Air guide assembly and air conditioner
By designing the drive blades in the air guide assembly to be rotatably connected to the air guide plate, the driven blades are fixedly connected to the air guide plate, and the linkage is used to drive the driven blades to deform and swing, the problems of complex structure, difficult disassembly and poor stability of the existing air guide assembly are solved, and better wind sweep effect and structural stability are achieved.
Patent Information
- Application Number
- CN202421969846.1
- 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
The existing air guide components have complex structures, difficult disassembly and poor stability.
A air guide assembly is designed, including a air guide plate, a driving blade, a linkage and a driven blade. The driving blade and the air guide plate are rotatably connected, and the driven blade and the air guide plate are fixedly connected. The driven blades are driven to deform and swing through the linkage to realize the left and right wind sweep.
It realizes a simple structure, easy to disassemble and assemble, and has a stable and reliable structure, improving the wind sweep effect and the stability of the overall structure.
Smart Images

Figure CN222993146U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of air conditioners, and more specifically, to an air guiding component and an air conditioner. Background Art
[0002] Some air conditioners are equipped with air guiding components, which usually consist of air guiding plates and sweeping blades. The air guiding plates are driven by a driving mechanism to flip up and down at the air outlet to achieve up and down air guiding; a plurality of sweeping blades are arranged in sequence on the air guiding plates and swing left and right under the drive of the driving mechanism to achieve left and right air sweeping.
[0003] Currently, for the air guiding components on the market, a plurality of sweeping blades are rotatably matched with the air guiding plates. The installation of a plurality of sweeping blades requires a large number of component combinations, with a complex structure, difficult disassembly and assembly, and poor structural stability. Summary of the Utility Model
[0004] The problem solved by the utility model is that the existing air guiding components have a complex structure, difficult disassembly and assembly, and poor stability.
[0005] To solve the above problems, the utility model provides an air guiding component, which has the characteristics of simple structure, easy disassembly and assembly, and stable and reliable structure.
[0006] An embodiment of the utility model provides a technical solution:
[0007] An air guiding component includes an air guiding plate, a driving blade, a linkage member, and a driven blade. The driving blade is rotatably connected to the air guiding plate, and the driven blade is fixedly connected to the air guiding plate;
[0008] The driving blade is connected to the driven blade through the linkage member. The driving blade is used to rotate relative to the air guiding plate under the action of an external force, so as to drive the driven blade to deform and swing through the linkage member.
[0009] For the air guiding component provided by the embodiment of the utility model, the driving blade is rotatably connected to the air guiding plate. A plurality of driven blades are fixedly connected to the air guiding plate. The driving blade rotates under force and drives a plurality of driven blades to deform and swing through the linkage member to achieve left and right air sweeping. Since the driving blade is rotatably connected to the air guiding plate, the rotation angle is ensured to be in place, so as to ensure the air sweeping action and air sweeping angle of a plurality of driven blades are standard and in place, obtaining a better air sweeping effect. A plurality of driven blades are fixed on the air guiding plate, omitting a large number of component combinations, with a simple structure, easy disassembly and assembly, and better structural stability. Therefore, the air guiding component provided by the embodiment of the utility model has the characteristics of better air sweeping effect, simpler and easier disassembly and assembly structure, and more stable and reliable structure.
[0010] In an alternative embodiment, the driving blade is detachably connected to the air guiding plate, and / or
[0011] The driven blades and the wind guide plate are integrally formed.
[0012] The driving blade and the air guide plate are detachably connected, and the driven blade and the air guide plate are integrally formed, which facilitates the connection between the air guide assembly and the driving mechanism, as well as the assembly of the air guide plate assembly, thereby improving the stability of the overall structure.
[0013] In an optional embodiment, the driving blade is detachably and rotatably connected to the linkage member, and / or,
[0014] The driven blade and the linkage member are integrally formed.
