Air conditioner
By setting up a disassembly port and a push-out mechanism on the housing of the air conditioner, the problem of inconvenience in the operation of existing air conditioners when disassembling the air duct assembly is solved, and the convenient disassembly and replacement of the air duct assembly is achieved, reducing the workload and improving the convenience of operation.
Patent Information
- Application Number
- CN202311713365.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-12
- Publication Date
- 2025-06-20
AI Technical Summary
When disassembling the air duct components for replacement, existing air conditioners need to remove the front panel and air guide plate of the housing, which is inconvenient to operate and has a large workload.
An air conditioner is designed. By setting a disassembly and assembly port and a push-out mechanism on the housing, the air duct assembly is allowed to be disassembled and assembled into the housing accommodation space through the disassembly and assembly port, avoiding the disassembly of the housing front panel and the air guide plate, and simplifying the disassembly and assembly process of the air duct assembly.
It realizes convenient disassembly and replacement of air duct components, reduces workload, improves operation convenience, and reduces the disassembly of parts, avoiding the problem that air duct components are difficult to reassemble back to the shell.
Smart Images

Figure CN120176175A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air conditioners, and in particular, to an air conditioner. Background Art
[0002] An air conditioner is a device commonly used for indoor cooling or heating; an air conditioner generally includes a housing, a heat exchange component and an air duct component disposed in the housing. An air outlet is provided on the front panel of the housing, and a wind deflector is further provided at the air outlet. The gas heated or cooled by the heat exchange component can be blown out from the air outlet under the action of the air duct component to achieve the effect of indoor cooling or heating; and the wind deflector can be used to adjust the air outlet direction of the air outlet to improve the user's comfort. In order to ensure the cleanliness of the air conditioner during use, it is often necessary to disassemble the air duct component that is prone to dust accumulation from the housing for cleaning.
[0003] However, when disassembling the air duct component of the related art air conditioner for cleaning, it is necessary to disassemble components such as the front panel of the housing and the wind deflector to disassemble the air duct component, which is inconvenient to operate and has a large workload. Summary of the Invention
[0004] The problem solved by the present invention is how to conveniently disassemble and assemble the air duct component, improve the ease of cleaning and replacement of the air duct component, and reduce the workload; and after the air duct component is removed from the accommodation space of the housing, the air duct component can be directly cleaned beside the housing without completely disassembling the air duct component from the housing, which improves the problems of difficult disassembly and troublesome cleaning when completely disassembling the air duct component from the housing; the air duct component does not need to be completely disassembled from the housing, which can also improve the problem that it is difficult to reassemble the air duct component back into the accommodation space of the housing.
[0005] To solve the above problems, the present invention provides an air conditioner, including:
[0006] A housing, which is provided with an accommodation space, a disassembly and assembly opening and an air outlet, and the disassembly and assembly opening is communicated with the accommodation space;
[0007] A wind deflector, which is rotatably arranged on the housing and is located at the air outlet;
[0008] An air duct component, which is used to blow air out from the air outlet, and the air duct component can be loaded and unloaded into the accommodation space from the disassembly and assembly opening; and,
[0009] A door panel, which is detachably or movably connected to the housing, and the door panel can block or open the disassembly and assembly opening.
[0010] When the air duct assembly needs to be replaced or cleaned, only by opening the door panel to expose the disassembly and assembly opening can the air duct assembly be disassembled and assembled through the disassembly and assembly opening in the accommodation space. There is no need to disassemble other components such as the housing and the air deflector, reducing the amount of component disassembly, lowering the workload, and improving the ease of replacing and cleaning the air duct assembly. When the air duct assembly does not need to be replaced or cleaned, using the door panel to cover the disassembly and assembly opening can reduce the problem of dust falling in the accommodation space and prevent the air duct assembly from accidentally moving out of the accommodation space, ensuring the stability of the air duct assembly assembled in the accommodation space.
[0011] In an alternative embodiment, the air conditioner further includes a pushing mechanism connected between the housing and the air duct assembly. The pushing mechanism has a pushing state and a retracted state.
[0012] When the pushing mechanism is in the pushing state, the air duct assembly can be moved out of the accommodation space through the disassembly and assembly opening.
[0013] When the pushing mechanism is in the retracted state, the air duct assembly can be moved into the accommodation space through the disassembly and assembly opening.
