Pet barrier device

By designing a pet fencing device with a sliding movable gate and snap-fit ​​connectors, the problem of multiple pets passing through simultaneously in existing technologies has been solved. This achieves effective restriction of a single pet and simplifies operation, thus improving the reliability and safety of the device.

CN224496308UActive Publication Date: 2026-07-14DONGGUAN JINWANG CHILDREN PROD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-27
Publication Date
2026-07-14

AI Technical Summary

Technical Problem

Existing pet fencing devices are difficult to restrict multiple pets individually, as multiple pets may pass through simultaneously when the gate is open.

Method used

Design a pet fence device that includes a partition fence and a movable gate. The movable gate and the snap-fit ​​mechanism work together to reliably close and open the entrance and exit. The snap-fit ​​components and biasing components ensure stable fixation. The sliding components and positioning baffles improve the reliability and safety of the device.

Benefits of technology

It effectively limits the number of pets entering and exiting, ensuring that only one pet can enter and exit at a time. It is easy to operate, improves the reliability and safety of pet fences, and meets the needs of families with multiple pets.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224496308U_ABST
    Figure CN224496308U_ABST
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Abstract

The utility model relates to pet product technical field, specifically disclose a pet guardrail device, include: the barrier guardrail, it is suitable for fixed installation in the position of waiting to install, and the barrier guardrail is reserved with import and export, movable door rail, sliding installation is in the barrier guardrail, movable door rail has the first state of sliding to the import and export completely sheltered, and the second state of sliding to the import and export completely open, and movable door rail is provided with first clamping piece, and the barrier guardrail is provided with second clamping piece, and when movable door rail is in the first state, first clamping piece is tightly fixed between second clamping piece. When needing to open import and export, sliding movable door rail to the second state, import and export are completely open, and pets can pass freely. By setting import and export in the part of pet guardrail, thereby reduce the area of import and export, and then limit the number of pets that import and export can pass, thereby being convenient for to the restriction of whether allowing a single pet to pass import and export.
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Description

Technical Field

[0001] This utility model relates to the field of pet supplies technology, specifically to a pet guardrail device. Background Technology

[0002] In daily life, more and more people are starting to keep pets. In order to limit the range of movement of pets in the home, they will install guardrails or set up frame-type guardrails in narrow spaces such as corridors or doorways to prevent pets from leaving fixed places.

[0003] Existing fencing devices typically take the form of gates, which consist of a movable gate and a gate frame. The gate frame is fixed to the doorway or passageway, while the movable gate is rotatably mounted on the gate frame. Pets are allowed to pass through the gate by opening the movable gate when needed. However, due to the relatively large area of ​​the movable gate, in multi-pet households, multiple pets may rush out simultaneously when the gate is opened, making it inconvenient to individually restrain each pet. Utility Model Content

[0004] In view of this, the present invention provides a pet fence device to solve the problem that existing pet fences are inconvenient for individually restricting multiple pets.

[0005] This utility model provides a pet guardrail device, including:

[0006] The partition railing is suitable for fixed installation at the installation location, and the partition railing has reserved entrances and exits;

[0007] The movable gate is slidably installed on the partition railing. The movable gate has a first state in which it slides to completely block the entrance and exit, and a second state in which it slides to completely open the entrance and exit. The movable gate is provided with a first locking member, and the partition railing is provided with a second locking member. When the movable gate is in the first state, the first locking member and the second locking member are locked together.

[0008] When using a pet fence, first, fix the fence to the desired location, such as a door frame, corridor, or the boundary of a pet's activity area. The entrance / exit on the fence serves as the passageway for pets. The sliding gate is installed on the fence. To close the entrance / exit, slide the gate to its first position. At this point, the first latch on the gate engages with the second latch on the fence, ensuring the entrance / exit is completely blocked and preventing accidental entry / exit. To open the entrance / exit, slide the gate to its second position, allowing pets to pass freely. By placing the entrance / exit on a portion of the pet fence, the area of ​​the entrance / exit is reduced, thus limiting the number of pets that can pass through, making it easier to restrict the passage of a single pet. The sliding gate allows for quick opening and closing at the entrance / exit without complicated operation. Furthermore, the pet fence device, through the interlocking of the first and second locking components, ensures that the movable gate can be stably fixed when blocking the entrance and exit, guaranteeing that the movable gate will not easily loosen or shift during the pet's movement.

