Seedling cultivation device for fruit planting
Through the combined design of assembled plates and insert plates, the stability and flexibility of the traditional fruit planting seedling cultivation device is solved, and the seedling bracket that is stable and easy to disassemble is realized, which improves the efficiency and flexibility of the cultivation device.
Patent Information
- Application Number
- CN202510535976.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-27
- Publication Date
- 2025-07-29
AI Technical Summary
Traditional fruit seedling cultivation equipment has shortcomings in terms of stability and flexibility, which is difficult to meet the needs of modern efficient and precise agricultural cultivation, and it is difficult to operate during turnover and use.
The assembly plate structure is designed, including a combination of seedling bracket, insertion plate, assembly groove and screw nut, and the stability and flexibility are enhanced through the insertion plate limit and the detachable connection of the assembly plate.
The stable connection of the seedling bracket is achieved, avoiding pouring, improving the flexibility and scalability of the cultivation device, and reducing the difficulty of operation.
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Figure CN120380946A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of seedling cultivation devices, and specifically to a seedling cultivation device for fruit planting. Background Art
[0002] In the field of fruit planting, seedling cultivation is a crucial link, which directly relates to the subsequent growth quality and yield of fruits. Traditional seedling cultivation devices often have problems such as a single structure and limited functions, and it is difficult to meet the requirements of modern efficient and precise agricultural planting.
[0003] Specifically, traditional cultivation devices have obvious deficiencies in terms of stability. Due to the insecure connection between the soil pot and the cultivation device, the seedling cultivation bracket is prone to tipping during placement, which not only damages the seedlings but also affects the cultivation efficiency. In addition, traditional cultivation devices also have limitations in terms of splicing and combination, and it is difficult to flexibly adjust the size and shape of the cultivation area according to actual needs, thus restricting their flexibility and convenience in practical applications.
[0004] At the same time, there are also some problems in the process of turnover and reuse of traditional cultivation devices. For example, the limiting structures such as the plug board are prone to loosening or falling off during turnover, resulting in the need to readjust or reinstall the cultivation device when it is reused again, increasing the operation difficulty and labor intensity. Summary of the Invention
[0005] The purpose of the present invention is to provide a seedling cultivation device for fruit planting to solve the problems raised in the above background art.
[0006] To achieve the above purpose, the present invention provides the following technical solution: A seedling cultivation device for fruit planting, including an assembled board, the bottom surface of the assembled board is fixed with a seedling cultivation bracket, both sides of the seedling cultivation bracket are provided with side grooves, the bottom surface of the side groove is inserted with a plug board, one side of the assembled board is provided with an assembly groove one on the top surface, the other side of the assembled board is provided with an assembly groove two on the bottom surface, a screw rod is fixed on the surface of the assembly groove one, a perforation is provided on the surface of the assembly groove two, when two assembled boards are spliced side by side, the assembly groove one and the assembly groove two are spliced in a staggered manner, and the screw rod passes through the perforation and is sleeved with a screwed nut one, both the front and rear sides of the assembled board are provided with missing grooves, and splicing columns are fixed inside the missing grooves.
[0007] Preferably, the assembled board has a square plate-like structure, a round opening is provided on the surface of the assembled board, the seedling cultivation bracket has a cylindrical structure, and the inner ring diameter of the seedling cultivation bracket is equal to the diameter of the round opening.
[0008] Preferably, a reserved opening is provided on the bottom surface of the seedling cultivation bracket, the reserved opening is an inverted "convex"-shaped round opening, a metal mesh sheet is fixed inside the reserved opening, and the top surface of the metal mesh sheet is coplanar with the top surface of the bottom plate of the seedling cultivation bracket.
[0009] Preferably, the side groove is a square groove, a through hole is formed in the bottom surface of the side groove, the height of the insertion plate is less than the height of the side groove, a triangular prism is integrally formed at the bottom end of the insertion plate, and the bottom end of the insertion plate is inserted into the through hole.
[0010] Preferably, the insertion plate is in an "L"-shaped plate structure, an elastic hanging piece is fixed on one side of the top end of the insertion plate, a clamping strip is fixed at the bottom end of the elastic hanging piece, the clamping strip is inserted into a clamping groove, the clamping groove is formed in the outer wall of the seedling raising bracket, the clamping grooves and the side grooves correspond one by one, and the clamping grooves are located below the side grooves.
[0011] Preferably, an installation groove is formed on the other side of the top end of the insertion plate, a rubber clamping strip is fixed inside the installation groove, the thickness of the rubber clamping strip is greater than the depth of the installation groove, and the rubber clamping strip generates elastic deformation when clamped between the installation groove and the side groove.