[0015] The detachable and rotatable connection between the driving blade and the linkage further improves the convenience of disassembly and assembly, and prevents the linkage from deflecting under the drive of the driving blade. The driven blade and the linkage are integrally formed, further improving the stability of the structure and ensuring the precise sweeping angle.
[0016] In an optional embodiment, the driving blade has a rotating part, a connecting part and a driving part arranged in sequence in a direction parallel to the air guide plate, the rotating part is rotatably connected to the air guide plate, the driving part is connected to the linkage, and the connecting part is used to drive the driving blade to rotate around the rotating part under the action of external force.
[0017] In the direction parallel to the wind deflector, the rotating part, the connecting part and the driving part are arranged in sequence, and the connecting part is between the rotating part and the driving part. When adjusting the same wind sweeping angle, the movement stroke of the driving mechanism can be reduced. In addition, the driving part can transmit the maximum rotation angle of the driving blade to the driven blade, thereby obtaining a higher wind sweeping angle adjustment efficiency.
[0018] In an optional embodiment, the driven blade includes a blade body and a fixed leg, the blade body has a swinging part and a deformation part, the fixed leg is upright on the wind guide plate, the swinging part is connected to the fixed leg through the deformation part, and the swinging part is connected to the linkage part.
[0019] Driven by the linkage, the swing part swings relative to the fixed leg, and a deformation part is arranged between the swing part and the fixed leg, so that the deformation part is deformed by force, thereby ensuring that the swing part can swing into place quickly and improving the efficiency and accuracy of angle adjustment.
[0020] In an optional embodiment, the thickness of the deformation portion is smaller than the thickness of the swing portion, and / or,
[0021] The deformation portion is penetrated by a strength weakening hole.
[0022] The thickness of the deformation part is smaller or the deformation part is penetrated by a strength weakening hole. When subjected to the force of the linkage part, the deformation part can be deformed first, ensuring that the swing part can respond quickly and improving the angle adjustment efficiency and adjustment accuracy.
[0023] In an optional embodiment, a clearance gap is formed on a side of the swing portion away from the deformation portion, and the linkage member passes through the clearance gap and is connected to the swing portion.
[0024] The linkage part is connected with the swing part through the clearance gap, so that the linkage part does not occupy too much space outside the driven blade, the compactness and stability of the overall structure are improved, and more available space is obtained.
[0025] In an optional embodiment, the air guide plate includes an outer plate and a lining plate that are stacked, and the driving blade and the driven blade are both connected to a side of the lining plate that is away from the outer plate.
[0026] In an optional embodiment, the air guide assembly further includes an adapter, the air guide plate is provided with an assembly sleeve, one end of the adapter passes through the assembly sleeve and is rotatably connected to the drive blade, and the other end is used to connect to a drive mechanism.
[0027] The adapter slides along the assembly sleeve under the drive of the driving mechanism, thereby driving the driving blade to rotate, and then drives multiple driven blades to deform and swing through the linkage parts to achieve the adjustment of the left and right wind sweeping angles.
[0028] The embodiment of the utility model also provides an air conditioner, comprising a body and a plurality of the wind guide components, wherein the wind guide components include a wind guide plate, a driving blade, a linkage, and a driven blade, wherein the driving blade is rotatably connected to the wind guide plate, and the driven blade is fixedly connected to the wind guide plate; the driving blade is connected to the driven blade through the linkage, and the driving blade is used to rotate relative to the wind guide plate under the action of an external force, so as to drive the driven blade to deform and swing through the linkage. The body has an air outlet, and the plurality of the wind guide components are installed at the air outlet.
