Panel air outlet structure and air conditioner

By incorporating multiple air outlets and panel structures within the air conditioner, combined with duct design and the Coanda effect, the problems of dust accumulation and insufficient airflow in windless air conditioners have been solved. This enables multi-directional airflow and precise airflow control, enhancing the adaptability and user experience of the air conditioner.

CN223755505UActive Publication Date: 2026-01-02NINGBO AUX ELECTRIC CO LTD +1
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Patent Information

Application Number
CN202520112692.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-17
Publication Date
2026-01-02
Estimated Expiration
2035-01-17

AI Technical Summary

Technical Problem

Existing air conditioners with perforated designs are prone to accumulating dust and bacteria, and have a small air volume, making them unable to meet the cooling needs of large spaces.

Method used

The design incorporates a first side air outlet and a bottom air outlet, combined with the openable or closed function of the air outlet panel, and adds a second side air outlet and a baffle plate. By separating the main air duct and the side air duct, the Coanda effect is used to achieve multi-directional air outlet, and the air volume is controlled by the valve plate.

Benefits of technology

It increases air volume, enhances the adaptability and flexibility of the air conditioner, improves air circulation, enhances user comfort and ease of operation, and ensures the cleanliness and cooling efficiency of the air conditioner.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223755505U_ABST
    Figure CN223755505U_ABST
Patent Text Reader

Abstract

The utility model provides a panel air outlet structure and an air conditioner, the panel air outlet structure is applied to an air conditioner indoor unit, the air conditioner indoor unit comprises a machine body and an air outlet panel, and the air outlet panel is movably installed on the machine body; the panel air outlet structure comprises a first side edge air outlet and a second side edge air outlet, wherein the first side edge air outlet is formed in the side portion of the air outlet panel; the bottom air outlet is formed in the side, close to the air outlet panel, of the bottom of the machine body; the air outlet panel can be opened or closed relative to the machine body, and when the air outlet panel is opened relative to the machine body, the first side edge air outlet is exposed. The technical problems that dust and bacteria are prone to being accumulated in a wind-feeling-free air conditioner with the punching design, the air supply amount is small, and the refrigeration requirement of a large space cannot be met are solved. According to the air conditioner, the first side air outlet and the bottom air outlet are formed, and the air outlet panel is opened or closed relative to the air conditioner body, so that the air volume and the air blowing range are controlled, and the requirements of air-feeling-free air blowing and large-space refrigeration are met.
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Description

TECHNICAL FIELD

[0001] The utility model relates to air conditioning technical field, specifically, a panel air -out structure and air conditioner. BACKGROUND

[0002] The air -out structure of the common no -wind air conditioner in the market is perforated design, mainly through increasing many micro -holes on the air deflector, the air flow blown by the air conditioner is dispersed into numerous fine air filaments, thereby avoiding the air flow straight blowing human body, so that people feel more comfortable.

[0003] The existing problem is: the perforated design no -wind air conditioner not only is easy to accumulate dust and bacteria, and the air supply volume is small, cannot satisfy the refrigeration demand of large space. UTILITY MODEL CONTENT

[0004] The utility model solves the technical problem that the perforated design no -wind air conditioner not only is easy to accumulate dust and bacteria, and the air supply volume is small, cannot satisfy the refrigeration demand of large space.The utility model discloses through setting up first side edge air -out port and bottom air -out port and the air -out panel relative to the body open or close, reaches the control of the air volume and the blowing range, has realized no -wind blowing and the demand of large -space refrigeration.

[0005] To solve the above problem, the utility model provides a panel air -out structure, the panel air -out structure is applied to air conditioner indoor unit, and the air conditioner indoor unit includes a body and an air -out panel, and the air -out panel is movably installed on the body, the panel air -out structure includes: first side edge air -out port, the first side edge air -out port is arranged on the side of the air -out panel, bottom air -out port, the bottom air -out port is arranged on the bottom of the body and is close to one side of the air -out panel, wherein the air -out panel can be opened or closed relative to the body, when the air -out panel is opened relative to the body, the first side edge air -out port is exposed.

