Garden deinsectization lamp device

By introducing a solar-powered reversible motor driving a lead screw and brush into the garden insecticidal lamp, the problem of insect carcass accumulation was solved, achieving automated cleaning, simplifying the cleaning process, and reducing the pest and disease index.

CN224125059UActive Publication Date: 2026-04-17张洪堃
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
张洪堃
Filing Date
2025-05-22
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

In the current insect-killing lamps, insect carcasses tend to accumulate on the electric grid during use, making cleaning difficult and posing safety hazards. Manual cleaning is also inconvenient.

Method used

A garden insect-killing lamp device was designed, which uses a solar-powered reversible motor to drive a lead screw and nut mechanism, which moves the brush up and down to clean the insect corpses on the electric grid. The insect corpses are collected in a collection trough. Combined with the design of insect-leaking holes and through holes, the cleaning is automated.

Benefits of technology

It has achieved automated cleaning of insect carcasses, avoiding safety hazards caused by accumulation, simplifying the cleaning process, and reducing the pest and disease index.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224125059U_ABST
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Abstract

The utility model discloses a garden deinsectization lamp device, and belongs to the technical field of garden insect pest prevention devices. The device comprises a base and a stand column I, the stand column I is fixed to the base, a stand column II is fixed to the top of the stand column I, and a solar cell panel is installed on the top of the stand column II; an upper bracket plate and a lower bracket plate are fixed on one side of the upright post II, and are arranged at an interval; a circle of power grid is fixed between the upper support plate and the lower support plate, an LED purple light trap lamp is installed in the power grid and at the center of the bottom of the upper support plate, and the LED purple light trap lamp is electrically connected with the solar cell panel; an upper support plate and a lower support plate are fixed on the other side of the upright post II, and are arranged at an interval; and a power grid cleaning device is arranged on the upper support plate and the lower support plate. The deinsectization lamp power grid cleaning device can effectively clean insect bodies on the deinsectization lamp power grid, enables the cleaning work of the deinsectization lamp power grid to be simple and fast, and reduces the index of plant diseases and insect pests.
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Description

Technical Field

[0001] This utility model relates to a garden insect-killing lamp device, belonging to the technical field of garden pest control devices. Background Technology

[0002] Gardens typically attract a large number of insects, including mosquitoes, butterflies, moths, and beetles. However, these insects not only bother people's outdoor activities but may also spread diseases or damage plants. Therefore, insecticidal lamps have become an important tool for improving the outdoor environment.

[0003] Insecticidal lamps work by using insects' phototaxis to attract them with light sources within a specific spectral range that insects are sensitive to. When the insects get close, they come into contact with the electrified grid and are instantly killed by an electric shock. When shocked, the insects may become stuck on the grid due to muscle stiffness and convulsions. If not cleaned, the dead insects will accumulate over time, affecting the normal operation of the insecticidal lamp and potentially creating safety hazards. Moreover, cleaning up the dead insects usually requires manual removal, making the cleaning process even more troublesome. Utility Model Content

[0004] In order to overcome the shortcomings of the existing technology, this utility model provides a garden insecticidal lamp device, which can effectively clean the insect corpses on the electric grid of the insecticidal lamp, making the cleaning of the electric grid of the insecticidal lamp simple and quick, and reducing the pest index.

[0005] The technical solution adopted by this utility model to solve its technical problem is as follows: a garden insect-killing lamp device, including a base and a column I, the column I being fixed on the base, the top of the column I being fixed with a column II, and a solar panel being installed on the top of the column II; an upper support plate and a lower support plate are fixed on one side of the column II, the upper support plate and the lower support plate being arranged at intervals; a grid is fixed between the upper support plate and the lower support plate, and an LED ultraviolet insect-attracting lamp with a built-in lithium battery is installed at the center of the bottom of the grid, the LED ultraviolet insect-attracting lamp and the built-in lithium battery being electrically connected to the solar panel; an upper support plate and a lower support plate are fixed on the other side of the column II, the upper support plate and the lower support plate being arranged at intervals; a grid cleaning device is provided on the upper support plate and the lower support plate.

