Automatic cleaning mechanism for internal air duct of bladeless fan
By designing an automatic cleaning mechanism in the leafless fan, and using the nozzle to spray cleaning liquid to clean up dust and impurities in the air duct, the problem of dust accumulation in the air duct affecting the performance of the fan is solved, automatic cleaning is achieved, and maintenance costs are reduced.
Patent Information
- Application Number
- CN202422938812.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-11-29
AI Technical Summary
After using the existing leafless fan for a period of time, dust and other impurities may accumulate in the air duct, affecting the performance and efficiency of the fan, and require regular manual cleaning, which increases maintenance and time costs.
Design an automatic cleaning mechanism for the internal air duct of the leafless fan, spraying cleaning liquid into the air duct through the nozzle to clean up the dust and impurities in the air duct and avoid manual cleaning.
The automatic cleaning function without manual cleaning is realized, which improves the performance and efficiency of the fan and reduces maintenance and time costs.
Smart Images

Figure CN223035376U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of bladeless fans, in particular to an automatic cleaning mechanism for the internal air duct of a bladeless fan. Background Art
[0002] A bladeless fan is a fan that utilizes jet engine and automotive turbocharging technologies to suck air through the bottom air intake holes and eject it in a circular trajectory by a hidden impeller to form an uninterrupted cold air flow.
[0003] The working principle of the current bladeless fan is to generate wind by accelerating the air flow in the air duct. After using it for a period of time, dust and other impurities may accumulate in the air duct, affecting the performance and efficiency of the fan. Regular manual cleaning is required to maintain its good operating state, increasing the maintenance cost and time cost.
[0004] Therefore, according to the problem that after using the above bladeless fan for a period of time, dust and other impurities may accumulate in the air duct, affecting the performance and efficiency of the fan, and regular manual cleaning is required to maintain its good operating state, increasing the maintenance cost and time cost, a bladeless fan with a self-cleaning mechanism can be designed. When the inside of the air duct needs to be cleaned, a cleaning liquid is sprayed into the air duct for cleaning, avoiding the accumulation of dust and other impurities in the air duct from affecting the performance and efficiency of the fan, without the need for manual cleaning, and it is convenient to use. Summary of the Utility Model
[0005] In order to overcome the problem in the prior art that the working principle of a bladeless fan is to generate wind by accelerating the air flow in the air duct. After using it for a period of time, dust and other impurities may accumulate in the air duct, affecting the performance and efficiency of the fan, and regular manual cleaning is required to maintain its good operating state, increasing the maintenance cost and time cost.
[0006] The technical solution of the utility model is: an automatic cleaning mechanism for the internal air duct of a bladeless fan, including a main body bottom plate, a protection component, a display component, a connection component, an air duct component, a storage component, a cleaning motor, a delivery pipe, a fixing bolt, a pumping and sending pump, a cleaning pipe, a mounting pipe and a nozzle. The surface of the main body bottom plate is provided with a protection component, the surface of the protection component is provided with a display component, the inside of the protection component is provided with a connection component, both ends of the connection component are provided with an air duct component, one side of the connection component is provided with a storage component, one end of the storage component is provided with a cleaning motor, both ends of the cleaning motor are provided with a delivery pipe, one end of the delivery pipe is provided with a fixing bolt, one end of the fixing bolt is provided with a pumping and sending pump, the inside of the pumping and sending pump is provided with a cleaning pipe, and the surface of the cleaning pipe is equidistantly provided with mounting pipes.
[0007] Preferably, the overall structure is installed through the main body bottom plate, the internal parts are protected through the protection component, the working program is controlled through the display component, the duct structure is ventilated through the connection component, the wind is conveyed through the duct component for blowing, the cleaning water is stored through the storage component, the delivery of the cleaning liquid is controlled through the cleaning motor, the cleaning structure is connected through the delivery pipe, the cleaning pipe is fixedly connected to both ends of the delivery pipe through the fixing bolt, the cleaning liquid is pumped through the pumping and delivery pump, the cleaning liquid is conveyed through the cleaning pipe to the duct structure, the installation pipe is installed through the installation pipe, the nozzle is fixedly connected through the installation pipe, and the nozzle is connected to the inside of the duct structure to spray the cleaning liquid to clean the inside of the duct structure.
