A livestock breeding cage

CN224611543UActive Publication Date: 2026-08-11李树坡
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-19
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0005]本实用新型的目的在于提供一种畜牧动物养殖笼,以解决上述背景技术中提出的传统养殖笼的内部空间固定,无法根据养殖动物的数量、体型大小等实际情况灵活调整内部养殖区域,当养殖动物数量发生变化或动物生长导致体型改变时,要么空间浪费,要么空间拥挤,不利于动物的生长发育,现有养殖笼大多为独立结构,难以实现多个养殖笼之间的快速、稳定组装,当需要扩大养殖规模,增加养殖数量时,无法便捷地将多个养殖笼组合使用,组装效率低且组装后的整体稳定性差的问题

Benefits of technology

[0028]该畜牧动物养殖笼通过设置可在框架内部滑动调节位置的分隔护栏架以及能够对分隔护栏架锁定位置的固定件,能够根据养殖动物的数量、体型等实际情况,灵活调整分隔护栏架在框架内部的位置,从而改变两个养殖区间的大小,实现对养殖笼主体内部空间的合理利用,避免空间浪费或拥挤的问题,有利于动物的生长发育和管理;

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Abstract

The utility model discloses a kind of livestock animal breeding cages, belong to animal breeding technical field, including breeding cage main body, the breeding cage main body includes frame, two front and rear guardrail frames are respectively fixedly installed in the front and rear two side surfaces of frame, two left and right guardrail frames are respectively fixedly installed in the left and right two side surfaces of frame, bottom bearing net plate is fixedly installed in the lower surface of frame, is slidably arranged in the inside of frame with dividing guardrail frame, for dividing frame and presenting two breeding interval;By setting the dividing guardrail frame that can be adjusted position inside frame and the fixing that can lock the position of dividing guardrail frame, can be according to the number of breeding animals, size etc. Actual situation, the position of dividing guardrail frame in frame is flexibly adjusted, so as to change the size of two breeding interval, realize the reasonable utilization of the space inside breeding cage main body, avoid space waste or crowded problem, conducive to the growth and development and management of animal.
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Description

Technical Field

[0001] This utility model belongs to the field of animal breeding technology, specifically relating to a livestock breeding cage. Background Technology

[0002] In the process of raising livestock, cages are an indispensable piece of equipment, mainly used for the centralized feeding and management of livestock.

[0003] However, existing livestock cages have many shortcomings in practical use. On the one hand, the internal space of traditional cages is fixed, making it impossible to flexibly adjust the internal breeding area according to the number and size of the animals. When the number of animals changes or their size changes due to growth, either space is wasted or the space becomes crowded, which is not conducive to the growth and development of the animals. On the other hand, most existing cages are independent structures, making it difficult to quickly and stably assemble multiple cages. When it is necessary to expand the breeding scale and increase the number of animals, it is not convenient to combine multiple cages for use, resulting in low assembly efficiency and poor overall stability after assembly.

[0004] Therefore, we propose a livestock breeding cage. Utility Model Content

[0005] The purpose of this utility model is to provide a livestock breeding cage to solve the problems mentioned in the background art. The internal space of traditional breeding cages is fixed, and the internal breeding area cannot be flexibly adjusted according to the actual situation such as the number and size of the animals being raised. When the number of animals changes or the size of the animals changes due to growth, either space is wasted or the space is crowded, which is not conducive to the growth and development of the animals. Most existing breeding cages are independent structures, making it difficult to achieve rapid and stable assembly between multiple breeding cages. When it is necessary to expand the breeding scale and increase the number of animals being raised, it is not convenient to combine multiple breeding cages for use, resulting in low assembly efficiency and poor overall stability after assembly.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a livestock breeding cage, comprising a cage body, wherein the cage body includes a frame;

[0007] Two guardrail frames are fixedly installed on the front and rear sides of the frame, respectively;

[0008] Two guardrail frames are fixedly installed on the left and right sides of the frame, respectively;

[0009] The bottom support mesh plate is fixedly installed on the lower surface of the frame;

[0010] The dividing fence is slidably installed inside the frame to divide the frame into two breeding areas;

[0011] The front and rear sides of the partition guardrail are provided with fixing members, which are used to lock the position of the partition guardrail after sliding adjustment.

[0012] The fixing component includes several fixing seats fixedly installed on the side of the partition guardrail and rotating plates rotatably installed in the fixing seats. Two rotating plates at opposite positions cooperate with each other and are attached and fixed to the front and rear guardrails at corresponding positions to achieve position locking of the partition guardrail.

