Air conditioner

By introducing elastic parts and cover assembly into the air conditioner, combined with the sliding combination of the slide chute and guide column, the automatic disassembly and assembly of the sweeping motor and the sweeping assembly is realized, solving the problem of difficulty in disassembly and assembly in existing air conditioners and improving maintenance efficiency.

CN223216379UActive Publication Date: 2025-08-12NINGBO AUX ELECTRIC CO LTD +1
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Patent Information

Application Number
CN202422113705.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-28
Publication Date
2025-08-12
Estimated Expiration
2034-08-28

AI Technical Summary

Technical Problem

It is difficult to disassemble and assemble the sweeping motor and sweeping components in existing air conditioners, which makes the cleaning process time-consuming and labor-intensive.

Method used

An air conditioner is designed. By setting an elastic member and a cover assembly between the wind sweeper and the main body, the wind sweeper and the wind sweeper are automatically disassembled or assembled during the rotation of the housing sweeper, and the directional sliding is achieved by the cooperation of the sliding chute and the guide column, simplifying the disassembly and assembly process.

Benefits of technology

It realizes quick disassembly and assembly of the wind-sweeping motor and the wind-sweeping components, saving time and effort, and simplifies the maintenance process of the air conditioner.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an air conditioner, and relates to the technical field of air conditioners. The air conditioner comprises a main body and a housing assembly, an air sweeping assembly and an air sweeping motor are installed on the main body, and the housing assembly covers the main body and abuts against the air sweeping motor so that the air sweeping motor and the air sweeping assembly can be kept in inserted connection; an elastic part is arranged between the air sweeping motor and the main body, and the housing assembly is hinged to the main body and used for rotating relative to the main body under the action of external force until the housing assembly is disengaged from the air sweeping motor, so that the air sweeping motor moves under the action of the elastic part until the air sweeping assembly is disengaged from insertion. According to the air conditioner, the air sweeping motor and the air sweeping assembly can be disassembled and assembled conveniently and rapidly, and time and labor are saved.
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Description

Technical Field

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

[0002] The air conditioner is equipped with a sweeping motor and a sweeping assembly. The sweeping motor drives the sweeping assembly to swing left and right in the air duct, thereby achieving a left and right sweeping effect.

[0003] In air conditioners on the market, the air sweeping motor is usually fixed on the air duct. On the one hand, the air sweeping assembly and the air sweeping motor are difficult to disassemble. On the other hand, the air sweeping assembly and the air sweeping motor are connected. If the air conditioner needs to be deeply cleaned, the air sweeping assembly and the air sweeping motor must be disassembled together, and then installed together after the cleaning is completed. The disassembly and assembly process is very cumbersome, time-consuming and labor-intensive. Utility Model Content

[0004] The utility model solves the problem that the existing air conditioner has difficulty in disassembling and assembling the air sweeping motor and the air sweeping assembly.

[0005] In order to solve the above problems, the utility model provides an air conditioner, which can conveniently and quickly complete the disassembly and assembly of the air sweeping motor and the air sweeping assembly, saving time and labor.

[0006] The embodiment of the present utility model provides a technical solution:

[0007] An air conditioner comprises a main body and a cover assembly, wherein a wind sweep assembly and a wind sweep motor are mounted on the main body, and the cover assembly covers the main body and supports the wind sweep motor so that the wind sweep motor and the wind sweep assembly remain plugged in; an elastic member is provided between the wind sweep motor and the main body, and the cover assembly is hinged to the main body for rotating relative to the main body under the action of an external force until it disengages from the wind sweep motor, so that the wind sweep motor moves under the action of the elastic member to disengage from the wind sweep assembly.

[0008] In actual application, the air conditioner provided by the embodiment of the present utility model is that after the cover assembly is lifted, the wind sweeping motor slides on the main body to a position where it is disconnected from the wind sweeping assembly under the thrust of the elastic member, completing the separation between the wind sweeping motor and the wind sweeping assembly; in the process of rotating the cover assembly to the covered state, the cover assembly pushes the wind sweeping motor to reset and slide on the main body, sliding to a position where it is connected to the wind sweeping assembly, and automatically completing the assembly between the wind sweeping motor and the wind sweeping assembly. It can be seen that the disassembly and assembly operations between the wind sweeping motor and the wind sweeping assembly are all completed during the process of rotating the cover assembly relative to the main body, and no additional disassembly and assembly operations are required. Therefore, the air conditioner provided by the embodiment of the present utility model can conveniently and quickly complete the disassembly and assembly between the wind sweeping motor and the wind sweeping assembly, saving time and effort.

