Feeding device for live chicken breeding
By designing a feeding device for live chicken breeding, including a screw cap driven mixing rod, a cutting pipe and a screw conveying rod, automatic mixing and timed and quantitative cutting of feed are achieved, solving the problem of inconvenient disassembly of grain pallets in the prior art and lack of automatic feeding, saving labor and improving the efficiency of equipment use.
Patent Information
- Application Number
- CN202421659087.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-15
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-07-15
AI Technical Summary
After the existing feed feed device is fed, the grain pallet is fixedly connected to the equipment, which makes it inconvenient to disassemble, clean and replace, and lacks automatic feeding function, requiring manual observation and manual feeding to increase labor burden.
A feeding device for live chicken breeding is designed, including a cylinder, a grain pallet, a barrel, a feeding pipe and a quantitative feeding assembly. Feed mixing is achieved by a screw cap and a mixing rod driven by the first motor, and the discharge pipe and the screw conveyor rod achieve timed and quantitative discharge. The auxiliary cleaning components are designed with curved sliders and limit blocks for quick removal and cleaning.
Automatic mixing of feed and regular and quantitative cutting are realized, reducing the frequency of manual feeding, saving labor, and the grain pallets can be quickly disassembled and cleaned, improving the efficiency and convenience of equipment.
Smart Images

Figure CN223008183U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of feeding equipment for breeding, in particular to a feeding device for live chicken breeding. Background Art
[0002] Chicken farming is one of the important parts of agricultural breeding. It is a production behavior that uses the physiological functions of chickens to convert plant feed into animal energy through artificial feeding and breeding to obtain chicken meat and eggs by means of mountain chicken farming, plastic greenhouse chicken farming, cage chicken farming, etc.
[0003] After the existing feed feeding device finishes feeding, since the grain trays on it are mostly fixedly connected to the device, it is inconvenient to disassemble, clean and replace the grain trough trays. Moreover, the existing feed feeding device does not have an automatic feeding function. When people use the feed feeding device, they cannot automatically add feed, and people need to constantly observe and manually add feed, which increases people's labor and is inconvenient for people to use. In view of the above problems, the inventor proposes a feeding device for live chicken breeding to solve the above problems. Summary of the Utility Model
[0004] In order to solve the problems that after the existing feed feeding device finishes feeding, since the grain trays on it are mostly fixedly connected to the device, it is inconvenient to disassemble, clean and replace the grain trough trays, and the existing feed feeding device does not have an automatic feeding function. When people use the feed feeding device, they cannot automatically add feed, and people need to constantly observe and manually add feed, which increases people's labor and is inconvenient for people to use; the purpose of the utility model is to provide a feeding device for live chicken breeding.
[0005] To solve the above technical problems, the utility model adopts the following technical scheme: A feeding device for live chicken breeding includes a cylinder. A fixed rod is fixedly arranged on the lower surface of the cylinder. A grain tray is fixedly arranged at the lower end of the fixed rod. A material cylinder is fixedly arranged inside the cylinder. A feeding pipe is fixedly arranged on the lower surface of the material cylinder. A notch is formed on the outer surface of the cylinder. A rotary cover is threadedly connected to the cylinder. A first motor is fixedly arranged on the upper surface of the rotary cover. A stirring rod is rotatably arranged on the lower surface of the rotary cover. The output end of the first motor penetrates through the rotary cover and is fixedly connected to the stirring rod. A scraper is fixedly arranged on the side of the stirring rod close to the inner surface of the cylinder. The rotary cover and the cylinder are in threaded fit through internal and external threads. The scraper is in movable contact with the inner surface of the material cylinder. The top end of the conical block is arranged inside the discharge pipe. A valve is connected to the feeding pipe. Quantitative feeding components are connected to both the feeding pipe and the cylinder. A conical block is arranged inside the grain tray. An auxiliary cleaning component is connected to the grain tray;
[0006] The auxiliary cleaning component includes a first half-tray housing and a second half-tray housing. The first half-tray housing, the second half-tray housing are movably fitted to the inner surface of the grain tray, and the first half-tray housing, the second half-tray housing are movably fitted to the outer surface of the conical block. Connecting blocks are fixedly provided on the outer surfaces of both the first half-tray housing and the second half-tray housing. An arc-shaped limiting groove is formed on the side surface of the connecting block. A connecting groove is formed on the upper surface of the grain tray. The connecting block is in movable contact with the inner surface of the connecting groove. An arc-shaped fixing groove is formed on the upper surface of the grain tray. Arc-shaped springs are fixedly provided on the inner surface of the arc-shaped fixing groove. There are two arc-shaped springs, and the arc-shaped springs are symmetrically arranged in the arc-shaped fixing groove and the arc-shaped sliding plate. The other end of the arc-shaped spring is fixedly provided with an arc-shaped sliding plate. An arc-shaped limiting block is fixedly provided on the side of the arc-shaped sliding plate away from the arc-shaped spring. The other side of the arc-shaped limiting block is fixedly provided with an arc-shaped limiting block. The arc-shaped limiting block movably penetrates through the connecting groove and is movably inserted into the arc-shaped limiting groove.