[0013] Top guardrail, installed at the top of the frame;

[0014] The top guardrail includes a fixed guardrail frame body fixedly installed on the inner wall of the frame and a movable guardrail gate rotatably installed at both ends of the fixed guardrail frame body. A card plate is fixedly installed on the movable guardrail gate, and a slot for the card plate to be inserted is opened on the surface of the frame.

[0015] Assembly units, set on the frame, are used to assemble adjacent frames.

[0016] By adopting the above scheme, and by setting up adjustable partition railings that can slide within the frame and fixing components that can lock the partition railings in place, the position of the partition railings within the frame can be flexibly adjusted according to the number and size of the animals being raised. This changes the size of the two breeding areas, achieving rational utilization of the internal space of the breeding cage, avoiding space waste or overcrowding, and is beneficial to animal growth, development, and management. Through the assembly unit, the coordination of the outer cylinder, inner rod, and pin allows for the quick and stable assembly of multiple breeding cages. When it is necessary to expand the breeding scale, the inner rod of one breeding cage is inserted into the outer cylinder of another breeding cage, and then locked using the pin, thus completing the assembly of the two breeding cages. The operation is simple and convenient, the assembly efficiency is high, and the overall stability after assembly is good, meeting the needs of different breeding scales.

[0017] In a preferred embodiment, the assembly unit includes several assembly outer cylinders, an assembly inner rod that can be inserted into the assembly outer cylinders, and an assembly pin that can lock the assembly outer cylinders and assembly inner rods in place after the assembly inner rods are inserted into the assembly outer cylinders.

[0018] By using the above solution, the inner assembly rod on one main body of the breeding cage is inserted into the outer assembly cylinder on another main assembly cylinder, and an assembly pin is inserted, thereby enabling convenient assembly between adjacent main bodies of the breeding cage. The assembly structure is simple, stable, and not prone to loosening.

[0019] In a preferred embodiment, the rotating plate has a through hole, and a fixing screw is inserted between two opposite through holes. A fixing nut is threaded onto the outer surface of the fixing screw.

[0020] By using the above solution, fixing screws are passed through the through holes on the two opposing rotating plates and then tightened with fixing nuts. This further enhances the fixing effect between the rotating plates and the front and rear guardrails, preventing the rotating plates from loosening due to external forces such as animal collisions during the breeding process. This ensures the stability of the locking position of the dividing guardrails, avoids the separation position from shifting, and ensures that the division of the two breeding areas remains stable. This is beneficial for the separate management of animals in different breeding areas.

[0021] In a preferred embodiment, a plurality of stop blocks are fixedly installed on the front and rear guardrails. The rotating plate is fitted with the stop block at the corresponding position on the same side. The rotating plate at the upper position is fitted with the lower surface of the stop block at the corresponding position, and the rotating plate at the lower position is fitted with the upper surface of the stop block at the corresponding position.

[0022] By adopting the above scheme, the setting of the stop block can limit the rotation plate, so that the rotation plate can be positioned more accurately when it is attached and fixed with the front and rear guardrail frames, avoiding positional deviation of the rotation plate during the fixing process. At the same time, the upper and lower rotation plates are attached to the lower and upper surfaces of the stop block respectively, forming a two-way limiting fixation, which further improves the fixing reliability of the rotation plate to the partition guardrail frame, prevents the partition guardrail frame from moving in the vertical direction, and ensures the stable installation of the partition guardrail frame inside the frame.

[0023] In a preferred embodiment, a plurality of clamping rods are fixedly installed on the surface of the first clamping plate, and a plurality of second clamping plates are rotatably installed on the surface of the frame. The second clamping plate has a latch, and the clamping rods are engaged with the inner wall of the latch.

[0024] Using the above solution, when the movable gate needs to be closed, rotate the gate to a position where it fits against the frame, so that the first locking plate engages with the slot on the frame surface. At this time, the locking rod on the first locking plate corresponds exactly to the locking slot on the second locking plate. Rotate the second locking plate to make the locking slot and the locking rod engage tightly, thereby achieving double fixation of the movable gate. This not only enhances the stability of the movable gate after it is closed, preventing animals from pushing the gate open when moving around in the cage, but also makes the operation simple and convenient. When the movable gate needs to be opened, simply rotate the second locking plate in the opposite direction to separate the locking slot from the locking rod, and the movable gate can be easily opened, improving the convenience and efficiency of breeding operations.