[0009] In an optional embodiment, a slider is provided on the main body, and a slide groove is provided on the side wall of the wind sweeping motor. The slider is embedded in the slide groove and slides with the slide groove. The wind sweeping component is at one end of the slide groove, and the cover component is abutted against the side of the wind sweeping motor away from the wind sweeping component.

[0010] The directional sliding of the wind sweeping motor is achieved through the sliding cooperation between the recessed sliding groove on the side wall of the wind sweeping motor and the slider provided on the main body, ensuring that the wind sweeping motor slides smoothly on the main body and can be accurately plugged into the wind sweeping assembly.

[0011] In an optional embodiment, a guide column is protruding from one side of the wind sweeping motor corresponding to the wind sweeping component, the guide column is parallel to the slide groove, the elastic member is a spring, and the spring is sleeved on the guide column.

[0012] The spring is sleeved on the guide column, which supports the spring and fixes the expansion and contraction direction of the spring, thereby ensuring that the sliding process of the wind sweeping motor is stable and the sliding direction is accurate.

[0013] In an optional embodiment, the wind sweeping motor includes a motor body and a motor casing, the slide groove is recessed in the outer surface of the motor casing, the top of the motor casing is open, the motor body is arranged inside the motor casing, and the rotating shaft of the motor body extends out of the motor casing and is plugged into the wind sweeping component, and the guide column is protruded on the inner bottom wall of the motor casing.

[0014] The guide post is convexly arranged on the inner bottom wall of the motor housing, and the motor housing accommodates the spring, thereby improving the structural integrity and reducing the difficulty of assembly.

[0015] In an optional embodiment, the wind sweeping motor is arranged at the bottom end of the main body, the cover assembly is hinged to the top end of the main body, and is used to rotate in a vertical plane relative to the main body, and the inner surface of the bottom end of the cover assembly is against the wind sweeping motor.

[0016] The cover assembly can rotate in a vertical plane. During the upward rotation, the bottom end of the cover assembly has the largest movement stroke, which can quickly release the support on the wind-sweeping motor. That is, the cover assembly only needs to rotate within a small angle to complete the disassembly and assembly of the wind-sweeping motor, thereby improving the disassembly and assembly efficiency of the wind-sweeping motor.

[0017] In an optional embodiment, the main body includes a base and a downwind duct detachably connected to the base, a clearance window is provided on the downwind duct, the wind sweeping motor is movably mounted on the base and is located in the clearance window, and the cover assembly supports the wind sweeping motor on the outside of the clearance window.

[0018] The setting of the clearance window provides an avoidance space for the air sweeping motor to slide on the base, ensuring that the air sweeping motor can slide smoothly relative to the air sweeping assembly.

[0019] In an optional embodiment, the wind sweeping assembly is installed on the downwind duct, the wind sweeping motor is slidably installed on the base, and the wind sweeping assembly and the clearance window are located at opposite ends of the sliding direction of the wind sweeping motor.

[0020] In an optional embodiment, the cover assembly includes a front panel, side panels and a bottom panel that are interconnected, the front panel covers the front side of the main body, the two side panels respectively cover the left and right ends of the main body and are hinged to the main body, and the bottom panel covers the bottom end of the main body and supports the wind-sweeping motor.

[0021] In an optional embodiment, the surface of the wind sweeping motor has a pushing surface. When the wind sweeping motor is disengaged from the wind sweeping assembly, the pushing surface is used to contact and slide relative to the cover assembly during the rotation of the cover assembly, so as to drive the wind sweeping motor to slide until it is connected to the wind sweeping assembly.

[0022] During the rotation of the cover assembly, the cover assembly slides on the push surface of the wind sweep motor, thereby pushing the wind sweep motor toward the wind sweep assembly until it is fully connected to the wind sweep assembly. The provision of the push surface prevents the cover assembly from stopping its return rotation when the wind sweep motor slides and disengages from the wind sweep assembly, ensuring smooth switching from the disassembled state to the assembled state.

[0023] In an optional embodiment, the wind sweeping motor is arranged at the bottom end of the main body, the cover assembly is hinged to the top end of the main body, and the pushing surface is located between the front side and the bottom side of the wind sweeping motor and is inclined relative to the vertical plane.

