Air outlet assembly and air conditioner
By designing the air outlet passage directly formed on the middle frame and the eagle beak structure rotatably connected to it in the air conditioner, the problem of limited air outlet effect of the existing air conditioner is solved, and better air outlet effect and simpler assembly process are achieved.
Patent Information
- Application Number
- CN202421844231.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-31
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-07-31
AI Technical Summary
The air outlet effect of existing air conditioners is affected by the structure of the air outlet frame and the connecting air guide plate, resulting in poor air outlet effect.
A air outlet assembly is designed, in which the air outlet passage is directly formed on the middle frame, the setting of the air outlet frame is cancelled, and the rotational connection between the eagle beak structure and the first air guide plate is realized to realize the external arrangement of the part of the air outlet passage to reduce wind resistance.
By canceling the air outlet frame and connection structure, air resistance is reduced, air outlet effect is improved, and assembly difficulty and part cost are reduced.
Smart Images

Figure CN222993019U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of air conditioners, and more specifically, to an air outlet assembly and an air conditioner. Background Art
[0002] In the prior art, an air conditioner can adjust the angle of a wind deflector by controlling its rotation, so as to adjust the air outlet direction, air volume and air velocity. Generally, the wind deflector is usually connected to the air outlet frame, so a structure for connecting the wind deflector needs to be provided on the air outlet frame. The air outlet frame is also arranged inside the middle frame, and the air outlet frame and this connection structure will affect the air outlet condition at the air outlet, thus affecting the air outlet effect. Summary of the Utility Model
[0003] The problem solved by the utility model is how to improve the technical problem that the air outlet effect in the prior art is affected by the air outlet frame and the structure connecting the air deflector.
[0004] To solve the above problems, the utility model provides an air outlet assembly, including:
[0005] A middle frame, provided with an air outlet channel, and the air outlet channel has an air outlet;
[0006] An eagle beak structure, arranged on the middle frame and located inside the air outlet channel;
[0007] A first air deflector, rotatably connected to the middle frame and arranged inside the air outlet channel, and the first air deflector is rotatably matched with the eagle beak structure.
[0008] The beneficial effects of the air outlet assembly provided by the utility model compared with the prior art include:
[0009] In this air outlet assembly, the air outlet channel is directly formed on the middle frame, and the eagle beak structure for installing the first air deflector is directly arranged on the middle frame. On the one hand, the setting of the air outlet frame can be omitted, thus reducing the influence of the air outlet frame on the air outlet; on the other hand, when the first air deflector rotatably connected to the eagle beak structure opens the air outlet, part of the air outlet channel can be externalized, thereby reducing the wind resistance and further achieving the purpose of improving the air outlet effect. Based on this, the air outlet assembly can improve the technical problem that the air outlet effect in the prior art is affected by the air outlet frame and the structure connecting the air deflector.
[0010] Furthermore, due to the omission of the air outlet frame, the assembly of parts is reduced during the assembly of the air outlet assembly, thereby reducing the assembly difficulty and improving the assembly efficiency; at the same time, the part cost is also reduced.
[0011] Optionally, the eagle beak structure is arranged at the air outlet, and the first air deflector is arranged at the air outlet.
[0012] The eagle beak structure is arranged at the air outlet, and the first air guide plate is arranged at the air outlet accordingly, so that the first air guide plate can be conveniently rotated to the outside, and part of the air outlet channel is externally arranged, thereby achieving the purpose of improving the air outlet effect.
[0013] Optionally, an extension direction of the eagle beak structure is arranged at an acute angle to an air outlet direction of the air outlet channel.
[0014] When the extension direction of the eagle's beak structure is set at an acute angle to the air outlet direction of the air outlet channel, it is not only convenient to set the first air guide plate, so that the first air guide plate has a larger rotation range; on the other hand, it can also reduce the impact of the eagle's beak structure on the air outlet of the air outlet channel, thereby achieving the purpose of improving the air outlet effect.
[0015] Optionally, the angle formed by the extension direction of the eagle's beak structure and the air outlet direction of the air outlet channel ranges from 45° to 75°.
