Combined type mosquito trap
By using a modular mosquito trap with snap-fit components and a unique opening design, the range for attracting mosquitoes is increased, solving the problem of small mosquito entry holes in existing mosquito traps and enabling efficient mosquito capture and self-service cleanup.
Patent Information
- Application Number
- CN202423089113.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-15
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2034-12-15
AI Technical Summary
Existing mosquito traps have small and concentrated mosquito inlet holes, resulting in a small mosquito-catching range. Furthermore, the inlet location cannot be changed according to actual conditions, affecting the mosquito-catching effect.
A modular mosquito trap was designed. By setting detachable snap-fit components and placement holes on the surface of the mosquito trap box, the range for mosquito introduction is increased. The mosquitoes can be self-assembled and collected through the introduction and extraction structure. Combined with the drainage frame and overflow hole, rainwater is treated to avoid affecting the mosquito trapping operation.
It increases the range of mosquito introduction and the mosquito-catching effect, facilitates the self-collection and cleanup of mosquitoes, and achieves efficient collection and pollution-free treatment of mosquitoes.
Smart Images

Figure CN223614092U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mosquito trap technology, and in particular to a combined mosquito trap. Background Technology
[0002] Mosquitoes are a common insect widely distributed around the world. Because they are attracted to human blood and are active both day and night, they are a major headache, affecting people's lives and spreading diseases. Therefore, it is necessary to capture and eliminate them.
[0003] Based on the mosquitoes' preference for humid environments and their habit of laying eggs in water, existing technology has developed a mosquito trap. Chinese patent CN215531039U, entitled "A Mosquito Trapper," has solved the problems of manpower and material resources consumed by spraying insecticides, and the complex installation, high cost, consumable costs, maintenance, and limited control area of a single mosquito trap due to mosquito-killing lamps, as well as the fact that it mainly targets mosquitoes active at night. However, it has been found in use that the mosquito inlet holes are small and very concentrated, which reduces the mosquito capture range, and the inlet cannot be removed or replaced according to actual use.
[0004] There are currently no similar products on the market. Therefore, how to provide a combined mosquito trap is a problem that urgently needs to be solved by those skilled in the art. Utility Model Content
[0005] One objective of this invention is to provide a combined mosquito trap that solves the problems of small and highly concentrated mosquito inlet holes in existing technologies, which result in a small mosquito capture range and unsatisfactory mosquito-catching effect, and the inability to disassemble and replace the inlet part according to actual use.
[0006] According to an embodiment of the present utility model, a combined mosquito trap includes a base box and a mosquito trapping box. The mosquito trapping box is movable on the top of the base box to form a mosquito trapping chamber. An installation hole is opened on the surface of the mosquito trapping box, and a snap-fit component is provided on the surface of the mosquito trapping box at the position corresponding to the installation hole.
[0007] The snap-fit assembly is provided with an inlet structure and an outlet structure.
[0008] The placement openings are located on the side and top of the mosquito trap.
[0009] The snap-fit assembly includes an inlet snap-fit component and an outlet snap-fit component. The inlet snap-fit component includes an inner inlet snap-fit seat and an outer inlet snap-fit seat. Both the inner inlet snap-fit seat and the outer inlet snap-fit seat are fixed to the surface of the mosquito trap box and are located around the installation opening.
[0010] The lead-out connector includes an inner lead-out connector and an outer lead-out connector, wherein the outer lead-out connector is located around the inner lead-out connector, and the inner and outer lead-out connectors are positioned at the placement opening on the top of the mosquito trap.
[0011] The introduction structure includes a conical introduction cover and an introduction side ring. The introduction side ring is fixed to the side of the conical introduction cover and is snapped into the inner snap-fit seat.
[0012] The lead-out structure includes a conical lead-out cover and an outer cover. The lead-out structure also includes a lead-out side ring, which is fixed to the side of the conical lead-out cover and the outer cover respectively. The conical lead-out cover is secured to the inner lead-out retainer by the lead-out side ring, and the outer cover is secured to the outer lead-out retainer by the lead-out side ring. The outer cover is movably sleeved on the surface of the conical lead-out cover. Fine holes are provided on the conical lead-out cover, the outer cover and the conical lead-out cover.
[0013] The outlet end of the conical lead-out cover faces the outer cover of the mosquito trap box, while the inlet end of the conical lead-in cover faces the mosquito trapping chamber inside the mosquito trap box.
