A climbing frame for kiwifruit cultivation

By using modular climbing frame components with threaded connections and snap-fit ​​fasteners, the problems of traditional climbing frames being bulky, inconvenient to transport and assemble are solved, enabling convenient disassembly and flexible assembly of climbing frames.

CN224290867UActive Publication Date: 2026-05-29JINGGANGSHAN XIAYI AGRICULTURAL DEVELOPMENT CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JINGGANGSHAN XIAYI AGRICULTURAL DEVELOPMENT CO LTD
Filing Date
2025-05-19
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Traditional kiwifruit cultivation uses a single welded structure for the climbing frame, which results in a large size, inconvenience in handling and moving, and an inability to be spliced ​​in multiple directions as needed.

Method used

The climbing frame adopts a modular structural design, utilizing components such as plug-in nails, mating top blocks, connecting top rods, and auxiliary sleeves, which are connected by threads and fasteners to achieve detachable and flexible assembly.

Benefits of technology

It enables convenient disassembly and transportation of the climbing frame, improves the flexibility and adaptability of the frame, and facilitates multi-directional splicing.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224290867U_ABST
    Figure CN224290867U_ABST
Patent Text Reader

Abstract

The utility model discloses a kind of climbing frames for kiwi planting, it is related to kiwi field, including main support rod, the bottom end of main support rod is butt joint with inserting nail body, the side of main support rod is evenly provided with side screw hole, the top end of main support rod is butt joint with butt joint top block, the side of butt joint top block is symmetrically provided with mounting screw hole, the side of butt joint top block is butt joint with connection top rod horizontally, the side of main support rod is evenly butt joint with auxiliary sleeve, one end of auxiliary sleeve is inserted with extension end rod horizontally, the top end of main support rod is provided with top joint hole, the inside of top joint hole is symmetrically provided with buckling inner groove, the bottom end of main support rod is provided with bottom screw hole, the top end of inserting nail body is fixedly welded with mounting screw rod, using split structure makes it convenient to carry transport operation after disassembly, simultaneously in the fixed connection mode of buckle and thread let it be more convenient and efficient to assemble.
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Description

Technical Field

[0001] This utility model relates to the field of kiwi fruit technology, specifically a climbing frame for kiwi fruit cultivation. Background Technology

[0002] Chinese kiwifruit, also known as Yangtao vine, Yangtao, and Yangtao, is a large deciduous vine belonging to the genus Actinidia in the family Actinidiaceae. Young branches are pubescent, becoming glabrous or retaining broken remnants of hair as they age; second-year branches are completely glabrous. Leaves are papery, obovate to obovate or broadly ovate to nearly orbicular, densely covered with grayish-white or light brown stellate hairs. The inflorescence is a cyme, with small bracts; the flowers change from white to pale yellow after opening. Berries are yellowish-brown, nearly spherical, cylindrical, obovate, or elliptical; seeds are 2.5 mm in diameter. Flowering occurs from June to July, and fruiting from August to September.

[0003] When planting kiwifruit, it is necessary to build a climbing frame structure so that the plants can climb along the frame. The traditional method is to use an integrated welded frame structure, which makes the structure bulky and inconvenient to move and operate. The fixed overall structure also prevents it from being spliced ​​together in multiple directions as needed. Utility Model Content

[0004] The purpose of this utility model is to provide a climbing frame for kiwifruit cultivation, in order to solve the problem mentioned in the background art that when planting kiwifruit, it is necessary to set up a climbing frame structure for kiwifruit so that the plants can climb along the frame. The traditional one is an integrated welded frame structure, which is bulky and inconvenient to move and operate. The fixed whole structure also makes it impossible to splice it in multiple directions as needed.

[0005] To achieve the above objectives, this utility model provides the following technical solution:

[0006] A climbing trellis for kiwifruit cultivation includes a main support rod. The bottom end of the main support rod is connected to a nail body. Side screw holes are evenly distributed along the sides of the main support rod. A connecting top block is connected to the top of the main support rod. Installation screw holes are symmetrically distributed along the sides of the connecting top block. A connecting top rod is horizontally connected to the sides of the connecting top block. An auxiliary sleeve is horizontally and evenly connected to the sides of the main support rod. An extension rod is horizontally inserted into one end of the auxiliary sleeve. A top locking hole is provided at the top of the main support rod. Symmetrical openings are formed on the inner side of the top locking hole. The inner groove is fastened, the bottom end of the main support rod is provided with a bottom screw hole, the top end of the insertion nail body is fixedly welded with an installation screw, the bottom surface of the mating top block is fixedly provided with an insertion bottom block, the two sides of the insertion bottom block are symmetrically snapped with snap-fit ​​inclined blocks, one side of the connecting top rod is evenly provided with horizontal screw holes, the two ends of the connecting top rod are symmetrically fixedly inserted with fixing screws, one end of the auxiliary sleeve and the extension end rod is fixedly connected with an end screw, the outer side of the auxiliary sleeve is provided with a positioning screw hole, and the inner side of the positioning screw hole is threaded with a top connecting screw.