[0007] Preferably, the quantitative feeding component includes a round tube. The round tube is fixedly connected to the lower surface of the feeding tube. A spiral conveyor rod is rotatably provided on the inner surface of the round tube. The spiral conveyor rod is tangent to the inner wall of the round tube. A fixing plate is fixedly provided between the inner surface of the round tube and the inner surface of the cylinder. A driving motor is fixedly provided on the upper surface of the fixing plate. A connecting rod is provided at the output end of the driving motor. The connecting rod penetrates through the round tube, and the other end of the connecting rod is fixedly connected to one end of the spiral conveyor rod. An outlet pipe is fixedly provided on the outer surface of the round tube away from the driving motor. A relay is fixedly provided on the upper surface of the fixing plate. The relay is electrically connected to the driving motor.
[0008] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0009] 1. When the present utility model needs to be cleaned after feeding the feed, an arc-shaped sliding plate can be moved to make the arc-shaped limiting block disengage from the arc-shaped limiting groove, first release the limit on the first half-tray housing, take it out, and similarly, another arc-shaped sliding plate can be moved to take out the second half-tray housing. After the cleaning is completed, the arc-shaped sliding plate is pulled again, the half-tray housing is placed between the cylinder and the grain tray, the connecting block enters the connecting groove, and releasing the arc-shaped sliding plate can make the arc-shaped limiting block enter the arc-shaped limiting groove, which is convenient for quick disassembly and cleaning;
[0010] 2. By turning on the first motor, the stirring rod can be rotated, so that the feed can be mixed. After the mixing is completed, the valve is rotated to make the mixed feed enter the round tube along the feeding tube. The relay can be used to control the opening time period and duration of the driving motor. When the driving motor is turned on, it can drive the connecting rod to rotate, so that the spiral conveyor rod can rotate to convey the feed forward. The feed falls along the outlet pipe and contacts the conical block, so that the feed can be scattered and fall into the first half-tray housing and the second half-tray housing. The relay cooperates with the driving motor to realize timed and quantitative feeding, thus saving labor. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0012] Figure 1 It is a schematic diagram of the structure of the utility model.
[0013] Figure 2 This is a schematic diagram of the structure of the stirring rod of the utility model.
[0014] Figure 3 It is a schematic diagram of the cross-sectional structure of the quantitative feeding component and the circular tube of the utility model.
[0015] Figure 4 This is a schematic diagram of the structure of the auxiliary cleaning component of the utility model.
[0016] Figure 5 For this utility model Figure 4 Enlarged structural diagram at A in the middle.
