Mouse trap capable of repelling rats through moving and pushing
By combining a lifting and lowering rat-moving plate with a horizontal pushing rat-driving plate, the problem of the complex structure of traditional rat traps is solved, enabling rapid and accurate capture of rats, simplifying the rat-catching device, and improving rat-catching efficiency.
Patent Information
- Application Number
- CN202520252976.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2035-02-18
AI Technical Summary
Traditional rat traps are complex in structure and difficult to effectively catch highly alert rats. Existing rat trapping devices that use seesaws are prone to failure.
The system employs a combination of a lifting rodent-moving board and a flat rodent-repelling board. The lifting rodent-moving board raises the rats and pushes them into the rat storage area, while the flat rodent-repelling board pushes the rats directly into the rat storage box, simplifying the structure and improving rat-catching efficiency.
It achieves rapid and accurate capture of mice, has a simple structure, is easy to operate, has high mouse-catching efficiency, and eliminates the need for complex mouse-catching channels.
Smart Images

Figure CN223640035U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a mousetrap, especially to a push-moving mouse-driving mousetrap. BACKGROUND
[0002] A mousetrap, also called a mouse trap, is a device for physically trapping mice. Traditional mouse traps mainly rely on mice to trigger the trap mechanism to trap mice, for example, by stepping on a seesaw to cause the center of gravity to shift and become unbalanced to trap mice. However, for mice with high vigilance and sensitivity, once they feel unbalanced, they will run back, resulting in failure to catch them. This active mouse trapping method through a seesaw requires a separate mouse turning plate and a power device to drive the mouse turning plate to rotate in the mouse trap, which has a complex structure and arrangement. SUMMARY
[0003] The utility model solves the technical problem of providing a push-moving mouse-driving mousetrap with a simple structure, easy operation, and the ability to trap mice by moving and pushing.
[0004] To solve the above technical problems, the technical solution of the utility model is as follows: a push-moving mouse-driving mousetrap includes a cage, which includes a mouse trapping area and a mouse storage area. The mouse trapping area and the mouse storage area are separated by a partition. A mouse trapping area exit is provided on the upper part of the partition to connect the mouse trapping area and the mouse storage area. A mouse trapping area entrance is provided at the bottom end of the cage in the mouse trapping area. A lifting mouse moving plate and a lifting control device are installed in the mouse trapping area. The lifting control device can drive the lifting mouse moving plate to reciprocally slide up and down between the mouse trapping area entrance lower end and the mouse trapping area exit lower end. A mouse storage box is provided below the mouse trapping area exit in the mouse storage area. A push-driving mouse plate and a push control device are also installed in the mouse trapping area. The push control device can drive the push-driving mouse plate to reciprocally slide forward to the mouse trapping area exit.
[0005] As a preferred technical solution, the four edges of the lifting mouse moving plate are close to the inner surface of the cage, and the left and right ends of the mouse trapping area exit are close to the inner surface of the cage.
[0006] As a preferred technical solution, the push control device includes two rotatingly installed pulleys one. A conveyor belt one is transmissionally provided between the two pulleys one. The push-driving mouse plate is horizontally slidably installed in the cage through a slide rail one. The push-driving mouse plate is also fixed on the conveyor belt one. One of the pulleys one is directly or indirectly connected to the power end of a sliding power device one.
[0007] Or the horizontal push control device comprises front and rear horizontal rotating installation of the mouse screw rod, the horizontal push drive mouse plate is slid through the slide rail, the horizontal push drive mouse plate is also threaded to the mouse screw rod, one end of the mouse screw rod is directly or indirectly connected to the power end of the sliding power device.
[0008] As a preferred technical solution, the lifting control device comprises two rotatingly installed pulleys two, the conveying belt two is driven between the two pulleys two, the lifting mouse moving plate is vertically slidably installed in the cage through the slide rail two, and one of the pulleys two is directly or indirectly connected to the power end of the sliding power device two.
[0009] Or the lifting control device comprises a steel wire rope, one end of the steel wire rope is fixedly connected to the lifting mouse moving plate, the other end of the steel wire rope is extended and wound to the winding turntable through a pulley, and the winding turntable is directly or indirectly connected to the power end of the lifting power device two.
