Tool for planting artificial mixed sowing grassland
By designing a grassland establishment tool with a bevel gear and a rotating rod linkage, centrifugal force is used to achieve the diffusion and automatic feeding of grass seeds, solving the problems of existing tools requiring manual carrying and linear sowing, and improving sowing efficiency and coverage.
Patent Information
- Application Number
- CN202423177131.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2034-12-23
AI Technical Summary
Existing artificial mixed-sowing grassland establishment tools require a large number of people to carry grass seeds by hand, which is physically demanding and can only be used for linear sowing, not for spreading.
A tool comprising a handle, a feeding assembly, a diffusion assembly, and a drive assembly was designed. Through the linkage of bevel gears and rotating rods, centrifugal force is used to diffuse and sow grass seeds, and automatic feeding is achieved through the cooperation of a movable plate and a spring.
It enables automatic dispersal and sowing of grass seeds, reducing manual labor intensity and improving sowing efficiency and coverage.
Smart Images

Figure CN223816465U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to artificial grassland establishment technology, specifically to a tool for establishing artificial mixed-sowing grassland. Background Technology
[0002] Artificial grasslands are grasslands cultivated using agricultural techniques to obtain high-yield, high-quality forage to supplement the deficiencies of natural grasslands and partially meet the feed needs of livestock. Artificial grasslands can be used to harvest forage for green fodder, silage, semi-dry silage, or hay making, or they can be used for direct grazing.
[0003] The existing artificial mixed-sowing grasslands mostly use hand-held tools for sowing grass seeds during the establishment process. Since a large number of grass seeds are carried by hand, it requires a lot of physical strength. At the same time, the sowing can only be done in a straight line and cannot be spread out.
[0004] No effective solutions have yet been proposed to address the problems in the relevant technologies. Utility Model Content
[0005] In view of the problems in the related technologies, this utility model proposes a tool for artificial mixed-seeding grassland establishment to overcome the above-mentioned technical problems existing in the existing related technologies.
[0006] Therefore, the specific technical solution adopted by this utility model is as follows:
[0007] A tool for establishing artificial mixed-seeded grassland includes a handle, a feeding component, a diffusion component, and a drive component. The feeding component is located on one side of the handle, the diffusion component is located below the feeding component, and the drive component is located below the diffusion component.
[0008] This utility model further explains that the drive assembly includes a housing, a connecting shaft, a bevel gear, a rotating rod, and rollers. The housing is located below the diffusion assembly, the connecting shaft is located inside the housing, the bevel gear is located outside the connecting shaft, another set of bevel gears is located above the bevel gears and connected by serrated meshing, the rotating rod is located above the other set of bevel gears, and the rollers are located at both ends of the connecting shaft.
[0009] This utility model further explains that the feeding assembly includes a hopper, a feeding plate, a movable plate, a connecting rod, and a spring. The hopper is positioned above the diffusion assembly, the feeding plate is positioned below the hopper, the movable plate is positioned on one side of the feeding plate, the connecting rod is positioned on one side of the movable plate, and the spring is positioned inside the feeding plate.
[0010] This utility model further explains that the diffusion assembly includes a disk, a cover plate, and a partition plate. The disk is positioned above the rotating rod, the cover plate is positioned above the disk, and the partition plate is positioned above the disk.
[0011] This utility model further illustrates that: a connecting frame is provided on one side of the handle, a support frame is provided on one side of the connecting frame, and an opening is provided on the connecting frame for the drive assembly to pass through.
[0012] This utility model further explains that one end of the spring is hinged to the feed plate, and the other end of the spring is hinged to the movable plate.
[0013] The beneficial effects of this utility model are as follows: by setting a bevel gear, the bevel gear is fixedly connected to the connecting shaft, one end of the rotating rod is fixedly connected to another set of bevel gears, the other end of the rotating rod is fixedly connected to the diffusion component, and both ends of the connecting shaft are fixedly connected to the rollers. When sowing grass seeds, the rollers are pushed on the grass by the handle to roll. The rollers drive the bevel gears to rotate synchronously through the connecting shaft. The bevel gears drive another set of bevel gears to rotate synchronously. The other set of bevel gears drives the diffusion component to rotate through the rotating rod. Centrifugal force causes the diffusion component to throw out the grass seeds, thereby achieving sowing in other locations.
