Intelligent dustbin capable of controlling mosquito propagation

Smart trash can solve the problems of mosquito drop and adhesion through mosquito killing boxes, disposal boxes and cleaning devices, realize mosquito control, resource conservation, and purify the environment.

CN223200771UActive Publication Date: 2025-08-08YANTAI AIZHIYUAN ENERGY SCI & TECH CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202423088174.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-14
Publication Date
2025-08-08
Estimated Expiration
2034-12-14

AI Technical Summary

Technical Problem

In the existing mosquito-killing trash can, the area of the mosquito-killing power grid is larger than the garbage inlet, and some mosquitoes need to be cleaned separately when they fall off. The adhesion of mosquito corpses affects the mosquito-killing effect and cannot effectively control the spread of mosquitoes.

Method used

Design a smart trash can, including a mosquito-killing box, a disposal box and a cleaning device. It uses mosquito-attracting lamps to lure mosquitoes, kill mosquitoes with mosquito-killing power grids, disinfection of sterilization lamps, and automatically cleans mosquito corpses. Combined with control modules and solar power supply, it realizes mosquito control and resource conservation.

Benefits of technology

Effectively kill mosquitoes, automatically clean up mosquito corpses, prevent the spread of bacteria, save energy, purify the environment, and improve the use effect.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223200771U_ABST
    Figure CN223200771U_ABST
Patent Text Reader

Abstract

The utility model belongs to the technical field of garbage cans, and particularly relates to an intelligent garbage can capable of controlling mosquito spreading, which comprises a garbage storage box, a mosquito killing box and a disposal box are fixedly arranged above the garbage storage box, a mosquito-lured lamp is fixedly mounted in the mosquito killing box, a light hole is formed in the side wall of the mosquito killing box, and a concentric-square-shaped sealing plate is arranged at the bottom of the mosquito killing box. The disposal box is fixedly arranged below the mosquito eradication box, the top of the disposal box is open, the disposal box is communicated with the mosquito eradication box through gaps of the mosquito eradication power grid, a discharging opening is formed in one end of the bottom wall of the disposal box, and a germicidal lamp and a cleaning device are further arranged in the disposal box; according to the garbage can, the germicidal lamp is arranged to sterilize and disinfect mosquito corpses, the cleaning device is further arranged, the mosquito corpses are cleaned into the garbage storage box in time, and mosquitoes can be effectively prevented from spreading germs.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model belongs to the technical field of garbage bins, and in particular relates to an intelligent garbage bin for controlling the spread of mosquitoes. Background Art

[0002] Currently, common household waste bins not only have the function of classifying and storing garbage, but also have integrated advertising light boxes for advertising. However, the smell of garbage and the light of the advertising light boxes have a certain attraction to mosquitoes, making these types of waste bins easily become breeding grounds for mosquitoes in summer, affecting the urban environment. Therefore, some cities use waste bins with mosquito repellent functions.

[0003] The utility model patent with application number 202120263386.0 discloses a solar trash can with mosquito-killing function. The trash can integrates a solar power supply module, a mosquito-killing module and a sterilization module. The mosquito-killing module attracts and kills mosquitoes through the cooperation of mosquito-attracting lamps and mosquito-killing electric nets. The sterilization module sterilizes the trash can to prevent the spread of pathogens. The solar power supply module can assist in power supply, which is more environmentally friendly.

[0004] Since the mosquito-killing module uses a mosquito-killing electric net, the area of the mosquito-killing electric net is larger than the area of the garbage inlet on the top of the trash can. Some mosquitoes will fall outside the garbage inlet and need to be cleaned separately. In addition, some mosquito corpses will stick to the mosquito-killing electric net and cannot fall off, which will affect the mosquito-killing effect over time. Utility Model Content

[0005] The main technical problem to be solved by the present invention is to provide a smart trash can for controlling the spread of mosquitoes, which can lure mosquitoes to approach, kill and collect the mosquitoes, thereby controlling the spread of mosquitoes, and can automatically clean up the mosquito corpses and intermittently sterilize the mosquito corpses.

