Air conditioner claw-shaped air outlet capable of adjusting air direction

Through the design of the rotating support assembly and the cleaning drive assembly, the problems of convenient installation and disassembly of the claw-type drum in the claw-type air outlet and efficient cleaning of the air outlet channel are solved, thereby improving the operating convenience and cleaning efficiency.

CN120819902AActive Publication Date: 2025-10-21JIANGSU DINGYE HVAC EQUIP CO LTD
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Patent Information

Application Number
CN202511341603.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-19
Publication Date
2025-10-21
Estimated Expiration
2045-09-19

AI Technical Summary

Technical Problem

The claw-shaped roller of the existing claw-shaped air outlet is inconvenient to install and disassemble, resulting in difficulty in maintenance and cleaning, and low cleaning efficiency of the air outlet channel.

Method used

The rotary support structure is adopted, and the rotary bracket design includes a rotary bracket installation component and a cleaning drive device, so as to realize the installation of the claw-type drum. The rotary bracket installation component and the cleaning drive device are used to realize the convenient installation and disassembly of the claw-type drum and the cleaning of the air outlet channel.

Benefits of technology

The convenient installation and removal of the claw-type drum and the efficient cleaning of the air outlet channel are realized, which reduces the workload of maintenance and cleaning and improves the convenience and efficiency of operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of air conditioners, in particular to an air-direction-adjustable air conditioner claw-shaped air outlet which comprises an air outlet frame, first inner bearing strips are symmetrically and fixedly arranged at the two ends of the air outlet frame, and second inner bearing strips are further fixedly arranged on the air outlet frame; the claw type roller is mounted on the air outlet frame, and an air outlet channel is formed in the claw type roller; the rotary supporting assemblies are arranged on the first inner bearing strip and the second inner bearing strip and are used for mounting the claw type roller; the rotary bearing plate is movably mounted on the air outlet frame, the claw-type roller is mounted through the rotary bearing plate, so that the claw-type roller can be conveniently and quickly mounted and dismounted, and when the claw-type roller is mounted, the claw-type roller is positioned on the rotary bearing plate; and then the movable bearing disc is pushed to drive the movable bearing plate to move, so that the claw-type roller can be smoothly mounted, and the operation is simple, convenient and rapid.
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Description

Technical Field

[0001] The present invention relates to the technical field of air conditioning, and in particular to a claw-shaped air outlet of an air conditioner with adjustable wind direction. Background Art

[0002] The claw-type air outlet is a relatively popular air supply outlet for air conditioners, and is widely used in real life. The claw-type roller rotates to rotate the air outlet channel on the claw-type roller, thereby adjusting the wind direction. The claw-type roller on the claw-type air outlet under the existing technology is installed on the air outlet frame, which is inconvenient to install and remove the claw-type roller, and the claw-type roller cannot be installed and removed conveniently. It is inconvenient to install, remove, inspect or maintain the claw-type roller during use. Furthermore, the claw-type air outlet usually adopts a minimalist design, and the air outlet channel is narrow, which is inconvenient to clean. When cleaning the air outlet channel on the claw-type roller, it is often necessary to disassemble it for cleaning. The inability to install and remove the claw-type roller conveniently also makes the cleaning efficiency of the air outlet channel relatively low. Summary of the Invention

[0003] The purpose of the present invention is to provide an air conditioner claw-shaped air outlet with adjustable wind direction to solve the problem in the above background technology that the claw-shaped drum is inconvenient to install and disassemble, and the air outlet channel on the claw-shaped drum is inconvenient to clean.

[0004] To achieve the above object, the present invention provides the following technical solutions: A claw-shaped air outlet for an air conditioner with adjustable wind direction comprises: an air outlet frame, wherein first inner supporting bars are symmetrically fixedly provided at both ends of the air outlet frame, and a second inner supporting bar is also fixedly provided on the air outlet frame; A claw-shaped drum, wherein the claw-shaped drum is mounted on an air outlet frame and an air outlet channel is provided on the claw-shaped drum; A rotation support assembly is provided on each of the first inner support bar and the second inner support bar, for mounting the claw-type roller; A plug-in installation component is installed inside the claw-type drum and cooperates with the rotating support component to complete the installation of the claw-type drum; A cleaning drive assembly is also installed inside the claw-shaped drum, driving the plug-in installation assembly to move and at the same time being able to clean the inside of the air outlet channel.