[0016] When the angle formed by the extension direction of the hawk's beak structure and the air outlet direction of the air outlet channel is within the above range, the first air guide plate can be more optimally rotated in a large range and the requirement that the hawk's beak structure has less influence on the air outlet can be met.
[0017] Optionally, the eagle beak structure is arranged in the middle position of the air outlet in the transverse direction.
[0018] Thereby, the middle part of the first air guide plate is connected to the eagle beak structure, which can improve the stability of the installation and operation of the first air guide plate.
[0019] Optionally, the eagle beak structure is integrally formed with the middle frame.
[0020] This method can facilitate the setting of the hawk beak structure, save the steps of assembling the hawk beak structure, and reduce the difficulty of manufacturing and assembling the air conditioner. At the same time, the strength of the hawk beak structure can be improved, thereby ensuring the stable operation of the first air guide plate.
[0021] Optionally, the eagle beak structure includes an extension portion and a rotating connection portion, one end of the extension portion is connected to the middle frame, and the extension portion extends toward the inside of the air outlet channel, and the rotating connection portion is arranged at the other end of the extension portion; the rotating connection portion is provided with a mounting hole adapted to the first air guide plate.
[0022] Optionally, the air outlet assembly further includes a second air guide plate, which is connected to the middle frame and disposed at the air outlet; the rotation center axis of the first air guide plate is parallel to the rotation center axis of the second air guide plate.
[0023] Optionally, the air outlet has an upper air outlet area and a lower air outlet area. The first air deflector is correspondingly arranged in the upper air outlet area, and the second air deflector is correspondingly arranged in the lower air outlet area.
[0024] When the first air deflector and the second air deflector are both provided, the opening and closing of the air outlet can be controlled by the two air deflectors. Thus, the air outlet component can be applied to more scenarios to meet the diverse air outlet needs of users.
[0025] An air conditioner includes the above-mentioned air outlet component.
[0026] The air conditioner provided by the present utility model adopts the above-mentioned air outlet component. The beneficial effects of this air conditioner compared with the prior art are the same as those of the above-provided air outlet component compared with the prior art, and will not be elaborated here. Description of the Drawings
[0027] Figure 1 is an exploded structural schematic diagram of the air outlet component provided in the embodiment of the present application;
[0028] Figure 2 is a structural schematic diagram of the air outlet component provided in the embodiment of the present application;
[0029] Figure 3 is Figure 1 an enlarged structural schematic diagram at B in
[0030] Figure 4 is one of the structural schematic diagrams of the air conditioner provided in the embodiment of the present application;
[0031] Figure 5 is another structural schematic diagram of the air conditioner provided in the embodiment of the present application;
[0032] Figure 6 is the third structural schematic diagram of the air conditioner provided in the embodiment of the present application.
[0033] Description of the Reference Numerals:
[0034] 10 - air conditioner; 11 - air outlet component; 100 - middle frame; 110 - air outlet channel; 111 - air outlet; 1111 - upper air outlet area; 1112 - lower air outlet area; 200 - eagle beak structure; 210 - extension part; 211 - reinforcing rib; 220 - rotating connection part; 221 - mounting hole; 300 - first air deflector; 400 - second air deflector. Detailed Embodiments
[0035] To make the above objects, features, and advantages of the present utility model more obvious and understandable, the following detailed description of the specific embodiments of the present utility model will be given with reference to the accompanying drawings.
[0036] Please refer toFigure 3 In the embodiment of the present application, an air conditioner 10 is provided, which can be installed in a designated area and provide air conditioning to the designated area during operation to improve the air quality in the designated area, thereby improving the comfort of users in the designated area. It should be noted that the air conditioner 10 in the present embodiment refers to an indoor air conditioner, that is, the air conditioner 10 can be connected to an outdoor air conditioner, and the outdoor air conditioner and the indoor air conditioner cooperate to achieve air conditioning in the designated area.