[0014] Loading and unloading the air duct assembly into and out of the accommodation space of the housing through the pushing mechanism further reduces the difficulty of disassembling and assembling the air duct assembly, thereby reducing the workload of disassembling and assembling the air duct assembly and improving the ease of replacing and cleaning the air duct assembly.
[0015] In an alternative embodiment, the pushing mechanism includes a telescopic assembly. The telescopic assembly includes a first slide rail and at least one second slide rail. The first slide rail is connected to the housing, and at least one second slide rail is slidably connected to the first slide rail and connected to the air duct assembly. At least one second slide rail can extend or retract relative to the first slide rail.
[0016] When the second slide rail extends relative to the first slide rail, the air duct assembly can be moved out of the accommodation space through the disassembly and assembly opening.
[0017] When the second slide rail retracts relative to the first slide rail, the air duct assembly can be moved into the accommodation space through the disassembly and assembly opening.
[0018] When the second slide rail retracts relative to the first slide rail, the telescopic assembly is in an overlapping state, which can save the occupied space, enabling the components in the accommodation space to be arranged more compactly and achieving a miniaturized structural design. Moreover, the air duct assembly is loaded and unloaded into and out of the accommodation space of the housing by the telescopic movement of the second slide rail of the telescopic assembly relative to the first slide rail. After the air duct assembly is moved out of the accommodation space of the housing, it can be directly cleaned beside the housing without completely detaching the air duct assembly from the housing, improving the problems of difficult complete detachment of the air duct assembly from the housing and troublesome cleaning. The air duct assembly does not need to be completely detached from the housing and can be reinstalled into the accommodation space by retracting the second slide rail relative to the first slide rail, which can also improve the problem that it is difficult to reassemble the air duct assembly back into the accommodation space of the housing.
[0019] In an alternative embodiment, the ejection mechanism further includes a bearing disposed between the first slide rail and the second slide rail.
[0020] By providing a bearing between the first slide rail and the second slide rail, the friction between the second slide rail and the first slide rail can be reduced, ensuring the smoothness of the telescopic movement of the second slide rail, and thus improving the ease of operation and labor-saving property of the air duct assembly being disassembled and assembled from / to the accommodation space through the telescopic movement of the telescopic assembly.
[0021] In an alternative embodiment, one of the first slide rail is provided with either a limiting groove or a limiting boss, and the other of the second slide rail is provided with the other of the limiting groove and the limiting boss, and the limiting boss is slidably inserted into the limiting groove.
[0022] Through the sliding fit of the limiting boss and the limiting groove, the problem of the second slide rail derailing due to deviation from the sliding path when sliding relative to the first slide rail can be improved, that is, the relative stability of the second slide rail and the first slide rail is ensured.
[0023] In an alternative embodiment, the ejection mechanism includes at least two telescopic assemblies, the at least two telescopic assemblies are spaced apart and are commonly supported below the air duct assembly or commonly connected above the air duct assembly.
[0024] By supporting the air duct assembly by at least two telescopic assemblies below, on the one hand, it can ensure that the air duct assembly is reliably disassembled and assembled from / to the accommodation space through the telescopic movement of the telescopic assemblies, and on the other hand, when the air duct assembly is removed from the accommodation space through the disassembly opening, the air duct assembly can be reliably supported by multiple telescopic assemblies, making the air duct assembly more convenient for washing, reducing the work of the washing personnel bending down and squatting, and reducing the labor intensity.
[0025] By connecting at least two telescopic assemblies above the air duct assembly, on the one hand, it can ensure that the air duct assembly is reliably disassembled and assembled from / to the accommodation space through the telescopic movement of the telescopic assemblies, and on the other hand, when the air duct assembly is removed from the accommodation space through the disassembly opening, the air duct assembly can be reliably hung by multiple telescopic assemblies, making the air duct assembly more convenient for washing, reducing the work of the washing personnel bending down and squatting, and reducing the labor intensity.
[0026] In an alternative embodiment, the air conditioner includes two ejection mechanisms, both of the two ejection mechanisms are connected between the housing and the air duct assembly, and the two ejection mechanisms are distributed at both ends of the air duct assembly, one of the ejection mechanisms is supported below the air duct assembly, and the other ejection mechanism is connected above the air duct assembly.
