Air deflector structure and air conditioner

By using an integrated air sweeping plate structure and driving components to rotate the air sweeping plate assembly, the problem of mismatch in air sweeping plate assemblies of cabinet air conditioners is solved, achieving stable air sweeping and cost reduction.

CN114383308BActive Publication Date: 2026-05-05创维空调科技(安徽)有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
创维空调科技(安徽)有限公司
Filing Date
2022-02-10
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

The air sweeper assembly of existing cabinet air conditioners is prone to problems such as vibration, abnormal noise, and incorrect resetting due to mismatch of various components.

Method used

The air sweeping plate adopts an integrated molded structure. The air sweeping plate assembly is driven to rotate by a drive component. The air sweeping plates are fixedly connected to form multiple ventilation openings and rotate within the rotating shaft and through holes. The rotation angle is limited to avoid mismatch caused by dimensional errors.

Benefits of technology

This achieves stable rotation of the air sweeping blades, reduces costs, avoids vibration and abnormal noise, ensures correct reset, and improves the stability and service life of the air sweeping blade assembly.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a swing plate structure and an air conditioner. The swing plate structure includes: a panel assembly with an opening; a swing plate assembly rotatably connected to the panel assembly; and a driving member disposed on the panel assembly and connected to the swing plate assembly to drive the swing plate assembly to rotate. The swing plate assembly includes: a plurality of swing blades, which are fixedly connected to form multiple ventilation openings facing the opening. Because the swing blades are fixedly connected to form multiple ventilation openings, air can flow from the ventilation openings to the openings. Since the driving member can drive the swing plate assembly to rotate, swinging is achieved. Furthermore, because the swing blades are fixedly connected, relative movement will not occur, avoiding mismatch problems caused by dimensional errors. This not only reduces costs but also eliminates problems such as vibration, abnormal noise, and inability to properly reset.
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Description

Technical Field

[0001] This invention relates to the field of air sweeping plate technology, and more particularly to an air sweeping plate structure and an air conditioner. Background Technology

[0002] In existing technology, the air sweeping plate assembly of a cabinet air conditioner consists of multiple independent air sweeping blades, each of which is connected by various linkages to form a unified whole. This transmission structure, due to the numerous mating parts and dimensional constraints, results in excessive internal constraints within the air sweeping plate assembly. When the air sweeping blades rotate, they are pulled together by the accumulation of material mismatch errors between the blades and linkages, easily leading to mismatches among the components of the air sweeping plate assembly.

[0003] Therefore, existing technologies still need to be improved and developed. Summary of the Invention

[0004] The technical problem to be solved by the present invention is to provide a sweeping plate structure and an air conditioner that address the above-mentioned deficiencies of the prior art, aiming to solve the problem of mismatch among the components in the sweeping plate assembly in the prior art.

[0005] The technical solution adopted by this invention to solve the technical problem is as follows:

[0006] A sweeping plate structure, comprising:

[0007] A panel assembly having an opening;

[0008] The air-sweeping plate assembly is rotatably connected to the panel assembly;

[0009] A driving component is disposed on the panel assembly and connected to the air sweeping plate assembly to drive the air sweeping plate assembly to rotate;

[0010] The air sweeping plate assembly includes:

[0011] A plurality of air-sweeping vanes are fixedly connected to form a plurality of ventilation openings, the ventilation openings facing the opening.

[0012] The aforementioned air-sweeping plate structure, wherein the air-sweeping plate assembly is integrally formed.

[0013] The aforementioned air-sweeping plate structure, wherein the air-sweeping blade comprises:

[0014] Several horizontal pieces;

[0015] Several vertical pieces are connected to several of the horizontal pieces;

[0016] The ventilation opening is formed by two adjacent horizontal plates and two adjacent vertical plates surrounding each other.

[0017] The aforementioned air-sweeping plate structure, wherein the panel assembly includes:

[0018] The panel has the aforementioned opening;

[0019] Side panels are provided at the edge of the opening;

[0020] The side plate is provided with a first through hole;

[0021] The outermost vertical plate of the air sweeping plate assembly is provided with a first rotating shaft;

[0022] The first rotating shaft is located inside the first through hole and rotates within the first through hole;

[0023] The drive component is connected to the first rotating shaft.

[0024] The aforementioned air-sweeping plate structure, wherein the panel assembly further includes:

[0025] A base plate is disposed at the edge of the opening, and the side plate is connected to the base plate;

[0026] A second rotating shaft is provided on the base plate;

[0027] The vertical plate is provided with a second through hole;

[0028] The second shaft is located inside the second through hole and rotates within the second through hole.