[0014] By setting up a movable plate, the connecting rod is fixedly connected to the movable plate, and one end of the movable plate is connected to the feeding plate. When sowing grass seeds, the grass seeds are placed inside the hopper. The drive component drives the diffusion component to rotate. The partition plate in the diffusion component pushes the connecting rod, allowing the movable plate to move at an angle on one side of the feeding plate, thereby realizing the automatic feeding of grass seeds. Attached Figure Description
[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0016] Figure 1 This is a schematic diagram of the overall structure according to an embodiment of the present utility model;
[0017] Figure 2 This is a schematic diagram of the feeding assembly structure according to an embodiment of the present utility model;
[0018] Figure 3 This is a schematic diagram of the diffusion component structure according to an embodiment of the present utility model;
[0019] Figure 4 This is a schematic diagram of the drive component structure according to an embodiment of the present utility model.
[0020] In the picture:
[0021] 1. Handle; 11. Connecting frame; 12. Support frame; 2. Feeding assembly; 21. Hopper; 22. Feeding plate; 23. Movable plate; 24. Connecting rod; 25. Spring; 3. Diffuser assembly; 31. Disc; 32. Cover plate; 33. Divider plate; 4. Drive assembly; 41. Housing; 42. Connecting shaft; 43. Bevel gear; 44. Rotating rod; 45. Roller. Detailed Implementation
[0022] To further illustrate the various embodiments, the present invention provides accompanying drawings, which are part of the disclosure of the present invention. These drawings are mainly used to illustrate the embodiments and can be used in conjunction with the relevant descriptions in the specification to explain the operating principles of the embodiments. With reference to these contents, those skilled in the art should be able to understand other possible implementation methods and the advantages of the present invention. The components in the figures are not drawn to scale, and similar component symbols are usually used to represent similar components.
[0023] like Figure 1-4 As shown, the tool for establishing artificial mixed-seeded grassland according to an embodiment of the present utility model includes a handle 1, a feeding component 2, a diffusion component 3, and a driving component 4. The feeding component 2 is disposed on one side of the handle 1, the diffusion component 3 is disposed below the feeding component 2, and the driving component 4 is disposed below the diffusion component 3.
[0024] The drive assembly 4 includes a housing 41, a connecting shaft 42, a bevel gear 43, a rotating rod 44, and rollers 45. The housing 41 is located below the diffuser assembly 3. The connecting shaft 42 is located inside the housing 41. The bevel gear 43 is located outside the connecting shaft 42. Another set of bevel gears is located above the bevel gear 43 and connected by serrated meshing. The rotating rod 44 is located above the other set of bevel gears 43. Rollers 45 are located at both ends of the connecting shaft 42. The bevel gears 43 are fixedly connected to the connecting shaft 42. One end of the rotating rod 44 is connected to the other set of bevel gears. Gear 43 is fixedly connected, the other end of rotating rod 44 is fixedly connected to diffusion component 3, and both ends of connecting shaft 42 are fixedly connected to roller 45. When sowing grass seeds, the roller 45 is pushed on the grass by handle 1. The roller 45 drives bevel gear 43 to rotate synchronously through connecting shaft 42. Bevel gear 43 drives another set of bevel gears to rotate synchronously. The other set of bevel gears 43 drives diffusion component 3 to rotate through rotating rod 44. Centrifugal force causes diffusion component 3 to throw out grass seeds, thereby achieving sowing in other locations.
[0025] The feeding assembly 2 includes a hopper 21, a feeding plate 22, a movable plate 23, a connecting rod 24, and a spring 25. The hopper 21 is positioned above the diffusion assembly 3, the feeding plate 22 is positioned below the hopper 21, the movable plate 23 is positioned on one side of the feeding plate 22, the connecting rod 24 is positioned on one side of the movable plate 23, and the spring 25 is positioned inside the feeding plate 22. The connecting rod 24 is fixedly connected to the movable plate 23, and one end of the movable plate 23 is connected to the feeding plate 22. When sowing grass seeds, the grass seeds are placed inside the hopper 21. The drive assembly 4 drives the diffusion assembly 3 to rotate. The partition plate 33 in the diffusion assembly 3 pushes the connecting rod 24, causing the movable plate 23 to move at an angle on one side of the feeding plate 22, thereby realizing automatic feeding of grass seeds.
