Oil screen assembly and range hood

By designing a V-shaped condenser plate structure and simplifying the flow channel, oil fumes enter the containment cavity through the gaps for condensation and filtration, solving the problems of high wind resistance and blockage caused by the complex structure of existing oil mesh, and improving the filtration capacity and pollution prevention effect of the range hood.

CN224215415UActive Publication Date: 2026-05-08GUANGDONG MACRO GAS APPLIANCE +1
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG MACRO GAS APPLIANCE
Filing Date
2025-05-27
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

The existing oil filter structure is complex, resulting in excessive air resistance, which affects the filtration effect and makes it easy to get clogged, causing the internal cavity of the range hood to be contaminated by oil fumes.

Method used

The system employs a multi-V-shaped condenser plate structure, including a first V-shaped condenser plate, a second V-shaped condenser plate, and a third V-shaped condenser plate. These plates are connected to a first accommodating cavity through a first gap to form a first flow channel, simplifying the flow channel structure. Oil fumes enter the accommodating cavity through the gap for condensation and filtration.

Benefits of technology

It reduces wind resistance, minimizes blockages, improves the oil fume filtration effect, and prevents pollution of the internal cavity of the range hood.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224215415U_ABST
    Figure CN224215415U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of oil smoke suction equipment, and provides an oil screen assembly and a range hood, the oil screen assembly comprises a plurality of first condensation plates and a plurality of second condensation plates which are mutually connected to form a plurality of V-shaped condensation plates. Wherein the V-shaped condensation plates at least comprise a plurality of first V-shaped condensation plates, a plurality of second V-shaped condensation plates and a plurality of third V-shaped condensation plates, each first V-shaped condensation plate and each second V-shaped condensation plate are adjacently and symmetrically arranged side by side, a first gap is formed between each first V-shaped condensation plate and each second V-shaped condensation plate, each third V-shaped condensation plate, each first V-shaped condensation plate and each second V-shaped condensation plate are arranged in a staggered mode, and a first containing cavity is formed between each third V-shaped condensation plate and each first V-shaped condensation plate. The third V-shaped condensation plate covers the first gap, and the first gap is communicated with the first containing cavity to form a first flow channel. According to the oil screen assembly, the flow channel structure is simplified, wind resistance is smaller, and blocking is not prone to occurring; oil fume enters the first flow channel from the first gap and can be in contact with each V-shaped condensation plate, so that the oil fume is condensed and filtered, the filtering effect is improved, and pollution is avoided.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the technical field of oil fume extraction equipment, specifically to an oil mesh assembly and an oil fume extractor. Background Technology

[0002] A range hood, also known as a kitchen exhaust hood, is a kitchen appliance that purifies the kitchen environment by exhausting cooking fumes from indoors to outdoors. It typically consists of a smoke collection chamber and a casing assembly. Range hoods are generally installed above the kitchen stove and quickly remove harmful fumes generated during combustion and cooking, venting them outdoors. They also condense and collect the fumes, reducing pollution and purifying the air, and provide safety features such as protection against toxic substances and explosions.

[0003] To prevent cooking fumes from contaminating the inside of the range hood, reduce the frequency and difficulty of cleaning, ensure the range hood's performance, and extend its lifespan, an oil filter is usually installed. The oil filter condenses the cooking fumes, and the resulting oil droplets mixed with water vapor flow into the oil cup at the bottom of the range hood, making cleaning easier later.

[0004] However, in the relevant oil filter technology, the complex flow channel structure of the oil filter results in excessive wind resistance, which affects the filtration effect and easily leads to flow channel blockage. Moreover, the insufficient filtration capacity of the oil filter will cause oil fume to pollute the internal cavity of the range hood. Utility Model Content

[0005] In view of the above-mentioned defects in the prior art, the present invention provides an oil filter assembly and a range hood to solve at least one of the above-mentioned technical defects in the prior art, making the structure of the oil filter assembly simpler, reducing wind resistance, improving its filtration effect, preventing blockage of the flow channel, and thus avoiding the internal cavity of the range hood from being contaminated by oil fumes.

[0006] A second aspect of this utility model also provides a range hood.

[0007] To achieve the objective of this utility model, this utility model provides an oil mesh assembly, comprising:

[0008] Multiple first condenser plates;

[0009] Multiple second condensing plates, with the first side of each second condensing plate connected to the first side of each first condensing plate to form multiple V-shaped condensing plates;

[0010] The V-shaped condenser plate includes at least a plurality of first V-shaped condenser plates, a plurality of second V-shaped condenser plates, and a plurality of third V-shaped condenser plates.

