Insect situation monitoring device shooting structure and deeply-buried granary insect situation monitoring device
By designing a pest monitoring device with detachable and connectable functional tubes and extension tubes, combined with glass sleeve protection and a multi-camera structure, the problem of flexible monitoring in large grain warehouses has been solved, enabling multi-angle shooting and flexible operation, and expanding the monitoring range.
Patent Information
- Application Number
- CN202423059471.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-11
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2034-12-11
AI Technical Summary
Existing grain silo pest monitoring devices are not suitable for grain silos at greater depths, and the devices have limited shooting range.
Design a pest monitoring device with a shooting structure, including a glass sleeve and multiple detachable functional tubes and extension tubes, equipped with a first camera and a second camera, with the camera protected by the glass sleeve, enabling multi-angle shooting, and monitoring pest conditions at different depths through the adjustable device tube body.
It enables flexible monitoring at different depths within large grain silos, expands the monitoring range, protects expensive imaging components, offers high operational flexibility, and is suitable for various application environments.
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Figure CN223694696U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of grain condition monitoring in granary, and more particularly to a pest monitoring device shooting structure and a deep-buried granary pest monitoring device. BACKGROUND
[0002] In the granary of the warehousing industry, in order to ensure the quality of grain, it is necessary to understand the pest situation in the grain pile in a timely manner, including the number, species, breeding area of pests, and the environment of pest reproduction, so as to timely carry out targeted pest control or take preventive measures in advance. The granary pest monitoring device is a device specially used for detecting pests in the internal storage warehouse, which usually includes a pest trapping part, a monitoring device (such as a camera), a data processing unit and a data transmission module, and the main purpose is to timely discover and monitor the existence and development trend of pests, so as to take corresponding control measures to ensure the safe storage of grain.
[0003] For example, the endoscopic grain pest monitoring system disclosed in patent publication No. CN112616795A inserts an endoscopic camera device into the interior of the grain pile, and a plurality of cameras are arranged in the shell towards the side of the shell, so as to grasp the grain breeding situation in the granary in the first time. For example, the granary pest trapping device disclosed in patent publication No. CN115644162A aims the entrance of the insect collecting bin through the camera, so as to shoot the photo in the insect collecting bin in a timed or real-time manner, thereby realizing the monitoring of the insect collecting situation in the insect collecting bin.
[0004] It can be seen that the existing device has a most significant limitation, that is, the device has a fixed length, and can only monitor pests at a certain specific depth in the interior of the granary during installation. For small granaries with consistent height, it may be sufficient for use, but for large granaries or granaries with large depth, the user cannot flexibly adjust the length of the device according to actual needs, which greatly limits the application range of the monitoring device. Secondly, the device with the insect collecting bin mostly shoots the insect collecting bin through the camera, which can only monitor the situation of a specific area, and the monitoring range is limited.
[0005] The above problems are worth solving. UTILITY MODEL CONTENT
[0006] In order to solve the problems that the existing granary pest monitoring device cannot adapt to granaries with large depth, and the shooting range of the device is limited, the utility model provides a pest monitoring device shooting structure and a deep-buried granary pest monitoring device.
[0007] The technical scheme of the utility model is as follows:
[0008] The utility model provides a kind of insect situation monitoring device shooting structure, including glass sleeve, work mainboard, first camera and second camera, the glass sleeve is embedded into the function pipe of device pipe body part, the work mainboard, the first camera and the second camera are installed in the glass sleeve inside;And the first camera is located at the bottom of the glass sleeve, and shooting direction is towards glass sleeve bottom, for shooting the pest trap located below the glass sleeve in the function pipe;The second camera is located in the middle of the glass sleeve, and shooting direction is towards the periphery of glass sleeve, for shooting the food in the circumferential direction of function pipe through the window on the sidewall of function pipe.
[0009] As a preferred scheme of the utility model, the glass sleeve is built-in a battery, and the battery is electrically connected with the work mainboard.