[0027] The top and bottom of the air duct assembly are connected to the shell body through corresponding ejection mechanisms. On the one hand, it can ensure that the air duct assembly can be reliably loaded and unloaded from the disassembly and assembly port to the accommodating space through the extension and retraction of the two ejection mechanisms. On the other hand, when the air duct assembly is moved out of the accommodating space from the disassembly and assembly port, the ejection mechanisms at both ends can be used to reliably support the air duct assembly, making the air duct assembly easier to change and wash, reducing the work of bending and squatting for changing and washing personnel, reducing labor intensity, and improving the problem that the weight of the air duct assembly easily causes deformation of the ejection mechanism, thereby ensuring the reliability of the telescopic performance of the ejection mechanism.
[0028] In an optional embodiment, the air duct assembly includes a volute, a crossflow fan blade and a motor. The crossflow fan blade is assembled in the volute and drivingly connected to the output shaft of the motor. The volute is connected to the ejection mechanism.
[0029] Connecting the ejection mechanism to the volute can prevent the ejection mechanism from interfering with the motor and the crossflow fan blades, thereby ensuring that the motor can reliably drive the crossflow fan blades to rotate and ensure the reliability of the air outlet of the air conditioner.
[0030] In an optional embodiment, the volute has a first end and a second end disposed opposite to each other; when the ejection mechanism is in an ejection state so that the air duct assembly is moved out of the accommodating space from the disassembly and assembly port, the first end is closer to the disassembly and assembly port than the second end; the ejection mechanism is connected to the second end.
[0031] Such an arrangement can ensure that the ejection mechanism supports the air duct assembly that is moved out of the accommodation space, thereby improving the problem that the air duct assembly is prone to fall and thus causes the ejection mechanism to be easily deformed.
[0032] In an optional embodiment, the shell includes a front panel and a rear shell, the front panel and the rear shell are buckled and connected, and a accommodating space is formed between the front panel and the rear shell; the front panel is provided with an air outlet and a disassembly port.
[0033] The disassembly and assembly port for disassembling and assembling the air duct assembly is arranged on the front panel. When the air conditioner is installed in place, the disassembly and assembly port arranged on the front panel is not easily blocked behind the shell, so that it is more convenient to disassemble and assemble the air duct assembly from the accommodating space through the disassembly and assembly port, and the ease of replacement and cleaning of the air duct assembly is further ensured. BRIEF DESCRIPTION OF THE DRAWINGS
[0034] Figure 1 This is a structural schematic diagram of an air conditioner when a door panel blocks the disassembly opening in an embodiment of the present invention;
[0035] Figure 2 is a structural schematic diagram of the air conditioner when the air duct assembly is moved out of the accommodation space in the embodiment of the present invention;
[0036] Figure 3 A cross-sectional view of the air conditioner when the air duct assembly is moved out of the accommodation space in the embodiment of the present invention;
[0037] Figure 4 Schematic structural diagram of the air conditioner when the door panel of the embodiment of the present invention opens the disassembly and assembly opening;
[0038] Figure 5 Cross-sectional view of the air conditioner when the air duct assembly of the embodiment of the present invention enters the accommodation space;
[0039] Figure 6 Schematic structural diagram of the telescopic assembly when the telescopic assembly of the embodiment of the present invention is in the extended state;
[0040] Figure 7 Schematic structural diagram of the telescopic assembly when the telescopic assembly of the embodiment of the present invention is in the retracted state.
[0041] Explanation of reference numerals:
[0042] 010 - Air conditioner; 100 - Housing; 110 - Front panel; 111 - Air outlet; 112 - Disassembly and assembly opening; 120 - Rear enclosure; 130 - Door panel; 140 - Base; 200 - Air duct assembly; 210 - Volute; 220 - Cross-flow fan blade; 300 - Pushing mechanism; 310 - Telescopic assembly; 311 - First slide rail; 312 - Second slide rail; 313 - Limiting groove; 314 - Limiting boss. Detailed implementation manners
[0043] An air conditioner is a commonly used indoor air conditioning device; the air conditioner includes a housing, and a heat exchange component and an air duct assembly arranged in the housing. The front panel of the housing is provided with an air outlet, and a wind deflector is also arranged at the air outlet. The gas heat-exchanged by the heat exchange component can be blown out from the air outlet under the action of the air duct assembly to achieve the effect of indoor cooling or heating; and the wind deflector can be used to adjust the air outlet direction of the air outlet to improve the user's comfort. The air duct assembly is prone to accumulating dust during use. In order to improve the cleanliness of the air blown out by the air conditioner, it is often necessary to disassemble the air duct assembly for cleaning.