[0014] The top of the bottom box is provided with a flow guide frame, and the side of the bottom box is provided with an overflow hole near the flow guide frame. The bottom box is provided with a partition component inside, and the bottom box is filled with fresh water. The partition component includes a partition mesh plate, which is set at the opening on the bottom box.
[0015] The mosquito trap has a positioning strip on its side at the bottom of the box. The positioning strip is attached to the side of the bottom of the box and is offset from the overflow hole.
[0016] The height of the separator mesh plate is higher than the height of the overflow hole.
[0017] The beneficial effects of this utility model are:
[0018] By setting up a snap-fit component and a mounting hole, the snap-fit component is used to lock the inlet and outlet structures, making it easy to separate the inlet and outlet structures from the mounting hole on the mosquito trap. This facilitates the interchange of the inlet and outlet structures and their replacement, allowing for the use of different inlet and outlet structures and achieving a self-assembly effect.
[0019] By setting up placement openings with a long diameter that cover the entire perimeter and top of the mosquito trap, mosquitoes can be introduced from different directions and locations, increasing the range of mosquito introduction. Moreover, larger placement openings make it easier for mosquitoes to find the introduction location and carry out the mosquito introduction operation.
[0020] By setting up an extraction structure with the outlet end of the conical extraction hood facing the outer cover, mosquitoes will enter through the conical extraction hood and reach the outer cover. Over time, the mosquitoes will die and flow into the outer cover, thus collecting the mosquitoes. Moreover, the mosquitoes can be cleaned up without opening the mosquito trap box.
[0021] By setting up a drainage frame, overflow hole, and separator components, the drainage frame collects natural rainwater into the bottom box, and the overflow hole drains the water inside the bottom box, preventing the water level from exceeding the separator components and affecting the mosquito trapping operation. This prevents mosquito eggs and larvae from escaping the control of the separator mesh, and ensures that the larvae cannot pass through the separator components after maturing, thus achieving the goal of harmless mosquito treatment. Attached Figure Description
[0022] The accompanying drawings are provided to further illustrate the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention, but do not constitute a limitation thereof. In the drawings:
[0023] Figure 1 This is a three-dimensional flowchart of a combined mosquito trap proposed in this utility model.
[0024] Figure 2 This is a three-dimensional flow diagram showing the structure and placement of the opening in a combined mosquito trap proposed in this utility model.
[0025] The attached diagram shows: 1. Base box; 2. Mosquito trap; 3. Mosquito trap chamber; 4. Installation opening; 5. Snap-fit assembly; 6. Inlet structure; 7. Outlet structure; 8. Inlet snap-fit component; 9. Outlet snap-fit component; 10. Inlet inner snap-fit seat; 11. Inlet outer snap-fit seat; 12. Outlet inner snap-fit seat; 13. Outlet outer snap-fit seat; 14. Conical inlet cover; 15. Inlet side ring; 16. Conical outlet cover; 17. Outer cover; 18. Outlet side ring; 19. Fine hole; 20. Drainage frame; 21. Overflow hole; 22. Separator assembly; 23. Separator mesh plate; 24. Positioning strip. Detailed Implementation
[0026] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the present invention, and therefore only show the components relevant to the present invention.
[0027] Example 1
[0028] refer to Figure 1The device includes a base box 1 and a mosquito trap 2. The mosquito trap 2 is movable on the top of the base box 1 to form a mosquito trapping chamber 3, which is used to allow mosquitoes to enter and lay eggs. The surface of the mosquito trap 2 has a placement hole 4, which connects to the large opening end of the conical inlet cover 14. The placement hole 4 is large enough that a hand can easily reach into the mosquito trapping chamber 3. This large opening design increases the opening for mosquito introduction, allowing mosquitoes within this range to enter the mosquito trapping chamber 3 through the conical inlet cover 14. The placement holes 4 are respectively opened on the side and top of the mosquito trap 2, covering the entire outer side of the mosquito trap 2. This allows the conical inlet cover 14 to be in different directions and positions, increasing the range of mosquito introduction and enhancing the mosquito trapping effect. The surface of the mosquito trap 2 is provided with a snap-fit component 5 corresponding to the placement hole 4, which is used to snap the lead-out structure 7 and the lead-in structure 6, making it easy to swap and replace the lead-out structure 7 and the lead-in structure 6, achieving a self-assembly effect.