[0005] Preferably, the rotary support assembly is a rotary bearing plate, on which a rotary sleeve is fixedly provided, and the claw-type roller is supported by the rotary sleeve; An anti-rotation positioning component is installed on the rotating bearing plate.

[0006] Preferably, the anti-rotation positioning assembly comprises: a frame-type plate frame, the frame-type plate frame is used to position the rotating bearing plate; An elastic connecting strip is used for resetting movement of the frame type plate rack.

[0007] Preferably, the plug-in installation assembly includes: a movable carrier plate, on which a mounting connecting column is fixedly provided, and the claw-type roller is installed by cooperating with the mounting connecting column and the rotating carrier plate; The driving block is movably connected to the movable carrier plate, and the driving block is driven to move by the movable carrier plate.

[0008] Preferably, a first spring is sleeved on the mounting connecting column, and the first spring drives the movable support plate to perform reset movement.

[0009] Preferably, when the driving block moves, it drives the frame-type plate frame to move, thereby unlocking the rotating bearing plate.

[0010] Preferably, the cleaning drive assembly includes: a movable carrier plate, the movable carrier plate being inserted into the air outlet channel; A silicone wiping ring, wherein the silicone wiping ring is sleeved on the movable carrier plate; A disc self-locking component is also installed on the mobile carrying disc.

[0011] Preferably, the movable carrying plate drives the silicone wiping ring to move synchronously when moving, and the inner wall of the air outlet channel is cleaned by the silicone wiping ring.

[0012] Preferably, the self-locking assembly comprises: a matching lock bar, the matching lock bar being movably mounted on the movable carrier plate; The locking support plate is also movably mounted on the movable carrier plate, and the locking support plate is movably connected to the matching locking strip.

[0013] Preferably, the matching lock strip cooperates with the claw-shaped roller to perform the first layer of fixation on the movable carrier plate.

[0014] Preferably, the locking support plate cooperates with the claw-type roller to perform a second-level fixation on the movable carrier plate.

[0015] Compared with the prior art, the present invention has the following advantages: 1. A rotating bearing plate is movably installed on the air outlet frame. The claw-type roller is installed by rotating the bearing plate, so that the claw-type roller can be installed and removed conveniently and quickly. When installing the claw-type roller, it is positioned on the rotating bearing plate, and then the mobile bearing plate is pushed to drive the mobile bearing plate to move to successfully complete the installation of the claw-type roller. The operation is simple, convenient and fast.

[0016] 2. When installing the claw-type roller, as the movable carrier plate moves, the installation connecting column on the movable carrier plate will be inserted into the installation matching hole, completing the connection between the claw-type roller and the rotating carrier plate, and fixing the claw-type roller on the rotating carrier plate. At the same time, as the movable carrier plate moves, it will drive the driving block to move, and under the action of the driving block, it will drive the frame plate to move, thereby making the rotating carrier plate in an unlocked state, which is convenient for the subsequent rotation of the claw-type roller. When the claw-type roller is not installed, the rotating carrier plate is in a fixed state under the action of the frame plate, which is convenient for the positioning and installation of the claw-type roller.

[0017] 3. In addition, the mobile carrier plate can be automatically locked when moving to ensure the firmness and stability of the claw-type roller installation. When the claw-type roller needs to be disassembled, the support carrier plate is pushed to move so that the matching lock bar exits the matching lock channel to unlock the mobile carrier plate. Pulling the mobile carrier plate in the reverse direction can unlock the claw-type roller. At the same time, during the reverse movement of the mobile carrier plate, the inner wall of the air outlet channel can be cleaned under the action of the silicone wiping ring, which greatly reduces the workload of the staff in cleaning the air outlet channel and makes the cleaning of the air outlet channel more convenient and quick. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a first-person perspective diagram of the air outlet bracket assembly.

[0019] Figure 2 A second-view diagram of the air outlet rack assembly.

[0020] Figure 3 It is a schematic diagram of the assembly of the rotating carrier plate and the claw-type roller.

[0021] Figure 4 This is a schematic diagram of the assembly of the claw-type roller.

[0022] Figure 5 This is a schematic diagram of the installation of the mobile carrier plate.

[0023] Figure 6 It is a structural diagram of the claw-type roller.

[0024] Figure 7 This is a structural diagram of the air outlet frame.

[0025] Figure 8 It is a schematic structural diagram of the first inner supporting bar and the second inner supporting bar.

