Air guide assembly and air conditioner

By designing a rotatable air guide plate assembly and a louvered air conditioner air guide assembly, the problem of limited air supply angle and range is solved, and a larger air supply air volume and range is achieved, and the user's comfort and experience is improved.

CN223138073UActive Publication Date: 2025-07-22MIDEA GROUP CO LTD +1
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422382623.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-27
Publication Date
2025-07-22
Estimated Expiration
2034-09-27

AI Technical Summary

Technical Problem

The air supply angle and range of existing air conditioners are limited, and the air supply volume is small, which affects the user's comfort and experience.

Method used

A air guide assembly is designed, including a air guide plate assembly and a louver. The air guide plate assembly is rotatably arranged at a position where the air outlet duct is close to the air outlet. The air guide plate assembly guides air in the width direction of the air outlet, and a air guide passage and exhaust port are provided on both sides of the louver. The louver guides air in the length direction of the air outlet to increase the air supply range and air volume.

Benefits of technology

By increasing the air supply range and air volume, the air supply effect of the air conditioner is improved, and the user's comfort and experience are improved.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223138073U_ABST
    Figure CN223138073U_ABST
Patent Text Reader

Abstract

The utility model discloses an air guide assembly and an air conditioner. The air guide assembly comprises an air guide plate assembly. The air guide assembly is used for the air conditioner, the air conditioner comprises a shell, the shell is provided with an air outlet duct and an air outlet communicating with the air outlet duct, the air guide plate assembly is integrally and rotatably arranged at the position, close to the air outlet, of the air outlet duct, and the rotating axis of the air guide plate assembly extends in the length direction of the air outlet. The air deflector assembly is used for guiding air in the width direction of the air outlet, the air deflector assembly is provided with an air guiding channel, and at least one of the two sides of the air deflector assembly in the width direction is provided with an exhaust outlet communicating with the air guiding channel. According to the air guide assembly, the air supply range and the air supply amount can be increased, and therefore the comfort degree and the experience feeling of a user are improved.
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, and in particular to a wind guiding component and an air conditioner. Background Art

[0002] In the related art, with the improvement of living standards, consumers pay more and more attention to the user experience of air conditioners. Users not only have requirements for the refrigeration and heating performance of air conditioners, but also have increasing requirements for the comfort, experience and aesthetics of air conditioners. The existing air conditioners are limited by the air outlet and the air deflector, etc., with limited air supply angle and range and small air supply volume, which cannot meet the user's usage requirements and affect the user's comfort and experience. 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 a wind guiding component, which can increase the air supply range and air supply volume, thereby improving the user's comfort and experience.

[0004] The utility model also provides an air conditioner, which includes the above-mentioned wind guiding component.

[0005] The wind guiding component according to the embodiment of the utility model includes: a wind deflector assembly. The wind guiding component is used for an air conditioner, and the air conditioner includes a housing, the housing has an air outlet duct and an air outlet communicated with the air outlet duct. The wind deflector assembly is integrally rotatably arranged at a position close to the air outlet of the air outlet duct. The rotation axis of the wind deflector assembly extends along the length direction of the air outlet. The wind deflector assembly is used for guiding air in the width direction of the air outlet. The wind deflector assembly has a wind guiding channel, and at least one side of the two sides in the width direction of the wind deflector assembly has an air outlet communicated with the wind guiding channel.

[0006] According to the wind guiding component of the embodiment of the utility model, by integrally rotatably arranging the wind deflector assembly at a position close to the air outlet of the air outlet duct, arranging a wind guiding channel in the wind deflector assembly, and arranging an air outlet communicated with the wind guiding channel on at least one side of the two sides in the width direction of the wind deflector assembly, the air outlet area of the wind guiding component can be effectively increased, thereby increasing the air supply volume and air supply range, enhancing the air supply effect of the air conditioner, meeting the user's requirements, and improving the user's comfort and experience.

[0007] According to some embodiments of the utility model, at least a part of the louvers is located in the wind guiding channel and is rotatably arranged on the wind deflector assembly. The rotation axis of the louvers is perpendicular to the rotation axis of the wind deflector assembly. The louvers are used for guiding air in the length direction of the air outlet.

[0008] According to some embodiments of the present utility model, the air outlets on the same side in the width direction of the air guide plate assembly are multiple and are arranged at intervals along the length direction of the air guide plate assembly; and / or, the air outlets are arranged close to the air outlet end of the air guide plate assembly.

[0009] According to some embodiments of the present utility model, one of the two inner walls opposite to each other in the width direction of the air outlet duct has a volute tongue portion. Along the air flow direction, when the air outlet end of the air guide assembly is downstream of the air inlet end of the air guide plate assembly, an air inlet communicating with the air guide channel is provided on the side of the air guide plate assembly away from the volute tongue portion in the width direction.

[0010] In some embodiments of the present utility model, the air inlet is arranged close to the air inlet end of the air guide plate assembly.

[0011] In some embodiments of the present utility model, the air outlet is also provided on the surface of the air guide plate assembly where the air inlet is located. In the direction from the air inlet end to the air outlet end of the air guide plate assembly, the air inlet and the air outlet are arranged in sequence.

[0012] In some embodiments of the present utility model, both the air outlets and the air inlets are multiple and are arranged at intervals along the length direction of the air guide plate assembly. The multiple air inlets and the multiple air outlets are arranged alternately in the length direction of the air guide plate assembly.

[0013] According to some embodiments of the present utility model, the width of the air outlet end of the air guide channel is smaller than the width of the air inlet end of the air guide channel.

[0014] In some embodiments of the present utility model, the air guide plate assembly includes: a first air guide plate and a connecting plate. The first air guide plate extends along the length direction of the air outlet. There are two spaced-apart first air guide plates, and the air guide channel is defined between the two first air guide plates. At least one of the two first air guide plates is provided with the air outlet, and the air inlet is provided on one of the first air guide plates; there are two connecting plates, and the two connecting plates are respectively located at both ends of the first air guide plate in the length direction. Each connecting plate is connected to the two first air guide plates, and the connecting plate is rotatably arranged on the inner wall of the air outlet duct.

[0015] In some embodiments of the present utility model, the air guiding assembly further includes louvers, at least a part of the louvers is located in the air guiding channel and is rotatably arranged on the air guiding plate assembly, the rotation axis of the louvers is perpendicular to the rotation axis of the air guiding plate assembly, and the louvers are used for guiding air in the length direction of the air outlet; the air guiding plate assembly further includes a second air guiding plate, the second air guiding plate is arranged in the air guiding channel, the second air guiding plate extends along the length direction of the air outlet, and both ends in the length direction are respectively connected to the two connecting plates, and the louvers are provided with avoidance notches for avoiding the second air guiding plate.

[0016] In some embodiments of the present utility model, the air outlet ends of the first air guiding plate and the second air guiding plate are flush, and the connection line of the air outlet ends of the first air guiding plate and the second air guiding plate is perpendicular to the direction from the air inlet end to the air outlet end of the air guiding channel.

