Air conditioner air outlet with airflow enhancing structure
By designing an airflow enhancement structure for the air conditioner's air outlet, the airflow from the exhaust port is used to drive the fan, thereby enhancing the airflow intensity at the air conditioner's air outlet, solving the problems of dust ingress and insufficient airflow, and achieving energy-saving and environmentally friendly effects.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- XINGHUA JIYU PLASTICS CO LTD
- Filing Date
- 2025-06-20
- Publication Date
- 2026-05-15
AI Technical Summary
Existing air conditioning units cannot effectively prevent dust and impurities from entering when not in use, and they also cannot enhance the airflow at the air outlet, resulting in energy loss and functional limitations.
An air conditioning outlet with an airflow enhancement structure was designed, including an air guide pipe, a connecting pipe, a working box, a drive component, and an adjustment component. The airflow generated by the exhaust port is used as the driving force. The airflow intensity is enhanced by the cooperation of the movable plate, fan, and air guide pipe. The retractable windproof cover prevents heat from affecting the air outlet effect.
It enhances the airflow intensity at the air conditioning outlet, reduces the frequency of fan usage, saves energy consumption, and improves the overall performance and stability of the equipment.
Smart Images

Figure CN224246320U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of airflow enhancement technology for air conditioning outlets, specifically an air conditioning outlet with an airflow enhancement structure. Background Technology
[0002] An air conditioner is a device used to regulate indoor temperature, humidity, airflow, and air quality. It typically includes cooling to lower indoor temperature, dehumidification to reduce humidity, and air filtration to improve indoor air quality. Air conditioners are usually installed inside buildings or vehicles, providing cool comfort in hot summers and heating in cold winters. Chinese Patent No. CN202420763014.8 relates to the field of air conditioning equipment, particularly to an air conditioner outlet and an air conditioner having it, including: a mounting bracket for mounting on the air conditioner body, with an air outlet body mounted on the mounting bracket; and a removable assembly for quickly disassembling the mounting bracket, mounted on the air conditioner body and the mounting bracket, the removable assembly including: a mounting post passing through the mounting bracket and extending into the air conditioner body; a positioning post rotatably mounted on the air conditioner body and passing through the mounting post; and a positioning block mounted on the positioning post and passing through the mounting post. This invention allows for easier cleaning and maintenance, ensuring the air conditioning system remains in good working order. It also speeds up the disassembly process, reducing disassembly time and labor costs. By installing a dustproof plate, the air conditioner is protected when not in use, preventing dust and other impurities from entering the unit and reducing the accumulation and damage to internal components. This helps extend the lifespan of the air conditioner and improve its performance.
[0003] Based on the above, the inventors have discovered the following problems: the above-mentioned device can protect the air conditioner when it is not in use, thereby preventing dust and other impurities from entering the air conditioner body, but it ignores the energy loss of the air conditioner outdoor unit's cooling fan and cannot enhance the airflow at the air conditioner outlet, thus limiting its functionality. Utility Model Content
[0004] To achieve the above objectives, this utility model provides the following technical solution: an air conditioner outlet with an airflow enhancement structure, comprising an outlet, an air duct, and an outdoor unit. The air outlet has an air duct on its side, a connecting pipe that runs through the air duct, and a working box that runs through the connecting pipe. The working box has a working chamber, an adjusting component inside the working chamber, a working pipe at the lower end of the working box, and a driving component inside the working pipe. The adjusting component includes a movable disc, and the driving component includes an elastic element fixedly connected to the lower end of the movable disc. A flow guide pipe runs through the lower end of the working pipe. A refrigerant transmission pipe is provided on one side of the outdoor unit, connected to the evaporator inside the outlet. The outdoor unit also has an exhaust port, and the flow guide pipe runs through the exhaust port outlet.
[0005] Furthermore, the drive assembly includes a movable cavity, the working tube is provided with a movable cavity, the movable cavity is provided with a connecting frame, the upper end of the connecting frame is provided with an elastic element, the other end of the elastic element is connected to the lower end of the movable disc, and the upper side of the movable cavity is provided with several through holes.
[0006] Furthermore, the adjustment assembly includes a ferrule, an eccentric component, and a fan. The movable disc is located within the movable cavity. The lower end of the ferrule is connected to the upper end of the movable disc. A push rod is provided at the upper end of the ferrule. The push rod passes through the upper end of the working tube and extends into the working cavity, where a connecting shaft is provided. The connecting shaft is connected to one end of the eccentric component, and the other end of the eccentric component is connected to a connecting shaft. The connecting shaft is horizontally positioned and movably mounted on the upper end of the support frame. A fan is provided on the connecting shaft.
