A garden insect killing device

CN122603826APending Publication Date: 2026-08-21HENGSHUI TAIBO CONSTRUCTION ENGINEERING CO LTD
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Patent Information

Application Number
CN202610858248.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-06-15
Publication Date
2026-08-21

AI Technical Summary

Technical Problem

因为缺乏自动清扫结构,堆积的虫尸难以及时清除,潮湿虫尸易在电网两极间形成导电通路,引发短路、漏电故障,损坏高压供电组件;长期积垢还会腐蚀电网金属丝,造成电网断裂失效,最终大幅缩短杀虫装置整体使用寿命,进而使得杀虫装置的使用寿命较短

Benefits of technology

(1)本发明实现自适应动态清理的效果,可及时持续清扫电网表面堆积的潮湿虫尸、虫翅与黏稠分泌物,避免各类虫体长期混杂堆积发酵形成导电粘液,杜绝粘液连通电网两极造成短路、漏电等电气故障,既能够保护内部高压供电控制组件不被瞬时大电流烧毁,也可避免潮湿腐液长期附着腐蚀电网金属丝,防止金属丝锈蚀变薄、断裂失效,稳定维持电网正常电击杀虫性能,大幅延长整套杀虫装置的整体使用寿命;

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Abstract

The application discloses a kind of gardens insecticide device, it is related to gardens insecticide technical field.The gardens insecticide device, including pole body, pole body lower end is fixed with mounting seat, pole body upper end is fixed with solar panel, pole body one side is fixed with energy storage power supply, pole body middle part is fixed with insecticide lamp, insecticide lamp middle part is fixed with support seat, support seat middle part is provided with lamp body, support seat side is provided with electric network, insecticide lamp both sides are fixed with support, two supports other end is fixed with base, base lower end side is detachably installed with collecting bag by screw thread;Base lower end middle part is fixed with drive motor, drive motor driving end is fixed with fixed rod, fixed rod upper end is provided with connecting structure.The gardens insecticide device, realize self-adapting dynamic cleaning effect, avoid various insect bodies long-term mixed and accumulated fermentation to form conductive slime, eliminate slime intercommunication electric network two poles cause short circuit, leakage and other electrical faults, substantially prolong the overall service life of whole insecticide device.
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Description

Technical Field

[0001] This invention relates to the field of garden pest control technology, specifically a garden pest control device. Background Technology

[0002] With the continuous development of society and the economy, horticultural plant protection work is increasingly emphasizing the concept of green pest control. Insecticidal lamps, relying on the phototactic physiological characteristics of insects, use specific spectral light sources that attract phototactic pests, and are equipped with killing mechanisms to achieve efficient pest elimination. This effectively reduces the insect population in the field, decreasing the occurrence of pests and insect-borne diseases. This equipment achieves pest control through physical means, significantly reducing the frequency of chemical pesticide application. It is the preferred plant protection equipment for producing safe and high-quality agricultural products and implementing green physical protection for horticultural vegetation.

[0003] While existing insecticidal lamps can perform conventional insecticidal operations by using insect-attracting light sources in conjunction with high-voltage grids, after insects are electrocuted, their bodies, wings, and secretions easily adhere and accumulate in the gaps of the high-voltage grid mesh. Due to the lack of an automatic cleaning mechanism, the accumulated insect carcasses are difficult to remove in a timely manner. The damp insect carcasses can easily form conductive paths between the grid poles, causing short circuits, leakage faults, and damage to the high-voltage power supply components. Long-term accumulation of dirt can also corrode the grid wires, causing grid breakage and failure, ultimately significantly shortening the overall lifespan of the insecticidal device, thus resulting in a shorter overall lifespan.

[0004] Therefore, it is necessary to invent a garden pest control device to solve the above problems. Summary of the Invention

[0005] The purpose of this invention is to provide a garden pest control device to solve the problems mentioned in the background art.

