Assembled rearing cage
Through the design of the assembled feeding cage, the detachable and connected splicing unit and door body structure are used to solve the problem of fixed capacity and inconvenient feeding capacity in the existing feeding cage, and the effect of flexible capacity adjustment and improved feeding convenience is achieved.
Patent Information
- Application Number
- CN202422173361.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-05
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-09-05
AI Technical Summary
The existing feeding cage size is fixed, which cannot meet the needs of increasing animal population. The single gate design can easily cause animals to run out during feeding, increasing the cost of feeding and difficulty of feeding.
An assembled feeding cage is designed, which is assembled into the required accommodation space through multiple splicing units that can be detachably connected. The door body structure can be independently disassembled and locked by a door lock, providing a convenient way of opening and closing.
The capacity of feeding cages is dynamically adjusted according to the number of animals, which reduces the need to purchase additional new cages, reduces the cost of feeding, and improves the convenience and safety of feeding through a two-door design.
Smart Images

Figure CN222967659U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of breeding cage processing and production, and particularly relates to an assembled breeding cage. Background Art
[0002] In order to isolate the bred animals from the external animals and at the same time enable them to contact the natural environment, breeding cages are used to enclose the animals.
[0003] However, the size specifications of the existing breeding cages are fixed. If the number of animals increases and the original breeding cages cannot accommodate them, new breeding cages need to be purchased again, increasing the breeding cost. Moreover, the existing breeding cages have only one large door. During the process of opening the door to feed, the animals in the breeding cages are likely to run out of the breeding cages. During the feeding process, it is necessary to place food while avoiding the animals running out of the breeding cages, which is time-consuming and laborious. Content of the Utility Model
[0004] In order to solve the above technical problems, an assembled breeding cage is provided.
[0005] To achieve the above purpose, the technical solution adopted by the utility model is: an assembled breeding cage, which includes,
[0006] A breeding cage body; including a plurality of splicing units that are detachably connected; the splicing unit includes a first support rod and a second support rod arranged in parallel, a mesh is connected between the first support rod and the second support rod; a first connection part is arranged on the surface of the first support rod away from the mesh;
[0007] A second connection part is arranged on the surface of the second support rod away from the mesh; when two adjacent splicing units are spliced, the first connection part of one splicing unit is coupled and connected with the second connection part of another splicing unit;
[0008] A door structure, which is detachably connected to the splicing unit to form a closed space.
[0009] According to the utility model, further, the door structure includes a door frame structure, and a first connection part and a second connection part are respectively arranged on the left and right sides for connecting with the second connection part or the first connection part of the adjacent splicing unit.
[0010] According to the utility model, further, the door frame structure is coupled with a first door body, the first door body swings relative to the door frame structure to realize the opening and closing of the first door body, and the first door body and the door frame structure are locked by a door lock.
[0011] According to the present utility model, further, the first door body includes a second door body installation space located above and a first door fence located below; the door lock is installed on the first door fence, and an inner side wall of the door frame structure corresponding to the position of the door lock is provided with a lock port for the door lock to lock. The lock tongue of the door lock extends and retracts, engages with or disengages from the lock port, to achieve the clamping or disconnection of the first door body and the door frame structure; the second door body installation space is coupled to a second door body, and the second door body swings relative to the second door body installation space to achieve the opening and closing of the second door body. The second door body and the frame of the second door body installation space are locked by a door lock; the door lock is installed on the second door body, and a lock port corresponding to the door lock is opened at a corresponding position of the frame of the second door body installation space. The lock tongue of the door lock extends and retracts, engages with or disengages from the lock port, to achieve the opening and closing of the second door body.
[0012] According to the present utility model, further, the first connecting portion and the second connecting portion have the same structure, and both have a connecting plate and a splicing plate perpendicularly provided at one end of the connecting plate. Positioning holes are formed on the surface of the splicing plate.
[0013] During splicing, the positioning holes of the first connecting portion of one of the two splicing units coincide with those of the second connecting portion of the other splicing unit, and the two are fixed by passing fixing members through the positioning holes.
[0014] According to the present utility model, further, the height difference between the first connecting portion and the second connecting portion is the thickness of one splicing plate.