[0029] In the aforementioned air-sweeping plate structure, a protrusion is provided on the first rotating shaft;

[0030] The side plate is provided with a fan-shaped through hole, which communicates with the first through hole;

[0031] The protrusion is located inside the annular through hole.

[0032] The aforementioned air-sweeping plate structure includes two driving components.

[0033] The air sweeping plate assembly includes:

[0034] First sub-sweeping plate assembly;

[0035] Second sub-sweeping plate assembly;

[0036] The first rotating shaft is provided on the outer side of both the first sub-sweeping plate assembly and the second sub-sweeping plate assembly, and the two first rotating shafts are connected to the two driving components one by one.

[0037] The aforementioned air-sweeping plate structure, wherein a third rotating shaft is provided on the inner side of both the first sub-air-sweeping plate assembly and the second sub-air-sweeping plate assembly;

[0038] The air sweeping plate assembly includes:

[0039] At least one third sub-sweeping plate assembly, wherein a fourth rotating shaft is provided on both sides of the third sub-sweeping plate assembly;

[0040] The first sub-sweeping plate assembly, each of the third sub-sweeping plate assemblies, and the second sub-sweeping plate assembly are arranged in sequence.

[0041] The fourth rotating shaft of the third sub-sweeping plate assembly is connected to the fourth rotating shaft of the adjacent third sub-sweeping plate assembly, or the fourth rotating shaft of the third sub-sweeping plate assembly is connected to the third rotating shaft of the adjacent first sub-sweeping plate assembly, or the fourth rotating shaft of the third sub-sweeping plate assembly is connected to the third rotating shaft of the adjacent second sub-sweeping plate assembly.

[0042] The base plate is provided with at least two third through holes, and adjacent third and fourth rotating shafts are located in the third through holes and rotate within the third through holes; or adjacent fourth rotating shafts are located in the third through holes and rotate within the third through holes.

[0043] In the aforementioned air-sweeping plate structure, the driving component is connected to the first rotating shaft via an anti-electric shaft.

[0044] An air conditioner, comprising a sweeping vane structure as described in any of the preceding claims.

[0045] Beneficial effects: Since the fixed connection of each sweeping blade forms multiple ventilation openings, air can flow from the ventilation openings to the openings. Since the driving component can drive the sweeping blade assembly to rotate, sweeping is achieved. Furthermore, since the sweeping blades are fixedly connected, there will be no relative movement, and there will be no mismatch problem caused by size error. Attached Figure Description

[0046] Figure 1 This is a three-dimensional view of the air-sweeping plate structure in this invention.

[0047] Figure 2 yes Figure 1 Enlarged view of point A in the middle.

[0048] Figure 3 yes Figure 1 Enlarged view of point B in the middle.

[0049] Figure 4 yes Figure 1 A magnified view of point C in the middle.

[0050] Figure 5 yes Figure 1 Enlarged view of point D in the middle.

[0051] Figure 6 yes Figure 1Enlarged view of point E in the middle.

[0052] Figure 7 yes Figure 1 Enlarged view of point F in the middle.

[0053] Figure 8 This is a cross-sectional view of the second rotating shaft in this invention.

[0054] Figure 9 This is a cross-sectional view of the third through hole in this invention.

[0055] Figure 10 This is a cross-sectional view of the air sweeping plate assembly, the second rotating shaft, and the third through hole in this invention.

[0056] Figure 11 This is a structural schematic diagram of the air sweeping plate assembly in this invention.

[0057] Explanation of reference numerals in the attached figures:

[0058] 10. Panel assembly; 11. Opening; 12. Panel; 13. Side plate; 131. First through hole; 132. Fan-shaped annular through hole; 133. Third through hole; 14. Base plate; 141. Second pivot; 15. Top plate; 20. Sweeping plate assembly; 21. Sweeping blade; 211. Horizontal blade; 212. Vertical blade; 2121. First pivot; 2122. Protrusion; 2123. Second through hole; 2124. Third pivot; 22. First sub-sweeping plate assembly; 23. Second sub-sweeping plate assembly; 30. Drive unit; 31. Anti-electric shaft. Detailed Implementation

[0059] To make the objectives, technical solutions, and advantages of this invention clearer and more explicit, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.

[0060] Please also refer to Figures 1-11 This invention provides some embodiments of a wind-sweeping plate structure.