[0009] In one optional embodiment, one of the first and second latching components is a latching assembly, and the other is a mating slot. The latching assembly includes a latching body and a biasing member. The latching body is rotatably mounted on the movable gate or partition railing, and the biasing member is installed between the latching body and the movable gate or partition railing. The biasing member is adapted to apply a biasing force to the latching body to lock it into the mating slot. Under the biasing force of the biasing member, the latching body remains locked in the mating slot. When it is necessary to unlock, the biasing force of the biasing member is manually overcome to drive the latching body to rotate and disengage from the mating slot. When locking again, the latching body automatically resets to the locked state under the action of the biasing member. The switching from locking to unlocking can be completed with a single pressing operation, which can improve operational efficiency.

[0010] In one alternative embodiment, the biasing element is either an elastic reset element or a push rod assembly. The elastic reset element stores energy through its own deformation to drive the latch body to reset and lock, resulting in a simple structure. The push rod assembly actively applies or removes thrust to achieve active locking of the latch body, ensuring continuous and stable engagement between the latch body and the mating slot, offering higher stability and control.

[0011] In one optional embodiment, a first sliding member is installed on the partition railing, and a second sliding member is installed on the movable gate. The first and second sliding members slide in a sliding fit along the axial direction. A limiting step is provided at the end of the first sliding member, and a limiting plug is installed at the end of the second sliding member. A limiting groove is provided at the end of the limiting plug facing the second sliding member, and the limiting step is adapted to engage with the limiting groove for limiting. When the second sliding member slides to the end of the first sliding member, the limiting step of the first sliding member engages with the groove of the limiting plug of the second sliding member to form a mechanical limit, preventing the first sliding member from dislodging from the second sliding member, preventing the movable gate from sliding excessively and causing it to fall off, ensuring that the movable gate slides stably within the sliding range of the partition railing, and enhancing the reliability and safety of the pet guardrail device.

[0012] In one optional embodiment, the second sliding member is a sliding sleeve, and the first sliding member is slidably installed in the cavity of the second sliding member. The first sliding member moves axially in the cavity of the sliding sleeve of the second sliding member to form a nested slide rail structure. The maximum sliding stroke is controlled by the length of the sliding sleeve, and a limiting plug is fixed to the port of the sliding sleeve to prevent the first sliding member from coming out of the cavity of the second sliding member.

[0013] In one optional embodiment, the movable gate is slidably mounted on the partition railing in a vertical direction. Positioning baffles are fixedly installed on the movable gate and / or the partition railing. The lower side of the positioning baffle on the movable gate is adapted to abut and limit the movement of the partition railing, and the upper side of the positioning baffle on the partition railing is adapted to abut and limit the movement of the partition railing. When the movable gate slides to the second state where the entrance / exit is open, the lower side of the positioning baffle on the movable gate abuts against the top of the partition railing to prevent the movable gate from sliding downwards under gravity, and / or the upper side of the positioning baffle on the partition railing prevents the movable gate from moving further downwards.

[0014] In one alternative embodiment, the guardrail includes an upper guardrail and a lower guardrail, which slide together, with the entrance / exit located on the lower guardrail. By configuring the pet guardrail device as a retractable and foldable structure with sliding upper and lower guardrails, the height of the pet guardrail device during transportation and handling can be greatly reduced, facilitating transport.

[0015] In one alternative embodiment, the upper guardrail includes an upper crossbeam, with adjusting nuts fixedly installed at both ends of the upper crossbeam, and mounting screws threaded onto the adjusting nuts;

[0016] And / or, the lower guardrail includes a bottom crossbeam, with adjusting nuts fixedly installed at both ends of the bottom crossbeam. Installing screws are threaded onto the adjusting nuts. When installing the pet guardrail, after placing the pet guardrail in the installation position, the distance the installing screws extend outward from the adjusting nuts is adjusted by rotating the screws. The installing screws are then pressed against both sides of the installation position, thereby securing the upper guardrail and / or the lower guardrail.

