Breeding cage capable of achieving intelligent centralized chicken delivery
By setting up a pullable bottom net and a liftable partition net in the breeding cage, the intelligent chicken production method of broilers falling from the breeding cage into the manure belt is achieved, and the problems of low chicken production efficiency and broilers' stress response in the existing technology are solved, which improves the chicken production efficiency and reduces the stress response of broilers.
Patent Information
- Application Number
- CN202421895219.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-07
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-08-07
AI Technical Summary
The chicken production methods in existing chicken farms are inefficient, and broilers are prone to stress reactions.
Design an intelligent concentrated chicken breeding cage. By setting up a pullable bottom net and a liftable partition net, the broiler falls from the breeding cage onto the manure belt and achieves horizontal output on the manure belt.
The chicken production efficiency is improved, the broiler's stress response is reduced, and the damage caused by artificial chicken catching is avoided.
Smart Images

Figure CN222897983U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of breeding, in particular to a breeding cage for realizing intelligent centralized chicken output. Background Art
[0002] In the existing chicken farms, the broilers are bred by the way of stacked cage farming. In order to reduce the overall mobility of the broilers and the probability of cross-infection of germs, a plurality of breeding cages arranged side by side are provided on each layer. When outputting chickens, workers need to open the cage doors of the breeding cages on each layer one by one, and then output the chickens by the way of manually catching the chickens. This way of outputting chickens not only has low efficiency, but also causes stress reaction of the broilers and causes certain harm to the broilers.
[0003] On the other hand, a feces receiving belt is arranged at the bottom of each layer of breeding cages, and the feces can be conveyed out of the breeding cage area; if the feces receiving belt can be used to convey the broilers in each breeding cage out, the chicken output effect will be greatly improved and the stress reaction of the broilers will be reduced. However, the broilers cannot fall onto the feces receiving belt because the feces receiving belt and each breeding cage are separated by a bottom net; and the distance between the feces receiving belt and the breeding cage is also relatively small, and the broilers cannot be output horizontally.
[0004] To sum up, there is a need for a breeding cage which can make the broilers fall from the breeding cage onto the feces receiving belt during chicken output and can realize the horizontal output of the broilers on the feces receiving belt, so as to improve the chicken output efficiency and reduce the stress reaction of the broilers. Summary of the Utility Model
[0005] The purpose of the utility model is to provide a breeding cage for realizing intelligent centralized chicken output. By setting a drawable bottom net, when outputting chickens, the broilers can fall from the breeding cage onto the feces receiving belt; by setting a liftable partition net, the partition net can be avoided from blocking the chicken output channel, ensuring the horizontal output of the broilers on the feces receiving belt and improving the chicken output efficiency; at the same time, the stress reaction of the broilers caused by manually catching the chickens one by one is avoided.
[0006] To achieve the above object, the utility model provides a breeding cage for realizing intelligent centralized chicken output, which includes multiple groups of breeding units arranged side by side. The breeding unit includes a gantry-shaped cage frame and multiple layers of breeding cages arranged vertically on the cage frame; the breeding cage includes two side nets arranged oppositely, two partition nets, and a bottom net located at the bottom of the two side nets and the two partition nets; the two side nets, the two partition nets, and the bottom net enclose a breeding space; the two side nets are fixed on both sides of the cage frame; the two partition nets are vertically slidably installed on the cage frame, and a lifting drive device is arranged on the cage frame, and the lifting drive device drives the partition net to lift, so as to open the breeding cage from both sides; the bottom net is horizontally slidably installed on the cage frame, and a pulling drive device is arranged on the cage frame, and the pulling drive device drives the bottom net to slide horizontally to open the bottom of the breeding cage; a feces receiving belt is arranged at the bottom of each layer of breeding cage. When the two sides and the bottom of the breeding cage are opened, a chicken output passage is formed between the upper part of the feces receiving belt and the two side nets; the pulling drive device avoids the chicken output passage.
[0007] After adopting the above structure, during normal breeding, the two side nets, the two partition nets, and the bottom net enclose a breeding space, and broilers are bred in the breeding space; when chickens need to be output, the partition nets on both sides of the breeding cage are lifted, and then the bottom net is horizontally pulled out, so that the bottom and both sides of the breeding cage are communicated, and the broilers fall from the breeding cage onto the feces receiving belt. The rising of the partition net also avoids the chicken output passage, ensuring that the broilers are horizontally output on the feces receiving belt, improving the chicken output efficiency; at the same time, it avoids the stress reaction of broilers caused by manually catching chickens one by one.
[0008] To improve the stability of the cage frame, the cage frame includes a left door frame and a right door frame arranged oppositely, and the left door frame and the right door frame are fixedly connected by a cross brace, and the cross brace avoids the chicken output passage.
