An adjustable airflow claw-shaped air outlet for air conditioning

By introducing a rotating support plate and a movable support disc into the claw-shaped air outlet, the design achieves convenient installation and removal of the claw-shaped roller and efficient cleaning of the air outlet channel, solving the problems of inconvenient installation and low cleaning efficiency in the existing technology.

CN120819902BActive Publication Date: 2025-12-02JIANGSU DINGYE HVAC EQUIP CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202511341603.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-19
Publication Date
2025-12-02
Estimated Expiration
2045-09-19

AI Technical Summary

Technical Problem

The existing claw-shaped rollers for claw-shaped air outlets are inconvenient to install and remove, and the cleaning efficiency of the air outlet channel is low.

Method used

A structure including an air outlet frame, a claw-shaped roller, a rotating support assembly, a plug-in installation assembly, and a cleaning drive assembly is designed. Through the cooperation of a rotating support plate and a moving support plate, the claw-shaped roller can be easily installed and removed, and the air outlet channel can be automatically cleaned.

Benefits of technology

The installation and removal of the claw-type roller is simple and quick, greatly reducing the workload of cleaning the air outlet duct and significantly improving cleaning efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120819902B_ABST
    Figure CN120819902B_ABST
Patent Text Reader

Abstract

This invention relates to the field of air conditioning technology, specifically to an adjustable airflow claw-shaped air outlet for air conditioning, comprising: an air outlet frame, with first inner support strips symmetrically fixed at both ends of the air outlet frame, and second inner support strips also fixedly fixed on the air outlet frame; a claw-shaped roller, the claw-shaped roller being mounted on the air outlet frame, and having an air outlet channel on the claw-shaped roller; a rotating support assembly, with rotating support assemblies provided on both the first and second inner support strips for installing the claw-shaped roller; and a rotating bearing plate movably mounted on the air outlet frame, through which the claw-shaped roller is installed, enabling convenient and quick installation and removal of the claw-shaped roller. During installation, the claw-shaped roller is positioned on the rotating bearing plate, and then the movable bearing plate is pushed to move the movable bearing plate, thus smoothly completing the installation of the claw-shaped roller. The operation is simple, convenient, and quick.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of air conditioning technology, specifically to an adjustable air conditioning claw-shaped air outlet. Background Technology

[0002] Claw-shaped air outlets are a popular type of air conditioning vent, widely used in daily life. They adjust the airflow direction by rotating a claw-shaped roller, which in turn rotates the air outlet channel on the roller. However, in current claw-shaped air outlets, the claw roller is mounted on the air outlet frame, making installation and removal inconvenient. This hinders easy installation and removal of the claw roller and makes it difficult to inspect or maintain it during use. Furthermore, claw-shaped air outlets typically feature a minimalist design with a narrow air outlet channel, making cleaning difficult. Cleaning the air outlet channel on the claw roller often requires disassembly, which reduces the efficiency of cleaning the air outlet channel. Summary of the Invention

[0003] The purpose of this invention is to provide an adjustable airflow direction air conditioning claw-shaped air outlet to solve the problems mentioned in the background art, such as the inconvenience of installing and disassembling the claw-shaped roller and the inconvenience of cleaning the air outlet channel on the claw-shaped roller.

[0004] To achieve the above objectives, the present invention provides the following technical solution:

[0005] An adjustable air conditioning claw-shaped air outlet includes: an air outlet frame, wherein a first inner support strip is symmetrically fixed at both ends of the air outlet frame, and a second inner support strip is also fixedly fixed on the air outlet frame;

[0006] A claw-shaped roller is mounted on an air outlet frame and has an air outlet channel.

[0007] A rotating support assembly is provided on both the first inner support bar and the second inner support bar for mounting the claw-shaped roller;

[0008] A plug-in mounting assembly is installed inside the claw-shaped roller and cooperates with the rotary support assembly to complete the installation of the claw-shaped roller;

[0009] The cleaning drive assembly is also installed inside the claw-shaped roller, driving the plug-in mounting assembly to move, and at the same time cleaning the inside of the air outlet duct.