[0044] However, in the related art, when cleaning the air duct assembly, it is necessary to first disassemble components such as the front panel of the housing and the wind deflector before the air duct assembly can be disassembled, which is inconvenient to operate and has a large workload.
[0045] This embodiment provides an air conditioner that can more conveniently disassemble and assemble the air duct assembly, improve the ease of cleaning and replacement of the air duct assembly, and reduce the workload.
[0046] To make the above objects, features, and advantages of the present invention more obvious and understandable, the following detailed description of the specific embodiments of the present invention will be given with reference to the accompanying drawings.
[0047] The air conditioner 010 of this embodiment may refer to an indoor cabinet unit; of course, in other embodiments, the air conditioner 010 may also refer to an indoor wall-mounted unit.
[0048] The air conditioner 010 includes a shell 100, a heat exchange component (not shown in the figure), a duct component 200 and an air guide plate (not shown in the figure). The shell 100 is provided with a accommodating space and an air outlet 111 connected to the accommodating space. The duct component 200 is arranged in the accommodating space. The air guide plate is rotatably arranged on the shell 100 and is located at the air outlet 111. Under the action of the duct component 200, the air heated by the heat exchange component can be blown out from the air outlet 111 to achieve the effect of cooling or heating the indoor environment. By rotating the air guide plate, the direction of the air outlet can be adjusted to improve the user's comfort.
[0049] Furthermore, the housing 100 includes a front panel 110 and a rear enclosure 120 that are interlocked and connected, and a storage space is formed between the front panel 110 and the rear enclosure 120; the front panel 110 is provided with an air outlet 111, and the air guide plate is rotatably provided on the front panel 110. Such a configuration ensures that the heat exchange assembly and the air duct assembly 200 are easy to assemble in the storage space.
[0050] The connection methods between the front panel 110 and the rear shell 120 include but are not limited to snap-on connection and connection with fasteners such as bolts.
[0051] It should be noted that the way the air guide plate is assembled to the front panel 110 and the working principle are similar to those in the related art and will not be described in detail here.
[0052] Please refer to Figure 1 , Figure 2 and Figure 3 In this embodiment, the air duct assembly 200 includes a volute 210, a crossflow fan blade 220 and a motor. The volute 210 is assembled in the accommodating space, and the volute 210 has an air duct; the crossflow fan blade 220 is arranged in the volute 210 and is drivingly connected to the output shaft of the motor; when the motor drives the crossflow fan blade 220 to rotate around its own rotation axis, the crossflow fan blade 220 can blow air from the air duct of the volute 210 to the air outlet 111.
[0053] Optionally, the motor is disposed outside the volute 210, and the output shaft of the motor extends into the volute 210 and is transmission-connected to the crossflow blades 220. Of course, in other embodiments, the motor may also be disposed in the volute 210, and the output shaft of the motor is transmission-connected to the crossflow blades 220, which is not specifically limited here.
[0054] In order to improve the cleanliness of the air conditioner 010 when in use and reduce the dust blown out by the air, the air duct assembly 200 is configured to be able to be moved out of the accommodating space as a whole, so as to facilitate the replacement and cleaning of the air duct assembly 200 and reduce the dust accumulation on the air duct assembly 200.
[0055] Please refer to Figure 4 Figure 4 In this embodiment, the housing 100 is provided with a disassembly and assembly opening 112 communicating with the accommodation space, and the air duct assembly 200 is configured to be loaded and unloaded into and from the accommodation space through the disassembly and assembly opening 112. When it is necessary to wash and replace the air duct assembly 200, only by disassembling and assembling the air duct assembly 200 through the disassembly and assembly opening 112 additionally provided on the housing 100, it is not necessary to disassemble other more components such as the housing 100 and the air deflector, reducing the amount of component disassembly, reducing the workload, and improving the ease of operation of washing and replacing the air duct assembly 200; moreover, when washing and replacing the air duct assembly 200, reducing the components to be disassembled can also avoid the problem that too many components are disassembled during the washing and replacement of the air duct assembly 200, resulting in a poor visual experience for the user.
