disposed between the outer surface of the filtering component 120 and the partitioning component 140. The second adhesive layer 134 can bond some regions on the outer surface of the filtering component 120 and the partitioning component 140 together, thereby fixing the filtering component 120 on the partitioning component 140. The partitioning component 140 is fixed inside the frame 110, and the filtering component 120 is indirectly fixed inside the frame 110 through the second adhesive layer 134 and the partitioning component 140. During use, the second adhesive layer 134 can prevent the filtering component 120 from shaking relative to the partitioning component 140, thereby avoiding the filtering component 120 and the partitioning component 140 from colliding with each other, and avoiding the filtering component 120 and the frame 110 from colliding with each other, and further achieving the technical effects of improving the positioning reliability of the filtering component 120 and extending the service life of the filtering component 120.

[0099] Specifically, the first adhesive layer 132 and the second adhesive layer 134 can be simultaneously disposed on the outer side of the filtering component 120 to achieve multi-side positioning of the filtering component 120, thereby improving the positioning accuracy of the filtering component 120 and reducing the probability of the filtering component 120 being damaged by collision.

[0100] Specifically, the first adhesive layer 132 avoids the air inlet side and the air outlet side of the filtering component 120. Similarly, the second adhesive layer 134 avoids the air inlet side and the air outlet side of the filtering component 120 to ensure that the bonding component 130 does not affect the flow of oil fume.

[0101] Such as Figure 1 、 Figure 2 、 Figure 5 and Figure 8 As shown in

[0102] In some embodiments of the present utility model, optionally, the frame 110 includes: a box body 112. The bottom of the box body 112 includes a first opening 1122, and the top of the box body 112 includes a second opening 1124. A limiting rib 1126 is disposed in the first opening 1122; a grille 114, the grille 114 is detachably connected to the box body 112, and the grille 114 covers the second opening 1124; wherein, the partitioning component 140 is a partition plate, and the partition plate is horizontally arranged in the box body 112.

[0103] The grille 114 is detachably connected to the box body 112. After assembly, the grille 114 covers the second opening 1124. The grille 114 can also block the filter component 120. The limiting ribs 1126 and the grille 114 realize the clamping and positioning of the filter component 120, thereby reducing the probability of the filter component 120 loosening and misaligning inside the frame 110.

[0104] By providing the split box body 112 and grille 114, on the one hand, the process complexity can be reduced, and on the other hand, it provides convenient conditions for the disassembly and assembly of the filter component 120. When it is necessary to clean or replace the filter component 120, the grille 114 can be removed to take out the filter component 120.

[0105] Specifically, the separating component 140 is a partition board, which is horizontally arranged inside the box body 112. The partition board can separate two installation positions 1102 in the length direction of the box body 112, and the two filter components 120 are respectively arranged on both sides of the partition board.

[0106] Specifically, the partition board and the box body 112 are an integrally formed structure by injection molding. The partition board can completely separate the space inside the box body 112, or leave a communicating pore between the two installation positions 1102.

[0107] Such as Figure 5 、 Figure 6 、 Figure 7 and Figure 8 As shown in

[0108] In some embodiments of the present utility model, optionally, the filter assembly 100 further includes: a holding component 150, which is arranged on the outer side of the frame 110 and is connected to the frame 110.

[0109] In this embodiment, a holding component 150 is further arranged on the outer side of the frame 110. The holding component 150 is connected to the frame 110, and the user can move the frame 110 and the filter component 120 by grasping the holding component 150.

[0110] Such as Figure 5 、 Figure 8 and Figure 11As shown, in some embodiments of the present utility model, optionally, the frame 110 includes an air inlet side and an air outlet side, and the holding member 150 includes: a first holding member 152 disposed on the air inlet side of the frame 110, and / or a second holding member 154 disposed on the air outlet side of the frame 110.

[0111] In this embodiment, the frame 110 includes an air inlet side and an air outlet side. When the filter assembly 100 is correctly installed, the cooking fume enters the interior of the frame 110 from the air inlet side of the frame 110 and is filtered in the filter member 120 inside the frame 110. The filtered cooking fume finally exits the frame 110 from the air outlet side of the frame 110.