[0010] As a preferred scheme of the utility model, the end of the glass sleeve is provided with a conductive tab, one end of the conductive tab is electrically connected with the work mainboard through an electric plug, and the other end of the conductive tab is connected with an external power supply through in-pipe wiring.
[0011] The utility model also provides a kind of deep-buried granary insect situation monitoring device, including taper insertion head, device pipe body part and signal transceiver connected in sequence, the device pipe body part includes at least one function pipe and several extension pipes, one end of the function pipe is connected with the taper insertion head, the other end is connected with one extension pipe, the other end of the extension pipe is connected with next function pipe or next extension pipe, the uppermost function pipe or extension pipe of the device pipe body part is connected with the signal transceiver;The function pipe is internally provided with pest trap and shooting assembly located above the pest trap, and the structure of the shooting assembly is the insect situation monitoring device shooting structure described in the above scheme.
[0012] As a preferred scheme of the utility model, the sidewall of the function pipe is provided with shooting structure assembly window, and the second camera of the shooting assembly shoots the food condition in the circumferential direction of function pipe through the glass sleeve and shooting structure assembly window.
[0013] As a preferred scheme of the utility model, the device pipe body part includes several function pipes and several extension pipes arranged at intervals, both ends of the function pipe are provided with first connecting part, both ends of the extension pipe are provided with second connecting part, and the first connecting part and the second connecting part are detachably connected.
[0014] Further, the first connecting part is connecting hole arranged on pipe body wall, the second connecting part is elastic bead arranged on pipe body wall and protruding from the periphery of pipe body, and the extension pipe is clamped with the connecting hole of the function pipe through the elastic bead.
[0015] Further, the first connecting part is a pair of clamping holes, the second connecting part is an elastic clamping button, the elastic clamping button comprises a U-shaped part with elasticity and a pair of buttons arranged at two ends of the U-shaped part respectively; the U-shaped part is located inside the pipe body of the extension pipe, and the pair of buttons protrude outward from the pipe wall of the extension pipe.
[0016] As a preferred scheme of the utility model, the pest trap is a groove cover with a containing groove, the groove bottom of the containing groove is provided with a trapping agent and an adhesive substance; the groove cover is installed in the pipe of the functional pipe, and the functional pipe is provided with a plurality of insect holes corresponding to the pest trap.
[0017] As a preferred scheme of the utility model, the peripheral surface of the conical insertion head is provided with a spiral convex rib, and the spiral convex rib extends from the front end tip of the solid cone of the conical insertion head to the rear end.
[0018] As a preferred scheme of the utility model, the conical insertion head comprises a solid cone and a hollow cylinder, the outer diameter of the hollow cylinder is smaller than the inner diameter of the functional pipe, so as to be inserted into the end part of the functional pipe; the maximum diameter of the solid cone is equal to the outer diameter of the functional pipe, so that the conical insertion head and the device pipe body part are connected together, and the joint parts of the two are flush.
[0019] As a preferred scheme of the utility model, the signal transceiver comprises a seat body and an antenna, the seat body comprises a top seat and a bottom seat which are connected by buckling, and a pair of antenna grooves are arranged on the opposite sides of the top seat, and one antenna is arranged in each antenna groove.
[0020] The utility model has the advantages that:
[0021] The shooting assembly of the deep-buried granary pest monitoring device is installed in the functional pipe of the device pipe body part through the glass sleeve, the functional pipe has a good protection effect on the shooting assembly, and the expensive shooting assembly is prevented from being damaged; the shooting assembly is provided with a first camera towards the bottom and a second camera towards the circumference of the glass sleeve, the side wall of the functional pipe is provided with a window, the second camera of the shooting assembly shoots through the glass sleeve and the window, and the pest information in the pest trap directly below the glass sleeve and the environment in the granary on the circumference of the device pipe body part are shot at the same time.