[0006] In order to solve the above technical problems, the present invention provides the following technical solutions:

[0007] A smart trash can for controlling the spread of mosquitoes includes a trash storage box, a mosquito killing box and a disposal box fixedly arranged above the trash storage box, a mosquito attracting lamp fixedly installed in the mosquito killing box, a light-transmitting hole opened on the side wall of the mosquito killing box, a U-shaped sealing plate at the bottom of the mosquito killing box, a mosquito killing electric net fixedly installed at the middle opening of the sealing plate, a disposal box fixedly arranged below the mosquito killing box, an opening at the top of the disposal box, which is connected to the mosquito killing box through the gap in the mosquito killing electric net, a drop opening opened at one end of the bottom wall of the disposal box, the disposal box is connected to the trash storage box through the drop opening, and a sterilization lamp and a cleaning device are also provided in the disposal box.

[0008] The following is a further optimization of the above technical solution by the present invention:

[0009] The cleaning device includes a first conveying roller, a second conveying roller and an intermediate conveying roller. The second conveying roller is arranged above the blanking port, the first conveying roller is arranged at the other end away from the blanking port, and the intermediate conveying roller is arranged between the first conveying roller and the second conveying roller. Both ends of the conveying roller are rotatably connected to the bottom wall of the disposal box through bearing seats. A cleaning belt is transmission-connected to the conveying roller, and a group of bristles is fixedly connected to the cleaning belt.

[0010] Further optimization: the length of the brush is adapted to the height of the mosquito-killing net, and the width of the cleaning belt and the brush is adapted to the width of the mosquito-killing net.

[0011] Further optimization: a drive motor is fixedly installed outside the disposal box, the first conveying roller is transmission-connected to the drive motor, and a protective cover is provided on the outside of the drive motor.

[0012] Further optimization: The germicidal lamp is fixedly installed on the bottom surface of the bottom cover of the mosquito killing box and is arranged parallel to the length direction of the disposal box.

[0013] Further optimization: the mosquito-attracting lamp is fixedly installed on the top wall of the mosquito-killing box near the middle position, multiple mosquito-attracting lamps are arranged vertically at intervals, and mosquito-attracting boxes are fixedly installed at intervals on the sealing plate, and mosquito attractants are placed in the mosquito-attracting boxes.

[0014] Further optimization: A control module is also provided in the mosquito killing box, which sends a control signal to control the driving motor and the mosquito attracting lamp to work intermittently at the same time.

[0015] Further optimization: a garbage inlet is provided on the front side of the garbage storage box, a rain shield is fixedly provided above the garbage inlet, and an openable door is provided on the rear side of the garbage storage box.

[0016] Further optimization: an advertising light box is fixedly connected above the mosquito repellent box, two mounting brackets are fixedly connected above the advertising light box, solar panels are hinged on the mounting brackets, a battery compartment is provided at the bottom of the garbage storage box, and a detachable battery is fixed in the battery compartment.

[0017] Further optimization: vertical beams are fixedly connected on both sides of the garbage storage box, a smoke extinguisher is fixedly installed on the side of one vertical beam, the vertical beams on both sides extend upward to the upper surface of the advertising light box, and the bottom of the vertical beams on both sides are fixedly connected with mounting plates.

[0018] The utility model adopts the above technical solution, which has the following beneficial effects:

[0019] The utility model discloses a garbage bin provided with a mosquito killing box, which can lure and kill mosquitoes, effectively solving the problem of a large number of mosquitoes near the garbage bin and purifying the urban environment.

[0020] The utility model provides a disposal box under the mosquito killing box. In addition to a germicidal lamp in the disposal box to sterilize the mosquito corpses, a cleaning device is also provided to clean the mosquito corpses into the garbage storage box in time to prevent mosquitoes from spreading germs. At the same time, the cleaning device can also clean the mosquito corpses adhered to the mosquito killing net, thereby improving the use effect.

[0021] The utility model controls the intermittent operation of the electrical components through the control module, and at the same time provides a battery to store the electricity generated by the solar panel, which is used to power the electrical components inside the trash can, further saving energy consumption when the trash can is used, and being more environmentally friendly.

[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 A three-dimensional diagram of the overall structure of an embodiment of the present utility model;

[0024] Figure 2 This is a front view of the overall structure of an embodiment of the utility model;

[0025] Figure 3 This is a left side view of the overall structure of an embodiment of the utility model;

[0026] Figure 4 This is a cross-sectional view of the mosquito killing box and disposal box structure of the utility model;

[0027] Figure 5 for Figure 4 A partial enlarged view of point A in the middle;

[0028] Figure 6 This is a three-dimensional diagram of the overall structure of the cleaning device of the present invention.

