Air conditioner

The AC design with a bottom handle and optional spring assistance simplifies the lifting process, addressing the cumbersome operation of existing ACs by enabling single-handed, efficient shell opening.

CN223106159UActive Publication Date: 2025-07-15NINGBO AUX ELECTRIC CO LTD +1
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Patent Information

Application Number
CN202422113700.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-28
Publication Date
2025-07-15
Estimated Expiration
2034-08-28

AI Technical Summary

Technical Problem

The housing assembly of the existing air conditioner is inconvenient to operate, which is time-consuming and labor-intensive.

Method used

A clasp hand is provided on the bottom panel of the cover assembly. The cover assembly is hinged with the main body. The bottom panel faces the ground and can be lifted with one hand. Combined with the elastic assist and locking part design, it can achieve a labor-saving and fast lifting process.

Benefits of technology

By setting up the buckle and elastic assist, the difficulty and operation force of the case assembly are reduced, ensuring the smooth lifting process and improving the operating efficiency.

✦ 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 duct is arranged on the main body, an air outlet corresponding to the air duct is formed in the housing assembly, and the housing assembly covers the main body; the top of the housing assembly is hinged to the main body, the bottom of the housing assembly is provided with a bottom panel covering the bottom side surface of the main body, the bottom panel is provided with a buckle, and the buckle is used for being stressed to drive the housing assembly to turn over in a vertical plane. According to the air conditioner, the housing assembly can be conveniently and rapidly lifted, and time and labor are saved.
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Description

Technical Field

[0001] The utility model relates to the technical field of air conditioners, and more specifically, to an air conditioner. Background Art

[0002] At present, for some air conditioners on the market, the surface cover assembly can be lifted to clean the internal structure.

[0003] When lifting the cover assembly of such an air conditioner, in order to ensure a stable lifting process, the user needs to apply upward thrusts to the left and right ends of the cover assembly with both hands respectively, which is extremely inconvenient to operate and time-consuming and laborious. Summary of the Utility Model

[0004] The problem solved by the utility model is that the lifting operation of the cover assembly of the existing air conditioner is extremely inconvenient and time-consuming and laborious.

[0005] To solve the above problem, the utility model provides an air conditioner, the cover assembly of which can be lifted conveniently and quickly, saving time and effort.

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

[0007] An air conditioner includes a main body and a cover assembly. An air duct is provided on the main body, and an air outlet corresponding to the air duct is opened on the cover assembly. The cover assembly covers the main body.

[0008] The top of the cover assembly is hinged to the main body. The bottom of the cover assembly has a bottom panel covering the bottom side surface of the main body. A handle is provided on the bottom panel, and the handle is used to drive the cover assembly to flip in the vertical plane by applying force.

[0009] For the air conditioner provided by the embodiment of the utility model, the cover assembly is provided with a handle on its bottom panel, and the bottom panel faces the ground, which is convenient for the user to operate at a low position. The user can complete the lifting operation by applying a force to the handle with one hand. Moreover, since the top of the cover assembly is hinged to the main body and the handle is provided on the bottom panel of the cover assembly that is farthest from the hinged position, the lever arm of the lifting force applied to the handle is the longest and the most labor-saving. Also, during the process of the cover assembly being lifted upward, the handle is located between the left and right ends of the cover assembly, and the user can use the handle to maintain the state of the cover assembly stable with one hand, ensuring a smooth and stable lifting process. Therefore, for the air conditioner provided by the utility model, the cover assembly can be lifted conveniently and quickly, saving time and effort.

[0010] In an optional embodiment, the bottom panel is located below the air outlet, and in the length direction of the air outlet, the handle is located at the middle position of the bottom panel.

[0011] The buckle is located at the middle position of the bottom panel, ensuring that when the user operates with one hand, the cover assembly can be lifted upward in a stable state.

[0012] In an alternative embodiment, the bottom panel is provided with a buckle window, and the buckle is located within the buckle window and connected to the bottom panel.

[0013] The buckle window provides a clearance space for operating the buckle, and the buckle being within the buckle window avoids occupying indoor space.