[0017] In one alternative embodiment, a contact plate is fixedly mounted on the side of the mounting screw facing away from the adjusting nut. When the mounting screw is rotated to adjust its extension length, the contact plate can make tight contact with the mounting surface or other related components. The contact plate increases the contact area, thereby improving installation stability and reducing potential damage caused by excessive local pressure.

[0018] In one optional embodiment, a folding slider is installed on the upper guardrail, and a mating slider is installed on the lower guardrail. The folding slider and the mating slider slide axially together, and the folding slider and the mating slider at both ends are sleeved onto the mounting screw. When it is necessary to adjust the height of the pet guardrail device or to store it, the folding slider and the mating slider can slide along the mounting screw to achieve folding, thereby greatly saving space and facilitating the handling and storage of the pet guardrail device. Attached Figure Description

[0019] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0020] Figure 1 This is a schematic diagram of the pet guardrail device provided in an embodiment of the present invention.

[0021] Figure 2 This is a schematic diagram of the structure of the pet fence device provided in the embodiment of the present invention when the movable gate is in the second state.

[0022] Figure 3 This is a schematic diagram of the buckle assembly provided in an embodiment of the present utility model.

[0023] Figure 4 This is a schematic diagram of the structure in which the first sliding member and the second sliding member are connected in accordance with an embodiment of the present utility model.

[0024] Figure 5 A schematic diagram of the structure in which the positioning baffle cooperates with the gate body to limit the movement of the present utility model embodiment.

[0025] Figure 6 This is a schematic diagram of the pet guardrail device provided in the embodiment of the present invention in a folded state.

[0026] Explanation of reference numerals in the attached drawings: 1. Barrier guardrail; 101. Entrance / exit; 102. First sliding component; 103. Limiting step; 104. Upper crossbeam; 105. Folding sliding component; 106. Bottom crossbeam; 107. Guardrail body; 108. Matching slot; 2. Movable gate; 201. Buckle assembly; 2011. Buckle body; 2012. Biasing component; 202. Second sliding component; 203. Limiting plug; 204. Gate body; 3. Positioning baffle; 4. Adjusting nut; 5. Mounting screw; 6. Abutment plate; Detailed Implementation

[0027] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0028] The following is combined Figures 1 to 6 The following describes embodiments of the present invention.

[0029] According to an embodiment of this utility model, a pet fence device is provided, including a partition fence 1 and a movable gate 2. The partition fence 1 is suitable for fixed installation at a door frame, corridor, or boundary of a pet activity area, with an entrance / exit 101 pre-reserved on the partition fence 1 as a passage for pets to enter and exit. The movable gate 2 is slidably installed on the partition fence 1. The movable gate 2 is provided with a first locking member, and the partition fence 1 is provided with a second locking member. The movable gate 2 has a first state in which it slides to completely block the entrance / exit 101, at which time the first locking member on the movable gate 2 and the second locking member on the partition fence 1 are tightly engaged to ensure that the entrance / exit 101 is securely closed. The movable gate 2 also has a second state in which it slides to completely open the entrance / exit 101, at which time pets can pass freely.

[0030] In practical applications, the barrier 1 is first fixed in a suitable installation position. When it is necessary to restrict pet access, the movable gate 2 is slid to the first state, allowing the first and second locking components to engage tightly, reliably closing the entrance / exit 101 and effectively preventing pets from accidentally entering or exiting. When it is necessary to allow pets to enter and exit freely, simply slide the movable gate 2 to the second state. By designing the entrance / exit 101 as a partial part of the pet fence, not only can the area of ​​the entrance / exit 101 be reduced, but the number of pets that can pass through can also be limited, facilitating the control of a single pet's entry and exit. The sliding installation method of the movable gate 2 allows it to be quickly opened and closed at the entrance / exit 101, making operation simple and eliminating the need for complicated procedures. At the same time, the engaging engagement of the first and second locking components ensures that the movable gate 2 is stably fixed in the closed state, preventing it from loosening or shifting due to collisions or scratches during pet activity, thereby improving the reliability and safety of the pet fence device.

