Air conditioner

By designing vertically arranged air guide plate assembly and louver rotation axis in the air conditioner, the air cleaning angle and range are increased, and the air guide assembly is removable and connected, the problems of low heating efficiency of the air conditioner and difficulty in disassembling the air guide plate are solved, achieving a more efficient air supply and easy maintenance effect.

CN223121647UActive Publication Date: 2025-07-18MIDEA GROUP CO LTD +1
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422382552.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-27
Publication Date
2025-07-18
Estimated Expiration
2034-09-27

AI Technical Summary

Technical Problem

The heating mode of existing air conditioners is slow in temperature rise, and the indoor hot and cold air flow alternating effect is poor, resulting in low heating efficiency and difficulty in disassembling the air guide plate and louvers.

Method used

An air conditioner is designed to increase the wind-sweep angle and range by vertically setting the rotation axis of the air guide plate assembly and the louver, and make the air guide plate assembly and the louver removably connect to the shell, making it easy to clean and maintain, and drive the air guide plate assembly and louver rotation using a driving device.

Benefits of technology

It improves the air supply and air outlet angle of the air conditioner, enhances the airflow conveying capacity, simplifies the installation and disassembly of the air guide plate and louvers, and improves the ease of use and maintenance of the air conditioner.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223121647U_ABST
    Figure CN223121647U_ABST
Patent Text Reader

Abstract

The utility model discloses an air conditioner which comprises a shell, an air inlet, an air outlet, an air inlet, an air outlet, an air inlet, an air outlet, a fan and an air outlet, wherein the shell is provided with an air outlet duct and an air outlet; the air guide assembly is detachably connected with the shell, the air guide assembly comprises an air guide plate assembly and shutters, the air guide plate assembly is integrally and rotatably arranged at the position, close to the air outlet, of the air outlet duct, the air guide plate assembly is provided with an air guide channel, and at least part of the shutters is located in the air guide channel and rotatably arranged on the air guide plate assembly; the rotating axis of the shutters is perpendicular to the rotating axis of the air deflector assembly. According to the air conditioner, the air sweeping angle and range of the louver and the air deflector assembly are effectively increased, so that the conveying angle and range of airflow are improved, the air supply amount is effectively increased, the air conditioner can give consideration to the air outlet angle and the air outlet amount, the louver and the air deflector assembly can be conveniently cleaned, checked, maintained and the like, and the service life of the air conditioner is prolonged. The air conditioner has the advantages of being easy to install and disassemble.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

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

[0002] In the related art, the refrigeration and heating functions are the basic functions of an air conditioner. However, in the existing air conditioner, the temperature rise speed in the heating mode is slow, and the alternating effect of cold and hot airflows indoors is not good, resulting in low heating efficiency of the air conditioner, and it is difficult to disassemble and assemble the air deflector and louvers. Summary of the Utility Model

[0003] The utility model aims to solve at least one of the technical problems existing in the prior art. For this purpose, the utility model provides an air conditioner, which effectively increases the sweeping angle and range of the louvers and the air deflector assembly, and has the advantages of easy installation and disassembly.

[0004] The air conditioner according to an embodiment of the utility model includes: a housing having an air outlet duct and an air outlet communicating with the air outlet duct; an air deflector assembly detachably connected to the housing, the air deflector assembly including an air deflector assembly and louvers, the air deflector assembly being rotatably disposed at a position near the air outlet of the air outlet duct as a whole, the air deflector assembly having an air guiding channel, at least a part of the louvers being located in the air guiding channel and rotatably disposed on the air deflector assembly, and the rotation axis of the louvers being perpendicular to the rotation axis of the air deflector assembly.

[0005] For the air conditioner according to an embodiment of the utility model, the housing has an air outlet duct and an air outlet communicating with the air outlet duct. The air deflector assembly includes an air deflector assembly and louvers. The air deflector assembly has an air guiding channel. At least a part of the louvers is located in the air guiding channel and rotatably disposed on the air deflector assembly. The rotation axis of the louvers is perpendicular to the rotation axis of the air deflector assembly. Thus, the air flow delivery mode of the air deflector assembly is increased, and the functionality of the air conditioner is improved. At the same time, by rotatably disposing the air deflector assembly as a whole at a position near the air outlet of the air outlet duct, the sweeping angle and range of the louvers and the air deflector assembly are effectively increased, thereby improving the delivery angle and range of the air flow, and effectively increasing the air delivery volume, so that the air conditioner can take into account the air outlet angle and the air delivery volume. In addition, by detachably connecting the air deflector assembly to the housing, it is convenient to clean, inspect and maintain the louvers and the air deflector assembly, etc., so that the air conditioner has the advantages of easy installation and disassembly.

[0006] In some embodiments of the utility model, the air deflector assembly further includes: a first driving device disposed on the housing and located on one side in the length direction of the air deflector assembly, the first driving device being used for driving the air deflector assembly to rotate around a rotation axis extending along the length direction of the air outlet, and the first driving device and the air deflector assembly being detachably connected.

[0007] In some embodiments of the present utility model, the first driving device includes: a first motor disposed on the housing; a gear assembly, an input gear of the gear assembly is connected to an output shaft of the first motor, one end of the air deflector assembly close to the first driving device has a rotating shaft, and an output gear of the gear assembly is spliced with the rotating shaft.

[0008] In some embodiments of the present utility model, the gear assembly includes: a first gear configured as the input gear; a second gear meshing with the first gear and configured as the output gear, the rotating shaft has a first notch, and the second gear has a protruding portion matching with the first notch, and the protruding portion and the rotating shaft are spliced along the circumferential direction of the rotating shaft.

[0009] In some embodiments of the present utility model, the air conditioner further includes: a first pressing plate detachably connected to the housing and defining a first shaft hole between the first pressing plate and the housing, and a part of the rotating shaft and the output gear are rotatably disposed in the first shaft hole.

[0010] In some embodiments of the present utility model, one end in the length direction of the first pressing plate is snap-connected to the housing, and the other end is connected to the housing through a fastener.

[0011] In some embodiments of the present utility model, the housing has a first installation groove, the first pressing plate is located in the first installation groove and defines the first shaft hole between the first pressing plate and the bottom wall of the first installation groove, and a first elastic buckle abutting against the side wall of the first installation groove is provided at one end of the first pressing plate connected to the housing through the fastener.

[0012] In some embodiments of the present utility model, the air deflector assembly further includes: a second driving device disposed on the housing and on a side of the air deflector assembly in the length direction away from the first driving device, the second driving device is used to drive the air deflector assembly to rotate, the second driving device includes a second motor, and the air deflector assembly has a mating hole matching with an output shaft of the second motor, and the mating hole is detachably connected to the output shaft of the second motor.

[0013] In some embodiments of the present utility model, there is one air deflector assembly; or the air deflector assemblies are multiple spaced along the length direction of the air outlet, and two adjacent air deflector assemblies among the multiple air deflector assemblies are connected through an adapter, and at least one louver is provided in the air deflector channel of each air deflector assembly, and one end of the two air deflector assemblies at both ends in the length direction facing away from each other is rotatably connected to the housing.

[0014] In some embodiments of the present utility model, a plurality of air deflector assemblies are arranged at intervals along the length direction of the air outlet. There is a support portion between at least some adjacent two of the plurality of air deflector assemblies. The support portion is connected to the housing. The air conditioner further includes a second pressing plate. The second pressing plate is detachably connected to the support portion and defines a second shaft hole therebetween. The adapter is rotatably arranged in the second shaft hole.

[0015] In some embodiments of the present utility model, a plurality of louvers are arranged at intervals along the length direction of the air outlet. The air guiding assembly further includes: a connecting rod, which extends along the length direction of the air outlet. The connecting rod is rotatably connected to each of the plurality of louvers. The rotation axis of the connecting rod and the louvers is parallel and spaced from the rotation axis of the louvers and the air deflector assembly; a third driving device, which is arranged on the housing and on one side in the length direction of the air deflector assembly, and is used to drive the connecting rod to move along the length direction of the air outlet. The third driving device and the connecting rod are detachably connected.

[0016] In some embodiments of the present utility model, a rotary hook is provided at one end of the connecting rod. The third driving device includes: a third motor, which is arranged on the housing; a third gear, which is connected to the output shaft of the third motor; a rack, which meshes with the third gear. The rack is arranged in the rotating shaft of the air deflector assembly. One end of the rotary hook is rotatably connected to the rack and the rotation axis coincides with the rotation axis of the air deflector assembly. The rotary hook and the rack are detachably connected.

