Forestry seedling raising tray device
The synchronous rotation of the seedling cup sleeve is achieved through the gear disc mesh connection, which solves the problem of seedling growth inclination caused by the fixation of the seedling plate structure in the prior art, and improves the efficiency and quality of seedling transplantation.
Patent Information
- Application Number
- CN202422148492.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-09-03
AI Technical Summary
The existing forestry seedling pan device has a fixed structure and cannot flexibly change the lighting surface of seedlings, resulting in a tilt of seedling growth and affecting the quality of seedlings.
A device including a seedling tray, a fixed base, a seedling cup shell, a seedling cup sleeve, a drive insert, a limiting round plate and a gear disk are designed. The synchronous rotation of the seedling cup sleeve is achieved through the meshing connection of the gear disk, changing the seedling lighting surface, and avoiding rotating each seedling separately.
The rapid and complete removal of the soil at the root of seedlings is achieved, transplanting efficiency is improved, the growth in the seedlings is avoided, the quality of seedlings is improved, and the operation is convenient.
Smart Images

Figure CN223157642U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the forestry field, in particular to a forestry seedling raising tray device. Background Art
[0002] An existing patent (publication number: CN216820905U) proposes a novel forestry seedling tray device, comprising a seedling tray with multiple seedling hoppers integrally formed on the upper portion of the tray. A frame is fixedly provided along the outer wall of the tray, and a storage box is slidably provided at one end of the upper portion of the frame. The storage box has a storage trough on the upper portion, and multiple mounting openings are provided on the bottom wall of the storage trough. A turntable is rotatably provided within each mounting opening. The turntable has multiple feed troughs along the outer wall of the turntable. A transmission mechanism is provided within the storage box. Slides are provided on both sides of the upper portion of the frame, and T-shaped blocks are slidably provided within the slides. The upper ends of the two T-shaped blocks are fixedly provided with vertical rods, and the upper ends of the vertical rods are fixed to the bottom of the storage box. However, the structure of the "seedling tray" in this device is relatively fixed, and the light-collecting surface of the seedlings cannot be changed. Because seedlings tend to grow in the direction of light, infrequently changing the light-collecting surface can cause the seedlings to grow tilted, affecting the quality of forestry seedling cultivation, which is a disadvantage. Summary of the invention
[0003] In response to the above-mentioned deficiencies in the prior art, the utility model provides a forestry seedling tray device which is convenient for quickly and completely removing the soil from the roots of seedlings after cultivation is completed, thereby improving the efficiency of seedling transplanting. The utility model has a flexible structure, and by rotating one of the light-collecting surfaces of the seedlings, the light-collecting surfaces of the other seedlings are changed in conjunction with each other, without the need to rotate multiple seedlings one by one, and is easy to operate. The light-collecting surfaces of the seedlings are frequently changed, thereby avoiding the seedlings from growing tilted due to their characteristic of growing in the direction of light, thereby improving the quality of forestry seedlings.
[0004] The purpose of this utility model is achieved through the following technical solutions:
[0005] A forestry seedling tray device includes a seedling tray, a fixed base, a seedling cup shell, a seedling cup sleeve, a driving plug, a limiting circular plate, and a gear plate. The seedling tray has multiple placement slots, the placement slots are adapted to the seedling cup sleeve, the seedling cup sleeve is connected to the placement slots, the upper part of the seedling cup sleeve is provided with a rotating plate, the lower part of the rotating plate fits the seedling tray, the interior of the seedling cup sleeve is connected to the seedling cup shell, the seedling cup shell has a limiting card slot, the seedling cup sleeve has a limiting card block, the limiting card block is adapted to the limiting card slot, the limiting card block is connected to the limiting card slot, the seedling cup shell is divided into a left seedling cup shell and a right seedling cup shell, the left seedling cup shell is connected to the right seedling cup shell, the left seedling cup shell has docking plug plates on both sides, the right seedling cup shell has docking slots on both sides, the docking plug plates are adapted to the docking slots, and the docking plug plates are connected to the docking slots.