[0022] In another aspect, the deep-buried granary insect condition monitoring device has a device pipe body part with adjustable length, the device pipe body part comprises a plurality of detachably connected functional pipes and extension pipes, the length of the device is extended by increasing the number of the functional pipes and the extension pipes, the length of the device is shortened by reducing the number of the functional pipes and the extension pipes, so that the user can monitor the pest conditions at different depths in the granary at the same time, the shooting assembly position of each functional pipe can monitor the pest conditions trapped at the position and the internal conditions of the granary in the circumferential direction;
[0023] Finally, the functional pipe and the extension pipe are convenient to disassemble and assemble, the user can adjust at any time during the operation of the device, the operation flexibility is very high, and the device is very easy to operate, and is suitable for popularization and application. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 It is a structural schematic view of the utility model;
[0025] Figure 2 It is a structural schematic view of the utility model;
[0026] Figure 3 It is a structural schematic view of the functional pipe in the device pipe body part of the utility model;
[0027] Figure 4 It is a connection schematic view of the functional pipe and the extension pipe of the first embodiment;
[0028] Figure 5 It is a connection schematic view of the functional pipe and the extension pipe of the fourth embodiment;
[0029] Figure 6 It is a structural schematic view of the elastic clamping button;
[0030] Figure 7 It is a structural schematic view of the signal transceiver of the utility model;
[0031] Figure 8 It is a structural schematic view of the conical insertion head of the utility model.
[0032] In the drawings,
[0033] 1, conical insertion head; 11, spiral convex rib;
[0034] 2, functional pipe; 21, connecting hole; 22, clamping hole; 23, insect hole; 24, shooting structure assembly window;
[0035] 3, extension pipe; 31, elastic bead; 321, U-shaped piece; 322, button;
[0036] 4, signal transceiver; 41, seat body; 42, antenna;
[0037] 5, pest trap;
[0038] 6, photographing assembly; 61, glass sleeve; 62, working mainboard; 63, first camera; 64, second camera. DETAILED DESCRIPTION
[0039] For better understanding of the purpose, technical scheme and technical effect of the utility model, the utility model is further explained in the following with the help of drawings and examples. It should be noted that similar signs and letters represent similar items in the following drawings, so once an item is defined in one drawing, it does not need to be further defined and explained in the subsequent drawings. At the same time, it is declared that the following described examples are only for explaining the utility model and do not limit the utility model.
[0040] It should be noted that when an element is referred to as "fixed to" or "disposed on" another element, it can be directly on the other element or there can be a middle element, and when an element is referred to as "connected to" another element, it can be directly connected to the other element or there can be a middle element.
[0041] The indicated orientation or positional relationship is based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship commonly used when the product of the application is used, or the orientation or positional relationship commonly understood by those skilled in the art, or the orientation or positional relationship commonly used when the product of the application is used, only for the convenience of describing the application and simplifying the description, and is not intended to indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the application.
[0042] The terms "first", "second" are only for the purpose of convenient description, and cannot be understood as indicating or implying relative importance or implying the number of technical features. The meaning of "a plurality of" or "several" is two or more, unless otherwise specifically and specifically limited.
[0043] Example one
[0044] As shown in Figure 1 and Figure 3 , a deep-buried granary insect monitoring device, comprising:
[0045] The conical insertion head 1 is the head of the device, has a sharp conical shape, and is beneficial to the deep-buried granary insect monitoring device inserting into the granary through the conical insertion head 1. The material of the conical insertion head 1 is preferably steel, which includes a solid cone and a hollow cylinder. The solid cone has high structural strength, and can not only penetrate into the grain pile, but also not easily deform due to the extrusion force during the insertion into the granary.
[0046] The signal transceiver 4 is used to wirelessly connect with devices outside to receive and send data or control instructions through wireless signals. For example, it is connected with a mobile phone through Bluetooth signals, or connected with a computer or terminal control device through WIFI signals, or connected with a cloud server through cellular signals or the Internet.
