Air conditioner

The modular design of the detachable connecting housing and air duct components simplifies the air conditioner disassembly and assembly process, solving the problem of complex disassembly and assembly of existing air conditioners, and achieving efficient cleaning and maintenance.

CN120819829APending Publication Date: 2025-10-21NINGBO AUX ELECTRIC CO LTD +1
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Patent Information

Application Number
CN202410419176.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-04-09
Publication Date
2025-10-21

AI Technical Summary

Technical Problem

The existing air conditioner disassembly and assembly process is complicated, time-consuming, labor-intensive, and difficult to clean or maintain efficiently.

Method used

The system employs a detachable first and second housing, along with an air duct assembly installed within the second housing, simplifying the assembly and disassembly process, reducing the number of parts, and facilitating disassembly and installation through modular design.

Benefits of technology

It simplifies the disassembly and assembly process of air conditioners, saves labor and time costs, improves disassembly and assembly efficiency, and facilitates cleaning and maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an air conditioner, and relates to the technical field of air conditioners. The air conditioner comprises a first module and a second module. The first module comprises a first shell, the first shell is provided with a containing cavity, the second module comprises a second shell and an air duct assembly, the second shell is detachably connected with the first shell, the air duct assembly is installed in the second shell and extends into the containing cavity, and the air duct assembly can retreat from the containing cavity when the second shell is detached from the first shell. Compared with the prior art, due to the fact that the first shell and the second shell which are detachably connected and the air duct assembly installed in the second shell are adopted in the air conditioner, the disassembly and assembly process of the air conditioner can be simplified, the disassembly and assembly number of parts is reduced, the labor cost and the time cost are saved, and the disassembly and assembly efficiency is improved; therefore, cleaning or maintenance is easy.
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Description

Technical Field

[0001] The present invention relates to the technical field of air conditioning, and in particular to an air conditioner. Background Art

[0002] With the continuous improvement of living standards, air conditioners have become commonplace in every household, and people's expectations for air conditioners are also increasing. Modern air conditioners have numerous parts. Cleaning or maintaining the interior of an air conditioner (especially the crossflow impellers) requires gradually disassembling multiple parts, then reinstalling them after cleaning (or maintenance). This complex and difficult disassembly and assembly process is time-consuming, labor-intensive, and inefficient, making it difficult to clean or maintain the interior of the air conditioner. Summary of the Invention

[0003] The problem solved by the present invention is how to simplify the disassembly and assembly process of the air conditioner, reduce the number of disassembled parts, save labor costs and time costs, and improve disassembly and assembly efficiency, thereby facilitating cleaning or maintenance.

[0004] To solve the above problems, the technical solution of the present invention is achieved as follows:

[0005] The present invention provides an air conditioner comprising a first module and a second module. The first module comprises a first housing, the first housing being provided with a receiving cavity. The second module comprises a second housing and an air duct assembly. The second housing is detachably connected to the first housing. The air duct assembly is mounted within the second housing and extends into the receiving cavity. The air duct assembly can be withdrawn from the receiving cavity when the second housing is detached from the first housing. Compared to the prior art, the air conditioner provided by the present invention, due to its use of a detachably connected first and second housings and the air duct assembly mounted within the second housing, simplifies the assembly and disassembly process of the air conditioner, reduces the number of disassembled parts, saves labor and time, and improves assembly and disassembly efficiency, thereby facilitating cleaning or maintenance.

[0006] Furthermore, the first module also includes a first drive motor, which is installed in the accommodating cavity. The air duct assembly includes a cross-flow fan blade, which cooperates with the first drive motor and can be separated from the first drive motor when the second housing is detached from the first housing. This enables the first module and the second module to be disassembled, facilitating subsequent cleaning or maintenance of the first module and the second module.

[0007] Furthermore, the second housing is provided with an air duct, the crossflow blades are arranged in the air duct, and the second housing is provided with an air outlet, which is connected to the air duct. The air duct is used to guide the outlet air flow so that the outlet air flow is blown into the room from the air outlet, thereby achieving the function of regulating the indoor temperature.