[0031] In one embodiment, one of the first and second latching components is a latching assembly 201, and the other is a mating slot 108. The latching assembly 201 includes a latching body 2011 and a biasing member 2012. The latching body 2011 is rotatably mounted on the frame of the movable gate 2 or the frame of the partition railing 1 via a pivot. The biasing member 2012 is disposed between the latching body 2011 and the mounting base. The biasing member 2012 continuously applies a biasing force towards the mating slot 108 to the latching body 2011, thereby achieving stable fixation of the movable gate 2 in the closed state. When it is necessary to unlock, the operator can manually overcome the biasing force of the biasing member 2012 and drive the latching body 2011 to rotate, causing the latching body 2011 to disengage from the mating slot 108. When it is necessary to relock, the latching body 2011 automatically resets to the locked state under the action of the biasing member 2012. Switching between locking and unlocking can be completed with a single press, which improves operational efficiency.

[0032] In some other embodiments, the latching assembly 201 can be designed as an electromagnetically driven latch, which controls the latching and releasing of the latching body 2011 through electromagnetic force, thereby realizing remote control function and further improving the flexibility of use.

[0033] In this embodiment, the buckle body 2011 is rotatably mounted on the lower side of the movable gate 2, and the mating slot 108 is provided on the bottom horizontal bar of the partition railing 1. The buckle body 2011 has a plate-like structure, and a snap-fit ​​block for engaging with the mating slot 108 is provided on its inner lower side. In some other embodiments, the buckle body 2011 can be mounted on the partition railing 1, and the mating slot 108 is correspondingly provided on the frame of the movable gate 2.

[0034] In one embodiment, the biasing element 2012 can be an elastic reset element such as a spring or torsion spring. The elastic reset element stores energy through its own elastic deformation, thereby driving the latch body 2011 to reset and lock. This structure is simple and inexpensive. The biasing element 2012 can also be a push rod assembly such as an electric push rod or a hydraulic push rod. The push rod assembly can actively lock the latch body 2011 by actively applying or removing the pushing force, ensuring the continuous and stable engagement of the latch body 2011 with the mating slot 108, providing higher stability and control precision. In this embodiment, the biasing element 2012 is a torsion spring, with one end abutting against the latch body 2011 and the other end abutting against the mounting plate on the movable door frame 2.

[0035] In one embodiment, a first sliding member 102 is installed on the partition railing 1, and a second sliding member 202 is installed on the movable gate 2. The first sliding member 102 and the second sliding member 202 slide axially to form a stable sliding guide structure. A limiting step 103 is provided at the end of the first sliding member 102, and a limiting plug 203 is fitted at the end of the second sliding member 202. The end of the limiting plug 203 facing the second sliding member 202 has a limiting groove that mates with the limiting step 103. When the second sliding member 202 slides to the end of the first sliding member 102, the limiting step 103 of the first sliding member 102 will embed into the groove of the limiting plug 203 of the second sliding member 202, forming a mechanical limit. This prevents the first sliding member 102 from detaching from the second sliding member 202, thereby avoiding excessive sliding of the movable gate 2 during the sliding process and ensuring that the movable gate 2 slides stably within the sliding range of the partition railing 1, enhancing the reliability and safety of the pet guardrail device.

[0036] In this embodiment, the first sliding member 102 is a thinner sliding tube, and the second sliding member 202 is a thicker sliding sleeve. The first sliding member 102 is slidably installed in the cavity of the second sliding member 202. The first sliding member 102 moves axially within the cavity of the sliding sleeve of the second sliding member 202, forming a nested slide rail structure. The maximum sliding stroke is controlled by the length of the sliding sleeve. The limiting plug 203 is fixed to the end of the sliding sleeve to prevent the first sliding member 102 from dislodging from the cavity of the second sliding member 202.