[0047] The device pipe body part is connected with the conical insertion head 1 at one end and the signal transceiver 4 at the other end. The device pipe body part includes a plurality of functional pipes 2 and a plurality of extension pipes 3 arranged at intervals, and the functional pipes 2 and the extension pipes 3 are detachably connected. The functional pipe 2 is provided with a pest trap 5 for attracting and trapping pests in the warehouse and a shooting assembly 6 for shooting the environment in the pest trap 5 and the environment inside the warehouse to obtain pest information. The extension pipe 3 serves to connect two functional pipes 2 and extend the length of the deep-buried warehouse pest monitoring device.
[0048] As shown in Figure 4 , the end of the functional pipe 2 is provided with a first connecting part, which is a connecting hole 21 arranged on the pipe body wall, and the end of the extension pipe 3 is provided with a second connecting part, which is an elastic bead 31 arranged on the pipe body wall and protruding from the circumferential surface of the pipe body. The caliber of the end of the functional pipe 2 is larger than that of the end of the extension pipe 3, so that the end of the extension pipe 3 can be inserted into the end of the functional pipe 2 and clamped in the connecting hole 21 by the elastic bead 31, realizing the detachable connection and fixation of the functional pipe 2 and the extension pipe 3. In other optional embodiments, the first connecting part is the elastic bead 31, and the second connecting part is the connecting hole 21. The caliber of the end of the functional pipe 2 is smaller than that of the end of the extension pipe 3, so that the end of the functional pipe 2 can be inserted into the end of the extension pipe 3, and the elastic bead 31 is clamped in the connecting hole 21.
[0049] The conical insertion head 1 is connected to the bottom end of the lowest functional pipe 2 of the device pipe body part. The hollow cylinder of the conical insertion head 1 is also provided with a second connecting part, and the conical insertion head 1 is connected to the bottom end of the lowest functional pipe 2 through the second connecting part of the hollow cylinder. The signal transceiver 4 is installed at the top end of the uppermost functional pipe 2 of the device pipe body part.
[0050] As shown in Figure 7 , in one specific embodiment, the signal transceiver 4 includes a seat body 41 and an antenna 42. The seat body 41 includes a top seat and a bottom seat that are snap-fitted together. Opposite sides of the top seat are provided with a pair of antenna 42 grooves, and one antenna 42 is installed in each antenna 42 groove. A circuit board is installed inside the bottom seat. The circuit board is integrated with a first wireless signal transceiver module and a second wireless signal transceiver module. The first wireless signal transceiver module is wirelessly connected with the shooting assembly 6 of the functional pipe 2 to receive image data. The second wireless signal transceiver module is wirelessly connected with devices outside to send image data. As can be seen, the signal transceiver 4 sends the image data obtained by the shooting assembly 6 to devices outside through wireless signals.
[0051] The utility model discloses when using, the conical insertion head 1 is connected in the one end of function pipe A1, and the other end of function pipe A1 is connected to the extension pipe B1, and the conical insertion head is inserted in the grain of granary, and the rotating device pipe body part is made for the conical insertion head to go into the inside of the grain heap, and function pipe A1 and extension pipe B1 also follow to enter the grain heap. The other end of extension pipe B1 is connected to function pipe A2, and the other end of function pipe A2 is connected to extension pipe B2, and continue rotating device pipe body part, and function pipe A2 and extension pipe B2 also follow to enter the grain heap. Repeat the above steps, and the user inserts the device pipe body part into the grain heap, and gradually extends the length of the device pipe body part according to the requirement. When the length of the device pipe body part meets the requirement, the topmost function pipe 2 does not need to be connected to the extension pipe 3, but the signal transceiver 4 is installed on the topmost function pipe 2.