[0008] Furthermore, the second module also includes an air guide assembly, which is mounted on the second housing and is used to adjust the outlet direction of the air flow. The air guide assembly is used to adjust the outlet direction of the air flow to achieve the function of adjusting the wind direction of the air conditioner.

[0009] Furthermore, the air guide assembly includes a second drive motor and an air guide plate. The second drive motor is mounted on the second housing and connected to the air guide plate. The air guide plate is rotatably mounted on the air outlet. The air guide plate can rotate relative to the air outlet under the action of the second drive motor to adjust the outlet direction of the airflow to meet user needs.

[0010] Furthermore, the first module further includes a first unlocking member, which is movably mounted on the first housing. A connecting shaft is provided at one end of the crossflow fan blade and an assembly hole is provided at the other end. The connecting shaft and the assembly hole are coaxially arranged. The connecting shaft cooperates with the first unlocking member, and the assembly hole cooperates with the output shaft of the first drive motor. The first unlocking member can drive the crossflow fan blade axially away from the first drive motor via the connecting shaft, so that the output shaft disengages from the assembly hole. The connecting shaft can be disengaged from the first unlocking member when the second housing is detached from the first housing. This releases the mating relationship between the first unlocking member and the connecting shaft, allowing the connecting shaft to be detached along with the second housing under the drive of the crossflow fan blade.

[0011] Furthermore, a sleeve is provided on the outer surface of the connecting shaft, and an annular groove is formed on the circumference of the sleeve. The first unlocking member cooperates with the annular groove, and the first unlocking member can drive the connecting shaft to move through the sleeve. The first unlocking member has a clearance hole with a notch, and the sleeve is disposed in the clearance hole. The sleeve can be released from the clearance hole through the notch when the second housing is detached from the first housing, thereby releasing the cooperation between the first unlocking member and the connecting shaft.

[0012] Furthermore, the first module further includes a second unlocking member and a first terminal, and the second module further includes a second terminal. The second unlocking member is movably mounted on the first housing and connected to the first terminal. The second terminal is mounted on the second housing and cooperates with the first terminal. The second unlocking member can drive the first terminal to disengage from the second terminal, thereby facilitating subsequent detachment of the second module from the first module.

[0013] Furthermore, the first terminal is a male terminal, the second terminal is a female terminal, and the first terminal is plugged into the second terminal, so that the first terminal and the second terminal can be matched and separated conveniently and quickly.

[0014] Furthermore, the first module further includes an evaporator, which is installed in the accommodating cavity and is used to exchange heat with the outgoing air flow to achieve the heating or cooling function of the air conditioner. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1is a structural diagram of the air conditioner according to an embodiment of the present invention when it is installed;

[0016] Figure 2 is a structural schematic diagram of an air conditioner according to an embodiment of the present invention when disassembled from one perspective;

[0017] Figure 3 is a structural schematic diagram of the air conditioner according to an embodiment of the present invention when disassembly is completed from another perspective;

[0018] Figure 4 is a cross-sectional view of the air conditioner according to an embodiment of the present invention when the first unlocking member and the second unlocking member are both in the open state;

[0019] Figure 5 is a cross-sectional view of the air conditioner according to the embodiment of the present invention when the first unlocking member and the second unlocking member are both in the reset state;

[0020] Figure 6 yes Figure 4 A schematic diagram of the structure in which the first unlocking member is connected to the crossflow fan blade;

[0021] Figure 7 yes Figure 4 Schematic diagram of the partial structure of the first unlocking member.

[0022] Description of reference numerals:

[0023] 100-air conditioner; 110-first module; 111-first shell; 1111-accommodating cavity; 1112-clamp; 112-first drive motor; 1121-output shaft; 113-first unlocking member; 1131-notch; 1132-clearance hole; 114-second unlocking member; 115-first terminal; 120-second module; 121-second shell; 1211-air duct; 1212-air outlet; 1213-hook; 122-crossflow blade; 1221-connecting shaft; 1222-assembly hole; 1223-sleeve; 1224-annular groove; 123-air guide assembly; 1231-second drive motor; 1232-air guide plate; 124-second terminal. DETAILED DESCRIPTION

[0024] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, specific embodiments of the present invention are described in detail below with reference to the accompanying drawings.