[0010] As a preferred technical solution, the cage further comprises a sensor corresponding to the mouse catching area.
[0011] As a preferred technical solution, the mouse catching area entrance is provided with two mouse catching area entrances respectively located at the bottom ends of the two sides of the cage, and the sensor is located between the two mouse catching area entrances.
[0012] As a preferred technical solution, the rear plate or the side plate corresponding to the mouse storage area in the cage can be opened to facilitate the removal of the mouse storage box.
[0013] As a preferred technical solution, the cage is provided with a coagulant feeding port above the mouse storage box.
[0014] As a preferred technical solution, the mouse storage box is provided with a mouse storage bag, and the mouse storage bag contains a liquid rat killer.
[0015] As a preferred technical solution, one side edge of the mouse storage box is provided with an electric heat sealing strip for plastic sealing of the mouse storage bag, and the other side edge of the mouse storage box is provided with a plastic sealing strip push rod, and the plastic sealing strip push rod can slide towards the electric heat sealing strip side along the push rod handle.
[0016] The beneficial effects of this invention due to the adoption of the above technical solution are as follows: This device replaces the rat-turning board in the prior art with a lifting rat-moving board and a horizontal rat-driving board. The lifting rat-moving board is used to lift and transport rats in the rat-catching area upwards, and then the horizontal rat-driving board pushes the rats backwards to drive them directly into the rat storage area through the rat exit of the rat-catching area, where they fall into the rat storage box below. This ensures that the rats enter the trap quickly and accurately, improving the rat-catching efficiency of the device. The combined use of the lifting rat-moving board and the horizontal rat-driving board can forcibly transport and drive rats, eliminating the need for rat-catching devices and rat-catching channels. Through the coordinated arrangement of the structures, the purpose of rat catching is achieved through a simple lifting and horizontal pushing method. The structure is simplified, easy to use, and has a high rat-catching accuracy. Attached Figure Description
[0017] The accompanying drawings are intended only to illustrate and explain the present invention and do not limit the scope of the present invention.
[0018] Figure 1 This is a structural schematic diagram of an embodiment of the present utility model;
[0019] Figure 2 This is a schematic diagram of the internal structure of the front angle of an embodiment of this utility model;
[0020] Figure 3 This is a schematic diagram of the internal structure of the rear angle of an embodiment of this utility model;
[0021] Figure 4 This is a side view diagram of an embodiment of the present invention (state before catching a mouse);
[0022] Figure 5 This is a side view diagram of the principle of this utility model embodiment (state after catching a mouse);
[0023] Figure 6 This is a schematic diagram of a mouse storage box according to an embodiment of the present utility model;
[0024] Figure 7 This is a schematic diagram of Embodiment 5 of this utility model;
[0025] Figure 8 This is a schematic diagram of Embodiment Six of this utility model;
[0026] In the diagram: 1-Cage body; 2-Rat trapping area; 3-Rat storage area; 4-Partition; 5-Rat exit of rat trapping area; 6-Rat entrance of rat trapping area; 7-Lifting rat moving board; 8-Rat storage box; 9-Push-away rat repelling board; 10-Rat storage bag; 11-Electric heating plastic seal; 12-Plastic seal push rod; 13-Push rod handle; 14-Rotating side panel for trapping rats; 15-Post; 16-Rack; 17-Shaft; 18-Gear; 19-Lifting side panel; 20-Magnetic retractable switch; 21-Block. Detailed Implementation
[0027] The present invention will be further described below with reference to the accompanying drawings and embodiments. In the following detailed description, only certain exemplary embodiments of the present invention are described by way of illustration. Undoubtedly, those skilled in the art will recognize that various modifications can be made to the described embodiments without departing from the spirit and scope of the present invention. Therefore, the drawings and description are illustrative in nature and not intended to limit the scope of the claims.