[0029] The air conditioner provided by the embodiment of the utility model has a plurality of air guide components installed in the air outlet, which realizes the zoning adjustment of the air outlet, has richer adjustment functions, and better user experience. Moreover, benefiting from the beneficial effects of the air guide components, the air conditioner also has the characteristics of simple structure, easy disassembly and assembly, and stable and reliable structure. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Figure 1 A schematic diagram of the structure of an air conditioner provided by an embodiment of the utility model;
[0031] Figure 2 forFigure 1 Schematic structural diagram of the middle air guiding component;
[0032] Figure 3 Schematic connection structure diagram between the driving blade, the air sweeping module and the air guiding plate of the air guiding component;
[0033] Figure 4 is Figure 3 Enlarged schematic diagram of area A in
[0034] Figure 5 Schematic connection structure diagram between the air sweeping module and the air guiding plate of the air guiding component;
[0035] Figure 6 is Figure 5 Enlarged schematic diagram of area B in
[0036] Explanation of reference numerals:
[0037] 10 - Air conditioner; 11 - Body; 12 - Air outlet; 100 - Air guiding component; 110 - Air guiding plate; 111 - Outer plate; 112 - Lining plate; 113 - Assembly bushing; 114 - Mounting ear plate; 115 - Support bushing; 120 - Driving blade; 121 - Rotating part; 122 - Connecting part; 123 - Driving part; 124 - Relief hole; 130 - Air sweeping module; 131 - Linkage part; 132 - Driven blade; 1321 - Blade body; 1322 - Fixed leg; 1323 - Oscillating part; 1324 - Deformation part; 1325 - Strength reducing hole; 1326 - Relief notch; 140 - Adapter; 141 - Active section; 142 - Driven section. Detailed implementation manners
[0038] 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.
[0039] Please refer to Figure 1 , Figure 1 The schematic structural diagram of the air conditioner 10 provided in this embodiment is shown.
[0040] The air conditioner 10 provided in this embodiment includes a body 11 and a plurality of air guiding components 100. The body 11 has an air outlet 12, and the plurality of air guiding components 100 are all installed at the air outlet 12.
[0041] Actually, a driving mechanism (not shown in the figure) for controlling the movement of the air guiding component 100 is provided on the body 11. The plurality of air guiding components 100 are connected to the driving mechanism. Under the drive of the driving mechanism, the plurality of air guiding components 100 realize the sub - area adjustment of the air outlet angle of the air outlet 12.
[0042] Specifically, in this embodiment, the number of the air guiding assemblies 100 is two, and the two air guiding assemblies 100 are arranged in sequence in the length direction of the air outlet 12, so as to independently adjust the air outlet conditions in the left and right areas of the air outlet 12.
[0043] Please refer to Figure 2 , Figure 2 which shows a schematic structural diagram of the air guiding assembly 100 provided in this embodiment.
[0044] The air guiding assembly 100 provided in this embodiment includes a wind guiding plate 110, a driving blade 120 and a sweeping module 130. The sweeping module 130 is arranged on the wind guiding plate 110. The driving blade 120 is rotatably connected to the wind guiding plate 110, and the driving blade 120 is connected to the sweeping module 130 and is used to drive the sweeping module 130 to act to realize sweeping under the drive of a driving mechanism.
[0045] Specifically, in this embodiment, the sweeping module 130 includes a linkage member 131 and a driven blade 132. The driven blade 132 is fixedly connected to the wind guiding plate 110. The driving blade 120 is connected to the driven blade 132 through the linkage member 131. The driving blade 120 is used to rotate relative to the wind guiding plate 110 under the action of an external force, so as to drive the driven blade 132 to deform and swing through the linkage member 131.
[0046] In this embodiment, the length direction of the wind guiding plate 110 is parallel to the length direction of the air outlet 12. Both the wind guiding plate 110 and the driving blade 120 are in transmission connection with a driving mechanism on the machine body 11. In practical applications, the driving mechanism drives the wind guiding plate 110 to turn up and down at the air outlet 12 to realize the adjustment of the air outlet angle in the vertical direction. The driving mechanism drives the driving blade 120 to rotate horizontally, and drives the driven blade 132 to swing horizontally through the linkage member 131 to realize the adjustment of the air outlet angle in the horizontal direction, that is, the adjustment of the sweeping angle.
