Air guide assembly and air conditioner

By adopting a combined structure of telescopic rod, follow-up connector and linkage in the air guide assembly, the problem of difficult disassembly and assembly of the existing air guide assembly drive module and the sweeping blade is solved, and the effect of rapid disassembly and assembly is achieved.

CN222993150UActive Publication Date: 2025-06-17NINGBO AUX ELECTRIC CO LTD +1
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202421978199.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-14
Publication Date
2025-06-17
Estimated Expiration
2034-08-14

AI Technical Summary

Technical Problem

It is difficult to disassemble and assemble the drive module of the existing air guide assembly and the sweeping blade, and the disassembly and assembly process is time-consuming and laborious.

Method used

A wind guide assembly is designed, adopting a combined structure of a telescopic rod, a follower connector and a linkage. Through the connection and sliding of the telescopic rod and the follower connector or linkage, the rapid disassembly and assembly of the driving module and the sweeping air blades are realized.

Benefits of technology

It realizes rapid disassembly and assembly of the drive module and the sweeping blade, reducing the difficulty and time of disassembly and assembly, and improving work efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222993150U_ABST
    Figure CN222993150U_ABST
Patent Text Reader

Abstract

The utility model provides an air guide assembly and an air conditioner, and relates to the technical field of air conditioners. The air guide assembly comprises an air guide plate, a driving module, a follow-up connecting piece, a linkage piece and an air sweeping blade, the driving module is provided with a telescopic rod extending in the first direction, and the air sweeping blade is arranged on the air guide plate and connected with the linkage piece; the follow-up connecting piece is provided with a sliding groove extending in the second direction, one of the telescopic rod and the linkage piece is connected with the follow-up connecting piece, and the other one of the telescopic rod and the linkage piece is in sliding fit with the sliding groove. The telescopic rod is used for driving the air sweeping blade to swing in the first direction through the follow-up connecting piece and the linkage piece, and the follow-up connecting piece is used for sliding in the second direction relative to the telescopic rod or the linkage piece in the swing process of the air sweeping blade. The follow-up connecting piece is further provided with a notch communicated with the sliding groove, and the notch is used for allowing one of the telescopic rod and the linkage piece to enter or exit from the sliding groove. According to the air guide assembly, the driving module and the air sweeping blades can be rapidly disassembled and assembled, and time and labor are saved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

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

[0002] Some air conditioners are configured with an air deflector assembly, which usually consists of an air deflector and swing blades. The air deflector flips up and down at the air outlet under the drive of a drive mechanism to achieve up and down air guiding; a plurality of swing blades are arranged on the air deflector in sequence and swing left and right under the drive of the drive mechanism to achieve left and right air sweeping.

[0003] Currently, for the air deflector assemblies on the market, their drive modules are connected to a plurality of swing blades through a complex transmission structure, and the drive modules drive the plurality of swing blades to swing on the air deflector through the transmission structure. The transmission structure between the drive module and the plurality of swing blades of such air deflector assemblies is complex, resulting in difficult disassembly and assembly, and the disassembly and assembly process is time-consuming and laborious. Summary of the Utility Model

[0004] The problem solved by the utility model is that the disassembly and assembly between the drive module and the swing blades of the existing air deflector assembly are difficult, and the disassembly and assembly process is time-consuming and laborious.

[0005] To solve the above problems, the utility model provides an air deflector assembly, which can achieve quick disassembly and assembly of the drive module and the swing blades, saving time and effort.

[0006] An embodiment of the utility model provides a technical solution:

[0007] An air deflector assembly includes an air deflector, a drive module, a follower connecting piece, a linkage and swing blades. The drive module has a telescopic rod extending in a first direction. The swing blades are arranged on the air deflector, and the linkage is connected to the swing blades;

[0008] The follower connecting piece has a chute extending in a second direction, and the second direction forms an angle with the first direction. One of the telescopic rod and the linkage is connected to the follower connecting piece, and the remaining one of the two is in sliding fit with the chute; the telescopic rod is used to drive the swing blades to swing in the first direction through the follower connecting piece and the linkage, and the follower connecting piece is used to slide in the second direction relative to the telescopic rod or the linkage during the swinging process of the swing blades;

[0009] A notch communicating with the chute is further formed on the follower connecting piece for allowing one of the telescopic rod and the linkage to enter or exit the chute.