[0006] The lower part of the seedling-raising tray of the present utility model is connected to a fixed base. The fixed base fits against the lower side of the gear disk, and the upper side of the gear disk fits against the seedling-raising tray. The seedling-raising tray has a plurality of upper through-holes. The upper part of the gear disk has an upper shaft rod, which is adapted to the upper through-holes. The upper shaft rod passes through the upper through-holes and is connected to a seedling-raising cup sleeve. The seedling-raising cup sleeve has a driving plug, and the upper shaft rod has a driving slot. The driving plug is adapted to the driving slot, and the driving plug is connected to the driving slot.
[0007] The lower part of the gear disk of the present utility model has a lower shaft rod. The fixed base has a plurality of lower through-holes, which are adapted to the lower shaft rod. The lower shaft rod passes through the lower through-holes and is connected to a limiting circular plate. The limiting circular plate fits against the fixed base. The gear disk is divided into a main gear disk and a sub-gear disk, which are meshed with each other, and the main gear disk is connected to the sub-gear disk. Beneficial effects
[0008] The seedling-raising cup bodies are formed by opposing and buckling the two sides of the seedling-raising cup shells of the present utility model and placing them into the seedling-raising cup sleeves. Through the split design among the three, it is convenient to quickly and completely take out the soil at the roots of the seedlings after cultivation, avoiding forced excavation, which may damage the roots of the seedlings, and improving the transplanting efficiency of the seedlings.
[0009] After the seedling-raising cup sleeve of the present utility model is placed into the placement groove, the driving plug provided at its lower end is embedded into the driving slot, providing a force-bearing fulcrum for the gear disk to drive the seedling-raising cup sleeve and the seedling-raising cup shell to rotate synchronously. A plurality of sub-gear disks are evenly distributed in the axial direction of the main gear disk and are all meshed and connected with it. Therefore, when the main gear disk or a certain sub-gear disk rotates, the rest of the gear disks will all produce linkage. When the lighting surface of a certain seedling is changed by rotating the rotating plate, the lighting surfaces of the rest of the seedlings will all change accordingly. By frequently changing the lighting surface of the seedlings, it is possible to avoid the seedlings growing obliquely due to the characteristic of growing towards the light direction, resulting in a fixed lighting surface, and improving the quality of forestry seedling cultivation.
[0010] The present utility model is convenient for quickly and completely taking out the soil at the roots of the seedlings after cultivation, improving the transplanting efficiency of the seedlings, and having a flexible structure. By rotating the lighting surface of a certain seedling, the lighting surfaces of the rest of the seedlings will all change accordingly, without the need to rotate each of the multiple seedlings one by one, which is convenient for operation. By frequently changing the lighting surface of the seedlings, it is possible to avoid the seedlings growing obliquely due to the characteristic of growing towards the light direction, and improving the quality of forestry seedling cultivation. Description of the drawings
[0011] Figure 1 It is a schematic structural diagram of the gear disk described in the present utility model.
[0012] Figure 2 It is a schematic structural diagram of the seedling-raising tray described in the present utility model.
[0013] Figure 3Explosion diagram of the structure of the seedling-raising cup shell and the seedling-raising cup sleeve described in the present utility model.
[0014] Figure 4 Cross-sectional view of the structure of a forestry seedling-raising tray device described in the present utility model.
[0015] Figure 5 Sectional view of the structure of a forestry seedling-raising tray device described in the present utility model.
