Seedbed for outdoor sea-buckthorn twig cuttage

By introducing toothed transmission and hinged rotation structure into the seedbed, and using the drive component to adjust the light angle, the problem of difficult adjustment of the seedbed structure was solved, thus improving the cultivation effect of sea buckthorn tender branches and the lifespan of the drive structure.

CN223745402UActive Publication Date: 2026-01-02XINJIANG HUACHUANG AGROFORESTRY ECOLOGICAL TECH CO LTD
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Patent Information

Application Number
CN202520295048.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2026-01-02
Estimated Expiration
2035-02-21

AI Technical Summary

Technical Problem

The existing cutting bed structure makes it difficult to flexibly adjust the light angle according to the light intensity required by the plants, which affects the cultivation effect of sea buckthorn tender branches.

Method used

By adding a toothed drive structure, a hinged rotation structure, a storage and retrieval seedbed structure, and a shell protection structure to the seedbed, the drive component drives the rotation component to rotate, adjusts the light angle of the storage component and the retrieval component, and provides nutrient solution support through the water storage tank.

Benefits of technology

It enables flexible adjustment of the light angle on sea buckthorn twigs, improving plant cultivation results and extending the service life of the drive structure.

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Abstract

The utility model relates to the field of cuttage seedbeds, in particular to a seedbed for outdoor sea-buckthorn twig cuttage, and solves the technical problem that when the cuttage seedbed is used, the seedbed structure is difficult to flexibly adjust the illumination angle of sea-buckthorn twigs as required; according to the technical scheme, the seedbed for outdoor sea-buckthorn twig cuttage comprises a connecting rod, a bearing assembly, a rotating assembly, a storage assembly, a shell assembly, a driving assembly and a storing and taking assembly; the electric cylinder drives the rack to enable the gear bolt to rotate so as to drive the rotating frame to rotate, and the storage box and the storing and taking box can rotate along with rotation of the rotating frame. The illumination angles of the sea-buckthorn twigs cut in the first net groove and the second net groove are adjusted according to needs, and the problem that when a cutting seedbed is used, the seedbed structure is difficult to flexibly adjust the illumination angles of the sea-buckthorn twigs according to needs is solved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the cuttage seedbed field, and specifically relates to a seedbed for cuttage of open sand shurb willow. BACKGROUND

[0002] The seedbed usually refers to a place for cultivating seeds or seedlings, and is an important tool in agriculture and horticulture for planting and cultivating seeds or seedlings of plants so as to transplant them to larger lands or containers for growth.

[0003] When the existing cuttage seedbed is used for cultivating sand shurb willow, the seedbed structure is usually a fixed table-shaped support structure, which can only bear the plants, and the light intensity is an important factor affecting the plant cultivation effect in the process of cultivation, but the existing seedbed structure is usually difficult to flexibly adjust the light angle of the plants according to the needs, thereby causing a certain influence on the plant cultivation effect.

[0004] Therefore, in view of the problem that the seedbed structure is fixed and difficult to flexibly adjust the light angle of the plants according to the needs of the light intensity when the cuttage seedbed is used for cultivating sand shurb willow, a seedbed for cuttage of open sand shurb willow is developed, which is equipped with a tooth transmission structure, a hinged rotating structure, a storage and access type seedbed structure and a shell protection structure, so that the light angle of the plants can be flexibly adjusted according to the needs of the plant light, and the service life of the driving structure is improved, thereby improving the cultivation effect of the device on the sand shurb willow. SUMMARY

[0005] In order to overcome the problem that the seedbed structure is difficult to flexibly adjust the light angle of the sand shurb willow according to the needs when the cuttage seedbed is used.

[0006] The technical scheme of the utility model is as follows: a seedbed for cuttage of open sand shurb willow, comprising a connecting rod, a bearing assembly, a rotating assembly, a storage assembly, a shell assembly, a driving assembly and an access assembly, the connecting rod is installed in the bearing assembly, the rotating assembly is driven by the tooth of the bearing assembly, the storage assembly is hingedly installed in the rotating assembly, the access assembly is buckledly installed in the storage assembly, the driving assembly is installed at the left end of the bearing assembly, and the shell assembly with heat dissipation holes is arranged on the outer wall of the driving assembly.

