Light-induced scarab trapping device
By utilizing the phototaxis of scarab beetles and combining a solar power system with an insect-attracting lamp design, the problem of poor capture effect of existing devices on male scarab beetles has been solved, achieving a highly efficient scarab beetle capture effect.
Patent Information
- Application Number
- CN202520467654.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-03-18
AI Technical Summary
Existing scarab beetle trapping devices that use sex pheromones can only effectively trap male scarab beetles, resulting in poor effectiveness in reducing the scarab beetle population.
A light-attracting scarab beetle trapping device is designed, which uses insect-attracting lamps with wavelengths of 385nm to 395nm combined with a solar power system to trap scarab beetles by targeting their phototaxis. The beetles are guided into the insect collection bucket through a barrier plate and a funnel structure, achieving all-round trapping.
It improves the efficiency of scarab beetle trapping, reduces the chances of insects escaping, and has a simple structure that is easy to install, making it suitable for orchards, farmlands, and other similar settings.
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Figure CN223844739U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a scarabaeidae trapping technical field, especially a kind of light lure scarabaeidae trapping device. BACKGROUND
[0002] Scarabaeidae is the common name of Coleoptera Scarabaeoidea insects, among them, the plant-eating group such as Anomala cuprea, big black cheek scarabaeidae, dark black cheek scarabaeidae and their larval grubs will feed on the roots, stems, leaves, flowers, fruits and seeds of plants, harm peach, plum, pear, apple, peanut, wheat, potato and other crops, and it is important agricultural pest.
[0003] Current control means mainly prevents through chemical pesticide, but long-term spraying pesticide can cause pollution to environment, cause certain influence to human health, and also can make insect produce drug resistance, so insect trapping device is used to kill insect.
[0004] There are problems in prior art as follows:
[0005] Existing scarabaeidae trapping device adopts the method of sex pheromone trapping, but sex pheromone can only trap male scarabaeidae, and the effect of reducing scarabaeidae population quantity is poor.
[0006] The above statements are only used to provide background technical information related to the present application, and not necessarily constitute prior art. UTILITY MODEL CONTENT
[0007] In view of the above problems, the present application provides a light lure scarabaeidae trapping device, which is used to solve the technical problem that existing scarabaeidae trapping device adopts the method of sex pheromone trapping, but sex pheromone can only trap male scarabaeidae, and the effect of reducing scarabaeidae population quantity is poor.
[0008] To achieve the above purpose, the present application provides a light lure scarabaeidae trapping device, comprising:
[0009] Top cover assembly, the top cover assembly includes upper shell, lower shell, solar panel, battery, multifunctional controller and insect trapping lamp, the upper shell is in the form of cover structure, the lower shell is arranged below the lower shell, the upper shell covers the lower shell, the solar panel is arranged on the upper shell, more than two solar panels are arranged on the upper shell, the battery and the multifunctional controller are arranged on the lower shell, the solar panel is electrically connected with the battery, the insect trapping lamp is arranged at the bottom of the lower shell, and the multifunctional controller is connected and controls the insect trapping lamp;And
[0010] The moth trapping assembly comprises two or more blocking plates, a funnel and a moth collecting barrel; the two or more blocking plates are arranged around the circumference of the moth lamp, the top of the blocking plate is connected to the bottom of the lower shell, the funnel is fixed to the bottom of the two or more blocking plates, and the top of the moth collecting barrel is detachably connected to the bottom of the funnel.