[0061] Each sweeping vane is connected by various linkages to form a unified whole. On the one hand, this results in a wide variety of materials, leading to a high cost for the assembled sweeping vane assembly. On the other hand, due to the numerous fits and dimensional constraints, the sweeping vane assembly is overly constrained internally. When the sweeping vanes rotate, they are pulled together by the accumulation of fit errors between the vanes and linkages, which can easily cause defects such as vibration, abnormal noise, and failure to properly reset the sweeping vane assembly.

[0062] like Figure 1 As shown, the air-sweeping plate structure of the present invention includes:

[0063] Panel 12 assembly 10, wherein the panel 12 assembly 10 is provided with an opening 11;

[0064] The air sweeping plate assembly 20 is rotatably connected to the panel 12 assembly 10;

[0065] A drive unit 30 is disposed on the panel 12 assembly 10 and connected to the air sweeping plate assembly 20 to drive the air sweeping plate assembly 20 to rotate;

[0066] The air sweeping plate assembly 20 includes:

[0067] A plurality of air-sweeping blades 21 are fixedly connected to form a plurality of ventilation openings, the ventilation openings facing the opening 11.

[0068] It is worth noting that, since the fixed connection of each sweeping vane 21 forms multiple ventilation openings, air can flow through the ventilation openings to the opening 11. Because the driving component 30 can drive the sweeping vane assembly 20 to rotate, sweeping is achieved. Furthermore, since the sweeping vanes 21 are fixedly connected, there will be no relative movement, thus avoiding mismatch problems caused by dimensional errors. This not only reduces costs but also prevents issues such as vibration, abnormal noise, and failure to properly reset.

[0069] In a preferred implementation of this invention, such as Figure 1 , Figure 10 as well as Figure 11 As shown, the air sweeping plate assembly 20 is integrally formed.

[0070] Specifically, since the air sweeping plate assembly 20 is manufactured using a one-piece molding method, each air sweeping blade 21 in the air sweeping plate assembly 20 can be directly installed after being integrally molded, without the need to assemble the individual air sweeping blades 21. Using a one-piece molding method can also further reduce costs.

[0071] In a preferred implementation of this invention, such as Figure 1 , Figure 10 as well as Figure 11 As shown, the sweeping blade 21 includes:

[0072] Several horizontal pieces 211;

[0073] Several vertical pieces 212 are connected to the horizontal piece 211;

[0074] The ventilation opening is formed by two adjacent horizontal pieces 211 and two adjacent vertical pieces 212 surrounding each other.

[0075] Specifically, the air-sweeping vanes 21 include two types: horizontal vanes 211 and vertical vanes 212. Horizontal vanes 211 refer to horizontally arranged air-sweeping vanes 211, and vertical vanes 212 refer to vertically arranged air-sweeping vanes 211. The horizontal vanes 211 and vertical vanes 212 are connected to form a grid shape. The vent is formed by two adjacent horizontal vanes 211 and two adjacent vertical vanes 212 surrounding each other. That is to say, the vent can be rectangular, with the two adjacent horizontal vanes 211 being the two long sides of the rectangle, and the two adjacent vertical vanes 212 being the two short sides of the rectangle.

[0076] In a preferred implementation of this invention, such as Figures 1-3 As shown, the panel 12 assembly 10 includes:

[0077] Panel 12 is provided with the opening 11;

[0078] Side plate 13 is disposed at the edge of the opening 11;

[0079] The side plate 13 is provided with a first through hole 131;

[0080] The outermost vertical piece 212 of the air sweeping plate assembly 20 is provided with a first rotating shaft 2121;

[0081] The first rotating shaft 2121 is located inside the first through hole 131 and rotates within the first through hole 131;

[0082] The drive component 30 is connected to the first rotating shaft 2121.

[0083] Specifically, the drive unit 30 is mounted on the side plate 13. The first rotating shaft 2121 passes through the first through hole 131 and is connected to the output shaft of the drive unit 30. The drive unit 30 drives the first rotating shaft 2121 to rotate, thereby driving the air sweeping blade 21 assembly to rotate, changing the orientation of the ventilation opening, and realizing air sweeping.

[0084] The outermost vertical piece 212 of the air sweeping plate assembly 20, that is, the end of the air sweeping plate assembly 20, the air sweeping plate assembly 20 and the driving member 30 are respectively located on both sides of the side plate 13, and the first rotating shaft 2121 provided at the end of the air sweeping plate assembly 20 passes through the first through hole 131.

