Vertical air conditioner and fresh air outlet butt joint structure thereof

By designing the docking structure of the fresh air outlet, the docking ring and docking port are used to achieve efficient docking of the air duct and the fresh air outlet of the air outlet of the air outlet of the vertical air conditioner is solved, and the assembly efficiency and sealing are improved.

CN223063949UActive Publication Date: 2025-07-04XIAOMI TECH (WUHAN) CO LTD +2
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Patent Information

Application Number
CN202422138931.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-07-04
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

In the fresh air system of vertical air conditioners, the docking and assembly efficiency of the air duct and the fresh air outlet of the air outlet of the air outlet is low, which makes assembly difficult.

Method used

A fresh air outlet docking structure is designed, including the plate body, the docking ring and the docking port. Through the coordination of the docking ring and the docking port, the direct docking between the fresh air outlet of the air duct and the new air outlet of the air outlet of the air outlet of the air module is realized to ensure efficient docking.

Benefits of technology

It reduces the assembly difficulty of air ducts, improves assembly efficiency, and improves the sealing and assembly accuracy of the fresh air outlet docking structure.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a vertical air conditioner and a fresh air outlet butt joint structure thereof. The fresh air outlet butt joint structure comprises a plate body, the plate body is provided with a fresh air opening penetrating through the thickness direction of the plate body, and the plate body is provided with a first surface and a second surface which are opposite in the thickness direction of the plate body; the butt joint ring is arranged on the first surface, and the butt joint ring is arranged around the fresh air opening; and the butt joint port is arranged at the air outlet end of the air pipe, and the butt joint port is in butt joint with the butt joint ring. By means of the fresh air outlet butt joint structure, the fresh air opening of the fresh air outlet butt joint structure can be in butt joint with the butt joint end opening more conveniently and more easily, so that the assembling difficulty of an air pipe is reduced, and the assembling efficiency of the air pipe is improved.
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Description

Technical Field

[0001] The utility model relates to the field of household appliances, and particularly to a floor-standing air conditioner and a fresh air outlet docking structure thereof. Background Art

[0002] The floor-standing air conditioner has stronger refrigeration and heating capabilities than the wall-mounted air conditioner, and the floor-standing air conditioner is usually placed in a larger space (such as a living room). With the continuous improvement of user requirements, the floor-standing air conditioner in the related art also has the function of outputting fresh air. Moreover, the floor-standing air conditioner in the related art has an independent fresh air outlet so that when outputting fresh air, it is not necessary to make the refrigeration system work. The fresh air system of the floor-standing air conditioner includes an air outlet module and an air duct. The fresh air outlet of the air duct is communicated with the fresh air inlet of the air outlet module. In order to ensure the assembly efficiency between the air duct and the air outlet module, the fresh air outlet of the air duct and the fresh air inlet of the air outlet module need to ensure efficient docking. Summary of the Utility Model

[0003] The utility model aims to solve at least one of the technical problems in the related art to some extent. For this purpose, the utility model provides a floor-standing air conditioner and a fresh air outlet docking structure thereof.

[0004] The fresh air outlet docking structure of the utility model includes: a plate body, the plate body has a fresh air inlet penetrating through its thickness direction, and the plate body has a first surface and a second surface opposite to each other in its thickness direction; a docking ring, the docking ring is arranged on the first surface, and the docking ring surrounds the fresh air inlet; and a docking port, the docking port is arranged at the air outlet end of the air duct, and the docking port is docked with the docking ring.

[0005] By using the fresh air outlet docking structure of the utility model, the direct docking of the docking ring and the docking port can complete the docking between the fresh air outlet of the air duct and the fresh air inlet of the fresh air outlet docking structure (air outlet module), thereby ensuring the efficient docking between the fresh air outlet of the air duct and the fresh air inlet of the fresh air outlet docking structure (air outlet module), and ensuring the assembly efficiency between the air duct and the fresh air outlet docking structure (air outlet module).