[0010] Preferably, the rotating support assembly is a rotating bearing plate, and a rotating bearing sleeve is fixedly installed on the rotating bearing plate to support the claw-shaped roller.

[0011] Anti-rotation positioning components are installed on the rotating bearing plate.

[0012] Preferably, the anti-rotation positioning component includes: a frame-shaped plate frame, which is used to position the rotating bearing plate;

[0013] An elastic connecting strip is used for the reset and movement of the frame-type plate frame.

[0014] Preferably, the plug-in installation assembly includes: a movable support plate, on which a mounting column is fixedly disposed, and the installation of the claw roller is achieved by the cooperation of the mounting column and the rotating support plate;

[0015] A drive block is movably connected to a movable support plate, and the movable support plate drives the drive block to move.

[0016] Preferably, a first spring is sleeved on the mounting column, and the moving support plate is moved to reset by the first spring.

[0017] Preferably, when the drive block moves, it drives the frame plate to move, thereby unlocking the rotating support plate.

[0018] Preferably, the cleaning drive component includes: a movable support plate, which is inserted into the air outlet duct;

[0019] A silicone wiping ring, which is fitted onto a movable carrier plate;

[0020] The mobile carrier plate is also equipped with a self-locking assembly.

[0021] Preferably, the movable support plate moves synchronously with the silicone wiping ring as it moves, and the silicone wiping ring cleans the inner wall of the air outlet channel.

[0022] Preferably, the self-locking component includes: a mating lock bar, which is movably mounted on the movable support plate;

[0023] The locking plate is also movably mounted on the movable support plate, and the locking plate is movably connected to the cooperating locking bar.

[0024] Preferably, the locking bar cooperates with the claw-shaped roller to perform the first layer of fixation on the movable bearing plate.

[0025] Preferably, the locking plate cooperates with the claw-shaped roller to provide a second layer of fixation for the movable bearing plate.

[0026] Compared with the prior art, the beneficial effects of the present invention are: the present invention has a reasonable structural design and strong functionality, and has the following advantages:

[0027] 1. A rotating support plate is movably installed on the air outlet frame. The claw roller is installed by rotating the support plate, which allows for convenient and quick installation and removal of the claw roller. When installing the claw roller, position it on the rotating support plate, and then push the movable support plate to move the movable support plate to complete the installation of the claw roller smoothly. The operation is simple, convenient and quick.

[0028] 2. During the installation of the claw roller, as the movable support plate moves, the mounting pins on the movable support plate will be inserted into the mounting holes, completing the connection between the claw roller and the rotating support plate and fixing the claw roller to the rotating support plate. At the same time, as the movable support plate moves, it will drive the drive block to move, which in turn will drive the frame plate to move, thereby putting the rotating support plate in an unlocked state, facilitating the rotation of the claw roller later. When the claw roller is not installed, the rotating support plate is in a fixed state under the action of the frame plate, facilitating the positioning and installation of the claw roller.

[0029] 3. In addition, the movable support plate can automatically lock during movement to ensure the firmness and stability of the claw roller installation. When the claw roller needs to be disassembled, pushing the support plate to move it will disengage the locking strip from the locking track, thus unlocking the movable support plate. Pulling the movable support plate in the reverse direction will unlock the claw roller. At the same time, during the reverse movement of the movable support plate, the silicone wiping ring can clean the inner wall of the air outlet channel, greatly reducing the workload of the staff in cleaning the air outlet channel and making the cleaning of the air outlet channel more convenient and faster. Attached Figure Description

[0030] Figure 1 A first-person view diagram of the air outlet frame assembly.

[0031] Figure 2 A second-view diagram of the air outlet frame assembly.

[0032] Figure 3 This is a schematic diagram of the assembly of the rotating bearing plate and the claw-shaped roller.