[0025] In a preferred embodiment, the mesh density on the dividing guardrail is greater than that on the front and rear guardrails and the left and right guardrails.

[0026] Using the above scheme, since the dividing fence is used to separate the two breeding areas, the denser mesh can effectively prevent animals in the two breeding areas from biting or attacking each other, reducing the risk of animal injury and ensuring the healthy growth of the animals. The front and rear fences and the left and right fences mainly serve the purpose of overall protection and ventilation. The relatively sparse mesh can improve the ventilation performance inside the cage while ensuring the protective effect, ensuring air circulation inside the cage, providing a good growth environment for the animals, and reducing the probability of disease caused by poor ventilation.

[0027] Compared with the prior art, the beneficial effects of this utility model are:

[0028] This livestock breeding cage, by setting up a partition fence that can slide and adjust its position inside the frame and a fixing component that can lock the position of the partition fence, can flexibly adjust the position of the partition fence inside the frame according to the actual situation such as the number and size of the animals being raised, thereby changing the size of the two breeding areas, realizing the rational use of the internal space of the main body of the breeding cage, avoiding the problems of space waste or overcrowding, and being conducive to the growth, development and management of animals.

[0029] This livestock breeding cage, through the assembly unit, the coordination of the outer cylinder, inner rod, and assembly pin, enables the rapid and stable assembly of multiple breeding cages. When it is necessary to expand the breeding scale, the inner rod of one breeding cage body is inserted into the outer cylinder of another breeding cage body, and then locked by the assembly pin, thus completing the assembly of the two breeding cage bodies. The operation is simple and convenient, the assembly efficiency is high, and the overall stability after assembly is good, meeting the needs of different breeding scales. Attached Figure Description

[0030] Figure 1 This is a schematic diagram of the structure of this utility model;

[0031] Figure 2 This is a schematic diagram of the structure of the movable guardrail gate of this utility model when it is open;

[0032] Figure 3 This is a schematic diagram of the structure of the present invention in an explosion.

[0033] Figure 4 This is a schematic diagram of the top guardrail frame of this utility model;

[0034] Figure 5 This is a schematic diagram of the front and rear guardrail frames of this utility model;

[0035] Figure 6This is a schematic diagram of the structure of the partition guardrail of this utility model;

[0036] Figure 7 This is a schematic diagram of the structure of the fastener of this utility model;

[0037] Figure 8 This is a schematic diagram of the structure of the assembled outer cylinder, assembled inner rod, and assembled pin of this utility model.

[0038] In the diagram: 1. Main body of the breeding cage; 2. Frame; 3. Front and rear guardrails; 4. Left and right guardrails; 5. Bottom support mesh plate; 6. Dividing guardrail; 7. Top guardrail; 8. Fixing parts; 9. Fixing base; 10. Rotating clamp; 11. Fixed guardrail frame; 12. Movable guardrail door; 13. Clamp one; 14. Assemble the outer cylinder; 15. Assemble the inner rod; 16. Assemble the pin; 17. Fixing screw; 18. Fixing nut; 19. Stop block; 20. Clamp two; 21. Clamp rod. Detailed Implementation

[0039] Please see Figure 1-8 This utility model provides a livestock breeding cage, including a breeding cage body 1, and the breeding cage body 1 includes a frame 2;

[0040] Two front and rear guardrail frames 3 are fixedly installed on the front and rear sides of the frame 2, respectively;

[0041] Two left and right guardrail frames 4 are fixedly installed on the left and right sides of the frame 2 respectively;

[0042] The bottom support mesh plate 5 is fixedly installed on the lower surface of the frame 2;

[0043] The dividing guardrail 6 is slidably installed inside the frame 2 to divide the frame 2 into two breeding areas;

[0044] Among them, the front and rear sides of the partition guardrail 6 are provided with fixing parts 8, which are used to lock the position of the partition guardrail 6 after sliding adjustment.

[0045] The fastener 8 includes several fixed seats 9 fixedly installed on the side of the partition fence 6 and rotating plates 10 rotatably installed in the fixed seats 9. Two rotating plates 10 at opposite positions cooperate and are fixedly fastened to the front and rear fences 3 at corresponding positions to lock the position of the partition fence 6. The rotating plates 10 have through holes, and a fixing screw 17 passes through the two opposite through holes. The outer surface of the fixing screw 17 is threaded with a fixing nut 18. By passing the fixing screw 17 through the through holes on the two opposite rotating plates 10 and tightening it with the fixing nut 18, the fixing effect between the rotating plates 10 and the front and rear fences 3 can be further enhanced. This prevents the rotating plates 10 from loosening due to external forces such as animal collisions during the breeding process, thereby ensuring the stability of the position locking of the partition fence 6, avoiding the displacement of the partition position, and ensuring that the division of the two breeding areas remains stable. This is conducive to the separate management of animals in different breeding areas.

