Cabinet air conditioner

By dividing the first swing blade into multiple sub-swing blades and strengthening the connecting components, the problem of poor bending resistance of the double-swing blade cabinet air conditioner is solved, and the structural stability and air supply effect of the air conditioner cabinet are improved.

CN223470316UActive Publication Date: 2025-10-24QINGDAO HAIER AIR CONDITIONER GENERAL CORP LTD +1
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Patent Information

Application Number
CN202422807256.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-10-24
Estimated Expiration
2034-11-18

AI Technical Summary

Technical Problem

The blades of existing double-swing blade cabinet air conditioners have poor bending resistance and are prone to bending under long-term use or improper operation, affecting the air supply effect and the aesthetics of the air conditioner.

Method used

The first pendulum blade is designed as a plurality of sub-pendulum blades distributed along the length direction of the second pendulum blade, and is connected to the second pendulum blade through a connecting component. Connecting ribs and reinforcing ribs are provided to enhance structural stability, and a driving device and a rotary lock are used to achieve a stable connection.

Benefits of technology

It significantly improves the bending resistance and structural strength of the swing blades, extends the service life of the air-conditioning cabinet, and optimizes the air supply effect and user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of household appliances, in particular to a cabinet air conditioner, and aims to solve the problem of poor bending resistance of swing blades in an existing double-swing-blade cabinet air conditioner. Therefore, the cabinet air conditioner comprises a machine body and a swing blade assembly installed on the machine body, the swing blade assembly comprises a first swing blade, a second swing blade and a connecting component, the first swing blade and the second swing blade are oppositely arranged, and the first swing blade comprises a plurality of sub swing blades distributed in the length direction of the second swing blade; and the connecting component is arranged between the sub swinging blade and the second swinging blade and connects the sub swinging blade with the second swinging blade. The first swing blade is divided into the multiple sub swing blades distributed in the length direction of the second swing blade, and due to the segmented design, each sub swing blade can independently bear part of wind power, the bending moment of the whole swing blade assembly is effectively dispersed, the bending resistance is remarkably improved, and the service life of the cabinet air conditioner is prolonged.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of household appliances, and specifically provides a cabinet air conditioner. BACKGROUND

[0002] In the field of air conditioner manufacturing, as a common household appliance, the cabinet air conditioner not only pays attention to functionality, but also increasingly emphasizes the appearance and structure rationality. The double swing-leaf cabinet air conditioner provides more comfortable use experience for users by adjusting the angle of the swing leaf to control the wind direction due to its unique double swing-leaf design.

[0003] The existing double swing-leaf cabinet air conditioner has a relatively small number of vertical swing leaves, and although the appearance is more concise, the single span is large, which leads to the swing leaf being prone to bending phenomenon under long-term use or improper operation. This bending not only affects the normal function of the swing leaf, but also causes uneven middle flash gap, which seriously affects the overall appearance of the air conditioner. In addition, due to the large size of the double swing leaf, and the need to consider the bending resistance, the traditional method of relying on the flexibility of the vertical swing leaf to complete the disassembly and assembly is no longer applicable.

[0004] Therefore, there is a need in the art for a new technical solution to solve the above problems. SUMMARY

[0005] The utility model aims at solving the above technical problems, that is, solving the problem of poor bending resistance of the swing leaf in the existing double swing-leaf cabinet air conditioner.

[0006] In a first aspect, the utility model provides a cabinet air conditioner, comprising a machine body and a swing leaf assembly installed on the machine body, the swing leaf assembly comprising a first swing leaf, a second swing leaf and a connecting member, the first swing leaf and the second swing leaf being oppositely arranged, the first swing leaf comprising a plurality of sub-swing leaves distributed along the length direction of the second swing leaf, and the connecting member being arranged between the sub-swing leaf and the second swing leaf and connecting the sub-swing leaf and the second swing leaf.