[0016] Figure 6 Sectional view of the structure of the gear disk and the fixed base described in the present utility model. Specific implementation mode
[0017] The present utility model will be further described in detail below with reference to the drawings and embodiments:
[0018] Embodiment 1:
[0019] A forestry seedling-raising tray device includes a seedling-raising tray 01, a fixed base 02, a seedling-raising cup shell 07, a seedling-raising cup sleeve 08, a driving plug 09, a limiting circular plate 16, and a gear disk 18. The seedling-raising tray 01 has a plurality of placement grooves 11, and the placement grooves 11 are adapted to the seedling-raising cup sleeve 08. The seedling-raising cup sleeve 08 is connected to the placement grooves 11. The upper part of the seedling-raising cup sleeve 08 has a rotating plate 17, and the lower part of the rotating plate 17 is attached to the seedling-raising tray 01. The inside of the seedling-raising cup sleeve 08 is connected to the seedling-raising cup shell 07. The seedling-raising cup shell 07 has a limiting card slot 06, and the seedling-raising cup sleeve 08 has a limiting card block 05. The limiting card block 05 is adapted to the limiting card slot 06, and the limiting card block 05 is connected to the limiting card slot 06. The seedling-raising cup shell 07 is divided into a left seedling-raising cup shell 071 and a right seedling-raising cup shell 072. The left seedling-raising cup shell 071 is connected to the right seedling-raising cup shell 072. The two sides of the left seedling-raising cup shell 071 have docking plug plates 03, and the two sides of the right seedling-raising cup shell 072 have docking slots 04. The docking plug plates 03 are adapted to the docking slots 04, and the docking plug plates 03 are connected to the docking slots 04. The two seedling-raising cup shells 07 are oppositely buckled and placed inside the seedling-raising cup sleeve 08 to form a seedling-raising cup body. Through the split design among the three, it is convenient to quickly and completely take out the soil at the root of the seedlings after cultivation, avoiding forced excavation, damaging the roots of the seedlings, and improving the seedling transplanting efficiency.
[0020] Embodiment 2:
[0021] In the utility model, the lower part of the seedling-raising tray 01 is connected to a fixed base 02. The fixed base 02 is attached to the lower side of the gear disk 18, and the upper side of the gear disk 18 is attached to the seedling-raising tray 01. The seedling-raising tray 01 has a plurality of upper through-holes 13. The upper part of the gear disk 18 has an upper shaft rod 12, and the upper shaft rod 12 is adapted to the upper through-holes 13. The upper shaft rod 12 passes through the upper through-holes 13. The upper shaft rod 12 is connected to the seedling cup sleeve 08. The seedling cup sleeve 08 has a driving insert block 09, and the upper shaft rod 12 has a driving slot 10. The driving insert block 09 is adapted to the driving slot 10, and the driving insert block 09 is connected to the driving slot 10. After the seedling cup sleeve 08 is placed in the placement groove 11, the driving insert block 09 provided at its lower end is embedded in the driving slot 10, providing a force-bearing fulcrum for the gear disk 18 to drive the seedling cup sleeve 08 and the seedling cup shell 07 to rotate synchronously. A plurality of sub-gear disks 182 are evenly distributed in the axial direction of the main gear disk 181 and are all meshed and connected thereto. Therefore, when the main gear disk 181 or a certain sub-gear disk 182 rotates, the remaining gear disks 18 all produce linkage, so that when the lighting surface of a certain seedling is changed by rotating the rotating plate 17, the lighting surfaces of the remaining seedlings all produce linkage changes accordingly. By frequently changing the lighting surface of the seedlings, it is avoided that due to the characteristic that the seedlings grow towards the light direction, the lighting surface of the seedlings is fixed and the growth is inclined, thus improving the quality of forestry seedling raising.
[0022] Embodiment 3:
[0023] In the utility model, the lower part of the gear disk 18 has a lower shaft rod 14, and the fixed base 02 has a plurality of lower through-holes 15. The lower shaft rod 14 is adapted to the lower through-holes 15. The lower shaft rod 14 passes through the lower through-holes 15. The lower shaft rod 14 is connected to a limiting circular plate 16, and the limiting circular plate 16 is attached to the fixed base 02. The gear disk 18 is divided into a main gear disk 181 and sub-gear disks 182. The main gear disk 181 is meshed with the sub-gear disks 182, and the main gear disk 181 is connected to the sub-gear disks 182. This device facilitates the rapid and complete removal of the soil at the roots of the seedlings after cultivation. While improving the seedling transplanting efficiency, the structure is flexible. By rotating the lighting surface of a certain seedling, the lighting surfaces of the remaining seedlings all produce linkage changes accordingly, without the need to rotate each of the multiple seedlings one by one, which is convenient to operate. And by frequently changing the lighting surface of the seedlings, it is avoided that due to the characteristic that the seedlings grow towards the light direction, the seedlings grow inclined, thus improving the quality of forestry seedling raising.