[0046] Several stop blocks 19 are fixedly installed on the front and rear guardrail frames 3. The rotating plate 10 is attached to the stop block 19 at the corresponding position on the same side. The rotating plate 10 at the upper position is attached to the lower surface of the stop block 19 at the corresponding position, and the rotating plate 10 at the lower position is attached to the upper surface of the stop block 19 at the corresponding position. The setting of the stop blocks 19 can limit the rotating plate 10, so that the rotating plate 10 can be more accurately positioned when it is attached to the front and rear guardrail frames 3, avoiding positional deviation of the rotating plate 10 during the fixing process. At the same time, the upper and lower rotating plates 10 are attached to the lower and upper surfaces of the stop blocks 19 respectively, forming a two-way limiting fixation, which further improves the fixing reliability of the rotating plate 10 to the partition guardrail frame 6, prevents the partition guardrail frame 6 from moving in the vertical direction, and ensures the stable installation of the partition guardrail frame 6 inside the frame 2.

[0047] Top guardrail 7 is installed at the top of frame 2;

[0048] The top guardrail frame 7 includes a fixed guardrail frame 11 fixedly installed on the inner wall of the frame 2 and a movable guardrail gate 12 rotatably installed at both ends of the fixed guardrail frame 11. A card plate 13 is fixedly installed on the movable guardrail gate 12, and a slot for the card plate 13 to be inserted is opened on the surface of the frame 2.

[0049] Several locking rods 21 are fixedly installed on the surface of the first locking plate 13, and several second locking plates 20 are rotatably installed on the surface of the frame 2. The second locking plate 20 has a locking slot, and the locking rod 21 is locked in the inner wall of the locking slot. When it is necessary to close the movable guardrail door 12, the movable guardrail door 12 is rotated to a position that fits against the frame 2, so that the first locking plate 13 is locked into the slot on the surface of the frame 2. At this time, the locking rod 21 on the first locking plate 13 corresponds exactly to the locking slot on the second locking plate 20. Rotating the second locking plate 10 makes the locking slot and the locking rod 21 tightly locked, thereby achieving double fixation of the movable guardrail door 12. This not only enhances the stability of the movable guardrail door 12 after it is closed, preventing animals from pushing the movable guardrail door 12 open when moving in the cage, but also makes the operation simple and convenient. When it is necessary to open the movable guardrail door 12, simply rotate the second locking plate 10 in the opposite direction to separate the locking slot from the locking rod 21, and the movable guardrail door 12 can be easily opened, improving the convenience and efficiency of breeding operations.

[0050] An assembly unit, set on frame 2, is used to assemble adjacent frames 2. The assembly unit includes several assembly outer cylinders 14, assembly inner rods 15 that can be inserted into the assembly outer cylinders 14, and assembly pins 16 that lock the assembly outer cylinders 14 and assembly inner rods 15 in place after the assembly inner rods 15 are inserted into the assembly outer cylinders 14. By inserting the assembly inner rods 15 on one breeding cage body 1 into the assembly outer cylinders 14 on another assembly outer cylinder 14 and inserting the assembly pins 16, convenient assembly operations between adjacent breeding cage bodies 1 can be achieved. The assembly structure is simple, stable, and not prone to loosening.

[0051] The mesh density on the dividing fence 6 is greater than that on the front and rear fences 3 and the left and right fences 4. Since the dividing fence 6 is used to separate the two breeding areas, the denser mesh can effectively prevent animals in the two breeding areas from biting or attacking each other, reducing the risk of animal injury and ensuring the healthy growth of the animals. The front and rear fences 3 and the left and right fences 4 mainly serve the functions of overall protection and ventilation. The relatively sparse mesh can improve the ventilation performance in the cage while ensuring the protective effect, ensuring air circulation in the cage, providing a good growth environment for the animals, and reducing the probability of disease caused by poor ventilation.

