Automatic forage grass seeding device

By designing an automated forage seeding device, the use of gear transmission and crank rod system to achieve seeding between forage seeds is solved, and the problem of nutrients caused by high seeding density in the existing technology is solved, and the nutritional value of forage is enhanced.

CN223274491UActive Publication Date: 2025-08-29JUANCHENG COUNTY JUANFENG SEED CO LTD
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Patent Information

Application Number
CN202422630481.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-30
Publication Date
2025-08-29
Estimated Expiration
2034-10-30

AI Technical Summary

Technical Problem

In the prior art forage planting, the seeding density is high, resulting in insufficient nutrient intake during the growth of the forage, and the nutritional value cannot be guaranteed.

Method used

An automated forage seeding device is designed. The gear transmission system is driven by a reducer motor, combined with the movement of the crank rod and the hinge rod to achieve gap sowing between the forage seeds. The cooperation of the spring rod and the hinge rod is used to ensure that the seeds are evenly distributed in the soil.

Benefits of technology

It realizes gaps between the forage seeds, ensuring that the forage can absorb more nutrients during its growth and enhances the nutritional value of the forage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an automatic forage grass seeding device which comprises a connecting plate, the connecting plate is connected with a seeding device, the seeding device comprises a speed reducing motor, the output end of the speed reducing motor is connected with a first gear, the first gear is in transmission connection with a second gear through a chain, the second gear is connected with a first rotating shaft, the first rotating shaft is connected with a first bearing, and the first bearing is connected with a second bearing. The first rotating shaft is connected with a transversely-arranged first bevel gear, the first bevel gear is meshed with a second bevel gear, the second bevel gear is connected to a second rotating shaft, the two ends of the second rotating shaft are each connected with a rotating disc, the outer ends of the two rotating discs are each fixedly connected with a crank rod, and the lower portion of each crank rod is connected with the middle of a hinge rod through a spring rod. The hinge rod comprises a first connecting rod and a second connecting rod, and the bottom end of the second connecting rod is fixedly connected with the material leaking device. Gaps are reserved among forage grass seeds which can be sown, so that more nutrients can be absorbed in the growth process of the forage grass, and the grown forage grass has more sufficient nutritional value.
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Description

Technical Field

[0001] The utility model relates to the technical field of forage sowing, in particular to an automatic forage sowing device. Background Art

[0002] Forage generally refers to grass or other herbaceous plants fed to livestock. Forage grass has a strong regenerative capacity, can be harvested multiple times a year, and is rich in trace elements and vitamins, making it a preferred choice for livestock. The quality of forage variety directly impacts the economic benefits of animal husbandry and warrants careful attention.

[0003] Forage is the foundation of livestock production, especially for herbivorous livestock. Forage not only contains essential nutrients but also crude fiber, which is crucial for the health of ruminants and cannot be replaced by grain or other feeds. High-quality forage can fully meet the nutritional needs of most livestock, and supplementing with concentrate feed is generally unnecessary unless the animals are in the breeding or fattening stages.

[0004] In order to meet the needs of livestock and poultry farming, large-scale forage planting is often required. In the existing technology, forage planting often uses a seeder to sow in uninterrupted rows. In this way, the density of forage planting is high, and during the growth process, the nutrient intake is insufficient, and the nutritional value of the forage cannot be guaranteed. Utility Model Content

[0005] The purpose of this section is to summarize some aspects of the embodiments of the present invention and briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section and in the abstract and title of the utility model to avoid obscuring the purpose of this section, the abstract and the title of the utility model, and such simplifications or omissions shall not be used to limit the scope of the present invention.