[0052] As known from the foregoing, the conical insertion head 1 includes a solid cone and a hollow cylinder, the outer diameter of the hollow cylinder is smaller than the inner diameter of the function pipe 2, so as to be inserted into the end of the function pipe 2, and the conical insertion head 1 is connected with the device pipe body. The maximum diameter of the solid cone is equal to the outer diameter of the function pipe 2, so that after the conical insertion head 1 is connected with the device pipe body, the junction of the two is flush, avoiding forming a high-low difference step on the peripheral surface, which causes resistance in the process of inserting or pulling out the grain.
[0053] It can be seen that the device pipe body of the utility model has a plurality of detachably connected function pipes 2 and extension pipes 3, by increasing the number of function pipes 2 and extension pipes 3, the length of the deep-buried granary insect condition monitoring device is extended; by reducing the number of function pipes 2 and extension pipes 3, the length of the deep-buried granary insect condition monitoring device is shortened, so as to meet the user's requirement of monitoring the pest conditions at different depths in the granary at the same time; moreover, the function pipes 2 and extension pipes 3 are easy to disassemble and assemble, the user can adjust at any time during the operation of the device, the operation flexibility is very high, and the device is easy to operate, and is suitable for popularization and application.
[0054] In the embodiment, the pest trap 5 is a cover with a containing groove, and the cover is installed in the pipe of the function pipe 2. The bottom of the containing groove is provided with a trapping agent and a sticky substance, the trapping agent is used for attracting pests, and the sticky substance is used for sticking pests. The side wall of the pest trap 5 and the pipe body side wall of the function pipe 2 are both provided with a plurality of insect holes 23, and the pests can enter the function pipe 2 through the insect holes 23 and then enter the containing groove of the pest trap 5. In the embodiment, the thickness of the pipe wall of the function pipe and the extension pipe ranges from 3 mm to 5 mm, and the structural strength is high and not easy to bend.
[0055] Embodiment two
[0056] As Figure 2As shown, a deep-buried grain warehouse pest monitoring device has the same structure as Embodiment 1: it includes a conical insertion head 1, a device tube body, and a signal transceiver 4. The difference is that the device tube body of this embodiment has a functional tube 2 and several extension tubes 3. Similarly, the two ends of the functional tube 2 are respectively connected to the conical insertion head 1 and the extension tubes 3. Several extension tubes 3 are connected in succession to extend the length of the deep-buried grain warehouse pest monitoring device. Therefore, the deep-buried grain warehouse pest monitoring device of this embodiment can only monitor the location of pests in the grain warehouse at a horizontal height.
[0057] In this embodiment, the functional tube 2 has a first connecting part at both ends, and the extension tube 3 has a small end with a second connecting part at one end and a large end with a first connecting part at the other end. The extension tube 3 is connected to the first connecting part of the functional tube 2 through the second connecting part, and the extension tube 3 is connected to the second connecting part of another extension tube 3 through the first connecting part. The user can increase or decrease the number of extension tubes 3 according to the required grain silo depth position to make the functional tube 2 reach the required grain silo interior position.
[0058] Compared to Example 1, Example 1 is more suitable for fixed, long-term monitoring of grain silos, enabling simultaneous monitoring of pests at multiple depths within the silo. Example 2 is more suitable for mobile, short-term monitoring of a single point within a grain silo, monitoring only the most critical depth, thus reducing costs.
[0059] Example 3
[0060] like Figure 8 As shown, a deep-buried grain warehouse insect monitoring device has the same structure as Embodiment 1: including a conical insertion head 1, several functional tubes 2, several extension tubes 3 and a signal transceiver 4. The difference is that: the conical insertion head 1 is provided with a spiral rib 11 on its circumferential surface, and the spiral rib 11 extends from the front tip of the solid cone of the conical insertion head 1 to the rear end.
[0061] In this embodiment, the spiral rib 11 of the deep-buried grain warehouse pest monitoring device can enhance the ability of the conical insertion head 1 to screw into the dense grain pile when it is inserted into the grain warehouse, thereby making it easier for the user to operate and improving the user experience.