[0017] In some embodiments of the present utility model, along the air flow direction, when the air outlet end of the air guiding assembly is downstream of the air inlet end of the air guiding plate assembly, the size of the first air guiding plate on the side close to the volute tongue part in the direction from the air inlet end to the air outlet end of the air guiding plate assembly is L1, and the size of the first air guiding plate on the side far from the volute tongue part in the direction from the air inlet end to the air outlet end of the air guiding plate assembly is L4, and it satisfies: L1≥L4.

[0018] In some embodiments of the present utility model, along the air flow direction, when the air outlet end of the air guiding assembly is downstream of the air inlet end of the air guiding plate assembly, the size of the first air guiding plate on the side close to the volute tongue part in the direction from the air inlet end to the air outlet end of the air guiding plate assembly is L1, and the size of the second air guiding plate in the direction from the air inlet end to the air outlet end of the air guiding plate assembly is less than L1.

[0019] In some embodiments of the present utility model, there are multiple second air guiding plates and they include a first sub-air guiding plate and a second sub-air guiding plate. The first sub-air guiding plate and the second sub-air guiding plate are respectively located on both sides of the center line of the air guiding channel along the width direction of the air guiding channel. Along the air flow direction, when the air outlet end of the air guiding assembly is downstream of the air inlet end of the air guiding plate assembly, the first sub-air guiding plate is arranged closer to the volute tongue part than the second sub-air guiding plate. The size of the first sub-air guiding plate in the direction from the air inlet end to the air outlet end of the air guiding plate assembly is L2, and the size of the second sub-air guiding plate in the direction from the air inlet end to the air outlet end of the air guiding plate assembly is L3, and it satisfies: L2≥L3.

[0020] According to some embodiments of the present utility model, the maximum distance between the rotation axis of the air guiding plate assembly and the air inlet end of the air guiding plate assembly is less than the maximum distance between the rotation axis of the air guiding plate assembly and the air outlet end of the air guiding plate assembly.

[0021] In some embodiments of the present utility model, when the air conditioner is in the on state, the air inlet end is located upstream of the air outlet end, and a part of the air outlet end extends out of the air outlet. When the air conditioner is in the off state, the air inlet end is located downstream of the air outlet end, and the air guiding assembly is entirely located within the air outlet duct.

[0022] According to some embodiments of the present utility model, the air deflector assembly is one; or the air deflector assemblies are multiple and are arranged at intervals along the length direction of the air outlet. Two adjacent air deflector assemblies among the multiple air deflector assemblies are connected by an adapter. At least one louver is provided within the air guiding channel of each air deflector assembly.

[0023] According to some embodiments of the present utility model, the louvers are multiple and are arranged at intervals along the length direction of the air outlet. The air guiding assembly further includes a connecting rod. The connecting rod extends along the length direction of the air outlet. The connecting rod is rotatably connected to each of the multiple louvers. The rotation axis of the connecting rod and the louver is parallel and spaced from the rotation axis of the louver and the air deflector assembly.

[0024] The air conditioner according to an embodiment of the present utility model includes: a housing and the above-mentioned air guiding assembly. The housing has an air outlet duct and an air outlet communicating with the air outlet duct; the air deflector assembly is integrally rotatably provided at a position of the air outlet duct close to the air outlet.

[0025] By integrating the louvers and the air deflector assembly into an air guiding assembly, the air deflector assembly is integrally rotatably provided at a position of the air outlet duct close to the air outlet, at least a part of the louvers is located within the air guiding channel of the air deflector assembly and is rotatably provided on the air deflector assembly, and the air deflector assembly and the louvers are respectively used for guiding air in the width direction and the length direction of the air outlet, the air conditioner according to an embodiment of the present utility model can achieve three-dimensional air supply at the air outlet, and can achieve different air supply angles and air supply effects. Also, the air sweeping angles and ranges of the louvers and the air deflector assembly can be effectively increased. At the same time, by providing air discharge ports communicating with the air guiding channel on at least one side of the two sides in the width direction of the air deflector assembly, the air outlet area of the air guiding assembly can be effectively increased, thereby increasing the air supply volume and the air supply range, enhancing the air supply effect of the air conditioner, meeting the needs of users, and thus improving the comfort and experience of users.

[0026] Additional aspects and advantages of the present utility model will be given in part in the following description, will become apparent in part from the following description, or will be understood through the practice of the present utility model. Description of the Drawings

[0027] The above and / or additional aspects and advantages of the present utility model will become apparent and be readily understood from the following description of embodiments in conjunction with the accompanying drawings, where:

[0028] Figure 1 is the front view of an air conditioner according to an embodiment of the present utility model, where the air conditioner is in the shutdown state;

[0029] Figure 2 is the perspective view of an air conditioner according to an embodiment of the present utility model, where the air conditioner is in the startup state;

[0030] Figure 3 is Figure 2 the enlarged view of part A in

[0031] Figure 4 is the front view of an air conditioner according to an embodiment of the present utility model, where the air conditioner is in the startup state;

[0032] Figure 5 is along Figure 4 the cross-sectional view taken along line B-B in

[0033] Figure 6 is Figure 5 the enlarged view of part D in

[0034] Figure 7 is along Figure 4 the cross-sectional view taken along line C-C in , where the air conditioner is in the right air supply state;

[0035] Figure 8 is along Figure 4 the cross-sectional view taken along line C-C in , where the air conditioner is in the left air supply state;

[0036] Figure 9 is the perspective view of the air guide assembly according to an embodiment of the present utility model;

[0037] Figure 10 is Figure 9 the enlarged view of part E in

[0038] Figure 11 is the perspective view of the air guide assembly from another perspective according to an embodiment of the present utility model;

[0039] Figure 12 is Figure 11 the enlarged view of part F in

[0040] Figure 13 is the front view of the air guide assembly according to an embodiment of the present utility model;

[0041] Figure 14 is along Figure 13 the cross-sectional view taken along line G-G in

[0042] Figure 15 is a cross-sectional view along Figure 13 the H-H line in the middle.

[0043] Reference numerals:

[0044] 100, air guiding assembly;

[0045] 1, air guiding plate assembly; 11, air guiding channel; 12, first air guiding plate; 121, air discharge port; 122, air inlet; 13, connecting plate; 14, second air guiding plate; 141, first sub-air guiding plate; 142, second sub-air guiding plate;

[0046] 2, louver; 21, avoiding notch; 22, first rotating shaft;

[0047] 3, connecting rod;

[0048] 200, air conditioner;

[0049] 4, housing; 41, air outlet; 42, accommodating cavity; 43, air outlet duct; 44, first wall surface; 441, volute tongue part; 45, second wall surface; 46, door body;

[0050] 51, cross-flow fan; 52, heat exchanger; 53, display panel; 54, base. Detailed implementation manners

[0051] The embodiments of the present utility model will be described in detail below. The examples of the embodiments are shown in the drawings, wherein 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 by referring to the drawings are exemplary and are only used to explain the present utility model and should not be construed as a limitation to the present utility model.

[0052] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by 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. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model 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 thus should not be construed as a limitation to the present utility model. In addition, the features defined with "first", "second" may explicitly or implicitly include one or more of such features. In the description of the present utility model, unless otherwise specified, the meaning of "a plurality" is two or more.

