Precise feeding system for broiler chicken breeding

By designing compartmentalized chicken cages and quantitative feeding components, the problem of inaccurate feeding in broiler farming has been solved, achieving uniform feeding of each broiler and reducing waste, thereby improving farming efficiency and the healthy growth of broilers.

CN121549293APending Publication Date: 2026-02-24河北省畜牧良种工作总站(河北省种畜禽质量监测站)
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Patent Information

Application Number
CN202610071367.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-01-20
Publication Date
2026-02-24

AI Technical Summary

Technical Problem

In existing technologies, it is difficult to achieve precise feeding for each broiler chicken during broiler farming, and there are problems of feed waste and pollution.

Method used

By using compartmentalized chicken cages and quantitative feeding components, combined with water supply components and feed mixing mechanisms, precise feeding of each broiler chicken is achieved. The supply of feed and water is controlled through quantitative feeding valves and sensing platforms, reducing waste and pollution.

Benefits of technology

This achieves precise feeding for each broiler, reducing feed waste and pollution, and improving breeding efficiency and the healthy growth of broilers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a broiler chicken breeding precise feeding system which comprises a coop placing frame and further comprises separated chicken raising cages and a feeding barrel, the multiple separated chicken raising cages are arranged on the coop placing frame, the interior of each separated chicken raising cage is divided into multiple chicken raising areas, and each chicken raising area corresponds to a single broiler chicken; the middle of the separated chicken raising cage is fixedly connected with a feeding cylinder, the feeding cylinder is communicated with the multiple chicken raising areas, a water supply assembly for the multiple chicken raising areas is arranged between the feeding cylinder and the separated chicken raising cage, a plurality of quantitative feeding assemblies are arranged in the feeding cylinder, and the quantitative feeding assemblies correspond to the chicken raising areas in a one-to-one mode. A broiler positioning assembly is arranged at the bottom of the feeding cylinder, so that after the broiler moves to one side of the feeding cylinder, the quantitative feeding assembly feeds the broiler with feed. The broiler feeding device is used for solving the problem that in the feeding process of broilers in the prior art, it is difficult to keep enough feeding accuracy in the feeding process of each broiler.
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Description

Technical Field

[0001] This invention relates to the field of broiler farming technology, specifically to a precision feeding system for broiler farming. Background Technology

[0002] Broilers are poultry raised through artificial breeding to provide people with the meat they need for daily life. In the process of raising and feeding broilers, it is necessary to raise them from chicks to broilers of sufficient weight. First, a suitable area needs to be selected to build a chicken house. Then, chicken racks and cages are built inside the chicken house. Next, pipes and feeding systems are laid to provide water and food for the broilers. Finally, a comfortable and stable breeding and growth environment is maintained for the broilers.

[0003] During the feeding of broilers, it is necessary to control their food and water intake to ensure that they receive appropriate types and amounts of feed and drinking water at different growth stages. This is beneficial for their healthy growth. For example, when broilers are chicks, small-particle powder feed and complete compound feed are used to support their growth and prevent them from contracting various diseases. After a few weeks of feeding, the chicks gradually grow into the broiler development stage. At this time, the feed type needs to be adjusted to pelleted feed and the amount of feed increased to help them grow rapidly. In summary, for different stages of broiler farming, it is necessary to accurately feed the corresponding types and qualities of feed to ensure the normal growth of broilers.

[0004] However, in existing chicken cages, multiple broilers are usually raised. While ensuring sufficient feed in the troughs, it is difficult to guarantee that each broiler consumes the same amount of feed. Furthermore, feeding broilers throughout the day requires selecting specific time periods for effective feeding. If a sufficient amount of feed is added to the troughs all at once, the broilers may eat continuously, leading to overeating in some broilers. On the other hand, adding the corresponding amount of feed to the troughs at each time period increases the workload of the farmers and makes it difficult to achieve precise feeding of the broilers. Summary of the Invention

[0005] (a) Technical problems to be solved To address the shortcomings of existing technologies, this invention provides a precision feeding system for broiler farming, which solves the problem mentioned in the background art of the difficulty in maintaining sufficient feeding precision for each broiler during the feeding process.