[0047] Actually, the number of the driven blades 132 is multiple. Since the driving blade 120 is rotatably connected to the wind guiding plate 110, the rotation angle is ensured to be in place, so as to ensure the sweeping action of the multiple driven blades 132 and the standard and in-place sweeping angle, and obtain a better sweeping effect. The multiple driven blades 132 are fixed on the wind guiding plate 110, omitting a large number of component combinations, with a simple structure, easy disassembly and assembly, and better structural stability.
[0048] In order to further reduce the assembly difficulty of the air guiding assembly 100, in this embodiment, the driving blade 120 is detachably and rotatably connected to the air guiding plate 110. Moreover, the linkage member 131 and the plurality of driven blades 132 are integrally formed with the air guiding plate 110. In this embodiment, the driving blade 120 and the plurality of driven blades 132 are arranged at intervals in sequence along the first direction, and the plurality of driven blades 132 are all connected to the driving blade 120 through the linkage member 131, and the linkage member 131 extends along the first direction.
[0049] In this embodiment, the first direction is Figure 2 the direction indicated by the X arrow in Figure 2 , that is, the length extension direction of the air guiding plate 110. The driving blade 120 and the plurality of driven blades 132 are arranged in sequence along the length extension direction of the air guiding plate 110 on the same side of the air guiding plate 110, achieving the maximum utilization of the surface space of the air guiding plate 110. When the driving blade 120 and the plurality of driven blades 132 swing in the first direction, the horizontal air outlet angle of the air outlet 12 can be adjusted quickly and efficiently.
[0050] Considering that in practical applications, when the driving blade 120 rotates, the force exerted on the linkage member 131 is actually at an angle with the first direction. Therefore, in order to prevent the linkage member 131 from deflecting and causing inconsistent swinging degrees of the plurality of driven blades 132, in this embodiment, the driving blade 120 is detachably and rotatably connected to the linkage member 131.
[0051] Please refer to Figure 3 and Figure 4 , Figure 3 which shows a schematic connection structure diagram among the driving blade 120, the air sweeping module 130 and the air guiding plate 110 of the air guiding assembly 100 provided in this embodiment, Figure 4 which shows Figure 3 an enlarged schematic diagram of area A in Figure 3 .
[0052] Actually, the driving blade 120 has a rotating portion 121, a connecting portion 122 and a driving portion 123. The rotating portion 121 is rotatably connected to the air guiding plate 110, and the driving portion 123 is connected to the linkage member 131 of the air sweeping module 130. The connecting portion 122 is located between the rotating portion 121 and the driving portion 123 and is closer to the rotating portion 121. The connecting portion 122 is used to drive the driving blade 120 to rotate relative to the air guiding plate 110 under the action of an external force, so as to drive the driven blades 132 to swing through the linkage member 131.
[0053] In the direction parallel to the air guiding plate 110, the rotating portion 121, the connecting portion 122 and the driving portion 123 are arranged in sequence. The distance between the connecting portion 122 and the rotating portion 121 is less than the distance between the connecting portion 122 and the driving portion 123. The rotating portion 121 and the driving portion 123 are respectively located at opposite ends of the driving blade 120.
[0054] It should be noted that for the non-flat air deflector 110, the direction parallel to the air deflector 110 may refer to the direction parallel to the plane formed by the periphery of the air deflector 110. For example, for the arc-shaped air deflector 110, the periphery of the arc-shaped air deflector 110 forms a rectangular plane, and the direction parallel to the air deflector 110 refers to the direction parallel to this rectangular plane.
