Garden insect catching device
By introducing detachable protective components and multi-layered insect-sticking components into the garden insect-catching device, combined with an electric grid structure, the problems of low insect-catching efficiency and inconvenient cleaning in the existing technology are solved, achieving the effect of efficient insect capture and convenient insect removal.
Patent Information
- Application Number
- CN202423153920.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-12-19
AI Technical Summary
Existing garden insect traps are inefficient and difficult to clean, with some insects easily escaping or being difficult to remove.
A garden insect trapping device was designed, including a rain cover, a base, detachable protective components, multi-layered sticky insect components, and an electric grid structure. It attracts insects using an insect-attracting lamp and a sex hormone storage box, and captures the insects through the sticky insect components and the electric grid. The detachable design makes it easy to clean.
It improves insect-catching efficiency, enables multi-directional capture of flying and crawling insects, facilitates the cleaning of captured insects, and enhances the practicality of the device.
Smart Images

Figure CN223528776U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of insect-catching technology, and in particular to an insect-catching device for gardens. Background Technology
[0002] Gardens hold a unique position in traditional Chinese architecture. They serve to purify the air, reduce noise, and replenish oxygen. People enjoy strolling and relaxing in gardens. Insects also like to gather in gardens, especially on summer nights when large numbers of flying insects gather, disturbing visitors and harming some garden plants. Therefore, some gardens often use insect traps to catch flying insects.
[0003] Existing technologies disclose many insect-trapping devices that attract and trap insects using light sources. Application number 202323244089.X discloses an insect-trapping lamp, including a lampshade, an insect-attracting lamp, a net, a suction fan, and an insect-collecting box. The light source generated by the insect-attracting lamp attracts insects to pass through the net, and the suction fan draws the insects into the insect-collecting box. However, this insect-trapping lamp has the following problems in practical applications: when the suction fan draws in insects, some insects can freely pass through the net and escape, resulting in low insect-trapping efficiency; in addition, some insects may also be sucked into the suction fan's storage chamber, making cleaning inconvenient. Therefore, to address the above problems, it is necessary to develop an insect-trapping device for gardens. Utility Model Content
[0004] The technical problem to be solved by this utility model is to provide an insect-catching device for gardens, which greatly improves the efficiency of insect catching and makes it easier to clean up the captured insects, in order to address the shortcomings of the existing technology.
[0005] To solve the above-mentioned technical problems, the technical solution of this utility model is as follows:
[0006] A garden insect-catching device includes a rain cover and a base. A detachable protective component is provided between the rain cover and the base, and the protective component has multiple rows of through holes. An insect-attracting lamp is located below the rain cover, and multiple layers of insect-sticking components are provided around the insect-attracting lamp. The insect-sticking components are fixed on a rotating shaft. One end of the rotating shaft has a hollowed-out sex hormone storage box, and the other end of the rotating shaft passes through the base and is connected to the output shaft of a motor. The base has multiple open-topped insect storage chambers inside, and an electric grid is provided above the insect storage chambers. An insect discharge port is provided above the insect storage chambers. The insect-attracting lamp, the motor, and the electric grid are electrically connected to a controller.
[0007] As an improved technical solution, the protective component includes multiple protective plates, each protective plate having multiple rows of through holes, and each protective plate is secured together with the rain cover and the base.
[0008] As an improved technical solution, the rain cover is connected to the base via a connecting rod.
[0009] As an improved technical solution, the multi-layered sticky insect component includes a first sticky insect component and a second sticky insect component disposed on the rotating shaft, and a third sticky insect component disposed between adjacent first and second sticky insect components; the first and second sticky insect components are multiple sticky insect plates disposed on the rotating shaft, and sticky insect paper is disposed on both sides of the sticky insect plates; the third sticky insect component includes a ring disposed on the rotating shaft, and multiple sticky insect discs are disposed on the ring, and sticky insect paper is disposed on both sides of the sticky insect discs.
[0010] As an improved technical solution, the interior of the base is conical.
[0011] As an improved technical solution, each of the insect storage chambers has sticky insect paper on the bottom inner wall.
