Intelligent mousetrap

By designing the sealed door, mouse trap device and pneumatic cylinder of the intelligent mouse trap, the problem that existing mouse traps cannot catch mice continuously is solved, and efficient and convenient mouse capture and processing is achieved.

CN223169007UActive Publication Date: 2025-08-01通辽市草原工作站
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Patent Information

Application Number
CN202421985274.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-15
Publication Date
2025-08-01
Estimated Expiration
2034-08-15

AI Technical Summary

Technical Problem

The existing mousetrap cannot be captured continuously after catching mice, the bait is easily consumed, and the number of captures is difficult to control, resulting in a significant increase in the workload.

Method used

An intelligent mousetrap is designed, including a sealing door, a mouse trap, a pneumatic cylinder and an interceptor rod, so as to realize automatic sealing of mice, multiple baits, control the number of captures and extend the service life.

Benefits of technology

Continuous mouse catching is achieved, reducing the workload of manual observation and replenishing bait, improving mouse catching efficiency, extending the service life of the device, and facilitating centralized processing of mice.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an intelligent mousetrap which comprises a mousetrap box, a sealing door is arranged in the mousetrap box, a mousetrap bin and a mouse storage bin are formed, the sealing door comprises two sealing plates, the sealing plates are hinged in the mousetrap box through hinge shafts, and the hinge shafts are closer to the box wall of the mousetrap box relative to the central axis of the hinge shafts hinged to the sealing plates. The sealing plate is provided with a limiting block used for limiting the opposite ends of the two plates to be opened upwards, the bottoms of the separated ends of the two plates are each provided with a first balancing weight, a mouse luring device is arranged in the mouse trapping bin and located over the opposite ends of the two plates, and a mouse inlet channel is formed in the side wall of the mouse trapping bin and connected with an inclined plate extending to the ground; after entering the mouse trapping box, a mouse falls into the mouse storage bin, the sealing door is quickly sealed, so that the mouse cannot escape, the mouse trapping device is suspended, bait can be used repeatedly, and continuous mouse trapping can be realized; rats jumping into the bait plate can be repelled, and bait can be used repeatedly; the intercepting rod is arranged to prevent trapped mice from escaping from the mouse trapping bin.
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Description

Technical Field

[0001] The utility model relates to the technical field of mousetraps, in particular to an intelligent mousetrap. Background Art

[0002] Rats are one of the four pests, which can spread diseases, endanger food safety, and damage furniture, etc. Since rodenticides are easy to be eaten by children and pets and are not safe, at present, mousetraps are usually used to catch rats. After the existing mousetraps catch rats, they will close the rat inlet channel to prevent the rats from escaping and cannot catch rats continuously; the bait in the mousetraps will also be exhausted as the number of caught rats increases, making it difficult to support continuous rat-catching. In addition, it is difficult to control the number of rats caught continuously. In order to avoid the rats from dying and stinking, the process of continuous rat-catching requires multiple manual observations of the number of caught rats to decide whether to replenish the bait, resulting in a greatly increased workload. Summary of the Utility Model

[0003] The purpose of the utility model is to provide an intelligent mousetrap, which solves the problem of poor continuous rat-catching effect of the existing mousetraps.

[0004] The utility model realizes the above purpose through the following technical solutions:

[0005] An intelligent mousetrap includes a rat-catching box. A sealing door for horizontal partition is arranged in the rat-catching box. A rat-catching chamber is formed above the sealing door in the rat-catching box, and a rat storage chamber is formed below. The sealing door includes two sealing plates. The sealing plates are both hinged in the rat-catching box through hinge shafts. The hinge shafts are closer to the box wall of the rat-catching box relative to the central axes of the sealing plates they hinge. The sealing plates are provided with limit blocks for limiting the upward opening of the opposite ends of the two plates. The bottoms of the opposite ends of the two plates are both provided with first counterweights. An attracting rat device is arranged in the rat-catching chamber and directly above the opposite ends of the two plates. The rat-catching chamber is provided with a rat inlet channel on the side wall, and the rat inlet channel is connected with an inclined plate extending to the ground.

[0006] Further, a sliding plate is slidably connected up and down in the rat storage chamber. A spring is connected between the sliding plate and the bottom of the rat storage chamber. A connecting rope is connected between the first counterweight and the sliding plate. The connecting rope is used for being tightened and pulling the first counterweight after the sliding plate slides down a set distance.