[0015] According to the present utility model, further, the door lock includes a lock shell and a lock tongue provided in the lock shell. A knob is provided on the surface of the lock shell, and rotating the knob drives the lock tongue to extend and retract; the surface of the lock shell for installing the knob has a peripheral wall forming an accommodation space, the knob is located in the accommodation space, and a pull ring is rotatably connected to the knob.
[0016] When the door does not need to be opened, the pull ring is located in the accommodation space; when the pull ring is needed to open the door, the pull ring rotates relative to the knob, and the pull ring is pulled by hand to open the first door body or the second door body.
[0017] According to the present utility model, further, a strengthening connecting portion is further included, which is connected between two adjacent splicing units.
[0018] According to the present utility model, further, a shielding shed is further included. The surface area of the shielding shed facing the breeding cage body is greater than or equal to the surface area above the breeding cage body, to shield the open top of the breeding cage body.
[0019] Compared with the prior art, the beneficial effects of the present utility model are as follows: According to the number of animals to be raised, an appropriate number of splicing units are selected to be spliced into the required accommodation space, and then the door body structure is spliced to jointly form the breeding cage body. The splicing units can be purchased separately and spliced with the original splicing units to increase the capacity of the accommodation space, without the need to purchase a new large-volume breeding cage additionally, reducing the breeding cost.
[0020] A second door body is provided on the first door body. The first door body or the second door body can be selected to be opened according to needs, providing convenience for walking and feeding the animals.
[0021] A pull ring is connected to the knob of the door lock, avoiding contact at the fence when opening the door, which is more hygienic for the breeder and reduces the occurrence of disease problems caused by the breeder accidentally touching excrement or saliva. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 is a schematic structural view of the assembled breeding cage of the present utility model from the first perspective;
[0023] Figure 2 is a schematic structural view of the assembled breeding cage of the present utility model from the second perspective;
[0024] Figure 3 is Figure 1 a partial enlarged view of part A of
[0025] Figure 4 is Figure 2 a partial enlarged view of part B of
[0026] Figure 5 is a structural view of the door lock of the present utility model.
[0027] Reference numerals: 100 - breeding cage body, 110 - splicing unit, 111 - first support rod, 112 - second support rod, 114 - first connection part, 115 - second connection part, 116 - connecting plate, 117 - splicing plate, 1171 - positioning hole, 200 - door body structure, 210 - door frame structure, 220 - first door body, 221 - second door body installation space, 222 - first door fence, 230 - second door body, 300 - mesh, 400 - door lock, 410 - lock case, 411 - peripheral wall, 420 - lock tongue, 430 - knob, 440 - pull ring, 500 - strengthening connection part, 510 - strengthening plate, 511 - slotted opening, 512 - adjusting section, 520 - tightening member, 600 - shielding shed. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0028] The following description is used to disclose the present utility model so that those skilled in the art can implement the present utility model. The preferred embodiments described below are only examples, and those skilled in the art can think of other obvious variations.
[0029] An embodiment of the present application discloses an assembled breeding cage for confining animals and isolating the bred animals from the outside animals. Please refer to Figures 1 to 4 , which is the breeding cage body 100, composed of a plurality of splicing units 110 and a door structure 200 detachably connected. According to the number of animals to be bred, an appropriate number of splicing units 110 are selected, spliced into the required accommodation space, and then the door structure 200 is spliced to jointly form the breeding cage body 100. If the number of animals increases, splicing units 110 can be purchased additionally and spliced with the original splicing units 110 to increase the capacity of the accommodation space, without the need to purchase a new large-volume breeding cage additionally, reducing the breeding cost.
[0030] Each splicing unit 110 includes a first support rod 111 and a second support rod 112 arranged in parallel, and a mesh 300 is connected between the two support rods, which plays a role in preventing animals from running out of the breeding cage. Preferably, the first support rod 111 and the second support rod 112 can be circular iron pipes, which can be hollow or solid, preferably hollow, to reduce costs, reduce the transportation weight at the same time, and also reduce the transportation cost; the best is a square hollow iron pipe, and the square cross-section has a larger contact area with the horizontal plane, improving stability. If inserted into the ground, the square iron pipe has edges, and there is friction with the ground socket, so the stability is better, which is conducive to the splicing of adjacent splicing units 110. The mesh 300 is constructed into a wire mesh by obliquely cross-shaped wires. The cross-shaped form enables mutual support between the wires, improving the stability of the mesh, preventing animals from hitting the mesh, causing the mesh to deform or be damaged, and animals running out of the cage resulting in losses. Correspondingly, the wire material is not easily deformed, better resisting animal impacts, further optimizing the stability of the mesh and extending the service life of the mesh. Preferably, in order to strengthen the stability of the splicing unit 110, the splicing unit 110 further includes a top rod (not marked in the figure) and a bottom rod (not marked in the figure), which together with the first support rod 111 and the second support rod 112 form a frame with a square space, and the mesh 300 fills the square space of the frame.