[0028] like Figures 1 to 5 As shown, a movable rodent-repelling rat trap includes a cage body 1, which includes a rat-catching area 2 and a rat-storage area 3. In this embodiment, both the rat-catching area 2 and the rat-storage area 3 are rectangular in shape, but not limited to rectangles. The rat-catching area 2 and the rat-storage area 3 are separated by a partition 4. A rat-catching area outlet 5 is provided at the upper part of the partition 4, connecting the rat-catching area 2 and the rat-storage area 3. The left and right ends of the rat-catching area outlet 5 are close to the inner surface of the cage body 1. A rat-catching area inlet 6 is provided at the bottom end of the cage body 1, located on the left and right sides of the bottom end of the cage body 1. A lifting rat-moving plate 7 and a lifting control device are installed inside the rat-catching area 2. The four edges of the lifting rat-moving plate 7 are close to the inner surface of the cage body 1. The lifting control device can drive the lifting and moving rodent plate 7 to slide back and forth between the lower end of the rodent entry 6 and the lower end of the rodent exit 5 of the rodent trapping area. A rodent storage box 8 is provided in the rodent storage area 3 below the rodent exit 5 of the rodent trapping area. A horizontal rodent repelling plate 9 and a horizontal control device are also installed in the rodent trapping area 2. The horizontal control device can drive the horizontal rodent repelling plate 9 to slide back and forth to the rodent exit 5 of the rodent trapping area. The horizontal rodent repelling plate 9 is adapted to the rodent exit 5 of the rodent trapping area. A sensor corresponding to the rodent trapping area 2 is also provided in the cage body 1. The sensor can be located in the rodent trapping area 2, but is not limited to the rodent trapping area 2, as long as it can detect the rodent trapping area 2. The sensor is connected to the lifting control device and the horizontal control device.
[0029] In this embodiment, the rat storage area 3 is located behind the rat trapping area 2. The rat trapping area entrance 6 is located on the left and right sides of the bottom end of the cage 1, facilitating rapid entry of rats. The rat trapping area exit 5 is located on the upper rear side of the cage 1, serving as the entrance to the rat storage area 3, and is situated above the rat storage box 8. To facilitate the arrangement of power supplies, motors, etc., a power supply and motor area is provided above the rat trapping area 2 and the rat storage area 3. This area is isolated by a top clamp, allowing the motor and other structures to be arranged within the power supply and motor area, avoiding interference from other components and achieving dry and wet separation.
[0030] The lifting mouse plate 7 is a key component for forcibly lifting and conveying mice upward. When the lifting mouse plate 7 is at the lower stop point (contacting the ground), it corresponds to the lower end of the mouse entry port 6 of the mouse trapping area, at which time the mice can enter through the mouse entry port 6, step on the surface of the lifting mouse plate 7, and enter the mouse trapping area 2. When the lifting mouse plate 7 rises above the mouse entry port 6 of the mouse trapping area, it is equivalent to closing the mouse entry port 6. At this time, the four peripheral edges of the lifting mouse plate 7 can cooperate with the surface of the cage 1 to form a closed space for trapping mice. When the lifting mouse plate 7 is at the upper stop point, it corresponds to the lower end of the mouse exit port 5 of the mouse trapping area and abuts against the bottom end surface of the flat push mouse plate 9. After the lifting mouse plate 7 cooperates with the flat push mouse plate 9, the mice are trapped in the space with only one mouse exit port 5. At this time, the mice are driven to the mouse exit port 5 by the flat push mouse plate 9, so that the mice quickly enter the mouse storage area 3 and fall into the mouse storage box 8.
[0031] The top end of the flat push mouse plate 9 is connected to the flat push control device, and the lower part of the flat push mouse plate 9 extends downward for driving the mice. Before the lifting mouse plate 7 moves upward to the upper stop point, the flat push mouse plate 9 is close to the front surface of the cage 1 and away from the mouse exit port 5 of the mouse trapping area, for ensuring the upward movement of the mice. After the lifting mouse plate 7 moves to the upper stop point, the flat push mouse plate 9 starts to act, slides backward toward the mouse exit port 5 of the mouse trapping area, gradually reduces the moving space of the mice, and directly drives the mice to the mouse storage area 3 through the mouse exit port 5, and directly falls into the mouse storage box 8 below. When the flat push mouse plate 9 stops after sliding to the surface of the partition plate 4, the mice can be driven to the mouse exit port 5. When the flat push mouse plate 9 can pass through the mouse exit port 5 of the mouse trapping area into the mouse storage area 3 through the slide rail, the driving effect is better, and the mice can be forcibly pushed into the mouse storage area 3.