[0037] It should be noted that, in order to ensure that the movable gate 2 can slide smoothly on the partition railing 1, the gate body 204 of the movable gate 2 and the railing body 107 of the partition railing 1 are located in two front and rear planes. The two ends of the horizontal bar at the top of the gate body 204 are wound into connecting loops and slidably sleeved on the first sliding member 102. The horizontal bar at the bottom of the gate body 204 is fixedly connected to the second sliding member 202. The horizontal bar at the top of the railing body 107 is fixedly connected to the first sliding member 102, and the two ends of the horizontal bar at the bottom of the railing body 107 are wound into connecting loops and slidably sleeved on the second sliding member 202.

[0038] In one embodiment, the movable gate 2 is slidably mounted on the partition railing 1 in a vertical direction, and positioning baffles 3 are fixedly installed on both the movable gate 2 and the partition railing 1. Specifically, the lower side of the positioning baffle 3 mounted on the movable gate 2 is adapted to abut and limit the top of the partition railing 1, while the upper side of the positioning baffle 3 mounted on the partition railing 1 is adapted to abut and limit the movable gate 2. When the movable gate 2 slides to the second state where the inlet / outlet 101 is open, the lower side of the positioning baffle 3 of the movable gate 2 abuts against the top of the partition railing 1, effectively preventing the movable gate 2 from sliding downward under gravity. At the same time, the upper side of the positioning baffle 3 of the partition railing 1 prevents the movable gate 2 from moving further downward, ensuring the stable position of the movable gate 2 in the open state. This prevents the movable gate 2 from shifting due to accidental collisions or pushing by pets, improving the safety of the pet guardrail device. In some other embodiments, the movable gate 2 can be slidably mounted on the partition railing 1 in a horizontal direction.

[0039] In one embodiment, the guardrail 1 includes an upper guardrail and a lower guardrail, which slide together. An inlet / outlet 101 is located on the lower guardrail. This significantly reduces the height of the pet guardrail during transportation and handling, facilitating storage and relocation. When needed, the upper and lower guardrails are simply unfolded and secured.

[0040] In one embodiment, an upper crossbeam 104 is installed on the upper side of the upper guardrail. Adjusting nuts 4 are fixedly installed at both ends of the upper crossbeam 104. Installing screws 5 are threaded onto the adjusting nuts 4. One end of the installing screw 5 passes through the adjusting nut 4 and extends into the inner cavity of the upper crossbeam 104, while the other end is fixedly installed with an abutment plate 6. A bottom crossbeam 106 is installed on the lower side of the lower guardrail. Another pair of adjusting nuts 4 are fixedly installed at both ends of the bottom crossbeam 106. Installing screws 5 are also threaded onto these adjusting nuts 4. One end of the installing screw 5 on the bottom crossbeam 106 passes through the adjusting nut 4 and extends into the inner cavity of the bottom crossbeam 106, while the other end is also fixedly installed with an abutment plate 6.

[0041] When installing a pet fence, after placing the pet fence in the installation position, the distance the mounting screw 5 extends outward from the adjusting nut 4 is adjusted by rotating the mounting screw 5. The mounting screw 5 is then abutted against both sides of the installation position, thus securing the upper and / or lower fence in place. After adjusting the extension length of the mounting screw 5, the abutment plate 6 can make close contact with the mounting surface or other related components. The abutment plate 6 increases the contact area, thereby improving installation stability and reducing potential damage caused by excessive local pressure.

[0042] In this embodiment, the sliding fit structure between the upper guardrail and the lower guardrail is the same as the sliding fit structure between the movable gate 2 and the partition guardrail 1. A folding slider 105 is installed on the upper guardrail, and a mating slider is installed on the lower guardrail. The folding slider 105 and the mating slider slide axially. Circular holes are cut into the folding slider 105 and the mating slider at both ends to fit them onto the mounting screw 5. The sliding fit structure between the folding slider 105 and the mating slider is the same as the sliding fit structure between the movable gate 2 and the partition guardrail 1, and will not be described again here. When the height of the pet guardrail device needs to be adjusted or it needs to be stored, the folding slider 105 and the mating slider can slide along the mounting screw 5 to achieve folding, thereby greatly saving space and facilitating the transportation and storage of the pet guardrail device.