[0026] Figure 9 Schematic diagram of the first perspective of the rotating carrier plate assembly.

[0027] Figure 10 A second perspective diagram of the rotating carrier plate assembly.

[0028] Figure 11 It is a schematic diagram of the coordination among the rotating carrier plate, the movable carrier plate and the movable carrier tray.

[0029] Figure 12 Exploded first-person perspective diagram of the assembly of the mobile carrier plate and silicone wiper ring.

[0030] Figure 13 Exploded diagram from a second perspective showing the assembly of the mobile carrier plate and silicone wiper ring.

[0031] In the figure: 1, air outlet frame; 11, first inner support bar; 12, second inner support bar; 13, rotation assembly hole; 14, locking hole; 2, rotating bearing plate; 21, installation matching hole; 22, support through hole; 23, rotating column; 24, bearing; 25, rotating sleeve; 26, matching insertion cavity; 27, frame plate frame; 271, matching convex plate; 28, locking plug rod; 29, elastic connecting strip; 3, claw-type roller; 31, air outlet channel; 32, receiving plate; 33, matching lock channel; 34, plug lock channel; 35, rotating bearing block; 36, installation inner cavity; 37, support hole; 38, threaded through hole; 39, limiting channel; 391, plug 1. Connecting strip; 2. Moving carrier plate; 3. Pushing block; 4. Matching channel; 4. Screw; 4. Installing connecting column; 4. First spring; 4. Connecting strip; 4. First connecting rod; 4. Driving block; 4. Driving slope; 5. Moving carrier plate; 5. Installing ring groove; 5. Silicone wiping ring; 5. Inner convex ring; 5. Supporting carrier block; 5. Inserting cavity; 5. Connecting through hole; 5. Installing socket; 6. Matching locking strip; 6. Supporting carrier plate; 6. Second connecting rod; 6. Locking carrier plate; 6. Installing supporting rod; 6. Connecting frame; 6. Inserting locking strip; 6. Connecting supporting column; 6. Second spring. DETAILED DESCRIPTION

[0032] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0033] The present invention provides a technical solution: like Figure 1 and Figure 2As shown, an air conditioner claw-shaped air outlet with adjustable wind direction includes: an air outlet frame 1, a claw-shaped drum 3, a rotating support assembly, a plug-in installation assembly and a cleaning drive assembly. The two ends of the air outlet frame 1 are symmetrically integrally provided with a first inner support bar 11, and the air outlet frame 1 is integrally provided with a second inner support bar 12. All second inner support bars 12 are located between the two first inner support bars 11. An air outlet channel 31 is provided on the claw-shaped drum 3. The first inner support bar 11 and the second inner support bar 12 are both provided with a rotating support assembly for installing the claw-shaped drum 3. One end of the claw-shaped drum 3 installed at both ends is supported on the rotating support assembly on the first inner support bar 11, and the other end is supported on the second inner support bar 11. On the rotating support assembly on 12, the two ends of the claw-type roller 3 in the middle are respectively supported on the rotating support assembly on the second inner supporting bar 12, and the claw-type roller 3 can drive the rotating support assembly to rotate together. The plug-in installation assembly is installed inside the claw-type roller 3, and cooperates with the rotating support assembly to complete the installation of the claw-type roller 3, so that the rotating support assembly and the claw-type roller 3 are fixed together. The cleaning drive assembly is also installed inside the claw-type roller 3, driving the plug-in installation assembly to move, and at the same time, it can clean the inside of the air outlet channel 31. By cleaning the inner wall of the air outlet channel 31 by the cleaning drive assembly, the cleaning intensity of the staff's work on the air outlet channel 31 can be greatly reduced.

[0034] like Figure 2 、 Figure 7 、 Figure 8 、 Figure 9 and Figure 10 As shown, the rotating support component is a rotating carrier plate 2. In order to facilitate the installation of the rotating carrier plate 2, a rotating assembly hole 13 is opened on the first inner support bar 11 and the second inner support bar 12, and a rotating assembly hole 13 is opened on the end surface of both ends of the second inner support bar 12. A rotating column 23 is integrally formed on the rotating carrier plate 2, and a bearing 24 is sleeved on the rotating column 23. The bearing 24 is inserted into the rotating assembly hole 13, and the rotating carrier plate 2 is movably installed at the rotating assembly hole 13.