[0006] (II) Technical Solution To achieve the above objectives, the present invention provides the following technical solution: a precision feeding system for broiler chicken farming, including a chicken cage placement rack, and further comprising: A partitioned chicken cage, wherein a chicken cage placement rack is provided with multiple partitioned chicken cages, each partitioned chicken cage is divided into multiple chicken raising areas, and each chicken raising area corresponds to a single broiler chicken; The feeding cylinder is fixedly connected to the middle of the partitioned chicken cage and is connected to multiple chicken raising areas. A water supply component for the multiple chicken raising areas is provided between the feeding cylinder and the partitioned chicken cage. Multiple quantitative feeding components are provided inside the feeding cylinder, and each quantitative feeding component corresponds to one of the chicken raising areas. A broiler positioning component is provided at the bottom of the feeding cylinder so that the quantitative feeding component feeds the broiler after it moves to one side of the feeding cylinder. A feed mixing mechanism is used to simultaneously mix multiple feeds to provide corresponding feeds for broilers at different feeding stages; The feeding vehicle is equipped with multiple storage bins to store the mixed feed and add the corresponding feed to the quantitative feeding component to feed the broilers.

[0007] To achieve regionalized farming of multiple broilers, according to one aspect, at least one embodiment of the present invention provides a precision feeding system for broiler farming. The partitioned chicken cage includes a cage body, partition plates, and a through-groove frame. The cage body is mounted on the cage placement frame. A sealing door is hinged to one side of the cage body. Multiple partition plates are arranged circumferentially around the center point of the feeding cylinder inside the cage body. The partition plates are used to form multiple chicken farming areas within the cage body. A broiler removal area is formed between the top of the partition plate and the inner top wall of the cage body. The through-groove frame is fixedly connected to the top of the cage body.

[0008] To provide broiler chickens with daily drinking water, according to one aspect, at least one embodiment of the present invention provides a precision feeding system for broiler chicken farming. The water supply component includes an annular water pipe and a water receiving trough. The annular water pipe is disposed within the through-trough frame and is connected to multiple water replenishment pipes. The bottom of the water replenishment pipe extends out from the middle of the feeding cylinder and is provided with a valve at the bottom. The bottom of the feeding cylinder is fixedly connected to the water receiving trough, which is located at the bottom of the water replenishment pipe.

[0009] To control the amount and timing of feed for broilers, according to one aspect, at least one embodiment of the present invention provides a precision feeding system for broiler farming. The quantitative feeding component includes a feeding valve pipe, a quantitative section, and a feeding trough. A closing valve is provided at the bottom of the feeding valve pipe, the bottom of the feeding valve pipe penetrates the bottom of the feeding cylinder, and the top of the feeding valve pipe extends to the top of the through-trough frame. The quantitative section is located on the upper side of the feeding cylinder and is provided with multiple marking rings. The feeding trough is fixedly connected to the bottom of the feeding cylinder.

[0010] To detect whether broilers are in a feeding position, according to one aspect, at least one embodiment of the present invention provides a precision feeding system for broiler farming. The broiler positioning component includes a fixed circular frame and a sensing platform. The fixed circular frame is fixedly connected to the inner bottom wall of the chicken cage body. A plurality of sensing platforms are arranged on the top circumference of the fixed circular frame. Each sensing platform corresponds to a chicken raising area. After the broilers move to the sensing platform, they are fed and watered.

[0011] To separately mix various feeds, according to one aspect, at least one embodiment of the present invention provides a precision feeding system for broiler farming. The feed mixing mechanism includes a gantry frame, mixing shafts, and a lifting platform. Multiple mixing shafts are rotatably connected to the gantry frame, and the multiple mixing shafts correspond to each other in pairs. The lifting platform is longitudinally slidably arranged on the gantry frame, and a mixing tank is arranged on the lifting platform. The mixing tank corresponds one-to-one with the mixing shaft.

[0012] To achieve simultaneous mixing of two types of feed, according to one aspect, at least one embodiment of the present invention provides a precision feeding system for broiler farming, wherein a spiral mixing frame is fixedly sleeved at the bottom of the mixing shaft, and a plurality of mixing rods are fixedly connected to the top circumference of the mixing shaft.

[0013] To mix special feed, according to one aspect, at least one embodiment of the present invention provides a precision feeding system for broiler farming, wherein the top of the mixing tank can hold two semi-circular troughs, the two semi-circular troughs can be combined to form a complete circle, and strip grooves are provided on the side walls of the two semi-circular troughs that are in contact with each other, for moving multiple mixing rods between the two semi-circular troughs to mix special feed using the semi-circular troughs.