[0053] In the description of the present utility model, it should be noted that unless otherwise clearly specified and defined, the terms "installation", "connection", and "coupling" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.

[0054] The air guiding assembly 100 according to an embodiment of the present utility model will be described below with reference to the accompanying drawings.

[0055] As Figures 9 - 15 shown, the air guiding assembly 100 according to an embodiment of the present utility model includes an air guiding plate assembly 1.

[0056] Specifically, as Figures 2 - 6 shown, the air guiding assembly 100 is for an air conditioner 200. The air conditioner 200 includes a housing 4. The air conditioner 200 can be a floor-standing air conditioner. The housing 4 is arranged in a vertically extending cylindrical shape, and the housing 4 is used to form the overall appearance of the air conditioner 200. The housing 4 has an air outlet duct 43 and an air outlet 41 communicating with the air outlet duct 43. The air outlet 41 extends along the Figure 4 shown up and down direction for the airflow after the in-machine circulation to flow out of the air conditioner 200. An air inlet is also provided on the housing 4. The position of the air inlet is not limited as long as it is in communication with the air outlet duct 43, allowing the airflow to enter the air outlet duct 43 from the air inlet, and allowing the airflow outside the housing 4 to enter the air conditioner 200 for in-machine circulation.

[0057] As Figures 5 - 8 shown in the example, a heat exchanger 52, a cross-flow fan 51, etc. are also provided inside the housing 4. In the airflow direction inside the housing 4, the heat exchanger 52 is upstream of the cross-flow fan 51. The heat exchanger 52 is used to exchange heat with the airflow flowing through its surface, and the cross-flow fan 51 is used to drive the airflow from the air inlet to the air outlet 41.

[0058] During the specific operation of the air conditioner 200, under the rotational drive of the cross-flow fan 51, the outside airflow will enter the housing 4 from the air inlet, form an outlet airflow after the heat exchange effect of the heat exchanger 52, and the outlet airflow flows from the air outlet duct 43 to the air outlet 41 and blows out of the air conditioner 200 from the air outlet 41 to ensure the functions of refrigeration, heating, and air supply of the air conditioner 200.

[0059] Among them, the air guiding plate assembly 1 is integrally rotatably provided at a position close to the air outlet 41 of the air outlet duct 43. The rotation axis of the air guiding plate assembly 1 extends along the length direction of the air outlet 41. The air guiding plate assembly 1 is used to guide the air in the width direction of the air outlet 41, and the air guiding plate assembly 1 has an air guiding channel 11.

[0060] It can be understood that the air guiding channel 11 communicates with the air outlet duct 43. When the air conditioner 200 is turned on, the air flow in the air outlet duct 43 flows out from the air outlet 41 after passing through the air guiding channel 11 to ensure the air supply function of the air conditioner 200. The air outlet 41 extends in the up and down direction, and the air deflector assembly 1 can rotate around a rotation axis extending in the up and down direction, enabling the air guiding assembly 100 to guide the air flow in the left and right directions at a position close to the air outlet 41 in the air outlet duct 43 to meet the user's need for left and right air supply. Figure 4 As shown, to meet the user's need for left and right air supply.

[0061] Furthermore, at least one side of the two sides in the width direction of the air deflector assembly 1 has an air outlet 121 communicating with the air guiding channel 11, so that at least part of the air flow in the air guiding channel 11 blows out from the air outlet 41 via the air outlet 121. Thereby, the air outlet area of the air guiding assembly 100 can be effectively increased, thus increasing the air supply volume and the air supply range, enhancing the air supply effect of the air conditioner 200 to meet the user's needs. In addition, the air outlet 121 also reduces the weight of the air deflector assembly 1, achieving the effect of weight reduction of the air guiding assembly 100, contributing to the stable operation of the air guiding assembly 100, and at the same time being conducive to reducing the material consumption for producing the air deflector assembly 1, thereby reducing the production cost of the air guiding assembly 100.

[0062] According to the air guiding assembly 100 of the embodiment of the present invention, by rotatably arranging the air deflector assembly 1 as a whole at a position close to the air outlet 41 in the air outlet duct 43, arranging the air guiding channel 11 in the air deflector assembly 1, and providing at least one side of the two sides in the width direction of the air deflector assembly 1 with an air outlet 121 communicating with the air guiding channel 11, the air outlet area of the air guiding assembly 100 can be effectively increased, thus increasing the air supply volume and the air supply range, enhancing the air supply effect of the air conditioner 200 to meet the user's needs, thereby improving the user's comfort and experience.

[0063] In some embodiments of the present invention, as Figures 2 - 10 、 Figures 13 - 15 shown, at least part of the louver 2 is located in the air guiding channel 11 and is rotatably arranged on the air deflector assembly 1. The rotation axis of the louver 2 is perpendicular to the rotation axis of the air deflector assembly 1. The louver 2 is used for guiding the air flow in the length direction of the air outlet 41. The air flow entering the air guiding channel 11 from the air outlet duct 43 passes through the louver 2, and at the same time, by rotating the louver 2 around the rotation axis perpendicular to the up and down direction and guiding the air flow, the flow direction of the air flow in the up and down direction and the air supply angle of the air outlet 41 can be adjusted to meet the user's need for up and down air supply.

[0064] By guiding the air in two mutually perpendicular directions through the air deflector assembly 1 and the louver 2 respectively, three-dimensional air supply at the air outlet 41 can be achieved, and different air supply angles can be realized, which can improve the richness of the air outlet effect of the air conditioner 200, and further meet the diverse air supply needs of users, as well as improve the comfort and experience of users. In addition, since at least part of the louver 2 is arranged in the air guiding channel 11, the louver 2 is arranged closer to the air outlet 41, effectively increasing the air guiding angle of the louver 2 along the length direction of the air outlet 41.

[0065] In the related art, due to the large space occupied by the louver, the air sweeping area of the air deflector is small. At the same time, due to the existence of the air deflector, the louver can only be located at a relatively deep position inside the air outlet, resulting in small up-and-down and left-and-right air sweeping angles.

[0066] In the present application, the louver 2 is rotatably arranged on the air deflector assembly 1, and the louver 2 and the air deflector assembly 1 are integrated into the air guiding assembly 100, reducing the air outlet area occupied by the louver 2 and the air deflector assembly 1, thereby effectively increasing the rotation space and air sweeping area of the louver 2 and the air deflector assembly 1. And by the air guiding assembly 100 being integrally rotatably arranged at a position close to the air outlet 41 of the air outlet duct 43, the rotation space and air sweeping area of the louver 2 and the air deflector assembly 1 are further increased, thereby effectively increasing the air sweeping angle and range of the louver 2 and the air deflector assembly 1, and further increasing the air delivery angle and range of the air flow. At the same time, the air supply volume can be effectively increased, so that the air conditioner 200 applying the air guiding assembly 100 can take into account the air outlet angle and the air supply volume and achieve comfortable air supply in different scenarios.

