Air deflector and air conditioner

By forming installation grooves on the main body of the air guide plate and using a clamping structure, the problem of high production cost of air guide plates in the prior art is solved, and the effect of reducing the difficulty and cost of production and assembly is achieved.

CN222993021UActive Publication Date: 2025-06-17NINGBO AUX ELECTRIC CO LTD +1
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Patent Information

Application Number
CN202421844813.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-06-17
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

In the prior art, the production cost of air guide plates is relatively high, mainly due to the production difficulty and increase in mold costs due to the complex structural parts and the large overall size of the air guide door.

Method used

The board body is made by extrusion molding process, and a first mounting groove and a second mounting groove are formed on the board body, for installing the first assembly and the second assembly respectively. These assembly parts can be detachably installed through the clamping structure, reducing the difficulty of making and assembling each component.

Benefits of technology

By separately making and assembling each component, the overall production and assembly of the air guide plate is reduced, thereby reducing costs. In addition, the extrusion molding process enables a chamber to form inside the main body of the plate, realizing the effect of anti-condensing on the inner side, eliminating the installation of anti-condensing sponges, and further reducing costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an air deflector and an air conditioner, and relates to the technical field of air conditioners. The air deflector comprises a plate body, a connecting structure, a first assembly part and a second assembly part. The plate body is formed in an extrusion molding mode. A first mounting groove and a second mounting groove are formed in the plate body. The connecting structure is detachably mounted in the first mounting groove; and a clamping structure is arranged on the connecting structure. And the first assembly part is used for being in transmission connection with a driving device for driving the air guide plate, and the first assembly part is clamped with the clamping structure. And the second assembly part is used for rotationally assembling the plate main body and is clamped into the second mounting groove. The air conditioner provided by the utility model adopts the air deflector. According to the air deflector and the air conditioner, the technical problem that in the prior art, the manufacturing cost of an air deflector is high can be solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of air conditioners, and more specifically, to an air deflector and an air conditioner. Background Art

[0002] In the prior art, the air deflector of an air conditioner is usually made by integral casting. However, there are structural parts for rotational connection and transmission connection on the air deflector door, and these structural parts are relatively complex for the integrally made air deflector body. Moreover, due to the large overall size of the air deflector, the overall manufacturing difficulty of the air deflector is high, increasing the manufacturing cost of the mold. Summary of the Utility Model

[0003] The problem solved by the utility model is how to improve the technical problem of the high manufacturing cost of the air deflector in the prior art.

[0004] To solve the above problem, the utility model provides an air deflector, comprising:

[0005] A plate body formed by extrusion molding; a first installation groove and a second installation groove are formed on the plate body;

[0006] A connection structure detachably installed in the first installation groove; a clamping structure is provided on the connection structure;

[0007] A first fitting for driving the air deflector to be in transmission connection with a driving device, and the first fitting is clamped with the clamping structure;

[0008] A second fitting for the plate body to be rotationally assembled, and the second fitting is snapped into the second installation groove.

[0009] The beneficial effects of the air deflector provided by the utility model compared with the prior art include:

[0010] In this air deflector, a first installation groove and a second installation groove are formed on the plate body, and the first fitting and the second fitting for installing the air deflector are independently and detachably assembled onto the plate body, which means that the plate body, the first fitting and the second fitting are made by separate manufacturing methods, which can reduce the manufacturing difficulty of each component, and further reduce the overall manufacturing difficulty of the air deflector; and the first fitting and the second fitting can be relatively simply assembled onto the plate body, thereby reducing the assembly difficulty of the air deflector. Generally, the manufacturing difficulty and assembly difficulty of the air deflector can be reduced, so as to solve the technical problem of the high manufacturing cost of the air deflector in the prior art.

[0011] Furthermore, since the board body is made by the extrusion molding method, and a process different from the prior art is adopted, chambers such as a first installation groove and a second installation groove can be formed inside the board body, so that the board body itself can achieve the function of preventing condensation on the inner side, and the setting of the anti-condensation sponge in the prior art can be omitted, which can further reduce the manufacturing cost.