[0056]
[0056] Furthermore, the disassembly and assembly opening 112 is provided on the front panel 110 and is located on the side of the air outlet 111. By providing the disassembly and assembly opening 112 for disassembling and assembling the air duct assembly 200 on the front panel 110, when the air conditioner 010 is installed in place, the disassembly and assembly opening 112 provided on the front panel 110 is not easily blocked behind the housing 100, thus making it more convenient to disassemble and assemble the air duct assembly 200 into and from the accommodation space through the disassembly and assembly opening 112, further ensuring the ease of operation of washing and replacing the air duct assembly 200.
[0057]
[0057] Of course, in other embodiments, the disassembly and assembly opening 112 can also be provided on the rear enclosure 120, and no specific limitation is made here.
[0058] Please refer to Figure 1 Figure 1 In this embodiment, the air conditioner 010 further includes a door panel 130, and the door panel 130 is detachably connected to the housing 100; specifically, the door panel 130 is detachably connected to the front panel 110, and the door panel 130 can block or open the disassembly and assembly opening 112. When it is necessary to wash and replace the air duct assembly 200, only by opening the disassembly and assembly opening 112 with the door panel 130, the air duct assembly 200 can be disassembled and assembled into and from the accommodation space through the disassembly and assembly opening 112, without the need to disassemble other more components such as the housing 100 and the air deflector, reducing the amount of component disassembly, reducing the workload, and improving the ease of operation of washing and replacing the air duct assembly 200; when it is not necessary to wash and replace the air duct assembly 200, blocking the disassembly and assembly opening 112 with the door panel 130 can reduce the problem of dust falling into the accommodation space and reduce the problem that the air duct assembly 200 accidentally moves out of the accommodation space from the disassembly and assembly opening 112, ensuring the stability of the air duct assembly 200 assembled in the accommodation space.
[0059]
[0059] The connection method between the door panel 130 and the front panel 110 includes but is not limited to snap connection and connection through fasteners such as bolts.
[0060] Of course, in other embodiments, the door panel 130 can also be movably connected to the housing 100. For example, it can be rotatably connected or slidably connected. By rotating or sliding the door panel 130, the disassembly and assembly opening 112 can be blocked or opened.
[0061] Please refer to Figure 3 and Figure 5 , the air conditioner 010 of this embodiment further includes a pushing mechanism 300. The pushing mechanism 300 is connected between the housing 100 and the air duct assembly 200. Specifically, the pushing mechanism 300 is connected between the housing 100 and the volute 210. The pushing mechanism 300 has a pushing state and a retracted state. When the door panel 130 opens the disassembly and assembly opening 112 and the pushing mechanism 300 is in the pushing state, the air duct assembly 200 can be moved out of the accommodation space from the disassembly and assembly opening 112. When the door panel 130 opens the disassembly and assembly opening 112 and the pushing mechanism 300 is in the retracted state, the air duct assembly 200 can be moved into the accommodation space from the disassembly and assembly opening 112. By using the pushing mechanism 300 to load and unload the air duct assembly 200 in the accommodation space of the housing 100, the disassembly and assembly difficulty of the air duct assembly 200 is further reduced, so as to reduce the workload of disassembling and assembling the air duct assembly 200 and improve the ease of operation of replacing the air duct assembly 200.
[0062] Furthermore, please refer to Figure 3 , Figure 5 , Figure 6 and Figure 7, the ejecting mechanism 300 includes a telescopic component 310. The telescopic component 310 includes a first slide rail 311 and a second slide rail 312. The first slide rail 311 is connected to the housing 100. The second slide rail 312 is slidably connected to the first slide rail 311 and is connected to the air duct component 200. Moreover, the second slide rail 312 can extend or retract relative to the first slide rail 311. When the second slide rail 312 extends relative to the first slide rail 311, the telescopic component 310 is in the ejecting state. When the second slide rail 312 retracts relative to the first slide rail 311, the telescopic component 310 is in the retracted state. When the door panel 130 opens the disassembly and assembly opening 112 and the second slide rail 312 extends relative to the first slide rail 311, the air duct component 200 can be moved out of the accommodation space from the disassembly and assembly opening 112. When the door panel 130 opens the disassembly and assembly opening 112 and the second slide rail 312 retracts relative to the first slide rail 311, the air duct component 200 can be moved into the accommodation space from the disassembly and assembly opening 112. When the second slide rail 312 retracts relative to the first slide rail 311, the telescopic component 310 is in the overlapping state, which can save the occupied space, so that the components in the accommodation space can be arranged more compactly, realizing a miniaturized structural design. Moreover, the air duct component 200 is telescopically loaded and unloaded in the accommodation space of the housing 100 through the second slide rail 312 of the telescopic component 310 relative to the first slide rail 311. After the air duct component 200 is moved out of the accommodation space of the housing 100, it can be directly cleaned beside the housing 100 without completely detaching the air duct component 200 from the housing 100, improving the problems of great difficulty in completely detaching the air duct component 200 from the housing 100 and troublesome cleaning. The air duct component 200 does not need to be completely detached from the housing 100 and can be reinstalled into the accommodation space by retracting the second slide rail 312 relative to the first slide rail 311, which can also improve the problem that it is difficult to reassemble the air duct component 200 back into the accommodation space of the housing 100.