[0006] Optionally, one end of the docking ring away from the first surface has a ring surface, the ring surface is inclined, the ring surface gradually approaches the first surface along the direction close to the docking port, and the end surface of the docking port is inclined and fits with the ring surface.

[0007] Optionally, a sealing member is arranged between the end surface of the docking port and the first ring surface.

[0008] Optionally, the fresh air outlet docking structure further includes a stop portion disposed on the first surface. The stop portion is located on a side of the docking ring away from the docking port. The docking port is provided with a positioning plate that abuts against the stop portion.

[0009] Optionally, the stop portion is arc-shaped, the positioning plate is arc-shaped, and the shape of the positioning plate is adapted to the shape of the stop portion.

[0010] Optionally, the positioning plate is inclined and gradually moves away from the plate body along a direction away from the docking port.

[0011] Optionally, the fresh air outlet docking structure further includes a plurality of connecting bars, and the plurality of connecting bars are spaced apart in one of the length direction and the width direction of the fresh air outlet and are provided in the fresh air outlet.

[0012] Optionally, the fresh air outlet docking structure further includes a reinforcing rib, and the reinforcing rib is connected between the plate body and the docking ring.

[0013] Optionally, the fresh air outlet of the docking port is open downward and forward, the docking port extends downward and forward, and the fresh air inlet penetrates the plate body in the up and down direction.

[0014] The floor-standing air conditioner of the present invention includes an air duct and the fresh air outlet docking structure of the present invention, and the docking port of the fresh air outlet docking structure is arranged at the air outlet end of the air duct.

[0015] The floor-standing air conditioner of the present invention has the advantages of low difficulty in air duct assembly and high air duct assembly efficiency. Description of the Drawings

[0016] Figure 1 is a schematic structural diagram of a floor-standing air conditioner according to an embodiment of the present invention;

[0017] Figure 2 is a schematic partial structural diagram of a floor-standing air conditioner according to an embodiment of the present invention;

[0018] Figure 3 is a schematic partial structural diagram of a fresh air outlet docking structure according to an embodiment of the present invention;

[0019] Figure 4 is a schematic partial structural diagram of a fresh air outlet docking structure according to an embodiment of the present invention;

[0020] Figure 5 is a schematic structural diagram of an air duct of a floor-standing air conditioner according to an embodiment of the present invention;

[0021] Figure 6 is Figure 5 an enlarged view of area A in Specific embodiments

[0022] Embodiments of the present utility model will be described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to explain the present utility model, and should not be construed as a limitation of the present utility model.

[0023] Reference will now be made to the accompanying drawings to describe the fresh air outlet docking structure 100 according to an embodiment of the present utility model. As Figure 3 and Figure 4 shown, the fresh air outlet docking structure 100 according to an embodiment of the present utility model includes a plate body 1, a docking ring 2, and a docking port 240.

[0024] The plate body 1 has a fresh air outlet 11 penetrating in its thickness direction. The plate body 1 has a first surface 12 and a second surface 13 opposite to each other in its thickness direction. The docking ring 2 is provided on the first surface 12, and the docking ring 2 is disposed around the fresh air outlet 11. The docking port 240 is provided at the air outlet end 210 of the air duct 200, and the docking port 240 is docked with the docking ring 2 so that the fresh air outlet 220 of the docking port 240 communicates with the fresh air outlet 11 of the fresh air outlet docking structure 100.

[0025] By providing the docking ring 2 on the first surface 12, the fresh air outlet docking structure 100 according to an embodiment of the present utility model can more conveniently and easily dock the fresh air outlet 11 with the docking port 240 provided at the air outlet end 210 of the air duct 200, so as to reduce the assembly difficulty of the air duct 200 and improve the assembly efficiency of the air duct 200.