[0055] It can be understood that the distance between the connecting portion 122 and the rotating portion 121 is less than the distance between the connecting portion 122 and the driving portion 123. The movement stroke of the connecting portion 122 is much smaller than the movement stroke of the driving portion 123, so that the movement stroke of the driving mechanism is greatly reduced. Moreover, compared with the connecting portion 122, the driving portion 123 that is farther away from the rotating portion 121 is connected to the linkage member 131 of the air-sweeping module 130. The driving portion 123 drives the driven blade 132 to swing through the linkage member 131, so that the driving force of the driving mechanism is reduced.
[0056] In order to increase the lever arm length of the driven blade 132 and further reduce the driving force, in this embodiment, one end of each of the plurality of driven blades 132 corresponding to the driving portion 123 of the driving blade 120 in the first direction is connected to the linkage member 131. In order to further optimize the driving torque, in this embodiment, the connecting portion 122 of the driving blade 120 and the positions where the plurality of driven blades 132 are respectively connected to the air deflector 110 are aligned in the first direction.
[0057] It can be understood that since one end of each of the plurality of driven blades 132 corresponding to the driving portion 123 of the driving blade 120 in the first direction is connected to the linkage member 131, and the positions where the plurality of driven blades 132 are connected to the air deflector 110 are aligned with the connecting portion 122 of the driving blade 120 in the first direction, the lever arm of the driven blade 132 is maximized, so that the driving force is greatly reduced.
[0058] Although it causes the maximum movement stroke of the linkage member 131, the driving mechanism is connected to the connecting portion 122 of the driving blade 120, and the connecting portion 122 is closer to the rotating portion 121, that is, the movement stroke of the driving mechanism is smaller and is not affected by the movement stroke of the linkage member 131.
[0059] It can be seen that the air guiding assembly 100 provided in this embodiment can reduce the driving force of the driving mechanism and at the same time reduce the movement stroke of the driving mechanism, obtain a larger installable area for the driving blade 120 and the air-sweeping module 130 on the air deflector 110, so as to obtain a better air-sweeping effect.
[0060] The air guide assembly 100 provided in this embodiment also includes an adapter 140, which is slidably disposed on the air guide plate 110 and rotatably connected to the connecting portion 122. The adapter 140 is used to drive the driving blade 120 to rotate relative to the air guide plate 110 under the action of an external force, so as to drive the wind sweeping module 130 to move.
[0061] Specifically, the air guide plate 110 is provided with an assembly sleeve 113, the axis of the assembly sleeve 113 is extended in the first direction, one end of the adapter 140 passes through the assembly sleeve 113 and is rotatably connected to the drive blade 120, and the other end is used to connect the drive mechanism. It can be understood that in actual application, under the drive of the drive mechanism, the adapter 140 slides in the assembly sleeve 113 along the first direction, thereby applying a force to the connection portion 122 of the drive blade 120, driving the drive blade 120 to rotate with the rotating portion 121 as the rotation center.
[0062] It is understandable that in actual applications, the driving mechanism can be arranged outside the air guide plate 110. Since the connecting portion 122 is closer to the rotating portion 121, the sliding stroke of the adapter 140 in the first direction is extremely small, and it occupies extremely small space on the surface of the air guide plate 110, so that the air guide plate 110 has a larger area for arranging the driving blades 120 and the wind sweeping module 130, and a larger number of driven blades 132 can be arranged, so as to obtain a better wind sweeping effect.
[0063] In fact, a mounting lug 114 is vertically provided on the surface of the air guide plate 110, and an assembly sleeve 113 is arranged on the mounting lug 114. In practical applications, the assembly sleeve 113 is also in transmission connection with a driving mechanism, and is used to drive the air guide plate 110 to flip in a vertical plane under the drive of the driving mechanism, so as to adjust the air outlet angle in the vertical direction of the outlet.