[0029] refer to Figure 2 The snap-fit assembly 5 is provided with an introduction structure 6 and an exit structure 7. The snap-fit assembly 5 includes an introduction snap-fit part 8 and an exit snap-fit part 9. The introduction snap-fit part 8 includes an inner introduction snap-fit seat 10 and an outer introduction snap-fit seat 11. Both the inner introduction snap-fit seat 10 and the outer introduction snap-fit seat 11 are fixed to the surface of the mosquito trap box 2. The inner introduction snap-fit seat 10 and the outer introduction snap-fit seat 11 are located around the placement hole 4. In this way, while the inner introduction snap-fit seat 10 snaps the conical introduction cover 14, the conical introduction cover 14 covers the placement hole 4 around the mosquito trap box 2. The mosquitoes move from the larger opening of the conical introduction cover 14 to the smaller opening until they enter the mosquito trapping chamber 3 from the conical introduction cover 14, thus completing the mosquito introduction operation.
[0030] refer to Figure 2 The lead-out connector 9 includes an inner lead-out connector 12 and an outer lead-out connector 13, wherein the outer lead-out connector 13 is located around the inner lead-out connector 12. The inner lead-out connector 12 and the outer lead-out connector 13 are positioned at the placement opening 4 at the top of the mosquito trap box 2. This design allows the conical lead-out cover 16 and the outer cover 17 to cover the entire placement opening 4 at the top of the mosquito trap box 2, making it convenient to lead out and collect mosquitoes. It should be noted that the outer cover 17 and the conical lead-out cover 16 are not limited to being positioned at the placement opening 4 at the top of the mosquito trap box 2, but can also be installed inside the placement opening 4 on the periphery of the mosquito trap box 2. Their positions can be changed according to actual use to achieve the purpose of self-assembly.
[0031] refer to Figure 2The introduction structure 6 includes a conical introduction cover 14 and an introduction side ring 15. The introduction side ring 15 is fixed to the side of the conical introduction cover 14, and the side ring is snapped into the inner snap-fit seat. The introduction end of the narrow opening on the conical introduction cover 14 is set towards the mosquito trapping chamber 3 inside the mosquito trapping box 2, so as to introduce mosquitoes into the mosquito trapping chamber 3. After rotating the conical introduction cover 14, the introduction side ring 15 will be moved away from the inner snap-fit seat through the conical introduction cover 14, and then the conical introduction cover 14 can be removed. It should be noted that the operation method of the conical exit cover 16 and the outer cover 17 is the same as described above, and will not be repeated here. Both the conical introduction cover 14 and the conical exit cover 16 are funnel-shaped, which facilitates the introduction and collection of mosquitoes while preventing them from flying out.
[0032] refer to Figure 2 The extraction structure 7 includes a conical extraction cover 16 and an outer cover 17. The extraction structure 7 also includes an extraction side ring 18, which is fixed to the sides of the conical extraction cover 16 and the outer cover 17. The conical extraction cover 16 is secured to the inner extraction retainer 12 via the extraction side ring 18. The narrow outlet end of the conical extraction cover 16 faces the outer cover 17 outside the mosquito trap 2. This outward-facing design aims to guide mosquitoes between the outer cover 17 and the conical extraction cover 16, allowing the mosquitoes to escape. The insects fall into the inner cover, which collects the mosquitoes in the inner cover. When cleaning the mosquitoes, there is no need to open the mosquito trap 2, which greatly facilitates the cleaning of the mosquitoes in the mosquito trap 2. The outer cover 17 is locked onto the outer lead-out bracket 13 by the lead-out side ring 18, and the outer cover 17 is movably fitted on the surface of the conical lead-out cover 16. The conical lead-out cover 16, the outer cover 17 and the conical lead-out cover 14 are all provided with small holes 19 for ventilation. The small holes 19 are much smaller than the volume of the mosquitoes, so as to prevent the mosquitoes from flying away from the mosquito trap 2.