[0024] The pushing surface is located between the front side and the bottom side of the wind sweeping motor, and is inclined relative to the vertical plane to ensure that when the cover assembly rotates downward to cover the bottom of the front side of the main body, the wind sweeping motor can be smoothly pushed to slide upward, ensuring that the assembly process is completed smoothly. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 A schematic structural diagram of an air conditioner provided in an embodiment of the present utility model;

[0026] Figure 2 A schematic diagram of the exploded structure of an air conditioner provided in an embodiment of the present utility model;

[0027] Figure 3 A cross-sectional view of the air conditioner's main body, air sweeping assembly, and air sweeping motor connection structure;

[0028] Figure 4 for Figure 3 A magnified schematic diagram of area A in the middle;

[0029] Figure 5 for Figure 2 A magnified schematic diagram of area B in the middle;

[0030] Figure 6 Another cross-sectional view of the air conditioner main body, the air sweep assembly and the air sweep motor connection structure;

[0031] Figure 7 for Figure 6 Enlarged schematic diagram of the middle C area;

[0032] Figure 8 Schematic diagram of the structure of the downwind duct;

[0033] Figure 9 for Figure 8 Schematic enlargement of region D in the middle.

[0034] Description of reference numerals:

[0035] 100-air conditioner; 110-main body; 111-slider; 112-base; 1121-pipe protection plate section; 1122-arc-shaped guide sliding wall; 113-downwind duct; 1131-yield window; 1132-lap plate section; 1133-arc-shaped matching plate; 1134-installation portion; 1135-avoidance hole; 120-air sweeping assembly; 130-air sweeping motor; 131-slide groove; 132-guide column; 133-motor body; 134-motor housing; 135-pushing surface; 140-elastic member; 150-cover assembly; 151-front panel; 152-side panel; 153-bottom panel. DETAILED DESCRIPTION

[0036] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific embodiments of the present invention are described in detail below with reference to the accompanying drawings.

[0037] Please refer to Figure 1 and Figure 2 , Figure 1 FIG. 1 is a structural diagram of an air conditioner 100 provided in this embodiment. Figure 2 FIG. 1 is a schematic diagram of the exploded structure of the air conditioner 100 .

[0038] The air conditioner 100 provided in this embodiment includes a main body 110 and a cover assembly 150. The main body 110 is equipped with a wind sweeping assembly 120 and a wind sweeping motor 130. The wind sweeping motor 130 is plugged into the wind sweeping assembly 120. The cover assembly 150 is covered on the main body 110.

[0039] Please refer to Figure 3 and Figure 4 , Figure 3 The figure shows a cross-sectional view of the connection structure of the main body 110, the air sweeping assembly 120 and the air sweeping motor 130. Figure 4 Shown Figure 3 A magnified schematic diagram of area A in the middle.

[0040] An elastic member 140 is disposed between the wind sweeping motor 130 and the main body 110. The wind sweeping motor 130 is slidably disposed on the main body 110. The elastic member 140 is in a compressed state, with its opposite ends respectively abutting against the wind sweeping motor 130 and the main body 110. A cover assembly 150 abuts against the wind sweeping motor 130 to maintain the connection between the wind sweeping motor 130 and the wind sweeping assembly 120. The cover assembly 150 is hingedly connected to the main body 110 and is configured to rotate relative to the main body 110 under the action of an external force until it disengages from the wind sweeping motor 130, allowing the wind sweeping motor 130 to slide and disengage from the wind sweeping assembly 120 under the push of the elastic member 140.

[0041] It can be understood that under normal working conditions, the elastic member 140 in a compressed state continuously applies force to the wind sweeping motor 130, so that the wind sweeping motor 130 has a movement tendency to withdraw from the wind sweeping assembly 120, and the cover assembly 150 stops the wind sweeping motor 130 from moving, ensuring that the wind sweeping motor 130 and the wind sweeping assembly 120 remain in a plugged state.

[0042] When the cover assembly 150 rotates a certain angle relative to the main body 110, the cover assembly 150 and the wind sweeping motor 130 are disengaged, that is, the stop on the wind sweeping motor 130 is released. In this case, the elastic member 140 smoothly extends, pushing the wind sweeping motor 130 to slide on the main body 110 away from the wind sweeping assembly 120 until it is disconnected from the wind sweeping assembly 120, completing the separation of the wind sweeping motor 130 and the wind sweeping assembly 120.