[0011] Each of the first V-shaped condenser plates and each of the second V-shaped condenser plates are arranged symmetrically side by side, with a first gap between the second side of the first V-shaped condenser plate and the first side of the second V-shaped condenser plate.

[0012] Each of the third V-shaped condensing plates is arranged adjacent to each other, and each of the third V-shaped condensing plates is staggered from each of the first V-shaped condensing plates and each of the second V-shaped condensing plates. The third V-shaped condensing plates cover the first gap, and a first receiving cavity is provided between each of the third V-shaped condensing plates and the first V-shaped condensing plates and the second V-shaped condensing plates.

[0013] The first gap connects to the first accommodating cavity, forming a first flow channel.

[0014] Preferably, a second gap is provided between each adjacent third V-shaped condenser plate, and the second gap communicates with the first accommodating cavity.

[0015] Preferably, it also includes multiple fourth V-shaped condenser plates.

[0016] Each of the fourth V-shaped condenser plates is arranged adjacent to each other, and a third gap is provided between each adjacent fourth V-shaped condenser plate.

[0017] Each of the fourth V-shaped condensing plates is disposed between each of the third V-shaped condensing plates, and a second receiving cavity is provided between the fourth and third V-shaped condensing plates.

[0018] The second accommodating cavity is connected to the first accommodating cavity, and the third gap is connected to the second accommodating cavity, forming a second flow channel.

[0019] Preferably, both the sides of the first V-shaped condenser plate and the sides of the second V-shaped condenser plate are provided with rounded corners.

[0020] Both the sides of the third V-shaped condenser plate and the sides of the fourth V-shaped condenser plate are provided with rounded corners.

[0021] Preferably, the overlapping projection width of the third V-shaped condenser plate and the first V-shaped condenser plate, which are misaligned with each other, is greater than half of the third V-shaped condenser plate's own width.

[0022] The overlapping projection width of the third V-shaped condenser plate and the second V-shaped condenser plate, which are misaligned with each other, is greater than half of their own width.

[0023] Preferably, the angle between the first condenser plate and the second condenser plate is a right angle.

[0024] Preferably, it also includes a first mounting plate and a second mounting plate.

[0025] The first mounting plate is disposed at the first end of the V-shaped condenser plate, and the second mounting plate is disposed at the second end of the V-shaped condenser plate.

[0026] Preferably, the first mounting plate is provided with a plurality of first fixing grooves, each of which matches the shape of the first end of each of the V-shaped condenser plates.

[0027] The second mounting plate is provided with a plurality of second fixing grooves, each of which matches the shape of the second end of each of the V-shaped condenser plates.

[0028] Preferably, it further includes a third condensing plate and a fourth condensing plate, with each of the third V-shaped condensing plates arranged adjacent to each other.

[0029] The first side of the third condenser plate is connected to the first side of the first third V-shaped condenser plate, and the second side of the third condenser plate is connected to the range hood.

[0030] The first side of the fourth condenser plate is connected to the second side of the last third V-shaped condenser plate, and the second side of the fourth condenser plate is connected to the range hood.

[0031] The second aspect of this utility model provides a range hood, including the aforementioned oil filter assembly and range hood body.

[0032] The oil filter assembly is located on the main body of the range hood.

[0033] The beneficial effects of this utility model are as follows: The oil mesh assembly provided by this utility model forms multiple V-shaped condensing plates by setting multiple first condensing plates and multiple second condensing plates that are interconnected; moreover, the V-shaped condensing plate includes at least multiple first V-shaped condensing plates, multiple second V-shaped condensing plates, and multiple third V-shaped condensing plates; wherein each first V-shaped condensing plate is arranged symmetrically and adjacent to each second V-shaped condensing plate, and a first gap is provided between the second side of the first V-shaped condensing plate and the first side of the second V-shaped condensing plate; each third V-shaped condensing plate is arranged symmetrically and adjacent to each first V-shaped condensing plate, and a first gap is provided between the second side of the first V-shaped condensing plate and the first side of the second V-shaped condensing plate; each third V-shaped condensing plate is arranged symmetrically and adjacent to each first V-shaped condensing plate. The condenser plate and each second V-shaped condenser plate are staggered with each other, and the third V-shaped condenser plate covers the first gap. A first receiving cavity is provided between the third V-shaped condenser plate and the first V-shaped condenser plate and the second V-shaped condenser plate. The first gap can be connected to the first receiving cavity to form a first flow channel, which simplifies the flow channel structure of the oil mesh, reduces wind resistance, and makes it less prone to clogging. Oil fumes can enter the first receiving cavity from the first gap and enter the first flow channel. In the first flow channel, the oil fumes can come into contact with each V-shaped condenser plate, and the oil fumes are condensed and filtered, improving the filtration effect and filtration capacity, thereby avoiding the internal cavity of the range hood from being contaminated by oil fumes.