[0012] After adopting the above technical solution, the beneficial effects of this utility model are:
[0013] The insect-catching device used in gardens includes a rain cover and a base. A detachable protective component connects the rain cover and the base, and this component has multiple rows of through holes. Below the rain cover is an insect-attracting lamp, surrounded by multiple layers of sticky insect components fixed to a rotating shaft. One end of the shaft has a perforated pheromone storage box, and the other end passes through the base and connects to the motor's output shaft. Inside the base are multiple open-topped insect storage chambers, each with an electric grid above it and an insect discharge port. The insect-attracting lamp, motor, and electric grid are electrically connected to a controller. When the controller is activated, the insect-attracting lamp and electric grid are powered, and the motor starts running. The motor drives the rotating shaft and the multiple layers of sticky insect components. At night, the light from the insect-attracting lamp and the pheromone emitted from the pheromone storage box attract a large number of insects. These insects pass through the through holes in the protective component; some flying insects are stuck to the sticky components, while some crawling insects that are not stuck fall through the electric grid and are captured, then fall into the insect storage chambers and are finally discharged from the insect discharge port. When the sticky insect part needs to be replaced, simply remove the protective part and replace the sticky insect part. The insect-catching device described above is reasonably designed. The rotating sticky insect part can capture a large number of flying insects from multiple directions, and the electric grid can also capture crawling insects, greatly improving the insect-catching efficiency and making it easy to clean up the captured insects.
[0014] The protective components consist of multiple protective panels, each with multiple rows of through holes. Each panel is secured to the rain cover and the base. This design facilitates easy disassembly and installation, enabling effective removal of captured insects.
[0015] The rain cover is connected to the base via a connecting rod. This connecting rod securely connects the rain cover to the base.
[0016] The multi-layered insect-sticking device includes a first and a second insect-sticking component mounted on a rotating shaft, with a third component positioned between adjacent components. The first and second components consist of multiple insect-sticking plates mounted on the rotating shaft, each plate having sticky paper on both sides. The third component includes a ring mounted on the rotating shaft, with multiple sticky discs on the ring, each disc having sticky paper on both sides. When the motor starts, it drives the rotating shaft to rotate, causing the multiple insect-sticking plates of the first and second components, as well as the ring and discs of the second component, to rotate. Insects located around the first, second, and third components are then stuck to the sticky paper. This structure of the insect-sticking device is rationally designed, increases the insect-catching range, and significantly improves the efficiency of insect capture.
[0017] Because the base is cone-shaped inside, insects captured by the electric grid fall into the insect storage chamber, gather at the bottom, and are then discharged through the outlet. This design facilitates the removal of insects.
[0018] Each insect storage chamber has sticky insect paper on the bottom inner wall. This design prevents stunned insects from escaping. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the structure of an insect-catching device for gardens according to the present invention;
[0020] Figure 2 for Figure 1 Schematic diagram of the structure of the middle protective plate;
[0021] Figure 3 for Figure 1 Schematic diagram of the middle base;
[0022] Among them, 1-rain cover, 2-base, 20-insect storage chamber, 200-insect discharge port, 201-cover plate, 202-slot, 3-connecting rod, 4-protective component, 40-protective plate, 400-through hole, 401-slot block, 5-insect attractant lamp, 6-insect sticking component, 60-first insect sticking component, 600-insect sticking board, 601-insect sticking paper, 61-second insect sticking component, 62-third insect sticking component, 620-ring, 621-insect sticking tray, 7-rotating shaft, 8-sex hormone storage box, 9-motor, 10-electric grid, 11-controller, 12-connecting plate, 13-support rod. Detailed Implementation
[0023] To make the objectives, technical solutions, and advantages of this utility model clearer, the following detailed description is provided in conjunction with embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this utility model.
[0024] A garden insect trap (fixed to a support rod 13 via a connecting plate 12), such as Figures 1 to 3 As shown, the device includes a rain cover 1 and a base 2 (the rain cover is connected to the base via a connecting rod 3). A detachable protective component 4 is provided between the rain cover 1 and the base 2, and the protective component has multiple rows of through holes 40. Below the rain cover 1, there is an insect-attracting lamp 5. Around the insect-attracting lamp 5, there are multiple layers of insect-sticking components 6. The insect-sticking components 6 are fixed on a rotating shaft 7. One end of the rotating shaft 7 is provided with a hollow sex hormone storage box 8 (with a slot at the top of the rotating shaft and a locking block at the bottom). The other end of the rotating shaft 7 passes through the base 2 and is connected to the output shaft of the motor 9. The base 2 has multiple open-top insect storage chambers 20 inside. Above the insect storage chambers 20, there is an electric grid 10 (fixed to two connecting rods on both sides). The insect storage chambers 20 have an insect discharge port 200, and the insect discharge port 200 has a cover plate 201 (the cover plate is hinged to the base). The insect-attracting lamp 5, the motor 9, and the electric grid 10 are electrically connected to the controller 11.