[0006] Compared with the prior art, the technical effects reached by adopting the technical scheme are: by setting the first side edge air -out port and the bottom air -out port, the air supply volume of the air conditioner can be effectively increased, the air circulation effect is improved, and the refrigeration demand of large space is met.The movable setting of the air -out panel enables the air conditioner to adjust the air -out direction according to actual demand, provides more flexible air flow mode, and improves the comfort of users.Furthermore, the movable setting of the air -out panel also enables the air -out port to be closed when the air conditioner is not used, reduces the accumulation of dust and bacteria, and keeps the inside of the air conditioner clean.Through the air -out port layout on the side and the bottom of the air -out panel, no -wind blowing can be more effectively realized, and the working efficiency of the air conditioner is improved.

[0007] In one possible design, the side of the air -out panel is also provided with a second side edge air -out port, wherein when the air -out panel is opened relative to the body, the second side edge air -out port is exposed.

[0008] Compared with the prior art, the technical effects achieved by adopting the technical scheme are as follows: by increasing the second side air outlet, the air conditioner can realize multi-direction air outlet, users can select different air outlets according to needs, and the flexibility and comfort of air circulation are improved. Moreover, by simultaneously opening the first side air outlet and the second side air outlet, more uniform air distribution can be realized, the problem of local air retention is avoided, and the overall refrigeration or heating effect is improved. In different use scenarios, users can select to open different air outlets according to room layout and individual needs, the adaptability of the air conditioner is enhanced, and diversified use requirements are met. Meanwhile, users can flexibly adjust the opening state of the air outlet according to actual conditions, the convenience and comfort of operation are enhanced, and the overall user experience is improved.

[0009] In one possible design, when the air outlet panel is closed relative to the body, the body blocks the second side air outlet.

[0010] Compared with the prior art, the technical effects achieved by adopting the technical scheme are as follows: by blocking the second side air outlet with the body when the air outlet panel is closed relative to the body, the air volume and direction of air outlet of the air conditioner can be effectively controlled, and the flexibility of the air conditioner is improved. Meanwhile, blocking the second side air outlet with the body can effectively prevent air backflow and unnecessary heat exchange, improve the refrigeration or heating efficiency of the air conditioner, and ensure the stability of indoor temperature. Moreover, users can select to open or close the air outlet panel according to needs, flexibly adjust the working state of the air conditioner, and meet use requirements in different scenarios.

[0011] In one possible design, the panel air outlet structure further includes a baffle, the baffle is arranged on the side of the body corresponding to the air outlet panel; when the air outlet panel is closed relative to the body, the baffle blocks the second side air outlet, and the baffle blocks part of the first side air outlet.

[0012] Compared with the prior art, the technical effects achieved by adopting the technical scheme are as follows: the arrangement of the baffle can better control the direction and intensity of air flow, avoid disordered air flow, and enable the air conditioner to more effectively guide air flow to a target area when the air conditioner is turned on. Moreover, by arranging the baffle, air backflow is effectively blocked, it is ensured that only part of the first side air outlet blows air when the air outlet panel is in a closed state, and the stability of air outlet of the air conditioner is ensured. When users use the air conditioner, the baffle can effectively shield the air outlet, and the convenience and comfort of operation are improved.

[0013] In one possible design, a fan is arranged inside the body, and fresh air generated by the fan is discharged from the body through the first side air outlet, the second side air outlet and the bottom air outlet.

[0014] Compared with the prior art, the technical effects achieved by adopting the technical scheme are that the arrangement of the fan can effectively enhance the circulation of indoor air, ensure that fresh air can quickly enter the indoor, and improve the air quality. Meanwhile, the arrangement of the multiple air outlets enables the fresh air to be discharged from different directions, provides a more flexible air flow mode, meets different room layouts and use requirements, and improves the user experience.

[0015] In one possible design, the fan and the bottom air outlet form a main air duct, and the fan and the first side air outlet and the second side air outlet form side air ducts.

