Air guide structure and air conditioner
By setting up a rotatable and partially stacked air guide plate structure at the air outlet of the air conditioner, the existing air conditioner's single air supply method and poor air guidance effect are solved, and the multi-angle air supply and dust protection effect is achieved, which improves user comfort and air supply effect of the air conditioner.
Patent Information
- Application Number
- CN202422036220.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-21
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-21
AI Technical Summary
The existing air conditioners have a single air supply method and poor air conduction effect, resulting in a decrease in user comfort and experience.
A air guide structure is designed, including a rotatable first air guide plate and a second air guide plate, by providing these air guide plates at the air outlet to open or close the air outlet, and partially stacked when closed, to achieve multi-angle air supply and dust protection effects.
The air outlet effect and air supply state of the air conditioner at different angles is realized, which improves the user's comfort and experience, while enhancing the air supply distance and airflow circulation, and improving the air supply effect of the air conditioner.
Smart Images

Figure CN223020524U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of air treatment devices, in particular to a wind guiding structure and an air conditioner. Background Art
[0002] In the air conditioner field, 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. A single air supply mode can no longer meet the diverse needs of users. At the same time, the air guiding effect of the existing air guiding plate at the air outlet is general, and the air supply distance is also limited, which greatly affects the comfort and experience of users. Summary of the Utility Model
[0003] The utility model aims to at least solve one of the technical problems existing in the prior art. For this purpose, the utility model provides a wind guiding structure, which can realize different air supply states of the air conditioner, and at the same time has good air guiding effect and long air supply distance, and can improve the comfort and experience of users.
[0004] The utility model also provides an air conditioner, which includes the above-mentioned wind guiding structure.
[0005] The wind guiding structure according to an embodiment of the utility model includes: a first air guiding plate and a second air guiding plate. The wind guiding structure is used for an air conditioner, which includes a housing having an air outlet duct and an air outlet communicated with the air outlet duct. The first air guiding plate and the second air guiding plate are rotatably arranged at the air outlet to open or close the air outlet. When the air outlet is closed, the first air guiding plate and the second air guiding plate are arranged in the width direction of the air outlet and partially overlapped.
[0006] The wind guiding structure according to an embodiment of the utility model can open or close the air outlet by arranging rotatable first and second air guiding plates at the air outlet, and can realize closing the air outlet and guiding air flow to blow out from the air outlet at different angles, so as to realize different air outlet effects of the air conditioner and different air supply states of the air conditioner, so as to meet the diverse needs of users, and further improve the comfort and experience of users. At the same time, when the wind guiding structure closes the air outlet, the first air guiding plate and the second air guiding plate are arranged in the width direction of the air outlet and partially overlapped, so that the dust-proof effect can be realized. Without affecting the closing of the air outlet, the widths of the first air guiding plate and the second air guiding plate can be increased, so that a better air guiding effect can be generated when the air conditioner supplies air, which is also beneficial to increasing the air supply distance, thereby promoting the circulation of indoor air flow, and further improving the air supply effect of the air conditioner and enhancing the user experience.
[0007] According to some embodiments of the present utility model, when closing the air outlet, in the overlapping area of the first air deflector and the second air deflector, the first air deflector is located outside the second air deflector. The inner surface of the end of the first air deflector close to the second air deflector has a first groove, which extends from one end to the other end in the length direction of the first air deflector and is open at the end close to the second air deflector. The outer surface of the end of the second air deflector close to the first air deflector has a second groove, which extends from one end to the other end in the length direction of the second air deflector and is open at the end close to the first air deflector. The end of the second air deflector close to the first air deflector is located in the first groove, and the end of the first air deflector close to the second air deflector is located in the second groove.
[0008] In some embodiments of the present utility model, when closing the air outlet, the outer surfaces of the first air deflector and the second air deflector are flush; and / or, the inner surfaces of the first air deflector and the second air deflector are flush.
[0009] According to some embodiments of the present utility model, at least one of the first air deflector and the second air deflector has a plurality of spaced micropores.
[0010] In some embodiments of the present utility model, the air conditioner has a no-wind feeling state. In the no-wind feeling state, the overlapping ends of the first air deflector and the second air deflector are located outside the air outlet and are in contact with each other.
[0011] According to some embodiments of the present utility model, the air guiding structure further includes a first louver, which is rotatably arranged in the air outlet duct. Along the air flow direction, the first louver is located upstream of the first air deflector and the second air deflector, and the rotation axis of the first louver is perpendicular to the rotation axes of the first air deflector and the second air deflector.
[0012] In some embodiments of the present utility model, when closing the air outlet, the first louver, the first air deflector and the second air deflector are arranged at intervals.
[0013] In some embodiments of the present utility model, when closing the air outlet, the air outlet end of the first louver extends to the first air deflector and the second air deflector. The air outlet end of the first louver has a first notch and a second notch respectively for avoiding the first air deflector and the second air deflector, and the first notch and the second notch are arranged at intervals in the width direction of the air outlet duct.
[0014] In some embodiments of the present utility model, the two sides of the first louver along the width direction of the air outlet duct are respectively the same shape as the two inner walls of the air outlet duct in the width direction.
[0015] In some embodiments of the present utility model, the air guiding structure further includes a second louver, and the second louver is rotatably provided on at least one of the inner surfaces of the first air guiding plate and the second air guiding plate, and the rotation axis of the second louver is perpendicular to the rotation axis of the first air guiding plate.
[0016] In some embodiments of the present utility model, along the length direction of the air outlet, the first louver and the second louver are arranged at staggered intervals; and / or, the first louver is a plurality of spaced apart along the length direction of the air outlet; and / or, the second louver is a plurality of spaced apart along the length direction of the air outlet; and / or, when the second louver is provided on both the first air guiding plate and the second air guiding plate, the second louver on the first air guiding plate and the second louver on the second air guiding plate are arranged at staggered intervals along the length direction of the air outlet.
[0017] In some embodiments of the present utility model, when the air outlet is opened, the second louver is located on the side where the first air guiding plate and the second air guiding plate face each other.
[0018] An air conditioner according to an embodiment of the present utility model includes: the above-mentioned air guiding structure.
[0019] An air conditioner according to an embodiment of the present utility model can open or close the air outlet by providing rotatable first and second air guiding plates at the air outlet, can close the air outlet and guide the air flow to blow out from the air outlet at different angles, can achieve the air outlet effects at different angles of the air conditioner and different air supply states of the air conditioner, so as to meet the diverse needs of users, and further improve the comfort and experience of users. At the same time, when the air guiding structure closes the air outlet, the first air guiding plate and the second air guiding plate are arranged in the width direction of the air outlet and partially overlap each other, thereby achieving a dust-proof effect. Without affecting the closing of the air outlet, the widths of the first air guiding plate and the second air guiding plate can be increased, so that a better air guiding effect can be generated when the air conditioner supplies air, which is also beneficial to increasing the air supply distance, thereby promoting the circulation of indoor air flow, and further improving the air supply effect of the air conditioner and enhancing the user experience.
