Intelligent feeding device for large-scale chicken raising

By introducing a driving unit and a feed dispersion unit into the feeding pack, the problem of uneven distribution of feed in the feeding tank is solved, and the uniformity of feeding of broilers and the quality of chicken development and growth are improved.

CN222982241UActive Publication Date: 2025-06-17KUNMING UNIVERSITY
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Patent Information

Application Number
CN202421996795.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-19
Publication Date
2025-06-17
Estimated Expiration
2034-08-19

AI Technical Summary

Technical Problem

During the large-scale breeding process, existing feeding devices cannot ensure the uniform distribution of feed in the feeding tank, resulting in uneven feeding of broilers and affecting the development and growth of chickens.

Method used

An intelligent feeding loader is designed, including a driving unit and a feed dispersion unit. The driving unit drives the dispersion plate to slide on the inner side wall of the feeding groove by driving the motor, eccentric wheel and limiting column, and disperses the uneven feed evenly through the dispersion groove.

Benefits of technology

The feed in the feed tank is evenly distributed, ensuring that the broiler eats evenly, improving the quality of the chicken's development and growth, and facilitating the disassembly and assembly and cleaning of the dispersion plates.

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Abstract

The utility model discloses an intelligent feeding device for large-scale chicken raising, which relates to the technical field of large-scale raising, and comprises a support frame, a feeding trough is arranged on the inner side wall of the support frame, a food storage box is arranged above the feeding trough, a driving unit is arranged on one side surface of the support frame, and the driving unit is arranged on the other side surface of the support frame. A feed dispersing unit is arranged on the inner side wall of the feeding trough, the food container is matched with the first movable trough, the second movable trough and the sliding block through a driving motor, an eccentric wheel and a limiting column, a plurality of dispersing plates can be driven to slide on the inner side wall of the feeding trough in a reciprocating mode, and uneven feed is evenly dispersed through the dispersing trough. According to the broiler chicken feeding device, uniform distribution of feed in the feeding trough is guaranteed, feeding of broiler chickens is facilitated, the scientific food intake is guaranteed, the development and growth quality of the chickens is improved, the dispersing plates are conveniently and rapidly disassembled and assembled, the distance between the dispersing plates is adjusted, the dispersing plates are conveniently cleaned, the distance between the dispersing plates is adjusted according to the feeding number of the chickens, and feeding of the chickens is facilitated.
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Description

Technical Field

[0001] The utility model relates to the technical field of large-scale breeding, in particular to an intelligent feeding device for large-scale chicken breeding. Background Technique

[0002] In the process of large-scale broiler breeding, it is necessary to feed broilers through a special feeding device to reduce the tediousness of manual feeding and enable more scientific feeding. For example, a Chinese patent discloses an intelligent feeding trough for large-scale chicken breeding (publication number CN216701321U). Although this feeding trough can clean the feeding device, due to the inability to ensure uniform accumulation of feed during feeding, broilers cannot ensure uniform consumption of feed during the feeding process. Uneven feed accumulation will affect the feed intake of broilers, and broilers cannot ensure a scientific feed intake during feeding, which affects the growth and development of chickens. Content of the Utility Model

[0003] Aiming at the deficiencies of the prior art, the utility model provides an intelligent feeding device for large-scale chicken breeding, which solves the problem that the uneven distribution of feed in the feeding trough affects the uniform feeding of broilers.

[0004] To achieve the above object, the utility model is realized through the following technical solutions: an intelligent feeding device for large-scale chicken breeding, including a support frame, the inner side wall of the support frame is provided with a feeding trough, a food storage box is arranged above the feeding trough, a driving unit is installed on one side surface of the support frame, and a feed dispersion unit is arranged on the inner side wall of the feeding trough;

[0005] The driving unit includes a mounting seat, one side surface of the mounting seat is connected with a driving motor, the driving end of the driving motor is connected with an eccentric wheel, a limiting column is eccentrically arranged on the end surface of the eccentric wheel, and a swing rod is connected to one side surface of the mounting seat.

[0006] As a further technical solution of the utility model, the feed dispersion unit includes a connecting head, one end of the connecting head is connected with a connecting seat, a plurality of dispersion plates are connected to one side surface of the connecting seat, mounting blocks are connected to the top surfaces of the plurality of dispersion plates, and a guiding groove is opened at the corresponding position of the surface of the connecting seat and the sliding path of the mounting block.