[0016] Compared with the prior art, the technical effects achieved by adopting the technical scheme are that the arrangement of the main air duct and the side air ducts makes the air flow path more reasonable, reduces the air flow resistance, improves the working efficiency of the fan, ensures that fresh air can be quickly and effectively delivered to each air outlet. Meanwhile, through the synergistic effect of the main air duct and the side air ducts, more uniform air distribution can be achieved, the problem of local high or low temperature is avoided, and the overall comfort is improved. Moreover, the arrangement of the side air ducts enables the user to select different air outlets as needed, provides a more flexible air flow mode, and meets different room layouts and use requirements.

[0017] In one possible design, a partition piece is arranged in the side air duct, the partition piece separates the side air duct into a first side air duct and a second side air duct, the first side air outlet is arranged in the first side air duct, and the second side air outlet is arranged in the second side air duct.

[0018] Compared with the prior art, the technical effects achieved by adopting the technical scheme are that the arrangement of the partition piece enables the first side air duct and the second side air duct to work independently, the user can select to open one or two air outlets as needed, thereby realizing more flexible air flow control. Moreover, by separating the side air duct, the air flow of each air outlet can be more effectively controlled, air flow crossing and interference are avoided, the air distribution uniformity is improved, the user's comfort experience is enhanced. Meanwhile, the user can also flexibly select different air outlets according to the layout of the room and individual needs, enhancing the adaptability and flexibility of the air conditioning system and meeting diversified use scenarios.

[0019] In one possible design, the bottom air outlet is provided with a valve plate, and the valve plate is movably connected to the machine body. Rotating the valve plate can control the air outlet amount of the bottom air outlet.

[0020] Compared with the prior art, the technical effects reached by adopting the technical scheme are: the movable design of the valve plate enables the user to flexibly adjust the air outlet amount of the bottom air outlet according to actual needs, realizes more accurate air volume control, and improves the comfort experience of the user.

[0021] In one possible design, the valve plate comprises a plate body and a rotating body, the plate body is connected to the rotating body, and the rotating body is movably connected to the machine body; wherein the rotating body drives the plate body to move away from the air outlet panel, and the bottom air outlet gradually increases.

[0022] Compared with the prior art, the technical effects reached by adopting the technical scheme are: by driving the plate body to move through the rotating body, the user can flexibly adjust the size of the air outlet according to actual needs, so as to realize accurate control of the air outlet amount, meet different environmental and demand uses, improve the convenience and comfort of operation, and enhance the overall experience of the user. At the same time, the gradually increasing bottom air outlet can effectively reduce the resistance of air flow, improve the flow efficiency of air, enable the air conditioner to more quickly send cold air or hot air into the room, and improve the uniformity of indoor temperature.

[0023] The utility model also provides an air conditioner, air conditioner includes panel air outlet structure.

[0024] Compared with the prior art, the technical effects reached by adopting the technical scheme are: the air conditioner of the utility model comprises the panel air outlet structure of any one of the technical schemes of the utility model, so it has all the beneficial effects of the panel air outlet structure of any one of the technical schemes of the utility model, which will not be repeated here. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 The structure diagram of the panel air outlet structure provided for the utility model embodiment Figure One ;

[0026] Figure 2 The structure diagram of the panel air outlet structure provided for the utility model embodiment Figure Two ;

[0027] Figure 3 The structure diagram of the panel air outlet structure provided for the utility model embodiment Figure Three ;

[0028] Figure 4 For Figure 3 The enlarged view of area A in the utility model embodiment

[0029] Figure 5 The structure diagram of the panel air outlet structure provided for the utility model embodiment Figure Four;

[0030] Figure 6 For Figure 5 Enlarged view of the middle B region.

[0031] Legend:

[0032] 11 - body; 12 - air outlet panel; 13 - first side air outlet; 14 - bottom air outlet; 15 - second side air outlet; 16 - baffle plate; 17 - fan; 18 - main air duct; 19 - side air duct; 20 - partition piece; 21 - first side air duct; 22 - second side air duct; 23 - valve plate; 24 - plate body; 25 - rotating body. DETAILED DESCRIPTION

[0033] In order to make the above-mentioned purposes, features and advantages of the present application more obvious and easy to understand, the specific embodiments of the present application will be described in detail below with reference to the drawings.