[0009] To improve the strength of the cage frame, a group of cross braces is arranged at the top of each layer of breeding cage.
[0010] To achieve the stable sliding of the partition net and the bottom net, a vertical slideway for the vertical sliding of the partition net and a horizontal slideway for the horizontal sliding of the bottom net are arranged on the cage frame; a lifting limit rod is arranged at the top of the partition net, a sliding hole is arranged on the side wall of the vertical slideway, and the lifting limit rod extends out of the sliding hole and is slidably installed up and down in the sliding hole; a flat push limit rod is installed at one end of the outer side of the bottom net, and the flat push limit rod extends out of the horizontal slideway.
[0011] To open the partition nets of the breeding cages on the same layer simultaneously, the partition nets on the same layer of all breeding units are fixedly connected.
[0012] To open the bottom nets of the breeding cages on the same layer simultaneously, the bottom nets on the same layer of all breeding units are fixedly connected.
[0013] To reduce the input of the pulling drive device, two groups of pulling drive devices are arranged, which are respectively located on both sides of the cage frame.
[0014] In order to reduce the input amount of the partition net, the cage frames of adjacent breeding units are fixed as a whole, and the adjacent partition nets on the same layer are shared.
[0015] After adopting the above technical solution, the beneficial effects of the present utility model are:
[0016] The breeding cage house of the present utility model for realizing intelligent centralized chicken output solves the technical problems in the prior art that the manual grasping efficiency of broiler chicken output is low and the broiler chickens are prone to stress reactions. The present utility model realizes that when chickens are output, the broiler chickens fall from the breeding cage into the manure receiving belt by setting a pullable bottom net; by setting a liftable partition net, the partition net is prevented from blocking the chicken output passage, ensuring the horizontal output of the broiler chickens on the manure receiving belt, improving the chicken output efficiency; and at the same time, avoiding the stress reactions of the broiler chickens caused by manual chicken grasping one by one. Description of the Drawings
[0017] Figure 1 is a schematic structural diagram (excluding the manure receiving belt) of the breeding cage house of the present utility model for realizing intelligent centralized chicken output;
[0018] Figure 2 is Figure 1 the front view (including the manure receiving belt) of
[0019] Figure 3 is Figure 2 the side view of
[0020] Figure 4 is a schematic structural diagram of the cage frame;
[0021] Figure 5 is a schematic structural diagram of the connection of all the bottom nets on the same layer;
[0022] Figure 6 is a schematic structural diagram of the connection of all the partition nets on the same layer;
[0023] Figure 7 is a schematic diagram of the positional relationship between the bottom net and the partition net in the chicken output state.
[0024] In the figure, 1. Breeding unit, 11. Cage frame, 111. Left door frame, 112. Right door frame, 113. Cross brace, 12. Breeding cage, 121. Partition net, 1211. Lifting limit rod, 1212. First connecting rod, 122. Bottom net, 14. Vertical slideway, 141. Sliding hole, 15. Lifting drive device, 16. Horizontal slideway, 17. Pulling drive device, 1221. Pushing limit rod, 1222. Support rod, 3. Manure receiving belt. Detailed Embodiment
[0025] The present utility model will be further described below with reference to the drawings.
[0026] In this specification, the directions involved are based on the directions when a breeding cage house for realizing intelligent centralized chicken output works normally, without restricting the directions during its storage and transportation, only representing relative positional relationships and not absolute positional relationships.
[0027] As Figure 1 and Figure 2 As commonly shown, a breeding cage house for realizing intelligent centralized chicken output includes multiple groups of breeding units 1 arranged side by side. In this embodiment, three groups are arranged side by side. In practical applications, the number can be reasonably set according to the size of the breeding house, and this embodiment does not limit this. The breeding unit 1 includes a gantry-shaped cage frame 11 and multiple layers of breeding cages 12 arranged up and down on the cage frame 11. In this embodiment, the breeding cages 12 are arranged in three layers up and down. In practical applications, it can be designed into two or four layers according to needs, and this embodiment does not limit this. A feces receiving belt 3 is arranged at the bottom of each layer of the breeding cage 12 for receiving the feces on the breeding cage 12 and exporting them.
[0028] The breeding cage 12 includes two side nets arranged oppositely (not marked in the view for the convenience of viewing the internal structure), two partition nets 121, and a bottom net 122 located at the bottoms of the two side nets and the two partition nets 121. The two side nets, the two partition nets 121, and the bottom net 122 enclose a breeding space. A top net can be arranged at the top of the breeding space according to needs to close the top of the breeding cage 12. If the top net is installed, the top net is fixed on the cage frame 11 and is located at the bottom of the feces receiving belt 3.