[0012] Preferably, a rubber cushion strip is fixed on the top surface of the first assembly groove, the rubber cushion strip is in an annular plate structure, and after two assembly plates are spliced side by side, the rubber cushion strip is clamped between the first assembly groove and the second assembly groove.
[0013] Preferably, the through hole is an inverted "convex"-shaped circular hole, and the height of the screw is equal to the height of the through hole.
[0014] Preferably, the notch is a semi-circular groove, the height of the splicing column is equal to the height of the notch, and when two assembly plates are assembled front and back, a second screw nut is sleeved and screwed on the stud formed by splicing the two splicing columns.
[0015] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0016] For the seedling cultivation device for fruit planting proposed by the present invention, the insertion plates arranged on both sides of the seedling raising bracket serve as limiting structures. By inserting into the soil in the soil pot, the phenomenon of the seedling raising bracket tipping over is effectively prevented. The top end of the insertion plate cooperates with the clamping groove on the outer wall of the seedling raising bracket through the elastic hanging piece and the clamping strip, ensuring that the insertion plate will not move back along the side groove after being fixed, further enhancing the stability.
[0017] Through the design of the first assembly groove, the second assembly groove, the screw and the first nut, the left and right two assembly plates are realized to be spliced side by side, and the splicing is firm and easy to disassemble. The notches and the splicing columns on the front and back sides of the assembly plates cooperate with the second nut to realize the splicing of two rows of assembly plates, further improving the flexibility and expandability of the cultivation device. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 is a schematic structural diagram of the present invention;
[0019] Figure 2 is a top view of the structure of the present invention;
[0020] Figure 3 is Figure 2Cross-sectional view of the structure at A-A in [the figure];
[0021] Figure 4 is Figure 3 Schematic enlarged view of the structure at A in [the figure];
[0022] Figure 5 Schematic diagram of the structure of the present invention after the insertion plate is indented into the side groove;
[0023] Figure 6 Schematic diagram of the structure of the present invention after multiple assembled plates are connected;
[0024] Figure 7 is Figure 6 Top view of the structure in [the figure];
[0025] Figure 8 is Figure 7 Cross-sectional view of the structure at B-B in [the figure];
[0026] Figure 9 is Figure 8 Schematic enlarged view of the structure at B in [the figure];
[0027] Figure 10 is Figure 7 Cross-sectional view of the structure at C-C in [the figure].
[0028] In the figure: assembled plate 1, seedling raising bracket 2, reserved opening 3, metal mesh 4, side groove 5, insertion plate 6, elastic hanging piece 7, clamping strip 8, clamping groove 9, installation groove 10, rubber clamping strip 11, assembling groove one 12, assembling groove two 13, rubber cushion strip 14, perforation 15, screw rod 16, notch 17, splicing column 18, nut one 19, nut two 20, through opening 21. Detailed implementation manners
[0029] In order to clearly and completely describe the purpose, technical solution of the present invention, and make the advantages more clear, the following further details the embodiments of the present invention with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are part of the embodiments of the present invention, rather than all of the embodiments, and are only used to explain the embodiments of the present invention, not to limit the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.
[0030] Please refer to Figures 1 to 10The present invention provides a technical solution: a seedling cultivation device for fruit planting, comprising an assembling plate 1, a seedling bracket 2 is fixed to the bottom surface of the assembling plate 1, the assembling plate 1 is a square plate structure, a circular opening is opened on the surface of the assembling plate 1, the seedling bracket 2 is a cylindrical structure, the inner ring diameter of the seedling bracket 2 is equal to the diameter of the circular opening, a reserved opening 3 is opened on the bottom surface of the seedling bracket 2, the reserved opening 3 is an inverted "convex" shaped circular opening, a metal mesh 4 is fixed inside the reserved opening 3, and the top surface of the metal mesh 4 is coplanar with the top surface of the bottom plate of the seedling bracket 2; when in use, soil is loaded into the seedling bracket 2, and then the fruit seedlings are planted in the soil inside the seedling bracket 2.
[0031] The top of the plugboard 6 is provided with a mounting groove 10 on the other side, and a rubber clamping strip 11 is fixed inside the mounting groove 10. The thickness of the rubber clamping strip 11 is greater than the depth of the mounting groove 10, and the rubber clamping strip 11 is clamped between the mounting groove 10 and the side groove 5 to produce elastic deformation.