[0017] In some embodiments of the present utility model, a connecting structure is provided at one end of the rack. The rotary hook is rotatably and detachably connected to the connecting structure. The connecting structure includes a connecting body, which is connected to the rack. The connecting body has a third shaft hole extending along the extending direction of the connecting rod. A first step surface is provided on the inner peripheral wall of the third shaft hole. A first clamping shaft is provided on the rotary hook. The first clamping shaft is arranged in the third shaft hole. The first clamping shaft includes a first clamping portion and a second clamping portion that are opposite and spaced apart. Second step surfaces that abut against the first step surface are provided on the surfaces of the first clamping portion and the second clamping portion facing away from each other.

[0018] In some embodiments of the present utility model, two relatively arranged second notches are provided on the peripheral wall of the connecting body. Two second elastic buckles are respectively connected to the inner walls of the two second notches. The two second elastic buckles are respectively used to cooperate with the first clamping portion and the second clamping portion.

[0019] In some embodiments of the present utility model, the connecting rod includes a connecting rod body and the rotary hook. The rotary hook is located on a side of the connecting rod body close to the rack. A chute is further provided on the rotary hook. The chute is located on a side of the first clamping shaft close to the connecting rod body. The extending direction of the chute is perpendicular to the rack. A protrusion is provided at one end of the connecting rod body close to the rotary hook. The protrusion is slidable along the length direction of the chute.

[0020] In some embodiments of the present utility model, there is one connecting rod; or there are a plurality of connecting rods arranged at intervals along the length direction of the air outlet. Two adjacent connecting rods among the plurality of connecting rods are detachably connected.

[0021] In some embodiments of the present utility model, there are a plurality of connecting rods arranged at intervals along the length direction of the air outlet. One end of one of the two adjacent connecting rods is provided with a first joint, and one end of the other connecting rod is provided with a second joint. The first joint and the second joint are detachably connected. The first joint has a fourth shaft hole extending along the extending direction of the connecting rod. A third step surface is provided on the inner peripheral wall of the fourth shaft hole. A second clamping shaft is provided on the second joint. The second clamping shaft passes through the fourth shaft hole. The second clamping shaft includes a third clamping portion and a fourth clamping portion that are opposite and spaced apart. Fourth step surfaces that abut against the third step surface are provided on surfaces of the third clamping portion and the fourth clamping portion facing away from each other.

[0022] In some embodiments of the present utility model, two opposite third notches are provided on the peripheral wall of the first joint. Two third elastic buckles are respectively connected to inner walls of the two third notches. The two third elastic buckles are respectively used for cooperating with the third clamping portion and the fourth clamping portion.

[0023] In some embodiments of the present utility model, a first air deflector is further provided at one end of the air guiding channel. The first air deflector extends along the length direction of the air outlet. The first air deflector and the louvers are arranged along the extending direction of the air guiding channel. In the shutdown state, along the air flow direction, the louvers are located at the air outlet end of the air guiding channel.

[0024] Additional aspects and advantages of the present utility model will be given in part in the following description, become apparent in part from the following description, or be learned through the practice of the present utility model. Description of the Drawings

[0025] The above and / or additional aspects and advantages of the present utility model will become apparent and be readily understood from the description of the embodiments in conjunction with the following drawings, wherein:

[0026] Figure 1It is a structural diagram of an air conditioner according to an embodiment of the present utility model. Among them, the air conditioner is in a shutdown state, and the door body closes the air outlet;

[0027] Figure 2 It is a Figure 1 cross-sectional view along line A-A in the figure;

[0028] Figure 3 It is a structural diagram of an air conditioner according to an embodiment of the present utility model. Among them, the air conditioner is in a shutdown state, and the door body opens the air outlet;

[0029] Figure 4 It is a Figure 3 cross-sectional view along line B-B in the figure;

[0030] Figure 5 It is a partial structural diagram of an air conditioner according to an embodiment of the present utility model;

[0031] Figure 6 It is a Figure 5 cross-sectional view along line C-C in the figure;

[0032] Figure 7 It is Figure 5 an enlarged view of part D in the figure;

[0033] Figure 8 It is a partial structural diagram of an air conditioner from another perspective according to an embodiment of the present utility model;

[0034] Figure 9 It is Figure 8 an enlarged view of part G in the figure;

[0035] Figure 10 It is Figure 8 an enlarged view of part H in the figure;

[0036] Figure 11 It is a partial structural diagram of an air conditioner from yet another perspective according to an embodiment of the present utility model;

[0037] Figure 12 It is Figure 11 an enlarged view of part E in the figure;

[0038] Figure 13 It is Figure 11 an enlarged view of part F in the figure;

[0039] Figure 14 It is a structural diagram of a wind guiding assembly, a first driving device, a second driving device, and a third driving device according to an embodiment of the present utility model;

[0040] Figure 15 It is Figure 14 an enlarged view of part K in the figure;

[0041] Figure 16 It is Figure 14Cross-sectional view;

[0042] Figure 17 is Figure 16 The enlarged view at position I in

[0043] Figure 18 is Figure 16 The enlarged view at position J in

[0044] Figure 19 It is a partial explosion view of the first driving device and the second driving device according to an embodiment of the present invention.

[0045] Reference numerals:

[0046] 100, air conditioner;

[0047] 1, housing; 11, air outlet; 12, accommodation cavity; 13, air outlet duct; 14, door body; 15, first installation groove; 151, first hook; 16, support part; 161, second installation groove; 1611, second shaft hole; 1612, third hook; 1613, second card slot;

[0048] 2, cross-flow fan;

[0049] 3, heat exchanger;

[0050] 4, air deflector assembly; 41, air deflector plate assembly; 411, air deflector channel; 412, second air deflector plate; 413, connecting plate; 414, first air deflector plate; 415, rotating shaft; 4151, first notch; 416, mating hole; 42, louvers; 421, avoidance notch; 43, connecting rod; 431, rotating hook; 4311, first clamping shaft; 4312, first clamping part; 4313, second clamping part; 4314, second step surface; 4315, sliding groove; 432, connecting rod body; 4321, protrusion; 433, first joint; 4331, third notch; 4332, third elastic buckle; 434, second joint; 44, adapter;

[0051] 5, first driving device; 51, first motor; 52, gear assembly; 521, first gear; 522, second gear; 5221, protruding part;

[0052] 6, second driving device; 61, second motor; 611, output shaft;

[0053] 7, third driving device; 71, third motor; 72, third gear; 73, rack; 731, connecting body; 7311, third shaft hole; 7312, first step surface; 7313, second notch; 7314, second elastic buckle;

[0054] 8, first pressing plate; 81, first elastic buckle; 811, first buckle body; 812, first buckle;

[0055] 9. Second pressing plate; 91. Fourth snap button; 911. Second snap body; 912. Second snap; 92. Fourth hook. Specific embodiments

[0056] Embodiments of the present invention will be described in detail below. Examples of the embodiments are shown in the accompanying drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary only for explaining the present invention and should not be construed as limiting the present invention.

[0057] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention 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 should not be construed as limiting the present invention. In addition, features defined as "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present invention, unless otherwise specified, the meaning of "plurality" is two or more.

[0058] In the description of the present invention, it should be noted that unless otherwise clearly defined and limited, the terms "mounted", "connected", and "connected" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0059] An air conditioner 100 according to an embodiment of the present invention will be described below with reference to the accompanying drawings.

[0060] As Figures 1 - 4 、 Figure 5 、 Figure 7 and Figure 14 shown, the air conditioner 100 according to an embodiment of the present invention includes a housing 1 and an air guiding assembly 4.

[0061] Among them, the air conditioner 100 can be a floor-standing air conditioner 100. The housing 1 is arranged in a vertically extending cylindrical shape. The housing 1 is used to form the overall appearance of the air conditioner 100. The housing 1 has an air outlet duct 13 and an air outlet 11 communicating with the air outlet duct 13.

[0062] In some embodiments, as Figure 4 shown, a heat exchanger 3, a cross-flow fan 2, etc. are further provided in the housing 1. In the air flow direction in the housing 1, the heat exchanger 3 is upstream of the cross-flow fan 2. The heat exchanger 3 is used for heat exchange with the air flow passing through its surface, and the cross-flow fan 2 is used to drive the air flow from the air inlet to the air outlet 11.

[0063] During the specific operation of the air conditioner 100, under the rotational drive of the cross-flow fan 2, the outside air flow will enter the housing 1 from the air inlet, form an air outlet flow after the heat exchange of the heat exchanger 3, and the air outlet flow flows from the air outlet duct 13 to the air outlet 11 and is blown out of the air conditioner 100 from the air outlet 11 to ensure the functions of cooling, heating, and air supply of the air conditioner 100.

