A spliced vine frame for vegetable planting

CN224791275UActive Publication Date: 2026-09-25FENGTAI JINYE AGRICULTURAL DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202522110928.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-30
Publication Date
2026-09-25
Estimated Expiration
2035-09-30

AI Technical Summary

Technical Problem

[0004]本实用新型的目的在于提供一种蔬菜种植用拼接式藤蔓架,解决了传统的蔬菜种植用拼接式藤蔓架,只能适用于对直线路径种植的蔬菜,无法适用弯曲或者拐弯的种植路径的问题

Benefits of technology

[0011]与现有技术比较本实用新型的有益效果在于:将多个主体架按照种植路径的分布插接好后,将两个相邻的第一竖杆上的伸缩连接件连接在一起,两个相邻的第二竖杆上的伸缩连接件连接在一起,一手握住一个拼接柱,并将两个拼接柱上的插孔插接头相对,由于中空筒能在水平面上偏转,所以主体架在路径弯曲的种植区域也能将两个相邻的主体架上的伸缩连接件相连接,将两个拼接柱上的插孔插接头分别插入另一个拼接柱上的插接槽,利用斜面定位头插入插孔插接头完成主体架的拼接,装置不只适用于直线排布的种植路径,也能适用于弯曲的、拐弯的种植路径。

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Abstract

The utility model discloses a kind of spliced vine frames for vegetable planting, it is related to vegetable planting auxiliary equipment technical field, including: main frame, main frame includes first vertical pole and second vertical pole;Connecting frame.The utility model connects the extension connecting piece on two adjacent first vertical poles together after being inserted and connected according to the distribution of planting path by multiple main frames, the extension connecting piece on two adjacent second vertical poles is connected together, one splicing column is held in one hand, and the jack plug of two splicing columns is opposite, since hollow cylinder can deflect on horizontal plane, so main frame can also connect the extension connecting piece on two adjacent main frames in the planting area of path bending, the jack plug of two splicing columns is respectively inserted into the insertion slot on another splicing column, the splicing of main frame is completed by using bevel positioning head insertion jack plug, device is not only suitable for linear arrangement planting path, but also suitable for curved, curved planting path.
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Description

Technical Field

[0001] This utility model relates to the technical field of auxiliary equipment for vegetable planting, specifically to a spliced ​​vine trellis for vegetable planting. Background Technology

[0002] Vegetables generally refer to the edible parts of plants, broadly including leaves, stems, roots, flowers, fruits, and seeds. Vegetable cultivation refers to the process of growing, managing, and harvesting plants whose edible parts are leaves, stems, roots, flowers, fruits, and seeds in places such as farmland, greenhouses, and balconies. Common vegetable classifications (briefly) include leafy vegetables, stem vegetables, root vegetables, cauliflower vegetables, and fruit vegetables. Many vegetables require trellises when growing, such as cucumbers (cucumber-shaped or climbing varieties), zucchini (some climbing varieties), and tomatoes (varieties that require high support, especially in high-yield cultivation).

[0003] A document with publication number CN219679335U describes a spliced ​​vine trellis for vegetable cultivation, relating to the field of vegetable cultivation technology. It includes a pair of base poles, each containing multiple vertical poles. A fence is inserted on one side of each vertical pole. A top pole is inserted at the top of each vertical pole, and a pair of circular poles are inserted on the top poles. Threaded rods are fixed to both ends of the circular poles, and nuts are threaded onto the threaded rods. Fixing blocks are fixed to both ends of the base poles, with fixing nails inserted into the fixing blocks. A pair of limiting blocks are fixed to the fence. This utility model splices the base poles, vertical poles, fence, top poles, and circular poles into a vine trellis, which is arch-shaped, facilitating material transport and improving the aesthetics of the vine trellis. Vine trellises need to be spliced ​​according to the planting space, but vegetable cultivation is not always in a straight line; planting areas can be curved or bend. The aforementioned vine trellis is only suitable for vegetables planted along straight paths and cannot be used for curved or bend-oriented planting paths. Utility Model Content

[0004] The purpose of this utility model is to provide a spliced ​​vine trellis for vegetable planting, which solves the problem that traditional spliced ​​vine trellises for vegetable planting can only be used for vegetables planted on straight paths and cannot be used for curved or bend-shaped planting paths.