[0007] In a preferred embodiment of this utility model, there are four main support rods, which are arranged in parallel with each other. The specifications and dimensions of the four main support rods are consistent, and the top of the plug-in nail body is connected to the bottom opening end of the bottom screw hole.

[0008] In a preferred embodiment of this utility model, there are multiple side screw holes, which are arranged vertically in a straight line at the center line of the side of the main support rod. The number of mating top blocks is consistent with the number of main support rods, and the bottom end of the mating top block is mated to the top opening end of the top locking hole.

[0009] In a preferred embodiment of this utility model: the mounting screw holes are symmetrically opened at the center of the side of the mating top block, the connecting top rods are arranged in parallel with each other, and both ends of the connecting top rods are horizontally mated to the opening end of the mounting screw holes. There are multiple auxiliary sleeves, and the multiple auxiliary sleeves are arranged in parallel with each other. The extension end rod and the auxiliary sleeves are arranged in a telescopic rod structure.

[0010] In a preferred embodiment of this utility model: the top snap-fit ​​hole and the snap-fit ​​inner groove are connected to each other; the bottom screw hole is opened at the center of the bottom end of the main support rod; the top end of the mounting screw is threadedly fixedly connected to the inner side of the bottom screw hole; the bottom end of the insertion block is correspondingly inserted into the inner side of the top snap-fit ​​hole; one end of the snap-fit ​​inclined block is correspondingly snapped into the inner side of the snap-fit ​​inner groove; and the horizontal screw holes are all arranged horizontally and equidistantly in a straight line at the center line of the side of the connecting top rod.

[0011] In a preferred embodiment of this utility model: one end of the fixing screw is threadedly fixedly connected to the inner side of the mounting screw hole, one end of the end screw is correspondingly threadedly fixedly connected to the inner side of the side screw hole, the positioning screw hole is through-hole opened on the outer side of the auxiliary sleeve near the opening end, and the extension end of the top connecting screw is mated to the outer side of the extension end rod.

[0012] Compared with the prior art, the beneficial effects of this utility model are:

[0013] This invention allows multiple insertable nails to be fixedly connected to the bottom screw hole via a mounting screw at one end. The bottom end of each nail is then inserted into the soil layer, allowing the main support rod to be vertically fixed at a designated location on the ground. A connecting top block is then inserted into the top locking hole via a bottom insert block 13. After the snap-fit ​​oblique block is engaged within the locking mechanism, a fixed installation is achieved. Multiple connecting top blocks are horizontally positioned via a connecting rod 6, with the fixing screws at both ends threadedly connected within the mounting screw hole. The auxiliary sleeve is then pulled outwards to a specified length from its open end via multiple extension rods. The top screw is then rotated, and in conjunction with the positioning screw hole, the top screw extends and engages with the outer side of the extension rod. The extended and fixed auxiliary sleeve and extension rod are horizontally positioned between the main support rod and on the side. The end screws at both ends are threaded and fixed inside the side screw holes, forming a fixed installation. The modular structure facilitates disassembly and transportation, while the snap-fit ​​and threaded connection methods make assembly more convenient and efficient. Attached Figure Description

[0014] Other features, objects, and advantages of this invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:

[0015] Figure 1 A schematic diagram of the three-dimensional structure of a climbing frame for kiwifruit cultivation;

[0016] Figure 2 A structural schematic diagram showing the connection details of the main support rod of a climbing frame for kiwifruit cultivation in a frontal cross-section.

[0017] Figure 3 A structural schematic diagram showing the connection details of the plug-in nail body of a climbing frame for kiwifruit cultivation;

[0018] Figure 4 A structural schematic diagram showing the front cross-sectional details of the connection between the top blocks of a climbing frame for kiwifruit cultivation;

[0019] Figure 5 This is a structural schematic diagram showing the connection details of the auxiliary sleeve of a climbing frame for kiwifruit cultivation, viewed from the side.