[0112] On this basis, the first holding member 152 is disposed on the air inlet side of the frame 110, and the second holding member 154 is disposed on the air outlet side of the frame 110. By respectively disposing the first holding member 152 and the second holding member 154 on both sides of the frame 110, both sides of the frame 110 are convenient to grasp, thereby further reducing the disassembly and assembly difficulty of the filter assembly 100, and further achieving the technical effect of improving the practicability of the filter assembly 100.

[0113] Specifically, the first holding member 152 and the second holding member 154 can be distinguished by size or shape. By setting the first holding member 152 and the second holding member 154 with different shapes or sizes, users can distinguish the air inlet side and the air outlet side of the frame 110 by observation, so as to reduce the probability that the filter assembly 100 is installed reversely when the filter assembly 100 is installed in the integrated cooking stove 200, thereby realizing the anti-fooling design of the filter assembly 100, and further improving the practicability of the filter assembly 100.

[0114] As Figure 5 and Figure 6 shown, in some embodiments of the present utility model, optionally, the holding member 150 and the frame 110 are of an integral structure.

[0115] In this embodiment, the holding member 150 and the frame 110 are integrally formed by an injection molding process. Integrally forming the holding member 150 and the frame 110 by an injection molding process can reduce the process complexity and also improve the production efficiency.

[0116] Among them, there is no structural cross-section between the integral holding member 150 and the frame 110, and the structural strength is relatively high. When the user takes the filter assembly 100 through the holding member 150, the probability that the holding member 150 bends or breaks is relatively low, thereby achieving the technical effects of improving the structural strength of the filter assembly 100 and reducing the failure rate of the filter assembly 100.

[0117] As Figure 7 、 Figure 8, Figure 9 and Figure 10 As shown in Figure 9 and Figure 10 , in some embodiments of the present utility model, optionally, the holding member 150 is rotatably connected to the frame 110.

[0118] In this embodiment, the holding member 150 is rotatably connected to the frame 110. Specifically, the holding member 150 can be hinged to the frame 110 so that the holding member 150 can rotate on the frame 110.

[0119] By providing the holding member 150 that can rotate relative to the frame 110, the holding member 150 can adjust its posture through rotational operation, enabling the user to avoid the internal structure of the integrated stove 200 by rotating the holding member 150 during the process of installing the filter assembly 100 into the integrated stove 200, reducing the probability of interference between the holding member 150 and the internal structure of the integrated stove 200, thereby achieving the technical effects of reducing the disassembly and assembly difficulty of the filter assembly 100 and improving the practicality of the filter assembly 100.

[0120] Specifically, taking the pull ring as the holding member 150 as an example, the pull ring can be rotated to fit on the outer surface of the frame 110 to avoid the raised pull ring occupying too much space.

[0121] As Figure 11 shown, in some embodiments of the present utility model, optionally, the holding member 150 is a flexible structure.

[0122] In this embodiment, the holding member 150 can be prepared from a flexible material so that the holding member 150 can change its posture through deformation.

[0123] Specifically, the holding member 150 includes a cloth belt, a rubber strip, and a cord.

[0124] The flexible structure can freely change its posture through deformation. During the process of disassembling and assembling the filter assembly 100, the flexible structure can avoid the internal structure of the integrated stove 200 through deformation, reducing the probability of interference between the holding member 150 and the internal structure of the integrated stove 200, thereby achieving the technical effects of reducing the disassembly and assembly difficulty of the filter assembly 100 and improving the practicality of the filter assembly 100.

[0125] As Figure 12 and Figure 13 shown, a second aspect of the present utility model provides an integrated stove 200, which includes: a main body 210, and a flue 2102 is included in the main body 210; the filter assembly 100 as in any of the above embodiments, and the filter assembly 100 is disposed in the flue 2102.