[0064] Specifically, the air guiding assembly 4 includes a wind guiding plate assembly 41 and louvers 42. The wind guiding plate assembly 41 is integrally rotatably arranged at a position close to the air outlet 11 of the air outlet duct 13. The wind guiding plate assembly 41 has a wind guiding channel 411. At least a part of the louvers 42 is located in the wind guiding channel 411 and is rotatably arranged on the wind guiding plate assembly 41. The rotation axis of the louvers 42 is perpendicular to the rotation axis of the wind guiding plate assembly 41.

[0065] It can be understood that the wind guiding plate assembly 41 has an air outlet end and an air inlet end, and when the air conditioner 100 is turned on, the air inlet end communicates with the air outlet duct 13. Thus, the air flow in the air outlet duct 13 enters the wind guiding channel 411 through the air inlet end and flows out from the air outlet end, and the air flow entering the wind guiding channel 411 is guided by the louvers 42 and then flows out, so as to realize the air guiding of the air guiding assembly 4 to the air flow. At the same time, since the rotation axis of the louvers 42 is perpendicular to the rotation axis of the wind guiding plate assembly 41, the wind guiding plate assembly 41 and the louvers 42 guide the air flow in two mutually perpendicular directions respectively, thereby increasing the air flow conveying mode of the air guiding assembly 4 and improving the functionality of the air conditioner 100 applying the air guiding assembly 4.

[0066] By integrating the louver 42 and the air deflector assembly 41 into the air guiding assembly 4, the air outlet area occupied by the louver 42 and the air deflector assembly 41 is reduced, thereby effectively increasing the rotation space and the sweeping area of the louver 42 and the air deflector assembly 41. Moreover, the air guiding assembly 4 is rotatably arranged at a position close to the air outlet 11 of the air outlet duct 13, further increasing the rotation space and the sweeping area of the louver 42 and the air deflector assembly 41, thus effectively increasing the sweeping angle and range of the louver 42 and the air deflector assembly 41, and then increasing the conveying angle and range of the air flow, and effectively increasing the air supply volume, so that the air conditioner 100 applying the air guiding assembly 4 can take into account the air outlet angle and the air supply volume and realize comfortable air supply in different scenarios.

[0067] Meanwhile, by detachably connecting the air guiding assembly 4 to the housing 1, the louver 42 and the air deflector assembly 41 can be detached from the housing 1 together or the louver 42 and the air deflector assembly 41 can be installed on the housing 1 together, which is convenient for operations such as cleaning, inspecting and maintaining the louver 42 and the air deflector assembly 41, making the air conditioner 100 have the advantages of easy installation and easy disassembly.

[0068] For the air conditioner 100 according to an embodiment of the present invention, the housing 1 has an air outlet duct 13 and an air outlet 11 communicated with the air outlet duct 13. The air guiding assembly 4 includes an air deflector assembly 41 and a louver 42. The air deflector assembly 41 has an air guiding channel 411. At least a part of the louver 42 is located in the air guiding channel 411 and is rotatably arranged on the air deflector assembly 41. The rotation axis of the louver 42 is perpendicular to the rotation axis of the air deflector assembly 41, thereby increasing the air flow conveying modes of the air guiding assembly 4 and improving the functionality of the air conditioner 100. Meanwhile, by rotatably arranging the air deflector assembly 41 as a whole at a position close to the air outlet 11 of the air outlet duct 13, the sweeping angle and range of the louver 42 and the air deflector assembly 41 are effectively increased, thus increasing the conveying angle and range of the air flow, and effectively increasing the air supply volume, so that the air conditioner 100 can take into account the air outlet angle and the air supply volume. In addition, by detachably connecting the air guiding assembly 4 to the housing 1, it is convenient for operations such as cleaning, inspecting and maintaining the louver 42 and the air deflector assembly 41, making the air conditioner 100 have the advantages of easy installation and easy disassembly.

[0069] In some embodiments of the present invention, as Figure 3 、 Figure 5 、 Figure 7 、 Figure 14 、 Figure 15 and Figure 19 shown, the air guiding assembly 4 further includes a first driving device 5. Among them, the first driving device 5 is arranged on the housing 1 and is located in the length direction of the air deflector assembly 41 (such as Figure 14On one side of the second direction (as shown), the first driving device 5 is used to drive the air deflector assembly 41 to rotate around a rotation axis extending along the length direction of the air outlet 11, and the first driving device 5 and the air deflector assembly 41 are detachably connected.

[0070] Thus, by driving the air deflector assembly 41 to rotate around a rotation axis extending along the length direction of the air outlet 11 through the first driving device 5, the air deflector assembly 41 deflects the air flow in the width direction of the air outlet 11 (such as Figure 3 the first direction as shown). At the same time, the first driving device 5 is arranged on the housing 1 and is located on one side in the length direction of the air deflector assembly 41. By detachably connecting the first driving device 5 and the air deflector assembly 41, it is ensured that the air deflector assembly 4 is detachably connected to the housing 1.

[0071] In some embodiments of the present invention, as Figures 7 - 9 and Figure 19 shown, the first driving device 5 includes a first motor 51 and a gear assembly 52. Among them, the first motor 51 is arranged on the housing 1, the input gear of the gear assembly 52 is connected to the output shaft 611 of the first motor 51, and one end of the air deflector assembly 41 close to the first driving device 5 has a rotating shaft 415, and the output gear of the gear assembly 52 is spliced with the rotating shaft 415. The splicing of the output gear of the gear assembly 52 and the rotating shaft 415 can be understood as: the output gear of the gear assembly 52 cooperates with the rotating shaft 415, and the output gear of the gear assembly 52 is connected in a manner that can drive the rotating shaft 415 to rotate.

[0072] Thus, when the first motor 51 operates, the output shaft 611 of the first motor 51 rotates to drive the gear assembly 52 to rotate, and then drives the rotating shaft 415 spliced with the output gear of the gear assembly 52 to rotate, so as to realize the rotation of the air deflector assembly 41 around a rotation axis extending along the length direction of the air outlet 11, so that the air deflector assembly 41 deflects the air flow in the width direction of the air outlet 11, ensuring the air supply effect and function of the air conditioner 100. At the same time, the output gear of the gear assembly 52 is spliced with the rotating shaft 415, ensuring the detachable connection between the first driving device 5 and the air deflector assembly 41.

[0073] In some embodiments of the present invention, as Figure 7 、 Figure 9 and Figure 19 shown, the gear assembly 52 includes a first gear 521 and a second gear 522. Among them, the first gear 521 is configured as an input gear, the second gear 522 meshes with the first gear 521 and is configured as an output gear, the rotating shaft 415 has a first notch 4151, and the second gear 522 has a protruding portion 5221 that cooperates with the first notch 4151, and the protruding portion 5221 and the rotating shaft 415 are spliced along the circumferential direction of the rotating shaft 415.

[0074] Thus, when the first motor 51 operates, the output shaft 611 of the first motor 51 rotates to drive the first gear 521 to rotate, thereby driving the second gear 522 meshing with the first gear 521 to rotate. The protrusion 5221 of the second gear 522 and the first notch 4151 of the rotating shaft 415 are spliced along the circumferential direction of the rotating shaft 415, so that the second gear 522 drives the air deflector assembly 41 to rotate around the rotation axis extending along the length direction of the air outlet 11, thereby enabling the air deflector assembly 41 to deflect the air flow in the width direction of the air outlet 11, ensuring the air supply effect and function of the air conditioner 100. At the same time, the splicing of the protrusion 5221 of the second gear 522 and the first notch 4151 of the rotating shaft 415 along the circumferential direction of the rotating shaft 415 facilitates the detachable connection between the first driving device 5 and the air deflector assembly 41.

[0075] In some embodiments of the present invention, as Figure 8 and Figure 9 shown, the air conditioner 100 further includes a first pressing plate 8. Wherein, the first pressing plate 8 is detachably connected to the housing 1 and defines a first shaft hole between the first pressing plate 8 and the housing 1. A part of the rotating shaft 415 and the output gear is rotatably disposed in the first shaft hole.

[0076] Thus, by defining the first shaft hole between the first pressing plate 8 and the housing 1, it plays a protective role for the rotating shaft 415 and the output gear, reduces the entry of sundries, and ensures the reliability of the output gear driving the rotating shaft 415 to rotate. At the same time, since a part of the rotating shaft 415 and the output gear is rotatably disposed in the first shaft hole, it avoids the movement interference of the first pressing plate 8 or the housing 1 on the rotating shaft 415 and the output gear, and further ensures the rotation of the air deflector assembly 41 around the rotation axis extending along the length direction of the air outlet 11. In addition, when it is necessary to disassemble the air deflector assembly 4, the detachable connection between the first pressing plate 8 and the housing 1 facilitates the separation of the part of the rotating shaft 415 and the output gear located in the first shaft hole, ensuring the detachable connection between the first driving device 5 and the air deflector assembly 41.