[0006] To solve the above-mentioned technical problems, the present invention provides the following technical solution: a garden insecticidal device, comprising a pole, a mounting base fixed at the lower end of the pole, a solar panel fixed at the upper end of the pole, a power storage device fixed on one side of the pole, an insecticidal lamp fixed in the middle of the pole, a support base fixed in the middle of the insecticidal lamp, a lamp body disposed in the middle of the support base, an electric grid disposed on the side of the support base, brackets fixed on both sides of the insecticidal lamp, a base fixed at the other end of the two brackets, and a collection bag detachably installed on the lower side of the base via threads; A drive motor is fixed at the lower center of the base, and a fixed rod is fixed at the drive end of the drive motor. A connecting structure is provided at the upper end of the fixed rod, and a cleaning brush is provided on the connecting structure. The connecting structure can drive the cleaning brush to revolve around the central axis of the fixed rod, rotate around its own central axis, and move radially along the power grid to perform adaptive dynamic cleaning of the power grid.

[0007] Preferably, the connection structure includes a fixed frame, a frame groove is provided on one side of the fixed frame, a sliding frame is slidably connected to the inner wall of the frame groove, a spring is fixed on one side of the sliding frame, a support frame is fixed at one end of the sliding frame, a rotating rod is rotatably connected to the other end of the support frame, a gear is fixed on one side of the rotating rod, an internal gear ring is meshed with the gear, and a cleaning brush is fixed at the middle of the upper side of the rotating rod.

[0008] Preferably, one side of the fixed frame is fixed to the upper end of the fixed rod, and the lower end of the fixed rod is fixed to the drive end of the drive motor. The drive motor, the lamp body, and the power grid are all electrically connected to the energy storage power supply through wires. The slot is opened on the other side of the fixed frame, and the outer surface of the sliding frame is slidably connected to the inner wall of the slot. The vertical section of the sliding frame is T-shaped.

[0009] Preferably, one side of the sliding frame is fixed to one end of the spring, the other end of the spring is fixed to the inner wall of the frame groove away from the fixed rod, the other end of the sliding frame is fixed to one end of the support frame, the other end of the support frame is rotatably connected to the lower surface of the rotating rod, and the vertical section of the support frame is U-shaped.

[0010] Preferably, the lower side of the rotating rod is fixed to the middle of the gear, the outer surface of the gear is rotatably connected to the inner wall of the support frame, the gear is meshed with the internal gear ring, the outer side of the internal gear ring is fixed to the inner wall of the upper end of the base, the middle part of the cleaning brush is fixed to the middle of the upper side of the rotating rod, and the bristles of the cleaning brush are attached to the outer surface of the power grid.

[0011] Preferably, a rotating frame is slidably connected to the outer surface of the fixed frame, a groove is provided in the middle of the rotating frame, a guide rod is fixed to one side of the rotating frame, a closing plate is fixed to the lower end of the rotating frame, and a guide groove is provided on the upper side of the base.

[0012] Preferably, the outer surface of the fixing frame is slidably connected to the inner wall of the groove, the groove is opened through one side of the rotating frame, one end of the guide rod is fixed to one side of the rotating frame, the outer surface of the guide rod is slidably connected to the inner wall of the guide groove, and the guide groove is opened at an inclined and closed position on the upper side of the base.

[0013] Preferably, the lower end of the rotating frame is fixed to the middle of the upper end of the sealing plate, the outer surface of the sealing plate is in contact with the inner wall of the base, the outer surface of the fixing rod is slidably connected to the inner wall of the middle part of the sealing plate, and the vertical cross-section of the sealing plate is arc-shaped.

[0014] Preferably, a fixing ring is fixed at the lower end of the sealing plate, a through groove is provided in the middle of the fixing ring, and a fan impeller is fixed in the middle of the outer side of the fixing ring.

[0015] Preferably, the upper end of the fixing ring is fixed to the middle of the lower end of the sealing plate, the cross-section of the fixing ring is circular, the through groove passes through the middle of the fixing ring, the fixing rod is disposed inside the through groove, and the middle of the fan impeller is fixed to the middle of the outer side of the fixing ring.