[0006] In order to solve the problems existing in the prior art, the present invention adopts the following technical solutions:

[0007] An automated forage sowing device, comprising a connecting plate, the connecting plate being connected to a sowing device, the sowing device comprising a reduction motor, the output end of the reduction motor being connected to gear 1, the gear 1 being connected to gear 2 via a chain transmission, the gear 2 being connected to a rotating shaft 1, the rotating shaft 1 being connected to a bearing 1, the bearing 1 being fixedly connected to the connecting plate, the rotating shaft 1 being connected to a transversely arranged bevel gear 1, the bevel gear 1 being meshed with the bevel gear 2, the bevel gear 2 being connected to the rotating shaft 2, the two ends of the rotating shaft 2 being each connected to a bearing 2, the bearing 2 being connected to the shaft Bearing seat two, the bearing seat two is connected to a vertical plate, the vertical plate is vertically fixedly connected to the connecting plate, the two ends of the rotating shaft two are respectively connected to a turntable, the outer ends of the two turntables are respectively fixedly connected to a crank rod, the lower part of the crank rod is connected to the middle part of the hinge rod through a spring rod, the hinge rod includes connecting rod one and connecting rod two, the connecting rod one and connecting rod two are hinged, the top end of the connecting rod one is hinged on the vertical plate, the bottom end of the connecting rod two is fixedly connected to the leakage device, the leakage device includes several sowing bins, and the feed port of each sowing bin is facing a feeding device.

[0008] As a preferred solution, the spring rod is fixedly connected to the upper part of the second connecting rod.

[0009] As a preferred solution, a "ㄇ"-shaped connecting frame is connected between the two crank rods, the connecting frame is connected to the two vertical plates through a driven shaft, and a driven rod is connected between the connecting frame and the connecting plate.

[0010] Compared with the prior art, the beneficial effects of the present invention are: the present invention can sow grass seeds with gaps between them, which is beneficial to the future growth of the grass, can ensure that the grass absorbs more nutrients during its growth process, and makes the grown grass have more sufficient nutritional value. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] The present invention is further described in detail below with reference to the accompanying drawings and specific embodiments:

[0012] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model;

[0013] Figure 2 This is a schematic diagram of the main structure of the utility model;

[0014] Figure 3 It is a right side structural schematic diagram of the present utility model. DETAILED DESCRIPTION

[0015] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific implementation methods of the present invention are described in detail below with reference to the accompanying drawings.

[0016] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Those skilled in the art may make similar generalizations without violating the connotation of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.

[0017] Secondly, the term "one embodiment" or "embodiment" herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in various places throughout this specification does not necessarily refer to the same embodiment, nor does it refer to a separate or selective embodiment that is mutually exclusive of other embodiments. The present invention provides the following embodiments.

[0018] An automated forage sowing device comprises a connecting plate 1, wherein the connecting plate 1 is connected to a sowing device 2, wherein the sowing device 2 comprises a reduction motor 3, wherein the output end of the reduction motor 3 is connected to a gear 1 4, wherein the gear 1 4 is connected to a gear 2 6 via a chain 5 transmission, wherein the gear 2 6 is connected to a rotating shaft 1 7, wherein the rotating shaft 1 7 is connected to a bearing 1 8, wherein the bearing 1 8 is fixedly connected to the connecting plate 1, wherein the rotating shaft 1 7 is connected to a transversely arranged bevel gear 1 9, wherein the bevel gear 1 9 is meshed with the bevel gear 2 10, wherein the bevel gear 2 10 is connected to a rotating shaft 2 11, wherein each end of the rotating shaft 2 11 is connected to a bearing 2 12, wherein the bearing 2 12 is connected to a bearing seat 2 13, wherein the bearing seat 2 13 is connected to a vertical plate 14, wherein the vertical plate 14 is connected to a vertical plate 15, wherein the vertical plate 14 is connected to a vertical plate 16, wherein the vertical plate 16 is connected to a vertical plate 17, wherein the vertical plate 17 is connected to a vertical plate 18, wherein the vertical plate 18 is connected to a vertical plate 19, wherein the vertical plate 19 ... The plate 14 is vertically fixedly connected to the connecting plate 1, and the two ends of the rotating shaft 2 11 are respectively connected to a turntable 15, and the outer ends of the two turntables 15 are respectively fixedly connected to a crank rod 16, and the lower part of the crank rod 16 is connected to the middle part of the hinge rod 18 through a spring rod 17. The hinge rod 18 includes a connecting rod 19 and a connecting rod 20. The connecting rod 19 and the connecting rod 20 are hinged. The top end of the connecting rod 19 is hinged on the vertical plate 14, and the bottom end of the connecting rod 20 is fixedly connected to the leakage device 21. The leakage device 21 includes several sowing bins 22. When in use, the sowing bin 22 is connected to a seed feeding pipe, and the pipe outlet is closed when the sowing bin 22 is lifted, and opened when the sowing bin 22 is inserted into the soil for sowing.

