Air conditioner direct blowing prevention air guide structure based on airflow distribution uniformization
By installing an air guide mechanism and cleaning components at the air outlet of the air conditioner, the problem of dust accumulation on the air outlet mesh caused by the closed air intake cavity of the fresh air conditioner is solved, realizing the convenience of airflow adjustment and impurity cleaning, and improving the comfort of air conditioner use and maintenance efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-01
- Publication Date
- 2026-04-03
AI Technical Summary
The existing fresh air conditioner has a closed air intake cavity structure, which makes it difficult to clean the air outlet screen due to the accumulation of dust. This requires disassembling parts, which increases the workload and difficulty of maintenance for users.
A direct-blowing airflow guide structure for air conditioning based on uniform airflow distribution is designed. The airflow is guided by straight and curved plates, and combined with sliding cleaning and driving components, the airflow direction can be adjusted and impurities can be removed, reducing disassembly steps.
It improves the air conditioning's airflow efficiency, reduces cleaning difficulty, and enhances user comfort and equipment maintenance convenience.
Smart Images

Figure CN224080375U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of air conditioning air guiding technology, and in particular to an air conditioning anti-direct-blow air guiding structure based on uniform airflow distribution. Background Technology
[0002] Fresh air conditioners, as healthy and comfortable air conditioners that integrate fresh air functions, use centrifugal fans to achieve indoor and outdoor air circulation and exchange, while also purifying the air. They are now widely used in many ordinary households. As people's quality of life improves, the requirements for the comfort of fresh air conditioners are also increasing. When the fresh air conditioner is in cooling or heating mode, if the cold or hot air blown out by the fresh air conditioner is blown directly onto the human body, it will cause the surface temperature of the human body to be too high or too low, thus making the user feel too cold or too hot, seriously affecting the user experience and reducing the comfort of the product.
[0003] A Chinese patent with publication number CN222086245U discloses an air conditioner air guide plate structure. During normal air blowing, the clamping plate on the inner wall of the air inlet cavity will block the air inlet hole, preventing air from entering. At this time, the main body can only adjust the air direction and air force by itself. When it is necessary to adjust the air direction and air force, the rotating column is rotated. Since the rotating column is connected to the inner toothed plate on the side wall of the sliding plate through the toothed groove on its side wall, the rotation of the rotating column will drive the sliding plate to slide. The sliding plate can drive the clamping plate to slide through the groove. The clamping plate will control the air intake of the air inlet hole, so that the air blowing on the inner wall of the main body will be diverted. After part of the air enters the air inlet cavity, it will exit from the side walls on both sides of the main body, while the remaining air will be controlled by the main body to control the air direction.
[0004] Regarding the aforementioned technologies, an air outlet screen is installed inside the air inlet cavity to prevent dust from entering the main body cavity. However, the air outlet screen itself is prone to accumulating dust and requires regular cleaning. However, due to the relatively closed structure of the air inlet cavity, cleaning the air outlet screen may be troublesome, requiring the disassembly of some parts for effective cleaning, which increases the user's maintenance workload and difficulty. Utility Model Content
[0005] The technical problem to be solved by this utility model is to overcome the defects of the existing technology. This utility model proposes an air conditioning anti-direct blowing air guide structure based on uniform airflow distribution to solve the problem that cleaning the air outlet may be troublesome due to the relatively closed structure of the air inlet cavity, and some parts need to be disassembled for effective cleaning.
[0006] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is: an air conditioning anti-direct-blow air guide structure based on uniform airflow distribution, including an air conditioning body, an air guide mechanism provided at the air outlet of the air conditioning body, the air conditioning body and the air guide mechanism being fixedly connected by bolts, the air guide mechanism including a straight plate, two sets of connecting buckles fixedly installed at both ends of the straight plate, the straight plate being fixedly connected to the air conditioning body through the connecting buckles, an arc plate fixedly installed at the lower end of the straight plate, multiple sets of air guide plates being rotatably installed inside the straight plate, a T-shaped groove one being opened inside one end of the straight plate, a T-shaped groove two being opened inside one end of the arc plate, and the T-shaped groove one and the T-shaped groove two being connected. The T-slots 1 and 2 are equipped with cleaning components that slide inside. When the air guiding mechanism is needed, it is fixed to the air conditioner body with bolts. The straight and curved plates guide the air blown out of the air conditioner body, preventing the airflow from blowing directly onto the human body. At the same time, the direction of airflow can be adjusted by adjusting the multiple sets of air guide plates inside the straight plate. After the air guiding mechanism has been used for a period of time, it needs to be cleaned regularly. By moving the cleaning components, they slide along the inner side of the straight and curved plates to remove impurities, reducing the inconvenience of disassembly and increasing the air guiding efficiency of the air conditioner body.