[0067] In some embodiments of the present utility model, such as Figure 2 、 Figure 3 、 Figure 9 and Figure 10 shown, the air outlet openings 121 on the same side in the width direction of the air deflector assembly 1 are multiple and arranged at intervals along the length direction of the air deflector assembly 1. Thus, at least part of the air flow in the air guiding channel 11 can be blown out from the air outlet 41 after passing through the air outlet openings 121 in the up-and-down direction, which can increase the air outlet area in the up-and-down direction, thereby further increasing the air supply volume and air supply range, enhancing the air supply effect of the air conditioner 200, and enhancing the air outlet uniformity of the air outlet 41 in the up-and-down direction to better meet the needs of users.

[0068] In some embodiments of the present utility model, such as Figure 2 、 Figure 3 、 Figures 9 - 14As shown, the air exhaust port 121 is disposed near the air outlet end of the air guiding plate assembly 1. After the air flow in the air outlet duct 43 passes through the air guiding channel 11, part of the air flow is blown out from the air outlet 41 through the air exhaust port 121. Disposing the air exhaust port 121 near the air outlet end of the air guiding plate assembly 1 can ensure the air flow circulation, thereby effectively increasing the air outlet area, and increasing the air supply volume and air supply range, which helps to enhance the air outlet effect to better meet the user's needs.

[0069] In some embodiments of the present utility model, as Figures 7 - 10 , Figure 13 and Figure 15 shown, one of the two inner walls opposite to each other in the width direction of the air outlet duct 43 has a volute tongue portion 441. Along the air flow direction, when the air outlet end of the air guiding assembly 100 is downstream of the air inlet end of the air guiding plate assembly 1, on the side of the air guiding plate assembly 1 away from the volute tongue portion 441 in the width direction, there is an air inlet 122 communicating with the air guiding channel 11. Thus, the air flow in the air outlet duct 43 can not only flow into the air guiding channel 11 from the air inlet end of the air guiding plate assembly 1, but at least part of the air flow can also enter the air guiding channel 11 through the air inlet 122, increasing the communication area between the air outlet duct 43 and the air guiding channel 11, and effectively increasing the air flow volume and air flow range from the air outlet duct 43 into the air guiding channel 11, which helps to increase the air supply volume.

[0070] Specifically, as Figure 4 and Figure 7 shown in the example, the two wall surfaces opposite to each other in the width direction of the air outlet duct 43 are respectively a first wall surface 44 and a second wall surface 45. The first wall surface 44 has a volute tongue portion 441. The first wall surface 44 is located on the left side of the illustrated air conditioner 200, and the second wall surface 45 is located on the right side. Since the air outlet duct 43 is closer to the right side inside the housing 4, disposing the air inlet 122 on the right side in the width direction of the air guiding plate assembly 1 is more conducive to part of the air flow in the air outlet duct 43 entering the air guiding channel 11 through the air inlet 122, and can better achieve the effect of increasing the air flow volume.

[0071] Especially when the air conditioner 200 is in the right air supply state, the central plane in the width direction of the air guiding channel 11 and the central plane in the width direction of the air outlet 41 form an angle with each other, and the end of the central plane in the width direction of the air guiding channel 11 away from the air outlet 41 is inclined towards the first wall surface 44. The air guiding plate assembly 1 blocks part of the air outlet duct 43. By setting the air inlet 122, it is possible to prevent the communication area between the air outlet duct 43 and the air guiding channel 11 from decreasing, thereby ensuring the air flow volume and air supply volume when the air conditioner 200 supplies air to the right side. It can also effectively reduce the restriction on the rotation angle of the right air supply due to avoiding the reduction of the air flow volume, which is beneficial to increasing the air supply angle and air supply range of the air conditioner 200 when supplying air to the right side.

[0072] In some embodiments of the present utility model, asFigure 4 , Figure 7 and Figure 8 As shown in Figure 8 , the air inlet 122 is arranged near the air inlet end of the air guide plate assembly 1. It is convenient for part of the air flow in the air outlet duct 43 to enter the air guide duct through the air inlet 122 near the air inlet end of the air guide plate assembly 1, which can ensure the air flow, and can better achieve the effect of increasing the air volume and air passing range from the air outlet duct 43 into the air guide channel 11, thereby helping to increase the air supply volume.

[0073] In some embodiments of the present invention, as Figure 2 , Figure 3 , Figures 9 - 12 shown, the surface of the air guide plate assembly 1 where the air inlet 122 is located also has an air outlet 121 at the same time. In the direction from the air inlet end to the air outlet end of the air guide plate assembly 1, the air inlet 122 and the air outlet 121 are arranged in sequence. Thus, while increasing the air volume and air passing range from the air outlet duct 43 into the air guide channel 11, the air outlet area can be effectively increased, and the air supply volume and air supply range can be increased, so as to better enhance the air outlet effect and better meet the needs of users. On the surface of the air guide plate assembly 1 where the air inlet 122 and the air outlet 121 are provided at the same time, the air inlet 122 is closer to the air inlet end of the air guide plate assembly 1, and the air outlet 41 is closer to the air outlet end of the air guide plate assembly 1. Thus, the fluidity of the air flow from the air outlet duct 43 to the air guide channel 11 and then to the air outlet 41 can be better ensured, so as to ensure the purpose of simultaneously increasing the air passing volume and the air outlet volume, and the structural design is reasonable.

[0074] In some embodiments of the present invention, as Figure 2 , Figure 3 , Figures 9 - 12 shown, both the air outlet 121 and the air inlet 122 are multiple and arranged at intervals along the length direction of the air guide plate assembly 1. The multiple air inlets 122 and the multiple air outlets 121 are alternately arranged in the length direction of the air guide plate assembly 1. Thus, at least part of the air flow in the air outlet duct 43 can enter the air guide channel 11 through the multiple air inlets 122 in the up and down direction, and at least part of the air flow in the air guide channel 11 can be blown out from the air outlet 41 through the multiple air outlets 121 in the up and down direction. The air passing area and air passing volume between the air outlet duct 43 and the air guide channel 11 and the air outlet area and air outlet volume at the air outlet 41 can be enhanced simultaneously in the up and down direction. The alternately arranged air inlets 122 and air outlets 121 are also beneficial to ensuring the direction of the air flow, avoiding the mutual interference between the air flow entering the air guide channel 11 from the air inlet 122 and the air flow flowing out of the air guide channel 11 from the air outlet 121, and further ensuring the order and fluidity of the air flow.

[0075] In some embodiments of the present invention, as Figures 4 - 8As shown, the width of the air outlet end of the air guiding channel 11 is smaller than that of the air inlet end of the air guiding channel 11. This can further 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. At the same time, it helps to increase the area of the louver 2, that is, it can effectively increase the air guiding area of the louver 2 and improve the air guiding effect, thereby improving the air supply effect of the air conditioner 200.

[0076] In some embodiments of the present invention, as Figures 4 - 8 , Figures 9 - 12 shown, the air guiding plate assembly 1 includes: a first air guiding plate 12 and a connecting plate 13. The first air guiding plate 12 extends along the length direction of the air outlet 41. There are two spaced-apart first air guiding plates 12. A air guiding channel 11 is defined between the two first air guiding plates 12. At least one of the two first air guiding plates 12 is provided with an air outlet 121, and an air inlet 122 is provided on one of the first air guiding plates 12.