[0020] The additional aspects and advantages of the present utility model will be partially given in the following description, partially become obvious from the following description, or be understood through the practice of the present utility model. Description of the Drawings
[0021] The above and / or additional aspects and advantages of the present utility model will become obvious and easy to understand from the description of the embodiments in conjunction with the following drawings, where:
[0022] Figure 1A cross-sectional view of an air conditioner according to an embodiment of the present utility model, wherein the air conditioner is in a closed state, and the first louver is spaced apart from the first air deflector and the second air deflector;
[0023] Figure 2 A cross-sectional view of an air conditioner according to an embodiment of the present utility model, wherein the air conditioner is in a default air outlet state, and the first louver is spaced apart from the first air deflector and the second air deflector;
[0024] Figure 3 A cross-sectional view of an air conditioner according to an embodiment of the present utility model, wherein the air conditioner is in a no-wind feeling state, and the first louver is spaced apart from the first air deflector and the second air deflector;
[0025] Figure 4 A cross-sectional view of an air conditioner according to an embodiment of the present utility model, wherein the air conditioner is in a left air outlet state, and the first louver is spaced apart from the first air deflector and the second air deflector;
[0026] Figure 5 A cross-sectional view of an air conditioner according to an embodiment of the present utility model, wherein the air conditioner is in a right air outlet state, and the first louver is spaced apart from the first air deflector and the second air deflector;
[0027] Figure 6 A top view of a wind guiding structure according to an embodiment of the present utility model, wherein the air conditioner is in a closed state, and the air outlet end of the first louver extends to the first air deflector and the second air deflector;
[0028] Figure 7 A top view of a wind guiding structure according to an embodiment of the present utility model, wherein the air conditioner is in a no-wind feeling state, and the air outlet end of the first louver extends to the first air deflector and the second air deflector;
[0029] Figure 8 A top view of a wind guiding structure according to an embodiment of the present utility model, wherein the air conditioner is in a left air outlet state, and the air outlet end of the first louver extends to the first air deflector and the second air deflector;
[0030] Figure 9 A top view of a wind guiding structure according to an embodiment of the present utility model, wherein the air conditioner is in a right air outlet state, and the air outlet end of the first louver extends to the first air deflector and the second air deflector.
[0031] Reference numerals:
[0032] 100, wind guiding structure;
[0033] 1, first air deflector; 11, first groove; 12, first rotating shaft;
[0034] 2, second air deflector; 21, second groove; 22, second rotating shaft;
[0035] 3. First louver; 31. First notch; 32. Second notch;
[0036] 4. Second louver;
[0037] 200. Air conditioner;
[0038] 5. Housing; 51. Air outlet duct; 52. Air outlet; 53. Air inlet; 54. Mounting plate; 55. Side wall plate; 56. Front cover plate;
[0039] 6. Heat exchanger;
[0040] 7. Cross-flow fan. Detailed implementation manners
[0041] The embodiments of the present utility model will be described in detail below. Examples of the embodiments are shown in the 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 drawings are exemplary and are only used to explain the present utility model and should not be construed as a limitation of the present utility model.
[0042] In the description of the present utility model, 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 drawings, and are 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 of the present utility model. In addition, the features defined as "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present utility model, unless otherwise stated, the meaning of "a plurality" is two or more.
[0043] In the description of the present utility model, it should be noted that, unless otherwise clearly defined and limited, the terms "installed", "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 utility model can be understood according to specific situations.
[0044] The air guiding structure 100 according to the embodiments of the present utility model will be described below with reference to the drawings.
[0045] As Figure 1 and Figure 2 shown, the air guiding structure 100 according to an embodiment of the present utility model includes a first air guiding plate 1 and a second air guiding plate 2.
[0046] Specifically, as Figure 1 shown, in combination with Figure 2 and Figure 3 , the air guiding structure 100 is for an air conditioner 200, and the air conditioner 200 can be a vertical wall-mounted air conditioner 200 or a floor-standing air conditioner. The air conditioner 200 includes a housing 5, and the housing 5 is arranged in a column shape extending vertically. The housing 5 is used to form the overall appearance of the air conditioner 200. The housing 5 has an air outlet duct 51 and an air outlet 52 communicating with the air outlet duct 51. The air outlet 52 extends in the vertical direction. An air inlet 53 is further provided on the housing 5, and the air inlet 53 communicates with the air outlet duct 51 to allow air flow to enter from the air inlet 53, pass through the air outlet duct 51, and then flow out from the air outlet 52.
[0047] Among them, the housing 5 includes a mounting plate 54, two side wall plates 55, and a front cover plate 56 arranged opposite to the mounting plate 54. The mounting plate 54, the side wall plates 55, and the front cover plate 56 extend in the vertical direction. The mounting plate 54 is used for wall mounting. By providing a mounting structure on the mounting plate 54, the air conditioner 200 can be vertically mounted on the wall. Side wall plates 55 connected to it are provided on both sides of the mounting plate 54, and an air inlet 53 is provided on at least one side wall plate 55 to allow the air flow outside the housing 5 to enter the air conditioner 200 for internal circulation. The air outlet 52 is provided on the front cover plate 56 to allow the air flow after internal circulation to flow out of the air conditioner 200.
[0048] As Figures 1 - 5 shown in the example, a heat exchanger 6, a cross-flow fan 7, etc. are further provided in the housing 5. In the air flow direction in the housing 5, the heat exchanger 6 is upstream of the cross-flow fan 7. The heat exchanger 6 is used for heat exchange with the air flow passing through its surface, and the cross-flow fan 7 is used to drive the air flow from the air inlet 53 to the air outlet 52.
[0049] During the specific operation of the air conditioner 200, driven by the cross-flow fan 7, the outside air will enter the housing 5 from the air inlet 53. After the heat exchange effect of the heat exchanger 6, the heated or cooled air can flow out of the air conditioner 200 from the air outlet 52 under the guiding action of the air guiding structure 100 to ensure the refrigeration, heating, and air supply functions of the air conditioner 200.
[0050] Furthermore, both the first air guiding plate 1 and the second air guiding plate 2 are rotatably arranged at the air outlet 52 to open or close the air outlet 52. When the air outlet 52 is closed, the first air guiding plate 1 and the second air guiding plate 2 are arranged in the width direction of the air outlet 52 and partially overlap each other.