[0025] Please refer to Figure 1 An embodiment of the present invention provides an air conditioner 100 for regulating indoor temperature. The air conditioner 100 can simplify the assembly and disassembly process, reduce the number of components to be disassembled, save labor and time, and improve assembly and disassembly efficiency, thereby facilitating cleaning or maintenance.

[0026] It should be noted that the air conditioner 100 is a wall mounted air conditioner, which is hung on a wall indoors. The air conditioner 100 is used to blow hot or cold air into the room to achieve heating or cooling functions, thereby regulating the indoor temperature to meet user needs.

[0027] The air conditioner 100 includes a first module 110 and a second module 120. The first module 110 is fixedly mounted on a wall indoors, and the second module 120 is detachably connected to the first module 110. When the air conditioner 100 needs to be cleaned or maintained, the second module 120 is removed from the first module 110, and the first module 110 and the second module 120 can be cleaned or maintained separately, which is convenient and quick. In this way, by modularizing the air conditioner 100 (dividing the air conditioner 100 into the first module 110 and the second module 120), the disassembly and assembly process of the air conditioner 100 is simplified, the number of disassembly and assembly parts is reduced, labor costs and time costs are saved, and the disassembly and assembly efficiency is improved, thereby making it easy to clean or maintain the interior of the air conditioner 100.

[0028] Please refer to Figure 2 and Figure 3 The first module 110 includes a first shell 111, a first drive motor 112 and an evaporator (not shown). The first shell 111 is fixedly mounted on the indoor wall. The first shell 111 is provided with a receiving cavity 1111. The first drive motor 112 is installed in the receiving cavity 1111. The first drive motor 112 is used to connect with the cross-flow fan blades 122. The first drive motor 112 can drive the cross-flow fan blades 122 to rotate to form an outlet airflow. The evaporator is installed in the receiving cavity 1111. The outlet airflow will pass through the evaporator during the flow process. The evaporator is used to exchange heat with the outlet airflow to achieve the heating or cooling function of the air conditioner 100.

[0029] The second module 120 includes a second housing 121, an air duct assembly (not shown), and an air guide assembly 123. The second housing 121 is detachably connected to the first housing 111. The first housing 111 can secure and position the second housing 121 to achieve detachable connection between the second module 120 and the first module 110. The air duct assembly is installed within the second housing 121 and extends into the accommodating cavity 1111. The air guide assembly 123 is installed in the second housing 121 and is used to adjust the outlet direction of the air flow, thereby enabling the air conditioner 100 to adjust the wind direction. Specifically, the air duct assembly can withdraw from the accommodating cavity 1111 along with the second shell 121 when the second shell 121 is detached from the first shell 111, so as to realize the disassembly of the first module 110 and the second module 120, thereby facilitating the subsequent cleaning or maintenance of the first module 110 and the second module 120 respectively, and making it easy to clean or maintain the air duct assembly, thereby reducing the number of parts that need to be disassembled when cleaning or maintaining the air duct assembly, and being convenient and quick.

[0030] Specifically, the air duct assembly includes a cross-flow blade 122 and bearings or gaskets connected to both ends of the cross-flow blade 122. The bearings or gaskets are used to reduce the friction resistance encountered by the cross-flow blade 122 during rotation, thereby ensuring the stability of the rotation of the cross-flow blade 122. The cross-flow blade 122 cooperates with the first drive motor 112, and the first drive motor 112 can drive the cross-flow blade 122 to rotate to form an outlet airflow. When the second shell 121 is detached from the first shell 111, the cross-flow blade 122 can exit the accommodating cavity 1111 along with the second shell 121 and separate from the first drive motor 112, thereby realizing the disassembly of the first module 110 and the second module 120, thereby facilitating the subsequent cleaning or maintenance of the first module 110 and the second module 120 respectively.