[0031] On the opposite surfaces of the first support rod 111 and the second support rod 112, a first connection portion 114 and a second connection portion 115 are respectively provided; there is a height difference between the first connection portion 114 and the second connection portion 115; the first connection portion 114 and the second connection portion 115 have the same structure, and both have a connection plate 116 fixedly connected to the corresponding support rod and a splicing plate 117 vertically arranged at one end of the connection plate. A positioning hole 1171 is formed on the surface of the splicing plate. During splicing, the positioning holes 1171 of the two connection portions coincide, and the fixing member passes through the positioning holes 1171 to fix the first connection portion 114 and the second connection portion 115 at the corresponding positions of the two splicing units 110. The height difference between the first connection portion 114 and the second connection portion 115 is the thickness of one splicing plate 117, so that the positioning holes 1171 of the two connection portions coincide smoothly. That is, when the corresponding splicing plates 117 of the two connection portions overlap up and down, there is no need to move the corresponding splicing units up and down, avoiding the problem that the bottom surfaces of adjacent splicing units are not in the same plane, resulting in instability of the overall structure of the breeding cage.
[0032] When two adjacent splicing units 110 are spliced in a plane, the mesh sheets 300 of the two splicing units 110 are in the same plane. The first connection portion 114 of one splicing unit 110 is connected to the second connection portion 115 of the other splicing unit 110. The corresponding splicing plates 117 of the two connection portions overlap up and down, and the axes of the positioning holes 1171 corresponding to the two splicing plates 117 coincide. The fixing member passes through the two positioning holes 1171 to fix the two connection portions, and complete the splicing of the two splicing units 110; wherein, the fixing member can be a bolt or a screw.
[0033] When two adjacent splicing units 110 are spliced at a corner, the extending surfaces of the mesh sheets 300 of the two splicing units 110 are perpendicular. The first connection portion 114 of one splicing unit 110 is connected to the second connection portion 115 of the other splicing unit 110. The corresponding splicing plates 117 of the two connection portions overlap up and down, and the axes of the positioning holes 1171 corresponding to the two splicing plates 117 coincide. The fixing member passes through the two positioning holes 1171 to fix the two connection portions, and complete the splicing of the two splicing units 110; wherein, the fixing member can be a bolt or a screw, realizing the splicing of two adjacent splicing units 110 at the corner.
[0034] In this embodiment, there are two first connecting parts 114 and two second connecting parts 115, which are fixedly connected to the corresponding first support rod 111 and second support rod 112 respectively; the two first connecting parts 114 are respectively arranged on the upper half and the lower half of the first support rod 111. Similarly, the second connecting parts 115 are also respectively arranged on the upper half and the lower half of the second support rod 112. Two points determine a straight line, ensuring that the adjacent two splicing units 110 are connected vertically upward without tilting, thereby improving the overall stability of the breeding cage. It should be noted here that the appropriate number of first connecting parts 114 and second connecting parts 115 are selected according to the lengths of the first support rod 111 and the second support rod 112 to ensure the stable splicing of the adjacent two splicing units 110 without shaking. If the breeding cage body 100 is used to breed large animals, corresponding first connecting parts 114 and second connecting parts 115 can be added at the middle positions of the first support rod 111 and the second support rod 112 to improve the strength while ensuring the stability of the breeding cage.
[0035] The door body structure 200 includes a door frame structure 210, which is a square frame. The first connecting part 114 and the second connecting part 115 are respectively arranged on the left and right sides, and are used to connect with the second connecting part 115 or the first connecting part 114 of the adjacent splicing unit 110. The door frame structure 210 is coupled with a first door body 220. The first door body 220 swings relative to the door frame structure 210 to realize the opening and closing of the first door body 220. The first door body 220 and the door frame structure 210 are locked by a door lock 400.