[0007] Preferably, the rotating assembly is driven to rotate by the driving assembly, and the storage assembly drives the access assembly to rotate with the rotating assembly, so as to adjust the sand shurb willow arranged in the access assembly to a suitable light angle, and the storage assembly is always kept horizontal and vertical.

[0008] As preferred, the bearing assembly comprises a bearing frame, a first slot, a bearing plate, a second slot, the right end of the bearing frame is provided with the first slot, the left end of the bearing frame is provided with the second slot, the left end of the bearing frame is fixedly connected with the bearing plate, and the two bearing assemblies are fixedly connected with a connecting rod. In use, the bearing frame and the connecting rod can form an H-shaped support frame to stably support other components, and the first slot and the second slot can limit and support the rotation of the rotating frame.

[0009] As preferred, the rotating assembly comprises a limiting pin, a rotating frame, a gear pin, and a hinge cylinder. The right end of the rotating frame is fixedly connected with the limiting pin, and the left end of the rotating frame is fixedly connected with the gear pin. The limiting pin is rotatably installed in the first slot, and the gear pin is rotatably installed in the second slot. The left and right ends of the rotating frame are fixedly connected with three groups of hinge cylinders distributed at equal intervals. In use, the rotation of the limiting pin and the gear pin can drive the rotating frame to rotate and adjust the storage box to a suitable angle to receive sunlight.

[0010] As preferred, the storage assembly comprises a storage box, a water storage box, a first mesh slot, and a limiting slot. The storage box is rotatably installed in the hinge cylinder, and the rear end of the storage box is fixedly connected with the water storage box. The rear end inner wall of the storage box is provided with the first mesh slot distributed at equal intervals. The upper and lower ends of the storage box are provided with the limiting slot symmetrically. In use, the storage box can store the access box, the water storage box can store nutrient solution to provide nutrients for the seabuckthorn shoots, the first mesh slot can facilitate the insertion of the seabuckthorn shoots into the nutrient solution for limiting and fixing, and the rotation of the storage box can be adjusted with the rotation of the rotating frame to adjust the seabuckthorn shoots to the most suitable light angle.

[0011] As preferred, the access assembly comprises an access box, a handle, a second mesh slot, and a limiting block. The access box is arranged in the storage box, the rear end inner wall of the access box is provided with the second mesh slot, the front end of the access box is fixedly connected with the handle symmetrically, and the upper and lower ends of the access box are fixedly connected with two groups of limiting blocks symmetrically. The limiting block is matched with the limiting slot. In use, by pulling the handle, the seabuckthorn shoots inserted in the second mesh slot can be quickly taken out or placed in the storage box, which is convenient for the user to load and unload.

[0012] As preferred, the driving assembly comprises an electric cylinder and a rack. The electric cylinder is installed at the left end edge of the bearing plate, the lower end of the electric cylinder piston rod is fixedly connected with the rack, the rack is engaged with the gear pin, and the right end of the rack is attached to the left end of the bearing plate. In use, the rotation of the gear pin can be driven by the electric cylinder driving the rack to adjust the light angle of the seabuckthorn shoots in the storage box.

[0013] As preferred, the shell assembly comprises a shell and a heat dissipation groove, the shell is mounted on the left end of the bearing plate, the front and rear ends of the shell are provided with equidistantly distributed heat dissipation grooves, and the left end of the rack and the electric cylinder is attached to the inner wall of the left end of the shell.

[0014] The utility model discloses the beneficial effects of:

[0015] 1. Through the rotation of the driving assembly, the storage assembly can be rotated and adjusted, the access assembly can be rotated with the rotation of the rotating assembly, and the storage assembly can always be kept horizontal and vertical, so that the sea buckthorn branch arranged in the access assembly can be adjusted to the appropriate illumination angle.