[0085] In a preferred implementation of this invention, such as Figure 1 , Figure 4 , Figure 5 , Figure 8 , Figure 10 As shown, the panel 12 assembly 10 further includes:

[0086] A base plate 14 is disposed at the edge of the opening 11, and the side plate 13 is connected to the base plate 14;

[0087] A second rotating shaft 141 is provided on the base plate 14;

[0088] The vertical piece 212 is provided with a second through hole 2123;

[0089] The second rotating shaft 141 is located inside the second through hole 2123 and rotates within the second through hole 2123.

[0090] Specifically, since the sweeping plate assembly 20 is relatively long, a second rotating shaft 141 is provided on the base plate 14. The second rotating shaft 141 cooperates with the second through hole 2123 on the vertical plate 212, so that the sweeping plate assembly 20 can rotate stably, and the second rotating shaft 141 supports the sweeping plate assembly 20.

[0091] Specifically, the panel 12 assembly 10 also includes a top plate 15 and a bottom plate 14. There may be two side plates 13. The two side plates 13, the top plate 15, and the bottom plate 14 are connected to form a receiving cavity, and the air sweeping plate assembly 20 is located in the receiving cavity. The second through hole 2123 is provided on the vertical piece 212 at the middle position of the air sweeping plate assembly 20.

[0092] In a preferred implementation of this invention, such as Figures 1-3 As shown, a protrusion 2122 is provided on the first rotating shaft 2121;

[0093] The side plate 13 is provided with a fan-shaped through hole 132, which communicates with the first through hole 131;

[0094] The protrusion 2122 is located inside the annular through hole 132.

[0095] Specifically, in order to limit the rotation angle of the air sweeping plate assembly 20, a protrusion 2122 is provided on the first rotating shaft 2121, and a fan-shaped annular through hole 132 is provided on the side plate 13. The fan-shaped annular through hole 132 cooperates with the protrusion 2122, and the central angle opposite to the fan-shaped annular through hole 132 is the rotation angle of the air sweeping plate assembly 20.

[0096] In a preferred implementation of this invention, such as Figure 1 , Figure 10 , Figure 11 As shown, there are two drive units 30;

[0097] The air sweeping plate assembly 20 includes:

[0098] First sub-sweeping plate assembly 22;

[0099] Second sub-sweeping plate assembly 23;

[0100] The first sub-sweeping plate assembly 22 and the second sub-sweeping plate assembly 23 are both provided with the first rotating shaft 2121 on their outer sides, and the two first rotating shafts 2121 are connected to the two driving components 30 in a one-to-one correspondence.

[0101] Specifically, the air sweeping plate assembly 20 can be divided into several sub-air sweeping plate assemblies 20, for example, two sub-air sweeping plate assemblies 20, namely a first sub-air sweeping plate assembly 22 and a second sub-air sweeping plate assembly 23. The first sub-air sweeping plate assembly 22 and the second sub-air sweeping plate assembly 23 are connected. The outer sides of the first sub-air sweeping plate assembly 22 and the second sub-air sweeping plate assembly 23, that is, the two ends of the air sweeping plate assembly 20, include: one end of the first sub-air sweeping plate assembly 22 facing away from the second sub-air sweeping plate assembly 23, and the other end of the second sub-air sweeping plate assembly 23 facing away from the first sub-air sweeping plate assembly 22. Each end of the air sweeping plate assembly 20 is provided with a first rotating shaft 2121, and each corresponds to a driving member 30. That is, the first sub-air sweeping plate assembly 22 is driven to rotate by one driving member 30, and the second sub-air sweeping plate assembly 23 is driven to rotate by another driving member 30.

[0102] The first sub-sweeping plate assembly 22 and the second sub-sweeping plate assembly 23 may or may not be connected. When the first sub-sweeping plate assembly 22 and the second sub-sweeping plate assembly 23 are connected, they rotate synchronously. When the first sub-sweeping plate assembly 22 and the second sub-sweeping plate assembly 23 are not connected, they can rotate independently.

[0103] In a preferred implementation of this invention, such as Figure 6 , Figure 9 and Figure 10 As shown, a third rotating shaft 2124 is provided on the inner side of both the first sub-sweeping plate assembly 22 and the second sub-sweeping plate assembly 23;

[0104] The air sweeping plate assembly 20 includes:

[0105] At least one third sub-sweeping plate assembly, wherein a fourth rotating shaft is provided on both sides of the third sub-sweeping plate assembly;

[0106] The first sub-sweeping plate assembly 22, each of the third sub-sweeping plate assemblies, and the second sub-sweeping plate assembly 23 are arranged in sequence.