[0026] That is to say, by using the fresh air outlet docking structure 100 of the present utility model, the docking between the fresh air outlet of the air duct 200 and the fresh air outlet 11 of the fresh air outlet docking structure 100 (air outlet module) can be completed directly through the docking of the docking ring 2 and the docking port 240, thereby ensuring the efficient docking between the fresh air outlet of the air duct 200 and the fresh air outlet 11 of the fresh air outlet docking structure 100 (air outlet module), and ensuring the assembly efficiency between the air duct 200 and the air outlet module.

[0027] As Figures 1-6 shown, the vertical air conditioner 1000 according to an embodiment of the present utility model includes an air duct 200 and a fresh air outlet docking structure 100. The fresh air outlet docking structure 100 includes a plate body 1, a docking ring 2, and a docking port 240. The docking port 240 is provided at the air outlet end 210 of the air duct 200. Optionally, the docking port 240 and the air outlet end 210 are integrally formed.

[0028] The plate body 1 has a first surface 12, a second surface 13, and a fresh air inlet 11. The first surface 12 and the second surface 13 are oppositely arranged in the thickness direction of the plate body 1, and the fresh air inlet 11 penetrates the plate body 1 in the thickness direction of the plate body 1.

[0029] Optionally, the first surface 12 can be the upper surface of the plate body 1, and the second surface 13 can be the lower surface of the plate body 1. The fresh air inlet 11 can penetrate the plate body 1 in the up and down direction. The fresh air inlet 11 can extend in the vertical direction, that is, the extension direction of the fresh air inlet 11 is consistent with the vertical direction. In addition, the extension direction of the fresh air inlet 11 and the vertical direction can also form a certain angle, and the angle between the extension direction of the fresh air inlet 11 and the vertical direction is greater than 0 degree and less than or equal to a preset angle. The up and down direction is as Figure 3 shown by the arrow B in Figure 3 , and the front and back direction is as

[0030] shown in Figure 3 and Figure 4 . As shown in

[0031] , the plate body 1 includes a horizontal portion 14. The thickness direction of the horizontal portion 14 is consistent with the vertical direction, and the fresh air inlet 11 penetrates the horizontal portion 14 in the thickness direction of the horizontal portion 14.

[0031] The docking ring 2 is provided on the first surface 12 and is arranged around the fresh air inlet 11. Optionally, the docking ring 2 is vertically provided on the first surface 12. The docking port 240 has a fresh air outlet 220, and the docking port 240 cooperates with the docking ring 2 so that the fresh air outlet 220 communicates with the fresh air inlet 11 of the docking ring 2. Optionally, the end face 230 of the docking port 240 contacts the first ring face 21 of the docking ring 2 to improve the sealing performance of the fresh air outlet docking structure 100.

[0032] As shown in Figure 3 , Figure 5 and Figure 6 , the fresh air outlet 220 of the docking port 240 is open downward and forward, and the docking port 240 extends downward and forward. Forward means the direction towards the front panel of the vertical air conditioner 1000, that is, forward means the direction towards the user. This can not only make the docking port 240 more convenient and easier to dock with the docking ring 2, so as to further reduce the assembly difficulty of the air duct 200 and improve the assembly efficiency of the air duct 200, but also make the fresh air in the air duct 200 more smoothly enter the fresh air inlet 11 through the fresh air outlet 220.

[0033] Optionally, one end of the docking ring 2 away from the first surface 12 has a toroidal surface. The toroidal surface of the docking ring 2 is inclined. The toroidal surface of the docking ring 2 gradually approaches the first surface 12 along the direction close to the docking port 240. The end face 230 of the docking port 240 is inclined and fits with the toroidal surface of the docking ring 2. Thus, when assembling the air duct 200 along the direction from back to front, the toroidal surface of the docking ring 2 can be used to guide the docking port 240, so that the docking port 240 can be more conveniently and easily docked with the docking ring 2, thereby further reducing the assembly difficulty of the air duct 200 and improving the assembly efficiency of the air duct 200.

[0034] As Figure 3 and Figure 4 shown, the docking ring 2 has a first toroidal surface 21 and a second toroidal surface that are opposite in the thickness direction of the plate body 1. The second toroidal surface is provided on the first surface 12. Optionally, the second toroidal surface can be the lower surface of the docking ring 2, and the first toroidal surface 21 can be the upper surface of the docking ring 2.