[0016] Compared with the prior art, the beneficial effects of the present invention are: (1) The present invention achieves the effect of adaptive dynamic cleaning, which can clean up the damp insect corpses, insect wings and sticky secretions accumulated on the surface of the grid in a timely and continuous manner, avoid the long-term mixing and fermentation of various insect bodies to form conductive mucus, and prevent the mucus from connecting the two poles of the grid to cause short circuits, leakage and other electrical faults. It can protect the internal high-voltage power supply control components from being burned by instantaneous large current, and also prevent the damp corrosive liquid from adhering to and corroding the grid metal wires for a long time, prevent the metal wires from rusting, thinning and breaking, and stably maintain the normal electric shock insect killing performance of the grid, greatly extending the overall service life of the entire insect killing device. (2) The present invention achieves the effect of dynamic opening and closing of the insect collection opening, effectively blocking surviving mosquitoes that have only been stunned by high voltage and have not been completely killed, preventing such mosquitoes from easily flying out of the open insect collection opening and escaping to the outside by their own activity ability, and effectively improving the overall insect killing effect of the insect killing device. (3) The present invention achieves the effect of air-drying insect corpses, effectively reducing the accumulation of moisture in insect corpses, avoiding the insect corpses from being mixed with moisture, fermenting and rotting, eliminating the risk of short circuit and leakage caused by the conductivity of the decay liquid, and improving the safety performance of the entire insecticidal device during long-term outdoor operation. Attached Figure Description

[0017] Figure 1 This is an overall structural diagram of the present invention; Figure 2 This is a partial structural cross-sectional view of the present invention; Figure 3 For the present invention Figure 2 Enlarged view of the structure of section A in the middle; Figure 4 This is a cross-sectional view of the base of the present invention; Figure 5 For the present invention Figure 4 Enlarged view of the structure of section B in the middle; Figure 6 This is a schematic diagram of the cleaning brush structure of the present invention; Figure 7 This is a schematic diagram of the closed plate structure of the present invention; Figure 8 This is a partial structural diagram of the present invention.

[0018] In the diagram: 1. Pole; 2. Mounting base; 3. Solar panel; 4. Energy storage power supply; 5. Insecticidal lamp; 6. Support base; 7. Lamp body; 8. Power grid; 9. Bracket; 10. Base; 11. Collection bag; 12. Drive motor; 13. Fixed rod; 14. Fixed frame; 15. Frame groove; 16. Sliding frame; 17. Spring; 18. Support frame; 19. Rotating rod; 20. Gear; 21. Internal gear ring; 22. Cleaning brush; 23. Rotating frame; 24. Groove; 25. Guide rod; 26. Sealing plate; 27. Guide groove; 28. Fixing ring; 29. ​​Through groove; 30. Fan impeller. Detailed Implementation