[0077] Thus, the two first air guiding plates 12 can guide the air flow entering the air guiding channel 11. By the overall rotation of the air guiding plate assembly 1, the angles of the two first air guiding plates 12 can be adjusted, so as to guide the air flow in the width direction of the air outlet 41. The arrangement of the air inlet 122 and the air outlet 121 on the first air guiding plate 12 is convenient for processing and easy to implement. At the same time, it is convenient to realize that at least part of the air flow in the air outlet duct 43 enters the air guiding channel 11 through the air inlet 122 and at least part of the air flow in the air guiding channel 11 blows out from the air outlet 41 through the air outlet 121, so as to better enhance the air passing area and air passing volume between the air outlet duct 43 and the air guiding channel 11 and the air outlet area and air outlet volume at the air outlet 41.

[0078] In addition, in the direction from the air inlet end to the air outlet end of the air guiding channel 11, the two first air guiding plates 12 are inclined towards each other, so that the width of the air outlet end of the air guiding channel 11 is smaller than that of the air inlet end of the air guiding channel 11. This 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.

[0079] Further, there are two connecting plates 13, which are respectively located at both ends of the first air guiding plate 12 in the length direction. Each connecting plate 13 is connected to the two first air guiding plates 12, and the connecting plate 13 is rotatably arranged on the inner wall of the air outlet duct 43. The connecting plate 13 can connect the two first air guiding plates 12 and facilitate the rotational connection between the air guiding plate assembly 1 and the inner wall of the air outlet duct 43. In addition, a ring structure is formed by the two connecting plates 13 and the two first air guiding plates 12, so as to gather and guide the air flow entering the air guiding channel 11 by using the ring structure, slow down the divergence of the air flow, and effectively improve the air supply distance. At the same time, since the connecting plate 13 is rotatably arranged on the inner wall of the air outlet duct 43, the air guiding plate assembly 1 is integrally rotatably arranged at a position close to the air outlet 41 of the air outlet duct 43, ensuring the air guiding of the air guiding plate assembly 1 in the width direction of the air outlet 41.

[0080] In some embodiments of the present invention, as Figures 2 - 6 , Figures 9 - 15 shown, the air guiding component 100 further includes louvers 2. At least part of the louvers 2 is located in the air guiding channel 11 and is rotatably arranged on the air guiding plate assembly 1. The rotation axis of the louvers 2 is perpendicular to the rotation axis of the air guiding plate assembly 1, and the louvers 2 are used for air guiding in the length direction of the air outlet 41. The air guiding plate assembly 1 further includes a second air guiding plate 14, which is arranged in the air guiding channel 11. The second air guiding plate 14 extends along the length direction of the air outlet 41, and both ends in the length direction are respectively connected to the two connecting plates 13. An avoidance notch 21 for avoiding the second air guiding plate 14 is provided on the louvers 2.

[0081] It can be understood that the second air guiding plate 14 is located at one end of the air guiding channel 11 where the first air guiding plate 12 is arranged. The second air guiding plate 14 extends along the length direction of the air outlet 41, and both ends in the length direction are respectively connected to the two connecting plates 13, so that the second air guiding plate 14 and the connecting plate 13 can rotate together. By the overall rotation of the air guiding plate assembly 1, the angle of the second air guiding plate 14 can be adjusted, so as to guide the air flow in the width direction of the air outlet 41, that is, the left and right directions, so that the air flow entering the air guiding channel 11 flows out after being guided by the second air guiding plate 14 and the louvers 2, further improving the air guiding effect of the air guiding component 100 in the width direction of the air outlet 41, and thus improving the functionality of the air conditioner 200 using the air guiding component 100.

[0082] In addition, the second air deflector 14 and the louvers 2 are arranged along the extension direction of the air guide channel 11, and the louvers 2 and the second air deflector 14 are staggered, so that the louvers 2 are closer to the air outlet 41, improving the air supply angle of the louvers 2 in the length direction of the air outlet 41, increasing the rotation space and the air sweeping area of the louvers 2, and thus improving the air guiding effect of the louvers 2 in the up and down directions. By providing the avoidance notch 21, the louvers 2 and the second air deflector 14 can be arranged in the air guide channel 11 at the same time, avoiding interference and collision between the louvers 2 and the second air deflector 14.

[0083] In some embodiments of the present invention, as Figures 2 - 6 , Figures 13 - 15 shown, the air outlet ends of the first air deflector 12 and the second air deflector 14 are flush, so that the first air deflector 12 and the second air deflector 14 are completely located inside the air outlet 41, avoiding collision and interference between the air deflector assembly 1 and components such as the door body 46 at the air outlet 41, thus avoiding restrictions on the rotation of the air deflector assembly 1, saving the occupied space of the air deflector assembly, and being convenient for processing and production. At the same time, the connection line of the air outlet ends of the first air deflector 12 and the second air deflector 14 is perpendicular to the direction from the air inlet end to the air outlet end of the air guide channel 11. This is beneficial to the air guiding of the first air deflector 12 and the second air deflector 14, and can reduce the air resistance of the air flowing out from the air outlet 41 after passing through the air guide channel 11, thus helping to ensure the air supply effect of the air conditioner 200.

[0084] In some embodiments of the present invention, as Figure 7 , Figure 8 , Figures 13 - 15 shown, along the air flow direction, when the air outlet end of the air guide assembly 100 is downstream of the air inlet end of the air deflector assembly 1, the dimension of the first air deflector 12 on the side close to the volute tongue portion 441 in the direction from the air inlet end to the air outlet end of the air deflector assembly 1 is L1, and the dimension of the first air deflector 12 on the side far from the volute tongue portion 441 in the direction from the air inlet end to the air outlet end of the air deflector assembly 1 is L4, and it satisfies: L1≥L4.

[0085] It can be understood that affected by factors such as the position of the air wheel and the driving force direction, in the direction from the air wheel to the air outlet 41, the air flow direction in the air outlet duct 43 is towards the first air deflector 12 on the side close to the volute tongue portion 441, so that L1≥L4, which can enhance the air guiding area and air guiding ability of the first air deflector 12 on the side close to the volute tongue portion 441, thus better enhancing the air guiding effect and further enhancing the air supply effect.

[0086] Especially when the air conditioner 200 is in the right air supply state, as Figure 7In the illustrated example, in the backward direction, the flow direction of the air current in the air outlet duct 43 and the air guiding channel 11 is inclined to the left, such that the size of the first air guiding plate 12 on the side close to the volute tongue portion 441 is larger in the direction from the air inlet end to the air outlet end of the air guiding plate assembly 1, and it can better guide the air current to be blown out of the air outlet 41 to the right, thereby enhancing the air supply effect of the right side of the air conditioner 200 to meet the needs of users.

[0087] In some embodiments of the present invention, as Figures 4 - 8 , Figures 13 - 15 shown, along the air current flow direction, when the air outlet end of the air guiding assembly 100 is located downstream of the air inlet end of the air guiding plate assembly 1, the size of the first air guiding plate 12 on the side close to the volute tongue portion 441 in the direction from the air inlet end to the air outlet end of the air guiding plate assembly 1 is L1, and the size of the second air guiding plate 14 in the direction from the air inlet end to the air outlet end of the air guiding plate assembly 1 is smaller than L1.