[0052] When using

[0053] Adjusting the position of the dividing guardrail 6: Unscrew the fixing nut 18, pull out the fixing screw 17, and operate the rotating plate 10 to rotate away from the front and rear guardrails 3. At this time, the dividing guardrail 6 is unlocked. Hold the dividing guardrail 6 and slide it horizontally along the frame 2. After sliding to the appropriate position, operate the rotating plate 10 to rotate it to fit the front and rear guardrails 3. At this time, the rotating plate 10 fits with the corresponding stop block 19. The upper rotating plate 10 fits with the lower surface of the stop block 19, and the lower rotating plate 10 fits with the upper surface of the stop block 19. Insert the fixing screw 17 into the through hole on the rotating plate 10 and tighten the fixing nut 18 to lock the position of the dividing guardrail 6, thereby dividing the frame 2 into two appropriately sized breeding areas. The denser mesh of the dividing guardrail 6 can prevent animals in the two areas from hurting each other, while the relatively sparse mesh of the front and rear guardrails 3 and the left and right guardrails 4 ensures ventilation inside the cage.

[0054] Animal placement: Rotate the second card plate 10 to separate the latch on the second card plate 20 from the latch 21. At this time, the movable guardrail door 12 is unlocked. Rotate to open the movable guardrail door 12, put the animal in, and then rotate to close the movable guardrail door 12. Rotate the second card plate 10 to make the latch 21 engage with the latch, thus locking the movable guardrail door 12.

[0055] Assembly of the main body 1 of the breeding cage: Insert the inner rod 15 of one breeding cage main body 1 into the outer cylinder 14 of another breeding cage main body 1, and then insert the assembly pin 16 into the outer cylinder 14 and the inner rod 15 to achieve assembly and fixation. More breeding cage main bodies 1 can be assembled according to needs in the same way.

Claims

1. A livestock breeding cage, characterized in that: It includes a breeding cage body (1), wherein the breeding cage body (1) includes a frame (2); Two front and rear guardrail frames (3) are fixedly installed on the front and rear sides of the frame (2), respectively; Two left and right guardrail frames (4) are fixedly installed on the left and right sides of the frame (2), respectively; The bottom support mesh plate (5) is fixedly installed on the lower surface of the frame (2); A dividing guardrail (6) is slidably set inside the frame (2) to divide the frame (2) into two breeding areas; The front and rear sides of the partition guardrail (6) are provided with fixing parts (8), which are used to lock the position of the partition guardrail (6) after sliding adjustment. The fixing component (8) includes several fixing seats (9) fixedly installed on the side of the partition guardrail (6) and rotating plates (10) rotatably installed in the fixing seats (9). The two rotating plates (10) at the opposite positions cooperate with each other and are attached and fixed to the front and rear guardrails (3) at the corresponding positions to achieve the position locking of the partition guardrail (6). A top guardrail (7) is installed at the top of the frame (2); The top guardrail frame (7) includes a fixed guardrail frame body (11) fixedly installed on the inner wall of the frame (2) and a movable guardrail gate (12) rotatably installed at both ends of the fixed guardrail frame body (11). A card plate (13) is fixedly installed on the movable guardrail gate (12), and a slot for the card plate (13) to be inserted is opened on the surface of the frame (2). An assembly unit is set on the frame (2) to realize the assembly between adjacent frames (2).

2. The livestock breeding cage according to claim 1, characterized in that: The assembly unit includes several assembly outer cylinders (14), an assembly inner rod (15) that can be inserted into the assembly outer cylinder (14), and an assembly pin (16) that can lock the assembly outer cylinder (14) and the assembly inner rod (15) after the assembly inner rod (15) is inserted into the assembly outer cylinder (14).

3. The livestock breeding cage according to claim 1, characterized in that: The rotating plate (10) has a through hole, and a fixing screw (17) is inserted between two opposite through holes. A fixing nut (18) is threaded on the outer surface of the fixing screw (17).

4. The livestock breeding cage according to claim 1, characterized in that: Several stop blocks (19) are fixedly installed on the front and rear guardrail frames (3). The rotating plate (10) is attached to the stop block (19) at the corresponding position on the same side. The rotating plate (10) at the upper position is attached to the lower surface of the stop block (19) at the corresponding position, and the rotating plate (10) at the lower position is attached to the upper surface of the stop block (19) at the corresponding position.

5. The livestock breeding cage according to claim 1, characterized in that: Several clamping rods (21) are fixedly installed on the surface of the first clamping plate (13), and several second clamping plates (20) are rotatably installed on the surface of the frame (2). The second clamping plate (20) has a slot, and the clamping rods (21) are clamped on the inner wall of the slot.

6. The livestock breeding cage according to claim 1, characterized in that: The mesh density on the dividing guardrail (6) is greater than that on the front and rear guardrails (3) and the left and right guardrails (4).