[0025] The controller activates the insect-attracting lamp and the power grid, and the motor starts running. At night, the light from the insect-attracting lamp and the pheromones emitted from the pheromone storage box attract a large number of insects. These insects pass through the protective components, and the motor drives the rotating shaft and multi-layered sticky insect components to rotate. Some flying insects are stuck to the sticky insect components, while some crawling insects that are not stuck will pass down through the power grid and be captured, then fall into the insect storage chamber and finally be discharged from the insect outlet. When it is necessary to replace the sticky insect components, the protective components are removed, and then the sticky insect components are replaced. The insect-catching device with the above structure is reasonably designed. The rotating sticky insect components can capture a large number of flying insects from multiple directions, and the power grid can capture crawling insects, which greatly improves the insect-catching efficiency and makes it easy to clean up the captured insects. It should be noted that a solar panel is used to convert solar energy into electrical energy and store it in a battery. The battery is electrically connected to the controller, and the controller is then electrically connected to the insect-attracting lamp, the motor, and the power grid (solar panels and battery packs are common structures, so corresponding diagrams and detailed descriptions are not provided).
[0026] The protective component 4 includes multiple protective plates 40, each with multiple rows of through holes 400. Each protective plate 40 is secured to the rain cover and the base (multiple slots 202 are distributed on the outer walls of the rain cover and the base, and multiple locking blocks 401 that match the slots are provided on the inner walls of the protective plates). When it is necessary to process the insects captured on the sticky insect component, one protective plate is removed, the sticky insect paper on the sticky insect board is torn off, and a new sticky insect paper is attached to the sticky insect board.
[0027] The multi-layered sticky insect component 6 includes a first sticky insect component 60 and a second sticky insect component 61 disposed on the rotating shaft 7, and a third sticky insect component 62 disposed between adjacent first sticky insect components 60 and second sticky insect components 61; the first sticky insect component 60 and the second sticky insect component 61 are multiple sticky insect plates 600 disposed on the rotating shaft 7 (the sticky insect plates are fixedly connected to the rotating shaft through connecting rods), and sticky insect paper 601 is disposed on both sides of the sticky insect plate 600; the third sticky insect component 62 includes a ring 620 disposed on the rotating shaft 7 (the ring is welded to the rotating shaft), and multiple sticky insect trays 621 are disposed on the ring 620 (the sticky insect trays are fixed to the ring through connecting plates), and sticky insect paper is disposed on both sides of the sticky insect trays 621. After the motor starts, it drives the shaft to rotate. The multiple sticky insect plates of the first and second sticky insect components, as well as the ring and multiple sticky insect discs of the second sticky insect component, rotate respectively. Insects located around the first, second and third sticky insect components are stuck by the sticky insect paper. The sticky insect components with the above structure are reasonably designed, which increases the insect-catching range and greatly improves the efficiency of insect catch.
[0028] The base 2 has a conical interior. Insects captured by the electric grid fall into the insect storage chamber, gather at the bottom, and are then discharged from the outlet. This design facilitates the discharge of insects.
[0029] Each insect storage chamber has sticky insect paper on the bottom inner wall. This design prevents stunned insects from escaping.
[0030] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A garden insect trap, characterized in that, The device includes a rain cover and a base, with a detachable protective component between the rain cover and the base. The protective component has multiple rows of through holes. Below the rain cover is an insect-attracting lamp, surrounded by multiple layers of insect-sticking components fixed to a rotating shaft. One end of the rotating shaft has a perforated sex hormone storage box, and the other end passes through the base and connects to the output shaft of a motor. The base contains multiple open-topped insect storage chambers, with an electric grid above each chamber and an insect discharge port. The insect-attracting lamp, the motor, and the electric grid are electrically connected to a controller.
2. The insect-catching device for gardens according to claim 1, characterized in that, The protective component includes multiple protective plates, each of which has multiple rows of through holes. Each protective plate is secured together with the rain cover and with the base.
3. The insect-catching device for gardens according to claim 1, characterized in that, The rain cover is connected to the base via a connecting rod.
4. The insect-catching device for gardens according to claim 1, characterized in that, The multi-layered insect-sticking component includes a first insect-sticking component and a second insect-sticking component disposed on the rotating shaft, with a third insect-sticking component disposed between adjacent first and second insect-sticking components; the first and second insect-sticking components are multiple insect-sticking plates disposed on the rotating shaft, with insect-sticking paper disposed on both sides of each insect-sticking plate; the third insect-sticking component includes a ring disposed on the rotating shaft, with multiple insect-sticking discs disposed on the ring, with insect-sticking paper disposed on both sides of each insect-sticking disc.
5. A garden insect trap according to claim 1, characterized in that, The base has a conical interior.
6. The insect-catching device for gardens according to claim 1, characterized in that, Each of the insect storage chambers has sticky insect paper on the bottom inner wall.
Citation Information
Patent Citations
Garden insect-catching lamp convenient to maintain
CN221228547U