Automatic auger type breeding pigeon feeding system
Through the automated dragon-wrenching breeding feeding system, the problem of time-consuming and labor-consuming traditional manual feeding is solved, and the convenient and time-saving automated feeding effect of breeding pigeon feeding is achieved.
Patent Information
- Application Number
- CN202422585198.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-25
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-10-25
AI Technical Summary
The traditional method of artificial feeding breeding pigeons is time-consuming and labor-intensive, and the feeding work is large.
An automated twisted pigeon feeding system is designed, and the feed is automatically transported to each pigeon feeding rack unit through the feeding unit. The feed is transmitted to the feed box next to each pigeon cage using a screw feeding tube to realize automatic feeding.
It reduces the time and labor force for artificial feeding, realizes the convenience and efficiency of breeding pigeon feeding, and reduces the labor intensity.
Smart Images

Figure CN223247304U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of breeding pigeon feeding, in particular to an automated auger-type breeding pigeon feeding system. Background Art
[0002] Breeder pigeons are specialized pigeons used to produce the next generation of pigeons. Breeder pigeons include both male and female breeder pigeons. Breeder pigeons are required to possess excellent genetics, be healthy and free of infectious diseases, and possess excellent breeding performance, among other characteristics. Selecting a good breeder pigeon requires at least four stages of selection: First, select parent stock or grandparent stock pigeons with excellent appearance, production performance, and health to serve as the parent stock pigeons for breeding.
[0003] When breeding pigeons, when feeding a large number of pigeons, the traditional feeding method is done manually, and the food for the pigeons is manually put into the feeding box of each pigeon cage, and the feed in the feeding box is for the pigeons to eat. However, this method of manually putting feed for feeding is time-consuming and labor-intensive, which makes the feeding workload large. Summary of the Invention
[0004] The purpose of the utility model is to solve the shortcomings of the prior art and to propose an automated auger-type breeding pigeon feeding system.
[0005] In order to achieve the above purpose, the present invention adopts the following technical solutions:
[0006] The automated auger-type breeding pigeon feeding system includes a feeding unit, a plurality of breeding pigeon feeding rack units are evenly arranged in a horizontal direction on one side of the feeding unit, the breeding pigeon feeding rack unit includes a base, a breeding pigeon cage frame is provided on the upper surface of the base, a support frame is provided on the upper surface of the base on one side of the pigeon cage frame, a plurality of pigeon cages are symmetrically arranged on the pigeon cage frame, and a third screw feeding pipe is provided on one side of each layer of pigeon cages;
[0007] A plurality of feeding boxes are evenly arranged longitudinally on the body of the third screw feeding tube, the feeding boxes are communicated with the inner cavity of the third screw feeding tube, the feeding boxes are all arranged on one side wall of the pigeon cage, and the feeding boxes are communicated with the pigeon cage.
[0008] In addition, the preferred structure is that the feeding unit includes a mixing hopper, a material pool is provided on one side of the mixing hopper, a screw-type extraction pipe is provided on the mixing hopper, the extraction end of the screw-type extraction pipe is located at the material pool, and a return fan is connected to the top of the mixing hopper.
[0009] In addition, a preferred structure is that a first screw feeding pipe is provided through the mixing hopper, a first motor is provided at one end of the first screw feeding pipe close to the mixing hopper, and a first hopper is connected to the other end of the first screw feeding pipe away from the first motor.
[0010] In addition, the preferred structure is that the first hopper is connected to the first screw feeding pipe, the first hopper is connected to the second screw feeding pipe, the second screw feeding pipe is located above the breeding pigeon breeding rack unit, and the bottom of the second screw feeding pipe is evenly arranged in the horizontal direction with multiple second hoppers.
[0011] In addition, a preferred structure is that the second hopper is placed on a support frame, and a plurality of feeding pipes are connected to the second hopper, and the feeding pipes on the second hopper are respectively connected to the third screw feeding pipe of each layer.