[0107] The fourth rotating shaft of the third sub-sweeping plate assembly is connected to the fourth rotating shaft of the adjacent third sub-sweeping plate assembly, or the fourth rotating shaft of the third sub-sweeping plate assembly is connected to the third rotating shaft 2124 of the adjacent first sub-sweeping plate assembly 22, or the fourth rotating shaft of the third sub-sweeping plate assembly is connected to the third rotating shaft 2124 of the adjacent second sub-sweeping plate assembly 23.

[0108] The base plate 14 is provided with at least two third through holes 133, and adjacent third rotating shafts 2124 and fourth rotating shafts are located in the third through holes 133 and rotate within the third through holes 133; or adjacent fourth rotating shafts are located in the third through holes 133 and rotate within the third through holes 133.

[0109] Specifically, the air sweeping plate assembly 20 can be divided into several sub-air sweeping plate assemblies 20, for example, three or more sub-air sweeping plate assemblies 20, namely a first sub-air sweeping plate assembly 22, a second sub-air sweeping plate assembly 23, and a third sub-air sweeping plate assembly. There can be at least one third sub-air sweeping plate assembly. The third sub-air sweeping plate assembly is located between the first sub-air sweeping plate assembly 22 and the second sub-air sweeping plate assembly 23. The third sub-air sweeping plate assembly is not directly connected to the drive unit 30, but is connected to the adjacent sub-air sweeping plate assembly 20. The first sub-air sweeping plate assembly 22, the second sub-air sweeping plate assembly 23, or the third sub-air sweeping plate assembly can be adjacent to the third sub-air sweeping plate assembly 22, the third sub-air sweeping plate assembly 23, and the fourth sub-air sweeping plate assembly. Even if the third sub-sweeping plate assembly is not directly connected to the drive component 30, it can be directly or indirectly driven to rotate by the first sub-sweeping plate assembly 22 and the second sub-sweeping plate assembly 23 to achieve sweeping.

[0110] Of course, if only the first sub-sweeping plate assembly 22 and the second sub-sweeping plate assembly 23 are provided, then the third rotating shaft 2124 of the first sub-sweeping plate assembly 22 and the third rotating shaft 2124 of the second sub-sweeping plate assembly 23 are both located within the third through hole 133 and rotate within the third through hole 133. This ensures stable rotation of the first sub-sweeping plate assembly 22 and the second sub-sweeping plate assembly 23. The third rotating shaft 2124 of the first sub-sweeping plate assembly 22 and the third rotating shaft 2124 of the second sub-sweeping plate assembly 23 can be connected or not connected. For example, both third rotating shafts 2124 are provided with pin holes, and the pins cannot rotate within the pin holes. In this case, the two connected third rotating shafts 2124 will rotate synchronously and will not rotate relative to each other.

[0111] It should be noted that each sub-sweeping plate assembly 20 (first sub-sweeping plate assembly 22, second sub-sweeping plate assembly 23, or third sub-sweeping plate assembly) includes several horizontal plates 211 and vertical plates 212, which are connected to form multiple ventilation openings. The number of sub-sweeping plate assemblies 20 can be set according to the length of the sweeping plate assembly 20, and it is advisable that the number of sub-sweeping plate assemblies 20 does not exceed 5, as an excessive number of sub-sweeping plate assemblies 20 will increase the assembly cost.

[0112] To ensure the stability of the connection between the third rotating shaft 2124 and the fourth rotating shaft, as well as the stability of the connection between two adjacent fourth rotating shafts, a third through hole 133 is provided on the base plate 14. The adjacent third rotating shaft 2124 and the fourth rotating shaft are located in the third through hole 133 and rotate within the third through hole 133; or the two adjacent fourth rotating shafts are located in the third through hole 133 and rotate within the third through hole 133.

[0113] The third rotating shaft 2124 and the fourth rotating shaft, as well as the two fourth rotating shafts connected to each other, can be connected by a pin. Specifically, the third rotating shaft 2124 and the fourth rotating shaft are provided with pin holes. The pin cannot rotate in the pin holes. Then the third rotating shaft 2124 and the fourth rotating shaft, as well as the two fourth rotating shafts connected to each other, will rotate synchronously and will not rotate relative to each other.

[0114] In a preferred implementation of this invention, such as Figures 1-2 As shown, the drive component 30 is connected to the first rotating shaft 2121 via an anti-electric shaft 31.