[0064] In order to ensure that the air guide plate 110 rotates smoothly, in this embodiment, another mounting ear plate 114 is provided on the air guide plate 110, and a support sleeve 115 aligned with the assembly sleeve 113 in the first direction is provided on the other mounting ear plate 114, and the support sleeve 115 is rotatably matched with the body 11 of the air conditioner 10. In actual application, the assembly sleeve 113 and the support sleeve 115 are supported by the driving mechanism and the body 11 respectively, so as to ensure that the air guide plate 110 turns smoothly in the vertical plane. In this embodiment, the driving blade 120 and the wind sweeping module 130 are arranged in sequence between the assembly sleeve 113 and the support sleeve 115.
[0065] In fact, the adapter 140 includes an active section 141 and a driven section 142. One end of the active section 141 is connected to the driving mechanism, and the other end passes through the assembly bushing 113 and is connected to the driven section 142. The connection part 122 between the driven section 142 and the driving blade 120 is rotatably connected. In this embodiment, the active section 141 is provided with external threads for connection to the driving mechanism.
[0066] Considering that during the rotation of the driving blade 120, a force at an angle to the first direction is applied to the driven section 142. To avoid jamming between the adapter 140 and the assembly bushing 113, in this embodiment, the driven section 142 and the active section 141 are in sliding fit, and relative movement can occur between them in a direction at an angle to the first direction.
[0067] To facilitate the connection between the adapter 140 and the connection part 122 and achieve a certain degree of clearance for the adapter 140, in this embodiment, a clearance hole 124 is provided through the driving blade 120. The connection part 122 is located within the clearance hole 124, and at least a part of the adapter 140 extends into the clearance hole 124 and is rotatably connected to the connection part 122.
[0068] Please refer to Figure 5 and Figure 6 , Figure 5 The schematic diagram of the connection structure between the air-sweeping module 130 and the air guide plate 110 of the air guide assembly 100 provided in this embodiment is shown in Figure 6 as shown in Figure 5 The enlarged schematic diagram of area B in
[0069] In this embodiment, the driven blade 132 includes a blade main body 1321 and a fixed support leg 1322. The blade main body 1321 has a swinging part 1323 and a deforming part 1324. The fixed support leg 1322 is erected on the air guide plate 110. The swinging part 1323 is connected to the fixed support leg 1322 through the deforming part 1324, and the swinging part 1323 is connected to the linkage member 131.
[0070] It can be understood that in practical applications, the linkage member 131 applies a force to the swinging part 1323. The strength of the deforming part 1324 is lower than that of the swinging part 1323, and it deforms prior to the swinging part 1323, causing the swinging part 1323 to swing in the first direction relative to the fixed support leg 1322 and the air guide plate 110, thereby realizing the adjustment of the horizontal air outlet angle.
[0071] In this embodiment, the swinging part 1323 and the deforming part 1324 are made of the same material. The difference between the two lies in that the thickness of the deforming part 1324 is smaller than that of the swinging part 1323. In order to further weaken the strength of the deforming part 1324, a strength weakening hole 1325 is also provided through the deforming part 1324. In this embodiment, the strength weakening hole 1325 is a strip-shaped hole, which is generally perpendicular to the first direction, that is, perpendicular to the swinging direction of the swinging part 1323.
[0072] In order to reduce the occupied space of the linkage 131 on the surface of the air deflector 110 and improve the overall structural compactness of the air guiding assembly 100, in this embodiment, a relief notch 1326 is formed on one side of the swinging part 1323 of each driven blade 132 away from the deforming part 1324, and the linkage 131 passes through the relief notch 1326 and is connected to the swinging part 1323.
[0073] For the air deflector 110, it can be a single-layer structure or a multi-layer composite structure. In this embodiment, the air deflector 110 includes an outer plate 111 and a lining plate 112 stacked together, and the driving blade 120 and the air sweeping module 130 are both connected to the side of the lining plate 112 facing away from the outer plate 111. That is, the air sweeping module 130 is integrally formed with the lining plate 112.
