Overwintering protection device for field planting

By designing a combined structure of irrigation water conveyance belt and connecting T-pipe, and utilizing the magnetic attraction between the magnet and the annular iron sheet, the problem of inconvenient disassembly and assembly of existing devices is solved, achieving rapid and stable winter protection irrigation.

CN223541094UActive Publication Date: 2025-11-14王浩
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Patent Information

Application Number
CN202422928855.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-28
Publication Date
2025-11-14
Estimated Expiration
2034-11-28

AI Technical Summary

Technical Problem

The spraying structure of existing field crop overwintering protection devices is inconvenient to disassemble and assemble, which leads to inconvenience in operation and affects the efficiency of overwintering protection.

Method used

A structure including an irrigation water conveyor belt, a connecting T-pipe, a supporting water box, and a magnet was designed. The connecting T-pipe is evenly distributed, the supporting water box is inserted into the soil for positioning, and the magnet and the ring iron sheet are magnetically attracted to each other for rapid combination to achieve spray irrigation.

Benefits of technology

It enables rapid assembly and stabilization of the irrigation device, preventing tipping and improving the ease and efficiency of winter protection.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223541094U_ABST
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Abstract

The utility model discloses a field planting overwintering protection device which comprises an irrigation water conveying belt and a connecting three-way pipe, the connecting three-way pipe is fixedly installed at the top end of the irrigation water conveying belt in an embedded mode, a connecting pipe head is fixedly installed at the tail end of the connecting three-way pipe, and a connecting water pipe is fixedly installed on the connecting pipe head in an embedded mode. A supporting water box is installed on the outer side of the tail end of the connecting water pipe, a combined pipe head is arranged in the center of the side face of the supporting water box and fixedly embedded with the connecting water pipe, an inserting rod is arranged in the center of the bottom face of the supporting water box, and an annular iron sheet is installed on the top face of the supporting water box. According to the overwintering protection device for field planting, the connection three-way pipe and the connection water pipe on the irrigation water conveying belt can be combined, equal-interval laying work is facilitated, the supporting water box can be inserted into the land through the insertion rod for reinforcement work, the follow-up toppling phenomenon is avoided, and overwintering protection spraying irrigation is facilitated.
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Description

Technical Field

[0001] This utility model relates to the field of field crop technology, specifically to a winter protection device for field crops. Background Technology

[0002] Field crops refer to the cultivation of crops on farmland to produce various agricultural products. Crops grown on large tracts of land require protection during the winter, but current winter protection devices for field crops on the market still have the following problems:

[0003] When it is necessary to protect crops from winter, irrigation is carried out at regular intervals and in fixed quantities. However, common winter protection irrigation devices and spray structures are not convenient and quick to assemble and disassemble, which makes it inconvenient to operate when batches need to be combined.

[0004] To address the aforementioned issues, an innovative design was developed based on the existing overwintering protection devices for field crops. Utility Model Content

[0005] The purpose of this utility model is to provide a winter protection device for field crops, in order to solve the problem mentioned in the background art. The common winter protection devices for field crops on the market use timed and quantitative irrigation to protect the crops during winter. However, the common winter protection irrigation devices are not convenient and quick to assemble and disassemble, which leads to the problem of inconvenient operation when batch assembly is required.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a field planting overwintering protection device, comprising an irrigation water conveyor belt and a connecting tee pipe. The top of the irrigation water conveyor belt is fixedly fitted with a connecting tee pipe, and the end of the connecting tee pipe is fixedly fitted with a connecting pipe head. A connecting water pipe is fixedly fitted with the connecting pipe head, and a supporting water box is installed on the outer side of the end of the connecting water pipe. A combined pipe head is provided at the center of the side of the supporting water box, and the combined pipe head is fixedly fitted with the connecting water pipe. A rod is provided at the center of the bottom surface of the supporting water box, and an annular iron plate is installed on the top surface of the supporting water box. A water inlet pipe is fixedly installed at the center of the top surface of the supporting water box, and a sealing rubber ring is provided on the top surface of the water inlet pipe. An installation pipe head is installed above the supporting water box, and the installation pipe head is connected to the water inlet pipe. A magnet is installed on the bottom surface of the installation pipe head. A supporting straight pipe is installed on the top surface of the installation pipe head, and a connecting hollow ball is installed at the top of the supporting straight pipe. A spray hole groove is opened on the top surface of the connecting hollow ball.

[0007] Preferably, the internal space of the connecting tee pipe is connected to the internal space of the irrigation water conveying belt, and the connecting tee pipes are evenly distributed on the irrigation water conveying belt, and connecting pipe heads are symmetrically distributed on the connecting tee pipes.