[0010] In the air guiding assembly provided by the embodiment of the present utility model, one of the telescopic rod and the linkage is connected to the follower connecting member, and the remaining one of the two is in sliding fit with the sliding groove on the follower connecting member. A notch communicating with the sliding groove is formed on the follower connecting member. In practical applications, when it is necessary to disassemble the drive module from the air-sweeping blade, only the telescopic rod or the linkage needs to be withdrawn from the sliding groove through the notch; when it is necessary to establish the connection between the drive module and the air-sweeping blade, only the telescopic rod or the linkage needs to be inserted into the sliding groove through the notch. It can be seen that the air guiding assembly provided by the embodiment of the present utility model can realize the quick disassembly and assembly of the drive module and the air-sweeping blade, saving time and effort.

[0011] In an alternative embodiment, the notch is formed at one end of the sliding groove on the follower connecting member in the second direction, or,

[0012] the notch is formed on one side wall of the sliding groove in the groove width direction.

[0013] In an alternative embodiment, a limiting rib extending in the second direction is convexly provided on the groove wall of the sliding groove, and a limiting groove is concavely provided on the surface of the telescopic rod or the linkage. The limiting rib is embedded in the limiting groove to limit the corresponding telescopic rod or the linkage from moving relative to the linkage in the first direction.

[0014] During the process of the drive module driving the telescopic rod to move in the first direction, the limiting rib convexly provided on the groove wall of the sliding groove can ensure that the driving force in the first direction can be completely transmitted to the air-sweeping blade, and no relative movement occurs between the telescopic rod and the follower connecting member and between the follower connecting member and the linkage in the first direction, ensuring the accuracy of the air-sweeping angle adjustment.

[0015] In an alternative embodiment, the follower connecting member and the linkage are integrally formed, or,

[0016] the follower connecting member and the telescopic rod are integrally formed.

[0017] When the follower connecting member and the linkage are integrally formed, the telescopic rod of the drive module is in sliding fit with the sliding groove of the follower connecting member; when the follower connecting member and the telescopic rod are integrally formed, the linkage is in sliding fit with the sliding groove of the follower connecting member. Whether the follower connecting member is integrally formed with the linkage or the telescopic rod, the structure can be simplified and the disassembly and assembly difficulty can be further reduced.

[0018] In an alternative embodiment, the linkage and the air-sweeping blade are integrally formed.

[0019] The linkage and the air-sweeping blade are integrally formed. In this embodiment, the air-sweeping blade and the air guiding plate are integrally formed, further simplifying the overall structure of the air guiding assembly and further reducing the disassembly and assembly difficulty.

[0020] In an alternative embodiment, the number of the air-sweeping vanes is plural, the plural air-sweeping vanes are arranged in sequence along the first direction, the linkage extends in the first direction and is connected to the plural air-sweeping vanes.

[0021] The linkage extends in the first direction, the plural air-sweeping vanes are arranged in sequence along the first direction, and the telescopic rod expands and contracts in the first direction, ensuring that the driving force of the driving module can be accurately and completely transmitted to the plural air-sweeping vanes to obtain a better air-sweeping effect.

[0022] In an alternative embodiment, the air-sweeping vane includes a vane body and a leg. The vane body has a swinging portion and a deforming portion. The leg is erected on the air guide plate. The swinging portion is connected to the leg through the deforming portion. One end of the swinging portion close to the deforming portion is connected to the linkage.