[0014] In order to enable the input and output of mixed feed into the storage tank, according to one aspect, at least one embodiment of the present invention provides a precision feeding system for broiler farming, wherein a suction device is provided at the top of the storage tank and a discharge device is provided at the bottom of the storage tank.

[0015] (III) Beneficial Effects Compared with the prior art, the present invention provides a precision feeding system for broiler chicken farming, which has the following beneficial effects: 1. In this invention, when precise feeding of broilers is required, each broiler can be placed in a corresponding breeding area. When it is necessary to supplement the broilers with sufficient feed and drinking water within a specified time period, in order to ensure that the feed and drinking water consumed by each broiler within a certain time period is in line with its own consumption, all the feed and drinking water for a certain time period is first added to the water supply pipe and the feeding valve pipe. After the broiler moves to the sensing platform, once the broiler is detected to be in the feeding position, the water and feed are discharged through the water supply pipe and the feeding valve pipe, and then the broiler is given sufficient feed and drinking water. By feeding the broilers in the above manner, the feed consumed by the broilers can be more evenly distributed, and the overall feed waste problem during the broiler feeding process is reduced. In addition, since it is difficult to maintain the hygiene inside the chicken cage, the method of discharging feed to the outside only when the broiler is on the sensing platform can effectively reduce the problem of feed contamination. Furthermore, because the temperature inside the chicken house is relatively low in order to suit the growth of broilers, the feed located in the feeding valve pipe can also avoid the problem of spoilage, ensuring the safety of broiler feeding.

[0016] 2. In this invention, since broiler chickens at different growth stages are usually fed together during the breeding process, it is necessary to prepare a variety of special feeds suitable for different broiler chickens. Multiple mixing tanks can be used to simultaneously mix the various feeds to achieve rapid preparation of multiple feeds. Furthermore, a semi-circular trough can be used to prepare a small amount of special feeds, effectively improving the preparation speed of multiple feeds.

[0017] 3. In this invention, when it is necessary to add the corresponding weight of feed to multiple feeding valves, a feed cart can be used to move along the chicken cage placement area in the chicken house. After the feed is stirred, it is sucked up by the storage bucket and then added to the corresponding feed valve, which improves the convenience of feeding the feed valve. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of this application; Figure 2 This is a schematic diagram showing the structure of the chicken cage placement rack, the chicken cage body, the chicken raising area, and the feeding cylinder in this application. Figure 3 This is a schematic diagram of the structure of the chicken cage body, chicken raising area, feeding cylinder and through trough frame in this application; Figure 4 This is a partial cross-sectional structural diagram showing the cooperation of the feeding cylinder, partition plate, annular water pipe, water supply pipe, feeding valve pipe, fixed circular frame and sensing platform in this application; Figure 5This is a schematic diagram of the structure of the gantry frame, stirring shaft, lifting platform and stirring tank in this application; Figure 6 This is a partial cross-sectional structural diagram showing the cooperation of the gantry frame, stirring shaft, lifting platform, spiral stirring frame and stirring rod in this application; Figure 7 This is a schematic diagram of the structure of the mixing tank, the semi-circular tank, and the strip-shaped tank in this application; Figure 8 This is a schematic diagram of the structure of the feeding vehicle, storage tank, suction equipment and discharge equipment in this application.

[0019] In the diagram: 1. Chicken cage placement rack; 2. Chicken raising area; 3. Feeding cylinder; 4. Feeding cart; 5. Chicken cage body; 6. Sealing door; 7. Divider plate; 8. Through trough frame; 9. Circular water pipe; 10. Water replenishment pipe; 11. Water receiving trough; 12. Feeding valve pipe; 13. Quantitative section; 14. Identifying ring; 15. Feeding trough; 16. Fixed circular frame; 17. Induction platform; 18. Gantry frame; 19. Mixing shaft; 20. Lifting platform; 21. Mixing tank; 22. Spiral mixing frame; 23. Mixing rod; 24. Semi-circular trough; 25. Strip trough; 26. Suction device; 27. Discharge device; 28. Main water supply pipeline; 29. ​​Water supply pipeline; 30. Contact sensor; 31. Lifting electric cylinder; 32. Synchronous pulley; 33. Synchronous belt; 34. Drive motor; 35. Abutment sleeve; 36. Storage bin. Detailed Implementation

