Continuous mousetrap

CN224597418UActive Publication Date: 2026-08-07陈多福
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
陈多福
Filing Date
2025-03-03
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

目前市面上有些捕鼠笼一次只能捕捉一只老鼠,并且传统捕鼠器有些都使用弹簧,由于弹簧具有一定危险性,操作的时候容易伤人

Benefits of technology

[0003] This utility model of a mousetrap solves the technical problems mentioned in the background section. The mousetrap uses a traditional mesh iron cage. Bait is placed inside both ends of the cage, and a slotted door device is provided at both ends. Two round tubes are placed at the inner edge of the cage at each end of the slotted mesh iron door. Since mice like to burrow, two round tubes leading into the cage are designed as an entry point. The method is as follows: bait is placed at both ends of the mousetrap. When mice see the bait, they will try to enter and eat it. At this time, there is a round tube, similar to a hole, next to the bait at each end of the cage. Given the mouse's habit of burrowing, it will crawl into the tube. A mechanism is provided at the inner end of the tube to prevent it from exiting. The method to prevent mice from escaping involves suspending a circular plate smaller than the diameter of the inner tube at the top of the cage. A circular plate with a cut-out end is welded to the inner tube, and a screw is installed on the outer side of the circular plate at the bottom of the inner tube to prevent mice from escaping. This allows mice to enter the cage by gently pushing against the circular plate. When a mouse tries to escape, the circular plate and the screw work together, preventing it from getting out. This allows mice to continuously enter the cage, thus catching multiple mice. This invention is simple to manufacture and can continuously catch multiple mice. It mainly capitalizes on the mouse's habit of burrowing; both ends are designed with circular tubes resembling holes, and the device at the other end is simple and effective in preventing mice from escaping once inside the cage. This utility model of a continuous rat trap uses a mesh rectangular iron cage. At each end of the cage's inner edge, there is a tube leading into the cage. At the end of the tube leading into the cage, there is a device that prevents rats from entering but not exiting. Specifically, a circular plate smaller than the diameter of the tube is suspended from the top of the tube, and a screw at the bottom of the tube prevents escape. Because the plate is suspended, rats can easily push it open to enter the cage, and when they try to escape, they are blocked by the screw at the bottom. This ensures that rats can only enter but not exit, and multiple rats can enter consecutively.

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Abstract

The utility model relates to a mouse catching technology field. Specifically, it is a continuous mouse cage. The utility model discloses a mesh formula cuboid iron cage, is equipped with the door of placing the mouse of trapping cage and luring bait in the both ends of cage, is equipped with the pipe of can let the mouse see the luring bait and enter the cage in the edge place of both ends cage, is equipped with the device of only going in not going out in the end of the pipe in cage.
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Description

Technical Field

[0001] This utility model relates to a rat cage, specifically a cage that can continuously catch rats. Background Technology

[0002] Eliminating the Four Pests: Rats are actually the most harmful. They not only steal food but also damage furniture and clothing, and spread diseases, making them a source of deep resentment. To eliminate rats, effective rat traps are needed. Currently, some rat traps on the market can only catch one rat at a time, and traditional rat traps often use springs, which can be dangerous and cause injury during operation. Therefore, I designed a simple and effective new type of practical rat trap that can continuously catch rats. Summary of the Invention