[0043] When the wind sweeping motor 130 is disconnected from the wind sweeping assembly 120, the cover assembly 150 is reset and rotated. During the rotation, the cover assembly 150 pushes the wind sweeping motor 130 to reset and slide, and the elastic member 140 is gradually compressed until the wind sweeping motor 130 slides to be reconnected with the wind sweeping motor 130, completing the assembly between the wind sweeping motor 130 and the wind sweeping assembly 120.

[0044] As can be seen, in the air conditioner 100 provided in this embodiment, the disassembly and assembly operations between the air sweep motor 130 and the air sweep assembly 120 are automatically completed during the rotation of the housing assembly 150 relative to the main body 110, and no additional disassembly and assembly operations are required. Therefore, the air conditioner 100 provided in this embodiment of the utility model can conveniently and quickly complete the disassembly and assembly between the air sweep motor 130 and the air sweep assembly 120, saving time and effort.

[0045] Please refer to Figure 5 , Figure 5 Shown Figure 2 Schematic diagram of the enlarged area B.

[0046] In this embodiment, a slider 111 is provided on the main body 110, and a slide groove 131 is protruded on the side wall of the wind sweeping motor 130. The slider 111 is embedded in the slide groove 131 and slides with the slide groove 131. The wind sweeping assembly 120 is at one end of the slide groove 131, and the cover assembly 150 is against the side of the wind sweeping motor 130 away from the wind sweeping assembly 120.

[0047] By sliding cooperation between the slider 111 protruding from the side wall of the wind sweeping motor 130 and the slide groove 131 set on the main body 110, the directional sliding of the wind sweeping motor 130 is achieved, ensuring that the sliding process of the wind sweeping motor 130 on the main body 110 is smooth, and ensuring that the wind sweeping motor 130 can be accurately plugged in and out of the wind sweeping component 120.

[0048] Please refer to Figure 6 and Figure 7 , Figure 6 Another cross-sectional view of the connection structure of the main body 110, the air sweeping assembly 120 and the air sweeping motor 130 is shown. Figure 7 Shown Figure 6 Schematic diagram of the enlarged area C in the middle.

[0049] In fact, to limit the sliding movement of the wind sweep motor 130, in this embodiment, the end of the chute 131 near the wind sweep assembly 120 is closed. It is understood that when the elastic member 140 pushes the wind sweep motor 130 to drive the slider 111 to slide along the chute 131, because the end of the chute 131 near the wind sweep assembly 120 is closed, when the slider 111 slides to the closed end of the chute 131, it abuts against the closed end, preventing the wind sweep motor 130 from sliding further. This prevents the wind sweep motor 130 from falling to the ground due to the push of the elastic member 140 after the cover assembly 150 is lifted. In other words, after the cover assembly 150 is lifted, the limit position of the wind sweep motor 130's sliding movement remains on the main body 110.

[0050] Please continue reading Figure 4 To ensure smooth sliding of the air sweeping motor 130, in this embodiment, a guide post 132 is protruding from the side of the air sweeping motor 130 corresponding to the air sweeping assembly 120. The guide post 132 is parallel to the slide slot 131, and the elastic member 140 is a spring that is sleeved on the guide post 132. The guide post 132 supports and limits the spring, ensuring that the spring can expand and contract in the direction of the slide slot 131.

[0051] In this embodiment, the air sweeping motor 130 includes a motor body 133 and a motor housing 134. The slide groove 131 is recessed on the outer surface of the motor housing 134. The top of the motor housing 134 is open. The motor body 133 is arranged inside the motor housing 134, and the rotating shaft of the motor body 133 extends out of the motor housing 134 and is plugged into the air sweeping assembly 120. The guide column 132 is protruded on the inner bottom wall of the motor housing 134.

[0052] Since the guide post 132 is protruded from the inner bottom wall of the motor housing 134 and the spring is sleeved on the guide post 132, the motor housing 134 can accommodate the spring, thereby improving the integrity and stability of the structure, simplifying the overall structure and reducing the difficulty of assembly.

[0053] The wind sweeping motor 130 is arranged at the bottom end of the main body 110 , and the cover assembly 150 is hinged to the top end of the main body 110 for rotating in a vertical plane relative to the main body 110 . The inner surface of the bottom end of the cover assembly 150 abuts against the wind sweeping motor 130 .