[0074] Actually, in this embodiment, the outer plate 111 is arc-shaped, which has a relative concave arc side and a convex arc side. The lining plate 112 is arranged on the concave arc side of the outer plate 111 to achieve at least a certain degree of filling of the concave arc side. In other words, during the flipping process of the air deflector 110, the driving blade 120, the air sweeping module 130 and the adapter 140 are always located on the concave arc side of the outer plate 111.
[0075] In summary, the air guiding assembly 100 provided in this embodiment has the characteristics of simpler structure, easier disassembly and assembly, and more stable and reliable structure. And this air guiding assembly 100 can also reduce the movement stroke and driving force of the driving mechanism, thereby expanding the installable area of the driving blade 120 and the air sweeping module 130, and obtaining a better air sweeping adjustment effect.
[0076] The air conditioner 10 provided in this embodiment realizes the zoning adjustment of the air outlet from the air outlet 12, with richer adjustment functions and better user experience. And, benefiting from the beneficial effects of the air guiding assembly 100, this air conditioner 10 also has the characteristics of simple structure, easy disassembly and assembly, stable and reliable structure, and better air outlet effect.
[0077] 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. An air guide assembly, characterized in that: It comprises an air guide plate (110), a driving blade (120), a linkage member (131) and a driven blade (132), wherein the driving blade (120) is rotatably connected to the air guide plate (110), and the driven blade (132) is fixedly connected to the air guide plate (110); The driving blade (120) is connected to the driven blade (132) via the linkage member (131), and the driving blade (120) is used to rotate relative to the wind guide plate (110) under the action of an external force, so as to drive the driven blade (132) to deform and swing via the linkage member (131).
2. The air guide assembly according to claim 1, characterized in that: The driving blade (120) is detachably connected to the wind guide plate (110), and / or, The driven blade (132) and the wind guide plate (110) are integrally formed.
3. The air guide assembly according to claim 1, characterized in that: The driving blade (120) is detachably and rotatably connected to the linkage member (131), and / or, The driven blade (132) and the linkage member (131) are integrally formed.
4. The air guide assembly according to claim 1, characterized in that: The driving blade (120) comprises a rotating portion (121), a connecting portion (122) and a driving portion (123) which are sequentially arranged in a direction parallel to the air guide plate (110); the rotating portion (121) is rotatably connected to the air guide plate (110); the driving portion (123) is connected to the linkage member (131); and the connecting portion (122) is used for driving the driving blade (120) to rotate around the rotating portion (121) under the action of an external force.
5. The air guide assembly according to claim 1, characterized in that: The driven blade (132) comprises a blade body (1321) and a fixed leg (1322); the blade body (1321) has a swinging portion (1323) and a deformation portion (1324); the fixed leg (1322) is vertically arranged on the wind guide plate (110); the swinging portion (1323) is connected to the fixed leg (1322) via the deformation portion (1324); and the swinging portion (1323) is connected to the linkage member (131).
6. The air guide assembly according to claim 5, characterized in that: The thickness of the deformation portion (1324) is smaller than the thickness of the swing portion (1323), and / or, The deformation portion (1324) is provided with a strength reducing hole (1325) penetrating therethrough.
7. The air guide assembly according to claim 5, characterized in that: A clearance notch (1326) is provided on one side of the swing portion (1323) away from the deformation portion (1324), and the linkage member (131) passes through the clearance notch (1326) and is connected to the swing portion (1323).
8. The air guide assembly according to claim 1, characterized in that: The wind guide plate (110) comprises an outer plate (111) and a lining plate (112) which are stacked, and the driving blade (120) and the driven blade (132) are both connected to a side of the lining plate (112) which is away from the outer plate (111).
9. The air guide assembly according to claim 1, characterized in that: The wind guide assembly (100) further comprises an adapter (140), the wind guide plate (110) is provided with an assembly sleeve (113), one end of the adapter (140) passes through the assembly sleeve (113) and is rotatably connected to the driving blade (120), and the other end is used for connecting to a driving mechanism.
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).