[0032] When the seedling raising bracket 2 is in use, the seedling raising bracket 2 is placed in the soil pot in the seedling raising room, and the plugging plate 6 is pushed downward to push the bottom end of the plugging plate 6 into the soil in the soil pot. During the pushing down process, the elastic hanging plate 7 is pushed from the bottom of the elastic hanging plate 7 to deform until the top plate of the plugging plate 6 overlaps the bottom surface of the side groove 5. After the elastic hanging plate 7 is released, the card strip 8 is inserted into the card slot 9, thus preventing the plugging plate 6 from moving back along the side groove 5. At this time, the plugging plate 6 is used as a limiting structure of the seedling raising bracket 2 to prevent the seedling raising bracket 2 from tipping over after being placed in the soil pot; when the seedling raising bracket 2 is used in a turnover, the plugging plate 6 is pushed into the side groove 5. The rubber clamping strip 11 is clamped between the plugging plate 6 and the side groove 5 to increase friction, thereby preventing the plugging plate 6 from sliding down at will.
[0033] On one side of the assembly board 1, an assembly groove one 12 is provided on the top surface. On the other side of the assembly board 1, an assembly groove two 13 is provided on the bottom surface. A rubber gasket strip 14 is fixed on the top surface of the assembly groove one 12. The rubber gasket strip 14 is in the shape of an annular plate structure. After two assembly boards 1 are spliced side by side, the rubber gasket strip 14 is clamped between the assembly groove one 12 and the assembly groove two 13. A screw rod 16 is fixed on the surface of the assembly groove one 12, and a perforation 15 is provided on the surface of the assembly groove two 13. When two assembly boards 1 are spliced side by side, the assembly groove one 12 and the assembly groove two 13 are spliced in a staggered manner, and the screw rod 16 passes through the perforation 15 and then a nut one 19 is sleeved and screwed on it. Notches 17 are provided on both the front and rear sides of the assembly board 1, and a splicing column 18 is fixed inside the notch 17. The perforation 15 is an inverted "convex"-shaped circular opening, and the height of the screw rod 16 is equal to the height of the perforation 15. The notch 17 is a semi-circular groove, and the height of the splicing column 18 is equal to the height of the notch 17. When two assembly boards 1 are assembled front and back, a nut two 20 is sleeved and screwed on the stud formed by splicing the two splicing columns 18.
[0034] During use, when the left and right two assembly boards 1 are assembled side by side, after the assembly groove two 13 and the assembly groove one 12 are stacked in a staggered manner, and the screw rod 16 passes through the perforation 15, the nut one 19 is sleeved and screwed on the top end of the screw rod 16 to realize the connection of the two assembly boards 1. According to needs, multiple assembly boards 1 are connected side by side. When a single sample needs to be taken, a single assembly board 1 can be removed. When two rows of assembly boards 1 need to be assembled, the splicing columns 18 on one side of the two rows of assembly boards 1 are placed close together, and then the nut two 20 is sleeved and screwed on the stud formed by the two splicing columns 18.
[0035] Usage process of the seedling cultivation device for fruit planting:
[0036] Put the soil into the seedling-raising bracket 2, ensuring that the soil is filled to an appropriate height to provide sufficient growth space for the fruit seedlings. Plant the fruit seedlings in the soil inside the seedling-raising bracket 2, ensuring that the seedling roots are in full contact with the soil to lay a good foundation for subsequent growth. Dial the insertion plate 6 downward and push its bottom end into the through-hole 21 at the bottom surface of the side grooves 5 on both sides of the seedling-raising bracket 2 until the top plate of the insertion plate 6 overlaps the bottom surface of the side groove 5. During the process of pushing down the insertion plate 6, deform the elastic hanging piece 7 by dialing it from the bottom to facilitate the smooth sliding of the insertion plate 6. After the top plate of the insertion plate 6 overlaps the bottom surface of the side groove 5, release the elastic hanging piece 7, and the clamping strip 8 will automatically insert into the card slot 9 to fix the position of the insertion plate 6 and prevent it from moving back along the side groove 5. The insertion plate 6 serves as a limiting structure for the seedling-raising bracket 2, and its bottom end is inserted into the soil in the soil basin, effectively preventing the seedling-raising bracket 2 from tipping over after being placed. Place the two assembling plates 1 side by side so that the first assembling groove 12 and the second assembling groove 13 are stacked in a staggered manner. After the screw 16 passes through the through-hole 15, sleeved and screwed the first nut 19 on the top end of the screw 16 to realize the connection of the two assembling plates 1. As needed, multiple assembling plates 1 can be connected side by side in the above manner to form a larger cultivation area. When individual sampling is required, a single assembling plate 1 can be easily removed without affecting the growth of the seedlings on other assembling plates 1. If two rows of assembling plates 1 need to be assembled together, the splicing columns 18 on one side of the two rows of assembling plates 1 can be placed close to each other. Sleeve and screw the second nut 20 on the screw column formed by the two splicing columns 18 to realize the stable connection of the two rows of assembling plates 1. When the seedling-raising bracket 2 needs to be used for turnover, the insertion plate 6 can be pushed into the side groove 5. Since the rubber clamping strip 11 clamps between the insertion plate 6 and the side groove 5 to increase friction, it can effectively prevent the insertion plate 6 from sliding randomly during turnover, ensuring the stability and safety of the seedling-raising bracket 2.