[0020] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0021] Please see Figures 1 to 3A precision feeding system for broiler chickens includes a chicken cage placement rack 1 and a partitioned chicken cage. The chicken cage placement rack 1 is equipped with multiple partitioned chicken cages, each partitioned chicken cage being divided into multiple chicken rearing areas 2. Each chicken rearing area 2 corresponds to a single broiler chicken. The partitioned chicken cage includes a cage body 5, partition plates 7, and a through-slot frame 8. The cage body 5 is mounted on the chicken cage placement rack 1, and a sealing door 6 is hinged to one side of the cage body 5. Multiple partition plates 7 are arranged circumferentially around the center point of the feeding cylinder 3 inside the cage body 5, forming multiple chicken rearing areas within the cage body 5. 2. A broiler removal area is formed between the top of the partition plate 7 and the inner top wall of the chicken cage body 5. A through-groove frame 8 is fixedly connected to the top of the chicken cage body 5. When broilers need to be raised, they are separated for raising. Separating the broilers facilitates precise feeding of each broiler. Different batches of broilers can be placed in their respective chicken raising areas 2, enabling the tiered sale of multiple batches of broilers. This increases the income of farmers who continuously feed broilers. Furthermore, separating the broilers for feeding can prevent large broilers from affecting the feeding of small broilers.

[0022] Please see Figures 1 to 3 In this embodiment, the broiler chickens that need to be raised can be moved to the corresponding chicken raising area 2 inside the chicken cage body 5 by opening the sealing door 6 and moving them through the upper side of the partition plate 7. After the raising is completed, the broiler chickens can also be moved out of the chicken cage body 5 from the top side of the partition plate 7 and the sealing door 6.

[0023] Please see Figures 1 to 4In this embodiment, a feeding cylinder 3 is fixedly connected to the middle of the partitioned chicken cage, and the feeding cylinder 3 is connected to multiple chicken raising areas 2. A water supply component for the multiple chicken raising areas 2 is provided between the feeding cylinder 3 and the partitioned chicken cage. The water supply component includes an annular water pipe 9 and a water receiving trough 11. The annular water pipe 9 is installed in the through trough frame 8, and multiple water replenishment pipes 10 are connected to the annular water pipe 9. The bottom of the water replenishment pipe 10 is moved out from the middle of the feeding cylinder 3, and a valve is provided at the bottom of the water replenishment pipe 10. The bottom of the feeding cylinder 3 is fixedly connected to the water receiving trough 11, which is located at the bottom of the water replenishment pipe 10. A main water supply pipeline 28 is provided in the chicken house, and multiple water passages 29 are arranged longitudinally on the main water supply pipeline 28. Each water passage 29... Each of the 9 corresponds to a longitudinally arranged chicken cage body 5. The water supply pipe 29 is connected to the corresponding ring water pipe 9 via an interface. The water supply pipe 29 can be connected to an external water source and water supply pump to deliver drinking water to the corresponding ring water pipe 9 through the main water supply pipe 28 and the water supply pipe 29. The ring water pipe 9 can store the drinking water volume of multiple broilers in the chicken cage body 5 at the same time, which is convenient for controlling the drinking water volume of each broiler and reducing the power consumption in the chicken house. When it is necessary to feed the broilers water, even if the broilers have not moved to the sensing platform 17, the water can be discharged directly through the water supply pipe 10 into the water receiving trough 11. The sound of the water supply pipe 10 discharging drinking water reminds the broilers to drink water.

[0024] Please see Figures 1 to 4 In this embodiment, the feeding cylinder 3 is equipped with multiple quantitative feeding components, each corresponding to a chicken-raising area 2. Each quantitative feeding component includes a feeding valve pipe 12, a quantitative section 13, and a feeding trough 15. A closing valve is located at the bottom of the feeding valve pipe 12, which extends through the bottom of the feeding cylinder 3. The top of the feeding valve pipe 12 extends to the top of the through-trough frame 8. The quantitative section 13 is located on the upper side of the feeding cylinder 3 and contains multiple marking rings 14. The feeding trough 15 is fixedly connected to the bottom of the feeding cylinder 3. Broiler feed is added to the feeding valve pipe 12. When feeding the broilers, the closing valve is activated. The valve is closed, allowing the feed in the feeding valve tube 12 to be discharged from the bottom of the feeding valve tube 12 under its own weight, so that the broiler feed enters the feeding trough 15. The broilers move to the sensing platform 17 and begin to eat the feed. Since the amount and type of feed consumed by different broilers are not the same, during the process of adding feed to the feeding valve tube 12, the amount of feed stored in the feeding valve tube 12 is made to reach the bottom side of the corresponding marking ring 14 to determine the storage amount in each feeding valve tube 12. When it is time to feed the broilers, the feed is discharged directly through the feeding valve tube 12. The sound of the feed being discharged is used to remind the broilers to move to the top side of the sensing platform 17 to eat the feed.