[0012] In addition, a preferred structure is that a transmission belt is provided at the end of the third screw feeding pipe on one side of the conveying pipe, and a fourth motor is provided at the end of the third screw feeding pipe on the bottom layer.
[0013] In addition, the preferred structure is that the other end of the third screw feeding pipe away from the conveying pipe is connected to a discharge pipe, a third hopper is provided at the bottom of the discharge pipe, a screw return pipe is provided horizontally at the bottom of the third hopper, and the third hopper is connected to the screw return pipe.
[0014] In addition, the preferred structure is that a second motor is provided at one end of the screw return pipe, a fourth screw feeding pipe is connected to the other end of the screw return pipe away from the second motor, and the other end of the fourth screw feeding pipe away from the screw return pipe is connected to the return fan.
[0015] The beneficial effects of the present invention are as follows: the feed unit is provided to deliver the feed to each breeding pigeon breeding rack unit, the first screw feeding pipe and the second screw feeding pipe are provided to deliver the feed to each second hopper, and then the third screw feeding pipe provided next to each layer of pigeon cages can automatically deliver the feed to each pigeon cage through screw transmission, so that the breeding pigeons can eat at the feeding box, which eliminates the need for manual feeding. It is only necessary to fill the mixing hopper with feed regularly, and subsequent feeding only needs to be carried out through machine automation. The automated breeding pigeon feeding system designed by this utility model is more convenient than manual feeding, and saves time and effort. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 Schematic diagram of the overall structure of the feeding system Figure 1 ;
[0017] Figure 2 Schematic diagram of the overall structure of the feeding system Figure 2 ;
[0018] Figure 3 Schematic diagram of the structure of the breeding pigeon breeding rack unit Figure 1 ;
[0019] Figure 4 Schematic diagram of the structure of the breeding pigeon breeding rack unit Figure 2 .
[0020] In the figure: 01 feeding unit, 02 breeding pigeon breeding rack unit, 1 mixing hopper, 2 material tank, 3 screw extraction pipe, 4 first screw feeding pipe, 41 first motor, 5 first hopper, 6 second screw feeding pipe, 7 return fan, 8 second motor, 9 screw return pipe, 10 third motor, 11 base, 12 support frame, 13 pigeon cage rack, 14 second hopper, 15 pigeon cage, 16 feeding pipe, 17 third screw feeding pipe, 18 fourth motor, 19 transmission belt, 20 discharge pipe, 21 feeding box, 22 third hopper. DETAILED DESCRIPTION
[0021] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0022] Reference Figure 1-4 The automated auger-type breeding pigeon feeding system includes a feeding unit 01, and a plurality of breeding pigeon breeding rack units 02 are evenly arranged in the horizontal direction on one side of the feeding unit 01, characterized in that the breeding pigeon breeding rack unit 02 includes a base 11, and a breeding pigeon cage rack 13 is provided on the upper surface of the base 11, and a support frame 12 is provided on the upper surface of the base 11 on one side of the pigeon cage rack 13. A plurality of pigeon cages 15 are symmetrically arranged on the pigeon cage rack 13, and a third screw feeding pipe 17 is provided on one side of each layer of pigeon cages 15. A plurality of feeding boxes 21 are evenly arranged in the longitudinal direction on the tube body of the third screw feeding pipe 17, and the feeding boxes 21 are connected to the inner cavity of the third screw feeding pipe 17, and the feeding boxes 21 are all arranged on one side wall of the pigeon cage 15, and the feeding boxes 21 are connected to the pigeon cage 15. The third screw feeding pipe 17 continuously delivers the feed to each feeding box 21 by rotating the screw.
[0023] Among them, the feeding unit 01 includes a mixing hopper 1, a material pool 2 is provided on one side of the mixing hopper 1, a screw-type extraction pipe 3 is provided on the mixing hopper 1, and the extraction end of the screw-type extraction pipe 3 is located at the material pool 2. The material pool 2 is used to store feed, and a return fan 7 is connected to the top of the mixing hopper 1.
