Modularized rabbit breeding cage
The rabbit breeding cage designed with a modular structure uses the connecting mechanism of the cross bar and the U-shaped groove to achieve flexible assembly and adjustment of the cage, which solves the problem of insufficient flexibility of the existing fixed cage and improves the applicability and stability of the breeding cage.
Patent Information
- Application Number
- CN202421738313.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-22
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-07-22
AI Technical Summary
Existing rabbit breeding cages are usually fixed structures and cannot be adjusted on-site according to breeding sites and needs, and are not flexible and applicable.
The rabbit breeding cage designed with a modular structure, each cage is a separate module, and is connected and interlaced layer by layer through the connecting mechanism of the cross bar and the U-shaped groove. The bracket is used to support the suspended parts, achieving flexible assembly and adjustment.
It realizes flexible installation and adjustment of breeding cages, adapts to different breeding needs, improves site utilization and cage stability, and avoids shaking.
Smart Images

Figure CN222941467U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of animal breeding cages, in particular to a modular rabbit breeding cage. Background Art
[0002] In breeding technology, there are different breeding methods and sites according to different breeding objects. Medium and large breeding objects generally require a relatively open site, while small breeding objects are generally fed in breeding cages. Breeding cages can be stacked to increase the utilization rate of the site.
[0003] There are two main forms of rabbit farming, one is free-range farming in the field, and the other is feeding in cages. Both methods have their own advantages and disadvantages. In the existing cage farming, the breeding cage is generally a fixed structure, which is fixed and installed in the breeding site. The disadvantage is that it cannot be adjusted on-site according to the breeding site and breeding needs. It needs to be designed and processed during production, and its flexibility is relatively limited. Summary of the invention
[0004] The utility model is a modular rabbit breeding cage, which is implemented by a modular structure. Each cage is a separate module, which is assembled when used and can be personalized according to the actual situation on site and breeding needs. Compared with traditional breeding cages, it has better flexibility and applicability.
[0005] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0006] A modular rabbit breeding cage comprises a breeding cage module and a bracket; the top and bottom of the breeding cage module are respectively provided with corresponding connecting mechanisms, the breeding cage modules are connected layer by layer through the connecting mechanisms, and the upper breeding cage module slides back and forth and is locked on the upper part of the lower breeding cage module; when the upper breeding cage module and the lower breeding cage module are staggered, the bracket supports the suspended part thereof.
[0007] The connecting mechanism includes a cross bar arranged at the top of the breeding cage module and a slide plate arranged at the bottom of the breeding cage module, the slide plate is provided with a U-shaped groove opening downward, and the U-shaped groove corresponds to the cross bar one by one; the cross bar and the slide plate are provided with two corresponding groups on the breeding cage module, which are respectively arranged at the edges of both sides of the breeding cage module.
[0008] Furthermore, screw holes and through holes are respectively provided on the skateboards on both sides of the U-shaped groove, the screw holes are provided on the inner side of the skateboard, and the through holes are provided on the outer side of the skateboard, and locking studs are provided in the screw holes and the through holes; the ends of the locking studs are provided with external threads corresponding to the screw holes, and the middle part of the locking studs is provided with a tapered portion; when the cross bar is inserted into the U-shaped groove, the locking studs are inserted from the through holes and screwed into the opposite screw holes, and at this time the tapered portion supports the lower part of the cross bar to achieve locking and limiting.
[0009] Furthermore, the screw holes and through holes are provided in a plurality of groups on the slide plate and are evenly distributed front to back.
[0010] The bracket includes a vertical pole and a horizontal support rod arranged on the vertical pole; the vertical pole is provided with evenly distributed horizontal sliding sleeves, and the support rod is installed in the sliding sleeves; the height of the sliding sleeves and the support rods corresponds to the U-shaped groove in the slide plate at the bottom of the breeding cage module.
[0011] Furthermore, connecting pieces for fixedly connecting the two are provided between the horizontally adjacent breeding cage modules, and the connecting pieces fix and limit the adjacent slide plates to achieve the connection and fixation between the horizontally adjacent breeding cage modules.
[0012] The connecting piece is a U-shaped structure with an opening upward, and grooves corresponding to the lower half of the cross bar are provided on both side ends of the connecting piece; the two side plates of the connecting piece correspond to the U-shaped grooves on the adjacent skateboards respectively; pin holes corresponding to the screw holes on the skateboard are provided on the side plates of the connecting piece, and connecting bolts are provided in the pin holes. The front half of the connecting bolt is provided with a pin shaft corresponding to the pin hole, and the rear half is provided with an external thread corresponding to the screw hole. When the connecting piece is inserted into the U-shaped groove, the connecting bolt is inserted from the inner side of the skateboard, and the pin shaft is inserted into the pin hole to limit it, and the rear half of the connecting bolt is screwed into the screw hole through a thread to fix itself.
