Movable quantitative feed feeding machine

By designing a mobile feed quantitative feeding machine, the combination of quantitative components and pushing components is used to solve the problem of inconvenience in feed feeding in the prior art, and precise push and quantitative feeding are achieved, which is easy to use, improves work efficiency and reduces the work burden of users.

CN222897949UActive Publication Date: 2025-05-27NINGXIA JINGYUAN COUNTY LIUPANSHAN ANIMAL HUSBANDRY CO LTD
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Patent Information

Application Number
CN202421903848.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-07
Publication Date
2025-05-27
Estimated Expiration
2034-08-07

AI Technical Summary

Technical Problem

Due to the large size of the existing feed quantitative feeding device, the surface of the feeding device conflicts with the beef cattle feeding pen, or feeds it at a distance from the beef cattle feeding pen, causing the beef cattle to not come into contact with the feed, resulting in a large amount of feed remaining, increasing the difficulty of the user's work.

Method used

A mobile feed quantitative feeding machine is designed, including unmanned mobile devices, pallets, quantitative components and push components. The quantitative assembly drives the rotating rod and the partition plate through the first motor to realize quantitative feeding; the pushing assembly drives the long rod and the pulley through the second motor to push the feed to the beef cattle feeding bar.

Benefits of technology

实现了在定量投喂饲料时,能够推动投喂饲料运送至肉牛饲养栏前,便于肉牛进食,避免了饲料剩余,提高了肉牛饲喂的工作效率,减轻了使用者的工作负担。

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a movable quantitative feed feeding machine, and relates to the technical field of beef cattle breeding. The movable quantitative feed feeding machine comprises an unmanned moving device, a supporting plate is connected to the rear side of the unmanned moving device, a quantitative assembly is arranged at the top of the supporting plate and comprises a quantitative cavity formed in the top of the supporting plate, and a feed pushing assembly is arranged at the bottom of the supporting plate. The quantitative cavity and the material pushing assembly are used in cooperation, the material pushing assembly comprises a mounting box, and through cooperative use of the quantitative assembly and the material pushing assembly, when feed is quantitatively fed, the fed feed can be pushed to be conveyed to the front of the beef cattle feeding fence, so that feeding of beef cattle is facilitated, and it is avoided that when the beef cattle are fed, the feeding efficiency of the beef cattle is greatly improved. The feeding device is simple in structure and convenient to use, a large amount of residual feed is generated due to the fact that farther feeding feed cannot be contacted, the working efficiency of beef cattle feeding is improved, a user does not need to manually push the feeding device with the help of an external tool, time and labor are saved, and the workload of the user is relieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of beef cattle breeding, in particular to a mobile quantitative feed feeding machine. Background Art

[0002] Animal husbandry is the basic industry of modern agriculture and has been in a state of rapid development for a long time. As an important part of animal husbandry, the beef cattle breeding industry plays an important role in promoting the development of agricultural and rural economy, improving the income level of farmers and herdsmen, and improving the dietary structure of residents. At present, the cattle industry is in a critical stage of transition from traditional animal husbandry to modern animal husbandry. There is still a lot of room for achieving industrial scale, standardization, green and high-quality development. As a key area and concentrated area for beef cattle breeding in the country, when feeding beef cattle, a quantitative feeding device is required for feeding.

[0003] The existing quantitative feed feeding device is large in size, so the surface of the feeding device conflicts with the cattle feeding pen, or the feeding is performed at a distance from the cattle feeding pen. This feeding method causes the cattle to be unable to touch the feed when eating because the feed is far away from the cattle feeding pen, resulting in a large amount of feed being left over. In this case, not only does the user need to use external tools to push the remaining feed to the feeding pen, which is time-consuming and laborious, but also the user's work difficulty is increased due to the different areas of the feeding environment, making it inconvenient to use. Therefore, we propose a mobile quantitative feed feeding machine with easy-to-use functions, which is urgently needed to be developed. Utility Model Content

[0004] The utility model aims to provide a mobile quantitative feeder, which can avoid the problem that the quantitative feeder surface conflicts with the cattle feeding pen due to its large size, or feeds at a distance far from the cattle feeding pen. This kind of feeding causes the cattle to be unable to touch the feed when eating because the feed is far from the cattle feeding pen, resulting in a large amount of feed being left over. In this case, not only does the user need to use external tools to push the remaining feed to the front of the feeding pen, which is time-consuming and laborious, but also the feeding environment area is different, which increases the difficulty of the user's work and is inconvenient to use.