[0005] This utility model solves the above-mentioned technical problems through the following technical solution: a spliced ​​vine trellis for vegetable planting, characterized in that it includes: The main frame includes a first vertical rod and a second vertical rod; A connecting frame is provided on a first vertical rod and a second vertical rod. The connecting frame includes a fixing block fixed to the first vertical rod. The fixing block has two inner grooves. A rotating head is rotatably provided on the inner side of each of the two inner grooves. An installation groove is provided on each of the two rotating heads. A telescopic connector is rotatably provided on the inner side of each of the two installation grooves.

[0006] Preferably, the telescopic connector includes a deflector head that rotates inside the mounting groove, a hollow cylinder is fixed on the deflector head, a groove is formed on the inner surface of the hollow cylinder, a telescopic column slides on the inner side of the hollow cylinder, a limit head is fixed at one end of the telescopic column, and the limit head slides on the inner side of the groove.

[0007] Preferably, the telescopic connector further includes a splicing column fixed to one end of the telescopic column, an inner groove is provided on one side of the splicing column, an inclined positioning head slides on the inner side of the inner groove, and a spring is fixed between the inclined positioning head and the inner wall of the inner groove.

[0008] Preferably, one end of the splicing column is fixed with a plug-in connector, the splicing column is provided with a plug-in groove, and one end of the inclined positioning head extends to the inside of the plug-in groove.

[0009] Preferably, the main frame further includes a horizontal column fixed to one end of the first vertical rod, and a sliding plate is fixed to the top of one end of the horizontal column, with a screw threaded onto the sliding plate.

[0010] Preferably, the main frame further includes a hollow crossbar fixed to one end of the second vertical rod, the crossbar passing through the inner side of the hollow crossbar, the top of the hollow crossbar having a horizontal groove, the sliding piece sliding on the inner side of the horizontal groove, the top of the hollow crossbar having a hole, and the screw passing through the hole.

[0011] Compared with the prior art, the beneficial effects of this utility model are as follows: After multiple main frames are connected according to the distribution of the planting path, the telescopic connectors on two adjacent first vertical bars are connected together, and the telescopic connectors on two adjacent second vertical bars are connected together. Hold one splicing column with one hand and align the plugs on the two splicing columns. Since the hollow cylinder can deflect on the horizontal plane, the telescopic connectors on two adjacent main frames can be connected even in the curved planting area of ​​the path. Insert the plugs on the two splicing columns into the plug slots on the other splicing column respectively. Use the inclined positioning head to insert the plugs to complete the splicing of the main frame. The device is not only suitable for straight planting paths, but also for curved and bendable planting paths. Attached Figure Description

[0012] Figure 1 This is the front view of the present invention; Figure 2This is a cross-sectional view of the telescopic connector between the two main frames in this utility model; Figure 3 for Figure 2 Enlarged diagram of section A in the middle; Figure 4 This is a partial disassembly diagram of the main frame in this utility model; Figure 5 for Figure 4 Enlarged diagram of section B; Figure 6 for Figure 4 Enlarged schematic diagram of section C.

[0013] The numbers in the diagram represent: 1. Main frame; 11. First vertical bar; 12. Second vertical bar; 13. Horizontal column; 14. Hole; 15. Sliding plate; 16. Screw; 17. Hollow horizontal bar; 18. Horizontal groove; 2. Connecting frame; 21. Fixing block; 22. Inner groove; 23. Rotating head; 24. Mounting groove; 25. Deflecting head; 26. Hollow cylinder; 27. Groove body; 28. Telescopic column; 29. ​​Limiting head; 210. Splicing column; 211. Inner groove; 212. Angled positioning head; 213. Spring; 214. Insertion socket connector; 215. Insertion groove. Detailed Implementation

[0014] The above-mentioned and other technical features and advantages of this utility model will be described in more detail below with reference to the accompanying drawings.