[0014] In an alternative embodiment, an elastic assisting member is provided between the cover assembly and the main body.

[0015] By providing an elastic assisting member between the cover assembly and the main body, it plays an assisting role in lifting the cover assembly, making the lifting operation more labor-saving.

[0016] In an alternative embodiment, a locking member is further provided on the cover assembly, a locking end is provided on the main body, and the locking member cooperates with the locking end to lock the cover assembly. The locking member is also used to be disengaged from the locking end under force to release the locking of the cover assembly.

[0017] When the cover assembly covers the main body, the locking member cooperates with the locking end on the main body to lock the cover assembly, preventing the cover assembly from being accidentally lifted and ensuring the normal operation of the air conditioner. When it is necessary to lift the cover assembly, adjusting the locking member to be disengaged from the locking end can unlock the cover assembly.

[0018] The buckle is movably arranged on the bottom panel and is used to move relative to the bottom panel when receiving a force from the rear to the front, so as to drive the locking member to move to be disengaged from the locking end, realizing unlocking and driving the cover assembly to flip upward relative to the main body.

[0019] The action of applying a lifting force to the buckle is to pull upward from the bottom. While unlocking the cover assembly, an initial force for flipping the cover assembly is also applied, providing a thrust to make it easier for the cover assembly to rotate upward.

[0020] In an alternative embodiment, the locking member is provided on the bottom panel, and the locking end is provided on the bottom side surface of the main body.

[0021] The bottom panel and the bottom side surface of the main body are positions far from the hinge point. Arranging the locking end and the locking member here can provide stable and reliable locking for the cover assembly, preventing the cover assembly from opening.

[0022] In an alternative embodiment, the cover assembly further has a front panel covering the front side surface of the main body, a left side panel covering the left side surface of the main body, and a right side panel covering the right side surface of the main body;

[0023] The left and right ends of the bottom panel and the front panel are respectively connected to the left side plate and the right side plate, and together enclose the air outlet.

[0024] In an alternative embodiment, the top ends of the left side plate and / or the right side plate are hinged to the main body.

[0025] In an alternative embodiment, rotating shafts are convexly provided on the inner surfaces of the left side plate and the right side plate. The two rotating shafts are coaxially arranged and are rotatably inserted into the main body.

[0026] By arranging two coaxially arranged rotating shafts on the left side plate and the right side plate and inserting them into the left and right ends of the main body, the smoothness of the rotation process of the housing assembly is ensured. Description of the Drawings

[0027] Figure 1 Schematic structural diagram of an air conditioner provided by an embodiment of the present invention;

[0028] Figure 2 Schematic structural diagram of the air conditioner provided by the embodiment of the present invention after the housing assembly is lifted, from the first perspective;

[0029] Figure 3 Schematic structural diagram of the air conditioner provided by the embodiment of the present invention after the housing assembly is lifted, from the second perspective;

[0030] Figure 4 is Figure 3 Enlarged schematic diagram of area A in;

[0031] Figure 5 is Figure 3 Enlarged schematic diagram of area B in;

[0032] Figure 6 Schematic structural diagram of the locking member cooperating with the locking end;

[0033] Figure 7 Schematic structural diagram of the locking member disengaging from the locking end.

[0034] Description of the Reference Numerals:

[0035] 10 - Air conditioner; 100 - Main body; 110 - Locking end; 111 - Hook; 112 - Guiding inclined surface; 200 - Housing assembly; 210 - Air outlet; 220 - Bottom panel; 221 - Handle; 2211 - Pushing inclined surface; 222 - Handle window; 223 - Locking member; 2231 - Guiding sliding inclined surface; 2232 - Slide bar; 2233 - Buckle; 224 - Slide rail; 230 - Front panel; 240 - Left side plate; 250 - Right side plate; 260 - Support wall; 261 - Guiding sliding hole. Detailed implementation manners

[0036] To make the above objects, features, and advantages of the present utility model more obvious and understandable, the following will describe in detail the specific embodiments of the present utility model with reference to the accompanying drawings.