[0034] Referring to Figures 1 to 6 The present application provides a panel air outlet structure, which is applied to an air conditioner indoor unit. The air conditioner indoor unit comprises a body 11 and an air outlet panel 12. The air outlet panel 12 is movably installed on the body 11. The panel air outlet structure comprises: a first side air outlet 13, which is arranged on the side of the air outlet panel 12; and a bottom air outlet 14, which is arranged on the bottom of the body 11 and is close to one side of the air outlet panel 12. The air outlet panel 12 can be opened or closed relative to the body 11. When the air outlet panel 12 is opened relative to the body 11, the first side air outlet 13 is exposed.

[0035] Specifically, in the present embodiment, the air outlet panel 12 is provided with the first side air outlet 13 on both sides. When the air outlet panel 12 is opened relative to the body 11, the first side air outlet 13 is exposed. When the air outlet panel 12 is closed relative to the body 11, the first side air outlet 13 is partially blocked. When the air outlet panel 12 is closed relative to the body 11, the air outlet panel 12 abuts against the valve plate 23 on the bottom of the body 11, so as to close the bottom air outlet 14. When the air outlet panel 12 is opened relative to the body 11, the air outlet panel 12 is away from the valve plate 23, and the bottom air outlet 14 is exposed. When the air conditioner indoor unit is working, fresh air is blown out from both sides and the bottom of the air outlet panel 12. By controlling the exposure state of the first side air outlet 13, the air volume at the bottom air outlet 14 can be controlled. If the first side air outlet 13 is completely exposed, the fresh air in the body 11 is partially discharged from the first side air outlet 13 and partially discharged from the bottom air outlet 14. If the first side air outlet 13 is partially blocked, the air volume discharged from the first side air outlet 13 is reduced, and the air volume discharged from the bottom air outlet 14 is increased.

[0036] In an embodiment of the utility model, the side of the air outlet panel 12 is further provided with a second side air outlet 15; wherein, when the air outlet panel 12 is opened relative to the body 11, the second side air outlet 15 is exposed.

[0037] Specifically, in the embodiment, the side of the air outlet panel 12 is further provided with a second side air outlet 15, wherein the second side air outlet 15 is arranged on the side of the air outlet panel 12 close to the body 11; the first side air outlet 13 is arranged on the side of the air outlet panel 12 away from the body 11. Wherein, when the air outlet panel 12 is opened relative to the body 11, the first side air outlet 13 and the second side air outlet 15 are exposed, and the fresh air in the body 11 can be discharged from the first side air outlet 13 and the second side air outlet 15. And, the fresh air on both sides and the bottom of the air outlet panel 12 blows along the front of the air outlet panel 12 according to the Coanda effect. Wherein, the Coanda effect is a phenomenon in fluid mechanics, which means that fluid tends to adhere to the nearby surface when flowing, instead of flowing along a straight line. The basic principle of the Coanda effect is that when fluid flows through a curved surface, the velocity of the fluid increases near the curved surface, resulting in a decrease in pressure. This low pressure area will attract the surrounding fluid, so that the fluid flows along the curved surface, instead of directly leaving. This phenomenon is of great significance in many engineering applications, such as in the field of aerospace, the Coanda effect can be used to change the direction of airflow, thereby affecting the lift and maneuverability of the aircraft.

[0038] In an embodiment of the utility model, when the air outlet panel 12 is closed relative to the body 11, the body 11 blocks the second side air outlet 15.

[0039] Specifically, in the embodiment, when the air outlet panel 12 is closed relative to the body 11, the second side air outlet 15 is blocked by the body 11.

[0040] In an embodiment of the utility model, the panel air outlet structure further comprises a wind shield 16, the wind shield 16 is arranged on the side of the body 11 corresponding to the air outlet panel 12; wherein, when the air outlet panel 12 is closed relative to the body 11, the wind shield 16 blocks the second side air outlet 15, and the wind shield 16 blocks part of the first side air outlet 13.