[0077] In some embodiments of the present invention, as Figure 9 shown, one end of the first pressing plate 8 in the length direction is snap-connected to the housing 1, and the other end is connected to the housing 1 through a fastener. Thus, when it is necessary to disassemble the air deflector assembly 4, by disassembling the fastener, one end of the first pressing plate 8 in the length direction is disengaged from the housing 1, so that the part of the rotating shaft 415 and the output gear located in the first shaft hole is exposed, enabling the rotating shaft 415 and the output gear to be separated, thereby realizing the detachable connection between the first driving device 5 and the air deflector assembly 41.

[0078] Furthermore, the first pressure plate 8 has a first fastening hole, and the shell 1 has a second fastening hole corresponding to the first fastening hole. The fastener is inserted into the first fastening hole and the second fastening hole to achieve the connection between the first pressure plate 8 and the shell 1. The fastener is removed from the first fastening hole and the second fastening hole to achieve the separation of the first pressure plate 8 and the shell 1.

[0079] In some embodiments of the present invention, Figure 9 As shown, the housing 1 has a first mounting groove 15, the first pressing plate 8 is located in the first mounting groove 15 and defines a first axial hole between the first pressing plate 8 and the bottom wall of the first mounting groove 15, and one end of the first pressing plate 8 connected to the housing 1 by a fastener is provided with a first spring buckle 81 abutting against the side wall of the first mounting groove 15. Thus, the first spring buckle 81 abuts against the side wall of the first mounting groove 15 to achieve a detachable connection between the first pressing plate 8 and the housing 1. During the installation of the first pressing plate 8 and the housing 1, the first spring buckle 81 is first abutted against the side wall of the first mounting groove 15 to achieve pre-connection and positioning, and then the first pressing plate 8 and the housing 1 are connected by the fastener, thereby reducing the difficulty of assembly and ensuring the connection strength between the first pressing plate 8 and the housing 1.

[0080] Further, the first spring buckle 81 includes a first buckle body 811 and a first buckle 812, the first buckle body 811 extends in the direction from the inside to the outside of the air conditioner 100, the inner end of the first buckle body 811 is connected to the first pressing plate 8, in the direction from the inside to the outside, the first buckle body 811 is inclined in the direction away from the first shaft hole, the side of the first buckle body 811 away from the first pressing plate 8 is connected to the first buckle 812, the side wall of the first installation groove 15 has a first buckle groove matched with the first buckle 812, at least part of the first buckle 812 extends into the first buckle groove and abuts against the inner wall of the first buckle groove. Therefore, through such a setting, it is convenient for the first spring buckle 81 to abut against the side wall of the first installation groove 15, and the assembly difficulty is effectively reduced.

[0081] Furthermore, the side wall of the first mounting groove 15 has a first hook 151, and one end of the first pressure plate 8 that is snap-connected to the shell 1 has a second hook that cooperates with the first hook 151 and is located on the inner side of the first hook 151. The first pressure plate 8 is snap-connected to the shell 1 by snapping together the first hook 151 and the second hook.

[0082] In some embodiments of the present invention, Figure 14 , Figure 16 and Figure 18As shown, the air guide assembly 4 also includes a second driving device 6. The second driving device 6 is arranged on the housing 1 and is located on the side of the air guide plate assembly 41 that is away from the first driving device 5 in the length direction. The second driving device 6 is used to drive the air guide plate assembly 41 to rotate. The second driving device 6 includes a second motor 61. The air guide plate assembly 41 has a matching hole 416 that matches the output shaft 611 of the second motor 61. The matching hole 416 is detachably connected to the output shaft 611 of the second motor 61.

[0083] It can be understood that when the second motor 61 is running, the output shaft 611 of the second motor 61 drives the air deflector assembly 41 to rotate. Therefore, the first drive device 5 and the second drive device 6 located on both sides of the length direction of the air deflector assembly 41 jointly drive the air deflector assembly 41 to rotate, thereby improving the reliability of the rotation of the air deflector assembly 41. At the same time, the second drive device 6 is detachably connected to the output shaft 611 of the second motor 61 through the matching hole 416, ensuring that the second drive device 6 is detachably connected to the air deflector assembly 41.

[0084] In some embodiments of the utility model, there is one air guide plate assembly 41. It is understandable that the air guide plate assembly 41 extends from one end to the other end in the length direction of the air outlet 11, thereby simplifying the structure and processing technology of the air guide assembly 4 and improving production efficiency. In addition, the air guide plate assembly 41 is a single component without redundant components or seams, and has a high integrity, thereby better guiding the flow of air, reducing turbulence and noise, and improving the air guide effect of the air guide assembly 4.

[0085] In some embodiments of the present invention, Figure 14 As shown, there are multiple air guide plate assemblies 41 arranged at intervals along the length direction of the air outlet 11, and two adjacent air guide plate assemblies 41 among the multiple air guide plate assemblies 41 are connected by an adapter 44. At least one louver 42 is provided in the air guide channel 411 of each air guide plate assembly 41, and the ends of the two air guide plate assemblies 41 located at the two ends in the length direction that are away from each other are rotatably connected to the shell 1.

[0086] Thus, through such a setting, multiple air guide plate assemblies 41 can be flexibly combined and adjusted according to actual needs, so as to adapt to different application scenarios and installation environments, and improve the versatility of the air conditioner 100 using the air guide assembly 4. At the same time, when a certain air guide plate assembly 41 is damaged or fails, it can be replaced separately, reducing the maintenance cost and difficulty. In addition, the air guide angle and range of each air guide plate assembly 41 can be designed according to different air guide requirements, and the flow path and distribution of the airflow can be further optimized.

[0087] The two air guide plate assemblies 41 at both ends in the length direction are rotatably connected to the housing 1 at the ends facing away from each other, ensuring the rotation of the air guide plate assemblies 41 and realizing the detachable connection between the air guide assembly 4 and the housing 1. Specifically, the ends of the two air guide plate assemblies 41 at both ends in the length direction facing away from each other are respectively rotatably connected to the first driving device 5 and the second driving device 6. The air guide plate assembly 41 rotatably connected to the first driving device 5 has a rotating shaft 415, and the rotating shaft 415 is spliced with the output gear, so that the first driving device 5 drives the air guide plate assembly 41 to rotate and the two are detachably connected. The air guide plate assembly 41 rotatably connected to the second driving device 6 has a mating hole 416, and the output shaft 611 of the second motor 61 of the second driving device 6 extends into the mating hole 416, so that the second driving device 6 drives the air guide plate assembly 41 to rotate and the two are detachably connected.

[0088] In some embodiments of the present invention, as Figures 6 - 8 and Figure 10 shown, a plurality of air guide plate assemblies 41 are arranged at intervals along the length direction of the air outlet 11. At least some of the adjacent two air guide plate assemblies 41 among the plurality of air guide plate assemblies 41 are provided with a support portion 16. The support portion 16 is connected to the housing 1. The air conditioner 100 further includes a second pressing plate 9. The second pressing plate 9 is detachably connected to the support portion 16 and defines a second shaft hole 1611 therebetween. The adapter 44 is rotatably disposed in the second shaft hole 1611.

[0089] Thus, the second shaft hole 1611 is defined between the second pressing plate 9 and the support portion 16, which plays a protective role for the adapter 44, reduces the entry of sundries, and ensures the reliability of the connection and rotation between the air guide plate assemblies 41. At the same time, since the adapter 44 is rotatably disposed in the second shaft hole 1611, the movement interference of the second pressing plate 9 or the support portion 16 on the adapter 44 is avoided, further ensuring that the air guide plate assemblies 41 rotate around the rotation axis extending along the length direction of the air outlet 11. In addition, when the air guide assembly 4 needs to be disassembled, the detachable connection between the second pressing plate 9 and the support portion 16 facilitates the removal of the adapter 44 located in the second shaft hole 1611, ensuring the disassembly of the air guide plate assemblies 41.

[0090] In some embodiments of the present invention, as Figures 6 - 8 and Figure 10 shown, one end of the second pressing plate 9 in the length direction is snap-connected to the support portion 16, and the other end is connected to the support portion 16 through a fastener. Thus, when the air guide assembly 4 needs to be disassembled, by removing the fastener, one end of the second pressing plate 9 in the length direction is disengaged from the support portion 16, so that the adapter 44 located in the second shaft hole 1611 is exposed, facilitating the disassembly of the air guide plate assemblies 41.

