Industrial anti-stumbling rat guard

By using magnets for fixation and an adjustable thin iron plate design, the problems of inconsistent manufacturing and tripping hazards of traditional rodent-proof boards are solved, achieving a safe, aesthetically pleasing rodent-proof effect while saving costs.

CN223816833UActive Publication Date: 2026-01-23BENXI NORTHERN STEEL ROLLING CO LTD +1
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Patent Information

Application Number
CN202520293768.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-24
Publication Date
2026-01-23
Estimated Expiration
2035-02-24

AI Technical Summary

Technical Problem

Traditional rodent-proof barriers cannot be manufactured and installed uniformly, have gaps, are easy to trip over and pose safety hazards, and have a fixed structure that cannot be knocked down to prevent people from getting injured.

Method used

Featuring a magnetic fixing and adjustable thin iron plate design, the thin iron plate is foldable and equipped with safety markings. It achieves rodent prevention and security through magnetic fixing and is suitable for door frames of different widths.

Benefits of technology

It achieves a safe and aesthetically pleasing rodent-proof effect, reduces production costs, has a wide range of applications, and avoids the risk of tripping.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of rat-proof plates below electric control room doors of all industrial and mining enterprises, and particularly relates to an industrial anti-stumbling rat-proof plate which comprises a door frame, one side of the door frame is movably contacted with a first thin iron plate and a second thin iron plate, and the first thin iron plate is movably contacted with the second thin iron plate. Once a worker is stumbled to the first thin iron plate or the second thin iron plate, the first thin iron plate and the second thin iron plate fall down before the worker falls down due to the fact that welding fixation is changed into strong magnet fixation, the rat-proof and safe effects are achieved, safety marks are arranged on the two sides of the first thin iron plate and the two sides of the second thin iron plate, and the safety of the worker is improved. In addition, due to the fact that the mode that the first thin iron plate and the second thin iron plate are overlapped to replace one thick iron plate is adopted in the design, unified manufacturing can be achieved, certain cost can be saved, meanwhile, the first thin iron plate and the second thin iron plate can be adjusted according to door frames with different widths, and the application range is wide.
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Description

Technical Field

[0001] This utility model relates to the technical field of rodent-proof panels below the doors of electrical control rooms in all factories and mines, specifically an industrial rodent-proof panel to prevent tripping. Background Technology

[0002] In industrial environments, rodent-proof barriers are widely used as an important protective facility at the entrances and exits of various buildings, especially in critical areas such as electrical control rooms, to prevent rodents and other pests from entering and potentially causing equipment malfunctions or safety accidents. The importance of rodent-proof barriers is self-evident; they play an irreplaceable role in maintaining the cleanliness and safety of industrial facilities and ensuring the normal operation of equipment.

[0003] However, traditional rodent-proof barriers have some significant design flaws that not only affect their effectiveness but also pose a threat to worker safety. First, because the door widths of industrial facilities such as electrical control rooms are often inconsistent, traditional rodent-proof barriers cannot be manufactured and installed uniformly. This not only increases manufacturing costs and installation difficulty but may also lead to gaps between the barrier and the door frame, reducing its rodent-proof effect. Second, traditional rodent-proof barriers are often crudely made and lack clear safety markings, making them difficult for people to notice when passing by, easily causing them to trip and fall, resulting in serious consequences such as falls or even fractures. In addition, traditional rodent-proof barriers are usually fixed to grooves in the door frame by welding or other methods, making the structure very sturdy and preventing them from falling over when tripped, thus preventing injury. Therefore, we propose an industrial anti-tripping rodent-proof barrier to solve the above problems. Utility Model Content

[0004] (a) Technical problems to be solved

[0005] To address the shortcomings of existing technologies, this utility model provides an industrial anti-tripping and anti-rodent board, which solves the problems mentioned in the background art.

[0006] (II) Technical Solution

[0007] To achieve the above objectives, this utility model specifically adopts the following technical solution:

[0008] An industrial anti-tripping and rodent-proof barrier includes a door frame. A first thin iron plate and a second thin iron plate are movably contacted on one side of the door frame. Safety signs are provided on both sides of the first and second thin iron plates. A first cavity is formed in both the first and second thin iron plates, and two magnets are fixedly connected within the first cavity. The magnets are magnetically connected to the door frame. A second cavity is formed in the first thin iron plate, and a fixing plate is welded to the rear interior of the second cavity. A lead screw is rotatably connected between one side of the fixing plate and one side inner wall of the second cavity. A connecting plate is threaded onto the lead screw. A slider is welded to one side of the connecting plate, and a locking rod is welded to the top of the slider. A groove with openings on both sides is formed on the rear side of the second thin iron plate. A sliding groove with an open bottom is formed on one side inner wall of the groove, and a locking slot is formed on the top inner wall of the sliding groove. The sliding groove is movably connected to the slider, and the locking slot engages with the locking rod.