[0007] As a further technical solution of the utility model, a plurality of feed valves are arranged on the bottom surface of the food storage box, a sliding rail is connected to one side surface of the feeding trough, a first moving groove is opened at the corresponding position of the surface of the swing rod and the sliding path of the limiting column, a slider is connected to the top end of the swing rod, a notch is opened at the corresponding position of the upper surface of the sliding rail and the sliding path of the slider, a movable column is connected to one side surface of the slider, and a second moving groove is opened at the corresponding position of the surface of the swing rod and the sliding path of the movable column.

[0008] As a further technical solution of the present utility model, a guide rod is connected to one side surface of the feeding trough, through holes are correspondingly formed in the connection head and the guide rod, sliding rods are connected to both sides of the mounting block, an adjusting block is connected to the outer surfaces of the two sliding rods, and two pins are connected to one end of the adjusting block.

[0009] As a further technical solution of the present utility model, return springs are connected to the outer surfaces of the two sliding rods and located at the bottom surface of the adjusting block, a plurality of pin holes are correspondingly formed in the inner side wall of the guide groove and the pins, and a plurality of dispersion grooves are formed on the surfaces of the plurality of dispersion plates.

[0010] As a further technical solution of the present utility model, the inner diameter size of the slide rail is adapted to the sliding path of the slider, the inner diameter size of the first moving groove is adapted to the sliding path of the limiting column, the inner diameter size of the second moving groove is adapted to the sliding path of the moving column, and the input end of the feed valve is connected to the inside of the food storage box.

[0011] As a further technical solution of the present utility model, the inner diameter size of the feeding trough is adapted to the sliding path of the dispersion plate, the inner diameter size of the guide groove is adapted to the sliding path of the mounting block, the inner diameter size of the pin hole is adapted to the outer diameter size of the pin, the adjusting block is connected to the mounting block through the return spring and the sliding rod, and the connecting seat is connected to the dispersion plate through the mounting block.

[0012] Beneficial effects

[0013] The present utility model provides an intelligent feeding device for large-scale chicken farming. Compared with the prior art, the following beneficial effects are achieved:

[0014] 1. An intelligent feeding device for large-scale chicken farming, through the cooperation of the driving motor, the eccentric wheel, the limiting column, the first moving groove, the second moving groove and the slider, can drive a plurality of dispersion plates to slide reciprocally on the inner side wall of the feeding trough, and disperse the uneven feed evenly through the dispersion grooves, ensuring that the feed in the feeding trough is evenly distributed, facilitating the feeding of broiler chickens, ensuring the scientific feeding amount, and improving the growth quality of chickens.

[0015] 2. An intelligent feeding device for large-scale chicken farming, through the cooperation between the mounting block, the connecting seat, the guide groove, the adjusting block, the pin and the pin hole, can facilitate the quick disassembly and assembly of the dispersion plates, adjust the distance between the dispersion plates, facilitate the cleaning of the dispersion plates, and adjust the distance between the dispersion plates according to the feeding quantity of the chickens, facilitating the feeding of the chickens. Description of the drawings

[0016] Figure 1 It is a structural schematic diagram of an intelligent feeding device for large-scale chicken farming;

[0017] Figure 2 The front view of an intelligent feeding device for large-scale chicken farming;

[0018] Figure 3 An intelligent feeding device for large-scale chicken farming Figure 2 The A-A cross-sectional view in

[0019] Figure 4 The exploded structural schematic diagram of the feed dispersion unit of an intelligent feeding device for large-scale chicken farming;

[0020] Figure 5 An intelligent feeding device for large-scale chicken farming Figure 4 The enlarged view of A in

[0021] In the figure: 1, support frame; 2, feeding trough; 21, slide rail; 22, guide rod; 3, food storage box; 31, feed valve; 4, drive unit; 41, mounting seat; 42, drive motor; 43, eccentric wheel; 44, limit post; 45, swing rod; 46, first movable groove; 47, slider; 48, movable column; 49, second movable groove; 5, feed dispersion unit; 51, connector; 52, connection seat; 53, dispersion plate; 54, mounting block; 55, guide groove; 56, slide rod; 57, adjusting block; 58, return spring; 59, bolt; 501, pin hole; 502, dispersion groove. Specific embodiments