[0041] Specifically, in the embodiment, the wind baffle 16 is arranged on the top and two sides of the body 11 corresponding to the air outlet panel 12, and the wind baffle 16 is integrally connected on the top and two sides of the body 11. When the air outlet panel 12 is opened relative to the body 11, the first side air outlet 13 and the second side air outlet 15 are away from the wind baffle 16, and the fresh air in the body 11 can be discharged through the first side air outlet 13 and the second side air outlet 15. When the air outlet panel 12 is closed relative to the body 11, the wind baffle 16 completely blocks the second side air outlet 15, and the wind baffle 16 blocks the upper half of the first side air outlet 13, and the fresh air in the body 11 can only be discharged through the lower half of the first side air outlet 13.

[0042] In an embodiment of the utility model, the body 11 is internally provided with a fan 17, and the fresh air generated by the fan 17 is discharged from the body 11 through the first side air outlet 13, the second side air outlet 15 and the bottom air outlet 14.

[0043] Specifically, in the embodiment, the fan 17 is used to drive the indoor air to circulate and flow, so as to realize the control of the indoor temperature. When the fan 17 works, the indoor air is drawn into the body 11 from the air inlet of the air conditioner indoor unit, and then is blown out from the first side air outlet 13, the bottom air outlet 14 or the second side air outlet 15, so as to realize the blowing function of the air conditioner indoor unit.

[0044] In an embodiment of the utility model, the fan 17 and the bottom air outlet 14 form a main air duct 18, and the fan 17 and the first side air outlet 13 and the second side air outlet 15 form a side air duct 19.

[0045] Specifically, in the embodiment, by forming the main air duct 18 between the fan 17 and the bottom air outlet 14, and forming the side air duct 19 between the fan 17 and the first side air outlet 13 and the second side air outlet 15, the air flow path in the body 11 can be more reasonable, so as to reduce the air flow resistance and improve the working efficiency of the fan 17.

[0046] In an embodiment of the utility model, the side air duct 19 is provided with a partition piece 20, the partition piece 20 divides the side air duct 19 into a first side air duct 21 and a second side air duct 22, the first side air outlet 13 is arranged in the first side air duct 21, and the second side air outlet 15 is arranged in the second side air duct 22.

[0047] Specifically, in the embodiment, the side air duct 19 is divided into a first side air duct 21 and a second side air duct 22 by the partition member 20, and the first side air outlet 13 is arranged in the first side air duct 21 and the second side air outlet 15 is arranged in the second side air duct 22, so that the first side air outlet 13 and the second side air outlet 15 can work independently and do not affect each other. The first side air duct 21 and the second side air duct 22 are separated from each other, so that the air flow of each air outlet can be more effectively controlled, air flow crossing and interference are avoided, air distribution uniformity is improved, and user comfort experience is enhanced.

[0048] In an embodiment of the utility model, bottom air outlet 14 is provided with valve plate 23, valve plate 23 swing connection is in body 11, wherein, the air volume of bottom air outlet 14 can be controlled by rotating valve plate 23.

[0049] Specifically, in the embodiment, the valve plate 23 is arranged at the bottom of the body 11, and the valve plate 23 can rotate relative to the body 11. When the valve plate 23 rotates to the end away from the air outlet panel 12, the bottom air outlet 14 becomes larger, and the air volume of the bottom air outlet 14 also increases.

[0050] In an embodiment of the utility model, the valve plate 23 includes a plate body 24 and a rotating body 25, the plate body 24 is connected to the rotating body 25, and the rotating body 25 is swing connected to the body 11. Wherein, the rotating body 25 drives the plate body 24 to move away from the air outlet panel 12, and the bottom air outlet 14 gradually becomes larger.