[0003] This utility model of a mousetrap solves the technical problems mentioned in the background section. The mousetrap uses a traditional mesh iron cage. Bait is placed inside both ends of the cage, and a slotted door device is provided at both ends. Two round tubes are placed at the inner edge of the cage at each end of the slotted mesh iron door. Since mice like to burrow, two round tubes leading into the cage are designed as an entry point. The method is as follows: bait is placed at both ends of the mousetrap. When mice see the bait, they will try to enter and eat it. At this time, there is a round tube, similar to a hole, next to the bait at each end of the cage. Given the mouse's habit of burrowing, it will crawl into the tube. A mechanism is provided at the inner end of the tube to prevent it from exiting. The method to prevent mice from escaping involves suspending a circular plate smaller than the diameter of the inner tube at the top of the cage. A circular plate with a cut-out end is welded to the inner tube, and a screw is installed on the outer side of the circular plate at the bottom of the inner tube to prevent mice from escaping. This allows mice to enter the cage by gently pushing against the circular plate. When a mouse tries to escape, the circular plate and the screw work together, preventing it from getting out. This allows mice to continuously enter the cage, thus catching multiple mice. This invention is simple to manufacture and can continuously catch multiple mice. It mainly capitalizes on the mouse's habit of burrowing; both ends are designed with circular tubes resembling holes, and the device at the other end is simple and effective in preventing mice from escaping once inside the cage. This utility model of a continuous rat trap uses a mesh rectangular iron cage. At each end of the cage's inner edge, there is a tube leading into the cage. At the end of the tube leading into the cage, there is a device that prevents rats from entering but not exiting. Specifically, a circular plate smaller than the diameter of the tube is suspended from the top of the tube, and a screw at the bottom of the tube prevents escape. Because the plate is suspended, rats can easily push it open to enter the cage, and when they try to escape, they are blocked by the screw at the bottom. This ensures that rats can only enter but not exit, and multiple rats can enter consecutively. Attached Figure Description

[0004] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is the front view of the present invention; Figure 3 This is a structural diagram of the circular tube leading into the cage according to this utility model. In the diagram: 1. Mouse cage body; 2. Hollowed-out mouse cage; 3. Mouse entrance; 4. Bait; 5. Slotted door; 6. Slot; 7. Hanging rod; 8. Circular plate to prevent mouse from escaping; 9. Screw to prevent mouse from escaping; 10. Circular tube leading into the cage. Detailed Implementation

[0005] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present utility model, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model. (See attached drawings.) Figure 1 To be continued Figure 3 As shown: Example 1

[0006] This utility model mousetrap uses a traditional mesh iron cage. Bait 4 is placed inside both ends of the cage, and a slotted door 5 is located at each end. Two round tubes 10 are placed along the inner edge of the cage at both ends, corresponding to the mouse's habit of burrowing. The method is as follows: Bait is placed at both ends of the cage; when a mouse sees the bait, it will try to enter and eat it. At this time, there is a round tube, similar to a hole, next to the bait at each end of the cage. Given the mouse's habit of burrowing, it will crawl through the tube. A mechanism is installed at the inner end of the tube to prevent it from exiting. The method to prevent mice from escaping involves suspending a small circular plate (8) smaller than the diameter of the inner tube at the top of the cage. A circular plate with a welded suspension rod (7) is cut into the inner tube. A screw (9) is installed on the outer side of the circular plate at the bottom of the inner tube to prevent mice from escaping. This allows mice to enter the cage by gently pushing against the circular plate. When a mouse tries to escape, the circular plate and the screw work together, preventing it from getting out. This allows mice to continuously enter the cage, thus catching multiple mice. This invention is simple to manufacture and can continuously catch multiple mice. It mainly capitalizes on the mouse's habit of burrowing. The design includes circular tubes at both ends resembling holes, and a simple and effective device at the other end to prevent mice from escaping once inside the cage. This utility model of a continuous rat trap uses a mesh rectangular iron cage. At each end of the cage's inner edge, there is a tube leading into the cage. At the end of the tube leading into the cage, there is a device that prevents rats from entering but not exiting. Specifically, a circular plate smaller than the diameter of the tube is suspended from the top of the tube, and a screw at the bottom of the tube prevents escape. Because the plate is suspended, rats can easily push it open to enter the cage, and when they try to escape, they are blocked by the screw at the bottom. This ensures that rats can only enter but not exit, and multiple rats can enter consecutively.

Claims

1. A continuous rat trap, specifically a rectangular mesh iron cage, characterized in that, Both ends of the cage are equipped with doors for placing bait and catching mice inside, as well as round tubes leading into the cage. The end of the round tube leading into the cage is equipped with a device that allows only entry and no exit. Specifically, a round plate smaller than the diameter of the round tube is suspended from the end of the round tube inside the cage, and a screw is installed at the bottom of the end of the round tube inside the cage. Its function is to block the round plate when the mice inside the cage try to escape. In this way, the screw installed inside the cage can block the round plate when the mice try to escape by pushing against it.