[0012] Optionally, the board body includes a first main structure and a second main structure. The second main structure is integrated on the first main structure, and the first installation groove and the second installation groove are formed between the first main structure and the second main structure; a first opening communicating with the first installation groove is also provided on the second main structure;

[0013] The connection structure includes a first clamping body and a second clamping body; the second clamping body is arranged on the first clamping body, and the clamping structure is arranged on the side of the second clamping body away from the first clamping body; the first clamping body is clamped into the first installation groove, and at least part of the second clamping body is clamped with the first opening.

[0014] By providing a first opening on the second main structure that communicates with the first installation groove, when the second clamping body is clamped into the first opening, the second clamping body can be exposed on the outer surface of the board body, which is convenient for the installation of the first fitting. Moreover, the clamping of the first opening and the second clamping body can improve the connection stability between the connection structure and the board body, and further improve the stability of the first fitting.

[0015] Optionally, the side of the second clamping body away from the first clamping body is coplanar with the side of the second main structure away from the first main structure.

[0016] Based on the above setting method, the connection structure and the board body can form an integral body. On the one hand, it can make the appearance of the air deflector cleaner, and on the other hand, it can also avoid the situation where the connection structure is easily affected by other structures.

[0017] Optionally, a plurality of strengthening parts are further provided between the first main structure and the second main structure, and the plurality of strengthening parts are arranged at intervals; an avoidance groove adapted to avoid the strengthening parts is provided on the first clamping body.

[0018] On the one hand, the overall strength of the board body can be improved through a plurality of strengthening parts; on the other hand, cavities can also be formed through a plurality of spaced strengthening parts, so as to achieve the purpose of preventing condensation on the second main structure.

[0019] Optionally, the connection structure further includes a limiting portion, which is connected to both the first clamping body and the second clamping body and is located on one side of the first clamping body and the second clamping body; the limiting portion abuts against the second main body structure and is located at the opening of the first installation groove.

[0020] By providing the limiting portion, it is not only convenient to judge whether the connection structure is installed in place, but also the opening of the first installation groove can be closed by the limiting portion, so that the first installation groove is closed, preventing condensation from occurring on the inner wall of the first installation groove.

[0021] Optionally, a second opening is further formed on the second main body structure, and the second opening communicates with the second installation groove;

[0022] The second fitting includes a fitting portion, a third clamping body, and a fourth clamping body; the third clamping body is provided on one side of the fourth clamping body, and the fitting portion is provided on the side of the third clamping body away from the fourth clamping body; the fourth clamping body is snapped into the second installation groove, and the third clamping body is snapped into the second opening.

[0023] In the case of providing the second opening, on the one hand, the connection stability between the second fitting and the board main body can be improved; on the other hand, it is also convenient for the fitting portion to be exposed.

[0024] Optionally, the side surface of the third clamping body away from the fourth clamping body is coplanar with the side surface of the second main body structure away from the first main body structure.

[0025] Based on the above setting method, the third clamping body and the board main body can form an integral body. On the one hand, the appearance of the air deflector can be made neater, and on the other hand, the situation that the third clamping body is easily affected by other structures can be avoided.

[0026] Optionally, a plurality of spaced second installation grooves are formed on the board main body, and a plurality of the second fittings are provided, and the plurality of second fittings are respectively installed in the plurality of second installation grooves.

[0027] An air conditioner includes at least one of the above-mentioned air deflectors.

[0028] Optionally, the air conditioner includes two of the air deflectors; a rotating shaft is provided on the second fitting of one of the air deflectors, and a mounting hole is formed on the second fitting of the other air deflector, and the rotating shaft is rotatably matched with the mounting hole.

[0029] The air conditioner provided by the present invention adopts the above-mentioned air deflector, and the beneficial effects of this air conditioner relative to the prior art are the same as those of the above-mentioned air deflector relative to the prior art, and will not be elaborated here. Description of the Drawings

[0030] Figure 1 FIG. 1 is one of the schematic structural diagrams of the air deflector provided in the embodiment of the present application;

[0031] Figure 2 is Figure 1 the exploded structural diagram of the air deflector shown in FIG. 1;

[0032] Figure 3 FIG. 2 is another schematic structural diagram of the air deflector provided in the embodiment of the present application;

[0033] Figure 4 is Figure 3 the exploded structural diagram of the air deflector shown in FIG. 2.