[0017] In the figure: 1. Cylinder; 11. Fixed rod; 12. Grain tray; 13. Material barrel; 14. Notch; 2. Auxiliary cleaning assembly; 21. First half tray shell; 22. Second half tray shell; 23. Connecting block; 24. Arc limit groove; 25. Connecting groove; 26. Arc fixed groove; 27. Arc spring; 28. Arc slide plate; 29. Arc limit block; 3. Screw cap; 31. First motor; 32. Stirring rod; 33. Scraper; 4. Feeding pipe; 41. Valve; 5. Quantitative feeding assembly; 51. Round tube; 511. Screw conveying rod; 52. Discharging pipe; 53. Driving motor; 54. Connecting rod; 55. Fixed plate; 56. Relay; 6. Conical block. DETAILED DESCRIPTION
[0018] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0019] Embodiment 1: Figures 1-5As shown in the figure, the utility model provides a feeding device for live chicken breeding, which includes a cylinder 1. A fixed rod 11 is fixedly arranged on the lower surface of the cylinder 1, and a grain tray 12 is fixedly arranged at the lower end of the fixed rod 11. A feeding cylinder 13 is fixedly arranged inside the cylinder 1. A feeding pipe 4 is fixedly arranged on the lower surface of the feeding cylinder 13. A valve 41 is connected to the feeding pipe 4. Quantitative feeding components 5 are connected to both the feeding pipe 4 and the cylinder 1. A conical block 6 is arranged inside the grain tray 12, and an auxiliary cleaning component 2 is connected to the grain tray 12;
[0020] The auxiliary cleaning component 2 includes a first half-tray housing 21 and a second half-tray housing 22. The first half-tray housing 21, the second half-tray housing 22 are movably attached to the inner surface of the grain tray 12, and the first half-tray housing 21, the second half-tray housing 22 are movably attached to the outer surface of the conical block 6. Connecting blocks 23 are fixedly arranged on the outer surfaces of both the first half-tray housing 21 and the second half-tray housing 22. An arc-shaped limiting groove 24 is formed on the side surface of the connecting block 23. A connecting groove 25 is formed on the upper surface of the grain tray 12. The connecting block 23 is in movable contact with the inner surface of the connecting groove 25. An arc-shaped fixing groove 26 is formed on the upper surface of the grain tray 12. An arc-shaped spring 27 is fixedly arranged on the inner surface of the arc-shaped fixing groove 26. The other end of the arc-shaped spring 27 is fixedly provided with an arc-shaped sliding plate 28. An arc-shaped limiting block 29 is fixedly arranged on the side of the arc-shaped sliding plate 28 away from the arc-shaped spring 27. The arc-shaped limiting block 29 movably penetrates through the connecting groove 25 and is movably inserted into the arc-shaped limiting groove 24. When cleaning is required after feeding, one arc-shaped sliding plate 28 can be moved to disengage the arc-shaped limiting block 29 from the arc-shaped limiting groove 24, first releasing the limit on the first half-tray housing 21 and taking it out. Similarly, the other arc-shaped sliding plate 28 can be moved to take out the second half-tray housing 22. After cleaning is completed, the arc-shaped sliding plate 28 is pulled again, and the half-tray housing is placed between the cylinder 1 and the grain tray 12. The connecting block 23 enters the connecting groove 25, and releasing the arc-shaped sliding plate 28 allows the arc-shaped limiting block 29 to enter the arc-shaped limiting groove 24, facilitating quick disassembly and cleaning.
[0021] A rotary cover 3 is threadedly connected to the cylinder 1. A first motor 31 is fixedly arranged on the upper surface of the rotary cover 3. A stirring rod 32 is rotatably arranged on the lower surface of the rotary cover 3. The output end of the first motor 31 penetrates through the rotary cover 3, and the output end of the first motor 31 is fixedly connected to the stirring rod 32. A scraping plate 33 is fixedly arranged on the side of the stirring rod 32 close to the inner surface of the cylinder 1. The scraping plate 33 is in movable contact with the inner surface of the feeding cylinder 13. The rotary cover 3 and the cylinder 1 are matched by internal and external threads, which is convenient for disassembly.
[0022] By adopting the above technical solution, by connecting the rotary cover 3 to the cylinder 1 and turning on the first motor 31, the stirring rod 32 can be rotated, thereby mixing the feed.
[0023] There are two arc-shaped springs 27, and the arc-shaped springs 27 are symmetrically arranged between the arc-shaped fixed groove 26 and the arc-shaped sliding plate 28.
[0024] By adopting the above technical solution, the stability of the connection is improved.
[0025] A notch 14 is formed on the outer surface of the cylinder 1.