[0063] Furthermore, the air conditioner 010 further includes a base 140. The first slide rail 311 is connected to the housing 100 through the base 140. Specifically, the base 140 is connected to the rear enclosure 120, and the first slide rail 311 is connected to the base 140. The second slide rail 312 is connected to the volute 210. With such an arrangement, it can be avoided that the telescopic component 310 interferes with the assembly and operation of other components of the air conditioner 010, such as the heat exchange component and the cross-flow fan blade 220.
[0064] In other embodiments, the base 140 can also be connected to the front panel 110, which is not specifically limited herein.
[0065] The connection manner between the base 140 and the rear enclosure 120, the connection manner between the first slide rail 311 and the base 140, and the connection manner between the second slide rail 312 and the volute 210 include but are not limited to connection by fasteners such as bolts, snap connection, and welding.
[0066] It should be understood that the telescopic component 310 of this embodiment only includes one second slide rail 312; in other embodiments, the number of second slide rails 312 of the telescopic component 310 can also be two, three, etc. A plurality of second slide rails 312 can all be slidably connected to the first slide rail 311, and one of the second slide rails 312 is connected to the air duct component 200. Taking the telescopic component 310 with two second slide rails 312 as an example for detailed description, one of the second slide rails 312 is connected to the first slide rail 311, and the other second slide rail 312 is slidably connected to the first slide rail 311 through this second slide rail 312, that is, one of the second slide rails 312 is slidably connected to the first slide rail 311, and the other second slide rail 312 is slidably connected to this second slide rail 312, and the other second slide rail 312 is connected to the air duct component 200. When both second slide rails 312 extend, the air duct component 200 can be moved out of the accommodation space from the disassembly and assembly opening 112, and when both second slide rails 312 retract, the air duct component 200 can enter the accommodation space from the disassembly and assembly opening 112.
[0067] In this embodiment, the contact between the first slide rail 311 and the second slide rail 312 is a surface contact.
[0068] Of course, in other embodiments, the air conditioner 010 further includes a bearing (not shown in the figure), and the bearing is arranged between the first slide rail 311 and the second slide rail 312; with such an arrangement, the friction when the second slide rail 312 moves relative to the first slide rail 311 can be reduced, ensuring the smoothness of the telescopic movement of the second slide rail 312, and further improving the ease of operation and labor-saving property of the air duct component 200 being disassembled and assembled from the disassembly and assembly opening 112 through the telescopic movement of the telescopic component 310.
[0069] Optionally, the cross-sectional shape of the first slide rail 311 and the second slide rail 312 in the direction perpendicular to the sliding direction of the second slide rail 312 can be rectangular, circular, etc., and no specific limitation is made here.
[0070] Please refer to Figure 6 and Figure 7 , in this embodiment, the first slide rail 311 is provided with a limiting groove 313, and the second slide rail 312 is provided with a limiting boss 314, and the limiting boss 314 is slidably inserted and matched with the limiting groove 313.
[0071] Of course, in other embodiments, the first slide rail 311 is provided with a limiting boss 314, and the second slide rail 312 is provided with a limiting groove 313, and the limiting boss 314 is slidably inserted and matched with the limiting groove 313.
[0072] Through the sliding fit of the limiting boss 314 and the limiting groove 313, the problem that the second slide rail 312 deviates from the sliding path and derails when sliding relative to the first slide rail 311 can be improved, that is, the relative stability of the second slide rail 312 and the first slide rail 311 is ensured.
[0073] Optionally, the connection manner between the limit boss 314 and the second slide rail 312 includes, but is not limited to, integral molding, threaded connection, and welding.