[0020] In the diagram: 1. Main support rod; 2. Insertion nail body; 3. Side screw hole; 4. Connecting top block; 5. Mounting screw hole; 6. Connecting top rod; 7. Auxiliary sleeve; 8. Extension end rod; 9. Top snap-fit ​​hole; 10. Snap-fit ​​inner groove; 11. Bottom screw hole; 12. Mounting screw; 13. Insertion bottom block; 14. Snap-fit ​​inclined block; 15. Horizontal screw hole; 16. Fixing screw; 17. End screw; 18. Positioning screw hole; 19. Top connection screw. Detailed Implementation

[0021] Please see Figure 1 In this embodiment of the invention, a climbing frame for kiwifruit cultivation includes four main support rods 1, with four main support rods 1 arranged in parallel to each other. The four main support rods 1 have the same dimensions. The top of the insert nail body 2 is connected to the bottom opening of a bottom screw hole 11. Side screw holes 3 are evenly distributed along the sides of the main support rods 1. A connecting top block 4 is connected to the top of each main support rod 1. Multiple side screw holes 3 are arranged vertically in a straight line along the center line of the side of each main support rod 1. The number of connecting top blocks 4 is the same as the number of main support rods 1. The bottom end of the docking top block 4 is docked at the top opening end of the top locking hole 9. The side of the docking top block 4 is symmetrically provided with mounting screw holes 5. The side of the docking top block 4 is horizontally docked with connecting top rods 6. The side of the main support rod 1 is horizontally and evenly docked with auxiliary sleeves 7. One end of the auxiliary sleeve 7 is horizontally inserted with an extension rod 8. The mounting screw holes 5 are symmetrically opened at the center of the side of the docking top block 4. The connecting top rods 6 are arranged in parallel with each other, and both ends of the connecting top rods 6 are horizontally docked at the opening end of the mounting screw holes 5. There are multiple auxiliary sleeves 7, and the multiple auxiliary sleeves 7 are arranged in parallel with each other. The extension rod 8 and the auxiliary sleeves 7 are arranged in a telescopic rod structure.

[0022] Please see Figure 2-5In this embodiment of the utility model, a climbing frame for kiwi fruit cultivation is provided, wherein the top of the main support rod 1 is provided with a top locking hole 9, and the inner side of the top locking hole 9 is symmetrically provided with a snap-fit ​​inner groove 10. The bottom end of the main support rod 1 is provided with a bottom screw hole 11. The top of the insertion nail body 2 is fixedly welded with an installation screw 12. The bottom surface of the connecting top block 4 is fixedly provided with an insertion bottom block 13. The two sides of the insertion bottom block 13 are symmetrically locked with snap-fit ​​inclined blocks 14. Horizontal screw holes 15 are evenly provided on one side of the connecting top rod 6. The top locking hole 9 and the snap-fit ​​inner groove 10 are connected to each other. The bottom screw hole 11 is opened at the center of the bottom end of the main support rod 1. The top of the installation screw 12 is threadedly fixedly connected to the inner side of the bottom screw hole 11. The bottom end of the insertion bottom block 13 is correspondingly inserted into the inner side of the top locking hole 9. One end of the snap-fit ​​inclined block 14 is correspondingly snapped into the inner side of the snap-fit ​​inner groove 10. The horizontal screw holes 15 are all arranged horizontally and equally spaced in a straight line at the center line of the side of the connecting top rod 6. The two ends of the connecting top rod 6 are symmetrically fixedly inserted with fixing screws 16. One end of the auxiliary sleeve 7 and the extension rod 8 are fixedly connected with an end screw 17. The outer side of the auxiliary sleeve 7 is provided with a positioning screw hole 18. The inner side of the positioning screw hole 18 is threadedly connected with a top screw 19. One end of the fixing screw 16 is threadedly fixedly connected to the inner side of the mounting screw hole 5. One end of the end screw 17 is correspondingly threadedly fixedly connected to the inner side of the side screw hole 3. The positioning screw hole 18 is opened through the outer side of the auxiliary sleeve 7 near the opening end. The extension end of the top screw 19 is mated to the outer side of the extension rod 8.

[0023] The working principle of this utility model is as follows:

[0024] Multiple insert nail bodies 2 are fixedly connected to the bottom screw hole 11 by the corresponding threaded connection of the mounting screw 12 at one end. Then, the bottom end of the insert nail body 2 is inserted into the soil layer, allowing the main support rod 1 to be vertically fixed at the designated position on the soil. Then, the connecting top block 4 is inserted into the top locking hole 9 by the bottom insert block 13 at the bottom end. After the snap-fit ​​inclined block 14 is snapped into the inside of the snap-fit ​​inner operation 10, a fixed installation operation is formed. The multiple connecting top blocks 4 are horizontally positioned between each other by the connecting top rod 6, allowing the two... The end fixing screw 16 is threaded and fixed inside the mounting screw hole 5. Then, multiple extension end rods 8 are pulled outward from the open end of the auxiliary sleeve 7 to a specified length. The top connecting screw 19 is rotated, and in conjunction with the positioning screw hole 18, the top connecting screw 19 is extended and topped on the outside of the extension end rod 8. The extended and fixed auxiliary sleeve 7 and the extension end rod 8 are horizontally positioned on the side between the main support rod 1. The end screws 17 at both ends are threaded and fixed inside the side screw hole 3, forming a fixed installation operation.