[0035] The first toroidal surface 21 is inclined along the direction from back to front away from the first surface 12. Optionally, the first toroidal surface 21 is inclined upward along the direction from back to front. Thus, when assembling the air duct 200 along the direction from back to front, the first toroidal surface 21 inclined forward and upward can be used to guide the docking port 240, so that the docking port 240 can be more conveniently and easily docked with the docking ring 2, thereby further reducing the assembly difficulty of the air duct 200 and improving the assembly efficiency of the air duct 200.

[0036] Optionally, the end face 230 of the docking port 240 is inclined along the direction from back to front away from the first surface 12 of the plate body 1. Thus, when assembling the air duct 200 along the direction from back to front, the first toroidal surface 21 can cooperate with the end face 230 of the docking port 240 to better guide the docking port 240, so that the docking port 240 can be more conveniently and easily docked with the docking ring 2, thereby further reducing the assembly difficulty of the air duct 200 and improving the assembly efficiency of the air duct 200.

[0037] A seal is provided between the end face 230 of the docking port 240 and the first toroidal surface 21. This can further improve the sealing performance of the fresh air outlet docking structure 100, so that not only the air volume of the fresh air can be ensured, but also the condensation and dripping caused by the leakage of the fresh air can be avoided.

[0038] As Figure 3 and Figure 4As shown, the first toroidal surface 21 includes a first end face 211, a second end face 212, a third end face 213, and a fourth end face 214. The fresh air inlet 11 (fresh air outlet 220) is located between the first end face 211 and the second end face 212 in its width direction, that is, the first end face 211 and the second end face 212 are oppositely arranged in the width direction of the fresh air inlet 11 (fresh air outlet 220). For example, the width direction of the fresh air inlet 11 (fresh air outlet 220) is consistent with the front-rear direction.

[0039] The fresh air inlet 11 (fresh air outlet 220) is located between the third end face 213 and the fourth end face 214 in its length direction, that is, the third end face 213 and the fourth end face 214 are oppositely arranged in the length direction of the fresh air inlet 11 (fresh air outlet 220). The first end face 211, the third end face 213, the second end face 212, and the fourth end face 214 are connected end to end in sequence. Each of the first end face 211, the third end face 213, the second end face 212, and the fourth end face 214 is inclined in a direction away from the first surface 12 along the direction from the rear to the front. This can make the structure of the docking ring 2 more reasonable.

[0040] Correspondingly, the end face 230 of the docking port 240 includes a ninth end face 231, a tenth end face 232, an eleventh end face 233, and a twelfth end face 234. The fresh air inlet 11 (fresh air outlet 220) is located between the ninth end face 231 and the tenth end face 232 in its width direction, and the fresh air inlet 11 (fresh air outlet 220) is located between the eleventh end face 233 and the twelfth end face 234 in its length direction. The ninth end face 231, the eleventh end face 233, the tenth end face 232, and the twelfth end face 234 are connected end to end in sequence. Each of the ninth end face 231, the eleventh end face 233, the tenth end face 232, and the twelfth end face 234 is inclined in a direction away from the first surface 12 along the direction from the rear to the front. The ninth end face 231 abuts against the first end face 211, the tenth end face 232 abuts against the second end face 212, the eleventh end face 233 abuts against the third end face 213, and the twelfth end face 234 abuts against the fourth end face 214.

[0041] Optionally, the inclination angle of the first toroidal surface 21 is greater than or equal to 20 degrees and less than or equal to 40 degrees, and the inclination angle of the end face 230 of the docking port 240 is greater than or equal to 20 degrees and less than or equal to 40 degrees. This can make the docking port 240 more conveniently and easily dock with the docking ring 2, thereby further reducing the assembly difficulty of the air duct 200 and improving the assembly efficiency of the air duct 200. The inclination angle of the first toroidal surface 21 (end face 230 of the docking port 240) refers to the included angle between the first toroidal surface 21 (end face 230 of the docking port 240) and the horizontal plane.