[0035] like Figure 3 and Figure 9 As shown, a rotating sleeve 25 is integrally formed on the rotating bearing plate 2, and the claw-type roller 3 is supported by the rotating sleeve 25. Specifically, a rotating bearing block 35 is integrally formed at both ends of the claw-type roller 3, and the rotating bearing block 35 is tightly matched with the rotating sleeve 25. In order to make the claw-type roller 3 drive the rotating bearing plate 2 to rotate synchronously when it rotates, and to avoid friction between the rotating bearing block 35 and the rotating sleeve 25, a matching cavity 26 is symmetrically opened on the rotating sleeve 25, and a plug-in matching strip 391 is symmetrically integrally formed on the rotating bearing block 35. When the rotating bearing block 35 is matched with the rotating sleeve 25, the plug-in matching strip 391 is plugged into the matching cavity 26.

[0036] An anti-rotation positioning assembly is installed on the rotating carrier plate 2 , and the anti-rotation positioning assembly keeps the rotating carrier plate 2 in a stable state, making it convenient to install the claw-type roller 3 .

[0037] like Figure 9 and Figure 10 As shown, the anti-rotation positioning component includes: a frame frame 27 and an elastic connecting strip 29. The frame frame 27 is used to position the rotating carrier plate 2. Specifically, a matching convex plate 271 is integrally formed at one end of the frame frame 27, and a locking plug-in rod 28 is integrally formed at the other end. Support through holes 22 are symmetrically opened on both sides of the rotating carrier plate 2. The locking plug-in rod 28 is inserted into the supporting through holes 22. The support of the frame frame 27 is achieved by the cooperation between the locking plug-in rod 28 and the supporting through holes 22. In order to achieve locking, locking plug-in holes 14 are symmetrically opened on both sides of the rotating assembly hole 13. During actual positioning, the locking plug-in rod 28 is partially inserted into the locking plug-in hole 14, so that the rotating carrier plate 2 cannot rotate.

[0038] The elastic connecting strip 29 is used for resetting 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, so that the elastic connecting strip 29 can drive the frame plate 27 to move when restoring the deformation.

[0039] like Figure 9 and Figure 11 As shown, the plug-in installation component includes: a movable support plate 4 and a driving block 48. The movable support plate 4 is integrally provided with a mounting connecting column 44, and a mounting matching hole 21 is opened on the rotating support plate 2. The installation of the claw-type roller 3 is achieved by matching the mounting connecting column 44 with the mounting matching hole 21 on the rotating support plate 2, that is, the mounting connecting column 44 is partially plugged into the mounting matching hole 21, and the plug-in matching strip 391 is plugged into the matching insertion cavity 26, so that the rotating support plate 2 and the claw-type roller 3 can be fixed.

[0040] The two sides of the movable carrier plate 4 are symmetrically integrally formed with a connecting bar 46, and a first connecting rod 47 is hinged on the connecting bar 46. The other end of the first connecting rod 47 is hinged to the driving block 48 to realize the movable connection between the driving block 48 and the movable carrier plate 4. The driving block 48 can be moved by the movable carrier plate 4. In addition, Figure 4 and Figure 6As shown, in order to achieve the smooth installation of the movable carrier plate 4, an installation inner cavity 36 is opened in the interior of the rotating bearing block 35, and a support socket 37 is opened at the bottom of the installation inner cavity 36, and a mounting connecting column 44 is inserted in the support socket 37, and the mounting connecting column 44 is supported by the support socket 37, thereby achieving support for the movable carrier plate 4. At the same time, a threaded through hole 38 is also opened around the support socket 37. In order to further support the movable carrier plate 4, a matching channel 42 is opened on the movable carrier plate 4, and a screw 43 is inserted in the matching channel 42. The screw 43 is threadedly connected to the threaded through hole 38, so that the movable carrier plate 4 can be further supported by the screw 43. In addition, a limiting channel 39 is symmetrically opened on the rotating bearing block 35, and the limiting channel 39 is connected to the installation inner cavity 36. The driving block 48 is partially inserted in the limiting channel 39 and is limited by the limiting channel 39. In this way, the movable carrier plate 4 can only move along the limiting channel 39 when it is driven to move.

[0041] A first spring 45 is sleeved on the mounting connecting column 44, and the two ends of the first spring 45 are in contact with the inner wall of the mounting cavity 36 and the movable support plate 4 respectively. When the mounting connecting column 44 is inserted into the mounting matching hole 21, the first spring 45 is in a compressed state. In this way, when the first spring 45 recovers its deformation, the movable support plate 4 can be driven to reset by the first spring 45.