[0024] Among them, a first screw feeding pipe 4 is passed through the mixing hopper 1, and a first motor 41 is provided at one end of the first screw feeding pipe 4 close to the mixing hopper 1, and a first hopper 5 is connected to the other end of the first screw feeding pipe 4 away from the first motor 41. The first hopper 5 is communicated with the first screw feeding pipe 4, and a second screw feeding pipe 6 is connected to the first hopper 5. The second screw feeding pipe 6 is located above the breeding pigeon breeding rack unit 02, and a plurality of second hoppers 14 are evenly arranged in a horizontal direction at the bottom of the second screw feeding pipe 6. The second screw feeding pipe 6 is used to transfer feed to each second hopper 14.
[0025] Moreover, the second hopper 14 is placed on the support frame 12, and a plurality of feed pipes 16 are connected to the second hopper 14. The feed pipes 16 on the second hopper 14 are respectively connected to the third screw feeding pipe 17 of each layer. The third screw feeding pipe 17 is provided with a transmission belt 19 at the end of one side of the feed pipe 16, and a fourth motor 18 is provided at the end of one side of the third screw feeding pipe 17 located at the bottom layer. The transmission belt 19 facilitates the feeding of the third screw feeding pipes 17 of the three layers.
[0026] Among them, the other end of the third screw feeding pipe 17 away from the conveying pipe 16 is connected to a discharge pipe 20, and a third hopper 22 is provided at the bottom of the discharge pipe 20. A screw return pipe 9 is horizontally provided at the bottom of the third hopper 22. The third hopper 22 is connected to the screw return pipe 9. A second motor 8 is provided at the end of one side of the screw return pipe 9. A fourth screw feeding pipe 23 is connected to the end of the screw return pipe 9 away from the other side of the second motor 8. The other end of the fourth screw feeding pipe 23 away from the screw return pipe 9 is connected to the return fan 7. The screw return pipe 9 is used to transfer the feed to the fourth screw feeding pipe 23, and the excess feed is returned to the mixing hopper through the return fan 7 through the fourth screw feeding pipe 23.
[0027] In this embodiment, after the mixing hopper 1 mixes the feed, the feed in the material pool 2 is pumped into the mixing hopper 1 through the screw extraction pipe 3. When the breeding pigeons in the pigeon cage 15 need to be fed, the operator controls the first motor 41 to drive the first screw feeding pipe 4 to rotate, so that the first screw feeding pipe 4 rotates to feed the first hopper 5 on one side. The screw extraction pipe 3, the first screw feeding pipe 4, the second screw feeding pipe 6, the third screw feeding pipe 17, and the screw return pipe 9 are all existing technologies. They are a kind of screw feeding device, which is well known to people in the field of screw transmission feeding, so there is no need to elaborate on its structure and principle.
[0028] After the feed is sent to the first hopper 5, the feed in the first hopper 5 is spirally transmitted to each second hopper 14 through the second screw feeding pipe 6 and the second motor 8. Then the second hopper 14 sends the feed to the third screw feeding pipe 17 of each layer through the feeding pipe 16. At this time, the fourth motor 18 cooperates with the transmission belt 19 to drive the third screw feeding pipe 17 of each layer to perform spiral transmission and feeding, so that the third screw feeding pipe 17 slowly rotates the screw to fill the feed in the pipe, so that the feed exists At the feeding box 21, the breeding pigeons can eat the feed at the feeding box 21 at this time, and some feed that cannot be eaten will be sent to the discharge pipe 20 along with the transmission of the third screw feeding pipe 17. The discharge pipe 20 allows the excess feed to be discharged into the third hopper 22, and then through the screw return pipe 9 and the third motor 10, the screw return pipe 9 is used to transmit the feed to the fourth screw feeding pipe 23, and the excess feed is returned to the mixing hopper through the return fan 7 through the fourth screw feeding pipe 23, thus realizing the recycling of the feed.