[0034] The range hood provided by this utility model, due to including the aforementioned oil filter assembly, inevitably possesses all the advantages of that assembly. Specifically, the range hood exhibits lower wind resistance during smoke extraction, making it less prone to clogging; oil fumes can enter the first receiving cavity through the first gap and then into the first flow channel. Within the first flow channel, the oil fumes can contact each of the V-shaped condensation plates, where they are condensed and filtered, improving the filtration effect and capacity, thereby preventing the internal cavity of the range hood from being contaminated by oil fumes. Attached Figure Description

[0035] The above and other objects, features, and advantages of this utility model will become clearer through a more detailed description of the preferred embodiments shown in the accompanying drawings. The same reference numerals indicate the same parts throughout the drawings, and the drawings are not intentionally drawn to scale with actual dimensions; the focus is on illustrating the gist of this application.

[0036] Figure 1 This is a schematic diagram of the overall structure of the oil mesh assembly provided in an embodiment of the present utility model;

[0037] Figure 2 for Figure 1 A schematic diagram of the cross-sectional view of the middle AA;

[0038] Figure 3 for Figure 2 Enlarged diagram in G;

[0039] Figure 4 for Figure 2 Enlarged schematic diagram of H in the middle;

[0040] Figure 5 for Figure 2 Enlarged diagram of K in the middle;

[0041] Figure 6 A schematic diagram of the structure of the first mounting plate and the second mounting plate in the oil mesh assembly provided in the embodiment of this utility model.

[0042] 100. First condensing plate;

[0043] 200. Second condenser plate;

[0044] 300, V-shaped condenser plate; 310, first V-shaped condenser plate; 311, first side of the first V-shaped condenser plate; 312, second side of the first V-shaped condenser plate; 320, second V-shaped condenser plate; 321, first side of the second V-shaped condenser plate; 322, second side of the second V-shaped condenser plate; 330, third V-shaped condenser plate; 340, fourth V-shaped condenser plate;

[0045] 400, First gap; 410, First receiving cavity; 420, First flow channel; 430, Second gap; 440, Third gap; 450, Second receiving cavity; 460, Second flow channel; 470, Rounded corner;

[0046] 500, First mounting plate; 501, First fixing slot; 510, Second mounting plate; 511, Second fixing slot;

[0047] 600, Third condenser plate;

[0048] 700, Fourth condenser plate. Detailed Implementation

[0049] To facilitate understanding of this utility model, a more comprehensive description of this utility model will be given below with reference to the accompanying drawings.

[0050] It should be noted that when a component is considered to be "connected" to another component, it can be directly connected to and integrated with the other component, or there may be an intervening component present. The terms "mounted," "one end," "the other end," and similar expressions used in this document are for illustrative purposes only.

[0051] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this applies. The terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0052] The following is combined Figures 1 to 6 The embodiments of this utility model will be described below. It should be understood that the following description is merely an illustrative embodiment of this utility model and does not constitute any limitation on this utility model.

[0053] Combination Figures 1 to 6 An embodiment of this utility model provides an oil filter assembly, which is installed on a range hood. The oil filter assembly includes a plurality of first condensing plates 100 and a plurality of second condensing plates 200.

[0054] In this configuration, the first side of each second condensing plate 200 is connected to the first side of each first condensing plate 100 to form a plurality of V-shaped condensing plates 300. The connection between the first condensing plate 100 and the second condensing plate 200 can be made by welding, or by stamping a single condensing plate into a V-shaped condensing plate 300 having the first condensing plate 100 and the second condensing plate 200.

[0055] The V-shaped condenser plate 300 includes at least a plurality of first V-shaped condenser plates 310, a plurality of second V-shaped condenser plates 320, and a plurality of third V-shaped condenser plates 330.