[0037] Among them, the air conditioner 10 in this embodiment uses the method of discharging air into the designated area to perform air conditioning on the designated area. In order to meet the user's demand for adjusting the air outlet mode and air outlet direction, the air conditioner 10 has an air outlet component 11 that can adjust the air outlet mode and air outlet direction, and the air outlet component 11 can improve the technical problem in the prior art that the air outlet effect is affected by the structure of the air outlet frame and the connecting air guide plate. Based on this, the air conditioner 10 using the air outlet component 11 can also improve the technical problem in the prior art that the air outlet effect is affected by the structure of the air outlet frame and the connecting air guide plate.
[0038] In this embodiment, please refer to Figure 1 and Figure 2 The air outlet assembly 11 includes a middle frame 100, an eagle beak structure 200 and a first air guide plate 300. An air outlet channel 110 is provided on the middle frame 100, and the air outlet channel 110 has an air outlet 111. After the air conditioner 10 inhales airflow from a designated area and completes processing of the airflow, the airflow is introduced into the air outlet channel 110 and is exported to the designated area from the air outlet 111. The eagle beak structure 200 is provided on the middle frame 100 and is located inside the air outlet channel 110. The first air guide plate 300 is rotatably connected to the middle frame 100 and is provided inside the air outlet channel 110, and the first air guide plate 300 is rotatably matched with the eagle beak structure 200. It is worth noting that in the present embodiment, a first driving device (not shown) for driving the first air guide plate 300 to rotate is further provided on the middle frame 100, and the first driving device is transmission-connected to one end of the first air guide plate 300, while the other end of the first air guide plate 300 is also rotationally connected to the middle frame 100; the eagle beak structure 200 is connected to the middle position of the first air guide plate 300 to provide support for the first air guide plate 300 to ensure the stable operation of the first air guide plate 300; and when the first air guide plate 300 is rotated to a specified angle, the eagle beak structure 200 can also provide support and stability to the first air guide plate 300 to prevent the first air guide plate 300 from twisting and affecting the air outlet.
[0039] As described above, in the air outlet assembly 11, the air outlet channel 110 is directly formed on the middle frame 100, and the eagle beak structure 200 for installing the first air deflector 300 is directly arranged on the middle frame 100. On the one hand, the setting of the air outlet frame can be omitted, thus reducing the influence of the air outlet frame on the air outlet; on the other hand, when the first air deflector 300 rotatably connected to the eagle beak structure 200 opens the air outlet 111, part of the air outlet channel 110 can be made external, thereby reducing the air resistance and further achieving the purpose of improving the air outlet effect. Based on this, the air outlet assembly 11 can solve the technical problem in the prior art that the air outlet effect is affected by the air outlet frame and the structure connecting the air deflectors. Further, since the setting of the air outlet frame is cancelled, the assembly of parts is reduced when assembling the air outlet assembly 11, thereby reducing the assembly difficulty and improving the assembly efficiency; at the same time, the part cost is also reduced.
[0040] Optionally, in this embodiment, the eagle beak structure 200 is arranged at the air outlet 111, and the first air deflector 300 is arranged at the air outlet 111. By arranging the eagle beak structure 200 at the air outlet 111 and correspondingly arranging the first air deflector 300 at the air outlet 111, it is convenient for the first air deflector 300 to rotate to the outside, realizing the situation where part of the air outlet channel 110 is external, thereby achieving the purpose of improving the air outlet effect. In other words, when the first air deflector 300 opens the air outlet channel 110, the first air deflector 300 forms the extended part of the air outlet channel 110. That is to say, the first air deflector 300 participates in guiding the air outlet by the air outlet channel 110, and since part of the structure of the first air deflector 300 rotates to the outside of the middle frame 100, it can be regarded as part of the air outlet channel 110 being external, which can reduce the air resistance of the air outlet and improve the air outlet effect.
[0041] It should be noted that precisely because the eagle beak structure 200 is arranged at the air outlet 111, more parts of the first air deflector 300 can rotate to the outside of the middle frame 100, enabling the extended part of the air outlet channel 110 to be longer, thus effectively achieving the purpose of reducing the air resistance.