[0022] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0023] Please refer to Figures 1-4 , the present invention provides a technical solution for an intelligent feeding device for large-scale chicken farming: an intelligent feeding device for large-scale chicken farming, including a support frame 1, a feeding trough 2 is arranged on the inner side wall of the support frame 1, a food storage box 3 is arranged above the feeding trough 2, a drive unit 4 is installed on one side surface of the support frame 1, a feed dispersion unit 5 is arranged on the inner side wall of the feeding trough 2, the drive unit 4 includes a mounting seat 41, a drive motor 42 is connected to one side surface of the mounting seat 41, a drive end of the drive motor 42 is connected to an eccentric wheel 43, a limit post 44 is eccentrically arranged on the end surface of the eccentric wheel 43, and a swing rod 45 is connected to one side surface of the mounting seat 41.

[0024] As Figures 1-3As shown in the figure, the feed dispersion unit 5 includes a connector 51. One end of the connector 51 is connected to a connection seat 52. A plurality of dispersion plates 53 are connected to one side surface of the connection seat 52. Mounting blocks 54 are connected to the top surfaces of the plurality of dispersion plates 53. Guide grooves 55 are provided at the corresponding positions on the surface of the connection seat 52 and the sliding paths of the mounting blocks 54. A guide rod 22 is connected to one side surface of the feeding trough 2. A through hole is provided in the connector 51 corresponding to the guide rod 22. Slide rods 56 are connected to both sides of the mounting block 54. An adjusting block 57 is connected to the outer surfaces of the two slide rods 56. Two pins 59 are connected to one end of the adjusting block 57. Return springs 58 are connected to the outer surfaces of the two slide rods 56 and at the bottom surface of the adjusting block 57. A plurality of pin holes 501 are provided in the inner side wall of the guide groove 55 corresponding to the pins 59. A plurality of dispersion grooves 502 are provided on the surfaces of the plurality of dispersion plates 53. The inner diameter size of the feeding trough 2 is adapted to the sliding path of the dispersion plates 53. The inner diameter size of the guide groove 55 is adapted to the sliding path of the mounting block 54. The inner diameter size of the pin hole 501 is adapted to the outer diameter size of the pin 59. The adjusting block 57 is connected to the mounting block 54 through the return spring 58 and the slide rod 56. The connection seat 52 is connected to the dispersion plates 53 through the mounting block 54. It should be noted that the cooperation of the adjusting block 57 and the pins 59 with the pin holes 501 and the guide groove 55 can facilitate the disassembly, assembly and cleaning between the dispersion plates 53 and the connection seat 52, and facilitate the adjustment of the distance between the plurality of dispersion plates 53, and facilitate the adjustment of the feeding position according to the number of chickens.

[0025] As Figures 3-5 shown in the figure, a plurality of feed valves 31 are provided on the bottom surface of the food storage box 3. A slide rail 21 is connected to one side surface of the feeding trough 2. A first movable groove 46 is provided at the corresponding position on the surface of the swing rod 45 and the sliding path of the limit post 44. A slider 47 is connected to the top end of the swing rod 45. A notch is provided at the corresponding position on the upper surface of the slide rail 21 and the sliding path of the slider 47. A movable column 48 is connected to one side surface of the slider 47. A second movable groove 49 is provided at the corresponding position on the surface of the swing rod 45 and the sliding path of the movable column 48. The inner diameter size of the slide rail 21 is adapted to the sliding path of the slider 47. The inner diameter size of the first movable groove 46 is adapted to the sliding path of the limit post 44. The inner diameter size of the second movable groove 49 is adapted to the sliding path of the movable column 48. The input end of the feed valve 31 is connected to the inside of the food storage box 3. It should be noted that the rotation of the eccentric wheel 43 and the limit post 44 on the inner side wall of the first movable groove 46 can drive the left and right reciprocating swing of the swing rod 45, and make the slider 47 slide reciprocally along the inner side wall of the slide rail 21, driving the plurality of dispersion plates 53 to disperse the feed in the feeding trough 2 to prevent accumulation or uneven feed feeding.