[0091] Furthermore, the second pressure plate 9 has a third fastening hole, and the support portion 16 has a fourth fastening hole corresponding to the third fastening hole. The fastener is passed through the third fastening hole and the fourth fastening hole to achieve the connection between the second pressure plate 9 and the support portion 16. The fastener is removed from the third fastening hole and the fourth fastening hole to achieve the detachment of the second pressure plate 9 and the support portion 16.

[0092] In some embodiments of the present invention, Figures 6 - 8 and Figure 10 As shown, the support portion 16 has a second mounting groove 161, the second pressing plate 9 is located in the second mounting groove 161 and defines a second axial hole 1611 between the second pressing plate 9 and the bottom wall of the second mounting groove 161, and one end of the second pressing plate 9 connected to the support portion 16 by a fastener is provided with a fourth spring buckle 91 abutting against the side wall of the second mounting groove 161. Thus, the second pressing plate 9 and the support portion 16 are detachably connected by the fourth spring buckle 91 abutting against the side wall of the second mounting groove 161. During the installation of the second pressing plate 9 and the support portion 16, the fourth spring buckle 91 is first abutted against the side wall of the second mounting groove 161 to achieve pre-connection and positioning, and then the second pressing plate 9 and the support portion 16 are connected by the fastener, thereby reducing the difficulty of assembly and ensuring the connection strength of the second pressing plate 9 and the support portion 16.

[0093] Further, the fourth spring buckle 91 includes a second buckle body 911 and a second buckle 912, the second buckle body 911 extends from the inside to the outside of the air conditioner 100, the inner end of the second buckle body 911 is connected to the second pressing plate 9, and in the direction from the inside to the outside, the second buckle body 911 is inclined in the direction away from the second shaft hole 1611, and the side of the second buckle body 911 away from the second pressing plate 9 is connected to the second buckle 912, and the side wall of the second installation groove 161 has a second clamping groove 1613 that matches the second clamping groove 912, and at least part of the second clamping groove 912 extends into the second clamping groove 1613 and abuts against the inner wall of the second clamping groove 1613. Therefore, through such a setting, it is convenient for the fourth spring buckle 91 to abut against the side wall of the second installation groove 161, and the assembly difficulty is effectively reduced.

[0094] Furthermore, the side wall of the second mounting groove 161 has a third hook 1612, and one end of the second pressure plate 9 that is snap-connected with the support portion 16 has a fourth hook 92 that cooperates with the third hook 1612 and is located on the inner side of the third hook 1612. The second pressure plate 9 is snap-connected with the support portion 16 by snapping together the third hook 1612 and the fourth hook 92.

[0095] In some embodiments of the present invention, Figure 7 and Figures 11 - 19As shown, the louvers 42 are arranged in a plurality of intervals along the length direction of the air outlet 11, and the air guide assembly 4 further includes a connecting rod 43 and a third driving device 7. The connecting rod 43 extends in the length direction of the air outlet 11, and the connecting rod 43 is rotatably connected to the plurality of louvers 42. The rotation axis of the connecting rod 43 and the louvers 42 is parallel to the rotation axis of the louvers 42 and the air guide assembly 41 and is arranged in intervals. The third driving device 7 is arranged on the housing 1 and is located on one side of the length direction of the air guide assembly 41, and is used to drive the connecting rod 43 to move along the length direction of the air outlet 11. The third driving device 7 and the connecting rod 43 are detachably connected.

[0096] It is understandable that the third driving device 7 drives the connecting rod 43 to move along the length direction of the air outlet 11, thereby driving the louver 42 to rotate around the rotation axis along the width direction of the air outlet 11, so that the louver 42 guides the airflow in the length direction of the air outlet 11. At the same time, the louver 42 is arranged in a plurality of intervals along the length direction of the air outlet 11, so that the airflow in the air guide channel 411 flows out after being guided by the plurality of louvers 42, thereby improving the uniformity of the outflowing airflow, thereby better meeting the user's use needs. The plurality of louvers 42 are all rotatably connected to the connecting rod 43, so that the synchronous rotation of the plurality of louvers 42 can be achieved. In addition, the third driving device 7 and the connecting rod 43 are detachably connected, so as to ensure that the third driving device 7 and the air guide assembly 4 are detachably connected, thereby ensuring that the air guide assembly 4 and the housing 1 are detachably connected.

[0097] Furthermore, the air deflector assembly 41 is arranged in a plurality of intervals along the length direction of the air outlet 11, and two adjacent air deflector assemblies 41 among the plurality of air deflector assemblies 41 are connected by an adapter 44, the axis of the adapter 44 is colinear with the rotation axis of the air deflector assembly 41, and the adapter 44 has a first accommodation space, both ends of the first accommodation space along the length direction of the air outlet 11 are open and connected to the air guide channel 411, and the connecting rod 43 is located in the first accommodation space and the air guide channel 411. Therefore, such an arrangement further ensures that the plurality of air deflector assemblies 41 and the connecting rod 43 rotate synchronously, thereby improving the overall reliability. At the same time, by locating the connecting rod 43 in the first accommodation space and the air guide channel 411, the space is better utilized, making the layout of the air deflector assembly 4 more reasonable, and the adapter 44 plays a certain protective role on the connecting rod 43, thereby further improving the reliability of the air deflector assembly 4.

[0098] In some embodiments of the present invention, Figure 12 , Figure 15 , Figure 17 and Figure 19As shown, a rotary hook 431 is provided at one end of the connecting rod 43. The third driving device 7 includes a third motor 71, a third gear 72, and a rack 73. Among them, the third motor 71 is provided on the housing 1, the third gear 72 is connected to the output shaft 611 of the third motor 71, the rack 73 meshes with the third gear 72, the rack 73 is disposed within the rotating shaft 415 of the air deflector assembly 41, one end of the rotary hook 431 is rotatably connected to the rack 73 and the axis of rotation coincides with the axis of rotation of the air deflector assembly 41, and the rotary hook 431 is detachably connected to the rack 73.

[0099] Thus, when the first motor 51 operates, the output shaft 611 of the first motor 51 rotates to drive the third gear 72 to rotate. Through the meshing of the third gear 72 and the rack 73, during the rotation of the third gear 72, the rack 73 is driven along the length direction of the connecting rod 43. Since a rotary hook 431 is provided at one end of the connecting rod 43 and one end of the rotary hook 431 is rotatably connected to the rack 73, the rack 73 drives the connecting rod 43 to move along the length direction of the air outlet 11 through the rotary hook 431, thereby driving a plurality of louvers 42 to rotate, realizing the guiding of the airflow in the length direction of the air outlet 11 by the louvers 42.

[0100] At the same time, due to the fact that one end of the rotary hook 431 is rotatably connected to the rack 73 and the axis of rotation coincides with the axis of rotation of the air deflector assembly 41, the rack 73 can limit the rotation of the air deflector assembly 41 to a certain extent. When the rack 73 remains stationary, the rotary hook 431 can rotate along with the rotation of the air deflector assembly 41, and the connecting rod 43 can rotate along with the rotation of the air deflector assembly 41, realizing the relative rotation of the connecting rod 43 and the driving motor, gear, and rack 73.

[0101] In addition, by disposing the rack 73 within the rotating shaft 415 of the air deflector assembly 41, the space can be better utilized, making the layout of the air deflector assembly 4 more reasonable, and the rotating shaft 415 can play a certain protective role for the rack 73, further improving the reliability of the air deflector assembly 4.

[0102] By the detachable connection between the rotary hook 431 and the rack 73, the detachable connection between the rack 73 and the connecting rod 43 is realized, so that the third driving device 7 and the connecting rod 43 are detachably connected, ensuring the detachable connection between the third driving device 7 and the air deflector assembly 4, and thus ensuring the detachable connection between the air deflector assembly 4 and the housing 1.

[0103] In some embodiments of the present invention, such as Figure 12 、 Figure 15 、 Figure 17 and Figure 19As shown, one end of the rack 73 is provided with a connection structure. The rotary hook 431 is rotatably and detachably connected to the connection structure. The connection structure includes a connection body 731. The connection body 731 is connected to the rack 73. The connection body 731 has a third shaft hole 7311 extending along the extension direction of the connecting rod 43. The inner peripheral wall of the third shaft hole 7311 has a first step surface 7312.

[0104] The rotary hook 431 is provided with a first clamping shaft 4311. The first clamping shaft 4311 is inserted into the third shaft hole 7311. The first clamping shaft 4311 includes a first clamping portion 4312 and a second clamping portion 4313 that are opposite and spaced apart. The surfaces of the first clamping portion 4312 and the second clamping portion 4313 facing away from each other have a second step surface 4314 that abuts against the first step surface 7312.