[0007] Further, an air cylinder is also connected between the sliding plate and the bottom of the rat storage chamber. The air cylinder includes a piston cylinder connected to the inner bottom of the rat storage chamber. A piston is intercepted in the piston cylinder. The piston is connected with a piston rod. The piston rod extends out of the piston cylinder and is connected with the sliding plate. The air cylinder is provided with fine holes at both the upper and lower ends of the piston cylinder.

[0008] Further, an air inlet pipe is connected to the top of the mouse storage bin, and an air outlet pipe is connected to the bottom. A bin door is provided on the side wall of the mouse storage bin. Switch valves are provided on both the air inlet pipe and the air outlet pipe, and the air inlet pipe is connected to a nitrogen cylinder.

[0009] Further, the mouse attracting device includes a bait tray. The top of the bait tray is connected to a top cover located at the top of the mouse-catching bin through a connecting rod, and a plurality of protruding spikes are fixedly connected to the upper surface of the bait tray.

[0010] Further, a plurality of intercepting rods are provided at the outlet end of the mouse inlet passage. The tops of the plurality of intercepting rods are hinged to the top of the mouse inlet passage, and the bottoms are connected to a second counterweight.

[0011] The beneficial effects of the present utility model are as follows: (1) A sealing door is provided. After a mouse enters the mouse-catching box, it will fall into the mouse storage bin, and the sealing door quickly seals, making it impossible for the mouse to escape. The mouse attracting device is suspended, and the bait can be reused, enabling continuous mouse-catching. (2) The bait tray is provided with protruding spikes, which can drive away the mice that jump into the bait tray, facilitating the reuse of the bait. By setting the length of the connecting rope, the approximate number of mice caught in the mouse storage bin can be controlled, facilitating the placement of appropriate bait, centralized treatment, and reducing the workload. An air cylinder is provided to extend the service life of the device. Intercepting rods are provided to prevent the caught mice from escaping from the mouse-catching bin. Description of the Drawings

[0012] Figure 1 It is a schematic cross-sectional structure diagram of the whole of the present utility model;

[0013] Figure 2 It is a schematic diagram of the whole structure of the present utility model;

[0014] Figure 3 It is an enlarged structural diagram of the mouse-catching bin of the present utility model;

[0015] Figure 4 It is an enlarged structural diagram of the mouse storage bin of the present utility model;

[0016] Figure 5 It is an enlarged structural diagram of the sealing door and the bait device of the present utility model;

[0017] Figure 6 It is an enlarged structural diagram of the air cylinder of the present utility model.

[0018] In the figure: 1, mouse trap box; 2, sealing door; 201, sealing plate; 202, hinge shaft; 203, limiting block; 204, first counterweight; 3, mouse-catching chamber; 4, mouse storage chamber; 5, inclined plate; 6, sliding plate; 7, spring; 8, connecting rope; 9, pneumatic cylinder; 901, piston cylinder; 902, piston; 903, piston rod; 904, fine hole; 10, intake pipe; 11, outlet pipe; 12, warehouse door; 13, nitrogen cylinder; 14, bait tray; 15, connecting rod; 16, top cover; 17, protruding spike; 18, intercepting rod; 19, second counterweight. Detailed implementation manners

[0019] The present application will be further described in detail below with reference to the accompanying drawings. It is necessary to point out here that the following specific implementation manners are only used to further illustrate the present application and cannot be understood as limiting the protection scope of the present application. Those skilled in the art can make some non-essential improvements and adjustments to the present application according to the above application content.

[0020] As Figure 1-6 shown, it includes a mouse trap box 1. A sealing door 2 for horizontal partition is provided in the mouse trap box 1. A mouse-catching chamber 3 is formed above the sealing door 2 in the mouse trap box 1, and a mouse storage chamber 4 is formed below. The sealing door 2 includes two sealing plates 201. The sealing plates 201 are both hinged in the mouse trap box 1 through a hinge shaft 202. The hinge shaft 202 is closer to the box wall of the mouse trap box 1 relative to the central axis of its hinged sealing plate 201. The sealing plate 201 is provided with a limiting block 203 for limiting the upward opening of the opposite ends of the two plates. The bottom of the opposite ends of the two plates is provided with a first counterweight 204. A mouse-attracting device is provided in the mouse-catching chamber 3 and directly above the opposite ends of the two plates. The mouse-catching chamber 3 is provided with a mouse inlet passage on the side wall, and the mouse inlet passage is connected with an inclined plate 5 extending to the ground.