[0026] Working principle of the utility model: When in use, when the feed in the feeding trough 2 is insufficient, multiple feed valves 31 automatically put the feed in the food storage box 3 into the feeding trough 2. After the feeding is completed, the driving motor 42 is started, and the eccentric wheel 43 drives the rotation of the limit post 44. Through the rotation of the limit post 44 on the inner side wall of the first movable groove 46, the swing rod 45 is driven to swing back and forth along the bottom end, so that the movable column 48 slides along the inner side wall of the second movable groove 49, driving the slider 47 to reciprocate linearly along the inner side of the slide rail 21, driving multiple dispersion plates 53 to slide on the inner side wall of the feeding trough 2, and evenly dispersing the accumulated feed in the feeding trough 2 through multiple dispersion grooves 502 to ensure uniform feeding;

[0027] Press the adjusting block 57 downward along the two slide rods 56, squeezing the two return springs 58, so that the two pins 59 connected to one end of the adjusting block 57 are separated from the pin holes 501, and then slide the mounting block 54 along the inner side wall of the guiding groove 55 until the mounting block 54 slides out of the inside of the guiding groove 55, and the dispersion plate 53 can be disassembled and cleaned.

Claims

1. An intelligent feeding device for large-scale chicken farming, comprising a support frame (1), characterized in that: The inner side wall of the support frame (1) is provided with a feeding trough (2), a food storage box (3) is provided above the feeding trough (2), a driving unit (4) is installed on one side of the support frame (1), and a feed dispersing unit (5) is provided on the inner side wall of the feeding trough (2); The drive unit (4) comprises a mounting seat (41), one side of the mounting seat (41) is connected to a drive motor (42), the drive end of the drive motor (42) is connected to an eccentric wheel (43), a limit column (44) is eccentrically provided on the end surface of the eccentric wheel (43), and one side of the mounting seat (41) is connected to a swing rod (45).

2. The intelligent feeding device for large-scale chicken farming according to claim 1 is characterized in that: The feed dispersing unit (5) comprises a connecting head (51), one end of the connecting head (51) is connected to a connecting seat (52), one side of the connecting seat (52) is connected to a plurality of dispersing plates (53), the top surfaces of the plurality of dispersing plates (53) are all connected to a mounting block (54), and a guide groove (55) is provided at a position corresponding to the sliding path of the mounting block (54) and the surface of the connecting seat (52).

3. The intelligent feeding device for large-scale chicken farming according to claim 1 is characterized in that: The bottom surface of the food storage box (3) is provided with a plurality of feed valves (31), one side of the feeding trough (2) is connected to a slide rail (21), a first movable groove (46) is provided on the surface of the swing rod (45) corresponding to the sliding path of the limit column (44), the top of the swing rod (45) is connected to a slider (47), a notch is provided on the upper surface of the slide rail (21) corresponding to the sliding path of the slider (47), a movable column (48) is connected to one side of the slider (47), and a second movable groove (49) is provided on the surface of the swing rod (45) corresponding to the sliding path of the movable column (48).

4. The intelligent feeding device for large-scale chicken farming according to claim 2 is characterized in that: A guide rod (22) is connected to one side of the feeding trough (2), through holes are provided in the connecting head (51) and the guide rod (22) respectively, sliding rods (56) are connected to both sides of the mounting block (54), and an adjustment block (57) is connected to the outer surface of the two sliding rods (56), and one end of the adjustment block (57) is connected to two latches (59).

5. The intelligent feeding device for large-scale chicken farming according to claim 4, characterized in that: The outer surfaces of the two sliding rods (56) and the bottom surface of the adjusting block (57) are connected to a return spring (58), the inner side wall of the guide groove (55) and the latch pin (59) are provided with a plurality of pin holes (501) corresponding to each other, and the surfaces of the plurality of dispersion plates (53) are provided with a plurality of dispersion grooves (502).

6. The intelligent feeding device for large-scale chicken farming according to claim 3, characterized in that: The inner diameter of the slide rail (21) is compatible with the sliding path of the slider (47), the inner diameter of the first movable groove (46) is compatible with the sliding path of the limit column (44), the inner diameter of the second movable groove (49) is compatible with the sliding path of the movable column (48), and the input end of the feed valve (31) is connected to the inside of the food storage box (3).

7. The intelligent feeding device for large-scale chicken farming according to claim 5, characterized in that: The inner diameter of the feeding trough (2) is matched with the sliding path of the dispersion plate (53), the inner diameter of the guide groove (55) is matched with the sliding path of the mounting block (54), the inner diameter of the pin hole (501) is matched with the outer diameter of the latch (59), the adjustment block (57) is connected to the mounting block (54) via a return spring (58) and a slide rod (56), and the connecting seat (52) is connected to the dispersion plate (53) via the mounting block (54).