[0074] Please refer to Figure 2 , the air conditioner 010 of this embodiment includes two pushing mechanisms 300. Both of the two pushing mechanisms 300 are connected between the housing 100 and the air duct assembly 200, and the two pushing mechanisms 300 are distributed at both ends of the air duct assembly 200. One of the pushing mechanisms 300 is supported below the air duct assembly 200, and the other pushing mechanism 300 is connected above the air duct assembly 200. Both the upper and lower sides of the air duct assembly 200 are connected to the housing 100 through the corresponding pushing mechanisms 300. On the one hand, it can ensure that the air duct assembly 200 is reliably loaded and unloaded from the disassembly and assembly opening 112 to the accommodation space through the telescoping of the two pushing mechanisms 300. On the other hand, when the air duct assembly 200 is moved out of the accommodation space from the disassembly and assembly opening 112, the two pushing mechanisms 300 at both ends can reliably support the air duct assembly 200, making the air duct assembly 200 more convenient to wash and change, reducing the work of the washing and changing personnel bending down and squatting, reducing the labor intensity, and improving the problem that the weight of the air duct assembly 200 easily causes the deformation of the pushing mechanism 300, ensuring the reliability of the telescoping performance of the pushing mechanism 300.
[0075] Further, please refer to Figure 3 and Figure 5 , each pushing mechanism 300 includes two telescopic components 310. The two telescopic components 310 are spaced apart and jointly support below the air duct assembly 200, or jointly connect above the air duct assembly 200, that is, the two telescopic components 310 of the pushing mechanism 300 located below the air duct assembly 200 jointly support below the air duct assembly 200, and the two telescopic components 310 of the pushing mechanism 300 located above the air duct assembly 200 jointly connect above the air duct assembly 200. With such a setting, on the one hand, it can ensure that the air duct assembly 200 is reliably loaded and unloaded from the disassembly and assembly opening 112 to the accommodation space through the telescoping of the multiple telescopic components 310. On the other hand, when the air duct assembly 200 is moved out of the accommodation space from the disassembly and assembly opening 112, the multiple telescopic components 310 located below the air duct assembly 200 can reliably support the air duct assembly 200 and the multiple telescopic components 310 located above the air duct assembly 200 can reliably hang the air duct assembly 200, ensuring that the air duct assembly 200 moved out of the accommodation space is reliably supported in the air, making the air duct assembly 200 more convenient to wash and change, reducing the work of the washing and changing personnel bending down and squatting, and reducing the labor intensity.
[0076] Of course, in other embodiments, the number of the telescopic components 310 of the pushing mechanism 300 can also be one, three, etc., which is not specifically limited herein.
[0077] In other embodiments, the two pushing mechanisms 300 can also be respectively connected to the left and right sides of the air duct assembly 200; alternatively, the air conditioner 010 is only connected to the lower, upper or side of the air duct assembly 200 through one pushing mechanism 300, which is not specifically limited herein.
[0078] It should be noted that the above-mentioned terms "side", "above", "below", "left", "right", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the product of the present disclosure is usually placed during use. It is only for the convenience of describing the present disclosure and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the present disclosure.
[0079] Optionally, please refer to Figure 3 , the volute 210 has a first end and a second end distributed in opposite directions; when the telescopic assembly 310 is in the extended state, so that the air duct assembly 200 is moved out of the accommodation space from the disassembly and assembly opening 112, the first end of the volute 210 is closer to the disassembly and assembly opening 112 than the second end; the pushing mechanism 300 is connected to the second end of the volute 210. With such a setting, the telescopic assembly 310 located below the air duct assembly 200 can reliably support the air duct assembly 200, that is, ensure the stability of the supporting effect on the air duct assembly 200, and improve the problem that the air duct assembly 200 is prone to sagging, resulting in easy deformation of the pushing mechanism 300.
[0080] The process of replacing the air duct assembly 200 of the air conditioner 010 in this embodiment includes: removing the door panel 130 and opening the disassembly and assembly opening 112; dragging the air duct assembly 200, so that the telescopic assembly 310 is switched from the retracted state to the extended state, and the air duct assembly 200 is moved out of the accommodation space from the disassembly and assembly opening 112, and then the air duct assembly 200 can be replaced and washed.
[0081] In summary, when the air conditioner 010 of the present invention needs to replace and wash the air duct assembly 200, it only needs to disassemble and assemble the air duct assembly 200 through the disassembly and assembly opening 112; there is no need to additionally disassemble other components such as the housing 100 and the air deflector, reducing the amount of component disassembly, reducing the workload, and improving the ease of operation of replacing and washing the air duct assembly 200.