[0007] In the preferred technical solution of the above-mentioned cabinet air conditioner, the plurality of sub-swing leaves are spaced apart along the length direction of the second swing leaf, and a connecting rib is arranged between the two adjacent sub-swing leaves, and the plurality of sub-swing leaves are connected into one body through the connecting rib.

[0008] In the preferred technical solution of the above-mentioned cabinet air conditioner, the sub-swing leaf is connected to the second swing leaf through a plurality of connecting members, and the plurality of connecting members are spaced apart along the length direction of the sub-swing leaf.

[0009] In the preferred technical solution of the above-mentioned cabinet air conditioner, the plurality of sub-swing leaves are spaced apart along the length direction of the second swing leaf, and two of the plurality of connecting members are arranged close to the end portions of the sub-swing leaves, respectively.

[0010] In the preferred technical scheme of the air conditioner cabinet, the second swing leaf is provided with a reinforcing rib at a position corresponding to a gap between two adjacent sub swing leaves, and two ends of the reinforcing rib are connected with the connecting members close to the end portions of the two adjacent sub swing leaves.

[0011] In the preferred technical scheme of the air conditioner cabinet, the swing leaf assembly further comprises a rotating shaft located at the gap between two adjacent sub swing leaves, one end of the rotating shaft is connected with the connecting member close to the end portion of the sub swing leaf, and the other end of the rotating shaft is rotationally connected with the machine body.

[0012] In the preferred technical scheme of the air conditioner cabinet, the air conditioner cabinet further comprises a driving device installed on the machine body, a first connecting portion is arranged on the connecting member close to the end portion of the second swing leaf, the first connecting portion is connected with the driving device, a second connecting portion is arranged on the connecting member close to the other end of the second swing leaf, the second connecting portion is rotationally connected with the machine body, and the driving device is used to drive the swing leaf assembly to rotate relative to the machine body.

[0013] In the preferred technical scheme of the air conditioner cabinet, the first connecting portion is a first columnar structure, a first insertion slot is arranged on the first columnar structure, the driving device comprises a driving shaft, the driving shaft is inserted into the first insertion slot and can drive the first columnar structure to rotate, and / or

[0014] the second connecting portion is a second columnar structure, a second insertion slot is arranged on the second columnar structure, a connecting column is arranged on the machine body, and the connecting column is inserted into the second insertion slot and can rotate relative to the second insertion slot.

[0015] In the preferred technical scheme of the air conditioner cabinet, the air conditioner cabinet further comprises a first rotation lock and a second rotation lock, the first rotation lock is sleeved on the first columnar structure and can rotate relative to the first columnar structure, the second rotation lock is sleeved on the driving shaft, forward rotation of the first rotation lock can connect the first rotation lock with the second rotation lock to prevent the driving shaft from being pulled out of the first insertion slot, and reverse rotation of the first rotation lock can separate the first rotation lock from the second rotation lock to pull the driving shaft out of the first insertion slot.

[0016] In the preferred technical scheme of the air conditioner cabinet, the connecting member is a plate-shaped structure or a columnar structure.

[0017] Those skilled in the art can understand that the technical scheme of the utility model provides a kind of air conditioner cabinet, including machine body and the swing leaf component of installing on machine body, swing leaf component includes first swing leaf, second swing leaf and connecting member, first swing leaf and second swing leaf are oppositely arranged, first swing leaf includes multiple sub-swing leaves distributed along the length direction of second swing leaf, connecting member is located between sub-swing leaf and second swing leaf and connects sub-swing leaf with second swing leaf.In the case where the above technical scheme is used, the utility model can solve the problem of poor swing leaf bending resistance in the existing double-swing-leaf cabinet air conditioner.Specifically, first swing leaf and second swing leaf are oppositely arranged, first swing leaf is divided into multiple sub-swing leaves distributed along the length direction of second swing leaf, and this segmented design enables each sub-swing leaf to independently bear part of the wind force, effectively disperses the bending moment of the overall swing leaf assembly, significantly improves the bending resistance, and prolongs the service life of the air conditioner cabinet.