[0036] In this embodiment, the first door body 220 includes a second door body installation space 221 located above and a first door fence 222 located below; the door lock 400 is installed on the first door fence 222. The inner side wall of the door frame structure 210 corresponding to the position of the door lock 400 is provided with a lock port for the door lock 400 to lock. By the expansion and contraction of the lock tongue of the door lock 400, it is inserted into or away from the lock port to realize the clamping or disconnection of the first door body 220 and the door frame structure 210. The second door body installation space 221 is coupled with a second door body 230. The second door body 230 swings relative to the second door body installation space 221 to realize the opening and closing of the second door body 230. The second door body 230 and the frame of the second door body installation space 221 are locked by a door lock 400; the door lock 400 is installed on the second door body 230, and a lock port corresponding to the door lock 400 is opened at the corresponding position of the frame of the second door body installation space 221. The lock tongue of the door lock 400 expands and contracts, is inserted into or away from the lock port to realize the clamping or disconnection of the second door body 230 and the second door body installation space 221, and realize the opening and closing of the second door body 230.
[0037] When it is necessary to put an animal into the cage or lead the animal out of the cage, unlock the door lock 400 of the first door body 220, pull the first door body 220, and the animal enters and exits through the door opening. After all the animals return to the cage, lock the door lock 400 of the first door body 220.
[0038] When it is necessary to feed the animal and prevent the animal from escaping from the breeding cage, unlock the door lock 400 of the second door body 230 located above, pull the second door body 230, throw the feed into the breeding cage, and then lock the door lock 400 of the second door body 230. Since the second door body 230 is at a relatively high position, the animal cannot run out through this door opening, which improves the convenience of feeding and eliminates the need to block the animal while feeding.
[0039] The above-mentioned second door body 230 is preferably of a fence structure or can also be of a flat plate structure. The fence-structured door body causes less depression to the animal and improves the comfort of the animal.
[0040] In this embodiment, please refer to Figure 5 , the door lock 400 includes a lock housing 410 and a lock tongue 420 disposed inside the lock housing 410. A knob 430 is provided on the surface of the lock housing 410. Rotating the knob 430 drives the lock tongue 420 to extend and retract. Preferably, the surface of the lock housing 410 where the knob 430 is installed has a peripheral wall 411 forming an accommodation space. The knob 430 is located in this accommodation space. A pull ring 440 is rotatably connected to the knob 430. When the door does not need to be opened, the pull ring 440 is located in this accommodation space; when the pull ring 440 is needed to open the door, the pull ring 440 rotates relative to the knob 430, and the pull ring 440 is pulled by hand to open the door body. The setting of the pull ring 440 provides convenience and safety for opening the door, eliminating the need to directly contact the door body and avoiding contact with the animal saliva or other excreta on the door body. Pulling the pull ring 440 can achieve opening and closing of the door.
[0041] In this embodiment, in order to further improve the connection stability between two adjacent splicing units 110, a reinforcing connection part 500 is added, and the reinforcing connection part 500 is arranged between two first connection parts 114 and two second connection parts 115 on the same side. The reinforcing connection part 500 includes two reinforcing plates 510 with the same structure. The two reinforcing plates 510 are of a split structure. In the use state, the two reinforcing plates 510 are connected into an integral structure by a tightening member 520. Both sides of the surface of the reinforcing plate 510 include slots 511 corresponding to the sizes of the first support rod 111 and the second support rod 112. An adjustment section 512 is arranged between the two slots 511, and there is an opening for the tightening member 520 to be inserted; the two reinforcing plates 510 are combined to form a receiving space corresponding to the outer diameter sizes of the first support rod 111 and the second support rod 112; the distance between the adjustment sections 512 of the two reinforcing plates 510 is smaller than the distance between the bottom of the slot openings of the slots 511 of the two reinforcing plates 510. During the use process, the two slots 511 of the reinforcing plate 510 are respectively clamped corresponding to the first support rod 111 and the second support rod 112 of two adjacent splicing units 110, and then the second reinforcing plate 510 is clamped from the opposite side. The slots 511 of the two reinforcing plates 510 form a space for receiving the corresponding first support rod 111 and second support rod 112. Then, the tightening member 520 is inserted into the opening, and the distance between the two reinforcing plates 510 is adjusted by screwing until the position of the reinforcing plate 510 is fixed, and the locking of the reinforcing connection part 500 is completed.