[0026] By adopting the above technical solution, it is convenient to rotate the valve 41.
[0027] The top end of the conical block 6 is arranged inside the discharge pipe 52.
[0028] By adopting the above technical solution, the feed can be dispersed by the conical block 6.
[0029] Embodiment 2: As Figure 1 shown, the quantitative feeding assembly 5 includes a round pipe 51. The round pipe 51 is fixedly connected to the lower surface of the feeding pipe 4. A spiral conveyor rod 511 is rotatably arranged on the inner surface of the round pipe 51. The spiral conveyor rod 511 is tangent to the inner wall of the round pipe 51. A fixed plate 55 is fixedly arranged between the round pipe 51 and the inner surface of the cylinder 1. A driving motor 53 is fixedly arranged on the upper surface of the fixed plate 55. A connecting rod 54 is arranged at the output end of the driving motor 53. The connecting rod 54 penetrates through the round pipe 51. The other end of the connecting rod 54 is fixedly connected to one end of the spiral conveyor rod 511. A discharge pipe 52 is fixedly arranged on the outer surface of the round pipe 51 away from the driving motor 53. A relay 56 is fixedly arranged on the upper surface of the fixed plate 55. The relay 56 is electrically connected to the driving motor 53 to control the time period and duration of discharging. By starting the first motor 31, the stirring rod 32 can be rotated, so that the feed can be mixed. After the mixing is completed, by rotating the valve 41, the mixed feed can enter the round pipe 51 along the feeding pipe 4. The relay 56 can control the time period and duration of starting the driving motor 53. When the driving motor 53 is started, it can drive the connecting rod 54 to rotate, so that the spiral conveyor rod 511 can rotate to convey the feed forward. The feed falls along the discharge pipe 52 and contacts the conical block 6, so that the feed can be dispersed and fall into the first half tray housing 21 and the second half tray housing 22. By the cooperation of the relay 56 and the driving motor 53, timed and quantitative feeding can be realized, thus saving labor.
[0030] Working principle: When the utility model is in use, feed can be put into the feed cylinder 13. Then, by connecting the rotary cover 3 to the cylinder 1 and turning on the first motor 31, the stirring rod 32 can be rotated to mix the feed. After the mixing is completed, by turning the valve 41, the mixed feed can enter the round tube 51 along the feeding pipe 4. The relay 56 can be used to control the start time period and duration of the driving motor 53. When the driving motor 53 is turned on, it can drive the connecting rod 54 to rotate, so that the spiral conveyor rod 511 rotates to convey the feed forward. The feed falls along the discharge pipe 52 and contacts the conical block 6, so that the feed can be dispersed and fall into the first half-tray housing 21 and the second half-tray housing 22. By cooperating the relay 56 with the driving motor 53, timed and quantitative feeding can be achieved, thus saving labor. And when cleaning is required after feeding, by moving an arc-shaped slide plate 28, the arc-shaped limit block 29 can be disengaged from the arc-shaped limit groove 24, first releasing the limit on the first half-tray housing 21 and taking it out. Similarly, another arc-shaped slide plate 28 can be moved to take out the second half-tray housing 22. After cleaning is completed, pulling the arc-shaped slide plate 28 again, putting the half-tray housing between the cylinder 1 and the grain tray 12, the connecting block 23 enters the connecting groove 25, and loosening the arc-shaped slide plate 28 can make the arc-shaped limit block 29 enter the arc-shaped limit groove 24, which is convenient for quick disassembly and cleaning.
[0031] Obviously, those skilled in the art can make various modifications and variations to the present utility model without departing from the spirit and scope of the present utility model. Thus, if these modifications and variations of the present utility model fall within the scope of the claims of the present utility model and their equivalent technologies, the present utility model also intends to include these modifications and variations.