[0062] Example 4
[0063] like Figure 5 and Figure 6 As shown, a deep-buried grain warehouse pest monitoring device has the same structure as Embodiment 1: it includes a conical insertion head 1, several functional tubes 2, several extension tubes 3, and a signal transceiver 4. The functional tubes 2 have first connecting parts at both ends, and the extension tubes 3 have second connecting parts at both ends. The difference lies in:
[0064] The first connecting part is a pair of snap-fit holes 22, and the second connecting part is a resilient snap-fit button. The resilient snap-fit button includes a resilient U-shaped part 321 and a pair of buttons 322 respectively disposed at both ends of the U-shaped part 321. The U-shaped part 321 is located inside the tube body, and the pair of buttons 322 protrude from the inside to the outside of the tube wall. When the ends of the two tube bodies are inserted, the resilient snap-fit button of one tube body connects with the snap-fit hole 22 of the other tube body, thereby connecting the two tube bodies. When it is necessary to disassemble the two tube bodies, the user presses the two buttons 322, causing the buttons 322 to retract into the tube, and the resilient snap-fit button disengages from the snap-fit hole 22, thus separating the ends of the two tube bodies. The U-shaped part 321 is made of stainless steel, copper, aluminum, or other metals.
[0065] Compared with Embodiment 1, the connection structure of the first and second connecting parts in this embodiment has larger sizes of the snap-fit hole 22 and the elastic snap-fit button, and a larger snap-fit contact area, thus resulting in a higher connection strength between the two tubes.
[0066] Example 5
[0067] like Figure 3 As shown, this utility model also provides a photographic structure for an insect pest monitoring device, used as the photographic component 6 of the deep-buried grain silo insect pest monitoring device in embodiments one to four above. The photographic structure of the insect pest monitoring device has a first camera 63 and a second camera 64. The first camera 63 faces the insect trap 5 and is directly opposite the opening of the receiving trough, so as to clearly photograph the insect situation inside the receiving trough of the insect trap 5. The second camera 64 shoots outward along the radial direction of the tube body, and is used to photograph the grain pest situation around the tube body.
[0068] Specifically, the shooting assembly 6 includes a glass sleeve 61, a first camera 63, a second camera 64, and a mainboard 62. Both cameras are electrically connected to the mainboard 62, with the first camera 63 located at the bottom of the glass sleeve 61 and the second camera 64 located in the middle of the glass sleeve 61. A rechargeable battery can be built into the glass sleeve 61 and electrically connected to the mainboard 62 to provide power to the first camera 63 and the second camera 64.
[0069] The functional tube has a shooting structure assembly window 24 on one side of the tube body. The shooting structure assembly window 24 is a rectangular window. The width of the shooting structure assembly window 24 is smaller than the outer diameter of the glass sleeve 61, and the height of the shooting structure assembly window 24 is smaller than the height of the glass sleeve 61. The glass sleeve 61 of the shooting component 6 cannot fall out of the shooting structure assembly window 24, and the second camera 64 of the shooting component 6 can shoot the grain condition on the circumference of the functional tube through the glass sleeve 61 and the shooting structure assembly window 24.
[0070] In other optional embodiments, the glass sleeve can also adopt an external power supply mode, and an end of the glass sleeve is provided with a conductive tab, one end of the conductive tab is electrically connected with the working mainboard in the glass sleeve through an electric plug, and the other end of the conductive tab is electrically connected with the external power supply through in-pipe wiring.
[0071] The technical features of the above embodiments can be combined in any manner, and for the sake of brevity, all possible combinations of the technical features in the above embodiments are not described, however, as long as the combinations of the technical features do not exist contradictions, they should be considered as the scope of the present disclosure.