[0018] Further, the multiple sub-swing leaves are spaced apart along the length direction of the second swing leaf, and a connecting rib is arranged between the adjacent two sub-swing leaves, so that the multiple sub-swing leaves are connected into an integral whole by the connecting rib. By arranging the connecting rib between the adjacent two sub-swing leaves, the connecting rib can connect the multiple sub-swing leaves into a more stable whole, thereby significantly enhancing the overall structural strength of the swing leaf assembly, while not excessively limiting the relative movement between the sub-swing leaves. In this way, even under the condition of relatively large wind force, the sub-swing leaves can maintain a certain structural stability through the connecting rib, avoiding deformation or damage.

[0019] Further, the sub-swing leaf is connected to the second swing leaf by multiple connecting members, and the multiple connecting members are spaced apart along the length direction of the sub-swing leaf. Thus, the sub-swing leaf is no longer connected to the second swing leaf only by a single connecting point or connecting area, but is firmly connected to the second swing leaf by the multiple connecting members, forming a more stable overall structure and further improving the structural strength of the entire swing leaf assembly.

[0020] Further, the second swing leaf is provided with a reinforcing rib at a position corresponding to the gap between the adjacent two sub-swing leaves, and the two ends of the reinforcing rib are connected to the connecting members near the end portions of the adjacent two sub-swing leaves. Thus, additional structural support can be provided for the swing leaf assembly, effectively improving the overall bending resistance and stability. BRIEF DESCRIPTION OF DRAWINGS

[0021] The preferred embodiments of the utility model will be described below with reference to the accompanying drawings, in which:

[0022] Figure 1 is the structure schematic diagram of the air conditioner cabinet of the utility model;

[0023] Figure 2 is the structure schematic of the swing leaf assembly of the utility model Figure One ;

[0024] Figure 3 is a structure diagram of the swing leaf assembly of the utility model Figure Two ;

[0025] Figure 4 is a structure diagram of the swing leaf assembly of the utility model Figure Three ;

[0026] Figure 5 is Figure 4 a partial enlarged view of A in FIG.

[0027] Figure 6 is a structure diagram of the swing leaf assembly of the utility model Figure Four ;

[0028] Figure 7 is Figure 6 a partial enlarged view of B in FIG.

[0029] LIST OF REFERENCE NUMERALS:

[0030] 1, machine body;

[0031] 2, swing leaf assembly; 21, first swing leaf; 211, sub swing leaf; 212, connecting rib; 22, second swing leaf; 23, connecting member; 24, reinforcing rib; 25, rotating shaft;

[0032] 3, first columnar structure; 31, first insertion slot; 32, first rotating lock catch;

[0033] 4, second columnar structure; 41, second insertion slot. DETAILED DESCRIPTION

[0034] The preferred embodiments of the utility model are described below with reference to the accompanying drawings. Those skilled in the art should understand that these embodiments are only used to explain the technical principles of the utility model, and are not intended to limit the protection scope of the utility model. For example, although the following embodiments are introduced in combination with cabinet air conditioners, the swing leaf assembly provided by the utility model is also applicable to other products which need to solve the problem of poor swing leaf bending resistance.

[0035] It should be noted that in the description of the utility model, unless otherwise explicitly specified and limited, the terms "arranged", "connected" should be understood in a broad sense, for example, it can be fixed connection, or detachable connection, or integral connection. For those skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0036] The conventional swing leaf assembly of the air conditioner cabinet machine based on the background technology usually adopts a whole swing leaf to adjust the air direction. Such design is prone to deformation of the swing leaf due to uneven force in a long time use or in the face of large air volume demand, which affects the air supply effect and the service life of the air conditioner cabinet machine. Therefore, in order to solve the problem of poor bending resistance of the swing leaf in the existing double-swing-leaf cabinet air conditioner, the utility model provides an air conditioner cabinet machine, which aims to effectively solve the problem of poor bending resistance of the swing leaf by setting the first swing leaf in the swing leaf assembly as a plurality of sub-swing leaves distributed along the length direction of the second swing leaf.