[0005] The utility model provides a mobile quantitative feeder, comprising an unmanned mobile device, wherein the rear side of the unmanned mobile device is connected with a support plate, a quantitative component is arranged on the top of the support plate, the quantitative component includes a quantitative cavity opened on the top of the support plate, a pushing component is arranged on the bottom of the support plate, and the quantitative cavity is used in conjunction with the pushing component, and the pushing component includes an installation box.

[0006] In a specific embodiment, the metering component further includes a metering tank. The bottom of the metering tank is connected to the pallet. A first motor is bolted to the top of the pallet. The bottom of the inner cavity of the metering tank is rotatably connected to a rotating rod.

[0007] In a specific embodiment, the top end of the rotating rod penetrates to the outside of the metering tank and is connected to the first motor. Two symmetrically arranged partition plates are connected to the surface of the rotating rod, and the partition plates are used in cooperation with the metering cavity.

[0008] In a specific embodiment, the outer surface of the installation box is connected to the pallet. A second motor is bolted to the inner cavity of the installation box. Long rods are rotatably connected to both sides of the bottom of the pallet.

[0009] In a specific embodiment, one of the long rods penetrates to the inner cavity of the installation box and is connected to the second motor. Protective boxes are connected to both sides of the bottom of the pallet. One end of the long rod penetrates to the inner cavity of the protective box and is connected to a rotating disk.

[0010] In a specific embodiment, a push rod is commonly connected to the opposite sides of the two rotating disks. A moving plate is connected to the surface of the push rod. A connecting seat is rotatably connected to the side of the moving plate away from the push rod.

[0011] In a specific embodiment, a first push plate is connected to the side of the connecting seat away from the moving plate. The top of the first push plate is slidably connected to the bottom of the pallet. Connecting rods are rotatably connected to both sides of the first push plate.

[0012] In a specific embodiment, a torsion spring is sleeved on the surface of the connecting rod. A second push plate is connected to the surface of the connecting rod. Threaded sleeves are rotatably connected to both sides of the bottom of the pallet.

[0013] In a specific embodiment, a threaded rod is threadedly connected to the inner cavity of the threaded sleeve. Pulley wheels are respectively sleeved on the surfaces of the long rod and the threaded sleeve, and the two pulley wheels are connected by a belt for transmission.

[0014] In a specific embodiment, one end of the threaded rod is rotatably connected to a guide plate, and the outer surface of the guide plate is slidably connected to the bottom of the pallet.

[0015] The beneficial effect of the present application is that through the coordinated use of the quantitative component and the pushing component, when the feed is quantitatively fed, the fed feed can be pushed and transported to the front of the beef cattle feeding pen, so as to facilitate the beef cattle to eat, and avoid the beef cattle from having a large amount of residual feed due to the inability to touch the distant feed when eating, thereby improving the working efficiency of beef cattle feeding, and there is no need for the user to manually push the feed with the help of external tools, which saves time and effort, reduces the user's workload, and facilitates accurate pushing and quantitative feeding, and is easy to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the technical solution of the implementation mode of the utility model, the drawings required for use in the implementation mode will be briefly introduced below. It should be understood that the following drawings only show certain embodiments of the utility model and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying creative work.

[0017] Figure 1 It is a three-dimensional schematic diagram of the overall structure of an embodiment of the utility model;

[0018] Figure 2 This is a three-dimensional schematic diagram of the bottom-up structure of the support plate of an embodiment of the utility model;

[0019] Figure 3 It is a three-dimensional schematic diagram of the overall structure of the pusher assembly of the embodiment of the utility model;

[0020] Figure 4 It is a three-dimensional schematic diagram of the movable plate structure of an embodiment of the utility model;

[0021] Figure 5 It is a three-dimensional schematic diagram of the protection box structure of an embodiment of the utility model;

[0022] Figure 6 For the utility model embodiment Figure 5 The enlarged schematic diagram at A in the middle;

[0023] Figure 7 It is a three-dimensional schematic diagram of the side cross-sectional structure of the quantitative tank according to an embodiment of the utility model.