[0032] The flat push control device includes two rotatingly installed belt pulleys I, the two belt pulleys I are rotatably connected to the cage 1, and a conveying belt I is transmissionally arranged between the two belt pulleys I. The flat push mouse plate 9 is horizontally slidably installed on the cage 1 through a slide rail I, and the flat push mouse plate 9 is further fixed on the conveying belt I. One of the belt pulleys I is directly or indirectly connected to the power end of a sliding power device I, and the sliding power device I is a fixedly installed motor I. The motor I is installed in the power supply motor area.
[0033] The lifting mouse plate 7 is controlled to rise and fall by the lifting control device, which can adopt various structural forms. In the embodiment, the lifting control device includes two rotatingly installed pulleys II, the two pulleys II are rotatingly installed on the cage 1, and a conveying belt II is transmissionally arranged between the two pulleys II. The lifting mouse plate 7 is vertically slidingly installed on the cage 1 through sliding rails II and is further fixed on the conveying belt II. One of the pulleys II is directly or indirectly connected to the power end of a sliding power device II, and the sliding power device II is a fixedly installed motor II, which is installed on the power motor area.
[0034] In the embodiment, the mouse entry ports 6 of the mouse trapping area are arranged at the bottom ends of the two sides of the mouse cage respectively, and the inductor is arranged between the two mouse entry ports 6. The inductor is arranged in the middle of the two mouse entry ports 6 to avoid the escape of the mice from the mouse entry ports 6 during the upward movement of the lifting mouse plate 7. The lifting control device, the horizontal pushing control device and the inductor are electrically or signal connected, that is, the power for controlling the lifting mouse plate 7 and the power for controlling the horizontal pushing mouse plate 9 are electrically or signal connected with the inductor. The inductor is an infrared sensor for detecting the traces of the mice, which belongs to the prior art and will not be described here. When the lifting mouse plate 7 is lowered to the lower stop point, the inductor is higher than the lifting mouse plate and does not affect the detection of the inductor.
[0035] In the embodiment, the left and right widths of the mouse exit ports 5 of the mouse trapping area are basically the same as the left and right widths in the cage 1, the left and right widths of the lifting mouse plate 7 and the left and right widths of the horizontal pushing mouse plate 9. After the mice are lifted to the upper stop point, the horizontal pushing mouse plate 9 can push the mice backward to the mouse exit ports 5 of the mouse trapping area.
[0036] The rear plate or side plate corresponding to the mouse storage area 3 in the cage 1 can be opened to facilitate the removal of the mouse storage box 8. The rear plate or side plate can be a detachable plate or can be opened and closed through hinging, which facilitates the removal of the mouse storage box 8.
[0037] The cage 1 above the mouse storage box 8 is provided with a coagulant feeding port. After the mice are drowned in the mouse storage box 8, water retaining agent or water absorbing agent can be fed into the mouse storage box 8 through the coagulant feeding port to harden and coagulate the water in the mouse storage box 8, which is convenient for collection, storage and accommodation. Of course, the water retaining agent or water absorbing agent can be manually added or automatically added through an automatic feeder.
[0038] The mouse storage box 8 is provided with a mouse storage bag 10, which contains rat poison liquid. When the mouse is drowned, the mouse and the rat poison liquid can be collected together by collecting the mouse storage bag 10. The mouse storage bag 10 is a disposable plastic bag, which is convenient to use and low in cost.
[0039] The mouse storage box 8 is provided with a mouse storage bag 10, which contains rat poison liquid. When the mouse is drowned, the mouse and the rat poison liquid can be collected together by collecting the mouse storage bag 10. The mouse storage bag 10 is a disposable plastic bag, which is convenient to use and low in cost. Figure 6 When the mouse storage bag 10 needs to be collected, the plastic bag is heated by the plastic bag push rod 12, and then the plastic bag push rod 12 is pushed along the push rod handle 13 towards the electric heating plastic sealing strip 11. The plastic bag push rod 12 is pressed outside the electric heating plastic sealing strip 11, and the two sides of the plastic bag are softened and bonded, and then the mouse storage bag 10 is taken out of the mouse storage box 8. Of course, the mouse storage bag 10 can also be directly sealed by a pull rope.