[0019] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0020] Example 1 This embodiment provides a garden pest control device; Please see Figures 1-8As shown, the device includes a pole 1, a mounting base 2 fixed to the lower end of the pole 1, a solar panel 3 fixed to the upper end of the pole 1, a power storage device 4 fixed to one side of the pole 1, an insecticidal lamp 5 fixed to the middle of the pole 1, a support base 6 fixed to the middle of the insecticidal lamp 5, a lamp body 7 set in the middle of the support base 6, an electric grid 8 set on the side of the support base 6, brackets 9 fixed to both sides of the insecticidal lamp 5, and a base 10 fixed to the other end of the two brackets 9. A collection bag 11 is detachably installed on the lower side of the base 10 by threads; a drive motor 12 is fixed to the middle of the lower end of the base 10, a fixing rod 13 is fixed to the drive end of the drive motor 12, and a connecting structure is set at the upper end of the fixing rod 13. The connecting structure includes a fixing frame 14, a frame groove 15 is opened on one side of the fixing frame 14, and a frame groove 15 is provided in the frame groove 15. A sliding frame 16 is slidably connected to the wall. A spring 17 is fixed to one side of the sliding frame 16, and a support frame 18 is fixed to one end of the sliding frame 16. A rotating rod 19 is rotatably connected to the other end of the support frame 18. A gear 20 is fixed to one side of the rotating rod 19, and the gear 20 meshes with an internal gear ring 21. A cleaning brush 22 is fixed to the upper middle part of the rotating rod 19. When the cleaning brush 22 rotates and revolves at its fastest speed, the centrifugal force generated by the overall rotation reaches its maximum value, pushing the sliding frame 16 to compress the spring 17, causing the cleaning brush 22 to move away from the electric grid 8. At this time, the gear 20 and the internal gear ring 21 are fully meshed, with complete tooth surface contact and tight transmission, which can stably drive the cleaning brush 22 to complete the revolution and rotation, realizing a regular and uniform cleaning operation on the surface of the electric grid 8. When the rotational and revolving speeds of the cleaning brush 22 are reduced to their minimum, the centrifugal force decreases significantly. The spring 17 rebounds, pushing the sliding frame 16 to move, causing the cleaning brush 22 to approach and closely adhere to the electric grid 8, achieving deep cleaning of the gaps in the electric grid 8. At this time, although there is a small gap between the gear 20 and the internal gear ring 21, they remain effectively meshed, preventing tooth slippage, skipping, or transmission failure, ensuring stable operation of the transmission structure throughout. This device precisely controls the meshing gap range between the gear 20 and the internal gear ring 21 through the dynamic balance of the spring force of the spring 17 and the centrifugal force, ensuring that the gear 20 and the internal gear ring 21 remain effectively meshed under both full-speed and low-speed extreme conditions of the cleaning mechanism, completely avoiding the problems of traditional adaptive cleaning mechanisms. To prevent issues such as slippage, jamming, and transmission interruption, the gears 20 are fully engaged during cleaning, ensuring high transmission efficiency and allowing the cleaning brush 22 to operate at a uniform speed, stably cleaning minor stains and scattered insect debris on the surface of the electric grid 8. Under low-speed, heavy-load cleaning conditions, the small meshing gaps buffer the impact force of the gears 20, preventing hard wear and vibration of the tooth surface under low-speed, high-pressure contact, thus ensuring smooth transmission. At the same time, the always-meshing gears 20 and the internal gear ring 21 transmission structure allow the revolution and rotation of the cleaning brush 22 to be continuous and uninterrupted throughout the entire process, ensuring that the electric grid 8 can achieve a continuous and stable adaptive cleaning effect under different conditions of varying resistance, effectively improving cleaning uniformity and thoroughness, and extending the service life of the entire machine.

[0021] Please refer to it again. Figures 1-8 As shown, one side of the fixed frame 14 is fixed to the upper end of the fixed rod 13, and the lower end of the fixed rod 13 is fixed to the drive end of the drive motor 12. The drive motor 12, the lamp body 7, and the power grid 8 are all electrically connected to the energy storage power supply 4 through wires. The frame groove 15 is opened on the other side of the fixed frame 14. The outer surface of the sliding frame 16 is slidably connected to the inner wall of the frame groove 15. The vertical section of the sliding frame 16 is T-shaped. One side of the sliding frame 16 is fixed to one end of the spring 17, and the other end of the spring 17 is fixed to the inner wall of the frame groove 15 on the side away from the fixed rod 13. The other end of the sliding frame 16 is fixed to one end of the support frame 18, and the other end of the support frame 18 is rotatably connected to the lower surface of the rotating rod 19. The vertical section of the support frame 18 is U-shaped. The lower side of the rotating rod 19 is fixed to the middle of the gear 20. The outer surface of the gear 20 is rotatably connected to the inner wall of the support frame 18. The gear 20 is meshed with the internal gear ring 21. The outer side of the internal gear ring 21 is fixed to the upper inner wall of the base 10. The middle part of the cleaning brush 22 is fixed to the middle of the upper side of the rotating rod 19. The bristles of the cleaning brush 22 are attached to the outer surface of the power grid 8.

