Feed dispenser for livestock breeding

By designing an automated feed dispenser, using motor-driven agitation and quantitative delivery, the problem of uneven artificial mixing is solved, and the utilization rate of feed and the health level of animals is improved.

CN223142663UActive Publication Date: 2025-07-25赵普娥 +4
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Patent Information

Application Number
CN202422361358.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-27
Publication Date
2025-07-25
Estimated Expiration
2034-09-27

AI Technical Summary

Technical Problem

Existing feed delivery devices require manual mixing, resulting in uneven mixing, increasing labor costs and affecting the feed absorption efficiency of livestock.

Method used

A feed dispenser including electrical mechanism parts, connecting shafts, stirring paddle members, stirring paddle segmentation structures, and uniform feed roller structures are designed. Automatic stirring and quantitative delivery are realized through motor drive to ensure feed uniformity and accuracy.

Benefits of technology

It reduces the intensity of artificial labor, improves the uniformity and nutritional value of feed mixing, promotes animal digestion and absorption, and improves feeding efficiency and feeding efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a feed dispenser for livestock breeding, relates to the technical field of livestock breeding, and aims to solve the problems that the labor cost is increased due to the fact that an existing feed dispensing device generally dispenses feed after manual mixing, the feed mixed manually has a certain probability of non-uniform mixing, and the feed dispensing efficiency is high. Therefore, the feed eaten by the livestock cannot be fully absorbed. The fodder feeding device comprises a fodder feeding box, the rear end of the fodder feeding box is fixedly connected with a rail box, a movable support set is embedded in the rail box in a sliding connection mode, a movable device is arranged in the movable support set, and the upper end of the movable support set is fixedly connected with a fodder feeding box. A feed filling opening is fixedly connected to the feed throwing box, a throwing barrel is fixedly connected to the lower end of the feed throwing box, an observation opening is connected to the feed throwing box in an embedded mode, and supporting legs are fixedly connected to the lower end of the feed throwing box.
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Description

Technical Field

[0001] The utility model relates to the technical field of livestock breeding, in particular to a feed dispenser for livestock breeding. Background Technique

[0002] Animal husbandry is a production department that utilizes the physiological functions of domesticated animals such as livestock and poultry, or animals such as deer, foxes, minks, and quails. Through artificial feeding and breeding, it enables plants such as forage grass and feed to be converted into animal energy to obtain livestock products such as meat, eggs, milk, wool, cashmere, hides, silk, and medicinal materials. With the rapid development of the livestock breeding industry, breeding technologies have been vigorously promoted and applied. Some large-scale farms are developing towards automation and scale. How to operate animal husbandry in a systematic, automated, and industrialized manner is an urgent problem to be solved in the current development of animal husbandry. Animal husbandry is a very important link in the material exchange between humans and nature. Animal husbandry refers to the production department that raises livestock and poultry by grazing, penning, or a combination of both to obtain animal products or draft animals. It includes livestock grazing, poultry raising, domestication of economic animals, etc. During the feeding process, livestock need to be provided with feed, and generally, feed troughs are used to place feed for livestock to eat conveniently.

[0003] However, existing feed dispensing devices generally mix the feed manually before dispensing, which increases labor costs. Moreover, the feed mixed manually has a certain probability of being unevenly mixed, resulting in the feed eaten by livestock not being fully absorbed. Therefore, it does not meet the existing requirements. For this reason, we propose a feed dispenser for livestock breeding. Content of the Utility Model

[0004] The purpose of the utility model is to provide a feed dispenser for livestock breeding to solve the problems in the above-mentioned background technique, that is, existing feed dispensing devices generally mix the feed manually before dispensing, which increases labor costs, and the feed mixed manually has a certain probability of being unevenly mixed, resulting in the feed eaten by livestock not being fully absorbed.

[0005] To achieve the above purpose, the utility model provides the following technical solution: A feed dispenser for livestock breeding, including a feed dispensing device. The feed dispensing device includes a feed dispensing box, and further includes: A track box is fixedly connected to the rear end of the feed dispensing box. A moving support group is inlaid and slidably connected in the track box. A moving device is arranged in the moving support group. A feed dispensing box is fixedly connected to the upper end of the moving support group. A feed filling port is fixedly connected to the feed dispensing box. A dispensing cylinder is fixedly connected to the lower end of the feed dispensing box. An observation port is inlaid and connected to the feed dispensing box. Support feet are fixedly connected to the lower end of the feed dispensing box.