[0008] Preferably, the protection component includes anti-slip rubber blocks, a main body shell, heat dissipation slot holes, a conveyor shell, and a duct shell. A number of anti-slip rubber blocks are equidistantly arranged on the bottom surface of the main body bottom plate, the main body shell is arranged on the top surface of the main body bottom plate, heat dissipation slot holes are opened on both sides of the main body shell, the conveyor shell is arranged on the top surface of the main body shell, and the duct shell is arranged in the middle of the conveyor shell.
[0009] Preferably, the display component includes a display slot and control buttons. A display slot is opened on the surface of the conveyor shell, and a number of control buttons are arranged on the surface of the conveyor shell.
[0010] Preferably, the connection component includes a circuit block, an air delivery pipe, a connection pipe, and a connection ring. The circuit block is arranged inside the main body shell, the air delivery pipe is arranged inside the circuit block, the connection pipe is arranged at the top of the air delivery pipe, and connection rings are arranged at both ends of the connection pipe.
[0011] Preferably, the duct component includes a fixing ring, a reinforcing pipe, and a main duct. The fixing ring is arranged on the surface of the connection ring, the reinforcing pipe is arranged inside the fixing ring, and the main duct is arranged inside the reinforcing pipe.
[0012] Preferably, the storage component includes a storage block and a water inlet. The storage block is arranged on one side of the air delivery pipe, and the water inlet is arranged on the surface of the storage block.
[0013] Preferably, one end of the installation pipe is provided with a nozzle.
[0014] The beneficial effects of the present utility model:
[0015] Compared with the traditional bladeless fan, after using for a period of time, dust and other impurities may accumulate in the duct, affecting the performance and efficiency of the fan, and manual cleaning is required regularly to maintain its good operating state, increasing the maintenance cost and time cost. This bladeless fan is provided with a self-cleaning structure. When the inside of the duct needs to be cleaned, the cleaning liquid is sprayed into the duct for cleaning, avoiding the accumulation of dust and other impurities in the duct from affecting the performance and efficiency of the fan, and manual cleaning is not required, which is convenient to use. Description of the Drawings
[0016] Figure 1 Shown is a first three-dimensional structural schematic diagram of the automatic cleaning mechanism for the internal air duct of the bladeless fan of the present utility model;
[0017] Figure 2 Shown is a second three-dimensional structural schematic diagram of the automatic cleaning mechanism for the internal air duct of the bladeless fan of the present utility model;
[0018] Figure 3 Shown is a side three-dimensional structural schematic diagram of the automatic cleaning mechanism for the internal air duct of the bladeless fan of the present utility model;
[0019] Figure 4 Shown is a partial three-dimensional structural schematic diagram of the automatic cleaning mechanism for the internal air duct of the bladeless fan of the present utility model;
[0020] Explanation of reference numerals: 1, main body bottom plate; 201, anti-slip rubber block; 202, main engine housing; 203, heat dissipation slot holes; 204, conveyor housing; 205, air duct housing; 301, display slot; 302, control button; 401, circuit block; 402, air supply pipe; 403, connecting pipe; 404, connecting ring; 501, fixing ring; 502, reinforcing pipe; 503, main air duct; 601, storage block; 602, water inlet; 701, cleaning motor; 702, conveying pipe; 703, fixing bolt; 704, pumping and suction pump; 705, cleaning pipe; 706, installation pipe; 707, spray head. Detailed implementation manners
[0021] The present utility model will be further described below with reference to the accompanying drawings and embodiments.
[0022] Please refer to Figure 1 , the present utility model provides an embodiment: an automatic cleaning mechanism for the internal air duct of a bladeless fan, including a main body bottom plate 1, a protection component, a display component, a connection component, an air duct component, a storage component, a cleaning motor 701, a conveying pipe 702, a fixing bolt 703, a pumping and suction pump 704, a cleaning pipe 705, an installation pipe 706 and a spray head 707. A protection component is arranged on the surface of the main body bottom plate 1, a display component is arranged on the surface of the protection component, a connection component is arranged inside the protection component, air duct components are arranged at both ends of the connection component, a storage component is arranged on one side of the connection component, a cleaning motor 701 is arranged at one end of the storage component, conveying pipes 702 are arranged at both ends of the cleaning motor 701, a fixing bolt 703 is arranged at one end of the conveying pipe 702, a pumping and suction pump 704 is arranged at one end of the fixing bolt 703, a cleaning pipe 705 is arranged inside the pumping and suction pump 704, and installation pipes 706 are equidistantly arranged on the surface of the cleaning pipe 705.