[0051] Specifically, in the embodiment, the plate body 24 and the rotating body 25 are integrally formed, wherein the rotating body 25 is rotatably connected to the body 11, one end of the plate body 24 is connected to the rotating body 25, and the other end is close to the air outlet panel 12. When the air outlet panel 12 is closed relative to the body 11, and the plate body 24 abuts against the air outlet panel 12, the bottom air outlet 14 is completely closed. By rotating the plate body 24 to the direction close to or away from the air outlet panel 12 through the rotating body 25, the opening and closing of the bottom air outlet 14 can be controlled. Wherein, the greater the angle of the plate body 24 rotation, the larger the opening of the bottom air outlet 14, and the greater the air volume.

[0052] The utility model also provides an air conditioner, and the air conditioner comprises the panel air outlet structure.

[0053] Specifically, the air conditioner of the utility model comprises the panel air outlet structure of any one of the technical solutions of the utility model, so it has all the beneficial effects of the panel air outlet structure of any one of the technical solutions of the utility model, which will not be repeated here.

[0054] Although the utility model discloses as above, the utility model is not limited to this. Any person skilled in the art, without departing from the spirit and scope of the utility model, can make various changes and modifications, therefore the protection scope of the utility model should be limited to the range defined by the claims.

Claims

1. A panel air outlet structure, characterized by, The panel air outlet structure is applied to an air conditioner indoor unit, the air conditioner indoor unit comprises a machine body (11) and an air outlet panel (12), the air outlet panel (12) is movably installed on the machine body (11); the panel air outlet structure comprises: a first side air outlet (13), the first side air outlet (13) is arranged on the side of the air outlet panel (12); a bottom air outlet (14), the bottom air outlet (14) is arranged on the bottom of the machine body (11) near one side of the air outlet panel (12); wherein, the air outlet panel (12) can be opened or closed relative to the machine body (11), when the air outlet panel (12) is opened relative to the machine body (11), the first side air outlet (13) is exposed.

2. The panel air outlet structure according to claim 1, characterized in that, The side of the air outlet panel (12) is also provided with a second side air outlet (15); wherein, when the air outlet panel (12) is opened relative to the machine body (11), the second side air outlet (15) is exposed.

3. The panel air outlet structure according to claim 2, characterized in that, When the air outlet panel (12) is closed relative to the machine body (11), the machine body (11) blocks the second side air outlet (15).

4. The panel air outlet structure according to claim 2, characterized in that, The panel air outlet structure further comprises a baffle (16), the baffle (16) is arranged on the side of the machine body (11) corresponding to the air outlet panel (12); wherein, when the air outlet panel (12) is closed relative to the machine body (11), the baffle (16) blocks the second side air outlet (15), and the baffle (16) blocks part of the first side air outlet (13).

5. The panel air outlet structure according to claim 2, characterized in that, The machine body (11) is internally provided with a fan (17), the fresh air generated by the fan (17) will be discharged from the machine body (11) through the first side air outlet (13), the second side air outlet (15) and the bottom air outlet (14).

6. The panel air outlet structure according to claim 5, characterized in that, The fan (17) and the bottom air outlet (14) form a main air duct (18), and the fan (17) and the first side air outlet (13) and the second side air outlet (15) form a side air duct (19).

7. The panel air outlet structure according to claim 6, characterized in that, A partition piece (20) is arranged in the side air duct (19), the partition piece (20) divides the side air duct (19) into a first side air duct (21) and a second side air duct (22), the first side air outlet (13) is arranged in the first side air duct (21), and the second side air outlet (15) is arranged in the second side air duct (22).

8. The panel air outlet structure according to claim 1, characterized in that, The bottom air outlet (14) is provided with a valve plate (23), the valve plate (23) is movably connected to the machine body (11); wherein, rotating the valve plate (23) can control the air outlet amount of the bottom air outlet (14).

9. The panel air outlet structure according to claim 8, characterized in that, The valve plate (23) comprises a plate body (24) and a rotating body (25), the plate body (24) is connected to the rotating body (25), and the rotating body (25) is movably connected to the machine body (11); wherein, the rotating body (25) drives the plate body (24) to move away from the air outlet panel (12), and then the bottom air outlet (14) gradually increases.

10. An air conditioner characterized by comprising: The air conditioner comprises the panel air outlet structure according to any one of claims 1-9.