[0034] Description of the Reference Numerals:

[0035] 10 - air deflector; 100 - plate main body; 101 - first installation groove; 102 - second installation groove; 110 - first main body structure; 120 - second main body structure; 121 - first opening; 122 - second opening; 130 - strengthening part; 200 - connection structure; 210 - clamping structure; 211 - buckle; 220 - first clamping main body; 230 - second clamping main body; 240 - limiting part; 300 - first fitting; 310 - card slot; 400 - second fitting; 410 - assembly part; 420 - third clamping main body; 430 - fourth clamping main body. Detailed Description of the Embodiment

[0036] In order to make the above - mentioned objects, features, and advantages of the present utility model more obvious and understandable, the following detailed description of the specific embodiments of the present utility model will be given with reference to the accompanying drawings.

[0037] An air conditioner (not shown in the figure) is provided in the embodiment of the present application. The air conditioner is used to provide air - conditioning effect to a specified area. Among them, the air conditioner in this embodiment refers to the indoor unit of the air conditioner, and the air conditioner can cooperate with the outdoor unit of the air conditioner to achieve the air - conditioning effect. It should be noted that the air conditioner realizes the purpose of air - conditioning the specified area by blowing air to the specified area.

[0038] In this embodiment, in order to facilitate the air conditioner to adjust the air - blowing mode and direction, at least one air deflector 10 is provided in the air conditioner. The air deflector 10 can rotate under the drive of a driving device, so as to realize the adjustment of the air - blowing mode and the air - blowing direction. Among them, the air deflector 10 provided in this embodiment can solve the technical problem of the high manufacturing cost of the air deflector 10 in the prior art. Based on this, the air conditioner adopting the air deflector 10 can also solve the technical problem of the high manufacturing cost of the air deflector 10 in the prior art.

[0039] In this embodiment, please refer to Figure 1 , Figure 2 and Figure 3 . The air deflector 10 includes a plate main body 100, a connection structure 200, a first fitting 300 and a second fitting 400. The plate main body 100 is formed by extrusion; a first installation groove 101 and a second installation groove 102 are formed on the plate main body 100. The connection structure 200 is detachably installed in the first installation groove 101; a clamping structure 210 is provided on the connection structure 200. The first fitting 300 is used for driving connection with a driving device for driving the air deflector 10, and the first fitting 300 is clamped with the clamping structure 210. The second fitting 400 is used for the rotational assembly of the plate main body 100, and the second fitting 400 is snapped into the second installation groove 102. The fact that the second fitting 400 is used for the rotational assembly of the plate main body 100 means that the air conditioner has a structure adapted to the second fitting 400. When the air deflector 10 is assembled, the second fitting 400 rotates in cooperation with the adapted structure, thereby facilitating the overall rotation of the air deflector 10. It should be noted that the adapted structure may be a structure other than the air deflector 10 or a structure of the air deflector 10 itself (which will be described in the following content).

[0040] As described above, in the air deflector 10, the first installation groove 101 and the second installation groove 102 are formed on the plate main body 100, and the first fitting 300 and the second fitting 400 for installing the air deflector 10 are independently and detachably assembled to the plate main body 100, which means that the plate main body 100, the first fitting 300 and the second fitting 400 are manufactured in a separated manner, which can reduce the manufacturing difficulty of each component, and further reduce the overall manufacturing difficulty of the air deflector 10; and the first fitting 300 and the second fitting 400 can be relatively simply assembled to the plate main body 100, thereby reducing the assembly difficulty of the air deflector 10. Generally, the manufacturing difficulty and the assembly difficulty of the air deflector 10 can be reduced, so as to solve the technical problem of the relatively high manufacturing cost of the air deflector 10 in the prior art. Further, since the plate main body 100 is manufactured by extrusion molding, and a process different from the prior art is adopted, chambers such as the first installation groove 101 and the second installation groove 102 can be formed inside the plate main body 100, so that the plate main body 100 itself can play the role of preventing condensation inside, and the setting of the anti-condensation sponge in the prior art can be omitted, which can further reduce the manufacturing cost.