[0042] Such as Figure 3 and Figure 4As shown, the docking ring 2 includes a first protrusion 22, a second protrusion 23, a third protrusion 24, and a fourth protrusion 25. The fresh air inlet 11 (fresh air outlet 220) is located between the first protrusion 22 and the second protrusion 23 in its width direction. The first protrusion 22 has a first end face 211 and a fifth end face opposite to each other in the thickness direction of the plate body 1. The second protrusion 23 has a second end face 212 and a sixth end face opposite to each other in the thickness direction of the plate body 1. The fifth end face and the sixth end face are provided on the first surface 12.

[0043] The fresh air inlet 11 (fresh air outlet 220) is located between the third protrusion 24 and the fourth protrusion 25 in its length direction. The third protrusion 24 has a third end face 213 and a seventh end face opposite to each other in the thickness direction of the plate body 1. The fourth protrusion 25 has a fourth end face 214 and an eighth end face opposite to each other in the thickness direction of the plate body 1. The seventh end face and the eighth end face are provided on the first surface 12. This can make the structure of the docking ring 2 more reasonable.

[0044] For example, the lower end face of each of the first protrusion 22, the second protrusion 23, the third protrusion 24, and the fourth protrusion 25 is connected to the first surface 12. The upper end face of the first protrusion 22 constitutes the first end face 211. The upper end face of the second protrusion 23 constitutes the second end face 212. The upper end face of the third protrusion 24 constitutes the third end face 213. The upper end face of the fourth protrusion 25 constitutes the fourth end face 214.

[0045] As Figure 3 and Figure 4 shown, the first protrusion 22 is located in front of the second protrusion 23. The dimension of the first protrusion 22 in the thickness direction of the plate body 1 is larger than the dimension of the second protrusion 23 in the thickness direction of the plate body 1. The dimension of each of the third protrusion 24 and the fourth protrusion 25 in the thickness direction of the plate body 1 gradually increases along the direction from back to front. Thus, when assembling the air duct 200 along the direction from back to front, the docking ring 2 can better guide the docking port 240, so that the docking port 240 can be more conveniently and easily docked with the docking ring 2, in order to further reduce the assembly difficulty of the air duct 200 and improve the assembly efficiency of the air duct 200.

[0046] As Figures 2-6 shown, the fresh air outlet docking structure 100 further includes a stop portion 3. The stop portion 3 is provided on the first surface 12. The stop portion 3 is located on the side of the docking ring 2 away from the docking port 240. The docking port 240 is provided with a positioning plate 300. The positioning plate 300 abuts against the stop portion 3. By providing the mutually cooperating stop portion 3 and the positioning plate 300, not only can the assembly difficulty of the air duct 200 be further reduced and the assembly efficiency of the air duct 200 be improved, but also the assembly accuracy of the air duct 200 can be improved.

[0047] Optionally, the stopper 3 is located in front of the docking ring 2, and at least a part of the positioning plate 300 is located in front of the docking port 240.

[0048] Optionally, both the docking ring 2 and the stopper 3 are provided on the horizontal portion 14 of the plate body 1. The plate body 1, the docking ring 2, and the stopper 3 can be integrally formed to improve the structural strength of the fresh air outlet docking structure 100, and reduce the manufacturing difficulty and cost of the fresh air outlet docking structure 100. The positioning plate 300 is provided on the front surface of the docking port 240 to better utilize the positioning plate 300 to position the docking port 240 (air duct 200). The docking port 240 and the positioning plate 300 can be integrally formed.

[0049] As Figure 2 and Figures 4-6 shown, the positioning plate 300 is arc-shaped to make the shape of the positioning plate 300 match the shape of the docking port 240. The stopper 3 is arc-shaped, and the shape of the stopper 3 matches the shape of the positioning plate 300. Thus, the stopper 3 and the positioning plate 300 can be better utilized to position the docking port 240 (air duct 200), thereby further reducing the assembly difficulty of the air duct 200, improving the assembly efficiency of the air duct 200, and further improving the assembly accuracy of the air duct 200.