[0023] One end of the swinging portion close to the deforming portion is connected to the linkage, so that the movement stroke of the linkage is minimized, and thus the movement stroke of the telescopic rod is minimized, obtaining a larger installable area for the air-sweeping vanes and improving the air-sweeping effect.

[0024] In an alternative embodiment, the thickness of the deforming portion is less than the thickness of the swinging portion, and / or

[0025] The deforming portion is provided with a strength-weakening hole penetrating therethrough.

[0026] Compared with the swinging portion, the deforming portion has weaker strength, ensuring that under the action of the linkage, the deforming portion deforms prior to the swinging portion, ensuring that the swinging portion swings in place, improving the adjustment accuracy of the air-sweeping angle and reducing the driving force.

[0027] In an alternative embodiment, an avoidance hole is penetratingly provided at one end of the swinging portion close to the deforming portion, and the linkage passes through the avoidance hole and is connected to the swinging portion.

[0028] The linkage passes through the avoidance hole and is connected to the swinging portion, which can reduce the space occupied by the linkage outside the air-sweeping vane, thereby obtaining more available space and making the overall structure of the air guide assembly more compact.

[0029] An embodiment of the present utility model further provides an air conditioner, which includes a body and a plurality of the air guiding assemblies. The air guiding assembly includes an air guiding plate, a driving module, a follower connecting member, a linkage member, and a sweeping blade. The driving module has a telescopic rod extending in a first direction. The sweeping blade is disposed on the air guiding plate, and the linkage member is connected to the sweeping blade. The follower connecting member has a sliding groove extending in a second direction, and the second direction forms an angle with the first direction. One of the telescopic rod and the linkage member is connected to the follower connecting member, and the remaining one of the two is in sliding fit with the sliding groove. The telescopic rod is configured to drive the sweeping blade to swing in the first direction through the follower connecting member and the linkage member, and the follower connecting member is configured to slide in the second direction relative to the telescopic rod or the linkage member during the swinging process of the sweeping blade. A notch communicating with the sliding groove is further formed on the follower connecting member for allowing one of the telescopic rod and the linkage member to enter or exit the sliding groove. The body has an air outlet, and a plurality of the air guiding assemblies are all installed at the air outlet.

[0030] In the air conditioner provided by the embodiment of the present utility model, a plurality of air guiding assemblies are installed in the air outlet, realizing the zonal adjustment of the air blown out from the air outlet, with richer adjustment functions and better user experience. Moreover, benefiting from the beneficial effects of the air guiding assembly, the air conditioner also has the characteristics of simple structure and convenient disassembly and assembly. Description of the Drawings

[0031] Figure 1 is a schematic structural diagram of the air conditioner provided by the embodiment of the present utility model;

[0032] Figure 2 is Figure 1 a schematic structural diagram of the air guiding assembly in

[0033] Figure 3 is Figure 2 an enlarged schematic diagram of area A in

[0034] Figure 4 is a schematic connection structure diagram of the follower connecting member, the linkage member, the sweeping blade, and the air guiding plate of the air guiding assembly;

[0035] Figure 5 is Figure 4 an enlarged schematic diagram of area B in

[0036] Figure 6 is Figure 4 an enlarged schematic diagram of area C in

[0037] Description of the Reference Numerals:

[0038] 10 - Air conditioner; 11 - Body; 12 - Air outlet; 100 - Air deflector assembly; 110 - Air deflector; 120 - Driving module; 121 - Telescopic rod; 130 - Follow-up connecting piece; 131 - Sliding groove; 132 - Notch; 133 - Limiting rib; 140 - Linking piece; 150 - Sweeping blades; 151 - Blade body; 1511 - Oscillating part; 1512 - Avoidance hole; 1513 - Deformation part; 1514 - Strength reduction hole; 152 - Leg. Detailed implementation manners

[0039] To make the above objects, features, and advantages of the present utility model more obvious and understandable, the following detailed description will be given to the specific embodiments of the present utility model with reference to the accompanying drawings.