[0021] Working principle: The first counterweight 204 is used to keep the sealing plate 201 horizontal when there is no mouse on the sealing plate 201. The limiting block 203 is a fixed block that contacts the upper surface of the connection part of the two plates. The fixed block is fixedly connected to the box wall of the mouse trap box 1. Bait, such as fruits, dairy products, nuts, etc., should be placed in the mouse-attracting device. The sealing plate 201 is divided into a long end and a short end (the end of the sealing plate 201 closer to the hinge shaft 202) with the hinge shaft 202 as the dividing line. Attracted by the mouse-attracting device, the mouse enters the mouse-catching chamber 3 through the inclined plate 5 and the mouse inlet passage and moves towards the long end. When the center of gravity of the mouse crosses the hinge shaft 202, the opposite end of the sealing plate 201 will automatically open downward, and the mouse will fall into the lower mouse storage chamber 4 before it has time to react. The sealing door 2 can be quickly sealed after the mouse falls into the mouse storage chamber 4, so that the mouse cannot escape. The mouse-attracting device is arranged directly above the connection part of the sealing plates 2 through a hanging method, which can reduce the loss speed of the bait and increase the number of mice that can be caught by a single bait placement.

[0022] Preferably, a sliding plate 6 is slidably connected up and down in the mouse storage bin 4. A spring 7 is connected between the sliding plate 6 and the bottom of the mouse storage bin 4. A connecting rope 8 is connected between the first counterweight 204 and the sliding plate 6. The connecting rope 8 is used to tighten and pull the first counterweight 204 after the sliding plate 6 slides down a set distance. The connecting rope 8 is in a relaxed state when there is no mouse on the sliding plate 6. Mice will fall onto the sliding plate 6 in the mouse storage bin 4. As the number and weight of mice on the sliding plate 6 increase, the sliding plate 6 slides downward and reaches the set distance. At this time, the connecting rope 8 is in a tightened state. The connecting rope 8 pulls the first counterweight 204, which will prevent the sealing door 2 from being opened upward. By setting the length of the connecting rope 8, the approximate number of mice captured in the mouse storage bin 4 can be controlled, which is convenient for placing the bait for an appropriate number of days in the mouse storage bin at one time. Just check it every few days, and there will be no situation where the mice starve to death in the mouse storage bin without being processed, resulting in the mouse storage bin smelling bad, which is convenient for centralized treatment and reduces the workload.

[0023] Preferably, an air cylinder 9 is further connected between the sliding plate 6 and the bottom of the mouse storage bin 4. The air cylinder 9 includes a piston cylinder 901 connected to the inner bottom of the mouse storage bin 4. A piston 902 is intercepted in the piston cylinder 901. The piston 902 is connected with a piston rod 903. The piston rod 903 extends out of the piston cylinder 901 and is connected with the sliding plate 6. The air cylinder 9 is provided with fine holes 904 at both the upper and lower ends of the piston cylinder 903. When a mouse falls from the mouse-catching bin 3 onto the sliding plate 6 in the mouse storage bin 4, it will hit the sliding plate 6. The sliding plate 6 connected with the spring 7 will vibrate up and down reciprocally, which will have an adverse effect on components such as the limit block 203 and the spring 7. After connecting the air cylinder 9, the sliding plate 6 needs to slowly discharge gas to slide after being hit. The sliding plate 6 always maintains the effect of slow sliding when sliding. By setting the air cylinder 9, the service life of the device is extended.

[0024] Preferably, the mouse storage bin 4 is connected with an air inlet pipe 10 at the top and an air outlet pipe 11 at the bottom. A bin door 12 is opened on the side wall of the mouse storage bin 4. Switch valves are provided on both the air inlet pipe 10 and the air outlet pipe 11, and the air inlet pipe 10 is connected with a nitrogen cylinder 13. The air outlet pipe 11 is preferably connected to a place far away from the mouse-catching box 1 through a pipeline or connected to a sealing treatment device to avoid affecting the mouse-catching effect of the device or the surrounding environment. Open the air inlet pipe 10 and appropriately close the air outlet pipe 11. Nitrogen in the nitrogen cylinder 13 enters the mouse storage bin 4, and the oxygen content in the mouse storage bin 4 gradually decreases. The mice inside will be killed in a short time. The death scene is not bloody and will not make people feel uncomfortable, and it is also convenient for subsequent cleaning; opening the bin door 12 is not only convenient for taking out the mice, but also convenient for cleaning and disinfecting the mouse storage bin 4.