[0016] 2. The water storage tank can store nutrient solution to provide nutrients for the sea buckthorn branch, and the first mesh groove can facilitate the insertion of the sea buckthorn branch into the nutrient solution for positioning and fixing.

[0017] 3. By pulling the handle, the sea buckthorn branch inserted into the second mesh groove can be quickly taken out or placed into the storage box, which is convenient for the user to load and unload.

[0018] 4. The shell and the heat dissipation groove can protect the electric cylinder while dissipating heat, thereby prolonging the service life of the electric cylinder. BRIEF DESCRIPTION OF DRAWINGS

[0019] Fig. 1 The utility model discloses a kind of bed of seedling for open-air sea buckthorn branch cutting, and the three-dimensional structure schematic diagram of the bed of seedling is shown.

[0020] Fig. 2 The utility model discloses a kind of bed of seedling for open-air sea buckthorn branch cutting, and the three-dimensional structure split schematic diagram of the bed of seedling is shown.

[0021] Fig. 3 The utility model discloses a kind of bed of seedling for open-air sea buckthorn branch cutting, and the three-dimensional structure schematic diagram of the bearing assembly of the bed of seedling is shown.

[0022] Fig. 4 The utility model discloses a kind of bed of seedling for open-air sea buckthorn branch cutting, and the three-dimensional structure split schematic diagram of the rotating assembly of the bed of seedling is shown.

[0023] Fig. 5 The utility model discloses a kind of bed of seedling for open-air sea buckthorn branch cutting, and the three-dimensional structure split schematic diagram of the storage assembly and access assembly of the bed of seedling is shown.

[0024] Fig. 6 The utility model discloses a kind of bed of seedling for open-air sea buckthorn branch cutting, and the three-dimensional structure split schematic diagram of the shell assembly and driving assembly of the bed of seedling is shown.

[0025] Explanation of reference signs: 101 - bearing frame, 102 - first groove body, 103 - bearing plate, 104 - second groove body, 201 - limiting bolt, 202 - rotating frame, 203 - gear bolt, 204 - hinged cylinder, 301 - storage box, 302 - water storage box, 303 - first mesh groove, 304 - limiting groove, 401 - shell, 402 - heat dissipation groove, 501 - electric cylinder, 502 - rack, 601 - access box, 602 - handle, 603 - second mesh groove, 604 - limiting block, 7 - connecting rod. DETAILED DESCRIPTION

[0026] The utility model is further explained in connection with the drawings and examples.

[0027] Please refer to Figs. 1-2 The utility model provides a kind of example: a seedbed for open sand thorny shrub cutting, including connecting rod 7, further including bearing assembly, rotating assembly, storage assembly, shell assembly, driving assembly, access assembly, connecting rod 7 is installed in bearing assembly, rotating assembly is driven by tooth on bearing assembly, hinged installation is carried out in rotating assembly, storage assembly, access assembly is installed in storage assembly with buckle type, the left end of bearing assembly is installed with the driving assembly of tooth type, the outer wall of driving assembly is provided with the shell assembly with self heat dissipation hole, rotating assembly is rotated by driving assembly, and access assembly is rotated with the rotation of rotating assembly by storage assembly, to adjust sand thorny shrub to suitable illumination angle being set in access assembly, and make storage assembly always keep horizontal vertical.

[0028] Please refer to Figs. 3-4In the embodiment, the bearing assembly comprises a bearing frame 101, a first slot 102, a bearing plate 103, and a second slot 104. The right end of the bearing frame 101 is provided with the first slot 102, the left end of the bearing frame 101 is provided with the second slot 104, and the left end of the bearing frame 101 is fixedly connected with the bearing plate 103. Two bearing frame 101 assemblies are fixedly connected with a connecting rod 7. In use, the bearing frame 101 cooperates with the connecting rod 7 to form an H-shaped support frame to stably support other components. The first slot 102 and the second slot 104 can limit and support the rotation of the rotating frame 202. The rotating assembly comprises a limiting bolt 201, a rotating frame 202, a gear bolt 203, and a hinge cylinder 204. The right end of the rotating frame 202 is fixedly connected with the limiting bolt 201, and the left end of the rotating frame 202 is fixedly connected with the gear bolt 203. The limiting bolt 201 is rotatably installed in the first slot 102, and the gear bolt 203 is rotatably installed in the second slot 104. The left and right ends of the rotating frame 202 are fixedly connected with three groups of hinge cylinders 204 distributed at equal intervals. In use, the rotation of the limiting bolt 201 cooperates with the gear bolt 203 to drive the rotating frame 202 to rotate and adjust, so as to rotate and adjust the storage box 301 to a suitable angle to receive sunlight.