[0056] Each first V-shaped condensing plate 310 and each second V-shaped condensing plate 320 are arranged symmetrically side by side, and a first gap 400 is provided between the second side of the first V-shaped condensing plate 310 and the first side of the second V-shaped condensing plate 320. That is, the first V-shaped condensing plate 310 and the second V-shaped condensing plate 320 can be arranged symmetrically with the first gap 400 as the center of symmetry, allowing oil fumes to enter the oil filter through the first gap 400. In this embodiment, according to the required oil filter size, the first V-shaped condensing plate 310 and the second V-shaped condensing plate 320 can be arranged side by side in sequence according to the intervals of the first V-shaped condensing plate 310, the second V-shaped condensing plate 320, the first V-shaped condensing plate 310, and the second V-shaped condensing plate 320.

[0057] Each third V-shaped condenser plate 330 is arranged side by side adjacent to each other, and each third V-shaped condenser plate 330 is staggered with each first V-shaped condenser plate 310 and each second V-shaped condenser plate 320. The third V-shaped condenser plate 330 covers the first gap 400, and a first receiving cavity 410 is provided between the third V-shaped condenser plate 330 and the first V-shaped condenser plate 310 and the second V-shaped condenser plate 320.

[0058] The first gap 400 connects to the first receiving cavity 410, forming the first flow channel 420. After the oil fumes enter the oil filter through the first gap 400, they can also enter the first receiving cavity 410, where they are condensed on the V-shaped condenser plate 300 and discharged into the external environment or liquefied and dripped into the oil cup of the range hood for easy cleaning.

[0059] It should be noted that, in this embodiment, the mutual misalignment setting can mean that the second side of the third V-shaped condenser plate 330 is located between the first side 311 and the second side 312 of the first V-shaped condenser plate, and the first side of the third V-shaped condenser plate 330 is located between the first side 321 and the second side 322 of the second V-shaped condenser plate.

[0060] It is understood that the oil mesh assembly provided in the embodiments of this utility model forms multiple V-shaped condensing plates 300 by setting multiple interconnected first condensing plates 100 and multiple second condensing plates 200; moreover, each V-shaped condensing plate 300 includes at least multiple first V-shaped condensing plates 310, multiple second V-shaped condensing plates 320, and multiple third V-shaped condensing plates 330; wherein each first V-shaped condensing plate 310 is symmetrically arranged adjacent to each second V-shaped condensing plate 320, and a first gap 400 is provided between the second side of the first V-shaped condensing plate 310 and the first side of the second V-shaped condensing plate 320; each third V-shaped condensing plate 330 is arranged adjacent to each first V-shaped condensing plate 31 .... The first V-shaped condenser plate 320 and each second V-shaped condenser plate 320 are staggered with each other. The third V-shaped condenser plate 330 covers the first gap 400. A first receiving cavity 410 is provided between the third V-shaped condenser plate 330, the first V-shaped condenser plate 310, and the second V-shaped condenser plate 320. This allows the first gap 400 to connect with the first receiving cavity 410 to form a first flow channel 420, which simplifies the flow channel structure of the oil mesh, reduces wind resistance, and makes it less prone to clogging. Oil fumes can enter the first receiving cavity 410 from the first gap 400 and enter the first flow channel 420. In the first flow channel 420, the oil fumes can come into contact with each V-shaped condenser plate 300, and the oil fumes are condensed and filtered, improving the filtration effect and filtration capacity, thereby preventing the internal cavity of the range hood from being contaminated by oil fumes.

[0061] Combination Figures 1 to 3 In some embodiments of this utility model, a second gap 430 is provided between each adjacent third V-shaped condenser plate 330. The second gap 430 is connected to the first accommodating cavity 410, so that the oil fumes entering the first gap 400 and the first accommodating cavity 410 can be directly discharged from the second gap 430, which simplifies the structure of the oil mesh assembly and saves costs.

[0062] Combination Figure 3 In some embodiments of this utility model, the oil mesh assembly further includes a plurality of fourth V-shaped condenser plates 340.

[0063] Each of the fourth V-shaped condenser plates 340 is arranged side by side, and a third gap 440 is provided between each of the adjacent fourth V-shaped condenser plates 340.

[0064] Each fourth V-shaped condenser plate 340 is disposed between each third V-shaped condenser plate 330, and a second receiving cavity 450 is disposed between each third V-shaped condenser plate 330.

[0065] The second accommodating cavity 450 is connected to the first accommodating cavity 410, and the third gap 440 is connected to the second accommodating cavity 450, forming the second flow channel 460.

[0066] After the fumes enter the first receiving cavity 410 through the first gap 400, they can also enter the second receiving cavity 450 through the second gap 430, and finally be discharged into the external environment through the third gap 440. This allows the fumes to pass through two flow channels in the oil filter assembly, namely the first flow channel 420 and the second flow channel 460, thereby extending the contact distance between the fumes and the condenser plate and further improving the filtration effect.