[0011] Different from the prior art, the technical scheme of the present application comprises the following steps: the top cover assembly comprises an upper shell, a lower shell, a solar panel, a battery, a multifunctional controller and a moth lamp; the upper shell is in a cover structure; the lower shell is arranged below the lower shell; the upper shell covers the lower shell; the solar panel is arranged on the upper shell; two or more solar panels are arranged on the upper shell; the battery and the multifunctional controller are arranged on the lower shell; the solar panel is electrically connected to the battery; the moth lamp is arranged at the bottom of the lower shell; and the multifunctional controller is connected to and controls the moth lamp; the moth trapping assembly comprises two or more blocking plates, a funnel and a moth collecting barrel; the two or more blocking plates are arranged around the circumference of the moth lamp; the top of the blocking plate is connected to the bottom of the lower shell; the funnel is fixed to the bottom of the two or more blocking plates; and the top of the moth collecting barrel is detachably connected to the bottom of the funnel. In actual use, sunlight is incident on the solar panel during the day to generate a photoelectric effect, thereby converting light energy into electrical energy; the electrical energy is charged into the battery through the solar controller; when it is dark, the battery delivers the electrical energy to the multifunctional controller and the moth lamp; the multifunctional controller controls the moth lamp to be turned on to emit light with a wavelength of 385nm-395nm, thereby attracting the beetles to gather around the trapping device; when the beetles are attracted to the trapping device, the beetles will collide with the blocking plates during flight, fall into the funnel after being stunned, fall into the moth collecting barrel along the inner wall of the funnel, and be trapped in the moth collecting barrel and unable to escape, thereby completing the trapping. In this way, the beetles are trapped by using the moth lamp, the spectral optimization design is performed according to the phototaxis characteristics of the beetles, and the trapping efficiency is improved.
[0012] As an embodiment of the present application, the upper shell comprises a first plane and two or more inclined planes; the inclined planes are connected to the first plane; the two or more inclined planes are arranged around the first plane; the solar panel is arranged on the inclined plane; and one inclined plane is provided with one solar panel.
[0013] In this way, the inclined plane facilitates the placement of the solar panel, multiple inclined planes are arranged to absorb solar energy at multiple angles, and the inclined angle of the solar panel does not need to be deliberately set, thereby enabling the solar panel to absorb solar energy in the morning and afternoon.
[0014] As an embodiment of the utility model, the first plane is a hexagonal table body, six edges of the first plane are provided with an inclined surface, two adjacent inclined surfaces are connected with each other, the inclined surface is downwardly inclined, and the projection of the outer edge of the six inclined surfaces in the vertical direction is greater than the projection of the top of the funnel in the vertical direction.
[0015] Thus, the projection of the outer edge of the six inclined surfaces in the vertical direction is greater than the projection of the top of the funnel in the vertical direction, which facilitates the installation of the solar panel while shielding rain.
[0016] As an embodiment of the utility model, the lower shell is hexagonal, and the shape of the lower shell is matched with the shape of the upper shell.
[0017] Thus, the lower shell is conveniently arranged in the upper shell.
[0018] As an embodiment of the utility model, a lifting ring is arranged on the first plane, and the lifting ring is located at the center of the first plane.
[0019] Thus, the lifting ring is arranged at the uppermost position of the top cover assembly, and the device is hung by a rope passing through the lifting ring and hung on a horizontal branch or other horizontal rod.
[0020] As an embodiment of the utility model, the top cover assembly further comprises a solar controller, the solar controller, the multifunctional controller and the battery are sequentially arranged on the lower shell, the solar controller is electrically connected with the solar panel, and the solar panel is electrically connected with the battery through the solar controller.
[0021] Thus, the solar controller is fixed on the lower shell, and the solar controller controls the maximum voltage provided by the solar panel within a range suitable for the battery, so as to prevent current overshoot and damage the service life of the battery.
[0022] As an embodiment of the utility model, the moth trapping assembly comprises three blocking plates arranged at an angle of 120°, the top of the blocking plate is connected with the bottom of the lower shell through a first connecting piece, and the bottom of the blocking plate is connected with the funnel through a second connecting piece.
[0023] Thus, the blocking plate is an acrylic plate, the three blocking plates arranged at an angle of 120°, and the scarab beetles fall into the funnel after being stunned by the acrylic plate in the flight process, and are attracted by the moth lamp from multiple angles, so that the scarab beetles can be conveniently trapped.
[0024] As an embodiment of the utility model, the blocking plate is provided with an avoiding part, the avoiding parts of the three blocking plates are oppositely arranged to form a containing space, and the moth lamp is located in the containing space.
