Thermal suction mosquito and fly catching device
By plating a conductive film on the mesh of the vacuum cleaner and heating, the problems of mosquitoes and flies flying and escaping in the vacuum cleaner are solved, and the dual functions of dust removal and thermal absorption of mosquitoes and flies are realized.
Patent Information
- Application Number
- CN202421598759.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-08
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-07-08
AI Technical Summary
Existing hand-held vacuum cleaners continue to fly when they suck mosquitoes and flies and may survive or escape in the filter, resulting in incomplete cleaning.
A heat-absorbing mosquito and fly trap is designed. By placing a conductive film on the mesh of the vacuum cleaner and heating it after power-on, the heated mesh is used to kill insects or break wings, thereby achieving the function of effectively catching mosquitoes and flies.
It effectively solves the problem of mosquitoes and flies flying and escaping in the vacuum cleaner, ensures the cleanliness of the vacuum cleaner, and makes the vacuum cleaner both dust removal and heat absorption of mosquitoes and flies.
Smart Images

Figure CN222853008U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a mosquito and fly trap, in particular to a heat-suction mosquito and fly trap. Background Art
[0002] Known handheld vacuum cleaners mainly generate suction through an electric motor to suck air and dust into a filter system in the vacuum cleaner through a suction pipe to separate dust from the air and finally release clean air into the environment.
[0003] However, when the handheld vacuum cleaner sucks up mosquitoes and flies, the mosquitoes and flies will continue to fly, and may survive in the filter and leave residues or dirt, and then escape after the vacuum cleaner is turned on. Therefore, after observing the above shortcomings, the inventor of this case believes that the existing mosquito and fly traps need to be improved, and thus the present utility model is produced. Utility Model Content
[0004] The utility model aims to provide a heat-suction mosquito and fly trap, which can be arranged in a suction-type device and achieves the effect of killing insects and breaking wings in a heat-suction manner.
[0005] To achieve the above-mentioned purpose, the heat-suction mosquito and fly trap provided by the utility model is arranged on a vacuum cleaner and includes a plurality of mesh sheets, the mesh sheets include a mesh body, the plurality of mesh bodies are arranged side by side with gaps between them, and the surface of the mesh body is plated with a conductive film, which is a film that generates heat when energized, each mesh body is electrically connected to a first conductive part, and the outer periphery of each mesh body is provided with a frame, the frame is provided with a second conductive part, and the second conductive part is electrically connected to the mesh body.
[0006] As a preferred solution, a through hole is opened in the center of each mesh body, and the first conductive parts are arranged in a plurality of the through holes.
[0007] As a preferred solution, a connection block and a connection groove are respectively provided on the upper and lower sides of the frame, and the connection block of each frame is snap-connected with the connection groove of the adjacent frame so that the plurality of mesh sheets are overlapped with each other.
[0008] As a preferred solution, the mesh is made of plastic or ceramic.
[0009] As a preferred solution, the conductive film is made of iron.
[0010] As a preferred solution, the vacuum cleaner has a connecting pipe, which is used to connect to a vacuum pipe of a vacuum assembly, and the plurality of mesh sheets are arranged in the connecting pipe or in the vacuum pipe.
[0011] As a preferred solution, the vacuum cleaner has a vacuum cleaner power supply, and the vacuum cleaner power supply is electrically connected to the first conductive part and the second conductive part.
[0012] As a preferred solution, the first conductive part is provided with a battery and a brake switch, and the battery is electrically connected to the first conductive part and a plurality of the second conductive parts.
[0013] The heat-suction mosquito and fly trap provided by the utility model is to energize the conductive film on the net body to generate heat, whereby when the vacuum cleaner sucks up mosquitoes and flies, the mosquitoes and flies will pass through the heated net body and can be killed or have their wings broken, thus overcoming the defects of the known vacuum cleaners that the mosquitoes and flies will continue to fly and survive in the filter, and escape after the vacuum cleaner is turned on, and the vacuum cleaner has the functions of both dust removal and heat-suction mosquito and fly trapping. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a three-dimensional diagram of a preferred embodiment of the utility model arranged on a vacuum cleaner.