[0025] Please see Figures 1 to 4In this embodiment, a broiler positioning component is provided at the bottom of the feeding cylinder 3. After the broilers move to one side of the feeding cylinder 3, the quantitative feeding component feeds them. The broiler positioning component includes a fixed circular frame 16 and a sensing platform 17. The fixed circular frame 16 is fixedly connected to the inner bottom wall of the chicken cage body 5. Multiple sensing platforms 17 are provided on the top circumference of the fixed circular frame 16. Each sensing platform 17 corresponds one-to-one with a chicken raising area 2. After the broilers move onto the sensing platform 17, they are fed and watered. The sides of the multiple sensing platforms 17 that are close together are connected to one side of the fixed circular frame 16. The sensing platform 17 maintains sufficient elasticity; after the broilers move onto the sensing platform 17, it causes the sensing platform 17 to descend. The bottom of the sensing platform 17 is provided with... When the sensing platform 17 descends, the contact sensor 30 contacts the inner bottom wall of the fixed circular frame 16 to indicate the position of the broiler. This prompts the feeding valve pipe 12 and the water supply pipe 10 to discharge feed and drinking water respectively during the feeding period. By discharging feed and drinking water according to the position of the broiler, feed waste and contamination can be effectively avoided. After the broiler is removed from the sensing platform 17, the feeding valve pipe 12 and the water supply pipe 10 stop discharging feed and drinking water. The feeding valve pipe 12 and the water supply pipe 10 adopt an intermittent discharging method to prevent excessive discharge of feed and water. After the broiler leaves the area of ​​the sensing platform 17, the discharging operation of the feeding valve pipe 12 and the water supply pipe 10 stops.

[0026] Please see Figure 1 , Figures 5 to 7 In this embodiment, the feed mixing mechanism is used to simultaneously mix multiple feeds to provide corresponding feeds for broilers at different feeding stages. The feed mixing mechanism includes a gantry frame 18, mixing shafts 19, and a lifting platform 20. Multiple mixing shafts 19 are rotatably connected to the gantry frame 18, and the multiple mixing shafts 19 correspond to each other in pairs. The lifting platform 20 is longitudinally slidably arranged on the gantry frame 18, and a mixing tank 21 is arranged on the lifting platform 20. The mixing tank 21 corresponds one-to-one with the mixing shaft 19. This is because various nutritional additives are added to the feed consumed by broilers to ensure their health and growth. The mixing of various components in broiler feed is a major task for farmers during broiler farming. In the process of mixing large quantities of feed, multiple feeds for the same type of broiler are added into the mixing tank 21. Both sides of the gantry frame 18 are equipped with lifting electric cylinders 31. The output end of the lifting electric cylinder 31 is connected to the lifting platform 20. When the lifting electric cylinder 31 is activated, the lifting platform 20 and multiple mixing tanks 21 are raised, causing the mixing tanks 21 to move to both sides of the mixing shaft 19, which in turn drives the mixing shaft 19 to rotate, so that the mixing shaft 19 mixes the multiple feeds evenly.

[0027] Please see Figure 1 , Figures 5 to 7In this embodiment, a synchronous wheel 32 is fixedly fitted on the top of each of the two corresponding stirring shafts 19, and a synchronous belt 33 is provided between the two synchronous wheels 32 for transmission. A drive motor 34 is provided on the top of each pair of stirring shafts 19. The output end of the drive motor 34 is connected to the top of the corresponding stirring shaft 19. Starting the drive motor 34 can drive the stirring shaft 19 to rotate. Under the action of the synchronous wheel 32 and the synchronous belt 33, the two stirring shafts 19 are driven to rotate, and the feed in the stirring tank 21 is stirred.