[0031] It should be noted that when the first module 110 and the second module 120 are connected, the air conditioner 100 is assembled. At this time, the first drive motor 112 is used to drive the crossflow blades 122 to rotate to form an outlet airflow, the evaporator is used to exchange heat with the outlet airflow, and the air guide assembly 123 is used to adjust the outlet direction of the outlet airflow. The air conditioner 100 can effectively regulate the indoor temperature. When the first module 110 and the second module 120 are separated, the evaporator and the first drive motor 112 remain in the first housing 111, and the crossflow blades 122 and the air guide assembly 123 are detached along with the second housing 121. At this time, the user can clean or maintain both the evaporator and the first drive motor 112 in the first housing 111 and the crossflow blades 122 and the air guide assembly 123 in the second housing 121. This is convenient and quick, effectively improving cleaning and maintenance efficiency.

[0032] In this embodiment, the second housing 121 is provided with a hook 1213, and the first housing 111 is provided with a buckle 1112. The hook 1213 engages with the buckle 1112 to achieve a detachable connection between the first housing 111 and the second housing 121. This eliminates the need for screws, making assembly and disassembly convenient and quick, further improving assembly and disassembly efficiency. However, this is not limiting. In other embodiments, the first housing 111 and the second housing 121 may be screwed or adhesively connected. The method of detachable connection between the first housing 111 and the second housing 121 is not specifically limited.

[0033] Please refer to Figures 4 to 7 In this embodiment, the second housing 121 is provided with an air duct 1211, and the crossflow blades 122 are disposed within the air duct 1211. The second housing 121 is provided with an air outlet 1212, which is connected to the air duct 1211. The air duct 1211 is used to guide the outlet airflow so that the outlet airflow is blown out of the air outlet 1212 into the room, thereby achieving the function of regulating the indoor temperature. Specifically, when the first module 110 and the second module 120 are connected, the crossflow blades 122 cooperate with the first drive motor 112. The crossflow fan can generate negative pressure under the action of the first drive motor 112, and drive air flow to form an outlet airflow. Under the guidance of the air duct 1211, the outlet airflow is blown out of the room through the air outlet 1212. After the first module 110 and the second module 120 are separated, the cross-flow blades 122 can be easily taken out from the air duct 1211 to clean the air duct 1211 and remove dust adhered to the air duct 1211, with high cleaning efficiency and good cleaning effect.

[0034] The air guide assembly 123 includes a second drive motor 1231 and an air guide plate 1232. The second drive motor 1231 is mounted on the second housing 121 and connected to the air guide plate 1232. The air guide plate 1232 is rotatably mounted on the air outlet 1212. Under the action of the second drive motor 1231, the air guide plate 1232 can rotate relative to the air outlet 1212 to adjust the outlet direction of the air flow to meet user needs. Specifically, after the first module 110 and the second module 120 are separated, the user can remove the air guide plate 1232 from the second drive motor 1231 as needed, so that the air guide plate 1232 can be cleaned or replaced, and the second drive motor 1231 can be cleaned or maintained conveniently and quickly.

[0035] In this embodiment, there are three air guide assemblies 123, namely a first upper and lower air guide assembly, a second upper and lower air guide assembly, and a left and right air guide assembly. The air guide plate 1232 in the first upper and lower air guide assembly is disposed outside the air outlet 1212, while the air guide plate 1232 in the second upper and lower air guide assembly is disposed inside the air outlet 1212. The area of ​​the air guide plate 1232 in the first upper and lower air guide assembly is larger than the area of ​​the air guide plate 1232 in the second upper and lower air guide assembly. Specifically, the first upper and lower air guide assembly and the second upper and lower air guide assembly are both used to guide the outgoing airflow in the up and down directions. The first upper and lower air guide assembly is also used to completely seal the air outlet 1212 when the air conditioner 100 is turned off to prevent the entry of dust or mosquitoes and improve the aesthetics of the air conditioner 100. The left and right air guide assembly is used to guide the outgoing airflow in the left and right directions. However, it is not limited to this. In other embodiments, the number of air guide components 123 can be two (including only the first upper and lower air guide components and the left and right air guide components), or it can be one (including only the first upper and lower air guide components). There is no specific limitation on the number and air guide direction of the air guide components 123.