[0043] Although embodiments of the present invention have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations all fall within the scope defined by the appended claims.

Claims

1. A pet fencing device, characterized in that, include: A partition guardrail (1) is suitable for fixed installation at the installation location, and the partition guardrail (1) has an entrance / exit (101) reserved on it; The movable gate (2) is slidably installed on the partition railing (1). The movable gate (2) has a first state in which it slides to completely block the entrance (101) and a second state in which it slides to completely open the entrance (101). The movable gate (2) is provided with a first locking member and the partition railing (1) is provided with a second locking member. When the movable gate (2) is in the first state, the first locking member and the second locking member are locked together.

2. The pet fence device according to claim 1, characterized in that, One of the first and second snap-fit ​​components is a snap-fit ​​assembly (201), and the other of the first and second snap-fit ​​components is a mating slot (108). The snap-fit ​​assembly (201) includes a snap-fit ​​body (2011) and a biasing member (2012). The snap-fit ​​body (2011) is rotatably mounted on the movable gate (2) or the partition railing (1). The biasing member (2012) is installed between the snap-fit ​​body (2011) and the movable gate (2) or the partition railing (1). The biasing member (2012) is adapted to apply a biasing force to the snap-fit ​​body (2011) to make the snap-fit ​​body (2011) and the mating slot (108) lock and fix it.

3. The pet fence device according to claim 2, characterized in that, The biasing component (2012) is an elastic reset component or a push rod assembly.

4. The pet enclosure device according to any one of claims 1 to 3, characterized in that, A first sliding member (102) is installed on the partition guardrail (1), and a second sliding member (202) is installed on the movable gate (2). The first sliding member (102) and the second sliding member (202) slide together axially. A limiting step (103) is provided at the end of the first sliding member (102), and a limiting plug (203) is installed at the end of the second sliding member (202). A limiting groove is provided at one end of the limiting plug (203) facing the second sliding member (202), and the limiting step (103) is adapted to engage with the limiting groove for limiting.

5. The pet fence device according to claim 4, characterized in that, The second sliding member (202) is a sliding sleeve, and the first sliding member (102) is slidably installed in the cavity of the second sliding member (202).

6. The pet fencing device according to any one of claims 1 to 3, characterized in that, The movable gate (2) is slidably installed on the partition railing (1) in the vertical direction. A positioning baffle (3) is fixedly installed on the movable gate (2) and / or the partition railing (1). The lower side of the positioning baffle (3) installed on the movable gate (2) is adapted to abut against the partition railing (1) for limiting the position. The upper side of the positioning baffle (3) installed on the partition railing (1) is adapted to abut against the partition railing (1) for limiting the position.

7. The pet fencing device according to any one of claims 1 to 3, characterized in that, The partition guardrail (1) includes an upper guardrail and a lower guardrail, the upper guardrail and the lower guardrail are slidably connected, and the inlet / outlet (101) is provided on the lower guardrail.

8. The pet fence device according to claim 7, characterized in that, The upper guardrail includes an upper crossbeam (104), and adjusting nuts (4) are fixedly installed at both ends of the upper crossbeam (104). An installation screw (5) is threaded onto the adjusting nut (4). And / or, the lower guardrail includes a bottom crossbeam (106), with adjusting nuts (4) fixedly installed at both ends of the bottom crossbeam (106), and mounting screws (5) threaded onto the adjusting nuts (4).

9. The pet fence device according to claim 8, characterized in that, The mounting screw (5) has an abutment plate (6) fixedly mounted on the side facing away from the adjusting nut (4).

10. The pet fencing device according to claim 8 or 9, characterized in that, A folding sliding member (105) is installed on the upper guardrail, and a matching sliding member is installed on the lower guardrail. The folding sliding member (105) and the matching sliding member slide together axially. The folding sliding member (105) and the matching sliding member at both ends are sleeved on the mounting screw (5).