[0024] Icons: 1. Unmanned mobile device; 2. Support plate; 3. Dosing component; 31. Dosing tank; 32. First motor; 33. Rotating rod; 34. Partition plate; 35. Dosing chamber; 4. Pushing component; 41. Installation box; 42. Second motor; 43. Long rod; 44. Protective box; 45. Rotating disk; 46. Push rod; 47. Moving plate; 48. Connecting seat; 49. First push plate; 410. Connecting rod; 411. Torsion spring; 412. Second push plate; 413. Threaded rod; 414. Threaded sleeve; 415. Pulley; 416. Guide plate. DETAILED DESCRIPTION

[0025] Due to the large size of the feed quantitative feeding device, the surface of the feeding device conflicts with the cattle feeding pen, or the feeding is performed at a distance far from the cattle feeding pen. This feeding causes the cattle to be unable to touch the feed when eating because the feed is far away from the cattle feeding pen, resulting in a large amount of feed being left over. In this case, not only does the user need to use external tools to push the remaining feed to the front of the feeding pen, which is time-consuming and laborious, but also increases the user's work difficulty due to the different areas of the feeding environment, making it inconvenient to use. Therefore, the inventor has provided a mobile feed quantitative feeding machine after research. Through the coordinated use of a quantitative component and a pushing component, when feeding quantitatively, the feed can be pushed and transported to the front of the cattle feeding pen, so as to facilitate the cattle to eat, and avoid the generation of a large amount of residual material when the cattle are eating because they cannot touch the distant feed, thereby improving the working efficiency of cattle feeding, and there is no need for the user to manually push with the help of external tools, which saves time and effort, reduces the user's workload, and helps to accurately push and quantitatively feed, which is easy to use, thereby solving the above-mentioned defects.

[0026] In conjunction with the accompanying drawings, some embodiments of the present invention are described in detail below. In the absence of conflict, the following embodiments and features in the embodiments can be combined with each other.

[0027] Please refer to Figures 1 to 7 The embodiment of the utility model provides a mobile quantitative feed feeding machine, comprising an unmanned mobile device 1, a support plate 2 is connected to the rear side of the unmanned mobile device 1, wherein both sides of the support plate 2 are rotatably connected to wheels used in conjunction with the unmanned mobile device 1;

[0028] Please refer to Figures 2 to 7 , a quantitative component 3 is provided on the top of the support plate 2, and the quantitative component 3 includes a quantitative cavity 35 opened on the top of the support plate 2, and the quantitative component 3 also includes a quantitative tank 31, wherein the top of the quantitative tank 31 is connected with a pipeline for external feeding, and the pipeline can be connected with an external feeding hopper to facilitate feeding, and the bottom of the quantitative tank 31 is connected to the support plate 2, and the top of the support plate 2 is bolted with a first motor 32, and the bottom of the inner cavity of the quantitative tank 31 is rotatably connected with a rotating rod 33, and the top of the rotating rod 33 penetrates to the outside of the quantitative tank 31 and is connected to the first motor 32, wherein the area where the rotating rod 33 and the first motor 32 penetrate and contact is sealed, and the surface of the rotating rod 33 is connected with two symmetrically arranged partition plates 34, one of which is inclined, and the inclination angle can be adjusted during actual operation, and the partition plate 34 is used in conjunction with the quantitative cavity 35;