[0028] Please see Figure 1 , Figures 5 to 7 In this embodiment, a spiral stirring frame 22 is fixedly sleeved at the bottom of the stirring shaft 19, and multiple stirring rods 23 are fixedly connected to the top circumference of the stirring shaft 19. The spiral stirring frame 22 is used to mix and stir various feeds in the mixing tank 21, while the stirring rods 23 can be used to stir the semi-circular tank 24 that is installed later, thereby increasing the stirring function of the stirring shaft 19 and the different containers that can be adapted to, so as to increase the types of feeds that can be mixed.

[0029] Please see Figure 1 , Figures 5 to 7 In this embodiment, two semi-circular troughs 24 can be placed on the top of the mixing tank 21. The two semi-circular troughs 24 can be combined to form a complete circle. The side walls of the two semi-circular troughs 24 that are in contact with each other are provided with strip grooves 25 for moving multiple stirring rods 23 between the two semi-circular troughs 24. The semi-circular troughs 24 are used to stir the special feed. The upper side of the stirring shaft 19 is provided with an abutment sleeve 35. After the corresponding ends of the two semi-circular troughs 24 are in contact with the abutment sleeve 35, the bottom wall of the abutment sleeve 35 abuts against the bottom of the two semi-circular troughs 24. The top of the mixing tank 21 can also abut against and support the semi-circular troughs 24. A small amount of special feed is added between the two joined semi-circular troughs 24. During the rotation of the stirring shaft 19, multiple stirring rods 23 are used to fully stir the feed in the semi-circular troughs 24.

[0030] Please see Figure 1 and Figure 8In this embodiment, the feeding cart 4 is equipped with multiple storage bins 36 to store the mixed feed and add the corresponding feed to the quantitative feeding component for feeding the broilers. The top of the storage bin 36 is equipped with a suction device 26 and the bottom of the storage bin 36 is equipped with a discharge device 27. In order to feed the feed valve pipes 12 in the multiple chicken cage bodies 5 in the chicken house in sequence, the feeding cart 4 driven by the motor can be used to move multiple storage bins 36 containing different feeds in the area. The suction device 26 in the storage bin 36 can suck the mixed feed in the mixing tank 21 or the semi-circular trough 24 into the storage bin 36. Then, after the discharge rod of the discharge device 27 is connected to the feed valve pipe 12, the feed in the storage bin 36 is transported to the feed valve pipe 12 for feeding each broiler.

[0031] The working principle or usage process of this precision feeding system for broiler chickens is as follows: First, each chicken cage body 5 is placed in the chicken raising area 2, and a type of broiler chicken is placed in each cage body 5. In order to provide farmers with a stable and continuous income in a tiered manner, broilers of different stages can be raised in the same chicken cage body 5. A small number of breeds or even single broilers can be mixed with other broilers. Then, according to the type and quality of feed required by each broiler, multiple mixing tanks 21 and multiple mixing shafts 19 are used to prepare the corresponding feed. Then, a feeding cart 4 is used to move multiple storage tanks 36 containing different feeds in different areas. The suction device 26 in the storage tank 36 can suck the feed mixed in the mixing tank 21 or the semi-circular trough 24 into the storage tank 36. Then, the discharge rod of the discharge device 27 is connected to the feeding valve pipe 12 to transport the feed in the storage tank 36 into the feeding valve pipe 12.

[0032] When feeding broilers, even if the broilers do not move to the sensing platform 17, water is directly discharged into the water receiving tank 11 through the water supply pipe 10. The sound of the water supply pipe 10 discharging drinking water reminds the broilers to drink. When the broilers are being fed, feed is directly discharged through the feeding valve pipe 12. The sound of the feed being discharged reminds the broilers to move to the top side of the sensing platform 17 to eat the feed.

[0033] After the broiler chickens are removed from the sensing platform 17, the feeding valve pipe 12 and the water supply pipe 10 will stop discharging feed and water respectively, thereby preventing water and feed pollution in the internal environment of the chicken cage body 5 and preventing waste of water and feed.