[0126] In this embodiment, an integrated stove 200 provided with the filtering component 100 in any of the above embodiments is defined. Therefore, the integrated stove 200 has the advantages of the filtering component 100 in any of the above embodiments and can achieve the technical effects that the filtering component 100 in any of the above embodiments can achieve. To avoid repetition, it will not be elaborated here.

[0127] On this basis, the integrated stove 200 includes a main body 210. A flue 2102 is formed inside the main body 210. The integrated stove 200 can suck cooking fumes through the flue 2102 to collect the cooking fumes and prevent the cooking fumes from spreading everywhere.

[0128] Among them, the filtering component 100 is installed in the flue 2102. The cooking fumes flowing in the flue 2102 need to pass through the filtering component 100, so that the filtering part 120 in the filtering component 100 filters the cooking fumes to reduce the odor of the cooking fumes, prevent the secondary pollution of the environment by the cooking fumes, and further achieve the technical effects of improving the reliability of the integrated stove 200 and enhancing the user experience.

[0129] Such as Figure 12 and Figure 13 As shown, in some embodiments of the present utility model, optionally, the integrated stove 200 further includes: an oil-grease separation component 220. The oil-grease separation component 220 is arranged in the flue 2102, and the oil-grease separation component 220 is located on the upstream side of the filtering component 100.

[0130] In this embodiment, an oil-grease separation component 220 is also installed in the flue 2102. The oil-grease separation component 220 is disposed opposite to the smoke inlet on the flue 2102. After the cooking fumes flow into the smoke inlet, they need to flow through the oil-grease separation component 220 first and then through the filtering component 100. The oil-grease separation component 220 can separate the oil and water vapor mixed in the cooking fumes to complete the pre-stage oil-water separation of the cooking fumes, prevent the cooking fumes from carrying oil and water into the filtering component 100. Thus, on the one hand, it protects the filtering component 100 from being polluted by oil and water and extends the service life of the filtering component 100; on the other hand, it prevents the oil and water accumulated in the flue 2102 from generating odor; and on the third hand, it prevents the cooking fumes treated by the integrated stove 200 from causing secondary pollution to the environment.

[0131] Such as Figure 14 、 Figure 15 and Figure 16As shown, in some embodiments of the present utility model, optionally, the integrated range hood 200 further includes: a positioning member 230 disposed in the flue 2102; wherein, a protruding portion 116 is provided on the air inlet side of the frame 110, and the filter assembly 100 includes a first posture and a second posture; when the filter assembly 100 is in the first posture, the protruding portion 116 faces away from the positioning member 230, and the air outlet side of the frame 110 contacts the positioning member 230; when the filter assembly 100 is in the second posture, the protruding portion 116 abuts against the positioning member 230, and the frame 110 and the grease separation assembly 220 interfere with each other.

[0132] In this embodiment, a positioning member 230 is further disposed in the flue 2102. The positioning member 230 is connected to the main body 210, and the main body 210 positions the filter assembly 100 at a predetermined position in the flue 2102 through the positioning member 230 to ensure that the filter assembly 100 can filter cooking fumes at the predetermined position and prevent the filter assembly 100 from failing due to misalignment during installation.

[0133] On this basis, a protruding portion 116 is provided on the air inlet side of the frame 110. Specifically, a convex edge structure can be provided on the air inlet side of the frame 110, and the protruding portion 116 is formed by the convex edge structure.

[0134] The filter assembly 100 installed in the flue 2102 includes a first posture and a second posture. When the filter assembly 100 is in the first posture, the filter assembly 100 is correctly installed. At this time, the air inlet side of the frame 110 faces the grease separation assembly 220, and the air outlet side of the frame 110 faces the positioning member 230. At this time, the protruding portion 116 faces away from the positioning member 230, and the air outlet side of the frame 110 can be attached to the positioning member 230. Correspondingly, when the filter assembly 100 is in the second posture, the filter assembly 100 is incorrectly installed. At this time, the air inlet side of the frame 110 faces the positioning member 230, and the protruding portion 116 abuts against the positioning member 230, resulting in the frame 110 being unable to be attached to the positioning member 230, causing the frame 110 to extend outward relative to the positioning member 230. Among them, the extended frame 110 will occupy the assembly space of the grease separation assembly 220, resulting in interference between the frame 110 and the grease separation assembly 220, and causing the grease separation assembly 220 to be unable to be smoothly installed in the designated position, thereby prompting the user that the filter assembly 100 is installed in the reverse direction and preventing the incorrectly installed filter assembly 100 from effectively filtering cooking fumes.