[0006] Furthermore, the power grid cleaning device includes a reversible motor, a lead screw, a lead screw nut, and a brush holder. A reversible motor with its drive end facing downwards is installed on the top of the upper support plate. Bearing seats are installed inside both the upper and lower support plates. A vertical lead screw is provided between the upper and lower support plates, with its upper and lower ends respectively installed in the bearing seats of the upper and lower support plates. The drive end of the reversible motor is connected to the upper end of the lead screw. The lead screw nut is installed on the lead screw, and an opening is provided on the side of the lead screw closest to the power grid. An arc-shaped plate is provided at each end of the opening, and column II is located in the opening. The brush holder is fixedly connected to the two arc-shaped plates, and the reversible motor is electrically connected to the solar panel and the built-in lithium battery.

[0007] Furthermore, the brush holder includes brush holder I and brush holder II, both of which are semi-circular frames. Each of the brush holders contains a semi-circular brush. The arc openings of brush holder I and brush holder II form a circle that surrounds the electric grid. The two ends of the arc opening of brush holder I are fixedly connected to the two ends of the corresponding arc opening of brush holder II by bolts and nuts. The outer side of the arc plate of brush holder II is fixedly connected to the two arc plates by screws.

[0008] Furthermore, a through hole is provided in the lower support plate on the outer side below the power grid.

[0009] Furthermore, the diameter of the through hole is the same as the diameter of the power grid.

[0010] Furthermore, on the bottom outer side of the power grid, there are two semi-circular arc-shaped insect-leaking holes in the lower support plate.

[0011] Furthermore, on the bottom outer side of the two insect-leaking holes, a circular connecting plate is fixed at the bottom of the lower support plate, and the connecting plate has external threads on its outside; the insect-collecting groove is a circular groove, and the inner wall of the insect-collecting groove has internal threads, and the insect-collecting groove is threadedly connected to the connecting plate.

[0012] Furthermore, the brush makes close contact with the outside of the power grid.

[0013] Furthermore, the curvature of the curved plate is consistent with the curvature of the brush holder II.

[0014] The beneficial effects of this invention are as follows: This invention can effectively clean the insect corpses on the electric grid of the insecticidal lamp. The forward and reverse motor drives the lead screw and nut mechanism to move the brush up and down to clean the insect corpses remaining on the electric grid, and the corpses are collected by the insect collection box, effectively avoiding the safety hazards caused by the accumulation of flying insect corpses. The brush holder can be disassembled and replaced, and disassembly and installation are convenient, ensuring that the brush is always in close contact with the electric grid. This insecticidal lamp device can effectively reduce the number of insects in the garden, reduce the pest and disease index, and make the cleaning work simple and quick. Attached Figure Description

[0015] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0016] Figure 1 This is a schematic diagram of the structure of this utility model.

[0017] Figure 2 This is a top view of the brush holder of this utility model.

[0018] Figure 3 This is a schematic diagram of the lower support plate of this utility model.

[0019] Figure 4 This is a schematic diagram of the present invention in operation.

[0020] Numbering on the map:

[0021] 1. Base, 2. Column I, 3. Column II, 4. Upper support plate, 5. Lower support plate, 501. Through hole, 502. Insect-leaking hole, 6. Electric grid, 7. LED ultraviolet insect-attracting lamp, 8. Electric grid cleaning device, 9. Brush holder, 10. Brush holder I, 11. Brush holder II, 12. Solar panel, 13. Upper support plate, 14. Lower support plate, 15. Forward and reverse motor, 16. Lead screw, 17. Lead screw nut, 1701. Opening, 1702. Curved plate, 18. Connecting plate, 19. Insect-collecting groove, 20. Brush. Detailed Implementation

[0022] like Figure 1 As shown in Figure 4, a garden insect-killing lamp device includes a base 1 and a column I2. The column I2 is fixed to the base 1, and a column II3 is fixed to the top of the column I2. A solar panel 12 is installed on the top of the column II3. An upper support plate 4 and a lower support plate 5 are fixed to one side of the column II3, and the upper support plate 4 and the lower support plate 5 are arranged at intervals. A grid 6 is fixed between the upper support plate 4 and the lower support plate 5. Inside the grid 6, an LED ultraviolet insect-attracting lamp 7 is installed at the center of the bottom of the upper support plate 4 and has a built-in lithium battery. The LED ultraviolet insect-attracting lamp 7 and the built-in lithium battery are electrically connected to the solar panel 12. An upper support plate 13 and a lower support plate 14 are fixed to the other side of the column II3, and the upper support plate 13 and the lower support plate 14 are arranged at intervals. A grid cleaning device 8 is provided on the upper support plate 13 and the lower support plate 14.