[0029] Please refer to Fig. 5 In the embodiment, the storage assembly comprises a storage box 301, a water storage box 302, a first mesh slot 303, and a limiting slot 304. The storage box 301 is rotatably installed in the hinge cylinder 204, and the rear end of the storage box 301 is fixedly connected with the water storage box 302. The rear end inner wall of the storage box 301 is provided with the first mesh slot 303 distributed at equal intervals, and the upper and lower ends of the storage box 301 are provided with the limiting slot 304. In use, the storage box 301 can store the access box 601, the water storage box 302 can store nutrient solution to provide nutrients for the seabuckthorn shoots, the first mesh slot 303 can facilitate the insertion of the seabuckthorn shoots into the nutrient solution for limiting and fixing, and the rotation of the storage box 301 can be adjusted with the rotation of the rotating frame 202 to adjust the seabuckthorn shoots to the most suitable illumination angle. The access assembly comprises an access box 601, a handle 602, a second mesh slot 603, and a limiting block 604. The access box 601 is arranged in the storage box 301, the rear end inner wall of the access box 601 is provided with the second mesh slot 603, the front end of the access box 601 is fixedly connected with the handle 602, and the upper and lower ends of the access box 601 are fixedly connected with the limiting block 604. In use, pulling the handle 602 can quickly take out or place the seabuckthorn shoots inserted in the second mesh slot 603 into the storage box 301, which is convenient for the user to load and unload.

[0030] Please refer to Fig. 6In the embodiment, the driving assembly comprises an electric cylinder 501 and a rack 502, the electric cylinder 501 is installed at the left end edge of the bearing plate 103, the lower end of the piston rod of the electric cylinder 501 is fixedly connected with the rack 502, the rack 502 is engaged with the gear pin 203, the right end of the rack 502 is in abutment with the left end of the bearing plate 103, in use, the rack 502 can drive the gear pin 203 to rotate by the electric cylinder 501, so as to adjust the illumination angle of the sea-buckthorn shoots arranged in the storage box 301, the shell assembly comprises a shell 401 and heat dissipation grooves 402, the shell 401 is installed at the left end of the bearing plate 103, the front and rear ends of the shell 401 are penetrated to be provided with the equidistantly distributed heat dissipation grooves 402, the left end of the rack 502 and the electric cylinder 501 is in abutment with the inner wall of the left end of the shell 401, in use, the electric cylinder 501 can be protected and dissipated at the same time by the shell 401 cooperating with the heat dissipation grooves 402, so as to improve the service life of the electric cylinder 501.

[0031] In the working process, first, the nutrient solution is poured into the water storage tank 302, and the sea-buckthorn shoots are inserted into the first mesh groove 303 and the second mesh groove 603 for limiting and fixing;

[0032] Then, the electric cylinder 501 is started again, the gear pin 203 is driven by the electric cylinder 501, the rotating frame 202 is driven to rotate by the gear pin 203, so as to drive the storage box 301 and the access box 601 to rotate along with the rotation of the rotating frame 202, and the storage box 301 and the access box 601 always keep horizontal and vertical directions, so that the sea-buckthorn shoots cultured in the access box 601 are flexibly adjusted in illumination angle according to the needs of plant culture.