[0042] Further, as Figure 2 , in this embodiment, the extending direction of the eagle beak structure 200 is arranged at an acute angle with the air outlet direction of the air outlet channel 110. When the extending direction of the eagle beak structure 200 is arranged at an acute angle with the air outlet direction of the air outlet channel 110, it is not only convenient for the setting of the first air deflector 300, enabling the first air deflector 300 to have a larger rotation range; on the other hand, it can also reduce the influence of the eagle beak structure 200 on the air outlet of the air outlet channel 110, thereby achieving the purpose of improving the air outlet effect. Among them, the included angle formed by the extending direction of the eagle beak structure 200 and the air outlet direction of the air outlet channel 110 is as Figure 2 the angle marked as A in
[0043] Optionally, the angle formed by the extension direction of the hawk beak structure 200 and the air outlet direction of the air outlet channel 110 is in the range of 45° to 75°. In other words, the angle formed by the extension direction of the hawk beak structure 200 and the air outlet direction of the air outlet channel 110 can be 45°, 46°, 47°, 48°, 49°, 50°, 51°, 52°, 53°, 54°, 55°, 56°, 57°, 58°, 59°, 60°, 61°, 62°, 63°, 64°, 65°, 66°, 67°, 68°, 69°, 70°, 71°, 72°, 73°, 74° or 75°, etc.; wherein, preferably, the angle formed by the extension direction of the hawk beak structure 200 and the air outlet direction of the air outlet channel 110 is 67°. When the angle formed by the extension direction of the hawk's beak structure 200 and the air outlet direction of the air outlet channel 110 is within the above range, the first air guide plate 300 can be better rotated within a large range and the requirement that the hawk's beak structure 200 has less influence on the air outlet can be met.
[0044] In this embodiment, the beak structure 200 is disposed at the middle position in the transverse direction of the air outlet 111. As a result, the middle position of the first air guide plate 300 is connected to the beak structure 200, and the middle position of the first air guide plate 300 can provide support to the first air guide plate 300. At the same time, the two ends of the first air guide plate 300 are respectively disposed on the middle frame 100, so that each position of the first air guide plate 300 can be stably supported, which can improve the stability of the installation and operation of the first air guide plate 300.
[0045] Optionally, in this embodiment, the beak structure 200 is integrally formed with the middle frame 100. This method can facilitate the arrangement of the beak structure 200, save the step of assembling the beak structure 200, and reduce the difficulty of manufacturing and assembling the air conditioner 10. At the same time, the strength of the beak structure 200 can also be improved, thereby ensuring the stable operation of the first air guide plate 300.
[0046] In this example, see Figure 3 The hawk beak structure 200 includes an extension portion 210 and a rotating connection portion 220. One end of the extension portion 210 is connected to the middle frame 100 and extends toward the inside of the air outlet channel 110. The rotating connection portion 220 is provided at the other end of the extension portion 210. The rotating connection portion 220 is provided with a mounting hole 221 adapted to the first air guide plate 300. In order to improve the overall strength of the hawk beak structure 200, a reinforcing rib 211 is provided on the extension portion 210, and the extending direction of the reinforcing rib 211 is the same as the extending direction of the extension portion 210.
[0047] Further, in this embodiment, please refer to Figure 1, the air outlet assembly 11 further includes a second air deflector 400, which is connected to the middle frame 100 and disposed at the air outlet 111; the rotation axis of the first air deflector 300 is parallel to the rotation axis of the second air deflector 400.
[0048] Optionally, please refer to Figure 4 , Figure 5 and Figure 6 , the air outlet 111 has an upper air outlet area 1111 and a lower air outlet area 1112. The first air deflector 300 is correspondingly disposed in the upper air outlet area 1111, and the second air deflector 400 is correspondingly disposed in the lower air outlet area 1112. When the first air deflector 300 and the second air deflector 400 are both provided, the opening and closing of the air outlet 111 can be controlled by the two air deflectors, so that the air outlet assembly 11 can be applied to more scenarios to meet the diverse air outlet needs of users. Among them, Figure 4 , Figure 5 and Figure 6 respectively show different opening and closing states of the first air deflector 300 and the second air deflector 400, thus forming a variety of air outlet modes.