[0026] The diffusion assembly 3 includes a disk 31, a cover plate 32, and a partition plate 33. The disk 31 is positioned above the rotating rod 44, the cover plate 32 is positioned above the disk 31, and the partition plate 33 is positioned above the disk 31.
[0027] A connecting frame 11 is provided on one side of the handle 1, and a support frame 12 is provided on one side of the connecting frame 11. An opening is provided on the connecting frame 11 for the drive assembly 4 to pass through.
[0028] One end of the spring 25 is hinged to the feed plate 22, and the other end of the spring 25 is hinged to the movable plate 23.
[0029] To facilitate understanding of the above-mentioned technical solutions of this utility model, the working principle or operation method of this utility model in actual process will be described in detail below.
[0030] In practical applications, bevel gear 43 is fixedly connected to connecting shaft 42, one end of rotating rod 44 is fixedly connected to another set of bevel gears 43, and the other end of rotating rod 44 is fixedly connected to diffusion assembly 3. Both ends of connecting shaft 42 are fixedly connected to rollers 45. When sowing grass seeds, the rollers 45 are pushed on the grass by handle 1. The rollers 45 drive the bevel gears 43 to rotate synchronously through connecting shaft 42. The bevel gears 43 drive the other set of bevel gears 43 to rotate synchronously through rotating rod 44. The diffusion component 3 rotates, and centrifugal force causes the diffusion component 3 to throw out grass seeds, thereby achieving sowing in other locations. The connecting rod 24 is fixedly connected to the movable plate 23, and one end of the movable plate 23 is connected to the feeding plate 22. When sowing grass seeds, the grass seeds are placed inside the hopper 21. The drive component 4 drives the diffusion component 3 to rotate. The partition plate 33 in the diffusion component 3 pushes the connecting rod 24, causing the movable plate 23 to move at an angle on one side of the feeding plate 22, thereby achieving automatic feeding of grass seeds.
[0031] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A tool for establishing artificial mixed-seeding grassland, characterized in that, It includes a handle (1), a feeding component (2), a diffusion component (3) and a driving component (4). The feeding component (2) is located on one side of the handle (1), the diffusion component (3) is located below the feeding component (2), and the driving component (4) is located below the diffusion component (3).
2. The tool for establishing artificial mixed-seeding grassland according to claim 1, characterized in that, The drive assembly (4) includes a housing (41), a connecting shaft (42), a bevel gear (43), a rotating rod (44), and rollers (45). The housing (41) is located below the diffusion assembly (3). The connecting shaft (42) is located inside the housing (41). The bevel gear (43) is located outside the connecting shaft (42). Another set of bevel gears is located above the bevel gears (43) and connected by serrated meshing. The rotating rod (44) is located above the other set of bevel gears (43). The rollers (45) are located at both ends of the connecting shaft (42).
3. The tool for establishing artificial mixed-seeding grassland according to claim 1, characterized in that, The feeding assembly (2) includes a hopper (21), a feeding plate (22), a movable plate (23), a connecting rod (24), and a spring (25). The hopper (21) is located above the diffusion assembly (3), the feeding plate (22) is located below the hopper (21), the movable plate (23) is located on one side of the feeding plate (22), the connecting rod (24) is located on one side of the movable plate (23), and the spring (25) is located inside the feeding plate (22).
4. The tool for establishing artificial mixed-seeding grassland according to claim 2, characterized in that, The diffusion assembly (3) includes a disk (31), a cover plate (32) and a partition plate (33). The disk (31) is positioned above the rotating rod (44), the cover plate (32) is positioned above the disk (31), and the partition plate (33) is positioned above the disk (31).
5. The tool for establishing artificial mixed-seeding grassland according to claim 1, characterized in that, A connecting frame (11) is provided on one side of the handle (1), and a support frame (12) is provided on one side of the connecting frame (11). An opening is provided on the connecting frame (11) for the drive assembly (4) to pass through.
6. The tool for establishing artificial mixed-seeding grassland according to claim 3, characterized in that, One end of the spring (25) is hinged to the feed plate (22), and the other end of the spring (25) is hinged to the movable plate (23).