[0051] It can be understood that the first air deflector 1 and the second air deflector 2 can be respectively provided with a first rotating shaft 12 and a second rotating shaft 22. By rotating the first air deflector 1 around the first rotating shaft 12 and the second air deflector 2 around the second rotating shaft 22, the operation of opening or closing the air outlet 52 can be completed. The air flow direction can also be changed by rotation, and the air flow flowing out of the air outlet 52 of the air conditioner 200 can be deflected in different directions, so that it can achieve closing the air outlet 52 and guiding the air flow to blow out from the air outlet 52 at different angles. With the mutual cooperation of the first air deflector 1 and the second air deflector 2, a better air guiding effect can be achieved, the function and effect of the air conditioner 200 blowing air at different angles can be realized, different air supply states of the air conditioner 200 can be achieved, the richness of the air outlet effect of the air conditioner can be improved, the diverse needs of users can be met, and thus the comfort and experience of users can be improved.
[0052] Among them. As Figure 1 and Figure 6 shown in the example, when the air conditioner 200 is in the shutdown state, the air conditioner 200 stops blowing air, and the first air deflector 1 and the second air deflector 2 rotate to the position of closing the air outlet 52. At this time, the first air deflector 1 and the second air deflector 2 are arranged side by side in the width direction of the air outlet 52 to jointly close the air outlet 52, which can form a tight closed structure, can protect other components in the housing 5, and can also achieve a dust-proof effect to ensure the cleanliness inside the air conditioner 200. Moreover, the first air deflector 1, the second air deflector 2 and the housing 5 constitute the complete appearance of the air conditioner 200, which can improve the aesthetic appearance of the air conditioner 200.
[0053] In addition, the first air deflector 1 and the second air deflector 2 are partially stacked. Without affecting the closing of the air outlet 52, the widths of the first air deflector 1 and the second air deflector 2 can be increased, so that a better air guiding effect can be produced when the first air deflector 1 and the second air deflector 2 open the air outlet 52. When the first air deflector 1 and the second air deflector 2 rotate to a specific angle range, the first air deflector 1 and the second air deflector 2 can jointly form an extension of the air outlet duct 51. The widths of the first air deflector 1 and the second air deflector 2 are increased, which is beneficial to guiding the air flow to a farther position, that is, the air supply distance can be increased. Therefore, it can better promote the circulation of indoor air flow, is beneficial to the more uniform distribution of indoor temperature, and thus can improve the air supply effect of the air conditioner 200 and enhance the user experience.
[0054] It should be noted that the air outlet 52 can be strip-shaped and extend in the vertical direction. The strip-shaped air outlet 52 can increase the air supply volume and the air supply range. At this time, the first air deflector 1 and the second air deflector 2 extend in the vertical direction and are strip-shaped, so that the first air deflector 1 and the second air deflector 2 can be adapted to the air outlet 52, facilitating the first air deflector 1 and the second air deflector 2 to open or close the air outlet 52. At the same time, the rotation axes of the first air deflector 1 and the second air deflector 2 can extend in the vertical direction, facilitating the first air deflector 1 and the second air deflector 2 to deflect the air in the left-right direction at the air outlet 52.
[0055] Furthermore, the air guiding structure 100 can further include a first driving motor and a second driving motor. The first driving motor and the second driving motor are arranged on the housing 5. The first driving motor is used to drive the first air deflector 1 to rotate, and the second driving motor is used to drive the second air deflector 2 to rotate. For example, the output shaft of the first driving motor can be connected to the first rotating shaft 12 on the first air deflector 1. The first driving motor drives the first rotating shaft 12 to rotate through its output shaft, thereby driving the first air deflector 1 to rotate by a certain angle. Similarly, the output shaft of the second driving motor can be connected to the second rotating shaft 22 on the second air deflector 2 to drive the second air deflector 2 to rotate. The structural design is reasonable. The first driving motor and the second driving motor can provide power, thus ensuring the performance of the air guiding structure 100 and realizing different air supply states of the air conditioner 200.
[0056] The following will illustrate by examples the different air supply states of the air conditioner 200 that the air guiding structure 100 can form.
[0057] As Figure 2 shown in the example, the air conditioner 200 has a default air supply state. In the default air supply state, the first air deflector 1 and the second air deflector 2 rotate along their respective rotation axes to open the air outlet 52. The first air deflector 1 and the second air deflector 2 both extend in the front-rear direction and are respectively located at or near both ends in the width direction of the air outlet 52. At this time, the first air deflector 1 and the second air deflector 2 can guide the air flow to blow forward out of the air outlet 52, so that the user in front of the air conditioner 200 can feel a certain wind sensation to ensure the air supply effect of the air conditioner 200.
[0058] As Figure 4 and Figure 8 shown in the example, the air conditioner 200 has a left air supply state. In the left air supply state, the first air deflector 1 and the second air deflector 2 rotate to the first position. At the first position, the first air deflector 1 and the second air deflector 2 are inclined towards the left in the direction from the rear to the front. At this time, the first air deflector 1 and the second air deflector 2 can guide the air flow to blow out of the air outlet 52 to the left, so that the user on the left side of the air conditioner 200 can feel a certain wind sensation, and to ensure that the air flow does not directly blow on the user on the right side of the air conditioner 200, and can ensure the air supply effect of the air conditioner 200 to meet the user's needs.
[0059] As Figure 5 and Figure 9 In the example shown, the air conditioner 200 has a right air outlet state. In the right air outlet state, the first air deflector 1 and the second air deflector 2 rotate to the second position. At the second position, the first air deflector 1 and the second air deflector 2 are inclined towards the right in the direction from the rear to the front. At this time, the first air deflector 1 and the second air deflector 2 can guide the air flow to blow out of the air outlet 52 to the right, so that the user located on the right side of the air conditioner 200 can feel a certain air flow, and ensure that the air flow does not directly blow on the user located on the left side of the air conditioner 200, and can ensure the air supply effect of the air conditioner 200 to meet the user's needs.
[0060] Of course, the air conditioner 200 also has a left and right swing air outlet state. In the left and right swing air outlet state, the first air deflector 1 and the second air deflector swing back and forth between the above-mentioned first position and the second position, and the air flow can continuously flow out of the air outlet 52 at different angles in the left and right directions, thereby enhancing the circulation effect of the air flow in the room and improving the uniformity of the indoor temperature, and further improving the cooling or heating efficiency of the air conditioner 200.