[0006] Preferably, the feed dispensing box includes a feed storage cavity and a channel cavity. The feed storage cavity is provided in the feed dispensing box and is integrally formed with the feed dispensing box. The channel cavity is provided in the feed dispensing box and is integrally formed with the feed dispensing box.

[0007] Preferably, the feed dispensing box includes an electric motor component, a connecting shaft rod, a stirring paddle component, a stirring paddle splitting structure, and a second stirring paddle. The electric motor component is provided on the feed dispensing box and is fixedly connected to the feed dispensing box by inlay. The connecting shaft rod is provided in the electric motor component and is inlaid with the electric motor component. The stirring paddle component is provided on the connecting shaft rod and is fixedly connected to the connecting shaft rod. The stirring paddle splitting structure is provided on the stirring paddle component and is welded to the stirring paddle component. The second stirring paddle is provided at the tail end of the connecting shaft rod and is fixedly connected to the tail end of the connecting shaft rod.

[0008] Preferably, the feed dispensing box includes a uniform feeding roller structure. The uniform feeding roller structure is provided in the channel cavity of the feed dispensing box and is snap-fitted with the channel cavity. The uniform feeding roller structure is connected to the electric motor on the rear end face of the feed dispensing box.

[0009] Preferably, the track box includes a track groove and an auxiliary roller groove. The track groove is provided on the track box and is integrally formed with the track box. The auxiliary roller groove is provided at the upper end of the track box and is machined by a lathe at the upper end of the track box.

[0010] Preferably, the feed dispensing box includes a livestock feeding trough, a livestock splitting trough, and a feed dispensing trough. The livestock feeding trough is provided on the feed dispensing box and is integrally formed with the feed dispensing box. The livestock splitting trough is provided on the feed dispensing box and is integrally formed with the feed dispensing box. The feed dispensing trough is provided on the feed dispensing box and is integrally formed with the feed dispensing box.

[0011] Preferably, a uniform feeding holding groove is provided on the uniform feeding roller structure in the feed dispensing box, and the uniform feeding holding groove is integrally formed with the uniform feeding roller structure.

[0012] Compared with the prior art, the beneficial effects of the present utility model are:

[0013] The utility model is provided with an electric mechanism component, a connecting shaft rod, a stirring paddle component, a stirring paddle segmentation structure, a second stirring paddle, a uniform feeding roller structure, a uniform feeding holding tank, and a livestock segmentation tank. The electric mechanism component is the core power source of the entire stirring system, providing stable and reliable driving force for the stirring process. Through the drive of the motor, automatic stirring and feeding of the feed are realized, greatly reducing the manual labor intensity and improving the work efficiency. The connecting shaft rod, as a key component for power transmission, transmits the rotational power of the motor to the stirring paddle component and the second stirring paddle, ensuring the smooth progress of the stirring process. The firm connection with the motor and the stirring paddle component guarantees the stability and reliability during the stirring process. The stirring paddle component rotates under the drive of the motor, fully stirring the feed to ensure uniform mixing of the feed and avoiding caking and stratification. Uniform stirring helps to improve the uniformity and nutritional value of the feed, promoting the digestion and absorption of animals. The stirring paddle segmentation structure further refines the stirring effect, making the feed mixing more uniform and delicate. It helps to divide large pieces of feed into small pieces, facilitating animal digestion and improving the utilization rate of the feed. The second stirring paddle works in coordination with the stirring paddle component, enhancing the overall stirring effect of the stirring system and ensuring full mixing of the feed in the holding cavity. The double-stirring paddle design improves the stirring efficiency, shortens the stirring time, and further enhances the work efficiency. The uniform feeding roller structure evenly and quantitatively feeds the feed from the channel cavity into the feed feeding box through the rotation of the rollers, achieving precise feeding. The design of the uniform feeding holding tank ensures that the feed fed into the feed feeding tank each time is uniform and quantitative, improving the accuracy of feeding. The livestock segmentation tank ensures that each livestock can obtain an appropriate amount of feed, avoiding feed competition and waste. The reasonable segmentation helps to maintain the order and hygiene of the feeding environment, improving the feeding efficiency and the health level of animals. Description of the Drawings

[0014] Figure 1 Structural schematic diagram of the feed feeding device of the utility model;

[0015] Figure 2 Structural schematic diagram of the feed feeding box of the utility model;

[0016] Figure 3 Structural schematic diagram of the feed feeding box and the track box of the utility model;

[0017] Figure 4 Structural schematic diagram of the uniform feeding roller structure of the utility model;