[0088] Thus, it is beneficial for some of the air current entering the air guiding channel 11 to flow into the space between the first air guiding plate 12 and the second air guiding plate 14, and it is also convenient for at least some of the air current entering the air guiding channel 11 from the air inlet 122 on the first air guiding plate 12 to flow to the side of the second air guiding plate 14 away from the air inlet 122, thereby ensuring the flow splitting effect and the air guiding effect of the first air guiding plate 12 and the second air guiding plate 14, enhancing the uniformity of the air current in the width direction of the air guiding plate assembly 1, and further enhancing the air supply effect of the air conditioner 200.

[0089] In some embodiments of the present invention, as Figures 4 - 8 , Figures 13 - 15 shown, the second air guiding plate 14 is multiple and includes a first sub-air guiding plate 141 and a second sub-air guiding plate 142. The first sub-air guiding plate 141 and the second sub-air guiding plate 142 are respectively located on both sides of the center line of the air guiding channel 11 along the width direction of the air guiding channel 11. Along the air current flow direction, when the air outlet end of the air guiding assembly 100 is located downstream of the air inlet end of the air guiding plate assembly 1, the first sub-air guiding plate 141 is arranged closer to the volute tongue portion 441 than the second sub-air guiding plate 142. The size of the first sub-air guiding plate 141 in the direction from the air inlet end to the air outlet end of the air guiding plate assembly 1 is L2, and the size of the second sub-air guiding plate 142 in the direction from the air inlet end to the air outlet end of the air guiding plate assembly 1 is L3, and it satisfies: L2≥L3.

[0090] It can be understood that affected by factors such as the position of the impeller and the driving force direction, in the direction from the impeller to the air outlet 41, the flow direction of the air current in the air outlet duct 43 flows towards the first sub-air guiding plate 141 on the side close to the volute tongue portion 441. Therefore, L2≥L3, which can enhance the air guiding area and the air guiding ability of the first sub-air guiding plate 141 on the side close to the volute tongue portion 441, thereby better enhancing the air guiding effect and further enhancing the air supply effect.

[0091] Particularly when the air conditioner 200 is in the right air supply state, as Figure 7 shown in the example, in the direction from back to front, the flow direction of the air flow in the air outlet duct 43 and the air guiding channel 11 inclines to the left, so that the size of the second sub-air guiding plate 142 in the direction from the air inlet end to the air outlet end of the air guiding plate assembly 1 is smaller, which is beneficial to the air flow in the air outlet duct 43 entering the air guiding channel 11 to ensure the air volume, and at the same time, the size of the first sub-air guiding plate 141 in the direction from the air inlet end to the air outlet end of the air guiding plate assembly 1 is larger, which can better guide the air flow to blow out of the air outlet 41 to the right, thereby enhancing the air supply effect of the right air supply of the air conditioner 200 to meet the needs of users.

[0092] In some embodiments of the present utility model, as Figures 4 - 8 shown, the maximum distance between the rotation axis of the air guiding plate assembly 1 and the air inlet end of the air guiding plate assembly 1 is less than the maximum distance between the rotation axis of the air guiding plate assembly 1 and the air outlet end of the air guiding plate assembly 1. In the present application, it can be made that when the air conditioner 200 is in the on state, the air inlet end is located upstream of the air outlet end, and a part of the air outlet end extends out of the air outlet 41. When the air conditioner 200 is in the off state, the air inlet end is located downstream of the air outlet end, and the air guiding assembly 100 is entirely located in the air outlet duct 43.

[0093] It can be understood that the eccentric rotation of the air guiding plate assembly 1 is realized by the eccentric setting of the rotation axis. When the air conditioner 200 is turned on, the air outlet end of the air guiding plate assembly 1 is located at a position closer to the outside of the air outlet 41 or extends out of the air outlet 41, thereby reducing the influence of the inner wall of the air outlet duct 43 on the air guiding plate assembly 1 and the louver 2, and further increasing the rotation space and the sweeping area of the louver 2 and the air guiding plate assembly 1, further improving the conveying angle and range of the air guiding assembly 100 for the air flow, and making the air flow more evenly distributed in a larger area. When the air conditioner 200 is turned off, the air guiding plate assembly 1 can rotate back to its original position, ensuring the protection of the air guiding plate assembly 1 and the louver 2 by the housing 4, improving the overall reliability, keeping the equipment of the air conditioner 200 clean, improving the reliability, and facilitating the closing of components such as the door body 46 at the air outlet 41, avoiding collisions and interferences between the air guiding plate assembly 1 and the components such as the door body 46 at the air outlet 41.

[0094] In some embodiments of the present utility model, there is one air guiding plate assembly 1, and the air guiding plate assembly 1 extends from one end to the other end in the length direction of the air outlet 41. Thus, the structure and the processing technology of the air guiding assembly 100 can be simplified, and the production efficiency can be improved. In addition, making the air guiding plate assembly 1 a single component without unnecessary components or seams, it has a high integrity, thereby better guiding the flow of the air flow, reducing turbulence and noise, and improving the air guiding effect of the air guiding assembly 100.

[0095] In some embodiments of the present utility model, as Figure 9, Figure 11 and Figure 13 As shown in Figure 11 and Figure 13 , a plurality of air deflector assemblies 1 are arranged at intervals along the length direction of the air outlet 41. Two adjacent air deflector assemblies 1 among the plurality of air deflector assemblies 1 are connected by an adapter. At least one louver 2 is arranged in the air guiding channel 11 of each air deflector assembly 1.

[0096] Thus, through such a setting, the plurality of air deflector assemblies 1 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 200 applying the air guiding assembly 100. At the same time, when a certain air deflector assembly 1 is damaged or fails, it can be replaced separately, reducing the maintenance cost and difficulty. In addition, the air guiding angles and ranges of each air deflector assembly 1 can be designed respectively according to different air guiding requirements, further optimizing the flow path and distribution of the air flow.

[0097] Optionally, the plurality of air deflector assemblies 1 are integral parts or split parts. When the plurality of air deflector assemblies 1 are split parts, different numbers of air deflector assemblies 1 can be combined according to the length of the air outlet 41, and the adjustment is convenient.

[0098] In some embodiments of the present invention, as Figures 9 - 12 shown, a plurality of louvers 2 are arranged at intervals along the length direction of the air outlet 41. The air guiding assembly 100 further includes a connecting rod 3. The connecting rod 3 extends along the length direction of the air outlet 41. The connecting rod 3 is rotatably connected to a plurality of louvers 2. The rotation axis of the connecting rod 3 and the louver 2 is parallel and spaced from the rotation axis of the louver 2 and the air deflector assembly 1.

[0099] It can be understood that the air guiding assembly 100 can also be provided with a driving device. The driving device is arranged on the air deflector assembly 1 or the housing 4 and is used to drive the connecting rod 3 to move along the length direction of the air outlet 41. Since the rotation axis of the air deflector assembly 1 extends along the length direction of the air outlet 41, by extending the connecting rod 3 along the length direction of the air outlet 41, and the driving assembly drives the connecting rod 3 to move along the length direction of the air outlet 41, so that the connecting rod 3 rotates synchronously with the air deflector assembly 1, avoiding movement interference between the two, and ensuring the reliability of the air guiding assembly 100.