[0067] In addition, combined Figures 3 to 5 In some embodiments of this utility model, the sides of the first V-shaped condenser plate 310 and the sides of the second V-shaped condenser plate 320 are both provided with rounded corners 470.

[0068] The sides of the third V-shaped condenser plate 330 and the fourth V-shaped condenser plate 340 are also provided with rounded corners 470. When the oil fumes flow through the rounded corners 470, under the action of inertia and large turning angle, the oil fumes will hit the condenser plate and quickly liquefy upon cooling, thereby improving the liquefaction and filtration efficiency of the oil mesh assembly and further enhancing the filtration effect.

[0069] Furthermore, combined Figures 2 to 5 In some embodiments of this utility model, the overlapping projection width of the third V-shaped condenser plate 330 and the first V-shaped condenser plate 310 is greater than half of their own width.

[0070] The overlapping projection width of the third V-shaped condenser plate 330 and the second V-shaped condenser plate 320 is greater than half of their own width.

[0071] In other words, the overlapping portion of the first side plate of the third V-shaped condenser plate 330 and the second side plate of the first V-shaped condenser plate 310 is greater than half the width of its own side plate, thereby extending the residence length of oil fumes in the flow channel and further improving the filtration effect of the oil mesh assembly.

[0072] In addition, combined Figure 5 In some embodiments of this utility model, the included angle between the first condensing plate 100 and the second condensing plate 200 is a right angle. (See attached image) Figure 5 Since the fumes move from point A to point B, the length of time the fumes remain in the flow channel can be extended, further improving the filtration effect of the oil filter assembly.

[0073] Combination Figure 1 and Figure 6 In some embodiments of this utility model, a first mounting plate 500 and a second mounting plate 510 are also included.

[0074] The first mounting plate 500 is disposed at the first end of the V-shaped condenser plate 300, and the second mounting plate 510 is disposed at the second end of the V-shaped condenser plate 300.

[0075] It should be noted that, in this embodiment, the first end of the V-shaped condenser plate 300 refers to one end along its own length, and the second end refers to the other end along its own length. The first mounting plate 500 and the second mounting plate 510 can make the V-shaped condenser plate 300 more stable.

[0076] Combination Figure 6 Furthermore, in order to make the assembly of the V-shaped condenser plate 300 with the first mounting plate 500 and the second mounting plate 510 more convenient and secure, and to prevent loosening and failure, in some embodiments of this utility model, the first mounting plate 500 is provided with a plurality of first fixing grooves 501, each first fixing groove 501 matching the shape of the first end of each V-shaped condenser plate 300.

[0077] The second mounting plate 510 is provided with a plurality of second fixing grooves 511, each second fixing groove 511 matching the shape of the second end of each V-shaped condenser plate 300.

[0078] Combination Figures 3 to 5 In some embodiments of this utility model, the oil mesh assembly further includes a third condenser plate 600 and a fourth condenser plate 700, with each third V-shaped condenser plate 330 arranged side by side adjacent to each other.

[0079] The first side of the third condensing plate 600 is connected to the first side of the first third V-shaped condensing plate 330, and the second side of the third condensing plate 600 is connected to the range hood.

[0080] The first side of the fourth condensing plate 700 is connected to the second side of the last third V-shaped condensing plate 330, and the second side of the fourth condensing plate 700 is connected to the range hood.

[0081] When the oil filter assembly is installed on the range hood, it can be sealed to the edge of the oil filter opening on the range hood, preventing oil fumes from entering the range hood through the gap between the oil filter assembly and the range hood. This ensures the filtering effect of the oil filter assembly and further prevents the internal cavity of the range hood from being contaminated.

[0082] Combination Figures 1 to 6 In an embodiment of this utility model, a range hood is also provided, which includes the above-mentioned oil filter assembly and range hood body.

[0083] The oil filter assembly is installed on the range hood body; for example, the range hood body has an oil filter inlet, and the oil filter assembly can be installed at the oil filter inlet.

[0084] It is understandable that the range hood provided by this utility model, due to including the aforementioned oil filter assembly, inevitably possesses all the advantages of that assembly. Specifically, the range hood has lower wind resistance during smoke extraction, making it less prone to clogging; smoke can enter the first receiving cavity 410 through the first gap 400 and then into the first flow channel 420. Within the first flow channel 420, the smoke can contact each of the V-shaped condensing plates 300, where it is condensed and filtered, improving the filtration effect and capacity, thereby preventing the internal cavity of the range hood from being contaminated by smoke.