[0023] The power grid cleaning device 8 includes a reversible motor 15, a lead screw 16, a lead screw nut 17, and a brush holder 9. A reversible motor 15 with its drive end facing downward is installed on the top of the upper support plate 13. Bearing seats are installed inside both the upper support plate 13 and the lower support plate 14. A vertical lead screw 16 is arranged between the upper support plate 13 and the lower support plate 14. The upper and lower ends of the lead screw 16 are respectively installed in the two bearing seats of the upper support plate 13 and the lower support plate 14. The drive end of the reversible motor 15 is connected to the upper end of the lead screw 16. The lead screw nut 17 is installed on the lead screw 16. An opening 1701 is provided on the side of the lead screw nut 17 closest to the power grid 6. An arc-shaped plate 1702 is provided at each end of the opening 1701. The column II 3 is located in the opening 1701. The brush holder 9 is fixedly connected to the two arc-shaped plates 1702. The reversible motor 15 is electrically connected to the solar panel 12 and the built-in lithium battery.

[0024] The brush holder 9 includes brush holder I 10 and brush holder II 11. Both brush holder I 10 and brush holder II 11 are semi-circular frames. Each brush holder I 10 and brush holder II 11 contains a semi-circular brush 20. The arc opening of brush holder I 10 and the arc opening of brush holder II 11 form a circle that surrounds the electric grid 6. The brush 20 is in close contact with the outside of the electric grid 6. The two ends of the arc opening of brush holder I 10 are fixedly connected to the two ends of the corresponding arc opening of brush holder II 11 by bolts and nuts. The outer side of the arc plate of brush holder II 11 is fixedly connected to the two arc plates 1702 by screws. The curvature of the arc plates 1702 is consistent with the curvature of brush holder II 11.

[0025] Below the outer side of the power grid 3, a through hole 501 is provided in the lower support plate 5, the diameter of which is the same as the diameter of the power grid 6; at the bottom outer side of the power grid 6, two semi-circular insect-leaking holes 502 are provided in the lower support plate 5; at the bottom outer side of the two insect-leaking holes 502, a circular connecting plate 18 is fixed to the bottom of the lower support plate 5, and the connecting plate 18 has external threads on its exterior; the insect-receiving groove 19 is a circular groove, and the inner wall of the insect-receiving groove 19 has internal threads, and the insect-receiving groove 19 is threadedly connected to the connecting plate 18.

[0026] During use, the base 1 of the insecticidal lamp device is fixed to the ground with anchor bolts. The device utilizes the phototaxis of insects, attracting them with a specific wavelength of light and then killing them with a high-voltage electric shock. After a period of use, many insect corpses will adhere to the outer surface of the electric grid 6. The output of the forward / reverse motor 15 drives the lead screw 16 to rotate under the support of the bearings at both ends. The lead screw 16 drives the lead screw nut 17, causing the brush holder 9 to move up and down together. The brush 20 on the upper part of the electric grid 6 cleans the insect corpses on the grid. The up and down movement of the brush 20 scrapes the insect corpses through the insect leakage hole 502 into the insect collection groove 19, where they are collected. At the same time, the insect corpses knocked off by the electric grid 6 will also fall directly into the insect collection groove 19 through the insect leakage hole 502. The through hole 501 in the lower support plate 5 has the same diameter as the electric grid 6. In this way, when the brush 20 cleans the electric grid 6, some smaller insect corpses will fall directly from the inside of the electric grid into the insect collection groove 19 through the through hole 501.

[0027] The insect collection trough 19 can be unscrewed from the connecting plate 18 for the unified collection and centralized processing of insect carcasses, such as for feeding poultry, fish, and shrimp. After cleaning, the insect collection trough 19 is reconnected to the connecting plate 18. The brush 20 will wear down after prolonged use, affecting the cleaning effect. The brush holder 9 is divided into brush holder I 10 and brush holder II 11, so that the brush holder 9 can be replaced without affecting the use effect. Disassembly and installation are convenient. During installation, first install the brush holder II 11 with the two arc plates 1702 of the silk nut 17, and then install the brush holder II 11 with the brush holder I 10. The column II 3 is located in the opening 1701, thus avoiding interference between the silk nut 17 and the column II 3. The solar panel 12 and the built-in lithium battery power the forward and reverse motor 15 and the LED purple light insect attractant lamp 7.