[0042] In this embodiment, in order to shade or shelter animals from rain, a shielding shed 600 is buckled above the breeding cage body 100. The surface area of the shielding shed 600 facing the breeding cage body 100 is larger than the surface area above the breeding cage body 100, and the shielding shed 600 completely shields the open top of the breeding cage body 100, so as to shield sunlight or rainwater in the largest range. Preferably, the shielding shed 600 is arched, and the opening faces the breeding cage body 100, which can not only achieve the shielding effect, but also avoid the accumulation of rainwater or snow on the shed top when it rains or snows, improve the safety performance of the shielding shed 600 when it rains or snows, and avoid losses caused by the collapse of the sunshade shed 600 due to the accumulation of rainwater or snow.
[0043] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification is only the principle of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection required by the present invention is defined by the appended claims and their equivalents.
Claims
1. An assembled breeding cage, wherein: include, The feeding cage body comprises a plurality of detachably connected splicing units; the splicing units comprise: A first support rod and a second support rod are arranged in parallel, and a mesh is connected between the first support rod and the second support rod; A first connecting portion is arranged on a surface of the first support rod which is away from the mesh; The second connection portion is arranged on a surface of the second support rod on one side away from the mesh; when two adjacent splicing units are spliced, the first connection portion of one splicing unit is coupled and connected with the second connection portion of the other splicing unit; A door structure, detachably connected to the splicing unit to form a closed space; the door structure includes a door frame structure, and a first connecting portion and a second connecting portion are respectively provided on the left and right sides, for connecting with the second connecting portion or the first connecting portion of the adjacent splicing unit; The door frame structure is coupled to a first door body, the first door body swings relative to the door frame structure to realize the opening and closing of the first door body, and the first door body and the door frame structure are locked by a door lock; the first door body includes a second door body installation space located at the top and a first door fence located at the bottom; the door lock is installed on the first door fence, and the inner side wall of the door frame structure corresponding to the position of the door lock is provided with a lock opening for the door lock to lock, and the lock tongue of the door lock is retracted and embedded in the lock opening or away from the lock opening to realize the clamping or disconnection of the first door body and the door frame structure; The second door body installation space is coupled to the second door body, and the second door body swings relative to the second door body installation space to achieve opening and closing of the second door body, and the second door body and the frame of the second door body installation space are locked by a door lock; the door lock is installed on the second door body, and a lock opening corresponding to the door lock is opened at a corresponding position of the frame of the second door body installation space, and the lock tongue of the door lock is retracted and embedded in the lock opening or away from the lock opening to achieve opening and closing of the second door body.
2. An assembled breeding cage as claimed in claim 1, wherein: The first connection part and the second connection part have the same structure, both of which have a connection plate and a splicing plate vertically arranged at one end of the connection plate, and a positioning hole is formed on the surface of the splicing plate; During splicing, the first connection portion of one of the two splicing units overlaps with the positioning hole of the second connection portion of the other splicing unit, and the two are fixed by a fixing piece passing through the positioning hole.
3. An assembled breeding cage as claimed in claim 2, wherein: The height difference between the first connecting portion and the second connecting portion is equal to the thickness of one splicing plate.
4. An assembled breeding cage as claimed in claim 1, wherein: The door lock comprises a lock housing and a lock tongue arranged in the lock housing, a knob is arranged on the surface of the lock housing, and rotating the knob drives the lock tongue to achieve extension and retraction; a surface of the lock housing on which the knob is mounted has a peripheral wall forming an accommodation space, the knob is located in the accommodation space, and a pull ring is rotatably connected to the knob; When the door does not need to be opened, the pull ring is located in the accommodation space; When the pull ring is needed to open the door, the pull ring rotates relative to the knob, and the pull ring is pulled by hand to open the first door body or the second door body.
5. An assembled breeding cage as claimed in claim 1, wherein: It also includes a reinforcing connection portion connected between two adjacent splicing units.
6. An assembled breeding cage as claimed in claim 1, wherein: It also includes a shielding shed, the surface area of which is greater than or equal to the surface area above the breeding cage body and shields the upper opening of the breeding cage body.