[0061] According to the air deflector structure 100 of the embodiment of the present invention, by providing the rotatable first air deflector 1 and the second air deflector 2 at the air outlet 52 to open or close the air outlet 52, it is possible to close the air outlet 52 and guide the air flow to blow out of the air outlet 52 at different angles, and different air outlet effects of the air conditioner 200 and different air supply states of the air conditioner 200 can be achieved to meet the diverse needs of users, thereby improving the comfort and experience of users. At the same time, when the air deflector structure 100 closes the air outlet 52, the first air deflector 1 and the second air deflector 2 are arranged in the width direction of the air outlet 52 and partially overlap, thereby achieving a dust-proof effect. Without affecting the closing of the air outlet 52, the widths of the first air deflector 1 and the second air deflector 2 can be increased, so that a better air guiding effect can be generated when the air conditioner 200 supplies air, which is also beneficial to increasing the air supply distance, thereby promoting the circulation of the indoor air flow, and further improving the air supply effect of the air conditioner 200 and enhancing the user experience.
[0062] In some embodiments of the present invention, such as Figure 1 and Figure 6As shown, when the air outlet 52 is closed, in the stacking area of the first air guide plate 1 and the second air guide plate 2, the first air guide plate 1 is located outside the second air guide plate 2, and the inner surface of the end of the first air guide plate 1 close to the second air guide plate 2 has a first groove 11, and the first groove 11 extends from one end of the first air guide plate 1 in the length direction to the other end and is open at the end close to the second air guide plate 2. The outer surface of the end of the second air guide plate 2 close to the first air guide plate 1 has a second groove 21, and the second groove 21 extends from one end of the second air guide plate 2 in the length direction to the other end and is open at the end close to the first air guide plate 1. The end of the second air guide plate 2 close to the first air guide plate 1 is located in the first groove 11, and the end of the first air guide plate 1 close to the second air guide plate 2 is located in the second groove 21.
[0063] It can be understood that the length direction of the first air guide plate 1 and the length direction of the second air guide plate 2 are vertical directions, the first groove 11 passes through the first air guide plate 1 in the vertical direction and the end of the first groove 11 close to the second air guide plate 2 is open, and the second groove 21 passes through the second air guide plate 2 in the vertical direction and the end of the second groove 21 close to the first air guide plate 1 is open, so that the first air guide plate 1 and the second air guide plate 2 can form a step structure at the end close to each other. When the air outlet 52 is closed, the bottom wall of the first groove 11 and the bottom wall of the second groove 21 fit together, the end of the first air guide plate 1 close to the second air guide plate 2 abuts or approaches the side wall of the second groove 21 facing away from the first air guide plate 1, and the end of the second air guide plate 2 close to the first air guide plate 1 abuts or approaches the side wall of the first groove 11 facing away from the second air guide plate 2.
[0064] Thus, the first air guide plate 1 and the second air guide plate 2 can be arranged side by side in the width direction of the air outlet 52 to close the air outlet 52, and at the same time, the first air guide plate 1 and the second air guide plate 2 can be stacked at one end close to each other, and the structural design is reasonable, the processing is simple and the cost is low. While not affecting the closing of the air outlet 52 and ensuring the dustproof effect, the first air guide plate 1 and the second air guide plate 2 can be increased in width, so that a better air guiding effect can be produced when the air conditioner 200 supplies air, and it is also beneficial to increase the air supply distance, thereby promoting the circulation of indoor air flow, and then the air supply effect of the air conditioner 200 can be improved and the user experience can be enhanced.
[0065] In some embodiments of the present invention, Figure 1 and Figure 6As shown, when the air outlet 52 is closed, the outer surfaces of the first air deflector 1 and the second air deflector 2 are flush. That is, the thickness of the end of the first air deflector 1 close to the second air deflector 2 can match the depth of the second groove 21, which can reduce the complexity of structural data during processing and facilitate processing. It is also beneficial for the first air deflector 1 and the second air deflector 2 to form a closed structure, which can ensure the dustproof effect and improve the cleanliness inside the air conditioner 200. At the same time, it can improve the neatness of the structure of the air conditioner 200 and the aesthetics of the appearance.
[0066] In some embodiments of the present invention, as Figure 1 and Figure 6 shown, when the air outlet 52 is closed, the inner surfaces of the first air deflector 1 and the second air deflector 2 are flush. That is, the thickness of the end of the second air deflector 2 close to the first air deflector 1 can match the depth of the first groove 11, which can reduce the complexity of structural data during processing and facilitate processing. It is also beneficial for the first air deflector 1 and the second air deflector 2 to form a closed structure, which can ensure the dustproof effect and improve the cleanliness inside the air conditioner 200.
[0067] In some embodiments of the present invention, at least one of the first air deflector 1 and the second air deflector 2 has a plurality of spaced micropores. When the air flow passes through the first air deflector 1 or the second air deflector 2 provided with micropores, the micropores can break up and refine the air flow, so that the air flow is transformed into finer air streams, and the air flow can become more uniform, delicate and gentle, which is beneficial to achieve the no-wind-sensation air outlet effect of the air conditioner 200 and improve the user experience.
[0068] It should be noted that the cross-sectional shape of the micropores can be circular, polygonal or strip-shaped holes, i.e., slits, etc., and the specific shape is not limited here. Further, when a plurality of micropores are provided on the first air deflector 1, the plurality of micropores can be arranged in an array on the first air deflector 1. Thus, on the premise of ensuring a certain structural strength of the first air deflector 1, as many micropores as possible can be arranged on the first air deflector 1. While not affecting the air flow dispersion of the first air deflector 1, it can also ensure sufficient ventilation volume, and further ensure the air output volume of the air outlet 52. Of course, a plurality of micropores can also be provided only on the second air deflector 2, or a plurality of micropores can be provided on both the first air deflector 1 and the second air deflector 2.
[0069] In some embodiments of the present invention, as Figure 3 and Figure 7 shown, the air conditioner 200 has a no-wind-sensation state. In the no-wind-sensation state, the mutually overlapping ends of the first air deflector 1 and the second air deflector 2 are located outside the air outlet 52 and are in contact with each other.
[0070] It should be noted that when the air outlet 52 is closed, in the width direction of the air outlet 52, the rotation axis of the first air deflector 1 is located at or near one end of the first air deflector 1 away from the second air deflector 2, and the rotation axis of the second air deflector 2 is located at or near one end of the second air deflector 2 away from the first air deflector 1.