Claims
1. A feeding device for raising live chickens, comprising a cylinder (1), characterized in that: A fixing rod (11) is fixedly provided on the lower surface of the cylinder (1), a grain tray (12) is fixedly provided on the lower end of the fixing rod (11), a material barrel (13) is fixedly provided inside the cylinder (1), a feeding pipe (4) is fixedly provided on the lower surface of the material barrel (13), a valve (41) is connected to the feeding pipe (4), a quantitative feeding assembly (5) is connected to the feeding pipe (4) and the cylinder (1), a conical block (6) is provided inside the grain tray (12), and an auxiliary cleaning assembly (2) is connected to the grain tray (12); The auxiliary cleaning assembly (2) comprises a first half-tray shell (21) and a second half-tray shell (22); the first half-tray shell (21) and the second half-tray shell (22) are movably fitted with the inner surface of the grain tray (12); the first half-tray shell (21) and the second half-tray shell (22) are movably fitted with the outer surface of the conical block (6); the outer surfaces of the first half-tray shell (21) and the second half-tray shell (22) are both fixedly provided with a connecting block (23); the side surface of the connecting block (23) is provided with an arc-shaped limiting groove (24); the upper surface of the grain tray (12) is provided with a connecting groove (25); the connecting block (23) is provided with a connecting groove (25) and the connecting groove (25) is provided with a connecting groove (25) The block (23) is in active contact with the inner surface of the connecting groove (25); the upper surface of the grain tray (12) is provided with an arc-shaped fixing groove (26); the inner surface of the arc-shaped fixing groove (26) is fixedly provided with an arc-shaped spring (27); the other end of the arc-shaped spring (27) is fixedly provided with an arc-shaped slide plate (28); the side of the arc-shaped slide plate (28) away from the arc-shaped spring (27) is fixedly provided with an arc-shaped limit block (29); the other side of the arc-shaped limit block (29) is fixedly provided with an arc-shaped limit block (29); the arc-shaped limit block (29) movably penetrates the connecting groove (25); and the arc-shaped limit block (29) is movably inserted into the arc-shaped limit groove (24).
2. A feeding device for raising live chickens as claimed in claim 1, characterized in that: The quantitative unloading component (5) comprises a circular tube (51), wherein the circular tube (51) is fixedly connected to the lower surface of the unloading tube (4), a spiral conveying rod (511) is rotatably provided on the inner surface of the circular tube (51), and the spiral conveying rod (511) is tangent to the inner wall of the circular tube (51), a fixing plate (55) is fixedly provided between the circular tube (51) and the inner surface of the cylinder (1), a driving motor (53) is fixedly provided on the upper surface of the fixing plate (55), a connecting rod (54) is provided at the output end of the driving motor (53), the connecting rod (54) passes through the circular tube (51), and the other end of the connecting rod (54) is fixedly connected to one end of the spiral conveying rod (511), and a discharging tube (52) is fixedly provided on the outer surface of the circular tube (51) away from the driving motor (53).
3. A feeding device for raising live chickens as claimed in claim 1, characterized in that: The cylinder (1) is threadedly connected with a rotary cover (3), a first motor (31) is fixedly provided on the upper surface of the rotary cover (3), a stirring rod (32) is rotatably provided on the lower surface of the rotary cover (3), an output end of the first motor (31) passes through the rotary cover (3), the output end of the first motor (31) is fixedly connected to the stirring rod (32), a scraper (33) is fixedly provided on a side of the stirring rod (32) close to the inner surface of the cylinder (1), and the scraper (33) is in active contact with the inner surface of the barrel (13).
4. A feeding device for raising live chickens as claimed in claim 1, characterized in that: Two arc-shaped springs (27) are provided, and the arc-shaped springs (27) are symmetrically arranged on the arc-shaped fixing groove (26) and the arc-shaped sliding plate (28).
5. A feeding device for raising live chickens as claimed in claim 1, characterized in that: The outer surface of the cylinder (1) is provided with a notch (14).
6. A feeding device for raising live chickens as claimed in claim 2, characterized in that: The top end of the conical block (6) is arranged inside the discharge pipe (52).
7. A feeding device for raising live chickens as claimed in claim 2, characterized in that: A relay (56) is fixedly provided on the upper surface of the fixing plate (55), and the relay (56) is electrically connected to the driving motor (53).
8. A feeding device for raising live chickens as claimed in claim 3, characterized in that: The screw cap (3) and the cylinder (1) are matched with each other via internal threads and external threads.