[0029] In the figure: 1. Garbage storage box; 2. Garbage input port; 3. Rain shield; 4. Mosquito killer box; 5. Light hole; 6. Mosquito trap lamp; 7. Mosquito trap box; 8. Mosquito killer grid; 9. Closing board; 10. Smoke killer box; 11. Disposal box; 12. Dropping port; 13. Germicidal lamp; 14. Cleaning device; 1401. First conveyor roller; 1402. Second conveyor roller; 1403. Intermediate conveyor roller; 1404. Bearing seat; 1405. Drive motor; 1406. Cleaning belt; 1407. Brush; 15. Protective cover; 16. Advertising light box; 17. Mounting bracket; 18. Solar panel; 19. Battery compartment; 20. Vertical beam; 21. Mounting plate. DETAILED DESCRIPTION

[0030] like Figure 1-6As shown, a smart trash can for controlling the spread of mosquitoes includes one or more garbage storage boxes 1 connected side by side for garbage classification storage. A garbage inlet 2 is provided on the front side of the garbage storage box 1, and a rain shield 3 is fixedly provided above the garbage inlet 2 to prevent rainwater from entering the garbage storage box 1. An openable door is provided on the rear side of the garbage storage box 1 to facilitate cleaning of the interior of the box.

[0031] A disposal box 11 and a mosquito killing box 4 are fixedly arranged above the garbage storage box 1 from bottom to top. A drop opening 12 is opened at one end of the bottom wall of the disposal box 11. The disposal box 11 is connected with the garbage storage box 1 through the drop opening 12. The mosquito corpses fall into the garbage storage box 1 through the drop opening 12, and there is no need to clean the disposal box 11 separately.

[0032] like Figure 4-5 As shown, a plurality of light-transmitting holes 5 are provided on the side wall of the mosquito-killing box 4, and a mosquito-attracting lamp 6 is fixedly installed near the middle position on the top wall of the mosquito-killing box 4. The plurality of mosquito-attracting lamps 6 are vertically arranged at intervals to prevent mosquitoes from adhering to the lamp tubes. The light of the mosquito-attracting lamps 6 is scattered to the outside through the light-transmitting holes 5, and the mosquitoes around the trash can are attracted into the mosquito-killing box 4. The bottom of the mosquito-killing box 4 is a U-shaped sealing plate 9, and mosquito-attracting boxes 7 are fixedly installed on the sealing plate 9 at intervals. Mosquito-attracting agents are placed in the mosquito-attracting boxes 7 to assist the mosquito-attracting lamps 6 in attracting mosquitoes and enhance the use effect.

[0033] Since there are fewer mosquitoes during the day and they are not sensitive to light, in order to save electricity resources, in this embodiment, a control module is also provided in the mosquito killing box 4. The control module is the existing technology and controls the mosquito attracting lamp 6 to turn on at a predetermined time according to a pre-set timing program.

[0034] In addition to this embodiment, the control module can also be electrically connected to a light sensor. When the light is weak at night or on rainy days, the light sensor feeds back a signal to the control module to control the mosquito trap 6 to turn on, thereby solving the problem of more mosquitoes in rainy weather.

[0035] A mosquito-killing electric net 8 is fixedly installed at the middle opening of the sealing plate 9. The top of the disposal box 11 is open and is connected to the mosquito-killing box 4 through the gaps in the mosquito-killing electric net 8. When mosquitoes enter the mosquito-killing box 4, they are killed by contacting the mosquito-killing electric net 8, and the mosquito corpses fall into the disposal box 11 through the gaps in the mosquito-killing electric net 8.

[0036] Two sterilization lamps 13 are arranged parallel to each other along the length direction of the disposal box 11. The length of the sterilization lamp 13 is adapted to the length of the disposal box 11. The sterilization lamp 13 is an ultraviolet sterilization lamp, which is used to sterilize the environment in the disposal box 11 to prevent the dead mosquitoes from carrying germs and spreading them. The sterilization lamp 13 is fixedly mounted on the bottom surface of the U-shaped sealing plate 9 at the bottom of the mosquito killing box 4. The sealing plate 9 plays a certain protective role on the sterilization lamp 13 to prevent the dead mosquitoes from falling directly on the sterilization lamp 13 and affecting the sterilization effect.