[0071] Thus, when the air conditioner 200 is in the windless feeling state, the first air deflector 1 and the second air deflector 2 rotate around their respective rotation axes, so that the overlapping ends of the first air deflector 1 and the second air deflector 2 rotate to the outside of the air outlet 52 and abut against each other. At this time, at least part of the air outlet 52 is limited between the first air deflector 1 and the second air deflector 2. The air flow flows from the air outlet duct 51 to the air outlet 52 and blows into the room through the micropores on the first air deflector 1 and / or the second air deflector 2. The air flow is scattered under the action of the micropores and forms an air flow diffusion, which can improve the turbulent state during the air flow process, and at the same time can reduce the air flow velocity and improve the flexibility of the air flow, so that the air flow will not directly blow towards the user after being blown out from the air outlet 52, and the windless feeling air outlet effect of the air conditioner 200 can be realized, and the comfort and experience of the user can be improved.
[0072] In addition, in some solutions, when the air guiding structure 100 closes the air outlet 52, the first air deflector 1 and the second air deflector 2 are arranged side by side in the width direction of the air outlet 52 but without an overlapping part. At least one of the first air deflector 1 and the second air deflector 2 has a plurality of spaced micropores. The first air deflector 1 and the second air deflector 2 close the air outlet 52 to form a windless feeling state of the air conditioner 200. Compared with the above solution, when the air conditioner 200 of the present application is in the windless feeling state, the overlapping ends of the first air deflector 1 and the second air deflector 2 are located outside the air outlet 52 and abut against each other, which can increase the air outlet area while realizing the windless feeling air outlet state, thereby improving the air outlet air volume of the air outlet 52.
[0073] In some embodiments of the present utility model, as Figures 1 - 5 shown, the air guiding structure 100 further includes a first louver 3. The first louver 3 is rotatably arranged in the air outlet duct 51. Along the air flow direction, the first louver 3 is located upstream of the first air deflector 1 and the second air deflector 2. The rotation axis of the first louver 3 is perpendicular to the rotation axes of the first air deflector 1 and the second air deflector 2.
[0074] Specifically, the rotation axes of the first air deflector 1 and the second air deflector 2 are vertically arranged, and the rotation axis of the first louver 3 is horizontally arranged. Thus, the first air deflector 1 and the second air deflector 2 can adjust the air outlet angle of the air flow horizontally at the air outlet 52, while the first louver 3 can adjust the air outlet angle of the air flow vertically in the air outlet duct 51. The first louver 3 can change the air guiding direction by swinging up and down, guiding the air flow in the air outlet duct 51 in different angles in the up and down directions. This enables the air guiding structure 100 to guide the air outlet in the left and right directions and the up and down directions, which can further enrich the air outlet effect and the air supply state of the air conditioner 200, meet the diverse needs of users, and thus improve the comfort and experience of users.
[0075] In some embodiments, as Figure 2 、 Figure 4 and Figure 5 shown, the air conditioner 200 has a heating state. In the heating state, the first louver 3 is inclined outward from the top to the bottom towards the air outlet 52. At this time, the first air deflector 1 and the second air deflector 2 open the air outlet 52, and the first louver 3 swinging downward can guide the hot air flow in the air outlet duct 51 downward, so that the hot air flow blows out of the air outlet 52 downward. Blowing the hot air towards the lower part of the room is conducive to the expansion and rise of the hot air and the descent of the cold air, accelerating the alternation of the hot and cold air flows and the air circulation in the room, and accelerating the indoor heating speed, thereby improving the heating effect of the air conditioner 200.
[0076] In some embodiments of the present invention, as Figures 1 - 5 shown, when the air outlet 52 is closed, the first louver 3 is spaced from the first air deflector 1 and the second air deflector 2. This can avoid the collision or interference between the first air deflector 1 and the second air deflector 2 and the first louver 3 when they rotate. The structural arrangement is reasonable, which can ensure the air guiding of the first air deflector 1 and the second air deflector 2 in the left and right directions and the air guiding of the first louver 3 in the up and down directions, so as to ensure different air supply effects of the air conditioner 200 to meet the diverse needs of users.
[0077] In some embodiments of the present invention, as Figures 6 - 9 shown, when the air outlet 52 is closed, the air outlet end of the first louver 3 extends to the first air deflector 1 and the second air deflector 2. The air outlet end of the first louver 3 has a first notch 31 and a second notch 32 respectively for avoiding the first air deflector 1 and the second air deflector 2, and the first notch 31 and the second notch 32 are spaced in the width direction of the air outlet duct 51. Thus, the width of the first louver 3 can be expanded as much as possible, effectively increasing the contact area between the first louver 3 and the air flow, thereby enhancing the air guiding effect of the first louver 3.
[0078] Meanwhile, the first notch 31 and the second notch 32 penetrate the first louver 3 in the vertical direction, which can avoid the first air deflector 1 and the second air deflector 2, providing space for the rotation of the first air deflector 1 and the second air deflector 2, and preventing the first air deflector 1 and the second air deflector 2 from colliding with or interfering with the first louver 3 during rotation, with a reasonable structural arrangement. In this way, it can not only ensure the rotation of the first air deflector 1 and the second air deflector 2 in the left-right direction, but also ensure the swing of the first louver 3 in the up-down direction, thus ensuring the air guiding effect of the air guiding structure 100 and the air supply effect of the air conditioner 200 to meet the needs of users.
[0079] Specifically, the first air deflector 1 and the second air deflector 2 are respectively provided with a first rotating shaft 12 and a second rotating shaft 22. The first rotating shaft 12 and the second rotating shaft 22 are respectively arranged at the first notch 31 and the second notch 32. When the first air deflector 1 and the second air deflector 2 open the air outlet 52, one end of the first air deflector 1 close to the first rotating shaft 12 will extend into the first notch 31, and one end of the second air deflector 2 close to the second rotating shaft 22 will extend into the second notch 32, thereby avoiding collisions between the first louver 3 and the first air deflector 1 and the second air deflector 2.
[0080] In some embodiments of the present invention, as Figures 1 - 5 shown, the two sides of the first louver 3 along the width direction of the air outlet duct 51 are respectively the same as the shapes of the two inner walls of the air outlet duct 51 in the width direction. Thus, the length of the first louver 3 can be expanded as much as possible in the width direction of the air outlet duct 51, effectively increasing the contact area between the first louver 3 and the air flow, thereby enhancing the air guiding effect of the first louver 3. At the same time, it can also enable the two inner walls of the air outlet duct 51 in the width direction to allow the first louver 3 to swing in the up-down direction, avoiding collisions or interference between the first louver 3 and the two inner walls of the air outlet duct 51 in the width direction during swinging, with a reasonable structural arrangement. It can ensure the air guiding effect of the first louver 3 and the air supply effect of the air conditioner 200 to meet the needs of users.