[0018] In the figure: 1. Feed delivery device; 2. Feed delivery box; 21. Livestock feeding trough; 22. Livestock cutting trough; 23. Feed delivery trough; 3. Track box; 31. Track groove; 32. Auxiliary roller groove; 4. Moving bracket group; 5. Feed delivery box; 51. Feed storage cavity; 52. Channel cavity; 53. Electric component; 54. Connecting shaft rod; 55. Stirring paddle component; 56. Stirring paddle cutting structure; 57. Second stirring paddle; 58. Uniform feeding roller structure; 581. Uniform feeding storage trough; 6. Delivery tube; 7. Feed filling port; 8. Observation port; 9. Support feet. Detailed implementation mode

[0019] 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.

[0020] Please refer to Figures 1-4 , an embodiment provided by the present invention: A feed dispenser for livestock breeding, a feed delivery device 1, the feed delivery device 1 includes a feed delivery box 2, and further includes: A track box 3 is fixedly connected to the rear end of the feed delivery box 2, a moving bracket group 4 is inlaid and slidably connected in the track box 3, a moving device is provided in the moving bracket group 4, a feed delivery box 5 is fixedly connected to the upper end of the moving bracket group 4, a feed filling port 7 is fixedly connected to the feed delivery box 5, a delivery tube 6 is fixedly connected to the lower end of the feed delivery box 5, an observation port 8 is inlaid and connected to the feed delivery box 5, and support feet 9 are fixedly connected to the lower end of the feed delivery box 2.

[0021] Please refer to Figure 2 , the feed delivery box 5 includes a feed storage cavity 51 and a channel cavity 52. A feed storage cavity 51 is provided in the feed delivery box 5, and the feed storage cavity 51 is integrally formed with the feed delivery box 5. A channel cavity 52 is provided in the feed delivery box 5, and the channel cavity 52 is integrally formed with the feed delivery box 5. The feed storage cavity 51 is used for mixing feed to ensure that the feed is in a uniform state before delivery, improving the utilization rate of feed and the digestion and absorption rate of animals. The channel cavity 52 serves as a channel for feed delivery, enabling the feed to smoothly and orderly enter the feed delivery box 2, ensuring the smoothness and accuracy of the feeding process.

[0022] Please refer to Figure 2, the feed delivery box 5 includes an electric component 53, a connecting shaft rod 54, a stirring paddle component 55, a stirring paddle segmentation structure 56, and a second stirring paddle 57. An electric component 53 is provided on the feed delivery box 5, and the electric component 53 is fixedly connected to the feed delivery box 5 by inlaying. A connecting shaft rod 54 is provided in the electric component 53, and the connecting shaft rod 54 is inlaid with the electric component 53. A stirring paddle component 55 is provided on the connecting shaft rod 54, and the stirring paddle component 55 is fixedly connected to the connecting shaft rod 54. A stirring paddle segmentation structure 56 is provided on the stirring paddle component 55, and the stirring paddle segmentation structure 56 is welded to the stirring paddle component 55. A second stirring paddle 57 is provided at the tail end of the connecting shaft rod 54, and the second stirring paddle 57 is fixedly connected to the tail end of the connecting shaft rod 54. The electric component 53 provides a power source to realize automatic stirring of the feed, reduce the manual labor intensity, and improve the production efficiency. The stirring paddle component 55 and the second stirring paddle 57 rotate to stir the feed, ensuring that the feed is evenly mixed in the loading cavity, preventing the feed from caking or stratifying, and improving the uniformity and nutritional value of the feed. The stirring paddle segmentation structure 56 further refines the stirring effect, makes the feed mixing more uniform, and at the same time helps to divide large pieces of feed into small pieces for easy digestion by animals.

[0023] Please refer to Figure 2 , the feed delivery box 5 includes a uniform feeding roller structure 58. A uniform feeding roller structure 58 is provided in the channel cavity 52 of the feed delivery box 5, and the uniform feeding roller structure 58 is snap-connected to the channel cavity 52. The uniform feeding roller structure 58 is connected to the motor on the rear end face of the feed delivery box 5. The uniform feeding roller structure 58 rotates the roller to evenly and quantitatively feed the feed from the channel cavity 52 into the feed delivery box 2, realizing precise feeding, avoiding waste and overfeeding. The motor drive realizes automatic feeding, improves the feeding efficiency and accuracy, reduces manual intervention, and reduces the labor intensity.