[0037] Please refer to Figure 1 and Figure 2 , Figure 1 which shows a schematic structural diagram of the air conditioner 10 provided in this embodiment. Figure 2 which shows a schematic structural diagram of the air conditioner 10 in the first perspective after the cover assembly 200 is lifted.

[0038] The air conditioner 10 provided in this embodiment includes a main body 100 and a cover assembly 200. The cover assembly 200 is disposed on the main body 100 and is hinged to the main body 100. The rotation center line of the cover assembly 200 is horizontal and can rotate relative to the main body 100 in the vertical plane under the action of an external force.

[0039] In Figure 1 the state shown, the air conditioner 10 can operate normally. A wind duct is provided on the main body 100, and an air outlet 210 corresponding to the wind duct is opened on the cover assembly 200. The cover assembly 200 is disposed on the main body 100, covering various internal structures of the air conditioner 10, including the fan blade, evaporator, etc.

[0040] When it is necessary to clean the internal structure of the air conditioner 10, a force can be applied to the cover assembly 200 to make it rotate upward relative to the main body 100, that is, lift the cover assembly 200 to expose the internal structure of the air conditioner 10. That is, the air conditioner 10 switches from Figure 1 the state shown to Figure 2 the state shown.

[0041] In this embodiment, the cover assembly 200 includes a bottom panel 220, a front panel 230, a left side panel 240, and a right side panel 250. The bottom panel 220 covers the bottom surface of the main body 100, the front panel 230 covers the front surface of the main body 100, the left side panel 240 and the right side panel 250 are oppositely disposed on the left and right sides of the main body 100, and the two ends of the bottom panel 220 and the front panel 230 are respectively connected to the left side panel 240 and the right side panel 250.

[0042] The bottom panel 220, the front panel 230, the left side panel 240, and the right side panel 250 jointly enclose the air outlet 210. The bottom panel 220 is located below the air outlet 210, the front panel 230 is located above the air outlet 210, and the left side panel 240 and the right side panel 250 are respectively located at the left and right ends of the air outlet 210.

[0043] It should be noted that the orientation relationship in this embodiment is defined based on the state that the air conditioner 10 is installed on the wall. When the air conditioner 10 is installed on the wall, the side close to the ground is the bottom side, and the side away from the wall is the front side.

[0044] The main body 100 is actually composed of a middle frame and a base. The base is installed on the wall, and the middle frame is covered on the base. The cover assembly 200 covers the middle frame and the base. Figure 2 In the state shown, the air duct structure on the base is exposed, making it convenient for users to clean.

[0045] Regarding the hinge connection between the housing assembly 200 and the main body 100, in this embodiment, the top ends of the left side plate 240 and the right side plate 250 are hinged to the main body 100, and the top ends of the left side plate 240 and the right side plate 250 refer to the ends of the two that are away from the ground. Specifically, the inner surfaces of the left side plate 240 and the right side plate 250 are both convexly provided with a rotating shaft, and the two rotating shafts are coaxially arranged and are both rotatably plugged into the main body 100.

[0046] It is understandable that the rotating shafts provided on the left side plate 240 and the right side plate 250 are horizontally aligned. When the cover assembly 200 is subjected to force, the rotating shaft rotates, and the cover assembly 200 can rotate vertically upward to form a gradually increasing angle space with the main body 100, thereby providing an operating space for cleaning the internal structure of the air conditioner 10.

[0047] In order to facilitate the lifting operation of the cover shell assembly 200, in this embodiment, a buckle handle 221 is provided on the bottom panel 220 of the cover shell assembly 200. The buckle handle 221 is used to drive the cover shell assembly 200 to flip in a vertical plane, that is, to drive the cover shell assembly 200 to be lifted.