[0037] As shown in Figure 1 and Figure 2 , the utility model provides an air conditioner cabinet machine, which comprises a machine body 1 and a swing leaf assembly 2 installed on the machine body 1. The swing leaf assembly 2 comprises a first swing leaf 21, a second swing leaf 22 and a connecting member 23. The first swing leaf 21 and the second swing leaf 22 are oppositely arranged. The first swing leaf 21 comprises a plurality of sub-swing leaves 211 distributed along the length direction of the second swing leaf 22. The connecting member 23 is arranged between the sub-swing leaves 211 and the second swing leaf 22 and connects the sub-swing leaves 211 and the second swing leaf 22.

[0038] The machine body 1 serves as the basic support structure of the air conditioner cabinet machine and is used for installing and fixing various components. The swing leaf assembly 2 is installed on the machine body 1 and is responsible for adjusting the air supply direction and angle. The swing leaf assembly 2 comprises a first swing leaf 21, a second swing leaf 22 and a connecting member 23. The first swing leaf 21 and the second swing leaf 22 are oppositely arranged. The first swing leaf 21 is divided into a plurality of sub-swing leaves 211 distributed along the length direction of the second swing leaf 22. Such segmented design enables each sub-swing leaf 211 to independently bear part of the wind force, effectively disperses the bending moment of the whole swing leaf assembly 2, significantly improves the bending resistance and prolongs the service life of the air conditioner cabinet machine. In addition, the segmented design makes the swing leaf assembly 2 more flexible when adjusting the air direction, which can make more precise adjustments according to actual needs, thereby optimizing the air supply effect and improving the user experience. The connecting member 23 is arranged between the sub-swing leaves 211 and the second swing leaf 22, which ensures the stable connection between the sub-swing leaves 211 and the second swing leaf 22 and avoids structural looseness or damage caused by uneven force.

[0039] Preferably, as shown in Figure 3 , the plurality of sub-swing leaves 211 are spaced apart along the length direction of the second swing leaf 22, and a connecting rib 212 is arranged between adjacent two sub-swing leaves 211. The plurality of sub-swing leaves 211 are connected into one body through the connecting rib 212.

[0040] The plurality of sub-leafs 211 are distributed at intervals along the length direction of the second leaf 22. Such interval distribution not only maintains the advantages of the segmented design, i.e. each sub-leaf 211 can independently withstand part of the wind force, but also further optimizes the air flow and improves the air supply efficiency by reasonable interval arrangement. A connecting rib 212 is arranged between two adjacent sub-leafs 211. The connecting rib 212 is a structural reinforcement that can connect the plurality of sub-leafs 211 into a more stable whole, significantly enhancing the overall structural strength of the leaf assembly 2, while not excessively limiting the relative movement between the sub-leafs 211. In this way, even in the case of strong wind, the sub-leafs 211 can maintain a certain structural stability through the connecting rib 212, avoiding deformation or damage.

[0041] Preferably, as shown in Figure 2 The sub-leaf 211 is connected to the second leaf 22 through a plurality of connecting members 23, which are distributed at intervals along the length direction of the sub-leaf 211.

[0042] The sub-leaf 211 is connected to the second leaf 22 through a plurality of connecting members 23, which are distributed at intervals along the length direction of the sub-leaf 211.

[0043] Preferably, as shown in Figure 2 Two of the plurality of connecting members 23 are arranged near the ends of the sub-leaf 211, respectively.