[0013] Furthermore, the corresponding pin holes on the connecting member are provided with multiple groups evenly distributed and correspond to the screw holes on the skateboard, and the number of the pin holes on the connecting member is greater than or equal to two groups.
[0014] The device adopts the above technical solution to achieve the following beneficial effects:
[0015] The overall installation of the cage is achieved by assembling modular breeding cages together. In actual use, the installation method can be selected according to needs. The overall installation is firm and not prone to shaking.
[0016] In addition, the crossbar and U-shaped groove connection structure adopted by the breeding cage module can be installed vertically or in a staggered manner with layers retreating according to needs during use, which is conducive to flexible adjustment according to the breeding form. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the utility model.
[0018] Figure 2 A schematic diagram of a locking bolt.
[0019] Figure 3 Schematic diagram of the cooperation between the locking bolt and the cross bar.
[0020] Figure 4 A schematic diagram of the connector.
[0021] Figure 5 A schematic diagram of a connecting piece fixing adjacent slide plates. DETAILED DESCRIPTION
[0022] The present invention is further described below in conjunction with the accompanying drawings and embodiments. It should be clear that the following embodiments are only one or more manifestations of the present invention and are not intended to be a complete limitation of the invention described in this application. Any improvements known to those skilled in the art made on the basis of the invention or technical solutions described in this application should fall within the scope of protection claimed in this application.
[0023] like Figure 1-Figure 5 A modular rabbit breeding cage is shown, which includes a breeding cage module 1 and a bracket 2; the top and bottom of the breeding cage module 1 are respectively provided with corresponding connecting mechanisms, the breeding cage modules 1 are connected layer by layer through the connecting mechanisms, and the upper breeding cage module 1 slides back and forth and is locked on the upper part of the lower breeding cage module 1. When the upper breeding cage module 1 and the lower breeding cage module 1 are staggered, the bracket 2 supports their suspended parts.
[0024] The connecting mechanism includes a cross bar 101 arranged at the top of the breeding cage module 1 and a slide plate 102 arranged at the bottom of the breeding cage module 1. The slide plate 102 is provided with a U-shaped groove 103 opening downward, and the U-shaped groove 103 corresponds to the cross bar 101 one by one; the cross bar 101 and the slide plate 102 are provided in two corresponding groups on the breeding cage module 1, and are respectively arranged at the two side edges of the breeding cage module 1.
[0025] Furthermore, screw holes 104 and through holes 105 are respectively provided on the slide plates on both sides of the U-shaped groove 103. The screw holes 104 are provided on the inner side of the slide plate 102, and the through holes 105 are provided on the outer side of the slide plate 102. Locking studs 106 are provided in the screw holes 104 and the through holes 105; the ends of the locking studs 106 are provided with external threads corresponding to the screw holes 104, and the middle part of the locking studs 106 is provided with a tapered portion 107; when the cross bar 101 is inserted into the U-shaped groove 103, the locking studs 106 are inserted from the through holes 105 and screwed into the opposite screw holes 104. At this time, the tapered portion 107 supports the lower part of the cross bar 101 to achieve locking and limiting.
[0026] Furthermore, the screw holes 104 and through holes 105 are provided in a plurality of groups on the slide plate 102 and are evenly distributed front to back.
[0027] The bracket 2 includes a vertical pole 201 and a horizontal support rod 202 arranged on the vertical pole 201; the vertical pole 201 is provided with evenly distributed horizontal sliding sleeves 203, and the support rod 202 is installed in the sliding sleeves 203; the height of the sliding sleeves 203 and the support rod 202 corresponds to the U-shaped groove 103 in the slide plate 102 at the bottom of the breeding cage module 1.
[0028] Furthermore, a connecting piece 3 for fixedly connecting the two is provided between the horizontally adjacent breeding cage modules 1, and the connecting piece 3 fixes and limits the adjacent slide plates 102 to achieve the connection and fixation between the horizontally adjacent breeding cage modules 1.
[0029] The connecting member 3 is a U-shaped structure with an opening upward, and grooves 301 corresponding to the lower half of the cross bar 101 are provided on both side ends of the connecting member 3; the two side plates of the connecting member 3 correspond to the U-shaped grooves 103 on the adjacent skateboards 102 respectively; pin holes 302 corresponding to the screw holes 104 on the skateboard 102 are provided on the side plates of the connecting member 3, and connecting bolts 303 are provided in the pin holes 302. The front half of the connecting bolt 303 is provided with a pin shaft 304 corresponding to the pin hole 302, and the rear half is provided with an external thread corresponding to the screw hole 104. When the connecting member 3 is inserted into the U-shaped groove 103, the connecting bolt 303 is inserted from the inner side of the skateboard 102, and the pin shaft 304 is inserted into the pin hole 302 to limit it, and the rear half of the connecting bolt 303 is screwed into the screw hole 104 through a thread to fix itself.