[0105] Thus, by the second step surface 4314 on the surfaces of the first clamping portion 4312 and the second clamping portion 4313 facing away from each other that abuts against the first step surface 7312, the first clamping shaft 4311 inserted into the third shaft hole 7311 is rotatably connected to the connection structure, so that the rotary hook 431 can rotate with the rotation of the air deflector assembly 41 while the rack 73 remains stationary, and the connecting rod 43 can rotate with the rotation of the air deflector assembly 41, realizing the relative rotation of the connecting rod 43 and the drive motor, the gear and the rack 73.

[0106] At the same time, by the detachable connection between the rotary hook 431 and the connection structure, the detachable connection between the rack 73 and the connecting rod 43 is realized, so that the third driving device 7 and the connecting rod 43 are detachably connected, ensuring the detachable connection between the third driving device 7 and the air deflector assembly 4, and thus ensuring the detachable connection between the air deflector assembly 4 and the housing 1.

[0107] In some embodiments of the present invention, as Figure 12 , Figure 15 , Figure 17 and Figure 19 shown, two relatively arranged second notches 7313 are provided on the peripheral wall of the connection body 731. Two second elastic buckles 7314 are respectively connected to the inner walls of the two second notches 7313. The two second elastic buckles 7314 are respectively used to cooperate with the first clamping portion 4312 and the second clamping portion 4313.

[0108] It can be understood that when it is necessary to disassemble the rotary hook 431, press the two second snap buttons 7314 to move them in the direction of the central axis of the third shaft hole 7311, so that the two second snap buttons 7314 respectively push the first clamping portion 4312 and the second clamping portion 4313 to move in the direction of the central axis of the third shaft hole 7311, causing the first step surface 7312 and the second step surface 4314 to disengage, thereby separating the rotary hook 431 from the connection structure and realizing the disassembly of the third driving device 7 and the connecting rod 43. Thus, by such a setting, the disassembly difficulty of the rotary hook 431 is reduced and the efficiency is improved.

[0109] In some embodiments of the present invention, such as Figure 12 , Figure 15 , Figure 17 and Figure 19 shown, the connecting rod 43 includes a connecting rod 43 body and a rotary hook 431. The rotary hook 431 is located on the side of the connecting rod 43 body close to the rack 73. A chute 4315 is further provided on the rotary hook 431. The chute 4315 is located on the side of the first clamping shaft 4311 close to the connecting rod 43 body. The extending direction of the chute 4315 is perpendicular to the rack 73. A protrusion 4321 is provided at one end of the connecting rod 43 body close to the rotary hook 431. The protrusion 4321 is slidable along the length direction of the chute 4315.

[0110] It can be understood that when the third driving device 7 drives the connecting rod 43 to move along the length direction of the air outlet 11, the connecting rod 43 generates a displacement in a direction perpendicular to the rack 73. By providing the chute 4315, a moving space can be provided for the displacement of the connecting rod 43, avoiding interference between the connecting rod 43 and the rotary hook 431, and increasing the reliability of the movement of the connecting rod 43 in the length direction of the air outlet 11.

[0111] In some embodiments of the present invention, there is one connecting rod 43. It can be understood that the connecting rod 43 extends from one end to the other end in the length direction of the air outlet 11. Thus, the structure and processing technology of the connecting rod 43 can be simplified, and the production efficiency can be improved. In addition, making the connecting rod 43 a single component, without redundant components or seams, has a high integrity, reduces turbulence and noise, and improves the air guiding effect of the air guiding component 4.

[0112] In some embodiments of the present invention, such as Figure 11 , Figure 13 , Figure 16 and Figure 18 shown, or there are a plurality of connecting rods 43 arranged at intervals along the length direction of the air outlet 11, and two adjacent connecting rods 43 among the plurality of connecting rods 43 are detachably connected.

[0113] Thus, through such a setting, multiple link rods 43 can be flexibly combined and adjusted according to actual needs, so as to adapt to different application scenarios and installation environments, and improve the versatility of the air conditioner 100 applying the air guiding component 4. At the same time, when a certain link rod 43 is damaged or fails, it can be replaced separately, reducing the maintenance cost and difficulty.

[0114] Further, the link rod 43 at one end in the length direction is rotatably connected to the third driving device 7 and detachably connected to the housing 1. Thus, the link rod 43 is driven by the third driving device 7 to move along the length direction of the air outlet 11, so as to drive the louver 42 to rotate around the rotation axis along the width direction of the air outlet 11, realizing the guiding of the air flow by the louver 42 in the length direction of the air outlet 11, and ensuring the detachable connection between the air guiding component 4 and the housing 1 through the detachable connection between the link rod 43 and the housing 1.

[0115] In some embodiments of the present utility model, such as Figure 11 , Figure 13 , Figure 16 and Figure 18 shown, a plurality of link rods 43 are arranged at intervals along the length direction of the air outlet 11. One end of one of the adjacent two link rods 43 is provided with a first joint 433, and one end of the other link rod 43 is provided with a second joint 434. The first joint 433 and the second joint 434 are detachably connected. The first joint 433 has a fourth shaft hole extending along the extending direction of the link rod 43, and a third step surface is provided on the inner peripheral wall of the fourth shaft hole. A second clamping shaft is provided on the second joint 434, and the second clamping shaft is inserted into the fourth shaft hole. The second clamping shaft includes a third clamping portion and a fourth clamping portion that are opposite and spaced apart. Fourth step surfaces that abut against the third step surface are provided on the surfaces of the third clamping portion and the fourth clamping portion facing away from each other.

[0116] Thus, through the fourth step surfaces that abut against the third step surface on the surfaces of the third clamping portion and the fourth clamping portion facing away from each other, the connection between the second joint 434 inserted into the fourth shaft hole and the first joint 433 is realized, so that a plurality of link rods 43 move synchronously along the length direction of the air outlet 11, thereby driving the louver 42 to rotate around the rotation axis along the width direction of the air outlet 11, realizing the guiding of the air flow by the louver 42 in the length direction of the air outlet 11. At the same time, through the detachable connection between the first joint 433 and the second joint 434, the detachable connection between two adjacent link rods 43 among a plurality of link rods 43 is ensured.

[0117] In some embodiments of the present utility model, such as Figure 11 , Figure 13 , Figure 16 and Figure 18As shown, two third notches 4331 are provided on the peripheral wall of the first joint 433 at opposite positions. Two third snap buttons 4332 are respectively connected to the inner walls of the two third notches 4331, and the two third snap buttons 4332 are respectively used to cooperate with the third engaging portion and the fourth engaging portion.

[0118] It can be understood that when it is necessary to disassemble two adjacent link rods 43 among multiple link rods 43, press the two third snap buttons 4332 to move them in the direction of the central axis of the fourth shaft hole, so that the two third snap buttons 4332 respectively push the third engaging portion and the fourth engaging portion to move in the direction of the central axis of the fourth shaft hole, causing the third step surface and the fourth step surface to disengage, thereby separating the first joint 433 and the second joint 434, and realizing the disassembly of two adjacent link rods 43 among multiple link rods 43. Thus, through such a setting, the disassembly difficulty of two adjacent link rods 43 among multiple link rods 43 is reduced, and the efficiency is improved.

[0119] In some embodiments of the present invention, as Figures 1 - 4 and Figure 15 shown, a first air deflector 414 is further provided at one end of the air guiding channel 411. The first air deflector 414 extends along the length direction of the air outlet 11. The first air deflector 414 and the louvers 42 are arranged along the extending direction of the air guiding channel 411. In the shutdown state, along the air flow direction, the louvers 42 are located at the air outlet end of the air guiding channel 411.

[0120] It can be understood that when the air guiding assembly 4 is disassembled, the air conditioner 100 needs to be in the shutdown state. At this time, the louvers 42 are located at the air outlet end of the air guiding channel 411, and the first air deflector 414 is located at the air inlet end of the air guiding channel 411. Thus, the first air deflector 414 is located inside the louvers 42, avoiding the first air deflector 414 from blocking the disassembly or installation of the air guiding assembly 4 and the housing 1, reducing the difficulty and improving the efficiency.

[0121] In some embodiments, as Figures 1 - 4 and Figure 14 shown, when it is necessary to disassemble the air guiding assembly 4, first, the air conditioner 100 is in the shutdown state. Along the air flow direction, the louvers 42 are located at the air outlet end of the air guiding channel 411. Then, the rotary hook 431 is disassembled from the rack 73, so that the third driving device 7 and the link rod 43 are disassembled and connected. Then, the first pressing plate 8 is disassembled from the housing 1 to expose a part of the rotating shaft 415 and the output gear located in the first shaft hole, and the second pressing plate 9 is disassembled from the housing 1 to expose the adapter 44 located in the second shaft hole 1611. Then, an outward force is applied to the middle of the air guiding assembly 4, so that the rotating shaft 415 and the output gear are disengaged and the output shaft 611 of the second motor 61 is disengaged from the mating hole 416, thereby disassembling the air guiding assembly 4 from the housing 1.