[0042] When the driving block 48 moves, it drives the frame plate frame 27 to move as well. A driving bevel 49 is integrally formed on the driving block 48. The surface of the driving bevel 49 is smooth and has no burrs. The driving bevel 49 cooperates with the matching convex plate 271 on the frame plate frame 27 to drive the frame plate frame 27 to move. In this way, the locking plug rod 28 on the frame plate frame 27 can be driven to exit the locking hole 14, thereby unlocking the rotating carrier plate 2. At this time, the elastic connecting strip 29 is in a stretched state. When the elastic connecting strip 29 recovers its deformation, it can drive the frame plate frame 27 to reset.

[0043] like Figure 4 、 Figure 5 、 Figure 12 and Figure 13 As shown, the cleaning drive assembly includes: a mobile carrier plate 5 and a silicone wiper ring 52. The mobile carrier plate 5 is plugged into the air outlet channel 31. That is, when the mobile carrier plate 5 is plugged in, the mobile carrier plate 5 moves in accordance with the Figure 5 In the state shown, the mobile carrier plate 5 enters the air outlet channel 31 , and then rotates ninety degrees to successfully complete the insertion of the mobile carrier plate 5 , so that the mobile carrier plate 5 can smoothly enter the air outlet channel 31 .

[0044] The silicone wiping ring 52 is sleeved on the movable carrier plate 5. In order to ensure that the silicone wiping ring 52 is stably installed on the movable carrier plate 5, a mounting ring groove 51 is opened on the movable carrier plate 5, and an inner convex ring 53 is integrally formed inside the silicone wiping ring 52. The silicone wiping ring 52 is stably sleeved on the movable carrier plate 5 through the cooperation of the mounting ring groove 51 and the inner convex ring 53, ensuring that the movable carrier plate 5 can smoothly drive the silicone wiping ring 52 to move synchronously when it moves.

[0045] In addition, when the mobile carrier plate 5 moves toward the end of the claw-shaped roller 3, it can drive the movable support plate 4 to move. In order to prevent the mobile carrier plate 5 from being interfered with by the screw 43 when driving the movable support plate 4 to move, a push block 41 is integrally formed on the movable support plate 4, and the mobile carrier plate 5 contacts the push block 41 when driving the movable support plate 4 to move.

[0046] 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 ninety 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 is rotated inside the air outlet channel 31, since the silicone wiping ring 52 has a certain elasticity, the movable carrier plate 5 can be rotated smoothly.

[0047] The movable carrier plate 5 is also provided with a plate body self-locking assembly, which includes a mating locking bar 6 and a locking support plate 63. The mating locking bar 6 is movably installed on the movable carrier plate 5. Specifically, a supporting block 54 is integrally formed on the movable carrier plate 5, and the mating locking bar 6 is installed on the supporting block 54, that is, a plug-in cavity 541 is opened on the supporting block 54, and the lower part of the mating locking bar 6 is plugged into the plug-in cavity 541. The mating locking bar 6 contacts the inner wall of the plug-in cavity 541, and the inner wall of the plug-in cavity 541 is smooth and free of burrs. The surface of the mating locking bar 6 is smooth and free of burrs, so that the movement of the mating locking bar 6 will not be hindered.

[0048] The locking support plate 63 is also movably mounted on the mobile carrier plate 5. There are two locking support plates 63 on a mobile carrier plate 5, which are symmetrically arranged on both sides of the support block 54. In order to provide good support for the locking support plate 63, mounting holes 543 are symmetrically provided on both sides of the support block 54. A mounting support rod 64 is integrally formed on the lower side of the locking support plate 63, and the mounting support rod 64 is inserted into the mounting hole 543. The support of the locking support plate 63 is achieved by the cooperation of the mounting support rod 64 and the mounting hole 543. A supporting plate 61 is integrally formed on the upper end of the matching lock bar 6, and a second connecting rod 62 is symmetrically hinged at both ends of the supporting plate 61. The lower end of the second connecting rod 62 is connected to the locking support plate 63, that is, a connecting frame 65 is welded and fixed on the locking support plate 63 to connect the second connecting rod 62 to the locking support plate 63. The lower end of the rod 62 is hinged to the connecting frame 65 on the locking support plate 63, so that the locking support plate 63 and the matching lock bar 6 can be connected. In addition, a connecting support column 67 is welded and fixed to the lower end of the support carrier 61, and a second spring 68 is sleeved on the connecting support column 67. The second spring 68 is used to reset the matching 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 carrier 54, and the connecting support column 67 is inserted into the connecting through hole 542. In this way, 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 carrier 61, and its lower end is welded and fixed to the support carrier 54. In this way, the second spring 68 is compressed, and when the deformation is restored, it can drive the matching lock bar 6 to reset.