[0009] Furthermore, a T-shaped rod is rotatably connected to the front side of the first thin iron plate, and the end of the T-shaped rod extends into the second cavity.

[0010] Furthermore, the end of the lead screw extends to the left side of the fixed plate and is fixedly connected to a first gear, and the end of the T-shaped rod is fixedly connected to a second gear, which meshes with the first gear.

[0011] Furthermore, two positioning rods are welded between one side of the fixing plate and one side of the inner wall of the second cavity, and the positioning rods are slidably connected to the connecting plate.

[0012] Furthermore, a rectangular hole is provided on the front inner wall of the second cavity, and the rectangular hole is slidably connected to the slider.

[0013] Furthermore, the side of the door frame is a raised square steel.

[0014] (III) Beneficial Effects

[0015] Compared with the prior art, this utility model provides an industrial anti-tripping and anti-rodent barrier, which has the following beneficial effects:

[0016] This invention addresses the issue of rodent infestation by replacing the welding method with a strong magnet when a worker trips over the first or second thin iron plate. This prevents the plate from falling before the worker does, ensuring safety. Furthermore, safety signs are placed on both sides of the first and second thin iron plates, adding to the safety and aesthetics. The design also allows for standardized manufacturing, saving costs, and the plates can be adjusted to accommodate different door frame widths, making it widely applicable. Attached Figure Description

[0017] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0018] Figure 2 This is a three-dimensional structural diagram of the first thin iron plate of this utility model;

[0019] Figure 3 This is a partial three-dimensional structural diagram of the second thin iron plate of this utility model;

[0020] Figure 4 This is a three-dimensional structural diagram of the connection between the lead screw, moving plate, positioning rod, and fixing plate of this utility model;

[0021] Figure 5 This is a three-dimensional structural diagram of the connection between the T-shaped rod, the first gear, and the second gear of this utility model.

[0022] In the diagram: 1. Door frame; 2. First thin iron plate; 3. Second thin iron plate; 4. Safety sign; 5. First cavity; 6. Magnet; 7. Second cavity; 8. Fixing plate; 9. Lead screw; 10. Connecting plate; 11. Slider; 12. Locking rod; 13. First gear; 14. T-shaped rod; 15. Second gear; 16. Groove; 17. Slide groove; 18. Locking groove; 19. Positioning rod; 20. Rectangular hole. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0024] Example

[0025] like Figure 1-5As shown in the figure, an industrial anti-tripping and anti-rodent barrier according to one embodiment of the present invention includes a door frame 1. A first thin iron plate 2 and a second thin iron plate 3 are movably contacted on one side of the door frame 1. Safety signs 4 are provided on both sides of the first thin iron plate 2 and the second thin iron plate 3. A first cavity 5 is provided on both the first thin iron plate 2 and the second thin iron plate 3. Two magnets 6 are fixedly connected inside the first cavity 5 and are magnetically connected to the door frame 1. A second cavity 7 is provided on the first thin iron plate 2. A fixing plate 8 is welded to the rear interior of the second cavity 7. A lead screw 9 is rotatably connected between one side of the fixing plate 8 and one side of the inner wall of the second cavity 7. A connecting plate 10 is threaded onto the lead screw 9. A slider 11 is welded to one side of the connecting plate 10, and a locking rod 12 is welded to the top of the slider 11. Safety signs 4 are provided on both sides of the rear of the second thin iron plate 3. The groove 16 has an opening, and a sliding groove 17 with an open bottom is formed on one inner wall of the groove 16. A locking groove 18 is formed on the top inner wall of the sliding groove 17. The sliding groove 17 is movably connected to the slider 11, and the locking groove 18 is engaged with the locking rod 12. If a worker trips on the first thin iron plate 2 or the second thin iron plate 3, the first thin iron plate 2 and the second thin iron plate 3 will fall down before the person falls, because the welding fixation has been changed to a strong magnet 6. Therefore, it can prevent rodents and is safe. In addition, safety signs 4 are set on both sides of the first thin iron plate 2 and the second thin iron plate 3, which is both safe and beautiful. Moreover, since this design adopts the method of overlapping the first thin iron plate 2 and the second thin iron plate 3 instead of a thick iron plate, it can be uniformly manufactured, which can save certain costs. At the same time, the first thin iron plate 2 and the second thin iron plate 3 can be adjusted according to the door frame 1 of different widths, which has a wide range of applications.

[0026] In some embodiments, a T-shaped rod 14 is rotatably connected to the front side of the first thin iron plate 2, and the end of the T-shaped rod 14 extends into the second cavity 7.