[0036] Furthermore, the first module 110 also includes a first unlocking member 113. The first unlocking member 113 is movably mounted on the first housing 111. The first unlocking member 113 is used to disengage the crossflow blade 122 from the first drive motor 112 before the first module 110 and the second module 120 are disassembled, thereby facilitating the subsequent removal of the second module 120 from the first module 110. The crossflow blade 122 has a connecting shaft 1221 at one end and an assembly hole 1222 at the other end. The connecting shaft 1221 and the assembly hole 1222 are coaxially arranged. The connecting shaft 1221 engages with the first unlocking member 113, while the assembly hole 1222 engages with the output shaft 1121 of the first drive motor 112. Specifically, the first unlocking member 113 can drive the cross-flow fan blade 122 along its axial direction away from the first drive motor 112 through the connecting shaft 1221, so that the output shaft 1121 disengages from the assembly hole 1222, thereby releasing the matching relationship between the first drive motor 112 and the cross-flow fan blade 122, making it easier for the cross-flow fan blade 122 to be subsequently detached from the second shell 121; the connecting shaft 1221 can be detached from the first unlocking member 113 when the second shell 121 is detached from the first shell 111, so as to release the matching relationship between the first unlocking member 113 and the connecting shaft 1221, so that the connecting shaft 1221 can be detached from the second shell 121 under the drive of the cross-flow fan blade 122.

[0037] In this embodiment, a sleeve 1223 is provided on the outer surface of the connecting shaft 1221. The sleeve 1223 rotatably engages with the connecting shaft 1221. The connecting shaft 1221 can rotate relative to the sleeve 1223 to facilitate the rotation of the crossflow blades 122. The connecting shaft 1221 cannot be displaced relative to the sleeve 1223 along its axial direction, so that the sleeve 1223 can drive the connecting shaft 1221 to move, thereby achieving easy assembly and disassembly. Specifically, an annular groove 1224 is formed on the circumference of the sleeve 1223. The first unlocking member 113 engages with the annular groove 1224. The first unlocking member 113 can drive the connecting shaft 1221 to move via the sleeve 1223, causing the connecting shaft 1221 to displace along its axial direction and gradually move away from the first drive motor 112, thereby allowing the output shaft 1121 to disengage from the assembly hole 1222, thereby releasing the mating relationship between the first drive motor 112 and the crossflow blades 122. Correspondingly, the first unlocking member 113 is provided with a clearance hole 1132 having a notch 1131, and the sleeve 1223 is arranged in the clearance hole 1132. The sleeve 1223 can be disengaged from the notch 1131 and the clearance hole 1132 when the second shell 121 is detached from the first shell 111, thereby releasing the matching relationship between the first unlocking member 113 and the connecting shaft 1221.

[0038] Furthermore, the first module 110 also includes a second unlocking member 114 and a first terminal 115, and the second module 120 also includes a second terminal 124. The second unlocking member 114 is movably mounted on the first housing 111 and connected to the first terminal 115. The second terminal 124 is mounted on the second housing 121 and engages with the first terminal 115. The second unlocking member 114 can disengage the first terminal 115 from the second terminal 124 before the first module 110 and the second module 120 are disassembled, thereby facilitating the subsequent detachment of the second module 120 from the first module 110. Specifically, the first terminal 115 is used to connect to a power source, and the second terminal 124 is used to connect to the air guide assembly 123. When the first module 110 and the second module 120 are connected, the first terminal 115 engages with the second terminal 124 to connect the air guide assembly 123 to the power source, thereby providing power to the air guide assembly 123 and enabling normal air flow guidance. When the first module 110 and the second module 120 are separated, since the first terminal 115 has been separated from the second terminal 124, the first terminal 115 remains in the first shell 111, and the second terminal 124 is separated as the second shell 121, and the relative position of the second terminal 124 and the air guide assembly 123 remains unchanged, thereby facilitating the rapid disassembly and assembly of the second module 120.

[0039] In this embodiment, the first terminal 115 is a male terminal and the second terminal 124 is a female terminal. The first terminal 115 and the second terminal 124 are plugged together, making it easy to quickly and conveniently connect and disconnect the first terminal 115 and the second terminal 124. However, this is not limiting. In another embodiment, the first terminal 115 is a female terminal and the second terminal 124 is a male terminal. The first terminal 115 and the second terminal 124 are plugged together. In another embodiment, the first terminal 115 and the second terminal 124 are rotated to connect (similar to the rotational connection and disconnection of a light bulb). The method of connecting the first terminal 115 and the second terminal 124 is not specifically limited.