[0025] In this way, the moth lamp is located in the containing space, and the moth lamp is conveniently placed.
[0026] As an embodiment of the utility model, the bottom of the funnel is provided with a straight cylinder part, the outer surface of the straight cylinder part is provided with two or more clamping parts, and the two or more clamping parts are arranged around the circumference of the straight cylinder part.
[0027] The top of the moth collecting barrel is provided with two or more clamping grooves, the clamping grooves are arranged opposite to the clamping parts, the inner diameter of the moth collecting barrel is greater than the outer diameter of the straight cylinder part, and the moth collecting barrel is detachably connected with the straight cylinder part through cooperation of the clamping grooves and the clamping parts.
[0028] In this way, the clamping groove is in an L-shaped structure, the cooperation of the clamping part and the clamping groove facilitates clamping of the moth collecting barrel at the bottom of the funnel, and the moth collecting barrel is conveniently disassembled.
[0029] As an embodiment of the utility model, the bottom of the moth collecting barrel is provided with two or more through holes.
[0030] In this way, if rainwater enters the moth collecting barrel on a rainy day, the rainwater flows out along the small holes, and the rainwater can be quickly drained, so that the tortoise is prevented from rotting and emitting a foul smell due to excessive moisture.
[0031] The above-mentioned utility model content related records are only the summary of the technical scheme of the application, in order to enable those skilled in the art to more clearly understand the technical scheme of the application, and then can be implemented according to the content recorded in the specification and the drawings, and in order to enable the above-mentioned purpose and other purposes, characteristics and advantages of the application to be more easily understood, the following is described in combination with the specific embodiments of the application and the drawings. BRIEF DESCRIPTION OF DRAWINGS
[0032] The drawings are only used to show the principles, implementation manners, applications, characteristics and effects of the specific embodiments of the application and other related contents, and cannot be considered as the limitation of the application.
[0033] In the drawings of the specification:
[0034] Figure 1 It is a three-dimensional line drawing of the light-induced tortoise trapping device of one embodiment of the application;
[0035] Figure 2 It is a structural schematic view of the top cover assembly of one embodiment of the application;
[0036] Figure 3Structure diagram of the moth trapping assembly according to an embodiment of the present application;
[0037] Figure 4 Structure diagram of the moth collecting barrel according to an embodiment of the present application;
[0038] Figure 5 Three-dimensional effect diagram of the light-trapped May beetle trapping device according to an embodiment of the present application;
[0039] Figure 6 Three-dimensional effect diagram of the light-trapped May beetle trapping device according to an embodiment of the present application from another angle;
[0040] Figure 7 Structure diagram of the top of the blocking plate according to an embodiment of the present application;
[0041] Figure 8 Connection diagram of the funnel and the moth collecting barrel according to an embodiment of the present application.
[0042] The reference signs involved in the above-mentioned figures are explained as follows:
[0043] 1. The top cover assembly, 11. The upper shell, 111. The first plane, 112. The inclined surface, 12. The lower shell, 13. The solar panel, 14. The battery, 15. The multifunctional controller, 16. The moth trapping lamp, 17. The hanging ring, 18. The solar controller,
[0044] 2. The moth trapping assembly, 21. The blocking plate, 211. The avoiding part, 22. The funnel, 221. The straight cylinder part, 222. The clamping part, 23. The moth collecting barrel, 231. The clamping groove, 232. The through hole, 24. The first connecting piece, 25. The second connecting piece. DETAILED DESCRIPTION
[0045] To describe the possible application scenarios, technical principles, specific implementable schemes, and the purposes and effects that can be achieved of the present application in detail, the specific embodiments listed below are described in detail in conjunction with the accompanying drawings. The embodiments described in this document are only used to more clearly illustrate the technical solutions of the present application, and therefore only serve as examples, and cannot limit the protection scope of the present application.