[0024] Please refer to Figure 3 , the track box 3 includes a track groove 31 and an auxiliary roller groove 32. A track groove 31 is provided on the track box 3, and the track groove 31 is integrally formed with the track box 3. An auxiliary roller groove 32 is provided at the upper end of the track box 3, and the auxiliary roller groove 32 is machined by a lathe at the upper end of the track box 3. The track groove 31 provides a stable path for the movement of the moving support group 4, ensuring that it will not deviate from the track during the movement and maintaining smooth operation. The auxiliary roller groove 32 is used for auxiliary roller limiting, further reducing the friction and resistance during the movement of the feed delivery box 2, and improving the movement efficiency and stability.

[0025] Please refer to Figure 3, the feed dispensing box 2 includes a livestock feeding trough 21, a livestock partitioning trough 22, and a feed dispensing trough 23. The livestock feeding trough 21 is provided on the feed dispensing box 2 and is integrally formed with the feed dispensing box 2. The livestock partitioning trough 22 is provided on the feed dispensing box 2 and is integrally formed with the feed dispensing box 2. The feed dispensing trough 23 is provided on the feed dispensing box 2 and is integrally formed with the feed dispensing box 2. The livestock feeding trough 21 provides a feeding space for livestock, ensuring that feed can be directly placed in front of the livestock for convenient feeding. The livestock partitioning trough 22 is used to partition livestock to ensure that each livestock can obtain an appropriate amount of feed. The feed dispensing trough 23 serves as a feed entry channel to ensure that feed can accurately and smoothly fall into the feeding trough, avoiding feed spillage or waste.

[0026] Please refer to Figure 4 , a uniform feeding trough 581 is provided on the uniform feeding roller structure 58 in the feed dispensing box 5, and the uniform feeding trough 581 is integrally formed with the uniform feeding roller structure 58. Through the rotation of the roller, the uniform feeding trough 581 ensures that the feed dispensed into the feed dispensing trough 23 each time is uniform and quantitative, improving the accuracy of feeding and the utilization rate of feed.

[0027] Working principle: When in use, the breeding personnel first pour the feed into the feed storage cavity 51 of the feed dispensing box 5 through the feed filling port 7. This cavity is designed to be integrally formed with the feed dispensing box 5 to ensure the structural stability and sealing, preventing feed leakage. After the feed enters the feed storage cavity 51, it is ready for mixing to ensure the uniformity of the feed mixture. Start the electric component 53 on the feed dispensing box 5, and the motor drives the stirring paddle component 55 and the second stirring paddle 57 to rotate through the connecting shaft rod 54. The stirring paddle dividing structure 56 on the stirring paddle component 55 and the second stirring paddle 57 work together to fully stir the feed in the feed storage cavity 51. This process not only ensures the uniform mixing of the feed, but also divides the large pieces of feed into small pieces through the action of the stirring paddle dividing structure 56, improving the palatability and nutritional value of the feed. After the stirring is completed, the feed remains in a uniformly mixed state and is ready for feeding. The passage cavity 52 of the feed dispensing box 5 serves as the passage for feed dispensing and has been pre-set. At this time, the uniform feeding roller structure 58 is located in the passage cavity 52 and is connected to the motor on the rear end face of the feed dispensing box 5. The uniform feeding storage groove 581 on the uniform feeding roller structure 58 is ready to receive and temporarily store the feed falling from the feed storage cavity 51. When the feed needs to be dispensed, start the motor to drive the uniform feeding roller structure 58 to rotate. During the rotation of the roller, the uniform feeding storage groove 581 on it continuously sends the feed from the passage cavity 52 to the dispensing cylinder 6 evenly and quantitatively, and then it is dispensed into the feed dispensing box 2 through the feed dispensing groove 23. The feed dispensing groove 23 serves as the passage for the feed to enter the livestock feeding trough 21, ensuring that the feed can accurately and smoothly fall into the feeding trough, avoiding feed spillage or waste. The feed falls into the livestock feeding trough 21 through the feed dispensing groove 23, and the livestock can directly feed in the feeding trough. The design of the livestock dividing groove 22 ensures the separation of livestock, enabling each livestock to obtain an appropriate amount of feed and avoiding feed competition and waste. The track groove 31 on the track box 3 provides a stable path for the movement of the moving support group 4, ensuring that the feed dispensing box 5 does not deviate from the track during movement. The auxiliary roller groove 32 further reduces the friction and resistance during movement, improving the movement efficiency and stability. The breeding personnel can control the moving support group 4 through the moving device according to needs, and move the feed dispensing box 5 to the designated area of the feed dispensing box 2.