[0033] Through the above steps, the gear pin 203 is driven to rotate by the electric cylinder 501 driving the rack 502, so as to drive the rotating frame 202 to rotate, and the storage box 301 and the access box 601 are driven to rotate along with the rotation of the rotating frame 202, so as to adjust the illumination angle of the sea-buckthorn shoots inserted in the first mesh groove 303 and the second mesh groove 603 according to the needs, and the problem that the cutting seedbed structure is difficult to flexibly adjust the illumination angle of the sea-buckthorn shoots according to the needs in use is solved.

[0034] The embodiments of the utility model are described in detail above combined with the drawings, but the utility model is not limited to the above-mentioned embodiments, and various changes can be made within the knowledge range possessed by the person skilled in the art without departing from the purpose of the utility model.

Claims

1. A bed for open sand bush cutting, comprising a connecting rod (7), characterized in that: Also include the bearing assembly, rotating assembly, storage assembly, shell assembly, drive assembly, access assembly, bearing assembly inside the installation of connecting rod (7), bearing assembly on the tooth drive rotating assembly, rotating assembly inside the hinge installation of storage assembly, storage assembly inside the buckle type installation of access assembly, bearing assembly left end installation of tooth type drive assembly, drive assembly outer wall is provided with shell assembly with heat dissipation hole.

2. A bed for cuttings of open sand bush according to claim 1, characterized in that: The bearing assembly comprises a bearing frame (101), a first groove (102), a bearing plate (103) and a second groove (104). The right end of the bearing frame (101) penetrates the first groove (102), the left end of the bearing frame (101) penetrates the second groove (104), and the left end of the bearing frame (101) is fixedly connected with the bearing plate (103). Two bearing frame (101) assemblies are fixedly connected with the connecting rod (7).

3. A bed for open sand bush cutting according to claim 2, characterized in that: The rotating assembly comprises a limiting bolt (201), a rotating frame (202), a gear bolt (203) and a hinge cylinder (204). The right end of the rotating frame (202) is fixedly connected with the limiting bolt (201), the left end of the rotating frame (202) is fixedly connected with the gear bolt (203), the limiting bolt (201) is rotatably installed in the first groove (102), the gear bolt (203) is rotatably installed in the second groove (104), and the left and right ends of the rotating frame (202) are fixedly connected with three groups of equidistantly distributed hinge cylinders (204).

4. A bed for cuttings of young branches of Hippophae rhamnoides L. according to claim 3, characterized in that: The storage assembly comprises a storage box (301), a water storage box (302), a first mesh groove (303) and a limiting groove (304). The storage box (301) is rotatably installed in the hinge cylinder (204), the rear end of the storage box (301) is fixedly connected with the water storage box (302), equidistantly distributed first mesh grooves (303) are formed through the rear end inner wall of the storage box (301), and left-right symmetrical limiting grooves (304) are formed at the upper and lower ends of the storage box (301).

5. A bed for open sand bush cutting according to claim 4, characterized in that: The access assembly comprises an access box (601), a handle (602), a second mesh groove (603) and a limiting block (604). The access box (601) is arranged in the storage box (301), the second mesh groove (603) is formed through the rear end inner wall of the access box (601), the left-right symmetrical handles (602) are fixedly connected to the front end of the access box (601), and the left-right symmetrical two groups of limiting blocks (604) are fixedly connected to the upper and lower ends of the access box (601). The limiting blocks (604) are matched with the limiting grooves (304).

6. A bed for open sand bush cutting according to claim 5, characterized in that: The drive assembly comprises an electric cylinder (501) and a rack (502). The electric cylinder (501) is installed at the left edge of the bearing plate (103), the lower end of the piston rod of the electric cylinder (501) is fixedly connected with the rack (502), the rack (502) is engaged with the gear bolt (203), and the right end of the rack (502) is attached to the left end of the bearing plate (103).

7. A bed for open sand bush cutting according to claim 6, characterized in that: The shell assembly comprises an outer shell (401) and heat dissipation grooves (402), the outer shell (401) is installed at the left end of the bearing plate (103), the front and rear ends of the outer shell (401) are provided with equidistantly distributed heat dissipation grooves (402), and the left end of the rack (502) and the electric cylinder (501) is attached to the inner wall of the left end of the outer shell (401).