[0100] At the same time, the connecting rod 3 is driven by the driving device to move along the length direction of the air outlet 41, thereby driving the louver 2 to rotate around the rotation axis along the width direction of the air outlet 41, and the rotation axis of the connecting rod 3 and the louver 2 is parallel to the rotation axis of the louver 2 and the air guide plate assembly 1 and is arranged at intervals, so that the louver 2 guides the airflow in the length direction of the air outlet 41. In addition, the louver 2 is arranged at intervals along the length direction of the air outlet 41, so that the airflow in the air guide channel 11 flows out after being guided by multiple louvers 2, thereby improving the uniformity of the outflowing airflow, thereby better meeting the user's use needs. Multiple louvers 2 are all rotatably connected to the connecting rod 3, and the synchronous rotation of multiple louvers 2 can be achieved.

[0101] Furthermore, the air deflector assembly 1 is a plurality of air deflector assemblies 1 arranged at intervals along the length direction of the air outlet 41, and two adjacent air deflector assemblies 1 among the plurality of air deflector assemblies 1 are connected by an adapter, the axis of the adapter is colinear with the rotation axis of the air deflector assembly 1, and the adapter has a first accommodating space, both ends of the first accommodating space along the length direction of the air outlet 41 are open and connected to the air guide channel 11, and the connecting rod 3 is located in the first accommodating space and the air guide channel 11. Therefore, such an arrangement further ensures that the plurality of air deflector assemblies 1 and the connecting rod 3 rotate synchronously, thereby improving the overall reliability. At the same time, by locating the connecting rod 3 in the first accommodating space and the air guide channel 11, the space is better utilized, making the layout of the air deflector assembly 100 more reasonable, and the adapter plays a certain protective role on the connecting rod 3, thereby further improving the reliability of the air deflector assembly 100.

[0102] In some embodiments of the present invention, Figure 10 In the example shown, the connecting rod 3 is provided with a slide groove extending along the width direction of the air guide channel 11, and the louver 2 is provided with a first rotating shaft 22, which is rotatably arranged in the slide groove. Therefore, the driving device drives the connecting rod 3 to move along the length direction of the air outlet 41, so that the rotating shaft located in the slide groove rotates, thereby driving the louver 2 to rotate along the length direction of the air outlet 41, further ensuring the air guiding effect of the louver 2 on the airflow.

[0103] In some embodiments of the utility model, the driving device includes a louver motor, a louver gear and a louver rack. The louver motor is arranged on the air guide plate assembly 1 or the housing 4, the louver gear is connected to the output shaft of the louver motor, the louver rack is connected to the connecting rod 3 and extends along the length direction of the connecting rod 3, and the louver rack is meshed with the louver gear. Therefore, when the louver motor is running, the output shaft of the louver motor rotates to drive the louver gear to rotate, and the louver gear is meshed with the louver rack, so that the louver gear drives the louver rack to move along the length direction of the connecting rod 3 during the rotation of the louver gear, thereby driving the connecting rod 3 to move along the length direction of the air outlet 41, and then driving the multiple louvers 2 to rotate, so that the louver 2 guides the airflow in the length direction of the air outlet 41.

[0104] The air conditioner 200 according to an embodiment of the present utility model will be described below.

[0105] The air conditioner 200 according to an embodiment of the present utility model includes: a housing 4 and the above-described air guiding assembly 100.

[0106] Specifically, as Figures 1 - 6 shown, the housing 4 has an air outlet duct 43 and an air outlet 41 communicating with the air outlet duct 43, and the air guiding plate assembly 1 is rotatably disposed as a whole at a position close to the air outlet 41 of the air outlet duct 43.

[0107] For the air conditioner 200 according to an embodiment of the present utility model, by integrating the louvers 2 and the air guiding plate assembly 1 into the air guiding assembly 100, the air guiding plate assembly 1 is rotatably disposed as a whole at a position close to the air outlet 41 of the air outlet duct 43, at least a part of the louvers 2 is located in the air guiding channel 11 of the air guiding plate assembly 1 and is rotatably disposed on the air guiding plate assembly 1, and the air guiding plate assembly 1 and the louvers 2 are respectively used for guiding air in the width direction and the length direction of the air outlet 41, three-dimensional air supply at the air outlet 41 can be realized, different air supply angles and air supply effects can be achieved, and the air sweeping angles and ranges of the louvers 2 and the air guiding plate assembly 1 can be effectively increased. At the same time, by providing an air outlet 121 communicating with the air guiding channel 11 on at least one side of the two sides in the width direction of the air guiding plate assembly 1, the air outlet area of the air guiding assembly 100 can be effectively increased, thereby increasing the air supply volume and the air supply range, enhancing the air supply effect of the air conditioner 200, meeting the needs of users, and thus improving the comfort and experience of users.

[0108] In some embodiments, as Figure 1 、 Figures 4 - 8 shown, one side of the housing 4 along the width direction of the air outlet 41 has a receiving cavity 42. It can be understood that the receiving cavity 42 is disposed inside the housing 4. The housing 4 is connected with a door body 46. The door body 46 is movably disposed on the housing 4 in the width direction of the air outlet 41 for opening or closing the air outlet 41. When the door body 46 opens the air outlet 41, the door body 46 is located in the receiving cavity 42, realizing a hidden door body 46 structure.

[0109] It can be understood that when the door body 46 opens the air outlet 41, the door body 46 can be located on one side in the width direction of the air outlet 41 and at least partially located in the receiving cavity 42. The air flow inside the air conditioner 200 can flow out through the air outlet 41, and the door body 46 can be stored inside the housing 4, improving the protection effect on the door body 46.

[0110] In some embodiments, the air conditioner 200 further includes a driving component. The driving component is disposed on the housing 4 and is connected to the door body 46 for driving the door body 46 to move. Thus, the automation of opening and closing the door body 46 can be realized, which is convenient for the user to use and meets the user's usage requirements. A control module may be provided inside the air conditioner 200. The driving component may be connected to the control module, and the control module can control the driving component to work, thereby controlling the opening or closing of the door body 46.

[0111] In some embodiments, as Figure 1 shown in the example, the air conditioner 200 is further provided with a display panel 53. The display panel 53 is disposed above the air outlet 41 and is used to display the working state, set parameters, and fault information of the air conditioner 200 in real time to help the user understand the operation of the air conditioner 200. Usually, multiple control parameters such as temperature, humidity, wind speed, and mode are provided on the display panel 53. The user can quickly set the required air supply state of the air conditioner 200 by means of buttons or a touch screen, etc.

[0112] In some embodiments, as Figure 1 shown in the example, the air conditioner 200 is further provided with a base 54. The base 54 is disposed below the housing 4 and can increase the contact area between the air conditioner 200 and the ground, thereby reducing the risk of the air conditioner 200 shaking, ensuring the stability of the air conditioner 200 during use and reducing vibration and noise. At the same time, it can also effectively disperse the pressure of the air conditioner 200 on the floor and reduce the damage to the floor.