[0033] Figure 4 This is a schematic diagram of the claw-shaped roller assembly.

[0034] Figure 5 This is a schematic diagram of the installation of the mobile support plate.

[0035] Figure 6 This is a schematic diagram of the claw-shaped roller.

[0036] Figure 7 This is a schematic diagram of the air outlet frame.

[0037] Figure 8This is a schematic diagram of the structure of the first inner bearing strip and the second inner bearing strip.

[0038] Figure 9 A first-person view of the assembly of the rotating bearing plate.

[0039] Figure 10 A second-view schematic diagram of the assembly of the rotating bearing plate.

[0040] Figure 11 This is a schematic diagram showing the coordination of the rotating support plate, the movable support plate, and the movable support disc.

[0041] Figure 12 A first-person exploded view of the assembly of the movable carrier plate and the silicone wiping ring.

[0042] Figure 13 A second-view exploded view of the assembly of the movable carrier plate and the silicone wiping ring.

[0043] In the diagram: 1. Exhaust frame; 11. First inner support strip; 12. Second inner support strip; 13. Rotary assembly hole; 14. Locking insertion hole; 2. Rotary bearing plate; 21. Mounting mating hole; 22. Support through hole; 23. Rotary column; 24. Bearing; 25. Rotary bearing sleeve; 26. Mating cavity; 27. Frame-type plate frame; 271. Mating protrusion; 28. Locking insertion rod; 29. ​​Elastic connecting strip; 3. Claw-type roller; 31. Exhaust channel; 32. Support strip; 33. Mating locking channel; 34. Insertion locking channel; 35. Rotary bearing block; 36. Mounting inner cavity; 37. Support insertion hole; 38. Threaded through hole; 39. Limiting channel; 391. Insertion 4. Connecting strip; 41. Movable support plate; 42. Top block; 43. Connecting channel; 44. Screw; 45. Mounting column; 46. First spring; 47. Connecting strip; 48. First connecting rod; 49. Drive block; 50. Drive inclined surface; 51. Movable bearing plate; 52. Mounting ring groove; 53. Silicone wiping ring; 54. Inner convex ring; 55. Support block; 56. Insertion cavity; 57. Connecting through hole; 58. Mounting insertion hole; 61. Connecting lock strip; 62. Supporting plate; 63. Second connecting rod; 64. Locking plate; 65. Mounting rod; 66. Connecting frame; 67. Inserting lock strip; 68. Connecting column; 69. Second spring. Detailed Implementation

[0044] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0045] This invention provides a technical solution:

[0046] like Figure 1 and Figure 2 As shown, an adjustable airflow direction air conditioning claw-shaped air outlet includes: an air outlet frame 1, a claw-shaped roller 3, a rotating support assembly, a plug-in mounting assembly, and a cleaning drive assembly. The air outlet frame 1 has symmetrically integrally formed first inner support strips 11 at both ends, and second inner support strips 12 integrally formed on the air outlet frame 1. All second inner support strips 12 are located between two first inner support strips 11. An air outlet channel 31 is formed on the claw-shaped roller 3. Rotating support assemblies are provided on both the first inner support strips 11 and the second inner support strips 12 for mounting the claw-shaped roller 3. One end of the claw-shaped roller 3 mounted at both ends is supported on the rotating support assembly on the first inner support strip 11, and the other end is supported on the second inner support strip. On the rotating support assembly on 12, the two ends of the claw-shaped roller 3 in the middle are respectively supported on the rotating support assembly on the second inner support strip 12, and the claw-shaped roller 3 can drive the rotating support assembly to rotate together. The plug-in installation assembly is installed inside the claw-shaped roller 3 and cooperates with the rotating support assembly to complete the installation of the claw-shaped roller 3, so that the rotating support assembly and the claw-shaped roller 3 are fixed together. The cleaning drive assembly is also installed inside the claw-shaped roller 3, driving the plug-in installation assembly to move, and at the same time, it can clean the inside of the air outlet duct 31. By cleaning the inner wall of the air outlet duct 31 through the cleaning drive assembly, the cleaning intensity of the workers cleaning the air outlet duct 31 can be greatly reduced.