[0019] As a preferred solution, the spring rod 17 is fixedly connected to the upper portion of the second connecting rod 20 .

[0020] As a preferred solution, a "ㄇ"-shaped connecting frame 23 is connected between the two crank rods 16, and the connecting frame 23 is connected to the two vertical plates 14 through a driven shaft 24. A driven rod 25 is connected between the connecting frame 23 and the connecting plate 1.

[0021] When the automatic forage sowing device is working, it is driven by a tractor.

[0022] The sowing device 2 drives the sowing bin 22 to move up and down to sow the grass seeds into the soil. The reduction motor 3 drives gear 1 4, chain 5, gear 2 6, shaft 1 7, bevel gear 1 9, bevel gear 2 10, shaft 2 11, and turntable 15 to rotate in sequence. As the turntable 15 rotates, the crank rod 16 and the hinge rod 18 are driven to move. The bottom end of the connecting rod 20 of the hinge rod 18 is fixedly connected to the leakage device 21, and the leakage device 21 moves accordingly. When the turntable 15 drives the crank rod 16 to move to the highest point, the leakage device 21 is lifted. When the turntable 15 drives the crank rod 16 to move to the lowest point, the leakage device 21 is inserted into the soil and the grass seeds are sown into the soil at the same time. There are gaps between the sown grass seeds, which is conducive to the future growth of the grass. It can ensure that the grass absorbs more nutrients during the growth process, so that the grown grass has more sufficient nutritional value.

[0023] The above content is a further detailed description of the present invention in combination with specific implementation methods. It cannot be determined that the specific implementation of the present invention is limited to these descriptions. For ordinary technicians in the technical field to which the present invention belongs, they can make several simple deductions or substitutions without departing from the concept of the present invention, which should be regarded as falling within the scope of protection determined by the claims submitted for the present invention.

Claims

1. An automated forage sowing device, characterized in that: The invention comprises a connecting plate (1), wherein the connecting plate (1) is connected to a sowing device (2), wherein the sowing device (2) comprises a reduction motor (3), wherein the output end of the reduction motor (3) is connected to a gear 1 (4), wherein the gear 1 (4) is connected to a gear 2 (6) via a chain (5), wherein the gear 2 (6) is connected to a rotating shaft 1 (7), wherein the rotating shaft 1 (7) is connected to a bearing 1 (8), wherein the bearing 1 (8) is fixedly connected to the connecting plate (1), wherein the rotating shaft 1 (7) is connected to a transversely arranged bevel gear 1 (9), wherein the bevel gear 1 (9) is meshed with the bevel gear 2 (10), wherein the bevel gear 2 (10) is connected to a rotating shaft 2 (11), wherein both ends of the rotating shaft 2 (11) are respectively connected to a bearing 2 (12), wherein the bearing 2 (12) is connected to a bearing The bearing seat 2 (13) is connected to a vertical plate (14), and the vertical plate (14) is vertically fixedly connected to the connecting plate (1). The two ends of the rotating shaft 2 (11) are respectively connected to a turntable (15), and the outer ends of the two turntables (15) are respectively fixedly connected to a crank rod (16). The lower part of the crank rod (16) is connected to the middle part of the hinge rod (18) through a spring rod (17). The hinge rod (18) includes a connecting rod 1 (19) and a connecting rod 2 (20). The connecting rod 1 (19) and the connecting rod 2 (20) are hinged. The top end of the connecting rod 1 (19) is hinged to the vertical plate (14), and the bottom end of the connecting rod 2 (20) is fixedly connected to a leakage device (21). The leakage device (21) includes a plurality of seeding bins (22).

2. The automated grass sowing device according to claim 1, characterized in that: The spring rod (17) is fixedly connected to the upper portion of the second connecting rod (20).

3. The automated grass sowing device according to claim 1, characterized in that: A "ㄇ"-shaped connecting frame (23) is connected between the two crank rods (16), and the connecting frame (23) is connected to the two vertical plates (14) via a driven shaft (24). A driven rod (25) is connected between the connecting frame (23) and the connecting plate (1).