[0048] On one hand, since the bottom panel 220 corresponds to the ground, the buckle 221 is arranged on the bottom panel 220, which can facilitate the user to operate at a low position and reduce the difficulty of lifting the cover assembly 200. On the other hand, since the top of the cover assembly 200 is hinged to the main body 100, the buckle 221 is arranged on the bottom panel 220 to obtain the maximum force arm and save effort to the greatest extent. On the other hand, the user acts on the buckle 221 with one hand to apply the lifting force. Since the bottom panel 220 is between the left panel 240 and the right panel 250, it can ensure that the cover assembly 200 is in a stable state during the lifting process.

[0049] It can be seen that in this embodiment, the buckle handle 221 is arranged on the bottom panel 220 of the cover shell assembly 200, so that the cover shell assembly 200 can be lifted up more conveniently and quickly, the operation process is more labor-saving, and the operation difficulty is greatly reduced.

[0050] In order to further reduce the difficulty of lifting the housing assembly 200 and make the lifting operation more labor-saving, in another embodiment, an elastic assist member may be provided between the housing assembly 200 and the main body 100. For example, the elastic assist member may be a torsion spring sleeved on the rotating shaft, which provides assistance during the lifting process of the housing assembly 200.

[0051] Preferably, in order to further improve the stability of the lifting process of the housing assembly 200, in this embodiment, in the length direction of the air outlet 210, the handle 221 is located at the middle position of the bottom panel 220. In other words, in the length direction of the housing assembly 200 or the bottom panel 220, the handle 221 is located at the middle position.

[0052] In order to avoid the handle 221 occupying too much indoor space, in this embodiment, a handle window 222 is penetrated through the bottom panel 220, and the handle 221 is located inside the handle window 222 and connected to the bottom panel 220. The handle window 222 provides a clearance space for the user to apply a force to the handle 221, further reducing the operation difficulty.

[0053] Please refer to Figure 3 、 Figure 4 and Figure 5 , Figure 3 The schematic structural diagram of the air conditioner 10 after lifting the housing assembly 200 from the second perspective is shown in Figure 4 The enlarged schematic diagram of area A in Figure 3 is shown in Figure 5 The enlarged schematic diagram of area B in Figure 3 is shown in

[0054] In order to lock the housing assembly 200 on the main body 100 and prevent the housing assembly 200 from being accidentally lifted, in this embodiment, a locking member 223 is further provided on the housing assembly 200, and a locking end 110 is provided on the main body 100. The locking member 223 cooperates with the locking end 110 to lock the housing assembly 200, and the locking member 223 is also used to disengage from the locking end 110 under force to release the locking of the housing assembly 200.

[0055] Specifically, in the state shown in Figure 1 , the air conditioner 10 is operating normally, and the locking member 223 cooperates with the locking end 110 to lock the housing assembly 200 on the main body 100, preventing the housing assembly 200 from being accidentally lifted. When it is necessary to lift the housing assembly 200, operate the locking member 223 to disengage from the locking end 110 to release the locking of the housing assembly 200, and then lift the housing assembly 200 through the handle 221 to the state shown in Figure 2 and Figure 3 .

[0056] Considering that performing an additional unlocking operation before lifting the cover assembly 200 will make the entire lifting process cumbersome and complex, in this embodiment, both the handle 221 and the locking member 223 are movably disposed on the bottom panel 220 of the cover assembly 200. The handle 221 cooperates with the locking member 223 and is used to force the locking member 223 to move until it disengages from the locking end 110, and then drive the cover assembly 200 to flip relative to the main body 100, so as to complete the unlocking and lifting of the cover assembly 200 with a single operation.

[0057] In practical applications, when it is necessary to lift the cover assembly 200, the user continuously applies a lifting force to the handle 221. In the early stage of applying the force, the handle 221 moves relative to the cover assembly 200, and drives the locking member 223 to move relative to the main body 100 until it disengages from the locking end 110 on the main body 100, thereby releasing the locking of the cover assembly 200. After the locking is released, the cover assembly 200 rotates upward relative to the main body 100 under the drive of the force and is thus lifted.

[0058] It can be seen that during the entire process of lifting the cover assembly 200, only a lifting force is applied to the handle 221 to complete the unlocking of the cover assembly 200, and no separate unlocking operation is required. The entire operation process is convenient, fast, time-saving and labor-saving.