[0033] Example 2
[0034] refer to Figure 2The top of the base box 1 is provided with a drainage frame 20. The side of the drainage frame 20 away from the base box 1 is designed to slope outwards, like an "eave". This allows rainwater to flow into the base box 1 through the drainage frame 20, thus collecting the rainwater. When there is too much rainwater, an overflow hole 21 is provided on the side of the base box 1 near the drainage frame 20. When the water level in the base box 1 reaches the overflow hole 21, the water is discharged from the overflow hole 21. A positioning strip 24 is provided on the side of the mosquito trap 2, located at the position of the base box 1. The positioning strip 24 is engaged between the mosquito trap 2 and the base box 1, creating a gap between them. This gap allows rainwater to flow into the base box 1, and the positioning strip 24 also stabilizes the mosquito trap. 2. At the docking position of the bottom box 1, the positioning strip 24 is attached to the side of the bottom box 1 and the position of the positioning strip 24 is offset from the overflow hole 21. The bottom box 1 is provided with a partition component 22 to separate the fresh water inside the bottom box 1 from the mosquito trap 2. The partition component 22 includes a partition mesh plate 23 and a support rod 24. The height of the partition mesh plate 23 is higher than the height of the overflow hole 21 to prevent the water from being higher than the partition mesh plate 23 and affecting the mosquito trapping effect. Mosquito eggs can pass through the partition mesh plate 23 to reach the fresh water in the bottom box 1, while the larvae at the egg hatching site cannot pass through the mesh on the partition mesh plate 23, thus achieving the separation effect. The partition mesh plate 23 is set at the opening on the bottom box 1 and is set at the required height.
[0035] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A combined mosquito trap, characterized in that, It includes a bottom box (1) and a mosquito trap (2). The mosquito trap (2) is movable on the top of the bottom box (1) to form a mosquito trapping chamber (3). The surface of the mosquito trap (2) is provided with a placement hole (4). A snap-fit component (5) is provided on the surface of the mosquito trap (2) corresponding to the placement hole (4). The snap-fit assembly (5) is provided with an inlet structure (6) and an outlet structure (7).
2. The combined mosquito trap according to claim 1, characterized in that, The placement openings (4) are respectively located on the side and top of the mosquito trap (2).
3. A combined mosquito trap according to claim 2, characterized in that, The snap-fit assembly (5) includes an inlet snap-fit component (8) and an outlet snap-fit component (9), wherein the inlet snap-fit component (8) includes an inner snap-fit seat (10) and an outer snap-fit seat (11), both of which are fixed to the surface of the mosquito trap box (2), and the inner snap-fit seat (10) and the outer snap-fit seat (11) are located around the installation opening (4).
4. A combined mosquito trap according to claim 3, characterized in that, The lead-out connector (9) includes an inner lead-out connector (12) and an outer lead-out connector (13), wherein the outer lead-out connector (13) is located around the inner lead-out connector (12), and the inner lead-out connector (12) and the outer lead-out connector (13) are positioned at the placement opening (4) at the top of the mosquito trap (2).
5. A combined mosquito trap according to claim 4, characterized in that, The inlet structure (6) includes a conical inlet cover (14) and an inlet side ring (15). The inlet side ring (15) is fixed to the side of the conical inlet cover (14) and is snapped into the inner snap-fit seat.
6. A combined mosquito trap according to claim 5, characterized in that, The lead-out structure (7) includes a conical lead-out cover (16) and an outer cover (17). The lead-out structure (7) also includes a lead-out side ring (18). The lead-out side ring (18) is fixed to the side of the conical lead-out cover (16) and the outer cover (17). The conical lead-out cover (16) is secured to the lead-out inner retaining seat (12) by the lead-out side ring (18). The outer cover (17) is secured to the lead-out outer retaining seat (13) by the lead-out side ring (18). The outer cover (17) is movably sleeved on the surface of the conical lead-out cover (16). Fine holes (19) are provided on the conical lead-out cover (16), the outer cover (17) and the conical lead-out cover (14).
7. A combined mosquito trap according to claim 6, characterized in that, The narrow outlet end of the conical outlet cover (16) is set towards the outer cover (17) of the mosquito trap box (2), and the narrow inlet end of the conical inlet cover (14) is set towards the mosquito trapping chamber (3) inside the mosquito trap box (2).
8. A combined mosquito trap according to claim 7, characterized in that, The bottom box (1) is provided with a flow guide frame (20) on the top, and an overflow hole (21) is provided on the side of the bottom box (1) near the flow guide frame (20). The bottom box (1) is provided with a partition component (22) inside, and the bottom box (1) is filled with fresh water. The partition component (22) includes a partition mesh plate (23), which is located at the opening on the bottom box (1).
9. A combined mosquito trap according to claim 8, characterized in that, The mosquito trap (2) has a positioning strip (24) on its side at the position of the bottom box (1). The positioning strip (24) is attached to the side of the bottom box (1) and the position of the positioning strip (24) is offset from that of the overflow hole (21).
10. A combined mosquito trap according to claim 9, characterized in that, The height of the separator mesh plate (23) is higher than the height of the overflow hole (21).
Citation Information
Patent Citations
Mosquito trap
CN215531039U