[0135] It can be seen that by providing the protruding portion 116 and the positioning member 230, the anti-fool design of the filter assembly 100 is realized, thereby improving the assembly accuracy of the filter assembly 100 and reducing the assembly difficulty of the filter assembly 100.

[0136] It should be clear that in the claims, the description and the accompanying drawings of the present utility model, the term "a plurality of" means two or more, unless otherwise explicitly defined. The orientation or positional relationship indicated by terms such as "upper", "lower", etc. is based on the orientation or positional relationship shown in the drawings, and is only for more conveniently describing the present utility model 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. Therefore, these descriptions should not be construed as limitations on the present utility model; terms such as "connection", "installation", "fixation", etc. should all be understood in a broad sense. For example, "connection" can be a fixed connection between multiple objects, 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 utility model can be understood according to the specific circumstances of the above data.

[0137] In the claims, the description and the accompanying drawings of the present utility model, the description of terms such as "an embodiment", "some embodiments", "specific embodiments", etc. means 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, the description and the accompanying drawings of the present utility model, the schematic representation of the above terms does 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.

[0138] 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, 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. A filter assembly, characterized in that: include: frame; A filter component, the filter component is arranged in the frame, and the filter component is used to filter oil smoke; A bonding component, wherein the bonding component bonds the frame and the filter component; Wherein, the filtering component comprises a porous carbon block.

2. The filter assembly according to claim 1, characterized in that: Also includes: A partition component is arranged in the frame, and the partition component separates a plurality of installation positions in the frame, and a filter component is arranged at each installation position.

3. The filter assembly according to claim 2, characterized in that: The bonding component comprises: a first adhesive layer, the first adhesive layer bonding the outer surface of the filter component and the inner surface of the frame, and / or A second adhesive layer is used to bond the outer surface of the filter component and the partition component.

4. The filter assembly according to claim 2, characterized in that: The framework includes: A box body, wherein the bottom of the box body comprises a first opening, the top of the box body comprises a second opening, and a limiting rib is arranged in the first opening; A grille, the grille is detachably connected to the box body, and the grille covers the second opening; Wherein, the partition component is a partition plate, and the partition plate is horizontally arranged in the box body.

5. The filter assembly according to any one of claims 1 to 4, characterized in that: Also includes: A holding component is arranged on the outside of the frame and connected to the frame.

6. The filter assembly according to claim 5, characterized in that The frame includes an air inlet side and an air outlet side, and the gripping component includes: a first gripping member, the first gripping member being arranged on the air inlet side of the frame, and / or A second holding component is disposed on the air outlet side of the frame.

7. The filter assembly according to claim 5, characterized in that: The holding component and the frame are an integrated structure.

8. The filter assembly according to claim 5, characterized in that The holding component is rotatably connected to the frame.

9. The filter assembly according to claim 5, characterized in that: The holding component is a flexible structure.

10. An integrated stove, characterized in that: include: A body, wherein the body includes a flue; The filter assembly according to any one of claims 1 to 9, wherein the filter assembly is arranged in the flue.

11. The integrated stove according to claim 10, characterized in that: Also includes: A grease separation component is arranged in the flue, and the grease separation component is located on the upwind side of the filter component.

12. The integrated stove according to claim 11, characterized in that: Also includes: A positioning component, wherein the positioning component is arranged in the flue; Wherein, a protrusion is provided on the air inlet side of the frame, and the filter assembly includes a first posture and a second posture; When the filter assembly is in the first posture, the protrusion faces away from the positioning component, and the air outlet side of the frame is in contact with the positioning component; When the filter assembly is in the second posture, the protrusion abuts against the positioning component, and the frame and the grease separation assembly interfere with each other.