[0015] Figure 2 It is an exploded view of a preferred embodiment of the utility model.
[0016] Figure 3 It is a schematic diagram of the use of a preferred embodiment of the utility model.
[0017] Figure 4 This is an exploded view of another preferred embodiment of the present invention.
[0018] Explanation of symbols in the accompanying drawings:
[0019] 100 heat-suction mosquito and fly trap; 10 mesh; 11 mesh body; 12 perforation; 13 first conductive part; 131 battery; 133 brake switch; 14 frame; 15 connection block; 16 connection slot; 17 second conductive part; 200 vacuum cleaner; 201 connection pipe; 202 vacuum cleaner power supply; 203 vacuum assembly; 204 vacuum pipe. DETAILED DESCRIPTION
[0020] See also Figure 1 and Figure 2 , which are a stereoscopic view and an exploded view of a preferred embodiment of the utility model, disclose a heat-suction mosquito-fly trap 100, which is arranged on a suction-type device, such as a vacuum cleaner 200, the vacuum cleaner 200 is a handheld household vacuum cleaner, and has a connecting pipe 201 and a vacuum cleaner power supply 202, the connecting pipe 201 is used to connect a dust suction component 203, the dust suction component 203 has a dust suction pipe 204, the dust suction pipe 204 is a telescopic pipe, the heat-suction mosquito-fly trap 100 comprises:
[0021] A plurality of mesh sheets 10, which can be arranged in the connecting tube 201 or in the dust suction tube 204, wherein the mesh sheets 10 can be arranged at the suction port in the dust suction tube 204 or at a position close to the connecting tube 201. In the embodiment of the utility model, the plurality of mesh sheets 10 are arranged at the suction port in the dust suction tube 204. The plurality of mesh sheets 10 are overlapped with each other. Each mesh sheet 10 includes a mesh body 11. The plurality of mesh bodies 11 are arranged side by side with gaps between them, and the meshes on each mesh body 11 are staggered with each other. The mesh body 11 is made of plastic or ceramic, and the surface of the mesh body 11 is plated with a conductive film, which is a film that generates heat when powered on. In the embodiment of the utility model, the conductive film is made of iron. A through hole 12 is provided at the center of each mesh body 11, and a first conductive portion 1 is provided in the plurality of through holes 12. 3. The first conductive part 13 is electrically connected to the mesh body 11 and the vacuum cleaner power supply 202. A frame 14 is provided on the periphery of each mesh body 11. A connecting block 15 and a connecting groove 16 are respectively provided on the upper and lower sides of the frame 14. The connecting block 15 of each frame 14 is engaged with the connecting groove 16 of the adjacent frame 14 to enable the plurality of mesh sheets 10 to overlap each other. The frame 14 is provided with a second conductive part 17. The second conductive part 17 is electrically connected to the mesh body 11 and the vacuum cleaner power supply 202. When the vacuum cleaner 200 is started, the conductive film is energized to generate heat. The electrical connection method of the first conductive part 13, the second conductive part 17, the mesh body 11, and the vacuum cleaner power supply 202 can be a wire connection or a metal conductive sheet connection, which can be understood by those with ordinary knowledge in the field and will not be described in detail here.
[0022] Please refer to Figure 3 As shown, it is a schematic diagram of the operation and use of a preferred embodiment of the utility model. When the heat-suction mosquito-and-fly trap 100 of the utility model is used, the heat-suction mosquito-and-fly trap 100 is first set at the suction port in the dust suction pipe 204 of the vacuum cleaner 200, and then the vacuum cleaner 200 is started, and the vacuum cleaner power supply 202, the first conductive part 13, the mesh body 11 and the second conductive part 17 will be turned on, so that the conductive film will be energized to generate heat. At the same time, the user can use the dust suction pipe 204 to perform vacuuming operations. When the vacuum cleaner 200 sucks mosquitoes and flies, the mosquitoes and flies will pass through the heated mesh body 11, and can be killed or have their wings broken, thereby keeping the vacuum cleaner 200 clean and hygienic, and reducing the burden of cleaning the filter. In this way, the utility model overcomes the defects of the known vacuum cleaner 200 that mosquitoes and flies will continue to fly and survive in the filter, and escape after the vacuum cleaner 200 is turned on.