[0054] In fact, the main body 110 includes a base 112 and a downwind duct 113. The cover assembly 150 is hinged to the top of the base 112. The downwind duct 113 is at the bottom end of the base 112 and is detachably connected to the base 112. The wind sweeping assembly 120 is arranged in the downwind duct 113, and the wind sweeping motor 130 is slidably arranged on the base 112.

[0055] It is understood that in actual use, when it is necessary to clean the internal structures of the air duct, including the crossflow blades, the downwind duct 113 needs to be detached from the base 112. In this case, the cover assembly 150 only needs to be lifted upward until the support on the air sweep motor 130 is released, and the air sweep motor 130 can then slide on the base 112 until it is disconnected from the air sweep assembly 120 on the downwind duct 113. In other words, the air sweep motor 130 automatically releases the restraint on the downwind duct 113, so the downwind duct 113 can be smoothly detached from the base 112 without the need for additional separation operations of the air sweep motor 130 and the air sweep assembly 120.

[0056] Similarly, when reassembling the downwind duct 113, after establishing the connection between the downwind duct 113 and the base 112, there is no need to perform additional assembly operations on the wind sweeping motor 130 and the wind sweeping assembly 120. It is only necessary to rotate the cover assembly 150 downward to the covering state. The cover assembly 150 will push the wind sweeping motor 130 to slide on the base 112 until it is plugged into the wind sweeping assembly 120 on the downwind duct 113, thereby completing the assembly between the wind sweeping motor 130 and the wind sweeping assembly 120 simultaneously.

[0057] It can be seen that the air conditioner 100 provided in this embodiment does not require additional disassembly and assembly operations between the air sweeping motor 130 and the air sweeping assembly 120, so the disassembly and assembly process between the downwind duct 113 and the base 112 is convenient and fast, saving time and effort.

[0058] In this embodiment, the cover assembly 150 includes a front panel 151, a side panel 152 and a bottom panel 153 that are interconnected. The front panel 151 covers the front side of the main body 110, the two side panels 152 respectively cover the left and right ends of the main body 110 and are hinged to the main body 110, and the bottom panel 153 covers the bottom end of the main body 110 and supports the wind-sweeping motor 130.

[0059] In order to ensure that the wind sweeping motor 130 can be smoothly pushed to be plugged into the wind sweeping assembly 120 during the closing process of the cover assembly 150, in this embodiment, the surface of the wind sweeping motor 130 has a pushing surface 135. When the wind sweeping motor 130 is disengaged from the wind sweeping assembly 120, the pushing surface 135 is used to contact and slide relatively with the cover assembly 150 during the rotation of the cover assembly 150, so as to drive the wind sweeping motor 130 to slide to be plugged into the wind sweeping assembly 120.

[0060] In fact, during the process of closing and rotating the cover assembly 150, its bottom panel 153 will slide relatively on the pushing surface 135 of the sweeping motor 130 to push the sweeping motor 130 to plug into the sweeping assembly 120. In order to ensure the reliability of the pushing process, in this embodiment, the pushing surface 135 is located between the front side and the bottom side of the sweeping motor 130, and is inclined relative to the vertical plane.

[0061] During the rotation of the housing assembly 150, the bottom panel 153 of the housing assembly 150 slides on the push surface 135 of the wind sweeping motor 130, thereby pushing the wind sweeping motor 130 to slide toward the wind sweeping assembly 120 until it is fully connected to the wind sweeping assembly 120. The provision of the push surface 135 prevents the housing assembly 150 from being stopped from resetting when the wind sweeping motor 130 slides and becomes disconnected from the wind sweeping assembly 120, thereby ensuring that the housing assembly 150 can be freely switched from the disassembled state to the assembled state.

[0062] Please refer to Figure 8 and Figure 9 , Figure 8 Shown is a schematic structural diagram of the downwind duct 113. Figure 9 Shown Figure 8 Schematic enlargement of region D in the middle.

[0063] In order to further ensure that the wind sweeping motor 130 can slide smoothly and the downwind duct 113 can be detached from the base 112 without being blocked by the wind sweeping motor 130, in this embodiment, a clearance window 1131 is opened on the downwind duct 113, and the wind sweeping motor 130 is located in the clearance window 1131. The clearance window 1131 serves to avoid the sliding stroke of the wind sweeping motor 130.

[0064] Specifically, the air sweep motor 130 is slidably mounted on a protruding pipe protection plate section 1121 at the rear bottom end of the base 112, protruding from the front surface of the pipe protection plate section 1121. A lap plate section 1132 is provided on the rear side of the downwind duct 113, covering the front surface of the pipe protection plate section 1121. A clearance window 1131 is provided through the lap plate section 1132.