[0029] The two side nets are fixed on both sides of the cage frame 11, and a cage door is arranged on either side net for opening the breeding cage 12. The two partition nets 121 are vertically slidably installed on the cage frame 11, and the bottom net 122 is horizontally slidably installed on the cage frame 11. The two partition nets 121 and the bottom net 122 of the breeding cage 12 are both slidable, so as to open the breeding cage 12 from both sides and the bottom. After opening, a chicken output passage is formed between the upper part of the feces receiving belt 3 and the two side nets.
[0030] As Figure 3 and Figure 4 As commonly shown, the cage frame 11 includes a left gantry 111 and a right gantry 112 arranged oppositely, and the left gantry 111 and the right gantry 112 are fixedly connected by a cross brace 113. A portal passage is formed between the left gantry 111 and the right gantry 112 to facilitate chicken output. The breeding cage 12 is located between the left gantry 111 and the right gantry 112. In order to improve the connection strength, in this embodiment, a group of cross braces 113 is arranged at the top of each layer of the breeding cage 12, and each group of cross braces 113 has three arranged side by side, and the cross braces 113 avoid the chicken output passage to avoid interference with chicken output.
[0031] The partition net 121 includes a partition net frame and a net plate fixed inside the partition net frame. The vertical sliding installation method of the partition net 121 is as follows: Vertical sliding ways 14 are provided on the opposite columns of the left gantry 111 and the right gantry 112. Both sides of the partition net frame are inserted into the corresponding vertical sliding ways 14 and can slide up and down along the vertical sliding ways 14.
[0032] A lifting drive device 15 is provided on the cage frame 11. The lifting drive device 15 drives the partition net 121 to lift, so as to open the breeding cage 12 from both sides. In this embodiment, the lifting drive device 15 is a cylinder. In practical applications, an oil cylinder, an electric cylinder or an electric push rod can be used. This embodiment does not limit this. A lifting limit rod 1211 is provided at the top of the partition net 121. Both ends of the lifting limit rod 1211 extend out of the left gantry 111 or the right gantry 112. A sliding hole 141 is provided on the side wall of the vertical sliding way 14. The lifting limit rod 1211 extends out of the sliding hole 141 and is slidably installed up and down in the sliding hole 141.
[0033] As Figure 5 shown, the lifting drive device 15 is fixed on the column of the left gantry 111 or the right gantry 112 and the direction of its output shaft is vertical. The top of its output shaft is fixed on the lifting limit rod 1211. By lifting the lifting drive device 15, the lifting of the lifting limit rod 1211 is controlled, so as to realize the lifting of the partition net 121. In order to make the force on the partition net 121 during lifting balanced, two lifting drive devices 15 are provided, which are respectively located on both sides of the partition net 121.
[0034] The bottom net 122 includes a bottom net frame and a net plate fixed inside the bottom net frame. The horizontal sliding installation method of the bottom net 122 is as follows: Horizontal sliding ways 16 are oppositely provided between the door frames of the left gantry 111 and between the door frames of the right gantry 112. Both sides of the bottom net frame are inserted into the corresponding horizontal sliding ways 16 and can slide horizontally along the horizontal sliding ways 16.
[0035] A pulling drive device 17 is provided on the cage frame 11. The pulling drive device 17 drives the bottom net 122 to slide horizontally to open the bottom of the breeding cage 12. In this embodiment, the pulling drive device 17 is a cylinder. In practical applications, an oil cylinder, an electric cylinder or an electric push rod can be used. This embodiment does not limit this. A flat push limit rod 1221 is installed at one outer end of the bottom net 122. The flat push limit rod 1221 extends out of the left gantry 111 or the right gantry 112. The pulling drive device 17 is fixed on one side of the column of the left gantry 111 or the right gantry 112 and its axial direction is horizontal. The top of its output shaft is fixed on the flat push limit rod 1221. By pushing out or contracting the pulling drive device 17, the bottom net 122 is controlled to be slidably installed in the horizontal sliding way 16, so as to realize opening or closing the bottom of the breeding cage 12.
[0036] As Figure 6As shown, since the pulling drive device 17 is horizontally arranged, it straddles the chicken passage. To avoid interference, the pulling drive device 17 is arranged to avoid the chicken passage. The avoidance method is that the installation position of the pulling drive device 17 and the feces receiving belt 3 are higher than the height of the broiler chickens. To make up for the height difference between its output end and the bottom net 122, the bottom net 122 and the flat-pushing limiting rod 1221 can be connected by a support rod 1222.
[0037] As Figure 7 shown, when chickens need to be taken out, the partition net 121 and the bottom net 122 are opened, so that both sides and the bottom of the breeding cage 12 are opened. The broiler chickens fall onto the feces receiving belt 3, and the broiler chickens are conveyed to one end of the breeding cage 12 by the feces receiving belt 3, thereby improving the working efficiency and avoiding the stress reaction of the broiler chickens caused by manual chicken catching.