[0007] Preferably, a drive assembly is provided at the end of the air guide plate away from the cleaning component. The drive assembly is located inside the straight plate and is rotatably connected to the straight plate. A circular groove is provided at the upper end of the straight plate, which matches the drive assembly. The drive assembly includes a rotating buckle located at the upper end of the circular groove. A worm gear is fixedly installed at the lower end of the rotating buckle, and the worm gear matches the circular groove. A worm wheel is fixedly installed at one end of each set of air guide plates, and the worm gear meshes with the worm wheel. When it is necessary to adjust the air volume and air direction of the straight plate, the rotating buckle is rotated to drive the worm gear to rotate. The rotation of the worm gear drives the worm wheel and the air guide plate to rotate, thereby adjusting the opening size of the air guide plate and the straight plate, and changing the air direction of the air guide plate to improve the user's comfort.
[0008] Preferably, a collection box is slidably installed on the side of the curved plate near the air outlet of the air conditioner body. After the air guide mechanism has been used for a period of time, the cleaning component can be moved to slide along the inner side of the straight plate and the curved plate to clean the impurities.
[0009] Preferably, the cleaning component includes a squeezing plate located inside T-slot 1. A paddle is fixedly installed at one end of the squeezing plate, and a cleaning plate is fixedly installed on one side of the paddle. The cleaning plate is in close contact with the straight plate. Elastic elements are slidably installed inside T-slot 1 and T-slot 2. One end of the elastic element is fixedly connected to the curved plate, and the other end of the elastic element is fixedly connected to the squeezing plate. A cleaning roller is rotatably installed on the side of the cleaning plate that is in contact with the straight plate. After the air guide mechanism has been used for a period of time, by actuating the squeezing plate, the squeezing plate squeezes the elastic elements inside T-slot 1 and T-slot 2, thereby driving the cleaning plate to slide and clean along the inner side of the straight and curved plates. The cleaning roller cleans the impurities on the inner side of the straight and curved plates uniformly, reducing the inconvenience of disassembly. After the cleaning plate has finished cleaning, it is reset by the action of the elastic element, which is convenient for multiple uses.
[0010] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0011] This utility model proposes an air conditioning anti-direct-blow air guide structure based on uniform airflow distribution. When the air guide mechanism is needed, it is fixed to the air conditioning body with bolts. The air blown out by the air conditioning body is guided by straight and curved plates to prevent the airflow from blowing directly on the human body. At the same time, the direction of airflow can be adjusted by adjusting multiple sets of air guide plates inside the straight plate. After the air guide mechanism has been used for a period of time, it needs to be cleaned regularly. By moving the cleaning component, it slides along the inner side of the straight and curved plates to remove impurities, reducing the inconvenience of disassembly and increasing the air guiding efficiency of the air conditioning body. Attached Figure Description
[0012] The disclosure of this utility model is illustrated with reference to the accompanying drawings. It should be understood that the drawings are for illustrative purposes only and are not intended to limit the scope of protection of this utility model. In the drawings, the same reference numerals are used to refer to the same parts. Wherein:
[0013] Figure 1 The schematic diagram shows an overall structural schematic diagram according to one embodiment of the present invention;
[0014] Figure 2 The schematic diagram shows a structural diagram of an air conditioner body according to one embodiment of the present invention;
[0015] Figure 3 The schematic diagram shows a front view of the air guide mechanism according to one embodiment of the present invention.
[0016] Figure 4 The schematic diagram shows a rear view of the air guide mechanism according to one embodiment of the present invention;
[0017] Figure 5 The diagram schematically shows an enlarged view of Figure A according to one embodiment of the present invention;
[0018] Figure 6 The diagram schematically shows an enlarged view of Figure B according to one embodiment of the present invention;
[0019] Figure 7 The schematic diagram illustrates a portion of the structure of the air guide mechanism according to one embodiment of the present invention. Figure 1 ;
[0020] Figure 8 The schematic diagram illustrates a portion of the structure of the air guide mechanism according to one embodiment of the present invention. Figure 2 ;
[0021] Figure 9 The diagram schematically shows a back structure of a cleaning plate according to one embodiment of the present invention.