[0065] In this embodiment, the pipe protection plate section 1121 and the base 112 are an integral structure, and the overlapping plate section 1132 of the downwind duct 113 covers the front surface of the pipe protection plate section 1121. The pipe protection plate section 1121 supports the overlapping plate section 1132, thereby supporting the downwind duct 113.

[0066] In practice, during assembly, the downwind duct 113 extends upward from the bottom end of the base 112 into the base 112 until the overlapping plate section 1132 of the downwind duct 113 overlaps the pipe protection plate section 1121 of the base 112. At this point, the air sweeping motor 130 is located within the clearance window 1131. During disassembly, the downwind duct 113 moves downward and gradually exits the base 112. The air sweeping motor 130 also exits the clearance window 1131, avoiding obstruction to the movement of the downwind duct 113.

[0067] The rear side of the base 112 is provided with a curved guide wall 1122, with the pipe protection plate section 1121 connected to the bottom end of the curved guide wall 1122 at an angle. The rear side of the downflow duct 113 is provided with a curved mating plate 1133, with the overlapping plate section 1132 connected to the bottom end of the curved mating plate 1133 at an angle. The curved mating plate 1133 covers the inner surface of the curved guide wall 1122 and is used to slide in and out of the base 112 along the curved guide wall 1122.

[0068] It is understood that the curved guide wall 1122 is concavely curved, while the rear surface of the curved mating plate 1133 is convexly curved, conforming to the curved guide wall 1122. The front surface of the curved mating plate 1133 is the rear surface of the surrounding air duct. In other words, the front surface of the curved mating plate 1133 is the inner surface, and the rear surface of the curved mating plate 1133 is the outer surface.

[0069] As the downwind duct 113 slides relative to the base 112, the curved mating plate 1133 of the downwind duct 113 abuts and slides relative to the curved guide wall 1122 within the base 112. The curved guide wall 1122 supports and guides the sliding of the downwind duct 113. As the curved mating plate 1133 gradually slides into the base 112 along the curved guide wall 1122, the lap plate section 1132 at the bottom of the curved mating plate 1133 gradually approaches the pipe protection plate section 1121 at the bottom of the base 112. During this process, the clearance window 1131 clears the air sweeping motor 130.

[0070] As can be seen, because the clearance window 1131 is formed on the overlapping plate section 1132, and the overlapping plate section 1132 is connected to the bottom end of the curved matching plate 1133 at an angle, when the curved matching plate 1133 of the downwind duct 113 slides forward and downward along the curved guide wall 1122 of the base 112, the wind sweep motor 130, which has been disconnected from the wind sweep assembly 120, can naturally exit the clearance window 1131. In other words, the process of the downwind duct 113 exiting the base 112 is not blocked by the wind sweep motor 130.

[0071] The bottom inner surface of the arc-shaped mating plate 1133 is provided with a mounting portion 1134, on which the air sweeping assembly 120 is mounted. A clearance hole 1135 is also provided through the arc-shaped mating plate 1133. The clearance hole 1135 is aligned with the rotating shaft of the air sweeping motor 130, and the input end of the air sweeping assembly 120 passes through the clearance hole 1135 and plugs into the rotating shaft.

[0072] In the process of lifting the cover assembly 150 upwards, the cover assembly 150 releases its support on the wind sweeping motor 130, and the elastic member 140 pushes the wind sweeping motor 130 to slide in the clearance window 1131 until it is disconnected from the wind sweeping assembly 120, that is, the constraint between the wind sweeping motor 130 and the downwind duct 113 is released, and then the downwind duct 113 can be smoothly withdrawn from the base 112, and there is no need to disassemble the wind sweeping motor 130 during the entire process.

[0073] During assembly of the downwind duct 113, the curved mating plate 1133 of the downwind duct 113 is inserted into the base 112 along the curved guide wall 1122 of the base 112, positioning the air sweep motor 130 within the clearance window 1131. The cover assembly 150 is then closed and rotated. During this process, the cover assembly 150 pushes the air sweep motor 130 to slide within the clearance window 1131 until it engages with the air sweep assembly 120 on the downwind duct 113. This means that during assembly and disassembly of the downwind duct 113 from the base 112, no additional assembly and disassembly of the air sweep motor 130 and air sweep assembly 120 is required, making the entire process quick and convenient, saving time and effort.