[0046] In this document, the term "embodiment" means that the specific features, structures or characteristics described in conjunction with the embodiment can be included in at least one embodiment of the present application. The term "embodiment" appearing at various positions in the specification does not necessarily refer to the same embodiment, and does not particularly limit the independence or association between other embodiments. In principle, in the present application, as long as there is no technical contradiction or conflict, the technical features mentioned in each embodiment can be combined in any way to form a corresponding implementable technical solution.
[0047] Unless otherwise defined, the meanings of technical terms used in the present application are the same as commonly understood by one of ordinary skill in the art to which the present application belongs; the use of related terms in the present application is only for the purpose of describing specific embodiments and is not intended to limit the present application.
[0048] In the description of the present application, the phrase "and / or" is a description of the logical relationship between objects, which means that there can be three relationships, for example, light trap and / or B, which means that there are light traps, there are B, and there are both light traps and B. In addition, the character " / " in this article generally represents that the associated objects before and after are a "or" logical relationship.
[0049] In the present application, terms such as "first" and "second" are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual quantity, primary and secondary, or order relationship between the entities or operations.
[0050] In the present application, without more limitation, the "includes", "contains", "has" or other similar open expressions used in the statement are intended to cover non-exclusive inclusion, and these expressions do not exclude the presence of other elements in the process, method or product including the described elements, so that the process, method or product including a series of elements can not only include those limited elements, but also include other elements not explicitly listed, or also include elements inherent to such process, method or product.
[0051] As the same as the understanding in the "Guidelines for Examination", in the present application, the expressions such as "greater than", "less than", "exceed" are understood as not including the number; the expressions such as "above", "below", "within" are understood as including the number. In addition, in the description of the embodiments of the present application, the meaning of "multiple" is more than two (including two), and similar expressions related to "multiple" are also understood in this way, for example, "multiple groups", "multiple times" and the like, unless otherwise explicitly limited.
[0052] In the description of the embodiments of the present application, the spatial relative expressions such as "central", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "vertical", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", and the like, indicate the orientation or positional relationship shown in the specific embodiments or the drawings, and are only used to facilitate the description of the specific embodiments of the present application or to facilitate the understanding of the reader, and are not intended to indicate or imply that the indicated device or component must have a particular position, a particular orientation, or be constructed or operated in a particular orientation, and therefore cannot be understood as a limitation on the embodiments of the present application.
[0053] Unless otherwise expressly specified or limited, the terms "mount", "connect", "connection", "fixed", "set", and the like used in the description of the embodiments of the present application should be interpreted broadly. For example, the "connection" can be a fixed connection, or a detachable connection, or an integral setting; it can be directly connected, or indirectly connected through an intermediate medium; it can be a relationship in which two components are combined together, or a relationship in which two components interact with each other, or a communication within two structures. For those skilled in the art to which the present application belongs, the specific meaning of the above terms in the embodiments of the present application can be understood according to the specific circumstances.
[0054] The existing scarab beetle trapping device adopts the method of sex pheromone trapping, but sex pheromone can only trap male scarab beetles, and the effect of reducing the number of scarab beetle population is poor.
[0055] In view of this, the present application provides a light-induced scarab beetle trapping device, which comprises a top cover assembly 1 and a trap assembly 2. The upper shell 11 is in a cover structure, the lower shell 12 is arranged below the lower shell 12, the upper shell 11 covers the lower shell 12, the solar panel 13 is arranged on the upper shell 11, and the upper shell 11 is provided with two or more solar panels 13. The battery 14 and the multifunctional controller 15 are arranged on the lower shell 12, the solar panel 13 is electrically connected with the battery 14, the trap lamp 16 is arranged at the bottom of the lower shell 12, and the multifunctional controller 15 is connected with and controls the trap lamp 16. Two or more blocking plates 21 are arranged around the circumference of the trap lamp 16, the top of the blocking plate 21 is connected with the bottom of the lower shell 12, the funnel 22 is fixed at the bottom of the two or more blocking plates 21, and the top of the trap bucket 23 is detachably connected with the bottom of the funnel 22. The trap lamp 16 is used to trap scarab beetles, the spectral optimization design is carried out according to the phototaxis characteristics of scarab beetles, and the trapping efficiency is improved.