[0022] Numbered in the diagram: 1. Air conditioner body; 11. Bolt; 2. Air guide mechanism; 21. Connecting buckle; 22. Straight plate; 221. T-slot one; 222. Circular slot; 23. Arc plate; 231. T-slot two; 232. Collection box; 24. Drive assembly; 241. Rotating buckle; 242. Worm gear; 243. Worm wheel; 25. Cleaning assembly; 251. Squeezing plate; 252. Cleaning plate; 2521. Cleaning roller; 253. Paddle; 254. Elastic element; 26. Air guide plate. Detailed Implementation
[0023] It is readily understood that, based on the technical solution of this utility model, those skilled in the art can propose various interchangeable structural methods and implementations without altering the essential spirit of this utility model. Therefore, the following detailed embodiments and accompanying drawings are merely illustrative descriptions of the technical solution of this utility model and should not be considered as the entirety of this utility model or as limitations or restrictions on the technical solution of this utility model.
[0024] To further understand the content of this utility model, a detailed description of this utility model will be provided in conjunction with the accompanying drawings.
[0025] According to one embodiment of the present invention, in conjunction with Figure 1-6 , Figure 8The diagram illustrates an air conditioning anti-direct-blow airflow guide structure based on uniform airflow distribution, comprising an air conditioning body 1, an air guide mechanism 2 at the air outlet of the air conditioning body 1, and a fixed connection between the air conditioning body 1 and the air guide mechanism 2 via bolts 11. The air guide mechanism 2 includes a straight plate 22, with two sets of connecting buckles 21 fixedly installed at both ends of the straight plate 22, and the straight plate 22 is fixedly connected to the air conditioning body 1 via the connecting buckles 21. An arc-shaped plate 23 is fixedly installed at the lower end of the straight plate 22, and multiple sets of air guide plates 26 are rotatably installed inside the straight plate 22. A T-shaped groove 221 is formed inside one end of the straight plate 22, and a T-shaped groove 231 is formed inside one end of the arc-shaped plate 23. The T-shaped groove 221 and the T-shaped groove 231 are connected. Cleaning components 25 are slidably installed inside 221 and T-slot 231. When the air guide mechanism 2 needs to be used, it is fixed to the air conditioner body 1 by bolts 11. The air blown out of the air conditioner body 1 is guided by the straight plate 22 and the arc plate 23 to prevent the airflow from blowing directly on the human body. At the same time, the direction of airflow can be adjusted by adjusting the multiple sets of air guide plates 26 inside the straight plate 22. After the air guide mechanism 2 has been used for a period of time, it needs to be cleaned regularly. By moving the cleaning components 25, it can slide and clean along the inner side of the straight plate 22 and the arc plate 23 to remove impurities from the inner side of the straight plate 22 and the arc plate 23, reducing the inconvenience of disassembly and increasing the air guiding efficiency of the air conditioner body 1.
[0026] Combination Figure 5-8 As shown, a drive assembly 24 is provided at the end of the air guide plate 26 away from the cleaning assembly 25. The drive assembly 24 is located inside the straight plate 22 and is rotatably connected to the straight plate 22. A circular groove 222 is provided at the upper end of the straight plate 22, which matches the drive assembly 24. The drive assembly 24 includes a rotating buckle 241, which is located at the upper end of the circular groove 222. A worm gear 242 is fixedly installed at the lower end of the rotating buckle 241. The worm gear 242 and the circular groove 222 are connected. 2. Matching, each set of air guide plates 26 has a worm gear 243 fixedly installed at one end. The worm 242 meshes with the worm gear 243. When it is necessary to adjust the air volume and air guiding direction of the straight plate 22, the worm 242 is rotated by rotating the rotating buckle 241. The rotation of the worm 242 drives the worm gear 243 and the air guide plate 26 to rotate, thereby adjusting the opening size of the air guide plate 26 and the straight plate 22, and changing the air guiding direction of the air guide plate 26 to improve the user's comfort.
[0027] Combination Figure 3 , Figure 8 As shown, a collection box 232 is slidably installed on the side of the arc plate 23 near the air outlet of the air conditioner body 1. After the air guide mechanism 2 has been used for a period of time, the cleaning component 25 is moved to slide along the inner side of the straight plate 22 and the arc plate 23 for cleaning, and the cleaned impurities are collected and cleaned uniformly through the collection box 232.