[0050] Optionally, the positioning plate 300 is inclined, and the positioning plate 300 gradually moves away from the plate body 1 along the direction away from the docking port 240. Thus, when assembling the air duct 200 along the direction from back to front, interference between the positioning plate 300 and the docking ring 2 can be effectively avoided, so that the docking port 240 can be more conveniently and easily docked with the docking ring 2.

[0051] Optionally, the positioning plate 300 is inclined along the direction from back to front away from the first surface 12 of the plate body 1. For example, the positioning plate 300 is inclined upward along the direction from back to front.

[0052] As Figures 2-4 shown, the dimension of the stopper 3 in the thickness direction of the plate body 1 is greater than the dimension of the first protrusion 22 in the thickness direction of the plate body 1. Thus, it can be better ensured that the stopper 3 cooperates with the positioning plate 300, so that the stopper 3 and the positioning plate 300 can be better utilized to position the docking port 240 (air duct 200), in order to further reduce the assembly difficulty of the air duct 200, improve the assembly efficiency of the air duct 200, and further improve the assembly accuracy of the air duct 200. For example, the height of the stopper 3 is greater than the height of the first protrusion 22.

[0053] As Figure 2 and Figure 3As shown, the fresh air outlet docking structure 100 further includes an air guiding plate 400. The upper end portion 410 of the air guiding plate 400 is engaged with the plate body 1, and the upper end portion 410 of the air guiding plate 400 is located behind the fresh air outlet 11. The air guiding plate 400 is arranged to be inclined downward along the direction from back to front. An air outlet channel 500 is defined between the air guiding plate 400 and the plate body 1, and the front end of the air outlet channel 500 is open to form an air outlet 510. Thus, the fresh air in the air duct 200 sequentially enters the air outlet channel 500 through the fresh air outlet 220 and the fresh air outlet 11, and then enters the external environment through the air outlet channel 500.

[0054] As Figure 4 shown, the fresh air outlet docking structure 100 further includes a plurality of connecting bars 4. The plurality of connecting bars 4 are spaced apart in one of the length direction and the width direction of the fresh air outlet 11 and are arranged in the fresh air outlet 11. By arranging the plurality of connecting bars 4 in the fresh air outlet 11, not only can the structural strength of the fresh air outlet 11 be improved and the deformation of the fresh air outlet 11 be avoided, but also a grille can be formed by the plurality of connecting bars 4.

[0055] Optionally, the fresh air outlet 11 has a first wall surface and a second wall surface opposite to each other in the one of its length direction and width direction. One end of each connecting bar 4 is connected to the first wall surface and the other end is connected to the second wall surface.

[0056] As Figure 4 shown, the fresh air outlet docking structure 100 further includes a reinforcing rib 5. The reinforcing rib 5 is connected between the plate body 1 and the docking ring 2. Thereby, the structural strength of the docking ring 2 can be improved and the deformation of the docking ring 2 can be prevented. Optionally, the lower surface of the reinforcing rib 5 is connected to the first surface 12 of the plate body 1, and the side surface of the reinforcing rib 5 is connected to the outer side surface of the docking ring 2.

[0057] Optionally, there are a plurality of reinforcing ribs 5. The plurality of reinforcing ribs 5 are spaced apart in one of the length direction and the width direction of the fresh air outlet 11 so as to further improve the structural strength of the docking ring 2.

[0058] As Figure 4 shown, the end face 51 of the reinforcing rib 5 away from the first surface 12 is inclined and gradually approaches the first surface 12 along the direction close to the docking port 240. Thus, when assembling the air duct 200 along the direction from back to front, the end face 51 of the reinforcing rib 5 can be used to guide the docking port 240, so that the docking port 240 can be more conveniently and easily docked with the docking ring 2, thereby further reducing the assembly difficulty of the air duct 200 and improving the assembly efficiency of the air duct 200.