[0007] Furthermore, the side of the work box is provided with a dustproof window, and a telescopic windproof cover is provided at the connection between the movable chamber and the work chamber. One end of the telescopic windproof cover is connected to the bottom of the work chamber, and the other end of the telescopic windproof cover is connected to the movable plate.
[0008] Furthermore, the internal diameters of the guide tube and the movable cavity gradually decrease along the airflow direction.
[0009] Furthermore, the internal diameters of the working chamber, connecting pipe, and air guide pipe gradually decrease along the airflow direction.
[0010] Furthermore, a pair of limiting blocks are provided on the side of the movable disc, and a pair of limiting grooves are provided on the inner wall of the movable cavity, with the limiting blocks and limiting grooves being slidably connected.
[0011] Compared with the prior art, the beneficial effects of this utility model are: the air conditioner outlet with an airflow enhancement structure is reasonable and has the following advantages:
[0012] (1) Through the design of the drive component, the airflow generated by the exhaust port can be utilized as the driving force source. Combined with the design of the adjustment component, the fan can be driven to rotate. With the cooperation of the connecting pipe and the air guide pipe, the airflow around the working box flows to the inside side of the air outlet, so that the cold air around the evaporator in the air conditioner can be blown into the room through the air outlet, thereby increasing the airflow intensity in the air outlet, reducing the frequency of use of the air flow fan in the air outlet, saving energy consumption, and achieving the effect of environmentally friendly operation. Furthermore, through the design of the working chamber, connecting pipe and air guide pipe with the internal diameter gradually decreasing along the airflow direction, it helps to maintain or increase the airflow speed and expand the airflow intensity in the air outlet.
[0013] (2) The design of the telescopic windproof cover not only effectively ensures the free movement of the movable plate in the movable cavity, but also precisely cuts off the channels through which the hot airflow spreads to the air outlet via the working cavity, connecting pipe, air guide pipe, etc., providing a strong guarantee for maintaining a good cooling effect at the air outlet, and playing an important role in improving the overall performance and stability of the equipment. Attached Figure Description
[0014] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0015] Figure 2 This is a top-view three-dimensional structural diagram of the present invention;
[0016] Figure 3 This is a schematic diagram of the internal structure of a portion of the cross-section of this utility model;
[0017] Figure 4 This is an enlarged structural diagram of point A in this utility model.
[0018] In the diagram: 1. Air outlet; 2. Air duct; 3. Refrigerant transfer pipe; 4. Operating box; 5. Flow guide pipe; 6. Outdoor unit; 7. Connecting pipe; 8. Exhaust port; 9. Operating pipe; 10. Connecting frame; 11. Operating chamber; 12. Elastic component; 13. Fan; 14. Support frame; 15. Connecting shaft; 16. Eccentric component; 17. Connecting shaft; 18. Push rod; 19. Dustproof window; 20. Connector; 21. Movable chamber; 22. Movable plate; 23. Limiting groove; 24. Limiting block; 25. Through hole; 26. Telescopic windproof cover. Detailed Implementation
[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0020] Please see Figure 1-4 The present invention provides a technical solution as follows:
[0021] Example:
[0022] In this embodiment, an air conditioner outlet with an airflow enhancement structure includes an outlet 1, an air duct 2, and an outdoor unit 6. The air outlet 1 has an air duct 2 on its side, and the air duct 2 is connected to a connecting pipe 7. The connecting pipe 7 is connected to a working box 4, and the working box 4 has a working chamber 11 inside. The working chamber 11 has an adjustment component inside, and the working box 4 has a working pipe 9 at its lower end. The working pipe 9 has a driving component inside, and the adjustment component includes a movable disc 22. The driving component includes an elastic element 12, and the elastic element 12 is fixedly connected to the lower end of the movable disc 22. The lower end of the working pipe 9 is connected to a flow guide pipe 5. The outdoor unit 6 has a refrigerant transmission pipe 3 on one side, and the refrigerant transmission pipe 3 is connected to the evaporator inside the air outlet 1. The outdoor unit 6 has an exhaust port 8, and the flow guide pipe 5 is connected to the exhaust port 8.
[0023] The refrigerant transfer pipe 3 mentioned above is used for refrigerant transfer.
[0024] The drive assembly includes a movable cavity 21. The working tube 9 has a movable cavity 21 inside. The movable cavity 21 has a connecting frame 10 inside. The upper end of the connecting frame 10 has an elastic element 12. The other end of the elastic element 12 is connected to the lower end of the movable disc 22. The upper side of the movable cavity 21 has several through holes 25.