[0025] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A climbing frame for kiwifruit cultivation, comprising a main support rod (1), characterized in that, The bottom end of the main support rod (1) is connected to a pin body (2). Side screw holes (3) are evenly distributed along the side of the main support rod (1). The top end of the main support rod (1) is connected to a top block (4). Installation screw holes (5) are symmetrically distributed along the side of the top block (4). A connecting rod (6) is horizontally connected along the side of the top block (4). An auxiliary sleeve (7) is horizontally and evenly connected along the side of the main support rod (1). An extension rod (8) is horizontally inserted into one end of the auxiliary sleeve (7). A top locking hole (9) is opened at the top end of the main support rod (1). A snap-fit ​​inner groove (10) is symmetrically distributed along the inner side of the top locking hole (9). The bottom end of the main support rod (1)... The bottom screw hole (11) is opened at the end. The top of the plug-in nail body (2) is fixedly welded with the mounting screw (12). The bottom surface of the docking top block (4) is fixedly provided with the plug-in bottom block (13). The two sides of the plug-in bottom block (13) are symmetrically snapped with the snap-in inclined blocks (14). The side of the connecting top rod (6) is evenly provided with the horizontal screw hole (15). The two ends of the connecting top rod (6) are symmetrically fixedly inserted with the fixing screw (16). One end of the auxiliary sleeve (7) and the extension end rod (8) is fixedly connected with the end screw (17). The outer side of the auxiliary sleeve (7) is provided with the positioning screw hole (18). The inner side of the positioning screw hole (18) is threaded with the top connecting screw (19).

2. The climbing frame for kiwifruit cultivation according to claim 1, characterized in that, The number of main support rods (1) is four, and the four main support rods (1) are arranged in parallel to each other. The specifications and dimensions of the four main support rods (1) are all consistent. The top of the plug-in nail body (2) is connected to the bottom opening end of the bottom screw hole (11).

3. The climbing frame for kiwifruit cultivation according to claim 1, characterized in that, The number of side screw holes (3) is multiple, and the multiple side screw holes (3) are arranged vertically in a straight line at the center line of the side of the main support rod (1). The number of docking top blocks (4) is consistent with the number of main support rods (1), and the bottom end of the docking top block (4) is docked at the top opening end of the top locking hole (9).

4. The climbing frame for kiwifruit cultivation according to claim 1, characterized in that, The mounting screw holes (5) are symmetrically opened at the center of the side of the mating top block (4). The connecting top rods (6) are arranged in parallel with each other, and both ends of the connecting top rods (6) are horizontally mated with the opening end of the mounting screw holes (5). There are multiple auxiliary sleeves (7), and the multiple auxiliary sleeves (7) are arranged in parallel with each other. The extension end rod (8) and the auxiliary sleeves (7) are arranged in a telescopic rod structure.

5. The climbing trellis for kiwifruit cultivation according to claim 1, characterized in that, The top snap-fit ​​hole (9) and the snap-fit ​​inner groove (10) are connected to each other. The bottom screw hole (11) is opened at the center of the bottom end of the main support rod (1). The top end of the mounting screw (12) is threaded and fixedly connected to the inner side of the bottom screw hole (11). The bottom end of the insertion block (13) is inserted into the inner side of the top snap-fit ​​hole (9). One end of the snap-fit ​​inclined block (14) is snapped into the inner side of the snap-fit ​​inner groove (10). The horizontal screw holes (15) are arranged horizontally and equidistantly in a straight line at the center line of the side of the connecting top rod (6).

6. The climbing frame for kiwifruit cultivation according to claim 1, characterized in that, One end of the fixing screw (16) is threadedly fixed to the inner side of the mounting screw hole (5), and one end of the end screw (17) is threadedly fixed to the inner side of the side screw hole (3). The positioning screw hole (18) is opened through the outside of the auxiliary sleeve (7) near the opening end. The extension end of the top connecting screw (19) is connected to the outer side of the extension end rod (8).