[0081] In some embodiments of the present invention, as Figures 1 - 5 shown, the air guiding structure 100 further includes a second louver 4. When the air outlet 52 is closed, the second louver 4 is rotatably provided on at least one of the inner surfaces of the first air deflector 1 and the second air deflector 2, and the rotation axis of the second louver 4 is perpendicular to the rotation axis of the first air deflector 1.
[0082] Specifically, the rotation axes of the first air deflector 1 and the second air deflector 2 are vertically arranged, and the rotation axis of the second louver 4 is horizontally arranged. Thus, when the air conditioner 200 blows air, the first air deflector 1 and the second air deflector 2 can adjust the air outlet angle of the air flow horizontally at the air outlet 52, and the second louver 4 can adjust the air outlet angle of the air flow vertically at the air outlet 52. The second louver 4 can change the air guiding direction by swinging up and down, and deflect the air flow at the air outlet 52 in different angles in the up and down directions. This enables the air guiding structure 100 to guide the air outlet in the left and right directions and the up and down directions at the air outlet 52, which can further enrich the air outlet effect and the air supply state of the air conditioner 200, meet the diverse needs of users, and thus improve the comfort and experience of users.
[0083] In some embodiments, as Figure 2 、 Figure 4 and Figure 5 shown, the air conditioner 200 has a heating state. In the heating state, the first louver 3 and the second louver 4 are both inclined outward from the air outlet 52 in the up and down direction. At this time, the first air deflector 1 and the second air deflector 2 open the air outlet 52, and the second louver 4 is located on the side where the first air deflector 1 and the second air deflector 2 face each other. The first louver 3 that swings downward can guide the hot air flow in the air outlet duct 51 downward, and then the second louver 4 located between the first air deflector 1 and the second air deflector 2 can further guide the hot air flow at the air outlet 52 downward, which can strengthen the effect of downward pressing air in heating, facilitate the expansion and rise of hot air and the descent of cold air, accelerate the alternation of hot and cold air flows and air circulation in the room, and accelerate the indoor heating speed, so as to better improve the heating effect of the air conditioner 200.
[0084] In some embodiments of the present utility model, along the length direction of the air outlet 52, the first louver 3 and the second louver 4 are arranged at intervals in a staggered manner, which can avoid collision or interference between the first louver 3 and the second louver 4. The structural arrangement is reasonable, and when the first air deflector 1 and the second air deflector 2 rotate in the left and right directions, it can ensure that both the first louver 3 and the second louver 4 can swing smoothly in the up and down directions to deflect the air flow, so as to ensure different air supply effects of the air conditioner 200 to meet the diverse needs of users.
[0085] In some embodiments of the present utility model, the first louver 3 is a plurality of spaced apart along the length direction of the air outlet 52. The plurality of first louvers 3 can disperse and deflect the air flow more evenly in the length direction of the air outlet 52, that is, the vertical direction, can optimize the air flow path, can achieve a better air guiding effect, and thus realize a better air supply effect of the air conditioner 200 and enhance the experience of users.
[0086] In some embodiments of the present utility model, there are multiple second louvers 4 spaced apart along the length direction of the air outlet 52. The multiple first louvers 3 can disperse the air flow more evenly and guide the air flow simultaneously in the length direction of the air outlet 52, i.e., the vertical direction, which can optimize the air flow path, achieve a better air guiding effect, and thus realize a better air supply effect of the air conditioner 200, enhancing the user experience.
[0087] In some embodiments of the present utility model, when second louvers 4 are provided on both the first air deflector 1 and the second air deflector 2, the second louvers 4 on the first air deflector 1 and the second louvers 4 on the second air deflector 2 are arranged at staggered intervals along the length direction of the air outlet 52. This can avoid collisions or interference between the second louvers 4 on the first air deflector 1 and the second louvers 4 on the second air deflector 2. The structural layout is reasonable, and when the first air deflector 1 and the second air deflector 2 rotate in the left-right direction, it can ensure that the second louvers 4 can swing smoothly in the up-down direction to guide the air flow, thereby ensuring different air supply effects of the air conditioner 200 to meet the diverse needs of users.
[0088] In some embodiments of the present utility model, as Figure 2 、 Figure 4 and Figure 5 shown, when the air outlet 52 is opened, the second louvers 4 are located on the sides of the first air deflector 1 and the second air deflector 2 facing each other. This facilitates the cooperation between the second louvers 4 on the first air deflector 1 and the second louvers 4 on the second air deflector 2 to jointly guide the air flow at the air outlet 52 in the up-down direction, which can enhance the air guiding effect of the second louvers 4, thereby ensuring the air supply effect of the air conditioner 200 to improve the user experience. Especially when the air conditioner 200 is in the heating state, it can improve the effect of the second louvers 4 pressing down the hot air flow at the air outlet 52, and further improve the heating effect of the air conditioner 200.
[0089] Specifically, when the air outlet 52 is closed, the second louvers 4 are located on the inner surfaces of the first air deflector 1 and the second air deflector 2. In the width direction of the air outlet 52, the rotation axis of the first air deflector 1 is located at or near the end of the first air deflector 1 facing away from the second air deflector 2, and the rotation axis of the second air deflector 2 is located at or near the end of the second air deflector 2 facing away from the first air deflector 1. When the air outlet 52 is opened, the first air deflector 1 and the second air deflector 2 rotate around their respective rotation axes, so that the overlapping ends of the first air deflector 1 and the second air deflector 2 rotate to the outside of the air outlet 52, thereby driving the second louvers 4 on the first air deflector 1 to rotate to the side of the first air deflector 1 close to the second air deflector 2, and driving the second louvers 4 on the second air deflector 2 to rotate to the side of the second air deflector 2 close to the first air deflector 1.
[0090] In some embodiments, the air guiding structure 100 is further provided with a first connecting rod and a third driving motor. A plurality of first louvers 3 are arranged at intervals along the length direction of the air outlet 52. The first connecting rod extends along the length direction of the air outlet 52, and each first louver 3 is connected to the first connecting rod. Thus, the plurality of first louvers 3 are integrated by the first connecting rod. The third driving motor is used to drive the first louvers 3 to rotate. The third driving motor can push the first connecting rod upward or downward by driving the first connecting rod or by driving any one of the plurality of first louvers 3. The first connecting rod can drive the plurality of first louvers 3 to rotate upward or downward, and further, the plurality of second louvers 4 can adjust the air outlet direction in the up and down directions.
[0091] Further, the rotation of the first louvers 3 can also be controlled by manual driving. The plurality of first louvers 3 can be driven to swing by toggling any one of the plurality of first louvers 3 or by toggling the first connecting rod.