[0022] The specific implementation process is as follows: First, the mounting base 2 at the lower end of the pole 1 is installed in a suitable location in the orchard to ensure that the solar panel 3 receives sufficient sunlight. The solar panel 3 converts light energy into electrical energy and stores it in the energy storage power supply 4. The energy storage power supply 4 supplies power to the lamp body 7, the power grid 8, and the drive motor 12. The energy storage power supply 4 has a built-in control module that automatically controls the lamp body 7, the power grid 8, and the drive motor 12 to start at night. The drive motor 12 drives the fixed rod 13 to rotate, and the fixed rod 13 synchronously drives the fixed frame 14 fixed at the upper end to rotate. The rotation of the fixed frame 14 generates centrifugal force, which pushes the sliding frame 16, which is slidably connected to the inner wall of the frame groove 15, to compress the spring 17. The rotation speed of the fixed frame 14 is relatively low, and the spring 17 is selected with a low elasticity coefficient to match the working conditions. When the centrifugal force is greater than the elasticity of the spring 17, the sliding frame 16 drives the support frame 18 to move radially. The support frame 18 drives the rotating rod 19 to move synchronously and completes the revolution motion with the fixed rod 13. The gear 20 fixed on the lower side of the rotating rod 19 moves into position synchronously and meshes with the internal gear ring 21 fixed on the inner wall of the upper end of the base 10. The gear 20 rotates on its own axis while revolving around the revolution. The gear 20 drives the nylon cleaning brush 22, which is fixed in the middle of its upper side, to rotate synchronously via the rotating rod 19. When there are few insect carcasses on the surface of the electric grid 8 and the cleaning resistance is small, the machine speed is kept at its highest, the centrifugal force is stronger, and the cleaning brush 22 moves away from the electric grid 8, with the bristles lightly touching the surface of the electric grid 8 to complete the routine cleaning operation. When the electric grid 8 is covered with a large number of insect carcasses and sticky substances, the cleaning resistance increases, and the overall speed decreases accordingly. The centrifugal force weakens, and the spring 17 rebounds to push the sliding frame 16 and the support frame 18 closer to the electric grid 8, so that the cleaning brush 22 fits tightly against the electric grid 8 and penetrates into the mesh gaps to complete deep cleaning. After the attachments on the electric grid 8 are cleaned, the cleaning resistance decreases, the rotation speed gradually increases, and the cleaning brush 22 resets to resume normal cleaning, achieving an adaptive dynamic cleaning effect. This allows for timely and continuous cleaning of the damp insect carcasses, wings, and sticky secretions accumulated on the surface of the electric grid 8, preventing the long-term accumulation and fermentation of various insect bodies to form conductive mucus. This also prevents the mucus from connecting the two poles of the electric grid 8, causing short circuits, leakage, and other electrical faults. It protects the internal high-voltage power supply control components from being burned out by instantaneous high currents and also prevents the long-term adhesion of damp and corrosive liquids from corroding the metal wires of the electric grid 8, preventing the metal wires from rusting, thinning, breaking, and failing. This ensures the stable maintenance of the electric grid 8's normal electric shock insecticidal performance and significantly extends the overall service life of the entire insecticidal device.

[0023] Example 2 After the insecticidal lamp 5 shocks mosquitoes with a high-voltage grid 8, the insects fall into the insect-collecting structure below. However, the opening at the top of the insect-collecting structure is always open, and mosquitoes that are only stunned and not completely killed can easily escape through the opening, greatly reducing the overall insecticidal effect. Therefore, a dynamic opening and closing structure needs to be set for the insect-collecting opening to improve the insecticidal effect of the device.