[0115] Specifically, to prevent excessive power from the drive component 30 from damaging the air sweeper assembly 20, the first rotating shaft 2121 is connected to the drive component 30 via an anti-electric shaft 31. The anti-electric shaft 31 is made of insulating material to prevent leakage current from being conducted to the air sweeper assembly 20.

[0116] The anti-electric shaft 31 includes:

[0117] The outer tube is provided with a tube hole, which allows the output shaft of the drive component 30 to be inserted;

[0118] The inner sleeve can be inserted into the shaft hole of the first rotating shaft 2121.

[0119] When the power of the drive component 30 suddenly increases to the point of exceeding the limit, relative sliding occurs between the inner sleeve and the outer sleeve, preventing the anti-electric shaft 31 from directly transmitting excessive power to the air sweeper assembly 20, preventing damage to the air sweeper assembly 20, and improving the service life of the air sweeper assembly 20 and the air conditioner.

[0120] Based on the air-sweeping plate structure described in any of the above embodiments, the present invention also provides a preferred embodiment of an air conditioner:

[0121] The air conditioner of this invention includes the air sweeping plate structure as described in any of the above embodiments.

[0122] It should be understood that the application of the present invention is not limited to the examples above. Those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.

Claims

1. A sweeping plate structure, characterized in that, include: A panel assembly having an opening; The air-sweeping plate assembly is rotatably connected to the panel assembly; A driving component is disposed on the panel assembly and connected to the air sweeping plate assembly to drive the air sweeping plate assembly to rotate; The air sweeping plate assembly includes: A plurality of air-sweeping vanes are fixedly connected to form a plurality of ventilation openings, the ventilation openings facing the opening; The air sweeping plate assembly is integrally formed; the air sweeping blade includes: Several horizontal pieces; Several vertical pieces are connected to several of the horizontal pieces; The ventilation opening is formed by two adjacent horizontal pieces and two adjacent vertical pieces surrounding each other. The panel assembly includes: The panel has the aforementioned opening; Side panels are provided at the edge of the opening; The side plate is provided with a first through hole; The outermost vertical plate of the air sweeping plate assembly is provided with a first rotating shaft; The first rotating shaft is located inside the first through hole and rotates within the first through hole; The driving component is connected to the first rotating shaft; The panel assembly also includes: A base plate is disposed at the edge of the opening, and the side plate is connected to the base plate; A second rotating shaft is provided on the base plate; The vertical plate is provided with a second through hole; The second rotating shaft is located within the second through hole and rotates within the second through hole; the second through hole is located on a vertical piece at the middle position of the sweeping plate assembly; the second rotating shaft supports the sweeping plate assembly; The first rotating shaft is provided with a protrusion; The side plate is provided with a fan-shaped through hole, which communicates with the first through hole; The protrusion is located inside the annular through hole. There are two drive components; The air sweeping plate assembly includes: First sub-sweeping plate assembly; Second sub-sweeping plate assembly; The first rotating shaft is provided on the outer side of both the first sub-sweeping plate assembly and the second sub-sweeping plate assembly, and the two first rotating shafts are connected to the two driving components one by one. Both the first sub-sweeping plate assembly and the second sub-sweeping plate assembly have a third rotating shaft on their inner sides; The air sweeping plate assembly includes: At least one third sub-sweeping plate assembly, wherein a fourth rotating shaft is provided on both sides of the third sub-sweeping plate assembly; The first sub-sweeping plate assembly, each of the third sub-sweeping plate assemblies, and the second sub-sweeping plate assembly are arranged in sequence. The fourth rotating shaft of the third sub-sweeping plate assembly is connected to the fourth rotating shaft of the adjacent third sub-sweeping plate assembly, or the fourth rotating shaft of the third sub-sweeping plate assembly is connected to the third rotating shaft of the adjacent first sub-sweeping plate assembly, or the fourth rotating shaft of the third sub-sweeping plate assembly is connected to the third rotating shaft of the adjacent second sub-sweeping plate assembly. The base plate is provided with at least two third through holes, and adjacent third and fourth rotating shafts are located in the third through holes and rotate within the third through holes; or adjacent fourth rotating shafts are located in the third through holes and rotate within the third through holes.

2. The air-sweeping plate structure according to claim 1, characterized in that, The drive component is connected to the first rotating shaft via an anti-electric shaft.

3. An air conditioner, characterized in that, Includes the air sweeping plate structure as described in any one of claims 1 to 2.

Citation Information

Patent Citations

  • Automatic wind sweeping mechanism of air conditioner and air conditioner

    CN111795431A

  • Air sweeping plate structure and air conditioner

    CN217503951U