[0023] Please refer to Figures 2-4, in this embodiment, the protection component includes anti-slip rubber blocks 201, a main housing 202, heat dissipation slots 203, a conveyor housing 204, and an air duct housing 205. A number of anti-slip rubber blocks 201 are equidistantly arranged on the bottom surface of the main body bottom plate 1. The main housing 202 is arranged on the top surface of the main body bottom plate 1. Heat dissipation slots 203 are opened on both sides of the main housing 202. The conveyor housing 204 is arranged on the top surface of the main housing 202. The air duct housing 205 is arranged in the middle of the conveyor housing 204. When in use, the support structure is strengthened by the anti-slip rubber blocks 201 to prevent sliding. The integrated circuit is protected by the main housing 202. Heat dissipation is carried out through the heat dissipation slots 203. The air supply module is integrated by the conveyor housing 204. The fan structure is installed through the air duct housing 205. The display component includes a display slot 301 and control buttons 302. The display slot 301 is opened on the surface of the conveyor housing 204. A number of control buttons 302 are arranged on the surface of the conveyor housing 204. When in use, the working information is displayed through the display slot 301, and the working program is set and controlled through the control buttons 302. The connection component includes a circuit block 401, an air supply pipe 402, a connecting pipe 403, and a connecting ring 404. The circuit block 401 is arranged inside the main housing 202. The air supply pipe 402 is arranged inside the circuit block 401. The connecting pipe 403 is arranged at the top of the air supply pipe 402. Connecting rings 404 are arranged at both ends of the connecting pipe 403. When in use, the fan motor structure is integrally installed through the circuit block 401. The wind force is centrally conveyed through the air supply pipe 402. The wind force is divided through the connecting pipe 403. The air duct structure is installed through the connecting rings 404.
[0024] The air duct component includes a fixing ring 501, a reinforcing pipe 502, and a main air duct 503. The fixing ring 501 is arranged on the surface of the connecting ring 404. The reinforcing pipe 502 is arranged inside the fixing ring 501. The main air duct 503 is arranged inside the reinforcing pipe 502. When in use, the reinforcing pipe 502 is fixed inside the connecting ring 404 through the fixing ring 501. The main air duct 503 is fixed through the reinforcing pipe 502 to connect the air duct structure. Air is supplied through the main air duct 503. The storage component includes a storage block 601 and a water inlet 602. The storage block 601 is arranged on one side of the air supply pipe 402. The water inlet 602 is arranged on the surface of the storage block 601. When in use, the cleaning water is stored through the storage block 601, and the cleaning water is added in time through the water inlet 602 to assist in automatic cleaning. One end of the installation pipe 706 is provided with a nozzle 707.
[0025] When working, first, reinforce the support structure through the anti-slip rubber block 201 to prevent sliding, protect the integrated circuit through the main machine case 202, dissipate heat through the heat dissipation slots 203, integrate the air supply module through the conveyor case 204, install the fan structure through the air duct case 205, display the working information through the display slot 301, control the set working procedure through the control button 302, integrally install the fan motor structure through the circuit block 401, centrally convey the wind force through the air supply pipe 402, shunt the wind force through the connecting pipe 403, and install and connect the air duct structure through the connecting ring 404;
[0026] Then, fix the reinforcement pipe 502 inside the connecting ring 404 through the fixing ring 501, fix the main air duct 503 through the reinforcement pipe 502, connect the air duct structure, supply air through the main air duct 503, store the cleaning water through the storage block 601, add the cleaning water in time through the water inlet 602 to assist automatic cleaning, and one end of the installation pipe 706 is provided with a nozzle 707.