[0049] The matching locking strip 6 cooperates with the claw-shaped roller 3 to perform the first-level fixation of the movable carrier plate 5. Specifically, receiving strips 32 are symmetrically integrally formed at both ends of the channel opening of the air outlet channel 31, and a matching locking channel 33 is provided on the receiving strip 32. The interior of the matching locking channel 33 is smooth and free of burrs. When the matching locking strip 6 performs the first-level fixation of the movable carrier plate 5, the matching locking strip 6 is inserted into the matching locking channel 33.

[0050] The locking support plate 63 cooperates with the claw-shaped roller 3 to perform the second-level fixation of the mobile carrier plate 5. Specifically, plug-in lock channels 34 are symmetrically opened at both ends of the channel opening of the air outlet channel 31. The inner wall of the plug-in lock channel 34 is smooth and has no burrs. A plug-in lock strip 66 is integrally formed at the upper end of the locking support plate 63. When the locking support plate 63 performs the second-level fixation of the mobile carrier plate 5, the plug-in lock strip 66 on the locking support plate 63 is plugged into the plug-in lock channel 34.

[0051] Two movable carrier plates 5 are inserted into the air outlet channel 31 on a claw-type roller 3, which correspond to the movable carrier plates 4 at both ends of the claw-type roller 3 respectively. When installing the claw-type roller 3, the locking plug-in rod 28 is inserted into the locking plug hole 14, and the rotating carrier plate 2 is positioned so that the upper end of the rotating sleeve 25 is vertically facing upward. Then, the plug-in matching strip 391 on the rotating carrier block 35 is aligned with the matching insertion cavity 26 on the rotating sleeve 25, and the rotating carrier block 35 is inserted into the rotating sleeve 25. At the same time, the plug-in matching strip 391 can be synchronously inserted into the matching insertion cavity 26. After being inserted into the claw-type roller 3, the movable carrier plate 5 is pushed to move so that it contacts the top block 41, so that the movable carrier plate 5 can push the movable carrier plate 4 to move. As the movable carrier plate 4 moves, it will drive the installation connecting column 44 to be inserted into the installation matching hole 21, and at the same time make the first spring 45 in a compressed state, so that the installation connecting column 44 and the plug-in matching strip 391 cooperate to realize the fixed connection between the rotating carrier plate 2 and the claw-type roller 3, and the movable carrier plate 4 will drive the driving block 48 to move under the action of the first connecting rod 47 when it moves, so that the driving inclined surface 49 will contact the matching convex plate 271 on the frame plate frame 27, so that the driving inclined surface 49 can push the matching convex plate 271 to move away from the rotating carrier plate 2, so that the locking plug-in rod 28 can be driven to move out of the locking hole 14, thereby making the rotating carrier plate 2 in an unlocked state, which is convenient for the later claw-type The roller 3 rotates synchronously with the rotating carrier plate 2. When the silicone wiping ring 52 is installed, it is connected to the movable carrier plate 5 by deformation. When the movable carrier plate 5 is installed, the supporting carrier plate 61 is pushed downward to move it downward, and then the two locking carrier plates 63 can be driven to move in the direction of the supporting carrier block 54 under the action of the second connecting rod 62. When the movable carrier plate 5 is plugged into the air outlet channel 31 and rotated ninety degrees, the supporting carrier plate 61 can be released. At this time, the inner wall of the channel opening of the air outlet channel 31 contacts the plug-in lock strip 66 on the locking carrier plate 63, so that the supporting carrier plate 61 cannot be completely reset under the action of the second spring 68. When the movable carrier plate 5 pushes the movable carrier plate 4 to move, when it moves to the working point At this time, the plug-in lock bar 66 on the locking carrier plate 63 is aligned with the plug-in lock path 34, and the matching lock bar 6 is aligned with the matching lock path 33. Since the plug-in lock bar 66 is aligned with the plug-in lock path 34, the plug-in lock bar 66 is freed from restriction, and the matching lock bar 6 is freed from restriction. In this way, the supporting plate 61 can be driven upward to be reset under the action of the second spring 68, and the matching lock bar 6 can be driven upward to be reset, so that the matching lock bar 6 can be plugged into the matching lock path 33, thereby fixing the first layer of the movable carrier plate 5. At the same time, as the matching lock bar 6 moves upward, the second connecting rod 62 will drive the two locking carrier plates 63 to move back to each other, thereby making the plug-in lock bar 66 plugged into the plug-in lock path 34.In this way, the second layer of the mobile carrier plate 5 can be fixed to ensure the firmness and stability of the claw-type roller 3. When the claw-type roller 3 needs to be disassembled and cleaned, the supporting plate 61 is pushed downward to make the matching lock bar 6 exit the matching lock path 33, so that the mobile carrier plate 5 is in the unlocked turntable. Then, the mobile carrier plate 5 is moved in the opposite direction. During the movement, the inner wall of the air outlet channel 31 can be cleaned under the action of the silicone wiping ring 52, which facilitates the cleaning of the inner wall of the air outlet channel 31 and improves the cleaning efficiency. It is very convenient and makes the installation and removal of the claw-type roller 3 very convenient, and is easy to maintain and repair.