[0122] In some embodiments, asFigure 15 As shown, the louvers 42 and the first air deflector 414 are arranged alternately, and the louvers 42 are provided with avoidance notches 421 for avoiding the first air deflector 414. The louvers 42 and the first air deflector 414 are arranged in an interlaced manner, so that the louvers 42 are closer to the air outlet 11, improving the air supply angle of the louvers 42 in the length direction of the air outlet 11, increasing the rotation space and the sweeping area of the louvers 42, and thus improving the air guiding effect of the louvers 42 in the up and down directions. By providing the avoidance notches 421, the louvers 42 and the first air deflector 414 can be arranged in the air guiding channel 411 at the same time, avoiding interference and collision between the louvers 42 and the first air deflector 414.

[0123] In some embodiments, as Figure 15 shown, the first air deflectors 414 are multiple and arranged at intervals in the width direction of the air guiding channel 411, and the avoidance notches 421 are multiple and corresponding to the multiple first air deflectors 414 one by one. Thus, the air guiding effect of the air deflector assembly 41 on the air flow in the width direction of the air outlet 11 is further improved by the multiple first air deflectors 414.

[0124] In some embodiments, as Figure 15 shown, the air deflector assembly 41 includes a second air deflector 412 and a connecting plate 413. The second air deflector 412 extends along the length direction of the air outlet 11, and the second air deflectors 412 are two and arranged at intervals. A air guiding channel 411 is defined between the two second air deflectors 412. Thus, the two second air deflectors 412 can guide the air flow entering the air guiding channel 411. By the overall rotation of the air deflector assembly 41, the angles of the two second air deflectors 412 can be adjusted, so as to guide the air flow in the width direction of the air outlet 11.

[0125] There are two connecting plates 413, and the two connecting plates 413 are respectively located at both ends of the second air deflector 412 in the length direction. Each connecting plate 413 is connected to the two second air deflectors 412. The connecting plates 413 are rotatably arranged on the inner wall of the air outlet duct 13, and both ends of the first air deflector 414 in the length direction are respectively connected to the two connecting plates 413. The connecting plates 413 can connect the two second air deflectors 412 and facilitate the rotational connection of the air deflector assembly 41 with the inner wall of the air outlet duct 13. In addition, a ring structure is formed by the two connecting plates 413 and the two second air deflectors 412, so as to gather and guide the air flow entering the air guiding channel 411, slow down the divergence of the air flow, and effectively improve the air supply distance. At the same time, by rotatably arranging the connecting plates 413 on the inner wall of the air outlet duct 13, the air deflector assembly 41 is integrally rotatably arranged at a position close to the air outlet 11 of the air outlet duct 13, ensuring the air guiding of the air deflector assembly 41 in the width direction of the air outlet 11.

[0126] Meanwhile, the first air deflector 414 extends along the length direction of the air outlet 11, and both ends in the length direction are respectively connected to the two connecting plates 413, so that the first air deflector 414 and the connecting plates 413 rotate together, enabling the first air deflector 414 to deflect air in the width direction of the air outlet 11, and allowing the air flow entering the air guiding channel 411 to flow out after being deflected by the first air deflector 414 and the louvers 42, further improving the air guiding effect of the air guiding assembly 4 in the width direction of the air outlet 11, thereby enhancing the functionality of the air conditioner 100 applying the air guiding assembly 4.

[0127] In addition, in the direction from the end of the air guiding channel 411 facing away from the first air deflector 414 to the end provided with the first air deflector 414, the two second air deflectors 412 are inclined towards each other, so that the width of the end of the air guiding channel 411 facing away from the first air deflector 414 is greater than the width of the end of the air guiding channel 411 provided with the first air deflector 414, which can aggregate and guide the air flow, slow down the divergence of the air flow, and is beneficial to increasing the pressure of the air flow, effectively improving the air supply distance.

[0128] In some embodiments, the width of the end of the air guiding channel 411 facing away from the first air deflector 414 is greater than the width of the end of the air guiding channel 411 provided with the first air deflector 414. Along the air flow direction, when the first air deflector 414 is located at the air outlet end of the air guiding channel 411, the air flow can be further aggregated and guided, the divergence of the air flow is slowed down, and it is beneficial to increasing the pressure of the air flow, effectively improving the air supply distance. At the same time, it helps to increase the area of the louvers 42, that is, it can effectively increase the air guiding area of the louvers 42 and improve the air guiding effect, thereby improving the air supply effect of the air conditioner 100.

[0129] In some embodiments of the present utility model, as shown in the figures, the louvers 42 and the first air deflector 414 are arranged alternately, and the louvers 42 are provided with avoidance notches 421 for avoiding the first air deflector 414. The louvers 42 and the first air deflector 414 are arranged in an interlaced manner, so that the louvers 42 are closer to the position of the air outlet 11, improving the air supply angle of the louvers 42 in the length direction of the air outlet 11, increasing the rotation space and the sweeping area of the louvers 42, and thus improving the air guiding effect of the louvers 42 in the up and down directions. By providing the avoidance notches 421, the louvers 42 and the first air deflector 414 can be arranged in the air guiding channel 411 at the same time, avoiding interference and collision between the louvers 42 and the first air deflector 414.

[0130] In some embodiments, along the length direction of the air guide channel 411, one end of the louver 42 close to the first air guide plate 414 is substantially flush with the air guide plate assembly 41. Thus, by such an arrangement, the louver 42 is arranged at a position closer to the outside of the air outlet 11, further improving the conveying angle and range of the airflow, and improving the air guide effect of the louver 42. It should be noted that the direction "outward" refers to the direction away from the center of the air conditioner 100.

[0131] In some embodiments, the maximum distance between the rotation axis of the air deflector assembly 41 and the end of the air deflector assembly 41 provided with the first air deflector 414 is greater than the maximum distance between the rotation axis of the air deflector assembly 41 and the end of the air deflector assembly 41 away from the first air deflector 414. Thus, when the air conditioner 100 is in the on state, along the air flow direction, when the first air deflector 414 is located at the outlet end of the air guide channel 411, the end of the air deflector assembly 41 provided with the first air deflector 414 can be located downstream of the end of the air deflector assembly 41 away from the first air deflector 414, which is conducive to the first air deflector 414 extending out of the air outlet 11, so as to improve the air guiding effect of the first air deflector 414 in the left and right directions. When the air conditioner 100 is in the off state, the end of the air deflector assembly 41 provided with the first air deflector 414 is located upstream of the end of the air deflector assembly 41 away from the first air deflector 414, so that the air deflector assembly 4 is completely located in the air outlet duct 13, which is convenient for closing the air outlet 11.

[0132] It is understandable that the eccentric rotation of the air guide plate assembly 41 is achieved by the eccentric setting of the rotation axis. When the air conditioner 100 is turned on, the end of the air guide plate assembly 41 provided with the first air guide plate 414 is located at a position closer to the outside of the air outlet 11 or extends out of the air outlet 11, thereby improving the air guiding effect of the first air guide plate 414 in the left and right directions. At the same time, the influence of the inner wall of the air outlet duct 13 on the air guide plate assembly 41 and the louver 42 can be reduced, thereby increasing the rotation space and wind sweeping area of the louver 42 and the air guide plate assembly 41, further improving the conveying angle and range of the airflow of the air guide assembly 4, and making the airflow more evenly distributed in a larger area. When the air conditioner 100 is turned off, the air guide plate assembly 41 can be rotated to a position where the end provided with the first air guide plate 414 is located upstream of the end of the air guide plate assembly 41 away from the first air guide plate 414, thereby ensuring the protection of the air guide plate assembly 41 and the louver 42 by the housing 1, and improving the overall reliability. In addition, it is convenient for other components to close the air outlet 11, which can keep the equipment air conditioner 100 clean and tidy, and improve reliability.

[0133] In some embodiments, Figures 1 - 4As shown, one side of the interior of the housing 1 along the width direction of the air outlet 11 has a receiving cavity 12. It can be understood that the receiving cavity 12 is provided inside the housing 1. The housing 1 is connected with a door body 14. The door body 14 is movably arranged on the housing 1 in the width direction of the air outlet 11 for opening or closing the air outlet 11. When the door body 14 opens the air outlet 11, the door body 14 is located inside the receiving cavity 12, realizing a hidden door body 14 structure.