[0040] Please refer to Figure 1 , Figure 1 which shows the structural schematic diagram of the air conditioner 10 provided in this embodiment.

[0041] The air conditioner 10 provided in this embodiment includes a body 11 and a plurality of air deflector assemblies 100. The body 11 has an air outlet 12, and the plurality of air deflector assemblies 100 are all installed at the air outlet 12.

[0042] The plurality of air deflector assemblies 100 realize the sub-region adjustment of the air outlet angle of the air outlet 12. Specifically, in this embodiment, the number of the air deflector assemblies 100 is two, and the two air deflector assemblies 100 are arranged in sequence in the length direction of the air outlet 12 to realize the independent adjustment of the air outlet conditions in the left and right regions of the air outlet 12.

[0043] Please refer to Figure 2 and Figure 3 , Figure 2 which shows the structural schematic diagram of the air deflector assembly 100 provided in this embodiment, Figure 3 and Figure 2 shows the enlarged schematic diagram of area A in

[0044] The air deflector assembly 100 provided in this embodiment includes an air deflector 110, a driving module 120, a follow-up connecting piece 130, a linking piece 140, and a plurality of sweeping blades 150. The number of the sweeping blades 150 is multiple, and the plurality of sweeping blades 150 are arranged in sequence on the same side of the air deflector 110. The linking piece 140 is connected to the plurality of sweeping blades 150. The driving module 120 is in transmission connection with the air deflector 110 and is used to drive the air deflector 110 to flip in the vertical direction to adjust the air outlet angle of the air outlet 12 in the vertical direction. The driving module 120 is also connected to the linking piece 140 through the follow-up connecting piece 130. The driving module 120 is used to drive the plurality of sweeping blades 150 to swing through the follow-up connecting piece 130 and the linking piece 140, so as to realize the adjustment of the sweeping angle of the air outlet 12 in the horizontal direction.

[0045] The driving module 120 has a telescopic rod 121 extending in a first direction, and the follower connecting member 130 has a sliding groove 131 extending in a second direction. The second direction forms an angle with the first direction. One of the telescopic rod 121 and the linkage member 140 is connected to the follower connecting member 130, and the remaining one of the two is in sliding fit with the sliding groove 131. The telescopic rod 121 is used to drive the air-sweeping blade 150 to swing in the first direction through the follower connecting member 130 and the linkage member 140, and the follower connecting member 130 is used to slide in the second direction relative to the telescopic rod 121 or the linkage member 140 during the swinging process of the air-sweeping blade 150.

[0046] Figure 2 The direction indicated by the X arrow in the figure is the first direction, which is actually the length direction of the air deflector 110. A plurality of air-sweeping blades 150 are arranged in sequence in the first direction, and the linkage member 140 extends in the first direction; Figure 2 The direction indicated by the Y arrow in the figure is the second direction, which is actually the width direction of the air deflector 110. In other words, in this embodiment, the first direction and the second direction are substantially perpendicular. Actually, in this embodiment, the linkage member 140 is fixedly connected to the follower connecting member 130, and one end of the telescopic rod 121 passes through the sliding groove 131 in the first direction and is in sliding fit with the sliding groove 131.

[0047] In practical applications, when the driving module 120 drives the telescopic rod 121 to perform telescopic motion in the first direction, the telescopic rod 121 drives the linkage member 140 to move in the first direction through the follower connecting member 130, thereby driving a plurality of air-sweeping blades 150 to swing in the first direction, realizing left and right air-sweeping at the air outlet 12.

[0048] Since the air-sweeping blade 150 also exerts a force on the linkage member 140 at an angle with the first direction during the swinging process, this force can be decomposed into two component forces in the first direction and the second direction. Under the action of the component force in the second direction, the linkage member 140 drives the follower connecting member 130 to slide in the second direction relative to the telescopic rod 121, that is, relative sliding along the sliding groove 131 occurs between the telescopic rod 121 and the follower connecting member 130, thereby avoiding jamming during the air-sweeping process.