[0082] 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 protection scope of the present invention should be subject to the scope defined by the claims.
Claims
1. An air conditioner, characterized in that, Comprising: A housing (100), the housing (100) being provided with a receiving space, a disassembly and assembly opening (112) and an air outlet (111), the disassembly and assembly opening (112) communicating with the receiving space; A wind deflector, the wind deflector being rotatably provided on the housing (100) and located at the air outlet (111); An air duct assembly (200), the air duct assembly (200) being used for blowing air out from the air outlet (111), and the air duct assembly (200) being capable of being loaded and unloaded into and from the receiving space through the disassembly and assembly opening (112); and, A door panel (130), the door panel (130) being detachably or movably connected to the housing (100), the door panel (130) being capable of shielding or opening the disassembly and assembly opening (112).
2. The air conditioner according to claim 1, characterized in that, The air conditioner further includes a pushing mechanism (300), the pushing mechanism (300) being connected between the housing (100) and the air duct assembly (200), the pushing mechanism (300) having a pushing state and a retracting state; When the pushing mechanism (300) is in the pushing state, the air duct assembly (200) can be moved out of the receiving space through the disassembly and assembly opening (112); When the pushing mechanism (300) is in the retracting state, the air duct assembly (200) can be moved into the receiving space through the disassembly and assembly opening (112).
3. The air conditioner according to claim 2, characterized in that, The pushing mechanism (300) includes a telescopic assembly (310), the telescopic assembly (310) including a first slide rail (311) and at least one second slide rail (312), the first slide rail (311) being connected to the housing (100), at least one of the second slide rails (312) being slidably connected to the first slide rail (311) and connected to the air duct assembly (200), at least one of the second slide rails (312) being capable of extending or retracting relative to the first slide rail (311); When the second slide rail (312) extends relative to the first slide rail (311), the air duct assembly (200) can be moved out of the receiving space through the disassembly and assembly opening (112); When the second slide rail (312) retracts relative to the first slide rail (311), the air duct assembly (200) can be moved into the receiving space through the disassembly and assembly opening (112).
4. The air conditioner according to claim 3, characterized in that, The pushing mechanism (300) further includes a bearing, the bearing being provided between the first slide rail (311) and the second slide rail (312).
5. The air conditioner according to claim 3, characterized in that, The first slide rail (311) is provided with one of a limit groove (313) and a limit boss (314), the second slide rail (312) is provided with the other of the limit groove (313) and the limit boss (314), and the limit boss (314) is slidably inserted into the limit groove (313).
6. The air conditioner according to claim 3, characterized in that, The pushing mechanism (300) includes at least two of the telescopic assemblies (310), the at least two telescopic assemblies (310) being spaced apart and jointly supporting below the air duct assembly (200) or jointly connected above the air duct assembly (200).
7. The air conditioner according to claim 2, characterized in that, The air conditioner includes two of the pushing mechanisms (300). Both of the two pushing mechanisms (300) are connected between the housing (100) and the air duct assembly (200), and the two pushing mechanisms (300) are distributed at two ends of the air duct assembly (200). One of the pushing mechanisms (300) is supported below the air duct assembly (200), and the other pushing mechanism (300) is connected above the air duct assembly (200).
8. The air conditioner according to claim 2, characterized in that, The air duct assembly (200) includes a volute (210), a cross-flow fan blade (220) and a motor. The cross-flow fan blade (220) is assembled in the volute (210) and is in transmission connection with the output shaft of the motor. The volute (210) is connected to the pushing mechanism (300).
9. The air conditioner according to claim 8, characterized in that, The volute (210) has a first end and a second end that are distributed in opposite directions; when the pushing mechanism (300) is in the pushing state to move the air duct assembly (200) out of the accommodation space from the disassembly and assembly opening (112), the first end is closer to the disassembly and assembly opening (112) than the second end; the pushing mechanism (300) is connected to the second end.
10. The air conditioner according to claim 1, characterized in that, The housing (100) includes a front panel (110) and a rear enclosure (120). The front panel (110) is buckled and connected to the rear enclosure (120). An accommodation space is formed between the front panel (110) and the rear enclosure (120); the front panel (110) is provided with an air outlet (111) and the disassembly and assembly opening (112).