[0092] Optionally, the first connecting rod and the plurality of first louvers 3 are integrally formed parts, that is, the first connecting rod and the plurality of first louvers 3 are integrally processed and manufactured. Thus, not only the connection strength between the first connecting rod and the first louvers 3 is high, but also the assembly process between the first connecting rod and the first louvers 3 can be omitted, thereby simplifying the assembly of the air duct assembly. Optionally, both the first connecting rod and the first louvers 3 are plastic parts, that is, the first connecting rod and the first louvers 3 are made of plastic materials, with light weight and low cost.
[0093] In some embodiments, the air guiding structure 100 is further provided with a second connecting rod and a fourth driving motor. A plurality of second louvers 4 are arranged at intervals along the length direction of the air outlet 52. The second connecting rod extends along the length direction of the air outlet 52, and each second louver 4 is connected to the second connecting rod. Thus, the plurality of second louvers 4 are integrated by the second connecting rod. The fourth driving motor is used to drive the second louvers 4 to rotate. The fourth driving motor can push the second connecting rod upward or downward by driving the second connecting rod or by driving any one of the plurality of second louvers 4. The second connecting rod can drive the plurality of second louvers 4 to rotate upward or downward, and further, the plurality of second louvers 4 can adjust the air outlet direction in the up and down directions.
[0094] Further, the rotation of the second louvers 4 can also be controlled by manual driving. The plurality of second louvers 4 can be driven to swing by toggling any one of the plurality of second louvers 4 or by toggling the second connecting rod.
[0095] Next, the air conditioner 200 according to the embodiments of the present invention will be described.
[0096] The air conditioner 200 according to the embodiments of the present invention includes: the above-mentioned air guiding structure 100.
[0097] Specifically, as Figure 1 shown, in combination withFigure 2 and Figure 3 As shown in Figure 3 , the air conditioner 200 can be a vertical wall-mounted air conditioner 200 or a floor-standing air conditioner. The air conditioner 200 includes a housing 5 which is arranged in a column shape extending vertically. The housing 5 is used to form the overall appearance of the air conditioner 200. The housing 5 has an air outlet duct 51 and an air outlet 52 communicating with the air outlet duct 51. The air outlet 52 extends in the vertical direction. An air inlet 53 is further provided on the housing 5. The air inlet 53 communicates with the air outlet duct 51 to allow air flow to enter from the air inlet 53, pass through the air outlet duct 51 and then flow out from the air outlet 52.
[0098] Among them, the housing 5 includes a mounting plate 54, two side wall plates 55 and a front cover plate 56 arranged opposite to the mounting plate 54. The mounting plate 54, the side wall plates 55 and the front cover plate 56 extend in the vertical direction. The mounting plate 54 is used for wall mounting. By setting a mounting structure on the mounting plate 54, the air conditioner 200 can be vertically mounted on the wall. Side wall plates 55 connected to both sides of the mounting plate 54 are provided. An air inlet 53 is provided on at least one side wall plate 55 to allow the air flow outside the housing 5 to enter the air conditioner 200 for internal circulation. The air outlet 52 is provided on the front cover plate 56 to allow the air flow after internal circulation to flow out of the air conditioner 200.
[0099] As Figures 1 - 5 shown in the example, a heat exchanger 6, a cross-flow fan 7, etc. are further provided in the housing 5. In the air flow direction in the housing 5, the heat exchanger 6 is upstream of the cross-flow fan 7. The heat exchanger 6 is used for heat exchange with the air flow passing through its surface, and the cross-flow fan 7 is used to drive the air flow from the air inlet 53 to the air outlet 52.
[0100] During the specific operation of the air conditioner 200, driven by the cross-flow fan 7, the outside air will enter the housing 5 from the air inlet 53. After the heat exchange effect of the heat exchanger 6, the heated or cooled air can flow out of the air conditioner 200 from the air outlet 52 under the guiding action of the air guiding structure 100 to ensure the functions of refrigeration, heating and air supply of the air conditioner 200.
[0101] Furthermore, the air guiding structure 100 includes a first air guiding plate 1 and a second air guiding plate 2. The first air guiding plate 1 and the second air guiding plate 2 are both rotatably arranged at the air outlet 52 to open or close the air outlet 52. When the air outlet 52 is closed, the first air guiding plate 1 and the second air guiding plate 2 are arranged in the width direction of the air outlet 52 and partially overlap each other.
[0102] It can be understood that the first air deflector 1 and the second air deflector 2 may be respectively provided with a first rotating shaft 12 and a second rotating shaft 22. By rotating the first air deflector 1 around the first rotating shaft 12 and the second air deflector 2 around the second rotating shaft 22, the action of opening or closing the air outlet 52 can be completed. The air flow direction can also be changed by rotation, and the air flow flowing out of the air outlet 52 of the air conditioner 200 can be deflected in different directions, enabling the air outlet 52 to be closed and the air flow to be blown out from the air outlet 52 at different angles. With the mutual cooperation of the first air deflector 1 and the second air deflector 2, a better air guiding effect can be achieved, and the functions and effects of the air conditioner 200 blowing air at different angles can be realized, so as to achieve different air supply states of the air conditioner 200, improve the richness of the air outlet effect of the air conditioner, meet the diverse needs of users, and thus improve the comfort and experience of users.
[0103] Among them. As Figure 1 shown in the example, when the air conditioner 200 is in the shutdown state, the air conditioner 200 stops blowing air, and the first air deflector 1 and the second air deflector 2 rotate to the position of closing the air outlet 52. At this time, the first air deflector 1 and the second air deflector 2 are arranged side by side in the width direction of the air outlet 52 to jointly close the air outlet 52, which can form a tight closed structure, protect other components in the housing 5, and can also achieve a dust-proof effect to ensure the cleanliness inside the air conditioner 200. Moreover, the first air deflector 1, the second air deflector 2 and the housing 5 constitute the complete appearance of the air conditioner 200, which can improve the aesthetic appearance of the air conditioner 200.
[0104] In addition, the first air deflector 1 and the second air deflector 2 are partially stacked. Without affecting the closing of the air outlet 52, the widths of the first air deflector 1 and the second air deflector 2 can be increased, so that a better air guiding effect can be produced when the first air deflector 1 and the second air deflector 2 open the air outlet 52. When the first air deflector 1 and the second air deflector 2 rotate to a specific angle range, the first air deflector 1 and the second air deflector 2 can jointly form an extension of the air outlet duct 51. The widths of the first air deflector 1 and the second air deflector 2 are increased, which is beneficial to guiding the air flow to a farther position, that is, the air supply distance can be increased. Therefore, it can better promote the circulation of indoor air flow, is beneficial to the more uniform distribution of indoor temperature, and thus can improve the air supply effect of the air conditioner 200 and enhance the user experience.