[0040] It is worth noting that during the disassembly process of the air conditioner 100, the first unlocking member 113 is first opened, and the first unlocking member 113 is used to drive the cross flow fan blade 122 away from the first drive motor 112 along its axial direction through the connecting shaft 1221, so that the output shaft 1121 is disengaged from the assembly hole 1222, and the matching relationship between the first drive motor 112 and the cross flow fan blade 122 is released. At the same time, the second unlocking member 114 is opened, and the second unlocking member 114 is used to drive the first wiring terminal 115 to be disengaged from the second wiring terminal 124, thereby releasing the matching relationship between the first wiring terminal 115 and the second wiring terminal 124; then the hook 1213 is disengaged from the buckle 1112, and the clamping matching relationship between the second shell 121 and the first shell 111 is released; then the second shell 121 is detached from the first shell 111. A shell 111. During this process, the sleeve 1223 sleeved on the outside of the connecting shaft 1221 is disengaged from the notch 1131 and the clearance hole 1132, so that the sleeve 1223 is separated from the first unlocking member 113, thereby releasing the matching relationship between the first unlocking member 113 and the connecting shaft 1221. After that, the first drive motor 112, the evaporator, the first unlocking member 113, the second unlocking member 114 and the first terminal 115 remain in the first shell 111, and the cross-flow fan blade 122, the air guide assembly 123 and the second terminal 124 are detached along with the second shell 121, completing the disassembly of the first module 110 and the second module 120; then the user can clean or maintain the various components in the first module 110 and the second module 120 as needed, which is convenient and quick.

[0041] During the installation process of the air conditioner 100, the first module 110 and the second module 120 are first assembled respectively; then the second shell 121 is closed with the first shell 111, so that the hook 1213 is engaged with the buckle 1112, and the second shell 121 is engaged with the first shell 111. During this process, the shaft sleeve 1223 sleeved on the outside of the connecting shaft 1221 extends from the notch 1131 into the clearance hole 1132 until the shaft sleeve 1223 is engaged with the first unlocking member 113, thereby achieving the engagement of the first unlocking member 113 with the connecting shaft 1221; then the first unlocking member 113 is reset, and the first unlocking member 113 is engaged with the first unlocking member 113. An unlocking member 113 drives the cross-flow fan blade 122 along its axial direction to approach the first drive motor 112 through the connecting shaft 1221, so that the output shaft 1121 extends into the assembly hole 1222, thereby realizing the cooperation between the first drive motor 112 and the cross-flow fan blade 122. At the same time, the second unlocking member 114 is reset, and the second unlocking member 114 is used to drive the first terminal 115 to be inserted into the second terminal 124, thereby realizing the cooperation between the first terminal 115 and the second terminal 124, completing the installation of the first module 110 and the second module 120; then the user can turn on the air conditioner 100 normally to adjust the indoor temperature.

[0042] In the air conditioner 100 according to the embodiment of the present invention, the first module 110 includes a first housing 111, the first housing 111 being provided with a receiving cavity 1111, and the second module 120 including a second housing 121 and an air duct assembly. The second housing 121 is detachably connected to the first housing 111, and the air duct assembly is installed in the second housing 121 and extends into the receiving cavity 1111. The air duct assembly can be withdrawn from the receiving cavity 1111 when the second housing 121 is detached from the first housing 111. Compared with the prior art, the air conditioner 100 provided by the present invention uses a detachably connected first housing 111 and second housing 121 and an air duct assembly installed in the second housing 121. Therefore, the disassembly and assembly process of the air conditioner 100 can be simplified, the number of disassembled parts can be reduced, labor costs and time costs can be saved, and disassembly and assembly efficiency can be improved, thereby facilitating cleaning or maintenance.

[0043] Although the present invention is disclosed as above, the present invention is not limited thereto. Any person skilled in the art can make various changes and modifications without departing from the spirit and scope of the present invention. Therefore, the scope of protection of the present invention should be based on the scope defined by the claims.