[0025] The aforementioned through hole 25 is used to depressurize the airflow within the movable cavity 21, such as... Figure 3 As shown, when the movable disk 22 moves to the upper end of the through hole 25, part of the airflow in the movable cavity 21 flows out from the through hole 25. At this time, the pushing force of the airflow on the movable disk 22 is less than the elastic force of the elastic element 12, and the elastic element 12 stretches as the movable disk 22 moves, and the elastic contraction force it generates also gradually increases. Thus, when the movable disk 22 moves to the upper end of the through hole 25 in the movable cavity 21 and drives the eccentric element 16 to rotate to the high point, the elastic element 12 can pull the movable disk 22 downward. Under the action of the push rod 18, the seat 20 and the eccentric element 16, the connecting shaft 15 can be driven to rotate.
[0026] The adjustment assembly includes a ferrule 20, an eccentric component 16, and a fan 13. The movable disk 22 is located in the movable cavity 21. The lower end of the ferrule 20 is connected to the upper end of the movable disk 22. A push rod 18 is provided at the upper end of the ferrule 20. The push rod 18 passes through the upper end of the working tube 9 and extends into the working cavity 11, where a connecting shaft 17 is provided. The connecting shaft 17 is connected to one end of the eccentric component 16, and the other end of the eccentric component 16 is connected to a connecting shaft 15. The connecting shaft 15 is horizontally arranged and movably mounted on the upper end of the support frame 14. A fan 13 is provided on the connecting shaft 15.
[0027] The connection relationship between the exhaust port 8 and the guide pipe 5 is as follows: Figure 3 As shown, part of the airflow discharged from exhaust port 8 flows through guide pipe 5 into movable cavity 21, and then flows out from through hole 25; as Figure 3 The airflow pushes the movable disk 22 to move within the movable cavity 21. With the cooperation of the limiting groove 23 and the limiting block 24, the movable disk 22 moves upward along the limiting groove 23 within the movable cavity 21. The stretching elastic element 12, in cooperation with the armature 20 and the push rod 18, drives the push rod 18 to move upward. When the eccentric element 16 rotates around the axis of the connecting shaft 15 to its highest point, the elastic force of the elastic element 12 is greater than the pushing force of the airflow on the movable disk 22 within the movable cavity 21, causing the movable disk 22 to move downward. This, combined with the coordination of the movable cavity 21, the eccentric element 16, and the push rod 18... When combined, the connecting shaft 15 rotates, causing the fan 13 on it to rotate. This allows the airflow from the side of the work box 4 to flow into the connecting pipe 7. The airflow then flows through the connecting pipe 7 and the air guide pipe 2 to the inside side of the air outlet 1. This allows the cold air around the evaporator (not shown in the figure, but a standard air conditioning component) in the indoor unit of the air conditioner to be blown into the room through the air outlet 1. This increases the airflow intensity in the air outlet 1, reduces the frequency of use of the fan (not shown in the figure, but a standard air conditioning component) in the air outlet, saves energy consumption, and achieves the effect of environmentally friendly operation.
[0028] The work box 4 is provided with a dustproof window 19 on its side, and a telescopic windproof cover 26 is provided at the connection between the movable cavity 21 and the work cavity 11. One end of the telescopic windproof cover 26 is connected to the bottom of the work cavity 11, and the other end of the telescopic windproof cover 26 is connected to the movable plate 22.
[0029] The design of the telescopic wind shield 26 can prevent the movement of the movable plate 22 from being obstructed, and can isolate the gas in the movable chamber 21 from the working chamber 11, thus preventing the hot airflow generated at the exhaust port 8 from flowing through the working chamber 11, the connecting pipe 7, and the air guide pipe 2 to the air outlet 1 and affecting the cooling effect of the air outlet 1.
[0030] The internal diameters of the guide tube 5 and the movable cavity 21 gradually decrease along the airflow direction;
[0031] By designing the guide tube 5 and the inner diameter of the movable cavity 21 to gradually decrease along the airflow direction, the airflow velocity in the movable cavity 21 can be increased, thereby driving the movable disk 22 to move.
[0032] The internal diameters of the working chamber 11, the connecting pipe 7, and the air guide pipe 2 gradually decrease along the airflow direction.
[0033] The design of the working chamber 11, connecting pipe 7 and air guide pipe 2 with the internal diameter gradually decreasing along the airflow direction helps to maintain or increase the airflow speed and expand the airflow intensity in the air outlet 1.
[0034] The movable disk 22 has a pair of limiting blocks 24 on its side, and the movable cavity 21 has a pair of limiting grooves 23 on its inner wall. The limiting blocks 24 and the limiting grooves 23 are slidably connected.