[0024] Please see Figures 1-8 As shown, the function of dynamically opening and closing the insect collection opening has been added based on Embodiment 1. Please refer to it again. Figures 1-8As shown, a rotating frame 23 is slidably connected to the outer surface of the fixed frame 14. A groove 24 is provided in the middle of the rotating frame 23. A guide rod 25 is fixed to one side of the rotating frame 23. A closing plate 26 is fixed to the lower end of the rotating frame 23. A guide groove 27 is provided on the upper side of the base 10. The outer surface of the fixed frame 14 is slidably connected to the inner wall of the groove 24. The groove 24 is opened through one side of the rotating frame 23. One end of the guide rod 25 is fixed to one side of the rotating frame 23. The outer surface of the guide rod 25 is slidably connected to the inner wall of the guide groove 27. The guide groove 27 is opened at an inclined and closed position on the upper side of the base 10. The lower end of the rotating frame 23 is fixed to the middle of the upper end of the closing plate 26. The outer surface of the closing plate 26 is in contact with the inner wall of the base 10. The outer surface of the fixed rod 13 is slidably connected to the inner wall of the middle of the closing plate 26. The vertical section of the closing plate 26 is arc-shaped. By rotating and moving up and down, the closing plate 26 simultaneously realizes the dual functions of opening and closing the insect collection channel and guiding and blocking the insect body. Following the continuous circumferential rotation of the rotating frame 23, and under the constraint of the inclined guide groove 27, the 6-axis continuously completes the up-and-down reciprocating lifting motion. The two motions are synchronized and do not interfere with each other. During the rotation of the sealing plate 26, a continuous centrifugal thrust is generated. Various insect bodies and small insect wings that fall after being electrocuted by the electric grid 8 will be pushed to the side of the base 10 under the centrifugal force, preventing insect corpses from accumulating at the edge of the opening and causing blockage and adhesion, ensuring that the insect body falling channel is unobstructed for a long time. When the sealing plate 26 descends to the lowest position, the insect collection opening at the top of the base 10 is fully opened, and the knocked-down insect bodies can pass through the opening smoothly without obstruction and fall into the interior of the base 10, and finally be collected in the collection bag 11 below. When the sealing plate 26 is raised to the highest stroke position, the opening of the base 10 is completely sealed, forming a sealed barrier, completely blocking the channel for mosquitoes that have only been stunned and are not completely dead to fly out, solving the problem of secondary escape of mosquitoes from the root.

[0025] The specific implementation process is as follows: The fixed rod 13 is driven by the drive motor 12 to rotate, and the fixed frame 14 fixed at the upper end of the fixed rod 13 rotates synchronously. The fixed frame 14 is slidably connected to the groove 24 opened in the middle of the rotating frame 23. During the rotation of the fixed frame 14, it can drive the rotating frame 23 to rotate together. A guide rod 25 is fixed on the side of the rotating frame 23. The outer surface of the guide rod 25 is slidably connected to the guide groove 27 opened at the upper side of the base 10. When the guide rod 25 rotates circumferentially with the rotating frame 23, it is continuously squeezed by the inner wall of the guide groove 27, driving the rotating frame 23 to complete the up-and-down reciprocating lifting action synchronously. The rotating frame 23, which rotates synchronously and moves up and down, drives the closed plate 26 fixed at its lower end to rotate and lift synchronously. The rotation of the closed plate 26 generates centrifugal force, which flings the insects knocked down by the electric net 8 toward the side of the base 10. When the sealing plate 26 moves down to its lowest point, the top opening of the base 10 is fully open, and the insects thrown out by centrifugal force pass through the opening and fall into the base 10, eventually being collected in the collection bag 11. When the sealing plate 26 moves up to its highest point, the top opening of the base 10 is fully closed, achieving the effect of dynamic opening and closing of the insect collection opening. This effectively blocks surviving mosquitoes that have only been stunned by high voltage and are not completely dead, preventing such mosquitoes from easily flying out of the open insect collection opening and escaping to the outside by their own mobility, thus effectively improving the overall insecticidal effect of the insecticidal device.

[0026] Example 3 The dead insects knocked down by the high-voltage power grid have been accumulating inside the insect collection structure for a long time. The insects themselves contain moisture, and the accumulation of dew at night further dampens the environment. The mixed accumulation of various insect carcasses easily leads to fermentation and decay, producing not only unpleasant odors and mold growth, but also conductive slime from the rotting insects that can easily induce electrical leakage and short circuits, seriously affecting the safe operation of the insecticidal device. Therefore, a drying structure needs to be added to continuously dry the accumulated damp insect carcasses, eliminating the safety hazards caused by fermentation and decay, and improving the operational safety of the insecticidal device.