[0040] The bottom end of the cage is also provided with a bait box. In order to facilitate the arrangement of the bait box, the bait box can be placed in the space below the mouse storage box in the mouse storage area. The bait box can be installed by pulling it back and forth from the rear of the cage.
[0041] The working principle of the embodiment is as follows:
[0042] Before use, the lifting mouse moving plate 7 is at the lower dead point (contacting the ground), and the flat push mouse plate 9 is located on the front side surface of the cage 1. The state is shown in Figure 4
[0043] When in use, the mouse enters the mouse hole 6 through the lower mouse catching area and steps on the lifting mouse moving plate 7 to enter the mouse catching area 2. After the mouse moves to the position close to the middle of the lifting mouse moving plate 7, it falls into the detection range of the sensor. After the sensor detects the trace of the mouse, the second motor sends a signal to the second motor, the second motor rotates, the second belt rotates through the second pulley, the lifting mouse moving plate 7 is controlled to rise rapidly and exceeds the mouse hole 6 of the mouse catching area. The rising process is fast and can be controlled within 1s to ensure that the mouse cannot escape from the mouse hole 6 of the mouse catching area. The mouse hole 6 of the mouse catching area has been completely closed, and the mouse is trapped inside the cage 1 in cooperation with the lifting mouse moving plate 7 to prevent the mouse from escaping. After the height of the lifting mouse moving plate 7 exceeds the mouse hole 6 of the mouse catching area, the lifting mouse moving plate 7 can continue to move upward at a slow and uniform speed and stop after moving to the upper stop point. At this time, the top end surface of the lifting mouse moving plate 7 contacts the bottom end surface of the flat push mouse driving plate 9. At the same time or within a few seconds, the first motor starts to rotate the first belt through the first pulley, which drives the flat push mouse driving plate 9 to slide backward, reduces the activity space of the mouse, causes the mouse to feel oppressed, and drives the mouse until it stops near the mouse hole 5 of the mouse catching area. The mouse falls from the mouse hole 5 of the mouse catching area to the lower mouse catching box. The state is shown in Figure 5 ;
[0044] The first motor and the second motor act to reset and capture the mouse for the next time. The operator takes out the mouse storage box 8 and takes out the mouse by extracting the mouse storage bag 10 to complete the mouse catching.
[0045] The device is used to catch mice, but is not limited to mice. It is also applicable to the capture of other small animals and belongs to the protection scope of the present application.
[0046] Embodiment Two
[0047] Embodiment Two is basically the same as Embodiment One, and the main difference is that the driving structure of the flat push control device is different. In this embodiment, the flat push control device includes a mouse driving screw horizontally rotatably installed, the flat push mouse driving plate 9 slides horizontally through the slide rail one, and the flat push mouse driving plate 9 is threadedly connected to the mouse driving screw. One end of the mouse driving screw is directly or indirectly connected to the power end of the sliding power device one. The power drives the mouse driving screw to rotate and drives the flat push mouse driving plate 9 to slide forward and backward along the slide rail one to drive the mouse. Of course, other driving methods such as steel wire rope traction can also be used.
[0048] Embodiment Three
[0049] Example 3 is basically the same as Example 1, the main difference being the structure of the lifting control device. In this example, the lifting control device includes a steel wire rope, one end of which is fixedly connected to the lifting mouse plate 7, and the other end of which extends through a pulley and winds around a winding turntable. The winding turntable is directly or indirectly connected to the power end of the second lifting power device. The power causes the winding turntable to rotate, causing the steel wire rope to wind or unwind, thus raising and lowering the lifting mouse plate 7. Of course, other driving methods can also be used, such as screw drive.