[0047] like Figure 2 , Figure 7 , Figure 8 , Figure 9 and Figure 10 As shown, the rotating support assembly is a rotating bearing plate 2. To facilitate the installation of the rotating bearing plate 2, rotating assembly holes 13 are provided on both the first inner bearing strip 11 and the second inner bearing strip 12. Rotating assembly holes 13 are also provided on the end faces of both ends of the second inner bearing strip 12. A rotating column 23 is integrally formed on the rotating bearing plate 2. A bearing 24 is sleeved on the rotating column 23. The bearing 24 is inserted into the rotating assembly hole 13, thereby movably installing the rotating bearing plate 2 at the rotating assembly hole 13.

[0048] like Figure 3 and Figure 9As shown, a rotating bearing sleeve 25 is integrally formed on the rotating bearing plate 2, which supports the claw roller 3. Specifically, rotating bearing blocks 35 are integrally formed at both ends of the claw roller 3. The rotating bearing blocks 35 are tightly fitted with the rotating bearing sleeve 25. In order to make the rotating bearing plate 2 rotate synchronously when the claw roller 3 rotates, and to avoid friction between the rotating bearing blocks 35 and the rotating bearing sleeve 25, symmetrical mating cavities 26 are formed on the rotating bearing sleeve 25. symmetrically integrally formed insertion mating strips 391 are formed on the rotating bearing blocks 35. When the rotating bearing blocks 35 and the rotating bearing sleeve 25 are mated, the insertion mating strips 391 are inserted into the mating cavities 26.

[0049] An anti-rotation positioning component is installed on the rotating bearing plate 2. The anti-rotation positioning component keeps the rotating bearing plate 2 in a stable state, which facilitates the installation of the claw roller 3.

[0050] like Figure 9 and Figure 10 As shown, the anti-rotation positioning component includes a frame-type plate 27 and an elastic connecting strip 29. The frame-type plate 27 is used to position the rotating bearing plate 2. Specifically, a mating protrusion 271 is integrally formed at one end of the frame-type plate 27, and a locking insertion rod 28 is integrally formed at the other end. Supporting through holes 22 are symmetrically opened on both sides of the rotating bearing plate 2. The locking insertion rod 28 is inserted into the supporting through holes 22. The frame-type plate 27 is supported by the cooperation between the locking insertion rod 28 and the supporting through holes 22. In order to achieve locking, locking insertion holes 14 are symmetrically opened on both sides of the rotating assembly hole 13. During actual positioning, the locking insertion rod 28 is partially inserted into the locking insertion hole 14, so that the rotating bearing plate 2 cannot rotate.

[0051] The elastic connecting strip 29 is used for the reset movement of the frame plate 27. That is, one end of the elastic connecting strip 29 is welded to the frame plate 27, and the other end is welded and fixed to the rotating bearing plate 2. In this way, the elastic connecting strip 29 can drive the frame plate 27 to move when it recovers its deformation.

[0052] like Figure 9 and Figure 11 As shown, the plug-in mounting assembly includes a movable support plate 4 and a drive block 48. The movable support plate 4 is integrally formed with a mounting column 44, and a mounting mating hole 21 is opened on the rotating support plate 2. The claw roller 3 is installed by the mating of the mounting column 44 with the mounting mating hole 21 on the rotating support plate 2. That is, the mounting column 44 is partially inserted into the mounting mating hole 21, and the plug-in mating strip 391 is inserted into the mating cavity 26. In this way, the rotating support plate 2 and the claw roller 3 can be fixed together.