[0044] The connecting members 23 near the ends of the sub-leaf 211 provide additional structural support for the entire leaf assembly 2, which is particularly evident in the case of strong wind or frequent changes in wind direction, greatly reducing the deformation of the sub-leaf 211, further improving the bending resistance of the sub-leaf 211, ensuring the stability of the sub-leaf 211 when adjusting the wind direction, and avoiding swinging or deviation due to wind force.

[0045] Preferably, the connecting member 23 is a plate structure or a columnar structure.

[0046] The plate-shaped structure generally has a large area and mass, and can provide stronger structural support, thereby enhancing the overall stability of the swing leaf assembly 2. The columnar structure has a smaller cross-sectional area and a longer length, and can provide better rotation flexibility and spatial adaptability. Of course, in other embodiments, the connecting member 23 can also be in other structural forms. When selecting the shape and structure of the connecting member 23, the specific needs, performance requirements, cost budget, and user preferences of the air conditioner cabinet machine need to be considered comprehensively, and therefore the connecting member 23 needs to be selected according to the specific situation in actual application. The specific structure of the connecting member 23 is not limited in the utility model.

[0047] Preferably, as shown in Figure 2 The second swing leaf 22 is provided with a reinforcing rib 24 at a position corresponding to the gap between the adjacent two sub-swing leaves 211. The two ends of the reinforcing rib 24 are connected with the connecting members 23 near the ends of the adjacent two sub-swing leaves 211, respectively.

[0048] The reinforcing rib 24 is arranged on the second swing leaf 22 at a position corresponding to the gap between the adjacent two sub-swing leaves 211. The reinforcing rib 24 extends along the length direction of the second swing leaf 22 and spans the gap between the sub-swing leaves 211, thereby providing additional structural support for the swing leaf assembly 2 and effectively improving the overall bending resistance and stability. The two ends of the reinforcing rib 24 are connected with the connecting members 23 near the ends of the adjacent two sub-swing leaves 211, respectively. This connection mode not only ensures that the reinforcing rib 24 can effectively transfer and disperse stress, but also enhances the connection strength between the sub-swing leaves 211 and the second swing leaf 22, thereby reducing the risk of connection loosening or damage caused by long-term use or harsh environment.

[0049] Preferably, as shown in Figure 3 The swing leaf assembly 2 further comprises a rotating shaft 25 located at the gap between the adjacent two sub-swing leaves 211. One end of the rotating shaft 25 is connected with the connecting member 23 near the end of the sub-swing leaf 211, and the other end of the rotating shaft 25 is rotationally connected with the body 1.

[0050] The arrangement of the rotating shaft 25 enables the sub-swing leaf 211 to rotate more flexibly when adjusting the wind direction, thereby improving the response speed and adjustment accuracy of the swing leaf assembly 2. Through the guidance of the rotating shaft 25, the sub-swing leaf 211 can maintain a more stable posture during rotation, thereby avoiding swinging or deviation caused by wind force, so that the entire assembly is compact while having higher bending resistance and structural strength.

[0051] Preferably, as shown in Figure 3As shown in the drawings, the air conditioner further comprises a driving device (not shown in the drawings) installed on the body 1, a first connecting part is arranged on the connecting member 23 near the end of the second swing leaf 22, the first connecting part is connected with the driving device, a second connecting part is arranged on the connecting member 23 near the other end of the second swing leaf 22, the second connecting part is rotationally connected with the body 1, and the driving device is used to drive the swing leaf assembly 2 to rotate relative to the body 1.

[0052] The first connecting part is arranged on the connecting member 23 near the end of the second swing leaf 22. The first connecting part is directly connected with the driving device and is used to transmit the driving force generated by the driving device, so as to drive the swing leaf assembly 2 to rotate. The second connecting part is arranged on the connecting member 23 near the other end of the second swing leaf 22. The second connecting part is rotationally connected with the body 1, so as to ensure that the swing leaf assembly 2 can maintain a stable posture during rotation.