[0074] In summary, the air conditioner 100 provided in this embodiment has the characteristics of convenient and fast disassembly and assembly, saving time and effort.

[0075] Although the present invention is disclosed as above, it is not limited thereto. Any person skilled in the art may 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 shall be subject to the scope defined by the claims.

Claims

1. An air conditioner, characterized in that: The invention comprises a main body (110) and a cover assembly (150), wherein a wind sweeping assembly (120) and a wind sweeping motor (130) are installed on the main body (110), and the cover assembly (150) is covered on the main body (110) and abuts against the wind sweeping motor (130) so that the wind sweeping motor (130) and the wind sweeping assembly (120) are kept plugged in. An elastic member (140) is provided between the wind sweeping motor (130) and the main body (110), and the cover assembly (150) is hinged to the main body (110) and is used to rotate relative to the main body (110) under the action of an external force until it is disengaged from the wind sweeping motor (130), so that the wind sweeping motor (130) moves under the action of the elastic member (140) to be disengaged from the wind sweeping assembly (120).

2. The air conditioner according to claim 1, characterized in that A slider (111) is provided on the main body (110), a slide groove (131) is provided on the side wall of the wind sweeping motor (130), the slider (111) is embedded in the slide groove (131) and slides with the slide groove (131), the wind sweeping component (120) is located at one end of the slide groove (131), and the cover component (150) is in contact with the side of the wind sweeping motor (130) away from the wind sweeping component (120).

3. The air conditioner according to claim 2, characterized in that A guide column (132) is protruding from one side of the wind sweeping motor (130) corresponding to the wind sweeping assembly (120), and the guide column (132) is parallel to the slide groove (131). The elastic member (140) is a spring, and the spring is sleeved on the guide column (132).

4. The air conditioner according to claim 3, characterized in that The wind sweeping motor (130) includes a motor body (133) and a motor housing (134), the slide groove (131) is recessed in the outer surface of the motor housing (134), the top of the motor housing (134) is open, the motor body (133) is arranged inside the motor housing (134), and the rotating shaft of the motor body (133) extends out of the motor housing (134) and is plugged into the wind sweeping component (120), and the guide column (132) is protruded on the inner bottom wall of the motor housing (134).

5. The air conditioner according to claim 1, characterized in that The wind sweeping motor (130) is arranged at the bottom end of the main body (110), and the cover assembly (150) is hinged to the top end of the main body (110) for rotating in a vertical plane relative to the main body (110). The inner surface of the bottom end of the cover assembly (150) abuts against the wind sweeping motor (130).

6. The air conditioner according to claim 5, characterized in that The main body (110) includes a base (112) and a downwind duct (113) detachably connected to the base (112); a clearance window (1131) is provided on the downwind duct (113); the wind sweeping motor (130) is movably mounted on the base (112) and is located in the clearance window (1131); and the cover assembly (150) abuts against the wind sweeping motor (130) on the outer side of the clearance window (1131).

7. The air conditioner according to claim 6, characterized in that The wind sweeping assembly (120) is installed on the downwind duct (113), the wind sweeping motor (130) is slidably installed on the base (112), and the wind sweeping assembly (120) and the clearance window (1131) are located at opposite ends in the sliding direction of the wind sweeping motor (130).

8. The air conditioner according to claim 1, wherein: The housing assembly (150) comprises a front panel (151), side panels (152) and a bottom panel (153) which are connected to each other. The front panel (151) covers the front side of the main body (110). The two side panels (152) respectively cover the left and right ends of the main body (110) and are hinged to the main body (110). The bottom panel (153) covers the bottom end of the main body (110) and supports the wind sweeping motor (130).

9. The air conditioner according to claim 1, wherein: The surface of the wind sweeping motor (130) has a pushing surface (135). When the wind sweeping motor (130) is disconnected from the wind sweeping assembly (120), the pushing surface (135) is used to contact and slide relatively with the cover assembly (150) during the rotation of the cover assembly (150), so as to drive the wind sweeping motor (130) to slide until it is connected to the wind sweeping assembly (120).

10. The air conditioner according to claim 9, characterized in that The wind sweeping motor (130) is arranged at the bottom end of the main body (110), the cover assembly (150) is hinged to the top end of the main body (110), and the pushing surface (135) is located between the front side and the bottom side of the wind sweeping motor (130) and is inclined relative to the vertical plane.