[0105] It should be noted that the air outlet 52 can be in a long strip shape and extend in the vertical direction. The long-strip-shaped air outlet 52 can increase the air supply volume and the air supply range. At this time, the first air deflector 1 and the second air deflector 2 extend in the vertical direction and are in a long strip shape, so that the first air deflector 1 and the second air deflector 2 can be adapted to the air outlet 52, facilitating the first air deflector 1 and the second air deflector 2 to open or close the air outlet 52. At the same time, the rotation axes of the first air deflector 1 and the second air deflector 2 can extend in the vertical direction, facilitating the first air deflector 1 and the second air deflector 2 to deflect the air in the left-right direction at the air outlet 52.
[0106] Furthermore, the air guiding structure 100 can further include a first driving motor and a second driving motor. The first driving motor and the second driving motor are arranged on the housing 5. The first driving motor is used to drive the first air deflector 1 to rotate, and the second driving motor is used to drive the second air deflector 2 to rotate. For example, the output shaft of the first driving motor can be connected to the first rotating shaft 12 on the first air deflector 1. The first driving motor drives the first rotating shaft 12 to rotate through its output shaft, thereby driving the first air deflector 1 to rotate by a certain angle. Similarly, the output shaft of the second driving motor can be connected to the second rotating shaft 22 on the second air deflector 2 to drive the second air deflector 2 to rotate. The structural design is reasonable. The first driving motor and the second driving motor can provide power, thus ensuring the performance of the air guiding structure 100 and realizing different air supply states of the air conditioner 200.
[0107] According to the air conditioner 200 of the embodiment of the present utility model, by providing the rotatable first air deflector 1 and the second air deflector 2 at the air outlet 52 to open or close the air outlet 52, it is possible to close the air outlet 52 and guide the air flow to blow out from the air outlet 52 at different angles, realizing different air outlet effects of the air conditioner 200 and different air supply states of the air conditioner 200, so as to meet the diverse needs of users, and further improve the comfort and experience of users. At the same time, when the air guiding structure 100 closes the air outlet 52, the first air deflector 1 and the second air deflector 2 are arranged in the width direction of the air outlet 52 and partially overlap, thereby realizing a dust-proof effect. Without affecting the closing of the air outlet 52, the widths of the first air deflector 1 and the second air deflector 2 can be increased, so that a better air guiding effect can be generated when the air conditioner 200 supplies air, which is also beneficial to increasing the air supply distance, thereby promoting the circulation of indoor air flow, and further improving the air supply effect of the air conditioner 200 and enhancing the user experience.
[0108] Other components of the air conditioner 200 according to the embodiment of the present utility model, such as the heat exchanger 6 and the cross-flow fan 7, etc., are known to those of ordinary skill in the art and will not be described in detail here.
[0109] 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 expressions 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.
[0110] 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 purposes of the present utility model, and the scope of the present utility model is defined by the claims and their equivalents.
Claims
1. A wind guide structure, characterized in that: For an air conditioner, the air conditioner comprises a housing, the housing has an air outlet duct and an air outlet connected to the air outlet duct, and the air guide structure comprises: A first air guide plate and a second air guide plate, wherein the first air guide plate and the second air guide plate are both rotatably disposed at the air outlet to open or close the air outlet, When the air outlet is closed, the first air guide plate and the second air guide plate are arranged in a width direction of the air outlet and are partially stacked.
2. The wind guide structure according to claim 1, characterized in that: When the air outlet is closed, in the stacking area of the first air guide plate and the second air guide plate, the first air guide plate is located outside the second air guide plate, The inner surface of the first air guide plate at one end close to the second air guide plate has a first groove, the first groove extends from one end of the first air guide plate in the length direction to the other end and is open at one end close to the second air guide plate. The outer surface of the second air guide plate at one end close to the first air guide plate has a second groove, the second groove extends from one end of the second air guide plate in the length direction to the other end and is open at one end close to the first air guide plate. One end of the second air guide plate close to the first air guide plate is located in the first groove, and one end of the first air guide plate close to the second air guide plate is located in the second groove.
3. The wind guide structure according to claim 2, characterized in that: When the air outlet is closed, The outer surfaces of the first air guide plate and the second air guide plate are flush; And / or, the inner surface of the first air guide plate is flush with the inner surface of the second air guide plate.
4. The wind guide structure according to claim 1, characterized in that: At least one of the first air guide plate and the second air guide plate has a plurality of spaced-apart micro holes.
5. The wind guide structure according to claim 4, characterized in that: The air conditioner has a windless state, in which one end of the first air guide plate and the second air guide plate stacked on each other is located outside the air outlet and abuts against each other.
6. The wind guide structure according to claim 1, characterized in that: The wind guide structure also includes: The first louver is rotatably disposed in the air outlet duct, and along the air flow direction, the first louver is located upstream of the first air guide plate and the second air guide plate, and the rotation axis of the first louver is perpendicular to the rotation axis of the first air guide plate and the second air guide plate.
7. The wind guide structure according to claim 6, characterized in that: When the air outlet is closed, the first louver is spaced apart from the first air guide plate and the second air guide plate.
8. The wind guide structure according to claim 6, characterized in that: When the air outlet is closed, the air outlet end of the first louver extends to the first air guide plate and the second air guide plate, and the air outlet end of the first louver has a first notch and a second notch for avoiding the first air guide plate and the second air guide plate respectively, and the first notch and the second notch are spaced apart in the width direction of the air outlet duct.
9. The wind guide structure according to claim 6, characterized in that: Two sides of the first louver along the width direction of the air outlet duct are respectively the same in shape as two inner walls along the width direction of the air outlet duct.
10. The wind guide structure according to claim 6, characterized in that: The wind guide structure also includes: The second louver is rotatably provided on at least one of the inner surfaces of the first air guide plate and the second air guide plate, and the rotation axis of the second louver is perpendicular to the rotation axis of the first air guide plate.
11. The wind guide structure according to claim 10, characterized in that: Along the length direction of the air outlet, the first louver and the second louver are arranged at intervals and staggered; and / or, the first louver is a plurality of louvers spaced apart along the length direction of the air outlet; and / or, the second louvers are a plurality of louvers spaced apart along the length direction of the air outlet; And / or, when the second louvers are provided on both the first air guide plate and the second air guide plate, the second louvers on the first air guide plate and the second louvers on the second air guide plate are staggered and spaced apart along the length direction of the air outlet.
12. The wind guide structure according to claim 10, characterized in that: When the air outlet is opened, the second louver is located on a side where the first air guide plate and the second air guide plate face each other.
13. An air conditioner, characterized in that: It comprises a wind guiding structure according to any one of claims 1-12.