[0041] Optionally, in this embodiment, the board body 100 includes a first main body structure 110 and a second main body structure 120. The second main body structure 120 is integrated on the first main body structure 110, and a first installation groove 101 and a second installation groove 102 are formed between the first main body structure 110 and the second main body structure 120. A first opening 121 communicating with the first installation groove 101 is further formed on the second main body structure 120. The connection structure 200 includes a first clamping main body 220 and a second clamping main body 230. The second clamping main body 230 is disposed on the first clamping main body 220, and the clamping structure 210 is disposed on the side of the second clamping main body 230 away from the first clamping main body 220. The first clamping main body 220 is snapped into the first installation groove 101, and at least part of the second clamping main body 230 is clamped with the first opening 121. Among them, by forming the first opening 121 communicating with the first installation groove 101 on the second main body structure 120, when the second clamping main body 230 is snapped into the first opening 121, the second clamping main body 230 can be exposed outside the board body 100, which is convenient for the installation of the first fitting 300. Moreover, the clamping of the first opening 121 and the second clamping main body 230 can improve the connection stability between the connection structure 200 and the board body 100, and further improve the stability of the first fitting 300.

[0042] It should be noted that one of the first main body structure 110 and the second main body structure 120 can be set as an arc structure, so as to form a cavity between the first main body structure 110 and the second main body structure 120. When the air deflector 10 is installed in the air conditioner, the first main body structure 110 is the part exposed to the outside, and the second main body structure 120 is the part located inside. Since a cavity is formed between the first main body structure 110 and the second main body structure 120, it is possible to prevent a large temperature difference from being formed on the opposite sides of the first main body structure 110 or the second main body structure 120, thereby avoiding condensation on the first main body structure 110 and the second main body structure 120 during the air outlet process.

[0043] In this embodiment, the clamping structure 210 includes two L-shaped buckles 211 arranged back to back, and the two L-shaped buckles 211 are arranged upside down. Correspondingly, a clamping groove 310 adapted to the two L-shaped buckles 211 is formed on the first fitting 300, and the clamping groove 310 is generally in a T shape. When assembling the first fitting 300, the two L-shaped buckles 211 are inserted into one end of the clamping groove 310, and the first fitting 300 is moved so that the two L-shaped buckles 211 are completely snapped into the clamping groove 310. It should be understood that in other embodiments, the clamping structure 210 can also adopt other existing structures, which will not be elaborated here.

[0044] Optionally, a plurality of reinforcing portions 130 are further provided between the first main body structure 110 and the second main body structure 120, and the plurality of reinforcing portions 130 are arranged at intervals; an avoidance groove adapted to the avoidance of the reinforcing portion 130 is provided on the first clamping main body 220. By providing the reinforcing portion 130 between the first main body structure 110 and the second main body structure 120, on the one hand, the overall strength of the plate main body 100 can be improved through the plurality of reinforcing portions 130; on the other hand, a cavity can also be formed through the plurality of spaced reinforcing portions 130, so as to achieve the purpose of preventing condensation on the second main body structure 120.

[0045] In this embodiment, the plurality of reinforcing portions 130 are formed into a sheet-like structure parallel to each other between the first main body structure 110 and the second main body structure 120, and a cavity is formed between any two adjacent reinforcing portions 130. In this way, it is also convenient for the extrusion molding of the plate main body 100.

[0046] Optionally, in this embodiment, the side surface of the second clamping main body 230 away from the first clamping main body 220 is coplanar with the side surface of the second main body structure 120 away from the first main body structure 110. Based on the above setting method, the connecting structure 200 and the plate main body 100 can form an integral body. On the one hand, the appearance of the air guide plate 10 can be made more tidy, and on the other hand, the situation that the connecting structure 200 is easily affected by other structures can be avoided.

[0047] In this embodiment, the connecting structure 200 further includes a limiting portion 240. The limiting portion 240 is connected to both the first clamping main body 220 and the second clamping main body 230 and is located on one side of the first clamping main body 220 and the second clamping main body 230; the limiting portion 240 abuts against the second main body structure 120 and is located at the opening of the first installation groove 101. Through the setting of the limiting portion 240, not only can it be convenient to judge whether the connecting structure 200 is installed in place, but also the opening of the first installation groove 101 can be closed by the limiting portion 240, so that the first installation groove 101 is closed, preventing condensation from occurring on the inner wall of the first installation groove 101.

[0048] Wherein, openings are formed at both ends of the cavity formed by the first main body structure 110 and the second main body structure 120 in the length direction of the plate main body 100, and the setting of this opening can facilitate the formation of the first installation groove 101. In this case, through the setting of the limiting portion 240, after the connecting structure 200 is installed in the first installation groove 101, the limiting portion 240 can close the chamber inside the plate main body 100, thereby preventing air flow from entering the inside of the plate main body 100, and thus preventing the formation of condensation inside the plate main body 100.