[0029] Specifically, the user first pours the externally mixed feed into the metering tank 31. At this time, if the feed is to be quantitatively fed to the beef cattle, the first motor 32 can be started. The output shaft of the first motor 32 drives the rotating rod 33 to rotate, and the rotating rod 33 drives the partition plate 34 to rotate. Thus, by the rotation of the partition plate 34, different storage cavities can be pushed into the metering cavity 35, so that the feed can be quantitatively fed in front of the beef cattle feeding pen through the metering cavity 35. After feeding, the pushing component 4 can be started to push the fed feed to the front of the beef cattle feeding pen by using the pushing component 4;

[0030] Please refer to Figures 1 to 6 , a pushing component 4 is arranged at the bottom of the support plate 2, and the metering cavity 35 is used in cooperation with the pushing component 4. The pushing component 4 includes an installation box 41. The outer surface of the installation box 41 is connected to the support plate 2. A second motor 42 is bolted in the inner cavity of the installation box 41. Both sides of the bottom of the support plate 2 are rotatably connected with long rods 43. One of the long rods 43 penetrates into the inner cavity of the installation box 41 and is connected to the second motor 42. Both sides of the bottom of the support plate 2 are connected with protection boxes 44. One end of the long rod 43 penetrates into the inner cavity of the protection box 44 and is connected with a rotating disc 45. A through cavity adapted to the push rod 46 is opened on the outer surface of the protection box 44. A push rod 46 is jointly connected to the opposite sides of the two rotating discs 45. A moving plate 47 is connected to the surface of the push rod 46;

[0031] Please refer to Figures 2 to 6 , a connecting seat 48 is rotatably connected to the side of the moving plate 47 away from the push rod 46. A first push plate 49 is connected to the side of the connecting seat 48 away from the moving plate 47. The top of the first push plate 49 is slidably connected to the bottom of the support plate 2. Connecting rods 410 are rotatably connected to both sides of the first push plate 49. A torsion spring 411 is sleeved on the surface of the connecting rod 410. A second push plate 412 is connected to the surface of the connecting rod 410. Threaded sleeves 414 are rotatably connected to both sides of the bottom of the support plate 2. A positioning block is installed at the bottom of the support plate 2. The inner cavity of the positioning block is rotatably connected to the threaded sleeve 414, and an internal thread is provided inside the threaded sleeve 414. A threaded rod 413 is threadedly connected to the inner cavity of the threaded sleeve 414, and an external thread adapted to the threaded sleeve 414 is provided on the surface of the threaded rod 413. Through cavities adapted to the threaded rod 413 are opened on both sides of the support plate 2. Pulley 415 is sleeved on the surfaces of the long rod 43 and the threaded sleeve 414 respectively, and the two pulleys 415 are connected by a belt. One end of the threaded rod 413 is rotatably connected to a guide plate 416, and the outer surface of the guide plate 416 is slidably connected to the bottom of the support plate 2;

[0032] Specifically, after the metering component 3 feeds a certain amount of feed, the second motor 42 can be started. The output shaft of the second motor 42 drives the long rod 43 to rotate. The long rod 43 simultaneously drives the rotating disk 45 and the pulley 415 to rotate together. The rotating disk 45 drives the push rod 46 to rotate, and the push rod 46 drives another moving rotating disk 45 to rotate together. At this time, the two long rods 43 jointly drive the pulley 415 to drive the threaded sleeve 414 to rotate. The threaded sleeve 414 uses the principle of screw drive to make the two threaded rods 413 gradually move in opposite directions. The threaded rods 413 then push the guide plate 416 to move synchronously, so as to centrally push the feed scattered on both sides to the middle part. Then the push rod 46 simultaneously drives the moving plate 47 to move forward. The moving plate 47 pushes the connecting seat 48 to move synchronously. The connecting seat 48 pushes the first push plate 49 and the second push plate 412 to move forward. The cross-section of the first push plate 49 is smaller than the movement track pushed by the guide plate 416, so as to push the feed concentrated in the middle part forward to the beef cattle feeding pen. It should be noted that during the pushing process of the second push plate 412, if it touches the guide plate 416, the second push plate 412 can drive the connecting rod 410 and the torsion spring 411 to rotate, so that the second push plate 412 gradually tilts backward at an angle, so as to push the feed along the contact with the guide plate 416, which is convenient for use.