[0024] Embodiment 4:
[0025] Installation steps: First, place the gear disc 18 into the fixed base 02, and let the lower shaft rod 14 pass through the lower through hole 15. The lower surface of the gear disc 18 is in contact with the fixed base 02. Multiple secondary gear discs 182 are evenly distributed axially on the main gear disc 181 and are all meshed and connected thereto. Then, place the limiting circular plate 16 at the bottom of the fixed base 02 and fixedly connect it to the lower shaft rod 14. The upper surface of the limiting circular plate 16 is in contact with the fixed base 02, and the limiting circular plate 16 rotates synchronously with the lower shaft rod 14. Then, install and fix the seedling tray 01 on the upper part of the fixed base 02, and the seedling tray 01 is in contact with the upper surface of the gear disc 18. The upper shaft rod 12 passes through the upper through hole 13. Then, oppositely buckle the left seedling cup shell 071 and the right seedling cup shell 072, and insert the docking plug 03 into the docking slot 04. Then, place the assembled seedling cup shell 07 into the seedling cup sleeve 08, and insert the limiting block 05 into the limiting groove 06. Finally, place the seedling cup sleeve 08 into the placement groove 11 until the lower surface of the rotating plate 17 is in contact with the upper surface of the seedling tray 01, and insert the driving block 09 into the driving slot 10 to complete the installation.
[0026] The above are only the preferred embodiments of the present invention and are not used to limit the present invention. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the technical principle of the present invention, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present invention.
Claims
1. A forestry seedling tray device, characterized by : It includes a seedling tray (01), a fixed base (02), a seedling cup shell (07), a seedling cup sleeve (08), a driving plug (09), a limiting circular plate (16), and a gear disc (18). The seedling tray (01) has a plurality of placement grooves (11), and the placement grooves (11) are adapted to the seedling cup sleeve (08). The seedling cup sleeve (08) is connected to the placement grooves (11). The upper part of the seedling cup sleeve (08) has a rotating plate (17), and the lower part of the rotating plate (17) fits the seedling tray (01). The inside of the seedling cup sleeve (08) is connected to the seedling cup shell (07). The seedling cup shell (07) has a limiting card slot (06), and the seedling cup sleeve (08) has a limiting card block (05). The limiting card block (05) is adapted to the limiting card slot (06), and the limiting card block (05) is connected to the limiting card slot (06). The seedling cup shell (07) is divided into a left seedling cup shell (071) and a right seedling cup shell (072). The left seedling cup shell (071) is connected to the right seedling cup shell (072). The two sides of the left seedling cup shell (071) have docking plug boards (03), and the two sides of the right seedling cup shell (072) have docking slots (04). The docking plug boards (03) are adapted to the docking slots (04), and the docking plug boards (03) are connected to the docking slots (04).
2. The forestry seedling tray device according to claim 1, characterized in that : The lower part of the seedling tray (01) is connected to the fixed base (02). The fixed base (02) fits the lower side of the gear disc (18), and the upper side of the gear disc (18) fits the seedling tray (01). The seedling tray (01) has a plurality of upper through holes (13), and the upper part of the gear disc (18) has an upper shaft rod (12). The upper shaft rod (12) is adapted to the upper through holes (13). The upper shaft rod (12) passes through the upper through holes (13). The upper shaft rod (12) is connected to the seedling cup sleeve (08). The seedling cup sleeve (08) has a driving plug (09), and the upper shaft rod (12) has a driving slot (10). The driving plug (09) is adapted to the driving slot (10), and the driving plug (09) is connected to the driving slot (10).
3. A forestry seedling tray device according to claim 2, characterized in that : The lower part of the gear disc (18) has a lower shaft rod (14). The fixed base (02) has a plurality of lower through holes (15). The lower shaft rod (14) is adapted to the lower through holes (15). The lower shaft rod (14) passes through the lower through holes (15). The lower shaft rod (14) is connected to the limiting circular plate (16). The limiting circular plate (16) fits the fixed base (02). The gear disc (18) is divided into a main gear disc (181) and a sub-gear disc (182). The main gear disc (181) meshes with the sub-gear disc (182), and the main gear disc (181) is connected to the sub-gear disc (182).
Citation Information
Patent Citations
Novel forestry seedling raising tray device
CN216820905U