[0049] It should be noted that the other end of the plate main body 100 relative to the plate main body 100 can be blocked by a limiting structure provided on the second fitting 400.

[0050] In this embodiment, a second opening 122 is further formed in the second main body structure 120, and the second opening 122 communicates with the second installation groove 102. The second fitting 400 includes a fitting portion 410, a third clamping main body 420, and a fourth clamping main body 430; the third clamping main body 420 is disposed on one side of the fourth clamping main body 430, and the fitting portion 410 is disposed on the side of the third clamping main body 420 away from the fourth clamping main body 430; the fourth clamping main body 430 is snapped into the second installation groove 102, and the third clamping main body 420 is snapped into the second opening 122. In the case of forming the second opening 122, on the one hand, the connection stability between the second fitting 400 and the board main body 100 can be improved; on the other hand, it is also convenient for the fitting portion 410 to be exposed.

[0051] It should be noted that, in some embodiments, such as Figure 4 , the third clamping main body 420 and the fitting portion 410 form an integral structure. When the area of the third clamping main body 420 is the same as the area of the fitting portion 410, the third clamping main body 420 can also be regarded as a part of the fitting portion 410. At this time, the second fitting 400 is intuitively shown as the fitting portion 410 being directly disposed on the fourth clamping main body 430, such as Figure 4 .

[0052] Furthermore, the side surface of the third clamping main body 420 away from the fourth clamping main body 430 is coplanar with the side surface of the second main body structure 120 away from the first main body structure 110. Based on the above setting method, the third clamping main body 420 and the board main body 100 can form a whole. On the one hand, the appearance of the air guide board 10 can be made neater; on the other hand, the situation that the third clamping main body 420 is easily affected by other structures can be avoided.

[0053] In addition, in this embodiment, a plurality of spaced second installation grooves 102 are formed on the board main body 100, and there are a plurality of second fittings 400, and the plurality of second fittings 400 are respectively inserted into the plurality of second installation grooves 102. In the case of taking Figure 2 as an example, the number of the second fittings 400 is two. One of the second fittings 400 is disposed in the middle of the board main body 100, and the corresponding second installation groove 102 is disposed in the middle of the board main body 100; and the other second fitting 400 is disposed at the end of the board main body 100, and the second fitting 400 and the first fitting 300 are respectively located at both ends of the board main body 100. At this time, the second installation groove 102 is disposed at the end of the board main body 100. It should be noted that a limiting structure is further provided on the second fitting 400 disposed at the end of the board main body 100 to block the opening at the end of the board main body 100.

[0054] In this embodiment, the air conditioner includes two air deflector plates 10; a rotating shaft is provided on the second fitting 400 in one of the air deflector plates 10, and a mounting hole is formed in the second fitting 400 of the other air deflector plate 10, and the rotating shaft is rotatably engaged with the mounting hole.

[0055] In the case of Figure 1 as an example, among them, the second fittings 400 in the middle of the two air deflector plates 10 cooperate with each other, that is, a rotating shaft is provided on the second fitting 400 in the middle of one of the air deflector plates 10, and a mounting hole is provided on the second fitting 400 in the middle of the other air deflector plate 10, and the two second fittings 400 cooperate with each other. In addition, the second fitting 400 at the end of the air deflector plate 10 can be installed on other structures in the air conditioner. Thus, it can be shown that the above-mentioned adapted structure can be other structures other than the air deflector plate 10, or the structure of the air deflector plate 10 itself.

[0056] To sum up, in the air deflector plate 10 and the air conditioner, the first installation groove 101 and the second installation groove 102 are formed on the plate body 100, and the first fitting 300 and the second fitting 400 for installing the air deflector plate 10 are independently and detachably assembled to the plate body 100, which means that the plate body 100, the first fitting 300 and the second fitting 400 are made by separate manufacturing methods, which can reduce the manufacturing difficulty of each component, and then reduce the overall manufacturing difficulty of the air deflector plate 10; and the first fitting 300 and the second fitting 400 can be relatively simply assembled to the plate body 100, thereby reducing the assembly difficulty of the air deflector plate 10. Generally, the manufacturing difficulty and the assembly difficulty of the air deflector plate 10 can be reduced, so as to solve the technical problem of the relatively high manufacturing cost of the air deflector plate 10 in the prior art. Further, since the plate body 100 is made by extrusion molding, and a process different from the prior art is adopted, cavities such as the first installation groove 101 and the second installation groove 102 can be formed inside the plate body 100, so that the plate body 100 itself can play the role of preventing condensation on the inner side, and the setting of the anti-condensation sponge in the prior art can be omitted, which can further reduce the manufacturing cost.