[0056] According to some embodiments of the present application, please refer to Figures 1 to 8This embodiment relates to a light-attracting scarab beetle trapping device, including a top cover assembly 1 and an insect-attracting assembly 2. The top cover assembly 1 includes an upper outer shell 11, a lower outer shell 12, a solar panel 13, a battery 14, a multi-functional controller 15, and an insect-attracting lamp 16. The upper outer shell 11 has a cover structure, and the lower outer shell 12 is located below the lower outer shell 12. The upper outer shell 11 covers the lower outer shell 12. The solar panel 13 is located on the upper outer shell 11, and there are two or more solar panels 13 on the upper outer shell 11. The battery 14 and the multi-functional controller 15 are arranged... On the lower outer casing 12, the solar panel 13 is electrically connected to the battery 14, the insect-attracting lamp 16 is set at the bottom of the lower outer casing 12, and the multi-function controller 15 is connected to and controls the insect-attracting lamp 16; the insect-attracting component 2 includes two or more baffles 21, a funnel 22 and an insect-collecting bucket 23; the two or more baffles 21 are arranged around the circumference of the insect-attracting lamp 16, the top of the baffles 21 is connected to the bottom of the lower outer casing 12, the funnel 22 is fixed to the bottom of the two or more baffles 21, and the top of the insect-collecting bucket 23 is detachably connected to the bottom of the funnel 22.
[0057] like Figures 1 to 3 As shown, the light-attracting scarab beetle trapping device includes a top cover assembly 1 and an insect-attracting assembly 2. The top cover assembly 1 is located at the top of the entire device, and the entire structure includes a hanging ring 17, an upper outer shell 11, a lower outer shell 12, a solar panel 13, a battery 14, a multi-functional controller 15, a solar controller 18, and an insect-attracting lamp 16. The hanging ring 17 is located at the top of the top cover and is used to suspend the device. The upper outer shell 11 is a hexagonal platform with edges slightly larger than the lower funnel 22, providing rain protection while facilitating the installation of the solar panel 13. The solar panel 13 is a polycrystalline epoxy resin plate, embedded in the upper outer shell 11. The epoxy resin surface is waterproof, and the surrounding gaps are sealed with waterproof adhesive to prevent water ingress. The battery 14, multi-functional controller 15, solar controller 18, and insect-attracting lamp 16 are fixed to the lower outer shell 12. The solar controller 18 controls the maximum voltage provided by the solar panel 13 within a suitable range for the battery 14 to prevent current overshoot and damage to the battery 14's lifespan. The multi-functional controller 15 is mainly used to control the insect-attracting lamp 16 to turn on and off during a specified time period to attract beetles; the insect-attracting lamp 16 uses a light with a wavelength of 385nm to 395nm to attract beetles.
[0058] In some embodiments, the insect-attracting component 2 consists of three baffle plates 21 (acrylic plates) arranged at a 120-degree angle, a funnel 22, and an insect-collecting container 23. When a scarab beetle is knocked unconscious by the acrylic plate during flight, it falls into the funnel 22. The inner wall of the funnel 22 is smooth, ensuring that the beetle will not get stuck and can slide into the insect-collecting container 23. The lower opening of the funnel 22 is small and extends into the insect-collecting container 23, effectively preventing trapped scarab beetles from escaping from the container 23. (See Appendix) Figure 4The bottom of the insect collecting barrel 23 is provided with a plurality of through holes 232. If rainwater enters the insect collecting barrel 23 on a rainy day, the rainwater can flow out along the through holes 232, so that the insect collecting barrel 23 can be quickly drained, and the melolontha can be prevented from rotting and emitting a foul odor due to excessive moisture.