[0027] In some embodiments, the end of the lead screw 9 extends to the left side of the fixing plate 8 and is fixedly connected to the first gear 13, and the end of the T-shaped rod 14 is fixedly connected to the second gear 15. The second gear 15 meshes with the first gear 13, and the T-shaped rod 14 is provided to rotate.

[0028] In some embodiments, two positioning rods 19 are welded between one side of the fixing plate 8 and the inner wall of one side of the second cavity 7, and the positioning rods 19 are slidably connected to the connecting plate 10.

[0029] In some embodiments, a rectangular hole 20 is provided on the inner wall of the front side of the second cavity 7. The rectangular hole 20 is slidably connected to the slider 11. The rectangular hole 20 serves as a limiting device.

[0030] In some embodiments, the side of the door frame 1 is a raised square steel.

[0031] Working principle or structural principle: During use, the first thin iron plate 2, the second thin iron plate 3, and the door frame 1 are in a separate state. First, the second thin iron plate 3 is inserted into the slider 11 through the slide groove 17 and engaged with the locking rod 12 through the locking groove 18, thereby fixing the first thin iron plate 2 and the second thin iron plate 3. The rotatable T-shaped rod 14 drives the first gear 13 to rotate through the second gear 15. The first gear 13 drives the connecting plate 10 to slide on the positioning rod 19 through the lead screw 9. The connecting plate 10 drives the locking rod 12 to move through the slider 11. The locking rod 12 drives the second thin iron plate 3 to move, thus allowing adjustment according to different widths of the door frame 1. After adjustment, the door frame 1 is held in place by the magnet 6. The first thin iron plate 2 and the second thin iron plate 3 are fixed to the door frame 1. If a worker trips on the first thin iron plate 2 or the second thin iron plate 3, the fixing method has been changed from welding to strong magnet 6. Before the person falls, the first thin iron plate 2 and the second thin iron plate 3 will fall first, so it can prevent rodents and is safe. In addition, safety signs 4 are set on both sides of the first thin iron plate 2 and the second thin iron plate 3, which is both safe and aesthetically pleasing. Moreover, since this design adopts the method of overlapping the first thin iron plate 2 and the second thin iron plate 3 instead of a thick iron plate, it can be uniformly manufactured, which can save certain costs. At the same time, the first thin iron plate 2 and the second thin iron plate 3 can be adjusted according to the different widths of the door frame 1, making it widely applicable.

[0032] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. An industrial anti-tripping and rodent-proof barrier, comprising a door frame (1), characterized in that: One side of the door frame (1) is in contact with a first thin iron plate (2) and a second thin iron plate (3). The first thin iron plate (2) and the second thin iron plate (3) are in contact with each other. Safety signs (4) are provided on both sides of the first thin iron plate (2) and the second thin iron plate (3). A first cavity (5) is provided on both the first thin iron plate (2) and the second thin iron plate (3). Two magnets (6) are fixedly connected in the first cavity (5). The magnets (6) are magnetically connected to the door frame (1). A second cavity (7) is provided on the first thin iron plate (2). A fixing plate (8) is welded to the rear interior of the second cavity (7). A lead screw (9) is rotatably connected between one side of the first cavity (7) and the inner wall of the second cavity (7). A connecting plate (10) is threaded onto the lead screw (9). A slider (11) is welded to one side of the connecting plate (10). A locking rod (12) is welded to the top of the slider (11). A groove (16) with openings on both sides is opened on the rear side of the second thin iron plate (3). A sliding groove (17) with an open bottom is opened on one side of the inner wall of the groove (16). A locking groove (18) is opened on the top inner wall of the sliding groove (17). The sliding groove (17) is movably connected to the slider (11). The locking groove (18) is engaged with the locking rod (12).

2. The industrial anti-tripping and anti-rodent barrier according to claim 1, characterized in that: The front side of the first thin iron plate (2) is rotatably connected to a T-shaped rod (14), the end of which extends into the second cavity (7).

3. An industrial anti-tripping and rodent-proof board according to claim 2, characterized in that: The end of the lead screw (9) extends to the left side of the fixing plate (8) and is fixedly connected to the first gear (13). The end of the T-shaped rod (14) is fixedly connected to the second gear (15), and the second gear (15) meshes with the first gear (13).

4. An industrial anti-tripping and anti-rodent barrier according to claim 3, characterized in that: Two positioning rods (19) are welded between one side of the fixing plate (8) and the inner wall of one side of the second cavity (7), and the positioning rods (19) are slidably connected to the connecting plate (10).

5. An industrial anti-tripping and rodent-proof board according to claim 4, characterized in that: A rectangular hole (20) is provided on the inner wall of the front side of the second cavity (7), and the rectangular hole (20) is slidably connected to the slider (11).

6. An industrial anti-tripping and rodent-proof board according to claim 1, characterized in that: The side of the door frame (1) is a raised square steel.