[0049] In order to facilitate the cooperation or disengagement between the telescopic rod 121 and the sliding groove 131, in this embodiment, the follower connecting member 130 is also provided with a notch 132 communicating with the sliding groove 131 for allowing one of the telescopic rod 121 and the linkage member 140 to enter or exit the sliding groove 131.

[0050] When it is necessary to establish a connection between the driving module 120 and the follower connecting member 130, it is only necessary to insert the telescopic rod 121 into the sliding groove 131 through the notch 132, and the telescopic rod 121 can slide relative to the sliding groove 131 subsequently; when it is necessary to detach the driving module 120, it is only necessary to withdraw the telescopic rod 121 from the sliding groove 131 through the notch 132.

[0051] In another embodiment, if the follower connecting member 130 is fixedly connected to the telescopic rod 121 and the linkage member 140 is slidably engaged with the sliding groove 131, the linkage member 140 can also enter or exit the sliding groove 131 through the notch 132. Whether the telescopic rod 121 or the linkage member 140 enters or exits the sliding groove 131, it is to establish or release the connection between the driving module 120 and the air-sweeping blade 150. It can be seen that the air guiding assembly 100 provided by the embodiment of the present invention can realize the quick disassembly and assembly of the driving module 120 and the air-sweeping blade 150, saving time and effort.

[0052] Preferably, in this embodiment, the notch 132 is opened at one end of the follower connecting member 130 in the second direction of the sliding groove 131. In another embodiment, the notch 132 can also be opened at other positions on the follower connecting member 130. For example, the notch 132 can also be opened on one side wall of the sliding groove 131 in the groove width direction.

[0053] Please refer to Figure 4 and Figure 5 , Figure 4 which shows a schematic connection structure of the follower connecting member 130, the linkage member 140, the air-sweeping blade 150 and the air guiding plate 110, Figure 5 which shows Figure 4 an enlarged schematic view of area B in

[0054] It can be understood that during the process of the driving module 120 driving the telescopic rod 121 to perform telescopic movement in the first direction, in order to ensure the adjustment accuracy of the air-sweeping angle, that is, to ensure the accurate swinging angle of the air-sweeping blade 150, relative movement in the first direction should not occur between the telescopic rod 121 and the follower connecting member 130.

[0055] In this embodiment, in order to limit the relative movement between the telescopic rod 121 and the follower connecting member 130 in the first direction, a limiting rib 133 extending in the second direction is convexly provided on the groove wall of the sliding groove 131, and a limiting groove is concavely provided on the surface of the telescopic rod 121 or the linkage member 140, and the limiting rib 133 is embedded in the limiting groove to limit the corresponding telescopic rod 121 or the linkage member 140 from moving relative to the linkage member 140 in the first direction.

[0056] It can be understood that the limiting groove actually corresponds to the limiting rib 133 and also extends in the second direction. Since the limiting rib 133 is embedded in the limiting groove, it is restricted by the cooperation relationship between the side wall of the limiting rib 133 and the groove wall of the limiting groove, that is, the limiting rib 133 can only slide in the second direction along the limiting groove and cannot move in other directions. That is, only relative sliding in the second direction can occur between the telescopic rod 121 and the follower connecting member 130.

[0057] Actually, the sliding stroke of the telescopic column in the sliding groove 131 is controlled by the driving stroke of the driving module 120, and it can be ensured by setting that the sliding limit position of the telescopic column still remains within the sliding groove 131 and will not come out of the notch 132.

[0058] In this embodiment, a limiting nozzle structure with a gradually changing width is provided at one end of the sliding groove 131 close to the notch 132. During the process of the telescopic column sliding along the sliding groove 131 and gradually approaching the notch 132, the limiting nozzle will exert a certain resistance on the telescopic column.