[0072] The above embodiments only express several implementation manners of the present application, the description is relatively specific and detailed, but it should not be understood as a limitation on the scope of the present application. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which all belong to the protection scope of the present application. Therefore, the protection scope of the present application patent should be subject to the appended claims.
Claims
1. A photographic structure for an insect pest monitoring device, characterized in that, The device comprises a glass sleeve, a working mainboard, a first camera and a second camera, the glass sleeve is embedded into the functional tube of the device tube part, the working mainboard, the first camera and the second camera are installed inside the glass sleeve. The first camera is located at the bottom of the glass sleeve, and the shooting direction is towards the bottom of the glass sleeve, which is used to shoot the pest trap below the glass sleeve in the functional tube; the second camera is located at the middle of the glass sleeve, and the shooting direction is towards the outer periphery of the glass sleeve, which is used to shoot the grain around the functional tube through the window on the sidewall of the functional tube.
2. The pest monitoring device of claim 1, wherein the camera is configured to capture images of the pest. The glass sleeve is built-in a battery, and the battery is electrically connected with the working mainboard.
3. The pest monitoring device of claim 1, wherein the camera is configured to capture images of the pest. The end of the glass sleeve is provided with a conductive tab, one end of the conductive tab is electrically connected with the working mainboard through an electric plug, and the other end of the conductive tab is connected with an external power supply through in-tube wiring.
4. A deep-buried granary insect monitoring device, comprising a conical insertion head, a device tube part and a signal transceiver, characterized in that, The device tube part comprises at least one functional tube and several extension tubes, one end of the functional tube is connected with the conical insertion head, the other end is connected with an extension tube, the other end of the extension tube is connected with the next functional tube or the next extension tube, and the uppermost functional tube or extension tube of the device tube part is connected with the signal transceiver. The inside of the functional tube is provided with a pest trap and a shooting assembly above the pest trap, and the structure of the shooting assembly is the shooting structure of the pest situation monitoring device according to any one of claims 1 to 3.
5. The deep-buried granary insect monitoring device according to claim 4, characterized in that, The sidewall of the functional tube is provided with a shooting structure assembly window, and the second camera of the shooting assembly shoots the grain around the functional tube through the glass sleeve and the shooting structure assembly window.
6. The deep-buried granary insect monitoring device according to claim 4, characterized in that, The device tube part comprises several functional tubes and several extension tubes arranged at intervals, both ends of the functional tube are provided with a first connecting part, both ends of the extension tube are provided with a second connecting part, and the first connecting part and the second connecting part are detachably connected.
7. The deep-buried granary insect monitoring device according to claim 6, characterized in that, The first connecting part is a connecting hole arranged on the tube wall, the second connecting part is an elastic bead arranged on the tube wall and protruding from the tube periphery, and the extension tube is clamped with the connecting hole of the functional tube through the elastic bead.
8. The deep-buried granary insect monitoring device according to claim 6, characterized in that, The first connecting part is a pair of clamping holes, the second connecting part is an elastic clamping button, the elastic clamping button comprises a U-shaped part with elasticity and a pair of buttons arranged at both ends of the U-shaped part respectively; the U-shaped part is located inside the tube of the extension tube, and the pair of buttons protrude from the tube wall of the extension tube from inside to outside.
9. The deep-buried granary insect monitoring device according to claim 4, characterized in that, The pest trap is a groove cover with a containing groove, the groove bottom of the containing groove is provided with a trapping agent and an adhesive substance; the groove cover is installed in the tube of the functional tube, and the functional tube is provided with a plurality of insect holes corresponding to the pest trap.
10. The deep-buried granary insect monitoring device according to claim 4, characterized in that, The peripheral surface of the conical insertion head is provided with a spiral protruding rib, and the spiral protruding rib extends from the front end of the solid cone of the conical insertion head to the rear end.
Citation Information
Patent Citations
Endoscopic grain insect pest situation monitoring system and method
CN112616795A
Granary pest trapping equipment
CN115644162A