[0015] This embodiment provides a technical solution: a spliced ​​vine trellis for vegetable cultivation, such as... Figures 1-6 As shown, the system includes a main frame 1 and a connecting frame 2 mounted on the main frame 1. The main frame 1 includes a first vertical rod 11 and a second vertical rod 12. A marking line can be set at the end of the first vertical rod 11 and the second vertical rod 12 that are inserted into the planting ground. This marking line indicates the depth at which the first vertical rod 11 and the second vertical rod 12 are inserted into the planting ground, ensuring that multiple main frames 1 can be kept at the same horizontal plane. A horizontal column 13 is fixed to one end of the first vertical rod 11, and a sliding piece 15 is fixed to the top of one end of the horizontal column 13. A screw 16 is threaded onto the sliding piece 15. A hollow horizontal rod 17 is fixed to one end of the second vertical rod 12. The horizontal column 13 passes through the inner side of the hollow horizontal rod 17. A horizontal groove 18 is opened at the top of the hollow horizontal rod 17, and the sliding piece 15 slides inside the horizontal groove 18. A row of holes 14 are opened at the top of the hollow horizontal rod 17. The inner diameter of the holes 14 is matched with the diameter of the screw 16, and the screw 16 passes through the holes 14.

[0016] The connecting frame 2 is provided on both the first vertical rod 11 and the second vertical rod 12. At least two connecting frames 2 are provided on either the first vertical rod 11 or the second vertical rod 12. The specific number and spacing of the connecting frames 2 can be set according to the length of the first vertical rod 11 and the second vertical rod 12. The connecting frame 2 includes a fixing block 21 fixed on the first vertical rod 11 or the second vertical rod 12. The fixing block 21 has two inner grooves 22. The inner side of each inner groove 22 has a rotating head 23 that can only rotate on the horizontal plane. Each rotating head 23 has an installation groove 24. The inner side of each installation groove 24 has a telescopic connector that can rotate.

[0017] The telescopic connector includes a deflector head 25 that rotates inside the mounting groove 24. The deflector head 25 can only deflect in the vertical plane. A hollow cylinder 26 is fixed on the deflector head 25. At least two grooves 27 are formed on the inner surface of the hollow cylinder 26. A telescopic column 28 slides inside the hollow cylinder 26. At least two limiting heads 29 are fixed at one end of the telescopic column 28. The number of limiting heads 29 corresponds to the number of grooves 27. Each limiting head 29 slides inside the corresponding groove 27.

[0018] The telescopic connector also includes a splicing column 210 fixed to one end of the telescopic column 28. A plug-in connector 214 is fixed to the end of the splicing column 210 away from the telescopic column 28. An inner groove 211 is provided on one side of the splicing column 210. An inclined positioning head 212 slides on the inner side of the inner groove 211. A spring 213 is fixed between the inclined positioning head 212 and the inner wall of the inner groove 211. A plug-in groove 215 is provided on the splicing column 210. When the spring 213 is at its original length, one end of the inclined positioning head 212 extends to the inner side of the plug-in groove 215.

[0019] In use: Based on the spacing between the two rows of vegetable planting, first adjust the spacing between the first vertical rod 11 and the second vertical rod 12 to a suitable distance. By unscrewing the screw 16 out of the hole 14 to release the restriction on the horizontal column 13, pull the horizontal column 13 out of the hollow horizontal bar 17 until the spacing between the first vertical rod 11 and the second vertical rod 12 is suitable for insertion into the two rows of vegetable planting positions. Find the hole 14 that is closest to the screw 16 at this time, screw the screw 16 into the hole 14 to fix the position of the horizontal column 13 in the hollow horizontal bar 17. Adjust the spacing between the first vertical rod 11 and the second vertical rod 12 in all the main frames 1 to be consistent according to this size. Then, insert multiple main frames 1 into the planting ground along the vegetable planting path. However, it is necessary to ensure that the spacing between two main frames 1 is at least the length of two telescopic connectors to avoid the telescopic connectors on two adjacent main frames 1 not being able to be spliced ​​together.