[0027] Through the above steps, install the overall structure through the main body bottom plate 1, protect the internal parts through the protection component, control the working procedure through the display component, connect the air duct structure through the connecting component, convey the wind force to blow through the air duct component, store the cleaning water through the storage component, control the delivery of the cleaning liquid through the cleaning motor 701, connect the cleaning structure through the delivery pipe 702, fix and connect the cleaning pipe 705 at both ends of the delivery pipe 702 through the fixing bolts 703, pump and send the cleaning liquid through the pumping and sending pump 704, convey the cleaning liquid to the air duct structure through the cleaning pipe 705, install the installation pipe 706 through the installation pipe 706, fixedly connect the nozzle 707 through the installation pipe 706, and connect to the inside of the air duct structure through the nozzle 707 to spray the cleaning liquid to clean the inside of the air duct structure.
[0028] The embodiments of the present invention have been described in detail above in conjunction with the accompanying drawings. However, the present invention is not limited to the above embodiments, and various changes can be made without departing from the gist of the present invention within the scope of knowledge possessed by those skilled in the art.
Claims
1. An automatic cleaning mechanism for an internal air duct of a bladeless fan, comprising a main body bottom plate (1); characterized in that: The invention also comprises a protection component, a display component, a connection component, an air duct component, a storage component, a cleaning motor (701), a delivery pipe (702), a fixing bolt (703), a pumping pump (704), a cleaning pipe (705), a mounting pipe (706) and a nozzle (707). The surface of the main body bottom plate (1) is provided with a protection component, the surface of the protection component is provided with a display component, the interior of the protection component is provided with a connection component, both ends of the connection component are provided with air duct components, one side of the connection component is provided with a storage component, one end of the storage component is provided with a cleaning motor (701), both ends of the cleaning motor (701) are provided with a delivery pipe (702), one end of the delivery pipe (702) is provided with a fixing bolt (703), one end of the fixing bolt (703) is provided with a pumping pump (704), the interior of the pumping pump (704) is provided with a cleaning pipe (705), and the surface of the cleaning pipe (705) is provided with mounting pipes (706) equidistantly.
2. The automatic cleaning mechanism for the internal air duct of a bladeless fan according to claim 1, characterized in that: The protective component comprises an anti-skid rubber block (201), a main housing (202), heat dissipation slots (203), a conveyor housing (204) and an air duct housing (205); a plurality of anti-skid rubber blocks (201) are equidistantly arranged on the bottom surface of the main body bottom plate (1); the main housing (202) is arranged on the top surface of the main body bottom plate (1); heat dissipation slots (203) are provided on both sides of the main housing (202); a conveyor housing (204) is arranged on the top surface of the main housing (202); and an air duct housing (205) is arranged in the middle of the conveyor housing (204).
3. The automatic cleaning mechanism for the internal air duct of a bladeless fan according to claim 2, characterized in that: The display assembly comprises a display slot (301) and a control button (302). The display slot (301) is provided on the surface of the conveyor housing (204), and a plurality of control buttons (302) are provided on the surface of the conveyor housing (204).
4. The automatic cleaning mechanism for the internal air duct of a bladeless fan according to claim 3, characterized in that: The connection assembly comprises a circuit block (401), an air supply pipe (402), a connection pipe (403) and a connection ring (404); the circuit block (401) is arranged inside the main housing (202); the air supply pipe (402) is arranged inside the circuit block (401); the connection pipe (403) is arranged at the top of the air supply pipe (402); and connection rings (404) are arranged at both ends of the connection pipe (403).
5. The automatic cleaning mechanism for the internal air duct of a bladeless fan according to claim 4, characterized in that: The air duct assembly comprises a fixing ring (501), a reinforcement tube (502) and an air duct main pipe (503); the fixing ring (501) is arranged on the surface of the connecting ring (404); the reinforcement tube (502) is arranged inside the fixing ring (501); and the air duct main pipe (503) is arranged inside the reinforcement tube (502).
6. The automatic cleaning mechanism for the internal air duct of a bladeless fan according to claim 4, characterized in that: The storage component comprises a storage block (601) and a water inlet (602); the storage block (601) is arranged on one side of the air supply pipe (402); and the water inlet (602) is arranged on the surface of the storage block (601).
7. The automatic cleaning mechanism for the internal air duct of a bladeless fan according to claim 6, characterized in that: A nozzle (707) is provided at one end of the mounting tube (706).