[0008] Preferably, the supporting water box, the combined pipe head, the insertion rod, and the sealing rubber ring are integrated into a single structure, and the internal spaces of the supporting water box, the combined pipe head, and the water inlet pipe are interconnected, with the combined pipe heads symmetrically distributed on the supporting water box.

[0009] Preferably, the annular iron sheet is connected to the supporting water box by embedding and fixing, and the top surface of the annular iron sheet is flush with the top surface of the supporting water box.

[0010] Preferably, the connection between the installation pipe head and the water inlet pipe is a rotary sliding method, and the installation pipe head, the supporting straight pipe and the connecting hollow ball are integrated into a single structure, with spray holes and grooves distributed at equal angles on the connecting hollow ball.

[0011] Preferably, the magnets are distributed at equal angles on the mounting tube head, and the magnets are connected to the mounting tube head by embedding and fixing. The bottom surface of the magnets is flush with the bottom surface of the mounting tube head, and the magnets are connected to the annular iron sheet by magnetic adsorption.

[0012] Compared with the prior art, the beneficial effects of this utility model are: this field crop winter protection device,

[0013] 1. The water supply belt can be combined with connecting T-pipes and connecting water pipes to facilitate evenly spaced laying. The supporting water box can be inserted into the soil through the plug to reinforce it and prevent it from tipping over. This is also conducive to winter protection spraying and irrigation.

[0014] 2. The supporting straight pipe and connecting hollow ball can be centered by sliding the installation pipe head into the water inlet pipe. At the same time, the magnet on the bottom of the installation pipe head magnetically attracts the ring iron plate on the supporting water box for reinforcement. The overall combination is simple and convenient, without the need for threaded rotation and fixing, and is convenient for batch assembly. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall assembled three-dimensional structure of this utility model;

[0016] Figure 2 This utility model Figure 1 Enlarged structural diagram at point A in the middle;

[0017] Figure 3 This is a schematic diagram of the separation structure of the water support box and the installation pipe head of this utility model;

[0018] Figure 4This is a three-dimensional cross-sectional view of the supporting water box of this utility model;

[0019] Figure 5 This is a three-dimensional structural diagram of the mounting pipe head of this utility model, viewed from below.

[0020] In the diagram: 1. Irrigation water conveyance belt; 2. Connecting tee pipe; 3. Connecting pipe end; 4. Connecting water pipe; 5. Supporting water box; 6. Combination pipe end; 7. Insert rod; 8. Ring iron plate; 9. Water inlet pipe; 10. Sealing rubber ring; 11. Installing pipe end; 12. Magnet; 13. Supporting straight pipe; 14. Connecting hollow ball; 15. Spraying hole groove. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0022] Please see Figure 1-5 This utility model provides a technical solution: a field planting overwintering protection device, including an irrigation water conveyor belt 1 and a connecting tee pipe 2. The connecting tee pipe 2 is embedded and fixedly installed at the top of the irrigation water conveyor belt 1, and a connecting pipe head 3 is fixedly installed at the end of the connecting tee pipe 2. A connecting water pipe 4 is embedded and fixedly installed on the connecting pipe head 3, and a supporting water box 5 is installed on the outer side of the end of the connecting water pipe 4. A combined pipe head 6 is provided at the center of the side of the supporting water box 5, and the combined pipe head 6 is embedded and fixedly installed with the connecting water pipe 4. An insertion point is provided at the center of the bottom surface of the supporting water box 5. The support is a rod 7, and an annular iron plate 8 is installed on the top surface of the water box 5. A water inlet pipe 9 is fixedly installed at the center of the top surface of the water box 5, and a sealing rubber ring 10 is provided on the top surface of the water inlet pipe 9. An installation pipe head 11 is installed above the water box 5, and the installation pipe head 11 is connected to the water inlet pipe 9. A magnet 12 is installed on the bottom surface of the installation pipe head 11. A support straight pipe 13 is installed on the top surface of the installation pipe head 11, and a connecting hollow ball 14 is installed at the top of the support straight pipe 13. A spray hole groove 15 is opened on the top surface of the connecting hollow ball 14.

[0023] The internal space of the connecting tee pipe 2 is connected to the internal space of the irrigation water conveying belt 1. The connecting tee pipe 2 is evenly distributed on the irrigation water conveying belt 1, and the connecting pipe head 3 is symmetrically distributed on the connecting tee pipe 2, so that the water inside the irrigation water conveying belt 1 can flow into the connecting water pipe 4 through the connecting tee pipe 2 and the connecting pipe head 3 for flow operation.

[0024] The supporting water box 5, combined pipe head 6, insertion rod 7 and sealing rubber ring 10 are integrated into a single structure. The internal spaces of the supporting water box 5, combined pipe head 6 and water inlet pipe 9 are interconnected. The combined pipe head 6 is symmetrically distributed on the supporting water box 5. The supporting water box 5 can be connected to the connecting water pipe 4 through the combined pipe head 6. At the same time, the supporting water box 5 is inserted into the ground through the insertion rod 7 for stability.