[0027] Please see Figures 1-8 As shown, the function of air-drying insect carcasses has been added based on Example 1; Please refer to it again. Figures 1-8As shown, a fixing ring 28 is fixed to the lower end of the sealing plate 26. A through groove 29 is provided in the middle of the fixing ring 28. A fan impeller 30 is fixed to the middle of the outer side of the fixing ring 28. The upper end of the fixing ring 28 is fixed to the middle of the lower end of the sealing plate 26. The cross-section of the fixing ring 28 is circular. The through groove 29 passes through the middle of the fixing ring 28. The fixing rod 13 is set inside the through groove 29. The middle of the fan impeller 30 is fixed to the middle of the outer side of the fixing ring 28. The fan impeller 30 fixed to the lower end of the rotating sealing plate 26 rotates synchronously, continuously generating a stable airflow into the collection bag 11, continuously blowing away the damp insect carcasses accumulated in the bag and carrying away the insects' own bodies. The liquid and dew that condenses at night prevent large amounts of insect carcasses from being damp and fermenting for a long time, greatly reducing the generation of conductive and corrosive slime. On the one hand, it can prevent slime from connecting to the two poles of the power grid and causing short circuits and leakage faults, protecting the internal high-voltage power supply components from damage. On the other hand, it can reduce the corrosion of metal components and plastic shells by the corrosive liquid, delaying the aging of the equipment. This structure, together with the function of the sealing plate 26 dynamically sealing the opening, not only prevents the escape of stunned mosquitoes and improves the insect killing efficiency, but also effectively reduces the failure rate of equipment operation, extends the continuous operation cycle of the insecticidal device in the field, and reduces the manual maintenance costs for farmers to disassemble, clean, and replace parts.

[0028] The specific implementation process is as follows: The fixed rod 13 is driven by the drive motor 12 to rotate. The fixed frame 14 fixed at the upper end of the fixed rod 13, together with the groove 24 and the rotating frame 23, synchronously drives the closed plate 26 to rotate circumferentially. The closed plate 26 synchronously drives the fixed ring 28 fixed at the lower middle part to rotate together. The fixed ring 28 has a through groove 29 in the middle, which can avoid the fixed rod 13. The two do not interfere with each other. The fan impeller 30 is fixed at the center of the fixed ring 28. The fan impeller 30 rotates synchronously with the closed plate 26 and generates a continuous airflow. The airflow continuously blows away the damp insect carcasses accumulated in the collection bag 11, achieving the effect of drying the insect carcasses. This effectively reduces the accumulation of moisture in the insect carcasses, avoids the insects from mixing with moisture and fermenting and rotting, eliminates the risk of short circuit and leakage caused by the conductivity of the decaying liquid, and improves the safety performance of the entire insecticidal device during long-term outdoor operation.

[0029] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A garden insecticidal device, comprising a rod (1), characterized in that: The lower end of the pole (1) is fixed with a mounting base (2), the upper end of the pole (1) is fixed with a solar panel (3), a power storage device (4) is fixed on one side of the pole (1), an insecticidal lamp (5) is fixed in the middle of the pole (1), a support base (6) is fixed in the middle of the insecticidal lamp (5), a lamp body (7) is provided in the middle of the support base (6), an electric grid (8) is provided on the side of the support base (6), brackets (9) are fixed on both sides of the insecticidal lamp (5), a base (10) is fixed at the other end of the two brackets (9), and a collection bag (11) is detachably installed on the lower side of the base (10) by means of threads. A drive motor (12) is fixed at the lower middle part of the base (10). A fixed rod (13) is fixed at the drive end of the drive motor (12). A connecting structure is provided at the upper end of the fixed rod (13). A cleaning brush (22) is provided on the connecting structure. The connecting structure can drive the cleaning brush (22) to revolve around the central axis of the fixed rod (13), rotate around the central axis of the cleaning brush (22), and move radially along the power grid (8) to perform adaptive dynamic cleaning of the power grid (8).