[0030] Furthermore, the corresponding pin holes 302 on the connecting member 3 are provided in multiple groups evenly distributed and correspond to the screw holes 104 on the slide plate 102, and the number of the pin holes 302 on the connecting member 3 is greater than or equal to two groups.
[0031] There are two main forms of this device when in use. One is that when the breeding cage module is installed vertically, the crossbar on the lower breeding cage module is inserted into the U-shaped groove of the upper breeding cage module, and then the bottom surface of the crossbar is supported and fixed by the locking studs to achieve the effect of upper and lower connection. The other is that the breeding cage modules are staggered with each other, and when the breeding cage modules are partially extended from bottom to top, the fixing method between the upper and lower breeding cages remains unchanged. The difference is that the bracket is required to support the suspended area at the rear of the breeding cage. The support rod on the bracket can also be inserted into the U-shaped groove and fixed by the locking studs.
[0032] The culture cage modules adjacent to each other in the transverse direction are connected and fixed by connecting pieces, and the transverse arrangement of the culture cage modules achieves a better stable state under the action of the connecting pieces.
Claims
1. A modular rabbit breeding cage, characterized in that: It includes a breeding cage module and a bracket; the top and bottom of the breeding cage module are respectively provided with corresponding connecting mechanisms, the breeding cage modules are connected layer by layer through the connecting mechanisms, and the upper breeding cage module slides back and forth and is locked on the upper part of the lower breeding cage module. When the upper breeding cage module and the lower breeding cage module are staggered, the bracket supports their suspended parts.
2. A modular rabbit breeding cage according to claim 1, characterized in that: The connecting mechanism includes a cross bar arranged at the top of the breeding cage module and a slide plate arranged at the bottom of the breeding cage module, the slide plate is provided with a U-shaped groove opening downward, and the U-shaped groove corresponds to the cross bar one by one; the cross bar and the slide plate are provided with two corresponding groups on the breeding cage module, which are respectively arranged at the edges of both sides of the breeding cage module.
3. A modular rabbit breeding cage according to claim 2, characterized in that: The slide plates on both sides of the U-shaped groove are respectively provided with screw holes and through holes, the screw holes are provided on the inner side of the slide plate, and the through holes are provided on the outer side of the slide plate, and locking studs are provided in the screw holes and the through holes; the ends of the locking studs are provided with external threads corresponding to the screw holes, and the middle part of the locking studs is provided with a tapered portion; when the cross bar is inserted into the U-shaped groove, the locking studs are inserted from the through holes and screwed into the opposite screw holes, and at this time the tapered portion supports the lower part of the cross bar to achieve locking and limiting.
4. A modular rabbit breeding cage according to claim 3, characterized in that: The screw holes and through holes are arranged in a plurality of groups on the slide plate and are evenly distributed frontward and rearward.
5. A modular rabbit breeding cage according to claim 4, characterized in that: The bracket includes a vertical pole and a horizontal support rod arranged on the vertical pole; the vertical pole is provided with evenly distributed horizontal sliding sleeves, and the support rod is installed in the sliding sleeves; the height of the sliding sleeves and the support rods corresponds to the U-shaped groove in the slide plate at the bottom of the breeding cage module.
6. A modular rabbit breeding cage according to claim 5, characterized in that: Connectors for fixedly connecting the two horizontally adjacent breeding cage modules are also provided between them. The connectors fix and limit the adjacent slide plates to achieve connection and fixation between the horizontally adjacent breeding cage modules.
7. A modular rabbit breeding cage according to claim 6, characterized in that: The connecting piece is a U-shaped structure with an opening upward, and grooves corresponding to the lower half of the cross bar are provided on both side ends of the connecting piece; the two side plates of the connecting piece correspond to the U-shaped grooves on the adjacent skateboards respectively; pin holes corresponding to the screw holes on the skateboard are provided on the side plates of the connecting piece, and connecting bolts are provided in the pin holes. The front half of the connecting bolt is provided with a pin shaft corresponding to the pin hole, and the rear half is provided with an external thread corresponding to the screw hole. When the connecting piece is inserted into the U-shaped groove, the connecting bolt is inserted from the inner side of the skateboard, and the pin shaft is inserted into the pin hole to limit it, and the rear half of the connecting bolt is screwed into the screw hole through a thread to fix itself.
8. A modular rabbit breeding cage according to claim 7, characterized in that: The corresponding pin holes on the connecting member are provided with multiple groups evenly distributed and correspond to the screw holes on the slide plate, and the number of the pin holes on the connecting member is greater than or equal to two groups.