[0059] It can be understood that the follower connecting member 130 in this embodiment is made of an elastic material, that is, the limiting nozzle has a certain elastic deformation ability to ensure that the telescopic column can smoothly enter or exit the sliding groove 131 through the notch 132.

[0060] In order to further simplify the structure and reduce the disassembly and assembly difficulty, in this embodiment, the follower connecting member 130 and the linkage member 140 are integrally formed. In another embodiment, if the follower connecting member 130 is fixedly connected to the telescopic rod 121 and the linkage member 140 is slidably engaged with the sliding groove 131, the follower connecting member 130 can also be integrally formed with the telescopic rod 121.

[0061] Moreover, in this embodiment, the linkage member 140 and the air-sweeping blade 150 are integrally formed. In other words, during the process of the telescopic rod 121 driving the plurality of air-sweeping blades 150 to swing through the follower connecting member 130 and the linkage member 140, the plurality of air-sweeping blades 150 actually undergo bending deformation in the first direction.

[0062] Please refer to Figure 6 , Figure 6 as shown in Figure 4 the enlarged schematic diagram of area C in

[0063] In this embodiment, the air-sweeping blade 150 includes a blade main body 151 and a leg 152. The blade main body 151 has a swinging portion 1511 and a deforming portion 1513. The leg 152 is erected on the air deflector 110. The swinging portion 1511 is connected to the leg 152 through the deforming portion 1513, and one end of the swinging portion 1511 close to the deforming portion 1513 is connected to the linkage member 140.

[0064] It can be understood that in practical applications, the linkage part exerts a force on the swinging part 1511. The strength of the deformation part 1513 is lower than that of the swinging part 1511, and it deforms prior to the swinging part 1511, causing the swinging part 1511 to swing relative to the support leg 152 and the air deflector 110 in the first direction, thereby realizing the adjustment of the horizontal air outlet angle of the air outlet 12.

[0065] In this embodiment, the swinging part 1511 and the deformation part 1513 are made of the same material. The difference between the two is that the thickness of the deformation part 1513 is smaller than that of the swinging part 1511. In order to further weaken the strength of the deformation part 1513, the deformation part 1513 is also provided with a strength weakening hole 1514. In this embodiment, the strength weakening hole 1514 is a strip-shaped hole, and its extending direction is generally perpendicular to the first direction, that is, approximately perpendicular to the swinging direction of the swinging part 1511, ensuring that when a force in the first direction is applied, the deformation part 1513 can deform quickly and efficiently.

[0066] In order to reduce the movement stroke of the telescopic rod 121 in the first direction, in this embodiment, one end of the swinging part 1511 close to the deformation part 1513 is connected to the linkage 140. It can be understood that during the swinging of the swinging part 1511, the smaller the movement stroke is at the position closer to the swinging deformation part 1513. Connecting one end of the swinging part 1511 close to the deformation part 1513 to the linkage 140 in this embodiment can ensure the minimum driving stroke of the telescopic rod 121, thereby obtaining a larger installable area for the sweeping blades 150 on the air deflector 110, being able to increase the number of the sweeping blades 150, and thus obtaining a better sweeping effect.

[0067] In order to reduce the occupied space of the linkage part on the surface of the air deflector 110 and improve the overall structural compactness of the air guiding assembly 100, in this embodiment, an avoidance hole 1512 is provided through one end of the swinging part 1511 of each sweeping blade 150 close to the deformation part 1513, and the linkage 140 sequentially passes through a plurality of avoidance holes 1512 in the first direction and is connected to the swinging parts 1511 of a plurality of sweeping blades 150.

[0068] In summary, the air guiding assembly 100 provided in this embodiment can realize the quick disassembly and assembly of the driving module 120 and the sweeping blades 150, saving time and effort, and also has the characteristics of simple and compact structure and better sweeping effect.