2. The garden pest control device according to claim 1, characterized in that: The connection structure includes a fixed frame (14), a frame groove (15) is provided on one side of the fixed frame (14), a sliding frame (16) is slidably connected to the inner wall of the frame groove (15), a spring (17) is fixed on one side of the sliding frame (16), a support frame (18) is fixed at one end of the sliding frame (16), a rotating rod (19) is rotatably connected to the other end of the support frame (18), a gear (20) is fixed on one side of the rotating rod (19), an internal gear ring (21) is meshed with the gear (20), and a cleaning brush (22) is fixed in the middle of the upper side of the rotating rod (19).

3. A garden pest control device according to claim 2, characterized in that: The fixed frame (14) is fixed on one side of the upper end of the fixed rod (13), and the lower end of the fixed rod (13) is fixed to the driving end of the drive motor (12). The drive motor (12), the lamp body (7) and the power grid (8) are all electrically connected to the energy storage power supply (4) through wires. The rack slot (15) is opened on the other side of the fixed frame (14). The outer surface of the sliding frame (16) is slidably connected to the inner wall of the rack slot (15). The vertical section of the sliding frame (16) is T-shaped.

4. A garden pest control device according to claim 2, characterized in that: One side of the sliding frame (16) is fixed to one end of the spring (17), and the other end of the spring (17) is fixed to the inner wall of the frame groove (15) away from the fixed rod (13). The other end of the sliding frame (16) is fixed to one end of the support frame (18), and the other end of the support frame (18) is rotatably connected to the lower surface of the rotating rod (19). The vertical section of the support frame (18) is U-shaped.

5. A garden pest control device according to claim 2, characterized in that: The lower side of the rotating rod (19) is fixed to the middle of the gear (20). The outer surface of the gear (20) is rotatably connected to the inner wall of the support frame (18). The gear (20) meshes with the internal gear ring (21). The outer side of the internal gear ring (21) is fixed to the upper inner wall of the base (10). The middle part of the cleaning brush (22) is fixed to the middle of the upper side of the rotating rod (19). The bristles of the cleaning brush (22) are attached to the outer surface of the power grid (8).

6. A garden pest control device according to claim 2, characterized in that: The outer surface of the fixed frame (14) is slidably connected to a rotating frame (23). A groove (24) is provided in the middle of the rotating frame (23). A guide rod (25) is fixed on one side of the rotating frame (23). A closing plate (26) is fixed at the lower end of the rotating frame (23). A guide groove (27) is provided on the upper side of the base (10).

7. A garden pest control device according to claim 6, characterized in that: The outer surface of the fixed frame (14) is slidably connected to the inner wall of the groove (24). The groove (24) is opened through one side of the rotating frame (23). One end of the guide rod (25) is fixed to one side of the rotating frame (23). The outer surface of the guide rod (25) is slidably connected to the inner wall of the guide groove (27). The guide groove (27) is opened at an inclined and closed position on the upper side of the base (10).

8. A garden pest control device according to claim 6, characterized in that: The lower end of the rotating frame (23) is fixed to the middle of the upper end of the closed plate (26). The outer surface of the closed plate (26) is in contact with the inner wall of the base (10). The outer surface of the fixing rod (13) is slidably connected to the inner wall of the middle part of the closed plate (26). The vertical section of the closed plate (26) is arc-shaped.

9. A garden pest control device according to claim 6, characterized in that: The lower end of the sealing plate (26) is fixed with a fixing ring (28), and a through groove (29) is provided in the middle of the fixing ring (28). A fan impeller (30) is fixed in the middle of the outer side of the fixing ring (28).

10. A garden pest control device according to claim 9, characterized in that: The upper end of the fixing ring (28) is fixed to the middle of the lower end of the sealing plate (26). The cross-section of the fixing ring (28) is circular. The through groove (29) passes through the middle of the fixing ring (28). The fixing rod (13) is set inside the through groove (29). The middle of the fan impeller (30) is fixed to the middle of the outer side of the fixing ring (28).