[0050] Example 4:
[0051] Example 4 is basically the same as Example 1, the main difference being the number of mouse-catching entrances 6. In Example 1, there are two mouse-catching entrances 6, located at the bottom of both sides of the cage 1. In Example 4, there is one mouse-catching entrance 6 located on one side of the cage 1. The sensor is located at the bottom of the cage 1, away from the mouse-catching entrance 6, ensuring that after the mouse enters through the mouse-catching entrance 6, it moves to a certain distance from the mouse-catching entrance 6 before the sensor sends a signal to the lifting mouse-moving plate 7, thus preventing the mouse from escaping near the mouse-catching entrance 6.
[0052] Example 5:
[0053] Example 5 is a further improvement on Example 1, the main difference being that a rat-trapping rotating side plate 14 is provided at the rat-trapping area entrance 6. In Example 5, a rat-trapping rotating side plate 14, which can open or close the rat-trapping area entrance 6, is rotatably installed above the end of the lifting rat-moving plate 7 near the end of the rat-trapping area entrance 6. The rat-trapping rotating side plate 14 can be installed on the lifting rat-moving plate 7 and rotated to open or close the rat-trapping area entrance 6 by a motor control; or the rat-trapping rotating side plate 14 can be directly provided on the cage body 1 and rotated to open or close the rat-trapping area entrance 6 by a motor control.
[0054] Alternatively, two vertically arranged columns 15 are provided at the front and rear of the lifting and moving mouse plate. A rack 16 is provided on each column 15. The upper end of the mouse-trapping rotating side plate 14 is mounted to the cage body 1 via a rotating shaft 17. Gears 18 that mesh with the rack 16 are provided at both ends of the rotating shaft 17. A torsion spring is also provided outside the rotating shaft 17. (See [reference]) Figure 7When the lifting and lowering mouse-moving plate 7 is at its lowest point, the rack 16 and the gear 18 engage to open the mouse-trapping rotating side plate 14. When the rack 16 rises with the lifting and lowering mouse-moving plate 7 and no longer engages with the gear 18, the mouse-trapping rotating side plate 14 automatically closes under the action of the torsion spring, forming a sealed space with the lifting and lowering mouse-moving plate 7, thus trapping the mouse. This design, as a further auxiliary design of Embodiment 1, can prevent the mouse from escaping through the gaps at both ends during the lifting and lowering of the mouse-moving plate 7.
[0055] Example 6:
[0056] Example 6 differs from Example 5. In Example 6, a movable side panel 19, which can be opened or closed, is provided inside the cage 1 at the entrance 6 of the mouse-catching area. The movable side panel 19 also serves as a side panel of the cage 1 and can slide up and down along the front panel and partition 4 of the cage 1. When the movable side panel 19 is at the top, there is a certain space between the movable side panel 19 and the ground, which serves as the entrance 6 of the mouse-catching area. When the movable side panel 19 is at the bottom and rests against the ground, the entrance 6 of the mouse-catching area is closed. A magnetic retractable switch 20 is installed in the power motor area of the cage 1. The movable side panel 19 has an opening that cooperates with the retractable end of the magnetic retractable switch 20. When the magnetic retractable switch 20 is inserted into the opening, the movable side panel 19 can remain in the open state. The inner surface of the movable side panel 19 also has a stop 21 that cooperates with the movable mouse-moving plate 7.
[0057] Before catching the mouse, the lifting side panel 19 is at the top, and the magnetic retractable switch 20 is inserted into the opening, so that the lifting side panel 19 is controlled to be held at the upper stop point, and the mouse-catching area entrance 6 is open. See the state below. Figure 8 When a mouse is detected entering the mouse-catching area 2, the telescopic end of the magnetic retractable switch 20 retracts, and the lifting side plate 19 descends to the ground, closing the mouse-catching area entrance 6. Subsequently, the lifting mouse-moving plate 7 lifts the mouse upward. When it contacts the stop block 21, it pulls the lifting side plate 19 upward to the upper stop point, opening the mouse-catching area entrance 6. The telescopic end of the magnetic retractable switch 20 extends and inserts into the opening to hold the lifting side plate 19 in place. At this time, the lifting mouse-moving plate 7 also rises to the upper stop point. After the mouse is caught, the lifting mouse-moving plate 7 descends to the lower stop point, and the lifting side plate 19 remains at the upper stop point with the mouse-catching area entrance 6 open.