[0059] Considering that when the cover assembly 200 rotates back to cover the main body 100 again, the locking member 223 can reset to re-engage with the locking end 110, and the handle 221 can reset to prepare for the next application of the lifting force. In this embodiment, an elastic reset member (not shown in the figure) is further provided on the cover assembly 200. The elastic reset member is connected to the locking member 223 and is used to drive the locking member 223 and the handle 221 to move to the reset state after the force applied to the handle 221 is withdrawn.

[0060] It can be understood that when a lifting force is applied to the handle 221 in the Figure 1 shown state, during the process that the handle 221 drives the locking member 223 to move relative to the main body 100 until it disengages from the locking end 110, the elastic reset member is gradually elastically deformed to accumulate elastic potential energy, and during the process of lifting the cover assembly 200, since the force is continuously applied to the handle 221, the elastic reset member maintains the elastically deformed state.

[0061] When the cover assembly 200 rotates back to cover the main body 100 again, the force applied to the handle 221 is withdrawn, the elastic reset member recovers its deformation, releases the elastic potential energy, drives the locking member 223 to move in the reset direction, and during the movement of the locking member 223, it pushes the handle 221 to move in the reset direction until the locking member 223 moves to re-engage with the locking end 110 on the main body 100 to re-lock the cover assembly 200, and the handle 221 moves to the reset state.

[0062] Specifically, in this embodiment, the handle 221 and the locking member 223 are respectively slidably disposed on the inner surface of the bottom panel 220 of the housing assembly 200. The handle 221 is used to slide in the first direction under force to push the locking member 223 to slide in the second direction, and the first direction and the second direction form an angle.

[0063] Both the first direction and the second direction are linear directions. Figure 4 The direction indicated by the X arrow is the first direction, and the direction indicated by the Y arrow is the second direction. Actually, in the state where the air conditioner 10 is installed on the wall, the first direction is the front-back direction, and the second direction is the left-right direction.

[0064] In this embodiment, when it is necessary to lift the housing assembly 200, the user applies a force from the rear to the front to the handle 221, pushing the handle 221 to slide from the rear to the front. During this process, the handle 221 pushes the locking member 223 to slide in the left-right direction until it disengages from the locking end 110, and then drives the housing assembly 200 to flip upward under the action of the force.

[0065] Please continue to refer to Figure 4 and Figure 5 In this embodiment, the number of the locking members 223 and the locking ends 110 is two. The two locking members 223 are respectively disposed on the opposite sides of the handle 221 in the second direction and are respectively engaged with the two locking ends 110. The two locking members 223 are used to slide reversely in the second direction under the push of the handle 221 to disengage from the two locking ends 110 respectively.

[0066] The two locking ends 110 are actually disposed on the base of the main body 100, and the two locking ends 110 are respectively on the opposite sides of the handle 221 in the left-right direction. The two locking members 223 are also respectively disposed on the opposite sides of the handle 221 in the left-right direction. The two locking members 223 are respectively engaged with the two locking ends 110 to form two sets of locking structures, realizing reliable locking of the housing assembly 200.

[0067] The two locking members 223 are respectively engaged with the two side surfaces of the handle 221 in the left-right direction. During the process of the handle 221 sliding from the rear to the front, it pushes the two locking members 223 to slide reversely in the left-right direction. It can be understood that the locking member 223 on the left side of the handle 221 slides to the left, and the locking member 223 on the right side of the handle 221 slides to the right. The two locking members 223 slide to disengage from their respective corresponding locking ends 110, realizing unlocking of the housing assembly 200.

[0068] For the sliding fit between the buckle 221 and the bottom panel 220, in this embodiment, slide rails 224 extending in the front-rear direction are provided on both the left and right sides of the inner surface of the bottom panel 220 at the buckle window 222. The buckle 221 is inside the buckle window 222 and is in sliding fit with the slide rails 224. When the buckle 221 is subjected to a force from the rear to the front, it slides forward along the two slide rails 224.