[0023] It is worth mentioning that the heat-suction mosquito and fly trap of the utility model enables the vacuum cleaner 200 to have both the functions of dust removal and heat-suction mosquito and fly trapping, whereby the user can use suction to catch mosquitoes and flies at the same time when cleaning the home, and use the temperature of the net body 11 to kill insects or break the wings of mosquitoes, thereby dealing with mosquito and fly problems, saving working time and energy, achieving all-round cleaning effects, and improving the use value.
[0024] Please refer to Figure 4 , which is an exploded view of another preferred embodiment of the present invention. The difference between the another preferred embodiment of the present invention and the aforementioned preferred embodiment is that the first conductive part 13 is provided with a battery 131 and a brake switch 133, and the battery 131 is electrically connected to the first conductive part 13 and the plurality of second conductive parts 17, thereby, the heat-suction mosquito-and-fly trap 100 uses the power of the battery 131 independently, and when the vacuum cleaner 200 is started or shut down, the heat-suction mosquito-and-fly trap 100 is automatically turned on or off by the brake switch 133, and can be applicable to any suction device or any dust collection component 203 of the vacuum cleaner 200, or be arranged in the dust collection pipe 204 as a heat-suction mosquito-and-fly trap component, so as to achieve the effect of convenient use.
[0025] The heat-suction mosquito and fly trap provided by the utility model makes the conductive film on the net body electrify to generate heat, thereby when the vacuum cleaner sucks up mosquitoes and flies, the mosquitoes and flies will pass through the heated net body and can be killed or have their wings broken, thus overcoming the defects of the known vacuum cleaners that the mosquitoes and flies will continue to fly and survive in the filter, and escape after the vacuum cleaner is turned on, and the vacuum cleaner has the functions of both dust removal and heat-suction mosquito and fly trapping.
Claims
1. A heat-absorbing mosquito and fly trap, characterized in that: It is arranged on a vacuum cleaner and comprises: A plurality of mesh sheets, each mesh sheet includes a mesh body, wherein the plurality of mesh bodies are arranged side by side with gaps between each other, and the surface of the mesh body is coated with a conductive film, which is a film that generates heat when powered on, each mesh body is electrically connected to a first conductive part, and a frame is provided on the periphery of each mesh body, and the frame is provided with a second conductive part, and the second conductive part is electrically connected to the mesh body.
2. The heat-absorbing mosquito and fly trap according to claim 1, characterized in that: A through hole is formed in the center of each mesh body, and the first conductive parts are arranged in a plurality of the through holes.
3. The heat-absorbing mosquito and fly trap according to claim 1, characterized in that: A connecting block and a connecting groove are respectively arranged on the upper and lower sides of the frame. The connecting block of each frame is clamped with the connecting groove of the adjacent frame so that the plurality of mesh sheets are overlapped with each other.
4. The heat-absorbing mosquito and fly trap according to claim 1, characterized in that: The mesh body is made of plastic or ceramic.
5. The heat-absorbing mosquito and fly trap according to claim 1, characterized in that: The conductive film is made of iron.
6. The heat-absorbing mosquito and fly trap according to claim 1, characterized in that: The vacuum cleaner has a connecting pipe, which is used to connect a vacuum pipe of a vacuum assembly. The plurality of mesh sheets are arranged in the connecting pipe or in the vacuum pipe.
7. The heat-absorbing mosquito and fly trap according to claim 1, characterized in that: The vacuum cleaner has a vacuum cleaner power supply which is electrically connected to the first conductive part and the second conductive part.
8. The heat-absorbing mosquito and fly trap according to claim 1, characterized in that: The first conductive part is provided with a battery and a brake switch, and the battery is electrically connected to the first conductive part and a plurality of the second conductive parts.