[0053] The movable support plate 4 has symmetrically integrally formed connecting strips 46 on both sides. A first connecting rod 47 is hinged to the connecting strip 46, and the other end of the first connecting rod 47 is hinged to the driving block 48, thus achieving a movable connection between the driving block 48 and the movable support plate 4. This allows the movable support plate 4 to drive the driving block 48 to move. Additionally, as... Figure 4 and Figure 6 As shown, in order to facilitate the smooth installation of the movable bearing plate 4, an installation cavity 36 is provided inside the rotating bearing block 35. A support insertion hole 37 is provided at the bottom of the installation cavity 36, and an installation connecting column 44 is inserted into the support insertion hole 37. The installation connecting column 44 is supported by the support insertion hole 37, thereby supporting the movable bearing plate 4. At the same time, a threaded through hole 38 is also provided around the support insertion hole 37. In order to further support the movable bearing plate 4, a mating channel 42 is provided on the movable bearing plate 4. A screw 43 is inserted into the mating channel 42 and threaded into the threaded through hole 38. In this way, the movable bearing plate 4 can be further supported by the screw 43. In addition, a limit channel 39 is symmetrically provided on the rotating bearing block 35. The limit channel 39 communicates with the installation cavity 36. The drive block 48 is partially inserted into the limit channel 39 and is limited by the limit channel 39. In this way, when the movable bearing plate 4 is driven to move, it can only move along the limit channel 39.

[0054] A first spring 45 is sleeved on the mounting column 44. The two ends of the first spring 45 contact the inner wall of the mounting cavity 36 and the movable support plate 4, respectively. When the mounting column 44 is inserted into the mounting mating hole 21, the first spring 45 is in a compressed state. When the first spring 45 recovers its deformation, it can drive the movable support plate 4 to reset and move.

[0055] When the drive block 48 moves, it drives the frame plate 27 to move. The drive block 48 has an integrally formed drive slope 49 with a smooth and burr-free surface. Through the cooperation between the drive slope 49 and the mating protrusion 271 on the frame plate 27, the frame plate 27 can be moved. This will cause the locking plug rod 28 on the frame plate 27 to exit the locking socket 14, thereby unlocking the rotating bearing plate 2. At this time, the elastic connecting strip 29 is in a stretched state. When the elastic connecting strip 29 returns to its original shape, it can drive the frame plate 27 to reset.

[0056] like Figure 4 , Figure 5 , Figure 12 and Figure 13 As shown, the cleaning drive assembly includes a movable carrier plate 5 and a silicone wiping ring 52. The movable carrier plate 5 is inserted into the air outlet channel 31, meaning that when the movable carrier plate 5 is inserted, it moves according to... Figure 5Enter the air outlet channel 31 in the state shown, and then rotate it 90 degrees to successfully complete the insertion of the movable support plate 5, allowing it to smoothly enter the air outlet channel 31.

[0057] The silicone wiping ring 52 is fitted onto the movable carrier plate 5. To ensure that the silicone wiping ring 52 is stably installed on the movable carrier plate 5, an installation ring groove 51 is provided on the movable carrier plate 5. An inner protruding ring 53 is integrally formed inside the silicone wiping ring 52. The silicone wiping ring 52 is stably fitted onto the movable carrier plate 5 through the cooperation of the installation ring groove 51 and the inner protruding ring 53, ensuring that the movable carrier plate 5 can smoothly drive the silicone wiping ring 52 to move synchronously when it moves.

[0058] In addition, when the movable bearing plate 5 moves toward the end of the claw roller 3, it can drive the movable bearing plate 4 to move. In order to prevent the movable bearing plate 5 from being interfered with by the screw 43 when it drives the movable bearing plate 4, a top block 41 is integrally formed on the movable bearing plate 4. The movable bearing plate 5 contacts the top block 41 when it drives the movable bearing plate 4 to move.