[0069] Please refer to Figure 6 and Figure 7 , Figure 6 The schematic structural diagram of the cooperation between the locking member 223 and the locking end 110 is shown in Figure 7 The schematic structural diagram of the separation of the locking member 223 from the locking end 110 is shown in

[0070] The locking member 223 includes a slide rod 2232 and a buckle 2233. The slide rod 2232 extends in the left-right direction and is in sliding fit with the housing assembly 200. The buckle 2233 is connected to the slide rod 2232. The locking end 110 is provided with a hook 111, and the buckle 2233 is engaged with the hook 111.

[0071] In the state where the housing assembly 200 is locked, the buckles 2233 of the two locking members 223 are respectively engaged with the hooks 111 of the two locking ends 110. The ends of the slide rods 2232 of the two locking members 223 that are close to each other are respectively in cooperation with the buckle 221. During the process of the buckle 221 sliding forward under force, the two slide rods 2232 are synchronously pushed to slide away from each other, thereby driving the two buckles 2233 to be disengaged from the two hooks 111 respectively.

[0072] For the interactive fit between the slide rod 2232 and the housing assembly 200, in this embodiment, two support walls 260 are vertically provided on the inner surface of the bottom panel 220 of the housing assembly 200 at the positions on the left and right sides of the buckle 221. And the two support walls 260 on the same side of the buckle 221 are opposite and spaced apart in the left-right direction. Guide holes 261 are penetrated through the two support walls 260. The slide rod 2232 is sleeved in the two guide holes 261. The buckle 2233 is between the two support walls 260 and is used to move between the two support walls 260 under the drive of the slide rod 2232.

[0073] The elastic reset member is actually a spring. The two springs are respectively sleeved on the two slide rods 2232. One end of the spring abuts against the side of the corresponding buckle 2233 away from the buckle 221, and the other end abuts against one of the corresponding two support walls 260 that is farther away from the buckle 221.

[0074] In actual application, when the buckle 221 slides from back to front along the slide rail 224, it pushes the two slide bars 2232 to move away from each other in the left and right directions. During this process, the two slide bars 2232 drive the two buckles 2233 to move closer to the support wall 260 that is further away from the buckle 221, thereby squeezing the spring to accumulate elastic potential energy. After the buckle 2233 moves to disengage from the corresponding hook 111, the cover assembly 200 is lifted. During this process, the spring remains in a compressed state due to the continuous application of force.

[0075] When the cover shell assembly 200 is reset and rotated to be re-covered on the main body 100, the force applied to the buckle 221 is cancelled. At this time, the spring relaxes, pushing the corresponding buckle 2233 to move closer to the buckle 221, thereby driving the corresponding sliding rod 2232 to move closer to the buckle 221 and push the buckle 221 to reset until the buckle 2233 is re-engaged with the corresponding hook 111.

[0076] As for the cooperation between the buckle 221 and the locking member 223, in fact, the buckle 221 is provided with a push inclined surface 2211 on both the left and right sides, and the sliding rods 2232 of the two locking members 223 are each provided with a guide sliding inclined surface 2231 at one end close to the buckle 221, and the push inclined surface 2211 and the guide sliding inclined surface 2231 are both at an angle with the front-back direction and the left-right direction, and the two push inclined surfaces 2211 are respectively fitted with the two guide sliding inclined surfaces 2231. In the process of the buckle 221 sliding from the back to the front, the two push inclined surfaces 2211 on the left and right sides thereof respectively push the two guide sliding inclined surfaces 2231 to slide, thereby driving the two sliding rods 2232 to slide left and right respectively.

[0077] After the external force is removed, during the relaxation of the elastic reset member, the corresponding slide rod 2232 is pushed by the buckle 2233 to slide close to the buckle hand 221. During this process, the guide slope 2231 at the end of the slide rod 2232 pushes the corresponding push slope 2211 to slide, thereby driving the buckle hand 221 to reset and slide into place.