[0059] In the embodiment, the top cover assembly 1 includes an upper shell 11, a lower shell 12, a solar panel 13, a battery 14, a multifunctional controller 15, and an insect trapping lamp 16. The upper shell 11 is in a cover structure, the lower shell 12 is arranged below the lower shell 12, the upper shell 11 covers the lower shell 12, the solar panel 13 is arranged on the upper shell 11, the upper shell 11 is provided with two or more solar panels 13, the battery 14 and the multifunctional controller 15 are arranged on the lower shell 12, the solar panel 13 is electrically connected with the battery 14, the insect trapping lamp 16 is arranged at the bottom of the lower shell 12, and the multifunctional controller 15 is connected with and controls the insect trapping lamp 16. The insect trapping assembly 2 includes two or more blocking plates 21, a funnel 22, and an insect collecting barrel 23. The two or more blocking plates 21 are arranged around the circumference of the insect trapping lamp 16, the top of the blocking plate 21 is connected with the bottom of the lower shell 12, the funnel 22 is fixed at the bottom of the two or more blocking plates 21, and the top of the insect collecting barrel 23 is detachably connected with the bottom of the funnel 22.
[0060] In actual use, during the day, the solar panel 13 is irradiated by sunlight to generate a photoelectric effect, convert light energy into electrical energy, and charge the battery 14 through the solar controller 18. When it is dark, the battery 14 delivers electrical energy to the multifunctional controller 15 and the insect trapping lamp 16, the multifunctional controller 15 controls the insect trapping lamp 16 to open, emits light with a wavelength of 385 nm to 395 nm, and attracts the melolontha to gather around the trapping device. After the melolontha is attracted, the melolontha flies and hits the blocking plate 21, falls into the funnel 22, falls into the insect collecting barrel 23 along the inner wall of the funnel 22, is trapped in the insect collecting barrel 23 and cannot escape, and the trapping is completed. In this way, the melolontha is trapped by the insect trapping lamp 16, the spectral optimization design is performed according to the phototaxis characteristics of the melolontha, and the trapping efficiency is improved.
[0061] In the embodiment, the bottom drainage hole of the insect collecting barrel 23 can realize rapid water seepage, effectively reduce the decay rate of the insect body, the device is light in weight, convenient to install, and suitable for various scenes such as orchards and farmlands.
[0062] According to some embodiments of the present application, optionally, Figure 5 As shown in Figure 6 The upper shell 11 includes a first plane 111 and two or more inclined planes 112, the inclined plane 112 is connected with the first plane 111, the two or more inclined planes 112 are arranged around the first plane 111, the solar panel 13 is arranged on the inclined plane 112, and one inclined plane 112 is provided with one solar panel 13.
[0063] Therefore, the inclined surface 112 facilitates the placement of the solar panel 13, and multiple inclined surfaces 112 can be arranged to absorb solar energy at multiple angles without deliberately setting the inclination angle of the solar energy, thereby absorbing solar energy in the morning and afternoon.
[0064] According to some embodiments of the present application, the first plane 111 is in the shape of a hexagonal platform, and each of the six sides of the first plane 111 is provided with an inclined surface 112. Two adjacent inclined surfaces 112 are connected to each other, and the inclined surfaces 112 are arranged downwardly. The projection of the outer edges of the six inclined surfaces 112 in the vertical direction is greater than the projection of the top of the funnel 22 in the vertical direction.
[0065] Therefore, the projection of the outer edges of the six inclined surfaces 112 in the vertical direction is greater than the projection of the top of the funnel 22 in the vertical direction, thereby facilitating the installation of the solar panel 13 while preventing rain.
[0066] According to some embodiments of the present application, the lower shell 12 is in the shape of a hexagon, and the shape of the lower shell 12 is adapted to the shape of the upper shell 11.
[0067] Therefore, the lower shell 12 is conveniently arranged in the upper shell 11.
[0068] According to some embodiments of the present application, the first plane 111 is provided with a lifting ring 17, and the lifting ring 17 is located at the center of the first plane 111.
[0069] Therefore, the lifting ring 17 is arranged at the uppermost position of the top cover assembly 1, and is used for suspending the device. A rope can be passed through the lifting ring 17 to hang the device on a horizontal branch or other horizontal rod.