[0059] 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. It 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. Therefore, it should not be construed as a limitation to the present utility model.

[0060] In addition, the terms "first" and "second" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of such features. In the description of the present utility model, the meaning of "a plurality of" is at least two, such as two, three, etc., unless otherwise specifically and clearly defined.

[0061] In the present utility model, unless otherwise clearly specified and defined, the terms such as "mounted", "connected", "connected to", "fixed" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or integrated; it may be a mechanical connection, an electrical connection or communicable with each other; it may be directly connected, or indirectly connected through an intermediate medium, and it may be the communication inside two elements or the interaction relationship between two elements, unless otherwise clearly defined. 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 circumstances.

[0062] In the present utility model, unless otherwise clearly specified and defined, the first feature being "on" or "under" the second feature may be that the first and second features are in direct contact, or the first and second features are indirectly in contact through an intermediate medium. Moreover, the first feature being "above", "over" and "on top of" the second feature may be that the first feature is directly above or obliquely above the second feature, or merely indicates that the first feature has a higher horizontal height than the second feature. The first feature being "under", "beneath" and "underneath" the second feature may be that the first feature is directly below or obliquely below the second feature, or merely indicates that the first feature has a lower horizontal height than the second feature.

[0063] In the present utility model, terms such as "one embodiment", "some embodiments", "examples", "specific examples", or "some examples" etc. mean that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present utility model. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.

[0064] Although the embodiments of the present utility model have been shown and described above, it can be understood that the above embodiments are exemplary and should not be construed as limiting the present utility model. Those of ordinary skill in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of the present utility model.

Claims

1. A fresh air outlet docking structure, characterized in that, Comprising: A plate body, the plate body having a fresh air inlet penetrating through its thickness direction, the plate body having a first surface and a second surface opposite to each other in its thickness direction; A docking ring, the docking ring being provided on the first surface, the docking ring surrounding the fresh air inlet; And A docking port, the docking port being provided at the air outlet end of the air duct, the docking port and the docking ring being docked.

2. The fresh air outlet docking structure according to claim 1, characterized in that One end of the docking ring away from the first surface has a ring surface, the ring surface being inclined, the ring surface gradually approaching the first surface along the direction close to the docking port, and the end surface of the docking port being inclined and fitting with the ring surface.

3. The fresh air outlet docking structure according to claim 2, wherein A sealing member is provided between the end surface of the docking port and the first ring surface.

4. The fresh air outlet docking structure according to claim 1, wherein It further includes a stop portion, the stop portion being provided on the first surface, the stop portion being located on the side of the docking ring away from the docking port, the docking port being provided with a positioning plate, and the positioning plate abutting against the stop portion.

5. The fresh air outlet docking structure according to claim 4, characterized in that The stop portion is arc-shaped, the positioning plate is arc-shaped, and the shape of the positioning plate is adapted to the shape of the stop portion.

6. The fresh air outlet docking structure according to claim 4, characterized in that, The positioning plate is inclined and gradually moves away from the plate body along the direction away from the docking port.

7. The fresh air outlet docking structure according to claim 1, characterized in that, It further includes a plurality of connecting bars, and the plurality of connecting bars are spaced apart in the length direction or the width direction of the fresh air inlet and are provided in the fresh air inlet.

8. The fresh air outlet docking structure according to claim 1, characterized in that, It further includes a reinforcing rib, and the reinforcing rib is connected between the plate body and the docking ring.

9. The fresh air outlet docking structure according to claim 1, characterized in that, The fresh air outlet of the docking port faces downward and forward to be open, the docking port extends downward and forward, and the fresh air inlet penetrates through the plate body in the up and down direction.

10. A vertical air conditioner, characterized in that, Comprising an air duct and a fresh air outlet docking structure according to any one of claims 1-9, the docking port of the fresh air outlet docking structure being provided at the air outlet end of the air duct.