[0049] Since the first air deflector 300 and the second air deflector 400 correspond to different areas of the air outlet 111, the opening and closing of different areas of the air outlet 111 can be controlled separately for the first air deflector 300 and the second air deflector 400, so as to achieve the purpose of diversified air outlet and meet the diverse needs of users.
[0050] In summary, in the air outlet assembly 11 and the air conditioner 10 provided in the embodiments of the present application, the air outlet channel 110 is directly formed on the middle frame 100, and the eagle beak structure 200 for installing the first air deflector 300 is directly disposed on the middle frame 100. On the one hand, the setting of the air outlet frame can be omitted, thus reducing the influence of the air outlet frame on the air outlet; on the other hand, when the first air deflector 300 rotatably connected to the eagle beak structure 200 opens the air outlet 111, part of the air outlet channel 110 can be externalized, thereby reducing the air resistance and further achieving the purpose of improving the air outlet effect. Based on this, the air outlet assembly 11 can solve the technical problem that the air outlet effect in the prior art is affected by the air outlet frame and the structure connecting the air deflectors. Further, since the setting of the air outlet frame is cancelled, the assembly of parts is reduced during the assembly of the air outlet assembly 11, thereby reducing the assembly difficulty and improving the assembly efficiency; at the same time, the part cost is also reduced. By providing the first air deflector 300 and the second air deflector 400, the opening and closing of the air outlet 111 can be controlled by the two air deflectors, so that the air outlet assembly 11 can be applied to more scenarios to meet the diverse air outlet needs of users.
[0051] Although the present utility model is disclosed as above, the present utility model is not limited thereto. Any person skilled in the art can make various changes and modifications without departing from the spirit and scope of the present utility model. Therefore, the protection scope of the present utility model shall be subject to the scope defined by the claims.
Claims
1. An air outlet component, characterized in that: include: A middle frame (100) is provided with an air outlet channel (110), and the air outlet channel (110) has an air outlet (111); an eagle beak structure (200) is provided on the middle frame (100) and is located inside the air outlet channel (110); a first air guide plate (300) is rotatably connected to the middle frame (100) and is provided inside the air outlet channel (110), and the first air guide plate (300) is rotatably matched with the eagle beak structure (200).
2. The air outlet assembly according to claim 1, characterized in that: The eagle beak structure (200) is disposed at the air outlet (111), and the first air guide plate (300) is disposed at the air outlet (111).
3. The air outlet assembly according to claim 1, characterized in that: The extension direction of the eagle beak structure (200) is arranged at an acute angle to the air outlet direction of the air outlet channel (110).
4. The air outlet assembly according to claim 3, characterized in that: The angle formed by the extension direction of the hawk's beak structure (200) and the air outlet direction of the air outlet channel (110) is in the range of 45° to 75°.
5. The air outlet assembly according to claim 1, characterized in that: The eagle beak structure (200) is arranged at a middle position of the air outlet (111) in the transverse direction.
6. The air outlet assembly according to claim 1, characterized in that: The eagle beak structure (200) and the middle frame (100) are integrally formed.
7. The air outlet assembly according to claim 1, characterized in that: The eagle beak structure (200) comprises an extension portion (210) and a rotating connection portion (220), one end of the extension portion (210) is connected to the middle frame (100), and the extension portion (210) extends toward the inside of the air outlet channel (110), and the rotating connection portion (220) is arranged at the other end of the extension portion (210); the rotating connection portion (220) is provided with a mounting hole (221) adapted to the first air guide plate (300).
8. The air outlet assembly according to claim 1, characterized in that: The air outlet assembly (11) further comprises a second air guide plate (400), wherein the second air guide plate (400) is connected to the middle frame (100) and is arranged at the air outlet (111); the rotation center axis of the first air guide plate (300) is parallel to the rotation center axis of the second air guide plate (400).
9. The air outlet assembly according to claim 8, characterized in that: The air outlet (111) has an upper air outlet area (1111) and a lower air outlet area (1112); the first air guide plate (300) is correspondingly arranged in the upper air outlet area (1111); and the second air guide plate (400) is correspondingly arranged in the lower air outlet area (1112).
10. An air conditioner, characterized in that: It comprises an air outlet assembly (11) as described in any one of claims 1 to 9.