Claims

1. A garden insect-killing lamp device, comprising a base (1) and a stand column I (2), the stand column I (2) is fixed on the base (1), characterized in that: The top of column I (2) is fixed with column II (3), and a solar panel (12) is installed on the top of column II (3); an upper support plate (4) and a lower support plate (5) are fixed on one side of column II (3), and the upper support plate (4) and the lower support plate (5) are arranged at intervals; a grid (6) is fixed between the upper support plate (4) and the lower support plate (5), and an LED ultraviolet insect-attracting lamp (7) with a built-in lithium battery is installed at the center of the bottom of the upper support plate (4) inside the grid (6), and the LED ultraviolet insect-attracting lamp (7) and the built-in lithium battery are electrically connected to the solar panel (12); an upper support plate (13) and a lower support plate (14) are fixed on the other side of column II (3), and the upper support plate (13) and the lower support plate (14) are arranged at intervals; a grid cleaning device (8) is provided on the upper support plate (13) and the lower support plate (14).

2. A garden insect-killing lamp device according to claim 1, characterized in that: The power grid cleaning device (8) includes a reversible motor (15), a lead screw (16), a lead screw nut (17), and a brush holder (9). A reversible motor (15) with its drive end facing downward is installed on the top of the upper support plate (13). Bearing seats are installed inside both the upper support plate (13) and the lower support plate (14). A vertical lead screw (16) is provided between the upper support plate (13) and the lower support plate (14). The upper and lower ends of the lead screw (16) are respectively installed in the two bearing seats of the upper support plate (13) and the lower support plate (14). The drive end of the reversible motor (15) is connected to the upper end of the lead screw (16); the lead screw seat (17) is installed on the lead screw (16), and the lead screw seat (17) has an opening (1701) on the side of the lead screw seat (17) close to the power grid (6). An arc plate (1702) is provided at each end of the opening (1701), and the column II (3) is located in the opening (1701); the brush holder (9) is fixedly connected to the two arc plates (1702), and the reversible motor (15) is electrically connected to the solar panel (12) and the built-in lithium battery.

3. A garden insect killer lamp device according to claim 2, characterized in that: The brush holder (9) includes brush holder I (10) and brush holder II (11). Both brush holder I (10) and brush holder II (11) are semi-circular frames. Both brush holder I (10) and brush holder II (11) are equipped with a semi-circular brush (20). The arc of brush holder I (10) and the arc of brush holder II (11) form a circle that surrounds the electric grid (6). The two ends of the arc of brush holder I (10) are fixedly connected to the two ends of the arc of brush holder II (11) by bolts and nuts. The outer side of the arc plate of brush holder II (11) is fixedly connected to the two arc plates (1702) by screws.

4. The garden insect-killing lamp apparatus according to claim 1, characterized by: A through hole (501) is provided in the lower support plate (5) on the outer side below the power grid (6).

5. A garden insect killer lamp device according to claim 4, characterized in that: The diameter of the through hole (501) is the same as the diameter of the power grid (6).

6. A garden insect killer lamp device according to claim 4, characterized in that: On the bottom outer side of the power grid (6), there are two semi-circular insect-leaking holes (502) in the lower support plate (5).

7. A garden insect killer lamp device according to claim 6, characterized in that: On the bottom outer side of the two insect-leaking holes (502), a circular connecting plate (18) is fixed at the bottom of the lower support plate (5), and the connecting plate (18) has an external thread; the insect-receiving groove (19) is a circular groove, and the inner wall of the insect-receiving groove (19) has an internal thread, and the insect-receiving groove (19) is threadedly connected to the connecting plate (18).

8. A garden insect killer lamp device according to claim 1, characterized in that: The brush (20) is in close contact with the outside of the power grid (6).

9. A garden insect killer lamp device according to claim 3, characterized in that: The curvature of the curved plate (1702) is consistent with that of the brush holder II (11).