[0085] In this specification, unless otherwise expressly specified and limited, "above" or "below" the second feature can mean that the first and second features are in direct contact, or that the first and second features are in indirect contact through an intermediate medium. Furthermore, "above," "over," and "on top" of the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.

[0086] In the description of this specification, the use of terms such as "preferred embodiment," "another embodiment," "some embodiments," "other embodiments," or "specific example," etc., refers to a specific feature, structure, material, or characteristic described in connection with that embodiment or example, which is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in a suitable manner in any one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

[0087] Although embodiments of this application have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting this application. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of this application.

Claims

1. An oil filter assembly, disposed in a range hood, characterized in that, The oil mesh assembly includes: Multiple first condenser plates; Multiple second condensing plates, with the first side of each second condensing plate connected to the first side of each first condensing plate to form multiple V-shaped condensing plates; The V-shaped condenser plate includes at least a plurality of first V-shaped condenser plates, a plurality of second V-shaped condenser plates, and a plurality of third V-shaped condenser plates. Each of the first V-shaped condenser plates and each of the second V-shaped condenser plates are arranged symmetrically side by side, with a first gap between the second side of the first V-shaped condenser plate and the first side of the second V-shaped condenser plate. Each of the third V-shaped condensing plates is arranged adjacent to each other, and each of the third V-shaped condensing plates is staggered from each of the first V-shaped condensing plates and each of the second V-shaped condensing plates. The third V-shaped condensing plates cover the first gap, and a first receiving cavity is provided between each of the third V-shaped condensing plates and the first V-shaped condensing plates and the second V-shaped condensing plates. The first gap connects to the first accommodating cavity, forming a first flow channel.

2. The oil mesh assembly as described in claim 1, characterized in that, A second gap is provided between each adjacent third V-shaped condenser plate, and the second gap is connected to the first accommodating cavity.

3. The oil mesh assembly as described in claim 2, characterized in that, It also includes multiple fourth V-shaped condenser plates, Each of the fourth V-shaped condenser plates is arranged adjacent to each other, and a third gap is provided between each adjacent fourth V-shaped condenser plate. Each of the fourth V-shaped condensing plates is disposed between each of the third V-shaped condensing plates, and a second receiving cavity is provided between the fourth and third V-shaped condensing plates. The second accommodating cavity is connected to the first accommodating cavity, and the third gap is connected to the second accommodating cavity, forming a second flow channel.

4. The oil mesh assembly as described in claim 3, characterized in that, Both the sides of the first V-shaped condenser plate and the sides of the second V-shaped condenser plate are provided with rounded corners. Both the sides of the third V-shaped condenser plate and the sides of the fourth V-shaped condenser plate are provided with rounded corners.

5. The oil mesh assembly as described in claim 4, characterized in that, The overlapping projection width of the third V-shaped condenser plate and the first V-shaped condenser plate, which are misaligned with each other, is greater than half of their own width. The overlapping projection width of the third V-shaped condenser plate and the second V-shaped condenser plate, which are misaligned with each other, is greater than half of their own width.

6. The oil mesh assembly as described in claim 1, characterized in that, The angle between the first condenser plate and the second condenser plate is a right angle.

7. The oil mesh assembly as described in claim 1, characterized in that, It also includes a first mounting plate and a second mounting plate. The first mounting plate is disposed at the first end of the V-shaped condenser plate, and the second mounting plate is disposed at the second end of the V-shaped condenser plate.

8. The oil mesh assembly as described in claim 7, characterized in that, The first mounting plate is provided with a plurality of first fixing grooves, each of which matches the shape of the first end of each of the V-shaped condenser plates. The second mounting plate is provided with a plurality of second fixing grooves, each of which matches the shape of the second end of each of the V-shaped condenser plates.

9. The oil mesh assembly as described in claim 1, characterized in that, It also includes a third condensing plate and a fourth condensing plate, each of the third V-shaped condensing plates being arranged adjacent to each other side by side. The first side of the third condenser plate is connected to the first side of the first third V-shaped condenser plate, and the second side of the third condenser plate is connected to the range hood. The first side of the fourth condenser plate is connected to the second side of the last third V-shaped condenser plate, and the second side of the fourth condenser plate is connected to the range hood.

10. A range hood, characterized in that, Includes the oil filter assembly and the range hood body as described in any one of claims 1 to 9. The oil filter assembly is located on the main body of the range hood.