[0059] When the movable carrier plate 5 moves, it drives the silicone wiping ring 52 to move synchronously. After the movable carrier plate 5 is inserted into the air outlet channel 31 and rotated 90 degrees, the silicone wiping ring 52 is tightly fitted with the inner wall of the air outlet channel 31. In this way, the movable carrier plate 5 can clean the inner wall of the air outlet channel 31 through the silicone wiping ring 52 when it moves. In addition, when the movable carrier plate 5 rotates inside the air outlet channel 31, the silicone wiping ring 52 has a certain elasticity, so the movable carrier plate 5 can rotate smoothly.

[0060] The movable carrier plate 5 is also equipped with a self-locking assembly, which includes a locking strip 6 and a locking plate 63. The locking strip 6 is movably installed on the movable carrier plate 5. Specifically, a support block 54 is integrally formed on the movable carrier plate 5, and the locking strip 6 is installed on the support block 54. That is, an insertion cavity 541 is opened on the support block 54, and the lower part of the locking strip 6 is inserted into the insertion cavity 541. The locking strip 6 contacts the inner wall of the insertion cavity 541, and the inner wall of the insertion cavity 541 is smooth and burr-free. The surface of the locking strip 6 is also smooth and burr-free, so that the movement of the locking strip 6 is not hindered.

[0061] The locking plate 63 is also movably mounted on the movable support plate 5. There are two locking plates 63 on each movable support plate 5, symmetrically arranged on both sides of the support block 54. In order to provide good support for the locking plate 63, mounting holes 543 are symmetrically opened on both sides of the support block 54. An mounting rod 64 is integrally formed on the lower side of the locking plate 63. The mounting rod 64 is inserted into the mounting hole 543. The locking plate 63 is supported by the cooperation between the mounting rod 64 and the mounting hole 543. A support plate 61 is integrally formed on the upper end of the locking bar 6. A second connecting rod 62 is symmetrically hinged to both ends of the support plate 61. The lower end of the second connecting rod 62 is connected to the locking plate 63. That is, a connecting frame 65 is welded and fixed on the locking plate 63 to connect the second connecting rod 62. The lower end of rod 62 is hinged to the connecting bracket 65 on the locking support plate 63, thereby realizing the movable connection between the locking support plate 63 and the mating lock bar 6. In addition, a connecting support column 67 is welded and fixed to the lower end of the support plate 61. A second spring 68 is sleeved on the connecting support column 67. The second spring 68 is used to reset the mating lock bar 6. In order to ensure the smooth movement of the connecting support column 67, a connecting through hole 542 is also provided on the support block 54. The connecting support column 67 is inserted into the connecting through hole 542, so that the connecting support column 67 can move smoothly along the connecting through hole 542. The upper end of the second spring 68 is welded and fixed to the support plate 61, and its lower end is welded and fixed to the support block 54. When the second spring 68 is compressed and returns to its original deformation, it can drive the mating lock bar 6 to reset and move.

[0062] The locking strip 6 cooperates with the claw roller 3 to perform the first layer of fixation on the movable bearing plate 5. Specifically, symmetrical and integrally formed receiving strips 32 are provided at both ends of the air outlet 31. The receiving strips 32 are provided with locking channels 33. The interior of the locking channels 33 is smooth and burr-free. When the locking strip 6 performs the first layer of fixation on the movable bearing plate 5, the locking strip 6 is inserted into the locking channel 33.

[0063] The locking plate 63 cooperates with the claw roller 3 to fix the movable bearing plate 5 in a second layer. Specifically, the two ends of the air outlet duct 31 are symmetrically provided with insertion locking channels 34. The inner wall of the insertion locking channel 34 is smooth and burr-free. An insertion locking strip 66 is integrally formed on the upper end of the locking plate 63. When the locking plate 63 fixes the movable bearing plate 5 in a second layer, the insertion locking strip 66 on the locking plate 63 is inserted into the insertion locking channel 34.