[0037] like Figure 6 As shown, a cleaning device 14 is also provided in the disposal box 11, and the cleaning device 14 includes a group of conveying rollers, which are arranged parallel to the width direction of the disposal box 11, including a first conveying roller 1401, a second conveying roller 1402 and an intermediate conveying roller 1403. The second conveying roller 1402 is arranged above the blanking port 12, and the first conveying roller 1401 is arranged at the other end away from the blanking port 12. According to the distance between the first conveying roller 1401 and the second conveying roller 1402, one or more intermediate conveying rollers 1403 are arranged in the middle. Both ends of each conveying roller are rotatably connected to the bottom wall of the disposal box 11 through a bearing seat 1404. A cleaning belt 1406 is transmission-connected to the conveying roller, and a group of bristles 1407 are fixedly connected to the cleaning belt 1406.

[0038] An installation platform is fixedly provided outside the disposal box 11, and a drive motor 1405 is fixedly installed on the installation platform. A circular hole is opened on the side wall of the disposal box 11 at the position corresponding to the first conveying roller 1401. The drive motor 1405 is connected to the first conveying roller 1401 through the circular hole, and is used to drive the first conveying roller 1401 to rotate, thereby driving the cleaning belt 1406 to move. A protective cover 15 is provided on the outside of the drive motor 1405 to prevent mosquitoes or rainwater from entering the drive motor 1405 and affecting its normal operation.

[0039] In order to further save power resources, the driving motor 1405 is electrically connected to the control module, and the control module sends a control signal to control the driving motor 1405 and the mosquito trap 6 to be powered at the same time.

[0040] The length of the bristles 1407 on the cleaning belt 1406 is adapted to the height of the mosquito-killing net 8. When the bristles 1407 move to the top of the conveying roller, they are used to clean the mosquito corpses adhered to the mosquito-killing net 8. When the bristles 1407 move to the bottom of the conveying roller, they are used to sweep the mosquito corpses that fall on the bottom wall of the disposal box 11 into the drop port 12. During installation, it should be ensured that the transmission roller is located in the middle position in the upper and lower directions of the disposal box 11, so that the bristles 1407 can be in close contact with both the mosquito-killing net 8 and the bottom wall of the disposal box 11 to ensure the cleaning effect.

[0041] In order to ensure that the bristles 1407 can clean every corner of the mosquito-killing net 8, the width of the cleaning belt 1406 and the bristles 1407 is adapted to the width of the mosquito-killing net 8.

[0042] In addition to this embodiment, the bristles 1407 can also be spread all over the surface of the cleaning belt 1406 to further improve the use effect.

[0043] The conveying roller is cylindrical with protruding edges at both ends. The height of the protruding edges is adapted to the thickness of the cleaning belt 1406, and the inner width of the two protruding edges is adapted to the width of the cleaning belt 1406 to prevent the cleaning belt 1406 from moving along the axial direction of the conveying roller.

[0044] An advertising light box 16 is fixedly connected above the mosquito repellent box 4 for advertising and increasing municipal revenue. Two mounting brackets 17 are fixedly connected above the advertising light box 16. A solar panel 18 is hinged on the mounting bracket 17. The angle of the solar panel 18 is adjusted during installation to adapt to the direction of sunlight.

[0045] A battery compartment 19 is provided at the bottom of the garbage storage box 1. A plurality of batteries are detachably fixed in the battery compartment 19. The batteries store the electricity generated by the solar panel 18 and are used to power the electrical devices inside the garbage box, thereby saving energy consumption when the garbage box is used and being more environmentally friendly.

[0046] There are vertical beams 20 fixedly connected on both sides of the garbage storage box 1, and a cigarette extinguisher 10 is fixedly installed on the side of one side of the vertical beam 20. The vertical beams 20 on both sides extend upward to the upper surface of the advertising light box 16 to enhance the overall structural strength of the garbage box. The bottom of the vertical beams 20 on both sides are fixedly connected with mounting plates 21 for easy installation.

[0047] For ordinary technicians in this field, based on the teachings of this utility model, without departing from the principles and spirit of this utility model, changes, modifications, substitutions and variations made to the implementation methods are still within the scope of protection of this utility model.