[0038] Since there are multiple groups of breeding units 1 arranged side by side, to improve the effect, the cage frames 11 of adjacent breeding units 1 are fixed as a whole, and the adjacent partition nets 121 on the same layer are shared. Since there are three groups of breeding units 1 in this embodiment, four partition boards are provided.
[0039] To improve the opening efficiency of the breeding cages 12 on the same layer, to achieve simultaneous opening, and to appropriately reduce the input of the lifting drive device 15, the partition nets 121 on the same layer of all breeding units 1 are fixedly connected by the first connecting rod 1212. The number and installation position of the lifting drive device 15 can be reasonably set according to the size of the lifting drive device 15 and the weight of the partition net 121. This embodiment does not limit this.
[0040] To improve the opening efficiency of the breeding cages 12 on the same layer, to achieve simultaneous opening, and to appropriately reduce the input of the pulling drive device 17, the flat-pushing limiting rods 1221 between the bottom nets 122 on the same layer of all breeding units 1 are fixedly connected. At this time, two groups of pulling drive devices 17 are provided, which are respectively located on both sides of the cage frame 11.
[0041] The breeding cage house of the present utility model for realizing intelligent centralized chicken removal solves the technical problems in the prior art that the efficiency of manually catching broiler chickens during chicken removal is low and the broiler chickens are prone to stress reactions. The present utility model realizes that when chickens are removed, the broiler chickens fall from the breeding cage into the feces receiving belt by setting a pullable bottom net; by setting a liftable partition net, the partition net is prevented from blocking the chicken passage, ensuring the horizontal output of the broiler chickens on the feces receiving belt and improving the chicken removal efficiency; at the same time, it avoids the stress reaction of the broiler chickens caused by manually catching each chicken one by one.
[0042] Certainly, the above description is not a limitation of the present utility model, and the present utility model is not limited to the above examples. Changes, modifications, additions or substitutions made by those skilled in the art within the scope of the essence of the present utility model should also belong to the protection scope of the present utility model.
Claims
1. A breeding cage for realizing intelligent centralized chicken production, characterized in that: It comprises a plurality of breeding units arranged side by side, wherein the breeding units comprise a gantry-shaped cage frame and multi-layer breeding cages arranged up and down on the cage frame; The breeding cage comprises two side nets and two partition nets arranged opposite to each other and a bottom net located at the bottom of the two side nets and the two partition nets; the two side nets, the two partition nets and the bottom net enclose a breeding space; The two side nets are fixed on both sides of the cage frame; the two partition nets are vertically slidably installed on the cage frame, and a lifting drive device is provided on the cage frame, and the lifting drive device drives the partition nets to rise and fall, so as to open the breeding cage from both sides; the bottom net is horizontally slidably installed on the cage frame, and a pulling drive device is provided on the cage frame, and the pulling drive device drives the bottom net to slide horizontally to open the bottom of the breeding cage; A manure receiving belt is arranged at the bottom of each layer of the breeding cage. When the two sides and the bottom of the breeding cage are opened, a chicken outlet passage is formed between the top of the manure receiving belt and the two side nets; and the pulling and pulling driving device avoids the chicken outlet passage.
2. A breeding cage for realizing intelligent centralized chicken production according to claim 1, characterized in that: The cage frame comprises a left door frame and a right door frame which are arranged opposite to each other. The left door frame and the right door frame are fixedly connected by a cross brace, and the cross brace avoids the chicken outlet passage.
3. The intelligent centralized chicken breeding cage according to claim 2, characterized in that: A group of cross braces is arranged on the top of each layer of the breeding cages.
4. The intelligent centralized chicken breeding cage according to claim 1, characterized in that: The cage frame is provided with a vertical slideway for the partition net to slide vertically and a horizontal slideway for the bottom net to slide horizontally; A lifting limit rod is arranged on the top of the partition net, a sliding hole is arranged on the side wall of the vertical slideway, and the lifting limit rod extends out of the sliding hole and is installed in the sliding hole by sliding up and down; A horizontal push limit rod is installed at one end of the outer side of the bottom net, and the horizontal push limit rod extends out of the horizontal slideway.
5. The intelligent centralized chicken breeding cage according to claim 1, characterized in that: The partition nets of the same layer of all the breeding units are fixedly connected.
6. The intelligent centralized chicken breeding cage according to claim 1, characterized in that: The bottom nets of the same layer of all the breeding units are fixedly connected.
7. The intelligent centralized chicken breeding cage according to claim 6, characterized in that: The pulling and pulling drive devices are provided with two groups, which are respectively located on both sides of the cage frame.
8. The intelligent centralized chicken breeding cage according to claim 1, characterized in that: The cages of the adjacent breeding units are fixed as a whole, and the adjacent partition nets in the same layer are shared.
Citation Information
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