[0070] According to some embodiments of the present application, the top cover assembly 1 further comprises a solar controller 18. The solar controller 18, the multifunctional controller 15, and the battery 14 are sequentially arranged on the lower shell 12. The solar controller 18 is electrically connected to the solar panel 13, and the solar panel 13 is electrically connected to the battery 14 through the solar controller 18.
[0071] Therefore, the solar controller 18 is fixed on the lower shell 12, and the solar controller 18 controls the maximum voltage provided by the solar panel 13 within the range suitable for the battery 14, thereby preventing current overshoot and damaging the service life of the battery 14.
[0072] According to some embodiments of the present application, as shown in Figure 6 As shown in Figure 7 The moth trapping assembly 2 comprises three blocking plates 21 arranged at an angle of 120°. The top of the blocking plate 21 is connected to the bottom of the lower shell 12 through a first connecting piece 24, and the bottom of the blocking plate 21 is connected to the funnel 22 through a second connecting piece 25.
[0073] The top of the blocking plate 21 is connected with the bottom of the lower shell 12 through the first connecting piece 24, and the top of the blocking plate 21 is fixed with the bottom of the lower shell 12 through screws or bolts;
[0074] The bottom of the blocking plate 21 is embedded in the second connecting piece 25, and a groove is arranged in the middle of the second connecting piece 25;
[0075] In this way, the blocking plate 21 is an acrylic plate, and the metalmark beetles are knocked out after colliding with the acrylic plate during flight and then fall into the funnel 22. The metalmark beetles are attracted by the insect trapping lamp 16 from multiple angles and can collide with the blocking plate 21, so that the metalmark beetles are conveniently trapped.
[0076] According to some embodiments of the present application, optionally, as shown in Figure 3 The blocking plate 21 is provided with a avoiding part 211, and the avoiding parts 211 of the three blocking plates 21 are oppositely arranged to form an accommodating space, and the insect trapping lamp 16 is located in the accommodating space.
[0077] In this way, the insect trapping lamp 16 is located in the accommodating space, so that the insect trapping lamp 16 is conveniently placed.
[0078] According to some embodiments of the present application, optionally, as shown in Figure 8 The bottom of the funnel 22 is provided with a straight cylinder part 221, the outer surface of the straight cylinder part 221 is provided with two or more clamping parts 222, the two or more clamping parts 222 are arranged around the circumference of the straight cylinder part 221; the top of the insect collecting barrel 23 is provided with two or more clamping grooves 231, the clamping grooves 231 are arranged opposite to the clamping parts 222, the inner diameter of the insect collecting barrel 23 is greater than the outer diameter of the straight cylinder part 221, and the insect collecting barrel 23 is detachably connected with the straight cylinder part 221 through the cooperation of the clamping grooves 231 and the clamping parts 222.
[0079] The insect collecting barrel 23 is clamped on the three clamping parts 222 through the three clamping grooves 231.
[0080] In this way, the clamping groove 231 is an L-shaped structure, and through the cooperation of the clamping part 222 and the clamping groove 231, the insect collecting barrel 23 is conveniently clamped on the bottom of the funnel 22, and the insect collecting barrel 23 is conveniently disassembled.
[0081] According to some embodiments of the present application, optionally, the bottom of the insect collecting barrel 23 is provided with two or more through holes 232.
[0082] In this way, if rainwater enters the insect collecting barrel 23 on a rainy day, it flows out along the small holes, which can be quickly drained, preventing the metalmark beetles from rotting and emitting a foul smell due to excessive moisture.
[0083] Those skilled in the art will appreciate that the features of the various embodiments can be combined with each other, as means within the scope of the present application and form different embodiments. For example, in the claims, any of the claimed embodiments can be used in any combination.