[0053] Preferably, as shown in the drawings, Figure 4 and Figure 5 the first connecting part is a first columnar structure 3, the first columnar structure 3 is provided with a first slot 31, the driving device comprises a driving shaft (not shown in the drawings), the driving shaft is inserted into the first slot 31 and can drive the first columnar structure 3 to rotate.

[0054] The first connecting part is designed as the first columnar structure 3, which not only enhances the stability of the connection, but also enables the driving force to be more uniformly transmitted to the swing leaf assembly 2. The first slot 31 is arranged on the first columnar structure 3, which is used to receive the driving shaft of the driving device, so as to realize reliable connection between the driving shaft and the swing leaf assembly 2. After the driving shaft is inserted into the first slot 31, the first columnar structure 3 can be driven to rotate, so as to realize adjustment of the swing leaf assembly 2. In addition, through this connection mode, disassembly and maintenance are facilitated, and maintenance cost is reduced.

[0055] Preferably, as shown in the drawings, Figure 6 and Figure 7 the second connecting part is a second columnar structure 4, the second columnar structure 4 is provided with a second slot 41, and the body 1 is provided with a connecting column (not shown in the drawings), the connecting column is inserted into the second slot 41 and can rotate relative to the second slot 41.

[0056] The second connecting part is designed as a second columnar structure 4, which is similar to the first connecting part, and this design also enhances the stability of the connection. A second slot 41 is arranged on the second columnar structure 4. This slot is used to receive a connecting column on the machine body 1, so as to realize the rotary connection between the swing leaf assembly 2 and the machine body 1. After the connecting column is inserted into the second slot 41, the connecting column can rotate relative to the second slot 41, and this design ensures that the swing leaf assembly 2 can maintain a stable posture during adjustment. In addition, through this connection mode, the swing leaf assembly 2 is further facilitated to be disassembled and maintained, and the maintenance cost is reduced.

[0057] Preferably, as shown in the drawings, the air conditioner cabinet also comprises a first rotating lock 32 and a second rotating lock (not shown in the drawings), the first rotating lock 32 is sleeved on the first columnar structure 3 and can rotate relative to the first columnar structure 3, and the second rotating lock is sleeved on the driving shaft. Forward rotation of the first rotating lock 32 can connect the first rotating lock 32 and the second rotating lock to prevent the driving shaft from being pulled out of the first slot 31, and reverse rotation of the first rotating lock 32 can separate the first rotating lock 32 and the second rotating lock to facilitate pulling out of the driving shaft from the first slot 31. Figure 5

[0058] The first rotating lock 32 is sleeved on the first columnar structure 3, and the first rotating lock 32 can rotate relative to the first columnar structure 3, thereby facilitating the user to perform the connection and disassembly operation. Meanwhile, the second rotating lock is sleeved on the driving shaft, and the second rotating lock cooperates with the first rotating lock 32 to jointly realize the stable locking of the driving shaft.

[0059] When it is necessary to connect the driving shaft and the first columnar structure 3, the user only needs to insert the driving shaft into the first slot 31 and forwardly rotate the first rotating lock 32. At this time, the first rotating lock 32 is engaged with the second rotating lock, thereby realizing the stable locking of the driving shaft and preventing it from being pulled out of the first slot 31. When it is necessary to disassemble the driving shaft, the user only needs to reversely rotate the first rotating lock 32 to separate the first rotating lock 32 and the second rotating lock. At this time, the user can easily pull out the driving shaft from the first slot 31 to perform the subsequent maintenance or replacement operation.