[0037] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A seedling cultivation device for fruit planting, including an assembled board (1), characterized in that: A seedling-raising bracket (2) is fixed to the bottom surface of the assembled board (1). Side grooves (5) are formed on both sides of the seedling-raising bracket (2). An insertion board (6) is inserted into the bottom surface of the side groove (5). On one side of the assembled board (1), an assembling groove one (12) is formed on the top surface. On the other side of the assembled board (1), an assembling groove two (13) is formed on the bottom surface. A screw rod (16) is fixed to the surface of the assembling groove one (12). A perforation (15) is formed on the surface of the assembling groove two (13). When two assembled boards (1) are spliced side by side, the assembling groove one (12) and the assembling groove two (13) are spliced in a staggered manner, and after the screw rod (16) passes through the perforation (15), a first nut (19) is sleeved and screwed. Notch grooves (17) are formed on both the front and rear sides of the assembled board (1). A splicing column (18) is fixed inside the notch groove (17).
2. The seedling cultivation device for fruit planting according to claim 1, wherein: The assembled board (1) has a square plate-like structure. Circular openings are formed on the surface of the assembled board (1). The seedling-raising bracket (2) has a cylindrical structure. The inner ring diameter of the seedling-raising bracket (2) is equal to the diameter of the circular opening.
3. The seedling cultivation device for fruit planting according to claim 1, wherein: A reserved opening (3) is formed on the bottom surface of the seedling-raising bracket (2). The reserved opening (3) is an inverted "convex"-shaped circular opening. A metal mesh sheet (4) is fixed inside the reserved opening (3). The top surface of the metal mesh sheet (4) is coplanar with the top surface of the bottom plate of the seedling-raising bracket (2).
4. A seedling cultivation device for fruit planting according to claim 1, characterized in that: The side groove (5) is a square groove. A through opening (21) is formed on the bottom surface of the side groove (5). The height of the insertion board (6) is less than the height of the side groove (5). A triangular prism is integrally formed at the bottom end of the insertion board (6), and the bottom end of the insertion board (6) is inserted into the through opening (21).
5. The seedling cultivation device for fruit planting according to claim 4, characterized in that: The insertion board (6) has an "L"-shaped plate-like structure. An elastic hanging piece (7) is fixed to one side of the top end of the insertion board (6). A clamping strip (8) is fixed to the bottom end of the elastic hanging piece (7). The clamping strip (8) is inserted into a clamping groove (9). The clamping groove (9) is formed on the outer wall of the seedling-raising bracket (2). The clamping grooves (9) correspond to the side grooves (5) one by one, and the clamping grooves (9) are located below the side grooves (5).
6. The seedling cultivation device for fruit planting according to claim 1, wherein: On the other side of the top end of the insertion board (6), an installation groove (10) is formed. A rubber clamping strip (11) is fixed inside the installation groove (10). The thickness of the rubber clamping strip (11) is greater than the depth of the installation groove (10). The rubber clamping strip (11) is clamped between the installation groove (10) and the side groove (5) to generate elastic deformation.
7. The seedling cultivation device for fruit planting according to claim 1, characterized in that: A rubber cushion strip (14) is fixed to the top surface of the assembling groove one (12). The rubber cushion strip (14) has an annular plate-like structure. After two assembled boards (1) are spliced side by side, the rubber cushion strip (14) is clamped between the assembling groove one (12) and the assembling groove two (13).
8. A seedling cultivation device for fruit planting according to claim 1, characterized in that: The perforation (15) is an inverted "convex"-shaped circular opening. The height of the screw rod (16) is equal to the height of the perforation (15).
9. The seedling cultivation device for fruit planting according to claim 1, characterized in that: The notch groove (17) is a semi-circular groove. The height of the splicing column (18) is equal to the height of the notch groove (17). When two assembled boards (1) are assembled front and back, a second nut (20) is sleeved and screwed on the stud formed by splicing the two splicing columns (18).
Citation Information
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