[0025] Preferably, the rat attracting device includes a bait tray 14. The top of the bait tray 14 is connected by a connecting rod 15 to a top cover 16 located at the top of the rat-catching bin 3. A number of raised spikes 17 are fixedly connected to the upper surface of the bait tray 14. The connection between the bait tray 14 and the top cover 16 facilitates the removal of the bait tray 14 and the cleaning and disinfection of the rat-catching bin 3 and the bait tray 14. Rats usually have strong jumping ability. By arranging a number of raised spikes 17 on the bait tray 14, it can prevent rats from directly jumping onto the bait tray 14 and eating a large amount of bait when entering the rat-catching bin 3, thus avoiding the too rapid loss of bait in the bait tray 14 and resulting in the inability of the device to continuously catch rats.

[0026] Preferably, a number of intercepting rods 18 are provided at the outlet end of the rat inlet passage. The top ends of the intercepting rods 18 are hinged to the top of the rat inlet passage, and the bottom ends are connected to a second counterweight 19. When a rat drills into the rat-catching bin 3 through the inclined plate 5 and the rat inlet passage, it can push the intercepting rods 18 into the rat-catching bin 3 by moving forward. After the rat enters, the intercepting rods 18 will close again under the action of the counterweight connected to the bottom end. To open the intercepting rods 18 outward from the rat-catching bin 3, it is necessary to lift the intercepting rods 18 with the second counterweight 19 at the bottom, which a rat cannot do due to its body size. The spacing between the intercepting rods 18 should be fixed to prevent rats from drilling out through the gaps between the intercepting rods 18.

[0027] The above embodiments only represent several implementation manners of the present utility model. The description is relatively specific and detailed, but it should not be construed as a limitation on the scope of the patent of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, several modifications and improvements can still be made, and these all belong to the protection scope of the present utility model.

Claims

1. An intelligent mousetrap, characterized in that, It includes a rat trap (1). A sealing door (2) for horizontal partition is provided inside the rat trap (1). A rat-catching chamber (3) is formed above the sealing door (2) in the rat trap (1), and a rat storage chamber (4) is formed below. The sealing door (2) includes two sealing plates (201). The sealing plates (201) are both hinged inside the rat trap (1) through hinge shafts (202). The hinge shafts (202) are closer to the wall of the rat trap (1) than the central axes of the sealing plates (201) they are hinged to. The sealing plates (201) are provided with limit blocks (203) for limiting the upward opening of the opposite ends of the two plates. First counterweights (204) are provided at the bottoms of the separated ends of the two plates. An attracting rat device is provided in the rat-catching chamber (3) and directly above the opposite ends of the two plates. An inlet rat passage is opened on the side wall of the rat-catching chamber (3), and an inclined plate (5) extending to the ground is connected to the inlet rat passage.

2. The intelligent mousetrap according to claim 1, wherein A sliding plate (6) is connected to the rat storage chamber (4) in a vertically sliding manner. A spring (7) is connected between the sliding plate (6) and the bottom of the rat storage chamber (4). A connecting rope (8) is connected between the first counterweight (204) and the sliding plate (6). The connecting rope (8) is used to be tightened and pull the first counterweight (204) after the sliding plate (6) slides down a set distance.

3. An intelligent mousetrap according to claim 2, characterized in that, An air cylinder (9) is further connected between the sliding plate (6) and the bottom of the rat storage chamber (4). The air cylinder (9) includes a piston cylinder (901) connected to the inner bottom of the rat storage chamber (4). A piston (902) is intercepted and arranged inside the piston cylinder (901). The piston (902) is connected to a piston rod (903). The piston rod (903) extends out of the piston cylinder (901) and is connected to the sliding plate (6). The air cylinder (9) is provided with fine holes (904) at both the upper and lower ends of the piston cylinder (901).

4. An intelligent mousetrap according to claim 1, wherein, An inlet air pipe (10) is connected to the top of the rat storage chamber (4), and an outlet air pipe (11) is connected to the bottom. A chamber door (12) is opened on the side wall of the rat storage chamber (4). Switch valves are provided on both the inlet air pipe (10) and the outlet air pipe (11), and the inlet air pipe (10) is connected to a nitrogen gas cylinder (13).

5. An intelligent mousetrap according to claim 1, characterized in that, The attracting rat device includes a bait tray (14). The top of the bait tray (14) is connected to a top cover (16) located at the top of the rat-catching chamber (3) through a connecting rod (15). A number of protruding spikes (17) are fixedly connected to the upper surface of the bait tray (14).

6. The intelligent mousetrap according to claim 1, wherein, A number of intercepting rods (18) are provided at the outlet end of the inlet rat passage. The tops of the intercepting rods (18) are all hinged to the top of the inlet rat passage, and the bottoms are connected to second counterweights (19).