[0069] The air conditioner 10 provided in this embodiment realizes the zonal adjustment of the air outlet of the air outlet 12, with richer adjustment functions and better user experience. Moreover, benefiting from the beneficial effects of the air guiding assembly 100, the air conditioner 10 also has the characteristics of simple structure, easy disassembly and assembly, stable and reliable structure, and better air outlet effect.

[0070] Although the present utility model is disclosed as above, the present utility model 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 utility model. Therefore, the protection scope of the present utility model shall be subject to the scope defined by the claims.

Claims

1. An air guide assembly, characterized in that: The invention comprises an air guide plate (110), a driving module (120), a follower connecting member (130), a linkage member (140) and an air sweeping blade (150), wherein the driving module (120) has a telescopic rod (121) extending in a first direction, the air sweeping blade (150) is arranged on the air guide plate (110), and the linkage member (140) is connected to the air sweeping blade (150); The follower connecting member (130) has a slide groove (131) extending in a second direction, the second direction forms an angle with the first direction, one of the telescopic rod (121) and the linkage member (140) is connected to the follower connecting member (130), and the other one of the two is slidably matched with the slide groove (131); the telescopic rod (121) is used to drive the wind sweeping blade (150) to swing in the first direction through the follower connecting member (130) and the linkage member (140), and the follower connecting member (130) is used to slide in the second direction relative to the telescopic rod (121) or the linkage member (140) during the swinging process of the wind sweeping blade (150); The follower connecting member (130) is also provided with a notch (132) communicating with the slide groove (131) for allowing one of the telescopic rod (121) and the linkage member (140) to enter or exit the slide groove (131).

2. The air guide assembly according to claim 1, characterized in that: The notch (132) is formed on the follower connecting member (130) at one end of the slide groove (131) in the second direction, or the notch (132) is formed on one side wall of the slide groove (131) in the groove width direction.

3. The air guide assembly according to claim 1, characterized in that: A limiting rib (133) extending in the second direction is convexly provided on the groove wall of the sliding groove (131), and a limiting groove is concavely provided on the surface of the telescopic rod (121) or the linkage member (140), and the limiting rib (133) is embedded in the limiting groove to limit the corresponding telescopic rod (121) or the linkage member (140) from moving in the first direction relative to the linkage member (140).

4. The air guide assembly according to claim 1, characterized in that: The follower connecting member (130) and the linkage member (140) are integrally formed, or, The follower connecting piece (130) and the telescopic rod (121) are integrally formed.

5. The air guide assembly according to claim 1, characterized in that: The linkage member (140) and the wind sweeping blade (150) are integrally formed.

6. The air guide assembly according to claim 1, characterized in that: The number of the wind sweeping blades (150) is plural, and the plurality of wind sweeping blades (150) are arranged in sequence along the first direction. The linkage member (140) extends in the first direction and is connected to the plurality of wind sweeping blades (150).

7. The air guide assembly according to claim 1, characterized in that: The wind sweeping blade (150) comprises a blade body (151) and a support leg (152); the blade body (151) has a swinging portion (1511) and a deformation portion (1513); the support leg (152) is vertically arranged on the wind guide plate (110); the swinging portion (1511) is connected to the support leg (152) via the deformation portion (1513); and one end of the swinging portion (1511) close to the deformation portion (1513) is connected to the linkage (140).

8. The air guide assembly according to claim 7, characterized in that: The thickness of the deformation portion (1513) is smaller than the thickness of the swing portion (1511), and / or, The deformation portion (1513) is provided with a strength reducing hole (1514) penetrating therethrough.

9. The air guide assembly according to claim 7, characterized in that: An avoidance hole (1512) is provided through one end of the swing portion (1511) close to the deformation portion (1513), and the linkage member (140) passes through the avoidance hole (1512) and is connected to the swing portion (1511).

10. An air conditioner, characterized in that: It comprises a machine body (11) and a plurality of air guide assemblies (100) according to any one of claims 1 to 9, wherein the machine body (11) has an air outlet (12), and the plurality of air guide assemblies (100) are all installed at the air outlet (12).