[0134] It can be understood that when the door body 14 opens the air outlet 11, the door body 14 can be located on one side in the width direction of the air outlet 11 and at least partially inside the receiving cavity 12. The air flow inside the air conditioner 100 can flow out through the air outlet 11, and the door body 14 can be stored inside the housing 1, improving the protection effect on the door body 14.

[0135] In some embodiments, the air conditioner 100 further includes a driving assembly. The driving assembly is arranged on the housing 1 and is connected with the door body 14 for driving the door body 14 to move. Thus, the automation of opening and closing the door body 14 can be realized, facilitating the use of the user and meeting the user's usage requirements. A control module can be provided inside the air conditioner 100. The driving assembly can be connected with the control module, and the control module can control the driving assembly to work, thereby controlling the opening or closing of the door body 14.

[0136] In the description of this specification, the descriptions referring to terms such as "one embodiment", "some embodiments", "schematic embodiments", "examples", "specific examples", or "some examples" etc. mean that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present utility model. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in a suitable manner in any one or more embodiments or examples.

[0137] Although the embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirits of the present utility model. The scope of the present utility model is defined by the claims and their equivalents.

Claims

1. An air conditioner, characterized in that, include: A housing, wherein the housing has an air outlet duct and an air outlet connected to the air outlet duct; An air guide assembly, wherein the air guide assembly is detachably connected to the shell, the air guide assembly includes an air guide plate assembly and louvers, the air guide plate assembly is rotatably disposed as a whole at a position of the air outlet duct close to the air outlet, the air guide plate assembly has an air guide channel, at least a portion of the louver is located in the air guide channel and is rotatably disposed on the air guide plate assembly, and the rotation axis of the louver is perpendicular to the rotation axis of the air guide plate assembly.

2. The air conditioner according to claim 1, wherein The air guide assembly also includes: A first driving device is arranged on the shell and located on one side of the length direction of the air deflector assembly. The first driving device is used to drive the air deflector assembly to rotate around a rotation axis extending along the length direction of the air outlet. The first driving device and the air deflector assembly are detachably connected.

3. The air conditioner according to claim 2, wherein The first driving device comprises: a first motor, wherein the first motor is disposed on the housing; A gear assembly, wherein the input gear of the gear assembly is connected to the output shaft of the first motor, the end of the air guide plate assembly close to the first driving device has a rotating shaft, and the output gear of the gear assembly is spliced with the rotating shaft.

4. The air conditioner according to claim 3, characterized in that, The gear assembly comprises: a first gear configured as the input gear; The second gear is meshed with the first gear and is configured as the output gear. The rotating shaft has a first notch. The second gear has a protrusion that matches the first notch. The protrusion and the rotating shaft are spliced along the circumferential direction of the rotating shaft.

5. The air conditioner according to claim 3, characterized in that The air conditioner also includes: A first pressing plate is detachably connected to the housing and defines a first axial hole between the first pressing plate and the housing. The rotating shaft and a portion of the output gear are rotatably disposed in the first axial hole.

6. The air conditioner according to claim 5, wherein, One end of the first pressing plate in the length direction is connected to the shell by a clamping connection, and the other end is connected to the shell by a fastener.

7. The air conditioner according to claim 6, wherein The shell has a first mounting groove, the first pressure plate is located in the first mounting groove and defines the first axial hole between the first pressure plate and the bottom wall of the first mounting groove, and one end of the first pressure plate connected to the shell through the fastener is provided with a first spring buckle abutting against the side wall of the first mounting groove.

8. The air conditioner according to claim 2, wherein The air guide assembly also includes: A second driving device, the second driving device is arranged on the shell and is located on the side of the air deflector assembly away from the first driving device in the length direction, the second driving device is used to drive the air deflector assembly to rotate, the second driving device includes a second motor, and the air deflector assembly has a matching hole that matches the output shaft of the second motor, and the matching hole is detachably connected to the output shaft of the second motor.

9. The air conditioner according to claim 1, wherein There is one air guide plate assembly; Or the air guide plate assemblies are multiple and spaced apart along the length direction of the air outlet, two adjacent air guide plate assemblies among the multiple air guide plate assemblies are connected by a adapter, at least one louver is provided in the air guide channel of each air guide plate assembly, and the ends of the two air guide plate assemblies located at the two ends in the length direction facing away from each other are rotatably connected to the shell.

10. The air conditioner according to claim 9, characterized in that, The air guide plate assemblies are multiple and spaced apart along the length direction of the air outlet, and a support portion is provided between at least two adjacent air guide plate assemblies among the multiple air guide plate assemblies, and the support portion is connected to the shell. The air conditioner also includes a second pressure plate, which is detachably connected to the support portion and defines a second axial hole between the second pressure plate and the support portion, and the adapter is rotatably provided in the second axial hole.

11. The air conditioner according to claim 1, characterized in that, The louvers are multiple and spaced apart along the length direction of the air outlet, and the air guide assembly further comprises: A connecting rod, the connecting rod extending along the length direction of the air outlet, the connecting rod being rotatably connected to the plurality of louvers, the rotation axis of the connecting rod and the louvers being parallel to the rotation axis of the louvers and the air guide plate assembly and being arranged at intervals; The third driving device is arranged on the shell and located on one side of the length direction of the air guide plate assembly, and is used to drive the connecting rod to move along the length direction of the air outlet. The third driving device and the connecting rod are detachably connected.

12. The air conditioner according to claim 11, wherein, One end of the connecting rod is provided with a rotating hook, and the third driving device comprises: a third motor, the third motor being arranged on the housing; a third gear connected to an output shaft of the third motor; A rack, the rack is meshed with the third gear, the rack is passed through the rotating shaft of the air deflector assembly, one end of the rotating hook is rotatably connected to the rack and the rotating axis coincides with the rotating axis of the air deflector assembly, and the rotating hook is detachably connected to the rack.

13. The air conditioner according to claim 12, wherein, One end of the rack is provided with a connecting structure, the rotating hook is rotatably connected to the connecting structure and is detachably connected, the connecting structure includes a connecting body, the connecting body is connected to the rack, the connecting body has a third shaft hole extending along the extending direction of the connecting rod, and the inner peripheral wall of the third shaft hole has a first step surface, The rotating hook is provided with a first clamping shaft, which is inserted into the third shaft hole. The first clamping shaft includes a first clamping portion and a second clamping portion that are opposite to and spaced apart from each other. The first clamping portion and the second clamping portion have a second step surface that abuts against the first step surface on their surfaces facing away from each other.

14. The air conditioner according to claim 13, wherein, Two second notches arranged opposite to each other are provided on the peripheral wall of the connecting body, and two second spring buckles are respectively connected to the inner walls of the two second notches. The two second spring buckles are respectively used to cooperate with the first clamping portion and the second clamping portion.

15. The air conditioner according to claim 13, wherein The connecting rod includes a connecting rod body and the rotary hook. The rotary hook is located on a side of the connecting rod body close to the rack. A chute is further provided on the rotary hook. The chute is located on a side of the first clamping shaft close to the connecting rod body. The extending direction of the chute is perpendicular to the rack. A protrusion is provided at one end of the connecting rod body close to the rotary hook. The protrusion is slidable along the length direction of the chute.

16. The air conditioner according to claim 11, wherein, There is one connecting rod; or there are a plurality of connecting rods arranged at intervals along the length direction of the air outlet. Two adjacent connecting rods among the plurality of connecting rods are detachably connected.

17. The air conditioner according to claim 16, wherein, There are a plurality of connecting rods arranged at intervals along the length direction of the air outlet. One end of one of the two adjacent connecting rods is provided with a first joint, and one end of the other connecting rod is provided with a second joint. The first joint and the second joint are detachably connected. The first joint has a fourth shaft hole extending along the extending direction of the connecting rod. A third stepped surface is provided on the inner peripheral wall of the fourth shaft hole. A second clamping shaft is provided on the second joint. The second clamping shaft is inserted into the fourth shaft hole. The second clamping shaft includes a third clamping portion and a fourth clamping portion that are opposite and spaced apart. Fourth stepped surfaces that abut against the third stepped surface are provided on surfaces of the third clamping portion and the fourth clamping portion facing away from each other.

18. The air conditioner according to claim 17, characterized in that, Two opposite third notches are provided on the peripheral wall of the first joint. Two third elastic buckles are respectively connected to inner walls of the two third notches. The two third elastic buckles are respectively used for cooperating with the third clamping portion and the fourth clamping portion.

19. The air conditioner according to claim 1, wherein, A first air guide plate is further provided at one end of the air guide channel. The first air guide plate extends along the length direction of the air outlet. The first air guide plate and the louvers are arranged along the extending direction of the air guide channel. In the shutdown state, along the air flow direction, the louvers are located at the air outlet end of the air guide channel.