[0035] Working principle: During use, part of the airflow discharged from exhaust port 8 flows through guide pipe 5 into movable chamber 21, and then flows out from through hole 25; Figure 3 The airflow pushes the movable disk 22 to move within the movable cavity 21. With the cooperation of the limiting groove 23 and the limiting block 24, the movable disk 22 moves upward along the limiting groove 23 within the movable cavity 21. The stretching elastic element 12, in cooperation with the armature 20 and the push rod 18, drives the push rod 18 to move upward. When the eccentric element 16 rotates around the axis of the connecting shaft 15 to its highest point, the elastic force of the elastic element 12 is greater than the pushing force of the airflow on the movable disk 22 within the movable cavity 21, causing the movable disk 22 to move downward. This, combined with the movable... The cooperation of cavity 21, eccentric part 16, and push rod 18 can drive the connecting shaft 15 to rotate, which in turn drives the fan 13 on it to rotate. This allows the airflow on the side of the work box 4 to flow into the connecting pipe 7. The airflow flows through the connecting pipe 7 and the air guide pipe 2 to the inside side of the air outlet 1, thereby blowing the cold air around the evaporator in the air conditioner indoor unit into the room through the air outlet 1. This increases the airflow intensity in the air outlet 1, reduces the frequency of use of the air outlet fan, saves energy consumption, and achieves the effect of environmentally friendly operation.
[0036] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. An air conditioning outlet with an airflow enhancement structure, comprising an air outlet (1), an air duct (2), and an outdoor unit (6), characterized in that: The air outlet (1) is provided with an air guide pipe (2) on its side. The air guide pipe (2) is connected to a connecting pipe (7). The connecting pipe (7) is connected to a working box (4). The working box (4) is provided with a working chamber (11). The working chamber (11) is provided with an adjustment component. The working box (4) is provided with a working pipe (9) at its lower end. The working pipe (9) is provided with a driving component. The adjustment component includes a movable disc (22). The driving component includes an elastic element (12). The elastic element (12) is fixedly connected to the lower end of the movable disc (22). The working pipe (9) is connected to a flow guide pipe (5) at its lower end. The outdoor unit (6) is provided with a refrigerant transmission pipe (3) on one side. The refrigerant transmission pipe (3) is connected to the evaporator in the air outlet (1). The outdoor unit (6) is provided with an exhaust port (8). The flow guide pipe (5) is connected to the exhaust port (8) outlet.
2. An air conditioning outlet with an airflow enhancement structure according to claim 1, characterized in that: The drive assembly includes a movable cavity (21), the working tube (9) is provided with a movable cavity (21), the movable cavity (21) is provided with a connecting frame (10), the upper end of the connecting frame (10) is provided with an elastic element (12), the other end of the elastic element (12) is connected to the lower end of the movable disc (22), and the upper side of the movable cavity (21) is provided with several through holes (25).
3. An air conditioning outlet with an airflow enhancement structure according to claim 2, characterized in that: The adjustment assembly includes a ferrule (20), an eccentric component (16), and a fan (13). The movable disk (22) is located in the movable cavity (21). The lower end of the ferrule (20) is connected to the upper end of the movable disk (22). The upper end of the ferrule (20) is provided with a push rod (18). The push rod (18) passes through the upper end of the working tube (9) and extends into the working cavity (11) and is provided with a connecting shaft (17). The connecting shaft (17) is connected to one end of the eccentric component (16). The other end of the eccentric component (16) is connected to a connecting shaft (15). The connecting shaft (15) is horizontally arranged and movably located on the upper end of the support frame (14). The connecting shaft (15) is provided with a fan (13).
4. An air conditioning outlet with an airflow enhancement structure according to claim 3, characterized in that: The side of the work box (4) is provided with a dustproof window (19), and a telescopic windproof cover (26) is provided at the connection between the movable cavity (21) and the work cavity (11). One end of the telescopic windproof cover (26) is connected to the bottom of the work cavity (11), and the other end of the telescopic windproof cover (26) is connected to the movable plate (22).
5. An air conditioning outlet with an airflow enhancement structure according to claim 4, characterized in that: The internal diameters of the guide tube (5) and the movable cavity (21) gradually decrease along the airflow direction.
6. An air conditioning outlet with an airflow enhancement structure according to claim 5, characterized in that: The internal diameters of the working chamber (11), connecting pipe (7) and air guide pipe (2) gradually decrease along the airflow direction.
7. An air conditioning outlet with an airflow enhancement structure according to claim 6, characterized in that: The movable disc (22) has a pair of limiting blocks (24) on its side, and the movable cavity (21) has a pair of limiting grooves (23) on its inner wall. The limiting blocks (24) and the limiting grooves (23) are slidably connected.