[0113] Other components of the air conditioner 200 according to the embodiments of the present invention, such as the heat exchanger 52 and the cross-flow fan 51, etc., are known to those of ordinary skill in the art and will not be described in detail here.

[0114] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "illustrative embodiments", "examples", "specific examples", or "some examples", etc. means 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 invention. 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 any one or more embodiments or examples in a suitable manner.

[0115] Although the embodiments of the present invention 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 purposes of the present invention. The scope of the present invention is defined by the claims and their equivalents.

Claims

1. A wind guiding component, characterized in that, For an air conditioner, the air conditioner includes a housing having an air outlet duct and an air outlet communicating with the air outlet duct. The air guiding assembly includes: An air guiding plate assembly rotatably disposed at a position near the air outlet of the air outlet duct as a whole. The rotation axis of the air guiding plate assembly extends along the length direction of the air outlet. The air guiding plate assembly is used for guiding air in the width direction of the air outlet. The air guiding plate assembly has an air guiding channel, and at least one side of the two sides in the width direction of the air guiding plate assembly has an air outlet communicating with the air guiding channel.

2. The air guiding assembly according to claim 1, wherein The air guiding assembly further includes: louvers, at least a part of the louvers is located in the air guiding channel and rotatably disposed on the air guiding plate assembly. The rotation axis of the louvers is perpendicular to the rotation axis of the air guiding plate assembly. The louvers are used for guiding air in the length direction of the air outlet.

3. The air guiding assembly according to claim 1, characterized in that, The air outlets on the same side in the width direction of the air guiding plate assembly are multiple and arranged at intervals along the length direction of the air guiding plate assembly; And / or, the air outlet is arranged near the air outlet end of the air guiding plate assembly.

4. The air guiding assembly according to claim 1, wherein One of the two inner walls opposite to each other in the width direction of the air outlet duct has a volute tongue portion. Along the air flow direction, when the air outlet end of the air guiding assembly is downstream of the air inlet end of the air guiding plate assembly, one side of the air guiding plate assembly in the width direction away from the volute tongue portion has an air inlet communicating with the air guiding channel.

5. The air guiding assembly according to claim 4, wherein The air inlet is arranged near the air inlet end of the air guiding plate assembly.

6. The air guiding assembly according to claim 4, characterized in that, The air outlet is provided on the surface of the air guiding plate assembly where the air inlet is located. In the direction from the air inlet end to the air outlet end of the air guiding plate assembly, the air inlet and the air outlet are arranged in sequence.

7. The air guiding assembly according to claim 5, characterized in that, Both the air outlet and the air inlet are multiple and arranged at intervals along the length direction of the air guiding plate assembly. The multiple air inlets and the multiple air outlets are arranged alternately in the length direction of the air guiding plate assembly.

8. The air guiding assembly according to claim 1, characterized in that, The width of the air outlet end of the air guiding channel is smaller than the width of the air inlet end of the air guiding channel.

9. The air guiding assembly according to claim 4, characterized in that, The air guiding plate assembly includes: A first air guiding plate extending along the length direction of the air outlet. There are two spaced-apart first air guiding plates. The air guiding channel is defined between the two first air guiding plates. At least one of the two first air guiding plates is provided with the air outlet, and the air inlet is provided on one of the first air guiding plates; Connecting plates. There are two connecting plates respectively located at both ends in the length direction of the first air guiding plate. Each connecting plate is connected to the two first air guiding plates, and the connecting plates are rotatably disposed on the inner wall of the air outlet duct.

10. The air guiding assembly according to claim 9, wherein The air guiding assembly further includes: louvers, at least a part of the louvers is located in the air guiding channel and rotatably disposed on the air guiding plate assembly. The rotation axis of the louvers is perpendicular to the rotation axis of the air guiding plate assembly. The louvers are used for guiding air in the length direction of the air outlet; The air guiding plate assembly further includes: The second air guide plate is arranged in the air guide channel, the second air guide plate extends along the length direction of the air outlet and the two ends in the length direction are respectively connected to the two connecting plates, and the louver is provided with an avoidance gap for avoiding the second air guide plate.

11. The air guiding assembly according to claim 10, characterized in that, The air outlet ends of the first air guide plate and the second air guide plate are flush, and a line connecting the air outlet ends of the first air guide plate and the second air guide plate is perpendicular to a direction from an air inlet end to an air outlet end of the air guide channel.

12. The air guiding assembly according to claim 11, wherein, Along the airflow direction, when the air outlet end of the air guide assembly is located downstream of the air inlet end of the air guide plate assembly, the size of the first air guide plate close to the side of the volute tongue portion in the direction from the air inlet end to the air outlet end of the air guide plate assembly is L1, and the size of the first air guide plate away from the side of the volute tongue portion in the direction from the air inlet end to the air outlet end of the air guide plate assembly is L4, and the following conditions are satisfied: L1≥L4.

13. The air guiding assembly according to claim 11, wherein Along the airflow direction, when the air outlet end of the air guide assembly is located downstream of the air inlet end of the air guide plate assembly, the size of the first air guide plate close to the tongue portion in the direction from the air inlet end to the air outlet end of the air guide plate assembly is L1, and the size of the second air guide plate in the direction from the air inlet end to the air outlet end of the air guide plate assembly is smaller than L1.

14. The air guiding assembly according to claim 13, wherein, The second air guide plate is multiple and includes a first sub-air guide plate and a second sub-air guide plate, the first sub-air guide plate and the second sub-air guide plate are respectively located on both sides of the center line of the air guide channel along the width direction of the air guide channel, Along the airflow direction, when the air outlet end of the air guide assembly is located downstream of the air inlet end of the air guide plate assembly, the first sub-air guide plate is arranged close to the snail tongue portion relative to the second sub-air guide plate, and the size of the first sub-air guide plate in the direction from the air inlet end to the air outlet end of the air guide plate assembly is L2, and the size of the second sub-air guide plate in the direction from the air inlet end to the air outlet end of the air guide plate assembly is L3, and it satisfies: L2≥L3.

15. The air guiding assembly according to claim 1, characterized in that, The maximum distance between the rotation axis of the air deflector assembly and the air inlet end of the air deflector assembly is smaller than the maximum distance between the rotation axis of the air deflector assembly and the air outlet end of the air deflector assembly.

16. The air guiding assembly according to claim 15, characterized in that, When the air conditioner is in the on state, the air inlet end is located upstream of the air outlet end, and part of the air outlet end extends out of the air outlet; when the air conditioner is in the off state, the air inlet end is located downstream of the air outlet end, and the air guide assembly is entirely located in the air outlet duct.

17. The air guiding assembly according to claim 2, 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, and at least one louver is provided in the air guide channel of each air guide plate assembly.

18. The air guiding assembly according to claim 2, wherein, 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 extends along the length direction of the air outlet, the connecting rod is rotatably connected to the plurality of louvers, and a rotation axis between the connecting rod and the louver is parallel to a rotation axis between the louver and the air guide plate assembly and is spaced apart.

19. An air conditioner, characterized in that, include: A housing, the housing having an air outlet duct and an air outlet communicating with the air outlet duct; The air guiding component according to any one of claims 1-18, the air guiding plate component is integrally rotatably disposed at a position of the air outlet duct close to the air outlet.