[0052] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A claw-shaped air outlet for an air conditioner with adjustable air direction, characterized by: include: An air outlet frame, wherein first inner supporting bars are symmetrically fixedly provided at both ends of the air outlet frame, and a second inner supporting bar is also fixedly provided on the air outlet frame; A claw-shaped drum, wherein the claw-shaped drum is mounted on an air outlet frame and an air outlet channel is provided on the claw-shaped drum; A rotation support assembly is provided on each of the first inner support bar and the second inner support bar, for mounting the claw-type roller; A plug-in installation component is installed inside the claw-type drum and cooperates with the rotating support component to complete the installation of the claw-type drum; A cleaning drive assembly is also installed inside the claw-shaped drum, driving the plug-in installation assembly to move and at the same time being able to clean the inside of the air outlet channel.

2. The claw-shaped air outlet for an air conditioner with adjustable air direction according to claim 1, characterized in that: The rotary support assembly is a rotary bearing plate, on which a rotary sleeve is fixedly provided, and the claw-type roller is supported by the rotary sleeve; An anti-rotation positioning component is installed on the rotating bearing plate.

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

4. The claw-shaped air outlet for an air conditioner with adjustable air direction according to claim 3, characterized in that: The plug-in installation assembly includes: a movable carrier plate, on which a mounting column is fixedly provided, and the claw-type roller is installed by the cooperation of the mounting column and the rotating carrier plate; The driving block is movably connected to the movable carrier plate, and the driving block is driven to move by the movable carrier plate.

5. The claw-shaped air outlet for an air conditioner with adjustable air direction according to claim 4, characterized in that: A first spring is sleeved on the installation connecting column, and the first spring drives the movable support plate to perform reset movement.

6. The claw-shaped air outlet for an air conditioner with adjustable air direction according to claim 5, characterized in that: When the driving block moves, the frame plate frame is driven to move, thereby unlocking the rotating bearing plate.

7. The claw-shaped air outlet for an air conditioner with adjustable air direction according to claim 6, characterized in that: The cleaning drive assembly includes: a movable carrier plate, the movable carrier plate being inserted into the air outlet channel; A silicone wiping ring, wherein the silicone wiping ring is sleeved on the movable carrier plate; A disc self-locking component is also installed on the mobile carrying disc.

8. The claw-shaped air outlet for an air conditioner with adjustable air direction according to claim 7, characterized in that: The movable carrying plate drives the silicone wiper ring to move synchronously when moving, and the inner wall of the air outlet channel is cleaned by the silicone wiper ring.

9. The claw-shaped air outlet for an air conditioner with adjustable air direction according to claim 8, characterized in that: The self-locking assembly includes: a matching lock bar, which is movably mounted on the movable carrier plate; The locking support plate is also movably mounted on the movable carrier plate, and the locking support plate is movably connected to the matching locking strip.

10. The claw-shaped air outlet for an air conditioner with adjustable air direction according to claim 9, characterized in that: The matching lock strip cooperates with the claw-shaped roller to perform the first layer of fixation on the mobile carrier plate.

11. The claw-shaped air outlet for an air conditioner with adjustable air direction according to claim 10, characterized in that: The locking support plate cooperates with the claw-shaped roller to perform a second-level fixation on the movable carrier plate.

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