Claims

1. A smart trash can for controlling the spread of mosquitoes, comprising a trash storage box (1), a mosquito killing box (4) and a disposal box (11) fixedly arranged above the trash storage box (1), a mosquito attracting lamp (6) fixedly installed in the mosquito killing box (4), a light-transmitting hole (5) opened on the side wall of the mosquito killing box (4), a U-shaped sealing plate (9) at the bottom of the mosquito killing box (4), and a mosquito killing electric net (8) fixedly installed at the middle opening of the sealing plate (9), characterized in that: The disposal box (11) is fixedly arranged below the mosquito killing box (4). The top of the disposal box (11) is open and communicates with the mosquito killing box (4) through the gap of the mosquito killing electric net (8). A drop opening (12) is opened at one end of the bottom wall of the disposal box (11). The disposal box (11) is communicated with the garbage storage box (1) through the drop opening (12). A sterilization lamp (13) and a cleaning device (14) are also provided in the disposal box (11).

2. The intelligent trash can for controlling mosquito spread according to claim 1, characterized in that: The cleaning device (14) includes a first conveying roller (1401), a second conveying roller (1402) and an intermediate conveying roller (1403), wherein the second conveying roller (1402) is arranged above the blanking port (12), the first conveying roller (1401) is arranged at the other end away from the blanking port (12), and the intermediate conveying roller (1403) is arranged between the first conveying roller (1401) and the second conveying roller (1402), and both ends of the conveying roller are rotatably connected to the bottom wall of the disposal box (11) through a bearing seat (1404), and a cleaning belt (1406) is connected to the conveying roller in a transmission manner, and a group of bristles (1407) is fixedly connected to the cleaning belt (1406).

3. The intelligent trash can for controlling mosquito spread according to claim 2, characterized in that: The length of the bristles (1407) is adapted to the height of the mosquito-killing net (8), and the width of the cleaning belt (1406) and the bristles (1407) is adapted to the width of the mosquito-killing net (8).

4. The intelligent trash can for controlling mosquito spread according to claim 3, characterized in that: A drive motor (1405) is fixedly installed outside the disposal box (11), the first conveying roller (1401) is transmission-connected to the drive motor (1405), and a protective cover (15) is provided outside the drive motor (1405).

5. The intelligent trash can for controlling mosquito spread according to claim 4, characterized in that: The germicidal lamp (13) is fixedly mounted on the bottom surface of the bottom sealing plate (9) of the mosquito killing box (4) and is arranged parallel to the length direction of the disposal box (11).

6. The intelligent trash can for controlling mosquito spread according to claim 5, characterized in that: The mosquito-attracting lamp (6) is fixedly mounted on the top wall of the mosquito-killing box (4) near the middle position, and a plurality of mosquito-attracting lamps (6) are vertically arranged at intervals. Mosquito-attracting boxes (7) are fixedly mounted at intervals on the sealing plate (9), and mosquito attractants are placed in the mosquito-attracting boxes (7).

7. The intelligent trash can for controlling mosquito spread according to claim 6, characterized in that: A control module is also provided in the mosquito killing box (4), and the control module sends a control signal to control the driving motor (1405) and the mosquito attracting lamp (6) to work intermittently at the same time.

8. The intelligent trash can for controlling mosquito spread according to claim 7, characterized in that: A garbage input port (2) is provided on the front side of the garbage storage box (1), a rain shield (3) is fixedly provided above the garbage input port (2), and an openable door is provided on the rear side of the garbage storage box (1).

9. The intelligent trash can for controlling mosquito spread according to claim 8, characterized in that: An advertising light box (16) is fixedly connected above the mosquito killing box (4), two mounting brackets (17) are fixedly connected above the advertising light box (16), and a solar power generation panel (18) is hinged on the mounting bracket (17). A battery compartment (19) is provided at the bottom of the garbage storage box (1), and a plurality of batteries are detachably fixed in the battery compartment (19).

10. The intelligent trash can for controlling mosquito spread according to claim 9, characterized in that: Vertical beams (20) are fixedly connected to both sides of the garbage storage box (1), a cigarette extinguisher (10) is fixedly installed on the side of one vertical beam (20), the vertical beams (20) on both sides extend upward to the upper surface of the advertising light box (16), and the bottoms of the vertical beams (20) on both sides are respectively fixedly connected to mounting plates (21).

Citation Information

Patent Citations

  • Solar garbage can with mosquito eradication function

    CN214494351U