[0058] Of course, the magnetic retractable switch can also be a rotary motor, which is equipped with a horizontally rotatable rotating rod. The rotating rod can rotate into the opening to support the lifting mouse plate, or rotate out of the opening to avoid it.
[0059] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A movable rodent-repelling rat trap, comprising a cage body, characterized in that: The cage includes a trapping area and a storage area, which are separated by a partition. An exit point for the trapping area is located at the top of the partition, connecting the trapping area and the storage area. An inlet point for the trapping area is located at the bottom of the trapping area. A lifting and lowering rodent-moving board and a lifting control device are installed within the trapping area. The lifting control device allows the lifting and lowering board to slide back and forth between the lower ends of the inlet and outlet points of the trapping area. A storage box is located below the outlet point of the trapping area within the storage area. A horizontal rodent-repelling board and a horizontal control device are also installed within the trapping area. The horizontal control device allows the horizontal rodent-repelling board to slide back and forth towards the outlet point of the trapping area.
2. The movable rodent-repelling rat trap as described in claim 1, characterized in that: The four edges of the lifting and moving rodent plate are close to the inner surface of the cage, and the left and right ends of the rodent exit of the rodent trapping area are close to the inner surface of the cage.
3. The movable rodent-repelling rat trap as described in claim 1, characterized in that: The horizontal push control device includes two rotatably mounted pulleys, a conveyor belt driving between the two pulleys, and the horizontal push rodent-repelling plate is horizontally slidably mounted on the cage body via a slide rail. The horizontal push rodent-repelling plate is also fixed to the conveyor belt. One of the pulleys is directly or indirectly connected to the power end of the sliding power device. Alternatively, the pushing control device may include a rodent-repelling screw that is horizontally rotatable at the front and rear. The rodent-repelling plate slides horizontally via a slide rail. The rodent-repelling plate is also threadedly connected to the rodent-repelling screw. One end of the rodent-repelling screw is directly or indirectly connected to the power end of the sliding power device.
4. The movable rodent-repelling rat trap as described in claim 1, characterized in that: The lifting control device includes two rotatably mounted pulleys, a conveyor belt is driven between the two pulleys, the lifting mouse plate is vertically slidably mounted on the cage via a slide rail, and the lifting mouse plate is also fixed on the conveyor belt. One of the pulleys is directly or indirectly connected to the power end of the sliding power device. Alternatively, the lifting control device may include a steel wire rope, one end of which is fixedly connected to the lifting mouse plate, and the other end of which extends through a pulley and winds around a winding turntable, the winding turntable being directly or indirectly connected to the power end of the second lifting power device.
5. The movable rodent-repelling rat trap as described in claim 1, characterized in that: The cage is also equipped with sensors corresponding to the rat-catching area.
6. The movable rodent-repelling rat trap as described in claim 5, characterized in that: The rat-catching area has two rat-entry points located at the bottom of both sides of the cage, and the sensor is located between the two rat-entry points of the rat-catching area. Alternatively, the rat-catching area entrance may be located on one side of the cage, and the sensor may be located at the bottom of the rat-catching cage away from the rat-catching area entrance.
7. The movable rodent-repelling rat trap as described in claim 1, characterized in that: The lifting and moving rat plate is rotatably installed above the end of the rat trapping area near the rat entrance, and a rat-trapping rotating side plate is installed to open or close the rat entrance of the rat trapping area. Alternatively, the cage may have an openable or closable lifting side panel located at the entrance to the rat-catching area.
8. The movable rodent-repelling rat trap as described in claim 1, characterized in that: The cage above the rat storage box is equipped with a coagulant inlet.
9. The movable rodent-repelling rat trap as described in claim 1, characterized in that: The rat storage box is equipped with a rat storage bag, which contains rat-killing liquid.
10. The movable rodent-repelling rat trap as described in claim 9, characterized in that: The mouse storage box has an electric heating sealing strip on one side edge for sealing the mouse storage bag, and a sealing strip push rod on the other side edge of the mouse storage box. The sealing strip push rod can slide along the push rod handle toward the electric heating sealing strip.