[0034] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A precision feeding system for broiler chicken farming, comprising a chicken cage placement rack (1), characterized in that, Also includes: A partitioned chicken cage, wherein a plurality of partitioned chicken cages are provided on the chicken cage placement rack (1), and each partitioned chicken cage is divided into multiple chicken raising areas (2), and each chicken raising area (2) corresponds to a single broiler chicken; Feeding cylinder (3), the middle of the partitioned chicken cage is fixedly connected to the feeding cylinder (3), and the feeding cylinder (3) is connected to multiple chicken raising areas (2). A water supply component for multiple chicken raising areas (2) is provided between the feeding cylinder (3) and the partitioned chicken cage. Multiple quantitative feeding components are provided inside the feeding cylinder (3). The quantitative feeding components correspond one-to-one with the chicken raising areas (2). A broiler positioning component is provided at the bottom of the feeding cylinder (3) so that after the broiler moves to one side of the feeding cylinder (3), the quantitative feeding component feeds the broiler. A feed mixing mechanism is used to simultaneously mix multiple feeds to provide corresponding feeds for broilers at different feeding stages; Feeding vehicle (4) is equipped with multiple storage bins (36) to store the mixed feed and add the corresponding feed to the quantitative feeding component to feed the broilers.

2. The precision feeding system for broiler chicken farming according to claim 1, characterized in that, The partitioned chicken cage includes: Chicken cage body (5), the chicken cage body (5) is set on the chicken cage placement rack (1), and a sealing door (6) is hinged on one side of the chicken cage body (5). Divider plate (7): Multiple divider plates (7) are arranged around the center point of the feeding cylinder (3) inside the chicken cage body (5). The divider plate (7) is used to form multiple chicken raising areas (2) inside the chicken cage body (5). A broiler removal area is formed between the top of the divider plate (7) and the inner top wall of the chicken cage body (5). Through slot frame (8), the top of the chicken cage body (5) is fixedly connected to the through slot frame (8).

3. The precision feeding system for broiler chicken farming according to claim 2, characterized in that, The water supply components include: A ring-shaped water pipe (9) is installed inside the through-groove frame (8). Multiple water supply pipes (10) are connected to the ring-shaped water pipe (9). The bottom of the water supply pipe (10) is moved out from the middle of the feeding cylinder (3). A valve is installed at the bottom of the water supply pipe (10). Water receiving trough (11) is fixedly connected to the bottom of the feeding cylinder (3), and the water receiving trough (11) is located at the bottom of the water supply pipe (10).

4. The precision feeding system for broiler chicken farming according to claim 3, characterized in that, The quantitative feeding component includes: Feeding valve tube (12), the bottom of which is provided with a closing valve, the bottom of which penetrates the bottom of the feeding cylinder (3), and the top of which extends to the top of the through slot (8); The feeding valve tube (12) is located on the upper side of the feeding cylinder (3) and is set as the feeding section (13). Multiple marking rings (14) are provided in the feeding section (13). Feeding trough (15), the bottom of the feeding cylinder (3) is fixedly connected to the feeding trough (15).

5. The precision feeding system for broiler chicken farming according to claim 4, characterized in that, The broiler positioning component includes: A fixed circular frame (16) is fixedly connected to the inner bottom wall of the chicken cage body (5); The top circumference of the fixed circular frame (16) is provided with multiple sensing platforms (17). Each sensing platform (17) corresponds to a chicken raising area (2). After the broilers move to the sensing platform (17), they are fed and watered.

6. The precision feeding system for broiler chicken farming according to claim 5, characterized in that, The feed mixing mechanism includes: Gantry rack (18); A stirring shaft (19) is rotatably connected to the gantry frame (18), and the multiple stirring shafts (19) correspond to each other in pairs; The lifting platform (20) is longitudinally slidably arranged on the gantry frame (18), and the lifting platform (20) is provided with a stirring tank (21), which corresponds one-to-one with the stirring shaft (19).

7. The precision feeding system for broiler chicken farming according to claim 6, characterized in that, The bottom of the stirring shaft (19) is fixedly fitted with a spiral stirring frame (22), and the top circumference of the stirring shaft (19) is fixedly connected with multiple stirring rods (23).

8. The precision feeding system for broiler chicken farming according to claim 7, characterized in that, The top of the mixing tank (21) can hold two semi-circular troughs (24), which can be combined to form a complete circle. The side walls of the two semi-circular troughs (24) that are in contact with each other are provided with strip grooves (25) for moving multiple mixing rods (23) between the two semi-circular troughs (24) to mix special feed.

9. A precision feeding system for broiler chicken farming according to claim 8, characterized in that, The top of the storage hopper (36) is provided with a suction device (26), and the bottom of the storage hopper (36) is provided with a discharge device (27).