[0084] Finally, it should be noted that the above embodiments are merely used to illustrate the technical solutions of the present application, rather than limit the present application; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that the technical solutions recorded in the foregoing embodiments can still be modified, or some or all of the technical features can be replaced by equivalents; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application, and they should be covered in the scope of the claims and the specification of the present application. In particular, as long as there is no structural conflict, each technical feature mentioned in each embodiment can be combined in any way. The present application is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.
Claims
1. A light-attracting scarab beetle trapping device, characterized in that, The utility model provides a multifunctional solar energy powered insect trapping lamp, comprising: a top cover assembly, the top cover assembly comprises an upper shell, a lower shell, solar panels, a battery, a multifunctional controller and a moth lamp, the upper shell is in a cover structure, the lower shell is arranged below the lower shell, the upper shell covers the lower shell, the solar panels are arranged on the upper shell, two or more solar panels are arranged on the upper shell, the battery and the multifunctional controller are arranged on the lower shell, the solar panels are electrically connected with the battery, the moth lamp is arranged at the bottom of the lower shell, and the multifunctional controller is connected and controls the moth lamp; and a moth assembly, the moth assembly comprises two or more blocking plates, a funnel and a moth collecting barrel, the two or more blocking plates are arranged around the circumference of the moth lamp, the top of the blocking plate is connected with the bottom of the lower shell, the funnel is fixed at the bottom of the two or more blocking plates, and the top of the moth collecting barrel is detachably connected with the bottom of the funnel.
2. The photolure lighted scarab beetle trap of claim 1, wherein, The upper shell comprises a first plane and two or more inclined planes, the inclined planes are connected with the first plane, and the two or more inclined planes are arranged around the first plane respectively, the solar panels are arranged on the inclined planes, and one inclined plane is provided with one solar panel.
3. A light-attracted scarab beetle trapping device according to claim 2, characterized in that The first plane is arranged in a hexagonal table body, one inclined plane is arranged on each of the six sides of the first plane, two adjacent inclined planes are connected with each other, the inclined planes are arranged downwardly and obliquely, and the projection of the outer edges of the six inclined planes in the vertical direction is greater than the projection of the top of the funnel in the vertical direction.
4. A light-attracted scarab beetle trapping device according to claim 3, characterized in that The lower shell is hexagonal, and the shape of the lower shell is matched with the shape of the upper shell.
5. The photolure lightened scarab beetle trapping device according to claim 3, characterized by, A lifting ring is arranged on the first plane, and the lifting ring is located at the center of the first plane.
6. The phototactic scarab beetle trapping device according to any one of claims 1 to 5, characterized in that, The top cover assembly further comprises a solar controller, the solar controller, the multifunctional controller and the battery are arranged on the lower shell in sequence, the solar controller is electrically connected with the solar panels, and the solar panels are electrically connected with the battery through the solar controller.
7. The photolure lightened scarab beetle trapping device according to claim 1, characterized by, The moth assembly comprises three blocking plates arranged at an angle of 120 degrees, the top of the blocking plate is connected with the bottom of the lower shell through a first connecting piece, and the bottom of the blocking plate is connected with the funnel through a second connecting piece.
8. A light-attracted scarab beetle trapping device according to claim 7, characterized in that An avoiding part is arranged on the blocking plate, the avoiding parts of the three blocking plates are arranged oppositely to form an accommodating space, and the moth lamp is located in the accommodating space.
9. The phototactic scarab beetle trapping device according to any one of claims 1 to 5, characterized in that, A straight cylinder part is arranged at the bottom of the funnel, two or more clamping parts are arranged on the outer surface of the straight cylinder part, and the two or more clamping parts are arranged around the circumference of the straight cylinder part. Two or more clamping grooves are arranged at the top of the moth collecting barrel, the clamping grooves are arranged opposite to the clamping parts, the inner diameter of the moth collecting barrel is greater than the outer diameter of the straight cylinder part, and the moth collecting barrel is detachably connected with the straight cylinder part through the cooperation of the clamping grooves and the clamping parts.
10. The photolure light trap according to any one of claims 1-5, wherein, Two or more through holes are arranged at the bottom of the moth collecting barrel.