[0064] Two movable bearing plates 5 are inserted into the air outlet channel 31 on a claw-shaped roller 3, corresponding to the movable bearing plates 4 at both ends of the claw-shaped roller 3. During the installation of the claw-shaped roller 3, the locking insertion rod 28 is inserted into the locking insertion hole 14 to position the rotating bearing plate 2, so that the upper end of the rotating bearing sleeve 25 is vertically upward. Then, the insertion mating strip 391 on the rotating bearing block 35 is aligned with the mating cavity 26 on the rotating bearing sleeve 25, and the rotating bearing block 35 is inserted into the rotating bearing sleeve 25. At the same time, the insertion mating strip 391 is simultaneously inserted into the mating cavity 26. After being inserted into the claw-shaped roller 3, the movable bearing plate 5 is pushed to move, so that it contacts the top block 41. In this way, the movable bearing plate 5 can push the movable bearing plate 4 to move. As the movable support plate 4 moves, it drives the mounting connecting column 44 to insert into the mounting mating hole 21, simultaneously compressing the first spring 45. Thus, with the cooperation of the mounting connecting column 44 and the insertion mating strip 391, the rotating support plate 2 and the claw roller 3 can be fixedly connected. When the movable support plate 4 moves, the first connecting rod 47 drives the driving block 48 to move, causing the driving inclined surface 49 to contact the mating protrusion 271 on the frame plate 27. Under the action of the driving inclined surface 49, the mating protrusion 271 is pushed away from the rotating support plate 2, thereby moving the locking insertion rod 28 out of the locking insertion hole 14, and thus unlocking the rotating support plate 2, facilitating subsequent claw roller... The roller 3 and the rotating support plate 2 rotate synchronously. During the installation of the silicone wiping ring 52, it is deformed and fitted onto the movable support plate 5. During the installation of the movable support plate 5, the support plate 61 is pushed downwards, causing it to move. This, in turn, allows the two locking plates 63 to move towards the support block 54 under the action of the second connecting rod 62. When the movable support plate 5 is inserted into the air outlet channel 31 and rotates 90 degrees, the support plate 61 is released. At this point, the inner wall of the air outlet channel 31 contacts the locking strip 66 on the locking plate 63, preventing the support plate 61 from fully resetting under the action of the second spring 68. When the movable support plate 5 pushes the movable support plate 4 to move, it reaches the working position... At this point, the insertion locking bar 66 on the locking plate 63 is aligned with the insertion locking channel 34, and the mating locking bar 6 is aligned with the mating locking channel 33. Because the insertion locking bar 66 and the insertion locking channel 34 are aligned, the insertion locking bar 66 is unrestricted, and consequently, the mating locking bar 6 is unrestricted. Under the action of the second spring 68, the support plate 61 can be moved upwards to reset, which in turn moves the mating locking bar 6 upwards to reset. This allows the mating locking bar 6 to insert into the mating locking channel 33, achieving the first layer of fixation for the movable support plate 5. Simultaneously, as the mating locking bar 6 moves upwards, under the action of the second connecting rod 62, the two locking plates 63 will move in opposite directions, allowing the insertion locking bar 66 to insert into the insertion locking channel 34.This achieves a second layer of fixation for the movable support plate 5, ensuring the firmness and stability of the claw roller 3 installation. When disassembly and cleaning of the claw roller 3 are required, the support plate 61 is pushed downwards to disengage the locking strip 6 from the locking channel 33, placing the movable support plate 5 on the unlocking turntable. Then, the movable support plate 5 is moved in the reverse direction. During this movement, the inner wall of the air outlet channel 31 can be cleaned under the action of the silicone wiping ring 52, facilitating cleaning and improving work efficiency. This is very convenient and also makes the installation and disassembly of the claw roller 3 very easy, facilitating maintenance and repair.