[0028] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above exemplary embodiments, and the present utility model can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present utility model. Any reference signs in the claims should not be construed as limiting the claims involved.

[0029] All the electrical components appearing in this article are electrically connected to the external main controller and the 220V mains power supply. And the main controller can be a conventional known device for controlling such as a servo motor, a contact sensor, a processor, an alarm module, and a drive module, etc. The standard parts used in this application document can all be purchased from the market. The specific connection methods of each part are all connected by conventional means such as bolts, rivets, welding, etc. that are mature in the prior art. Moreover, the machinery, parts, and equipment all adopt conventional models in the prior art. Coupled with the circuit connection adopting the conventional connection method in the prior art, no specific description will be made here.

Claims

1. A feed dispenser for livestock farming, comprising a feed dispensing device (1), and the feed dispensing device (1) includes a feed dispensing box (2), characterized in that: It further includes: A track box (3) is fixedly connected to the rear end of the feed delivery box (2). A mobile bracket group (4) is inlaid and slidably connected in the track box (3). A moving device is provided in the mobile bracket group (4). A feed delivery box (5) is fixedly connected to the upper end of the mobile bracket group (4). A feed filling port (7) is fixedly connected to the feed delivery box (5). A delivery cylinder (6) is fixedly connected to the lower end of the feed delivery box (5). An observation port (8) is inlaid and connected to the feed delivery box (5). Support feet (9) are fixedly connected to the lower end of the feed delivery box (2).

2. The feed dispenser for livestock breeding according to claim 1, wherein: The feed delivery box (5) includes a feed storage cavity (51) and a channel cavity (52). A feed storage cavity (51) is provided in the feed delivery box (5), and the feed storage cavity (51) is integrally formed with the feed delivery box (5). A channel cavity (52) is provided in the feed delivery box (5), and the channel cavity (52) is integrally formed with the feed delivery box (5).

3. The feed dispenser for livestock breeding according to claim 1, characterized in that: The feed delivery box (5) includes an electric component (53), a connecting shaft rod (54), a stirring paddle component (55), a stirring paddle splitting structure (56), and a second stirring paddle (57). An electric component (53) is provided on the feed delivery box (5), and the electric component (53) is inlaid and fixedly connected to the feed delivery box (5). A connecting shaft rod (54) is provided in the electric component (53), and the connecting shaft rod (54) is inlaid and connected to the electric component (53). A stirring paddle component (55) is provided on the connecting shaft rod (54), and the stirring paddle component (55) is fixedly connected to the connecting shaft rod (54). A stirring paddle splitting structure (56) is provided on the stirring paddle component (55), and the stirring paddle splitting structure (56) is welded to the stirring paddle component (55). A second stirring paddle (57) is provided at the tail end of the connecting shaft rod (54), and the second stirring paddle (57) is fixedly connected to the tail end of the connecting shaft rod (54).

4. The feed dispenser for livestock breeding according to claim 1, characterized in that: The feed delivery box (5) includes a uniform feeding roller structure (58). A uniform feeding roller structure (58) is provided in the channel cavity (52) of the feed delivery box (5), and the uniform feeding roller structure (58) is snap-fitted to the channel cavity (52). The uniform feeding roller structure (58) is connected to the motor on the rear end face of the feed delivery box (5).

5. The feed dispenser for livestock breeding according to claim 1, characterized in that: The track box (3) includes a track groove (31) and an auxiliary roller groove (32). A track groove (31) is provided on the track box (3), and the track groove (31) is integrally formed with the track box (3). An auxiliary roller groove (32) is provided at the upper end of the track box (3), and the auxiliary roller groove (32) is machined by turning on the upper end of the track box (3).

6. The feed dispenser for livestock breeding according to claim 1, wherein: The feed dispensing box (2) includes a livestock feeding trough (21), a livestock partitioning trough (22), and a feed dispensing trough (23). The livestock feeding trough (21) is provided on the feed dispensing box (2), and the livestock feeding trough (21) is integrally formed with the feed dispensing box (2). The livestock partitioning trough (22) is provided on the feed dispensing box (2), and the livestock partitioning trough (22) is integrally formed with the feed dispensing box (2). The feed dispensing trough (23) is provided on the feed dispensing box (2), and the feed dispensing trough (23) is integrally formed with the feed dispensing box (2).

7. A feed dispenser for livestock farming according to claim 1, characterized in that: A uniform feeding trough (581) is provided on the uniform feeding roller structure (58) in the feed dispensing box (5), and the uniform feeding trough (581) is integrally formed with the uniform feeding roller structure (58).