[0029] In the present invention, the feed is delivered to each breeding pigeon breeding rack unit 02 through the provided feeding unit 01, the provided first screw feeding tube 4 and the second screw feeding tube 6 can deliver the feed to each second hopper 14, and then the third screw feeding tube 17 provided next to each layer of pigeon cage 15 can automatically transmit the feed to each pigeon cage 15 through screw transmission, so that the breeding pigeons can eat at the feeding box 21, so that there is no need for manual feeding and breeding. It is only necessary to fill the mixing hopper 1 with feed regularly, and subsequent feeding and breeding only needs to be carried out through machine automation. The automated breeding pigeon feeding system designed in this utility model is more convenient than manual feeding, and saves time and effort.
[0030] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.
Claims
1. An automated auger-type pigeon feeding system, comprising a feeding unit (01), wherein a plurality of pigeon feeding rack units (02) are evenly arranged in a horizontal direction on one side of the feeding unit (01), characterized in that: The breeding pigeon raising frame unit (02) comprises a base (11), a breeding pigeon cage frame (13) is provided on the upper surface of the base (11), a support frame (12) is provided on the upper surface of the base (11) and located on one side of the pigeon cage frame (13), a plurality of pigeon cages (15) are symmetrically provided on the pigeon cage frame (13), and a third screw feeding pipe (17) is provided on one side of each layer of pigeon cages (15); A plurality of feeding boxes (21) are evenly arranged in the longitudinal direction on the body of the third screw feeding tube (17), the feeding boxes (21) are communicated with the inner cavity of the third screw feeding tube (17), and the feeding boxes (21) are all arranged on a side wall of the pigeon cage (15), and the feeding boxes (21) are communicated with the pigeon cage (15).
2. The automated auger-type breeding pigeon feeding system according to claim 1, characterized in that: The feeding unit (01) comprises a mixing hopper (1), a material pool (2) is provided on one side of the mixing hopper (1), a screw-type extraction pipe (3) is provided on the mixing hopper (1), the extraction end of the screw-type extraction pipe (3) is located at the material pool (2), and a return fan (7) is connected to the top of the mixing hopper (1).
3. The automated auger-type breeding pigeon feeding system according to claim 2, characterized in that: A first screw feeding pipe (4) is provided through the mixing hopper (1); a first motor (41) is provided at one end of the first screw feeding pipe (4) close to the mixing hopper (1); and a first hopper (5) is connected to the other end of the first screw feeding pipe (4) away from the first motor (41).
4. The automated auger-type breeding pigeon feeding system according to claim 3, characterized in that: The first hopper (5) is in communication with the first screw feeding pipe (4), a second screw feeding pipe (6) is connected to the first hopper (5), the second screw feeding pipe (6) is located above the breeding pigeon rearing rack unit (02), and a plurality of second hoppers (14) are evenly arranged and connected to the bottom of the second screw feeding pipe (6) in a transverse direction.
5. The automated auger-type breeding pigeon feeding system according to claim 4, characterized in that: The second hopper (14) is placed on the support frame (12), and a plurality of feeding pipes (16) are connected to the second hopper (14). The feeding pipes (16) on the second hopper (14) are respectively connected to the third screw feeding pipe (17) of each layer.
6. The automated auger-type breeding pigeon feeding system according to claim 5, characterized in that: A transmission belt (19) is provided at the end of the third screw feeding pipe (17) on one side of the conveying pipe (16), and a fourth motor (18) is provided at the end of the third screw feeding pipe (17) on the bottom layer.
7. The automated auger-type breeding pigeon feeding system according to claim 6, characterized in that: The other end of the third screw feeding pipe (17) away from the conveying pipe (16) is connected to a discharge pipe (20), a third hopper (22) is provided at the bottom of the discharge pipe (20), a screw return pipe (9) is transversely provided at the bottom of the third hopper (22), and the third hopper (22) is connected to the screw return pipe (9).
8. The automated auger-type breeding pigeon feeding system according to claim 7, characterized in that: A second motor (8) is provided at one end of the screw return pipe (9), a fourth screw feed pipe (23) is connected to the other end of the screw return pipe (9) away from the second motor (8), and the other end of the fourth screw feed pipe (23) away from the screw return pipe (9) is connected to the return blower (7).