Claims

1. An air conditioner, characterized in that: The invention comprises a first module (110) and a second module (120), wherein the first module (110) comprises a first shell (111), the first shell (111) being provided with a receiving cavity (1111), and the second module (120) comprises a second shell (121) and an air duct assembly, the second shell (121) being detachably connected to the first shell (111), the air duct assembly being installed in the second shell (121) and extending into the receiving cavity (1111), and the air duct assembly being capable of exiting the receiving cavity (1111) when the second shell (121) is detached from the first shell (111).

2. The air conditioner according to claim 1, characterized in that The first module (110) further includes a first drive motor (112), the first drive motor (112) being installed in the accommodating cavity (1111), and the air duct assembly including a cross-flow fan blade (122), the cross-flow fan blade (122) cooperating with the first drive motor (112), and the cross-flow fan blade (122) being capable of being separated from the first drive motor (112) when the second shell (121) is detached from the first shell (111).

3. The air conditioner according to claim 2, characterized in that The second shell (121) is provided with an air duct (1211), the cross-flow blades (122) are arranged in the air duct (1211), and the second shell (121) is provided with an air outlet (1212), and the air outlet (1212) is communicated with the air duct (1211).

4. The air conditioner according to claim 3, characterized in that The second module (120) further includes an air guide assembly (123), the air guide assembly (123) being mounted on the second housing (121), and the air guide assembly (123) being used to adjust the outlet direction of the outlet air flow.

5. The air conditioner according to claim 4, characterized in that The wind guide assembly (123) includes a second drive motor (1231) and a wind guide plate (1232). The second drive motor (1231) is installed on the second shell (121) and connected to the wind guide plate (1232). The wind guide plate (1232) is rotatably installed on the air outlet (1212).

6. The air conditioner according to claim 2, characterized in that The first module (110) further includes a first unlocking member (113), which is movably mounted on the first housing (111); a connecting shaft (1221) is provided at one end of the cross-flow fan blade (122), and an assembly hole (1222) is provided at the other end; the connecting shaft (1221) and the assembly hole (1222) are coaxially arranged; the connecting shaft (1221) cooperates with the first unlocking member (113); the assembly hole (1222) cooperates with the output shaft (1121) of the first drive motor (112); the first unlocking member (113) can drive the cross-flow fan blade (122) away from the first drive motor (112) along its axial direction through the connecting shaft (1221), so that the output shaft (1121) is disengaged from the assembly hole (1222); the connecting shaft (1221) can be separated from the first unlocking member (113) when the second housing (121) is detached from the first housing (111).

7. The air conditioner according to claim 6, characterized in that The outer sleeve of the connecting shaft (1221) is provided with a shaft sleeve (1223), and the peripheral surface of the shaft sleeve (1223) is provided with an annular groove (1224). The first unlocking member (113) cooperates with the annular groove (1224), and the first unlocking member (113) can drive the connecting shaft (1221) to move through the shaft sleeve (1223); The first unlocking member (113) is provided with a clearance hole (1132) having a notch (1131), and the shaft sleeve (1223) is arranged in the clearance hole (1132). The shaft sleeve (1223) can be disengaged from the clearance hole (1132) through the notch (1131) when the second shell (121) is detached from the first shell (111).

8. The air conditioner according to claim 1, wherein: The first module (110) further includes a second unlocking member (114) and a first terminal (115), and the second module (120) further includes a second terminal (124). The second unlocking member (114) is movably mounted on the first housing (111) and connected to the first terminal (115). The second terminal (124) is mounted on the second housing (121) and cooperates with the first terminal (115). The second unlocking member (114) can drive the first terminal (115) to disengage from the second terminal (124).

9. The air conditioner according to claim 8, characterized in that The first wiring terminal (115) is a male terminal, the second wiring terminal (124) is a female terminal, and the first wiring terminal (115) and the second wiring terminal (124) are plugged into each other.

10. The air conditioner according to claim 1, wherein The first module (110) further includes an evaporator, which is installed in the accommodating cavity (1111) and is used to perform heat exchange on the outlet air flow.