[0065] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An adjustable air conditioning claw-shaped air outlet, characterized in that: include: An air outlet frame, wherein a first inner support strip is symmetrically fixed at both ends of the air outlet frame, and a second inner support strip is also fixedly fixed on the air outlet frame; A claw-shaped roller is mounted on an air outlet frame and has an air outlet channel. The claw-shaped roller has an air outlet channel, and rotating bearing blocks are fixedly installed at both ends of the claw-shaped roller. Insertion mating strips are symmetrically fixedly installed on the rotating bearing blocks. A rotating support assembly is provided on both the first inner support bar and the second inner support bar for mounting the claw-shaped roller; The rotating support assembly is a rotating bearing plate, on which a rotating bearing sleeve is fixedly installed, and symmetrically opened mating cavities are provided on the rotating bearing sleeve. A plug-in mounting assembly is installed inside the claw-shaped roller and cooperates with the rotary support assembly to complete the installation of the claw-shaped roller; The plug-in mounting assembly includes a movable support plate and a drive block. A mounting column is fixedly installed on the movable support plate, and a mounting mating hole is opened on the rotating support plate. The claw-shaped roller is installed by the mating of the mounting column and the mounting mating hole. The mounting column is inserted into the mounting mating hole, and the plug-in mating strip is inserted into the mating cavity, so that the rotating support plate and the claw-shaped roller are fixed. The cleaning drive assembly is also installed inside the claw-shaped roller, driving the plug-in mounting assembly to move, and at the same time cleaning the inside of the air outlet duct; The cleaning drive assembly includes a movable carrier plate and a silicone wiping ring. When inserting the movable carrier plate, after it enters the air outlet channel, it is rotated 90 degrees so that the movable carrier plate is inserted into the air outlet channel.

2. The adjustable airflow direction air outlet claw-shaped air conditioner according to claim 1, characterized in that: A rotating bearing sleeve is fixedly installed on the rotating bearing plate to support the claw-shaped roller. An anti-rotation positioning component is installed on the rotating bearing plate.

3. The adjustable airflow direction air outlet claw-shaped air conditioner according to claim 2, characterized in that: The anti-rotation positioning component includes: a frame-shaped plate frame, which is used to position the rotating bearing plate; An elastic connecting strip is used for the reset and movement of the frame-type plate frame.

4. The adjustable airflow direction air outlet claw-shaped air conditioner according to claim 3, characterized in that: The drive block is movably connected to the movable support plate, and the movable support plate drives the drive block to move.

5. The adjustable airflow direction air outlet claw-shaped air conditioner according to claim 4, characterized in that: A first spring is sleeved on the mounting column, and the moving bearing plate is moved and reset by the first spring.

6. The adjustable airflow direction air outlet claw-shaped air conditioner according to claim 5, characterized in that: When the drive block moves, it drives the frame plate to move, thereby unlocking the rotating support plate.

7. An adjustable air conditioning claw-shaped air outlet according to claim 6, characterized in that: The silicone wiping ring is fitted onto the movable carrier plate, which is also equipped with a self-locking assembly.

8. An adjustable air conditioning claw-shaped air outlet according to claim 7, characterized in that: The movable support plate moves synchronously with the silicone wiping ring, which cleans the inner wall of the air outlet channel.

9. An adjustable air conditioning claw-shaped air outlet according to claim 8, characterized in that: The self-locking component includes: a mating lock bar, which is movably mounted on a movable support plate; The locking plate is also movably mounted on the movable support plate, and the locking plate is movably connected to the cooperating locking bar.

10. An adjustable air conditioning claw-shaped air outlet according to claim 9, characterized in that: The locking bar engages with the claw-shaped roller to provide the first layer of fixation for the movable bearing plate.

11. An adjustable air conditioning claw-shaped air outlet according to claim 10, characterized in that: The locking plate cooperates with the claw-shaped roller to provide a second layer of fixation for the moving bearing plate.

Citation Information

Patent Citations

  • Claw type central air conditioning wind gap with adjustable amount of wind

    CN207279912U

  • Large-air-volume strip-shaped jet flow tuyere

    CN213713477U