[0078] Please continue reading Figure 6 and Figure 7 In this embodiment, the hook 111 and the buckle 2233 are respectively provided with a guiding inclined surface 112, and the guiding inclined surface 112 forms an angle with the front-back direction and the left-right direction. In actual application, there may be a situation where the cover assembly 200 is lifted up and the external force of the latch is applied. At this time, the elastic reset member relaxes, pushing the buckle 2233 to first approach and finally pass the corresponding hook 111 in the left-right direction.

[0079] Afterwards, during the process of applying a force to the housing assembly 200 to make it rotate back to its original position, before it rotates into place, the guiding inclined surface 112 on the buckle 2233 fits with the guiding inclined surface 112 on the hook 111 and slides relative to each other under the restoring force. This is equivalent to the hook 111 pushing the corresponding buckle 2233 to move a certain distance away from the handle 221, and the elastic restoring member is compressed during this process. Until the guiding inclined surfaces 112 of the hook 111 and the buckle 2233 are separated, the elastic restoring member expands and releases elastic potential energy, pushing the buckle 2233 to move closer to the hook 111 until they are clamped.

[0080] In summary, the air conditioner 10 provided in this embodiment can conveniently and quickly complete the operation of lifting the housing assembly 200, saving time and effort.

[0081] Although the present utility model is disclosed as above, the present utility model 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 utility model. Therefore, the protection scope of the present utility model should be determined by the scope defined by the claims.

Claims

1. An air conditioner, characterized in that, It includes a main body (100) and a housing assembly (200). A air duct is provided on the main body (100), and an air outlet (210) corresponding to the air duct is provided on the housing assembly (200). The housing assembly (200) covers the main body (100). The top of the housing assembly (200) is hinged to the main body (100). The bottom of the housing assembly (200) has a bottom panel (220) covering the bottom side surface of the main body (100). A handle (221) is provided on the bottom panel (220), and the handle (221) is used to drive the housing assembly (200) to flip in the vertical plane when a force is applied.

2. The air conditioner according to claim 1, characterized in that, The bottom panel (220) is located below the air outlet (210). In the length direction of the air outlet (210), the handle (221) is located at the middle position of the bottom panel (220).

3. The air conditioner according to claim 1, characterized in that, The bottom panel (220) is provided with a handle window (222) penetrating therethrough. The handle (221) is located inside the handle window (222) and is connected to the inner surface of the bottom panel (220).

4. The air conditioner according to claim 1, characterized in that, An elastic assisting member is provided between the housing assembly (200) and the main body (100).

5. The air conditioner according to claim 1, wherein A locking member (223) is further provided on the housing assembly (200), and a locking end (110) is provided on the main body (100). The locking member (223) cooperates with the locking end (110) to lock the housing assembly (200), and the locking member (223) is also used to be disengaged from the locking end (110) under force to release the locking of the housing assembly (200).

6. The air conditioner according to claim 5, wherein, The handle (221) is movably provided on the bottom panel (220) and is used to move relative to the bottom panel (220) when a force from the rear to the front is applied, so as to drive the locking member (223) to move to be disengaged from the locking end (110), realize unlocking and drive the housing assembly (200) to flip upward relative to the main body (100).

7. The air conditioner according to claim 5, characterized in that The locking member (223) is provided on the inner surface of the bottom panel (220), and the locking end (110) is provided on the bottom side surface of the main body (100).

8. The air conditioner according to claim 1, characterized in that, The housing assembly (200) further has a front panel (230) covering the front side surface of the main body (100), a left side plate (240) covering the left side surface of the main body (100), and a right side plate (250) covering the right side surface of the main body (100); the left and right ends of the bottom panel (220) and the front panel (230) are respectively connected to the left side plate (240) and the right side plate (250), and jointly enclose the air outlet (210).

9. The air conditioner according to claim 8, characterized in that, The top end of the left side plate (240) and / or the right side plate (250) is hinged to the main body (100).

10. The air conditioner according to claim 9, characterized in that, Shafts are convexly provided on the inner surfaces of the left side plate (240) and the right side plate (250). The two shafts are coaxially arranged and are rotatably inserted into the main body (100).