[0020] After inserting the main frame 1, connect the telescopic connectors on two adjacent first vertical bars 11 together, and connect the telescopic connectors on two adjacent second vertical bars 12 together. First, hold one splicing post 210 with one hand and set the insertion holes 214 on the two splicing posts 210 opposite each other (i.e., insertion holes 214 facing each other). Since the hollow cylinder 26 can deflect on the horizontal plane, the main frame 1 can connect the telescopic connectors on two adjacent main frames 1 even in planting areas with curved paths. Since the deflecting head 25 can deflect at a certain angle on the vertical plane in the mounting groove 24, even if the two main frames 1 have a certain height difference when inserted, they can still be connected. If the distance between the two main frames 1 is relatively far, they can also be connected by relative sliding. The movable telescopic column 28 and the hollow cylinder 26 adapt to the spacing and are smoothly spliced ​​together. The two splicing columns 210 are brought close together so that the insertion holes and connectors 214 on each column are inserted into the insertion slots 215 on the other column 210. The insertion holes and connectors 214 press against the inclined positioning heads 212 in the insertion slots 215 and push them into the inner grooves 211, compressing the springs 213 until the two splicing columns 210 are in contact. The insertion holes and connectors 214 on both columns are then fully inserted into the corresponding insertion slots 215. At this point, under the elastic force of the springs 213, the inclined positioning heads 212 are engaged in the insertion holes on the insertion holes and connectors 214. The splicing method is convenient and easy, requiring no tools. When disassembly is needed later, the inclined positioning heads 212 are moved to disengage from the insertion holes on the insertion holes and connectors 214, allowing the connected splicing columns 210 to be separated. The above description is only a preferred embodiment of this utility model and is merely illustrative, not restrictive. Those skilled in the art will understand that many changes, modifications, and even equivalents can be made to this utility model within the spirit and scope defined by the claims, but all such changes and modifications will fall within the protection scope of this utility model.

Claims

1. A spliced ​​vine trellis for vegetable cultivation, characterized in that, include: The main frame (1) includes a first vertical rod (11) and a second vertical rod (12). A connecting frame (2) is provided on a first vertical rod (11) and a second vertical rod (12). The connecting frame (2) includes a fixing block (21) fixed on the first vertical rod (11). The fixing block (21) has two inner grooves (22). The inner side of each inner groove (22) has a rotating head (23). The two rotating heads (23) have mounting grooves (24). The inner side of each mounting groove (24) has a telescopic connector.

2. The spliced ​​vine trellis for vegetable planting as described in claim 1, characterized in that, The telescopic connector includes a deflector (25) that rotates inside the mounting groove (24). A hollow cylinder (26) is fixed on the deflector (25). A groove (27) is opened on the inner surface of the hollow cylinder (26). A telescopic column (28) slides on the inner side of the hollow cylinder (26). A limit head (29) is fixed at one end of the telescopic column (28). The limit head (29) slides on the inner side of the groove (27).

3. The spliced ​​vine trellis for vegetable planting as described in claim 2, characterized in that, The telescopic connector also includes a splicing column (210) fixed to one end of the telescopic column (28). An inner groove (211) is provided on one side of the splicing column (210). An inclined positioning head (212) slides on the inner side of the inner groove (211). A spring (213) is fixed between the inclined positioning head (212) and the inner wall of the inner groove (211).

4. The spliced ​​vine trellis for vegetable planting as described in claim 3, characterized in that, One end of the splicing column (210) is fixed with a plug-in connector (214), and a plug-in groove (215) is provided on the splicing column (210). One end of the inclined positioning head (212) extends to the inside of the plug-in groove (215).

5. The spliced ​​vine trellis for vegetable planting as described in claim 1, characterized in that, The main frame (1) also includes a horizontal column (13) fixed to one end of the first vertical rod (11), and a sliding plate (15) is fixed to the top of one end of the horizontal column (13), and a screw (16) is threaded onto the sliding plate (15).

6. The spliced ​​vine trellis for vegetable cultivation as described in claim 5, characterized in that, The main frame (1) also includes a hollow crossbar (17) fixed to one end of the second vertical bar (12). The crossbar (13) passes through the inner side of the hollow crossbar (17). A horizontal groove (18) is provided at the top of the hollow crossbar (17). The sliding piece (15) slides on the inner side of the horizontal groove (18). A hole (14) is provided at the top of the hollow crossbar (17). The screw (16) passes through the hole (14).

Citation Information

Patent Citations

  • Splicing type vine frame for vegetable planting

    CN219679335U