[0060] The technical scheme of the present application has been described in combination with the preferred embodiments shown in the drawings, but those skilled in the art can easily understand that the protection scope of the present application is obviously not limited to these specific embodiments. Those skilled in the art can make equivalent changes or replacements to the related technical features without deviating from the principles of the present application, and the technical schemes after the changes or replacements will all fall within the protection scope of the present application.​

Claims

1. An air conditioner cabinet, characterized in that, The air conditioner cabinet comprises a machine body (1) and a swing leaf assembly (2) installed on the machine body (1), the swing leaf assembly (2) comprises a first swing leaf (21), a second swing leaf (22) and a connecting member (23), the first swing leaf (21) and the second swing leaf (22) are oppositely arranged, the first swing leaf (21) comprises a plurality of sub-swing leaves (211) distributed along the length direction of the second swing leaf (22), and the connecting member (23) is arranged between the sub-swing leaf (211) and the second swing leaf (22) and connects the sub-swing leaf (211) and the second swing leaf (22).

2. The cabinet air conditioner according to claim 1, wherein The plurality of sub-swing leaves (211) are spaced apart along the length direction of the second swing leaf (22), and a connecting rib (212) is arranged between adjacent two sub-swing leaves (211), and the plurality of sub-swing leaves (211) are connected into one body through the connecting rib (212).

3. The cabinet air conditioner according to claim 1, wherein The sub-swing leaf (211) is connected with the second swing leaf (22) through a plurality of connecting members (23), and the plurality of connecting members (23) are spaced apart along the length direction of the sub-swing leaf (211).

4. The cabinet air conditioner according to claim 3, wherein The plurality of sub-swing leaves (211) are spaced apart along the length direction of the second swing leaf (22), and two of the plurality of connecting members (23) are arranged close to the end portions of the sub-swing leaves (211) respectively.

5. The cabinet air conditioner according to claim 4, wherein The second swing leaf (22) is provided with a reinforcing rib (24) at a position corresponding to the gap between adjacent two sub-swing leaves (211), and the two ends of the reinforcing rib (24) are connected with the connecting members (23) close to the end portions of the adjacent two sub-swing leaves (211) respectively.

6. The cabinet air conditioner according to claim 4, wherein The swing leaf assembly (2) further comprises a rotating shaft (25) located at the gap between adjacent two sub-swing leaves (211), one end of the rotating shaft (25) is connected with the connecting member (23) close to the end portion of the sub-swing leaf (211), and the other end of the rotating shaft (25) is rotationally connected with the machine body (1).

7. The cabinet air conditioner according to claim 1, wherein The air conditioner cabinet further comprises a driving device installed on the machine body (1), a first connecting portion is arranged on the connecting member (23) close to the end portion of the second swing leaf (22), the first connecting portion is connected with the driving device, a second connecting portion is arranged on the connecting member (23) close to the other end of the second swing leaf (22), the second connecting portion is rotationally connected with the machine body (1), and the driving device is used to drive the swing leaf assembly (2) to rotate relative to the machine body (1).

8. The cabinet air conditioner according to claim 7, wherein The first connecting portion is a first columnar structure (3), the first columnar structure (3) is provided with a first insertion slot (31), the driving device comprises a driving shaft, the driving shaft is inserted into the first insertion slot (31) and can drive the first columnar structure (3) to rotate; and / or The second connecting portion is a second columnar structure (4), the second columnar structure (4) is provided with a second insertion slot (41), the machine body (1) is provided with a connecting column, the connecting column is inserted into the second insertion slot (41) and can rotate relative to the second insertion slot (41).

9. The cabinet air conditioner according to claim 8, wherein The air conditioner further comprises a first rotating lock (32) and a second rotating lock, the first rotating lock (32) is sleeved on the first columnar structure (3) and can rotate relative to the first columnar structure (3), the second rotating lock is sleeved on the driving shaft, forward rotation of the first rotating lock (32) can connect the first rotating lock (32) and the second rotating lock, so as to prevent the driving shaft from being pulled out of the first slot (31), reverse rotation of the first rotating lock (32) can separate the first rotating lock (32) and the second rotating lock, so as to pull out the driving shaft from the first slot (31).

10. The cabinet air conditioner according to any one of claims 1 to 9, characterized in that, The connecting member (23) is a plate-shaped structure or a columnar structure.