[0033] In summary, the working principle of a mobile feed metering feeder according to an embodiment of the present invention is as follows: First, the user moves the unmanned mobile device 1, the pallet 2 and its attached installation parts to the front of the beef cattle feeding pen. Then, the material mixed with various feeding materials externally is poured into the metering component 3, and the unmanned mobile device 1 can be started to drive the pallet 2 to move. When it moves to the front of the beef cattle feeding pen, the metering component 3 can be started to feed a certain amount of material to the bottom of the pallet 2. Then, the feeding component 4 is started to push these materials to the front of the beef cattle feeding pen, so as to facilitate the feeding of beef cattle and is convenient for use.

[0034] The above is only the preferred embodiment of the present invention and is not used to limit the present invention. For those skilled in the art, the present invention can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A mobile feed quantitative feeding machine, comprising an unmanned mobile device (1), characterized in that: The rear side of the unmanned mobile device (1) is connected to a support plate (2), a quantitative component (3) is arranged on the top of the support plate (2), the quantitative component (3) includes a quantitative cavity (35) opened on the top of the support plate (2), a pusher component (4) is arranged on the bottom of the support plate (2), and the quantitative cavity (35) is used in conjunction with the pusher component (4), and the pusher component (4) includes an installation box (41).

2. A mobile feed quantitative feeding machine according to claim 1, characterized in that: The quantitative assembly (3) further comprises a quantitative tank (31), the bottom of the quantitative tank (31) is connected to the support plate (2), the top of the support plate (2) is bolted to a first motor (32), and the bottom of the inner cavity of the quantitative tank (31) is rotatably connected to a rotating rod (33).

3. A mobile feed quantitative feeding machine according to claim 2, characterized in that: The top end of the rotating rod (33) passes through the outside of the quantitative tank (31) and is connected to the first motor (32); the surface of the rotating rod (33) is connected to two symmetrically arranged partition plates (34), and the partition plates (34) are used in conjunction with the quantitative cavity (35).

4. A mobile feed quantitative feeding machine according to claim 1, characterized in that: The outer surface of the installation box (41) is connected to the support plate (2), the inner cavity of the installation box (41) is bolted to a second motor (42), and both sides of the bottom of the support plate (2) are rotatably connected to long rods (43).

5. A mobile feed quantitative feeding machine according to claim 4, characterized in that: One of the long rods (43) penetrates into the inner cavity of the installation box (41) and is connected to the second motor (42), both sides of the bottom of the support plate (2) are connected to the protection box (44), and one end of the long rod (43) penetrates into the inner cavity of the protection box (44) and is connected to the rotating disk (45).

6. A mobile feed quantitative feeding machine according to claim 5, characterized in that: The two rotating disks (45) are connected to a push rod (46) on one side opposite to the other. A moving plate (47) is connected to the surface of the push rod (46). A connecting seat (48) is rotatably connected to the side of the moving plate (47) away from the push rod (46).

7. A mobile feed quantitative feeding machine according to claim 6, characterized in that: A first push plate (49) is connected to one side of the connecting seat (48) away from the movable plate (47); the top of the first push plate (49) is slidably connected to the bottom of the supporting plate (2); and both sides of the first push plate (49) are rotatably connected to connecting rods (410).

8. A mobile feed quantitative feeding machine according to claim 7, characterized in that: The surface of the connecting rod (410) is sleeved with a torsion spring (411), the surface of the connecting rod (410) is connected to a second push plate (412), and both sides of the bottom of the supporting plate (2) are rotatably connected to threaded sleeves (414).

9. A mobile feed quantitative feeding machine according to claim 8, characterized in that: The inner cavity of the threaded sleeve (414) is threadedly connected to a threaded rod (413), and the surfaces of the long rod (43) and the threaded sleeve (414) are respectively sleeved with pulleys (415), and the two pulleys (415) are connected through a belt transmission.

10. A mobile quantitative feed feeding machine according to claim 9, characterized in that: One end of the threaded rod (413) is rotatably connected to a guide plate (416), and the outer surface of the guide plate (416) is slidably connected to the bottom of the support plate (2).