[0057] Although the present invention is disclosed as above, the present invention is not limited thereto. Any person skilled in the art can make various changes and modifications without departing from the spirit and scope of the present invention. Therefore, the protection scope of the present invention should be subject to the scope defined by the claims.

Claims

1. A wind deflector, characterized in that: include: The plate body (100) is formed by extrusion; a first installation groove (101) and a second installation groove (102) are formed on the plate body (100); A connecting structure (200) is detachably mounted on the first mounting groove (101); a clamping structure (210) is provided on the connecting structure (200); A first assembly part (300) is used for being drivingly connected to a driving device for driving the air guide plate (10), and the first assembly part (300) is clamped to the clamping structure (210); The second assembly part (400) is used for rotational assembly of the plate body (100), and the second assembly part (400) is inserted into the second installation groove (102).

2. The air guide plate according to claim 1, characterized in that: The plate body (100) comprises a first main body structure (110) and a second main body structure (120); the second main body structure (120) is integrated with the first main body structure (110), and the first mounting groove (101) and the second mounting groove (102) are formed between the first main body structure (110) and the second main body structure (120); the second main body structure (120) is also provided with a first opening (121) communicating with the first mounting groove (101); The connecting structure (200) comprises a first clamping body (220) and a second clamping body (230); the second clamping body (230) is arranged on the first clamping body (220), and the clamping structure (210) is arranged on the side of the second clamping body (230) away from the first clamping body (220); the first clamping body (220) is clamped into the first installation groove (101), and at least a part of the second clamping body (230) is clamped with the first opening (121).

3. The air guide plate according to claim 2, characterized in that: The side surface of the second holding body (230) away from the first holding body (220) is coplanar with the side surface of the second main body structure (120) away from the first main body structure (110).

4. The air guide plate according to claim 2, characterized in that: A plurality of reinforcing parts (130) are also provided between the first main body structure (110) and the second main body structure (120), and the plurality of reinforcing parts (130) are arranged at intervals; and an avoidance groove for avoiding the adaptation of the reinforcing parts (130) is provided on the first holding body (220).

5. The air guide plate according to claim 2, characterized in that: The connection structure (200) also includes a limiting portion (240), which is connected to both the first clamping body (220) and the second clamping body (230) and is located on one side of the first clamping body (220) and the second clamping body (230); the limiting portion (240) is abutted against the second main structure (120) and is located at the opening of the first mounting groove (101).

6. The air guide plate according to claim 2, characterized in that: The second main body structure (120) is also provided with a second opening (122), and the second opening (122) is in communication with the second installation groove (102); The second assembly part (400) includes an assembly part (410), a third holding body (420) and a fourth holding body (430); the third holding body (420) is arranged on one side of the fourth holding body (430), and the assembly part (410) is arranged on a side of the third holding body (420) away from the fourth holding body (430); the fourth holding body (430) is inserted into the second mounting groove (102), and the third holding body (420) is inserted into the second opening (122).

7. The wind deflector according to claim 6, characterized in that: The side surface of the third holding body (420) away from the fourth holding body (430) is coplanar with the side surface of the second main body structure (120) away from the first main body structure (110).

8. The air guide plate according to claim 1, characterized in that: A plurality of spaced second installation grooves (102) are formed on the plate body (100), and a plurality of second assembly parts (400) are provided. The plurality of second assembly parts (400) are respectively installed in the plurality of second installation grooves (102).

9. An air conditioner, characterized in that: The invention comprises at least one wind deflector (10) according to any one of claims 1 to 8.

10. The air conditioner according to claim 9, characterized in that: The air conditioner comprises two air guide plates (10); the second assembly part (400) in one of the air guide plates (10) has a rotating shaft, and the second assembly part (400) in the other air guide plate (10) has a mounting hole, and the rotating shaft is rotatably matched with the mounting hole.