[0028] Combination Figure 6-9 As shown, the cleaning assembly 25 includes a squeezing plate 251 located inside a T-slot 221. A paddle 253 is fixedly installed at one end of the squeezing plate 251, and a cleaning plate 252 is fixedly installed on one side of the paddle 253. The cleaning plate 252 is tightly fitted to the straight plate 22. An elastic element 254 is slidably installed inside the T-slot 221 and the T-slot 231. One end of the elastic element 254 is fixedly connected to the arc plate 23, and the other end of the elastic element 254 is fixedly connected to the squeezing plate 251. The cleaning plate 252 fits against one side of the straight plate 22. The cleaning roller 2521 is rotatably installed. After the air guide mechanism 2 has been used for a period of time, the squeezing plate 251 is moved so that the squeezing plate 251 squeezes the elastic element 254 inside the T-slot 1 221 and T-slot 231. This causes the cleaning plate 252 to slide and clean along the inner side of the straight plate 22 and the arc plate 23. The cleaning roller 2521 cleans the impurities on the inner side of the straight plate 22 and the arc plate 23 in a unified manner, reducing the inconvenience of disassembly. After the cleaning plate 252 has finished cleaning, it is reset by the action of the elastic element 254, which is convenient for multiple uses.
[0029] In this embodiment, when the air guide structure 2 is used, the air guide mechanism 2 is fixed to the air outlet of the air conditioner body 1 by bolts 11. The straight plate 22 and the arc plate 23 guide and prevent the airflow from blowing directly on the human body. Rotating the rotating buckle 241 drives the worm gear 242 to rotate, which in turn causes the worm wheel 243 to drive the air guide plate 26 to rotate to adjust the air volume and air guide direction. After a period of use, the pressing plate 251 is moved to drive the cleaning plate 252 and the cleaning roller 2521 to slide along the inner side of the straight plate 22 and the arc plate 23 to clean impurities. The cleaned impurities fall into the collection box 232. After cleaning, the elastic element 254 resets the cleaning component 25.
[0030] The technical scope of this utility model is not limited to the content described above. Those skilled in the art can make various modifications and variations to the above embodiments without departing from the technical concept of this utility model, and all such modifications and variations should fall within the protection scope of this utility model.
Claims
1. An air conditioner anti-direct blowing air guide structure based on airflow distribution uniformization, characterized in that: The air conditioner body is provided with a guide mechanism at an air outlet thereof, and the air conditioner body and the guide mechanism are fixedly connected through bolts; The guide mechanism comprises a straight plate, two groups of connecting buckles are fixedly installed at both ends of the straight plate, the straight plate is fixedly connected with the air conditioner body through the connecting buckles, an arc-shaped plate is fixedly installed at the lower end of the straight plate, a plurality of guide plates are rotatably installed in the straight plate, a T-shaped groove one is formed in one end of the straight plate, a T-shaped groove two is formed in one end of the arc-shaped plate, the T-shaped groove one and the T-shaped groove two are in communication, and a cleaning assembly is slidably installed in the T-shaped groove one and the T-shaped groove two.
2. The air conditioner direct-blow-preventing air guide structure based on airflow distribution uniformization according to claim 1, characterized in that: One end of the guide plate away from the cleaning assembly is provided with a driving assembly, the driving assembly is located in the straight plate, and the driving assembly is rotatably connected with the straight plate.
3. The air conditioning anti-direct blowing air guide structure based on airflow distribution uniformization according to claim 2, characterized in that: A circular groove is formed in the upper end of the straight plate, and the circular groove is matched with the driving assembly. The driving assembly comprises a rotating buckle, the rotating buckle is located at the upper end of the circular groove, a worm is fixedly installed at the lower end of the rotating buckle, the worm is matched with the circular groove, a worm wheel is fixedly installed at one end of each group of guide plates, and the worm is engaged with the worm wheel.
4. The air conditioning anti-direct blowing air guide structure based on airflow distribution uniformization according to claim 1, characterized in that: A collecting box is slidably installed on one side of the arc-shaped plate close to the air outlet of the air conditioner body.
5. The air conditioning anti-direct blowing air guide structure based on airflow distribution uniformization according to claim 1, characterized in that: The cleaning assembly comprises an extrusion plate, the extrusion plate is located in the T-shaped groove one, a push piece is fixedly installed at one end of the extrusion plate, a cleaning plate is fixedly installed on one side of the push piece, the cleaning plate is tightly attached to the straight plate, an elastic member is slidably installed in the T-shaped groove one and the T-shaped groove two, one end of the elastic member is fixedly connected with the arc-shaped plate, and the other end of the elastic member is fixedly connected with the extrusion plate.
6. The air conditioning anti-direct blowing air guide structure based on airflow distribution uniformization according to claim 5, characterized in that: A cleaning roller is rotatably installed on one side of the cleaning plate attached to the straight plate.
Citation Information
Patent Citations
Air deflector structure of air conditioner
CN222086245U