[0025] The annular iron sheet 8 is connected to the supporting water box 5 by embedding and fixing. The top surface of the annular iron sheet 8 is flush with the top surface of the supporting water box 5, which can stabilize the position of the annular iron sheet 8 and prevent protrusion, which is conducive to subsequent adhesion and adsorption.

[0026] The connection between the installation pipe head 11 and the water inlet pipe 9 is a rotary sliding method. The installation pipe head 11, the supporting straight pipe 13, and the connecting hollow ball 14 are integrated into a single structure. The connecting hollow ball 14 has spray hole grooves 15 distributed at equal angles, which allows the installation pipe head 11 and the water inlet pipe 9 to be assembled and connected, facilitating subsequent water spraying and irrigation through the spray hole grooves 15 on the supporting straight pipe 13 and the connecting hollow ball 14.

[0027] The magnetic blocks 12 are evenly distributed on the mounting pipe head 11, and the magnetic blocks 12 are connected to the mounting pipe head 11 by embedding and fixing. The bottom surface of the magnetic blocks 12 is flush with the bottom surface of the mounting pipe head 11. At the same time, the magnetic blocks 12 are connected to the annular iron sheet 8 by magnetic adsorption. The mounting pipe head 11 can be magnetically adsorbed by the magnetic blocks 12 and the annular iron sheet 8 on the supporting water box 5. The overall structure can keep fit and avoid gaps.

[0028] Working principle: According to Figure 1-5 First, after the irrigation water supply belt 1 is laid in a suitable position, install an appropriate number of supporting water boxes 5 as needed. The supporting water boxes 5 are then inserted into the ground via insert rods 7 for fixed positioning. Simultaneously, the connecting water pipe 4 is combined and fixed with the connecting pipe head 3 on the connecting tee pipe 2. The other end of the connecting water pipe 4 is also assembled and fixed with the combined pipe head 6 for easy overall connection and water supply. Next, holding the supporting straight pipe 13, slide the installation pipe head 11 at the bottom of the supporting straight pipe 13 into the water inlet pipe 9 on the supporting water box 5, so that the installation pipe head 11... The bottom surface of the device is attached to the top surface of the supporting water box 5. At the same time, the magnet 12 on the pipe head 11 is attached to the annular iron piece 8 on the supporting water box 5 for adsorption. After the combination, the device is reinforced. When water is transported, the water enters the supporting straight pipe 13 and the connecting hollow ball 14 through the connecting three-way pipe 2, the connecting water pipe 4, the supporting water box 5 and the water inlet pipe 9. The water is then sprayed and irrigated through the spray hole groove 15 on the connecting hollow ball 14 and the water pressure. The above is the working process of the entire device. All contents not described in detail in this specification are existing technologies known to those skilled in the art.

[0029] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A field crop overwintering protection device, comprising an irrigation water conveyance belt (1) and a connecting tee pipe (2), characterized in that: The top of the irrigation water conveying belt (1) is fixedly fitted with a connecting tee pipe (2), and the end of the connecting tee pipe (2) is fixedly fitted with a connecting pipe head (3). A connecting water pipe (4) is fixedly fitted on the connecting pipe head (3), and a supporting water box (5) is installed on the outer side of the end of the connecting water pipe (4). A combined pipe head (6) is provided at the center of the side of the supporting water box (5), and the combined pipe head (6) is fixedly fitted with the connecting water pipe (4). A plug rod (7) is provided at the center of the bottom surface of the supporting water box (5), and an annular iron plate (8) is installed on the top surface of the supporting water box (5). A water inlet pipe (9) is fixedly installed at the center of the top surface of the supporting water box (5), and a sealing rubber ring (10) is provided on the top surface of the water inlet pipe (9). An installation pipe head (11) is installed above the supporting water box (5), and the installation pipe head (11) is connected to the water inlet pipe (9). A magnet (12) is installed on the bottom surface of the installation pipe head (11). A supporting straight pipe (13) is installed on the top surface of the installation pipe head (11), and a connecting hollow ball (14) is installed at the top of the supporting straight pipe (13). A spray hole groove (15) is opened on the top surface of the connecting hollow ball (14).

2. The overwintering protection device for field crops according to claim 1, characterized in that: The internal space of the connecting tee pipe (2) is connected to the internal space of the irrigation water conveying belt (1), and the connecting tee pipe (2) is distributed at equal intervals on the irrigation water conveying belt (1), and the connecting pipe head (3) is symmetrically distributed on the connecting tee pipe (2).

3. The overwintering protection device for field crops according to claim 1, characterized in that: The supporting water box (5), combined pipe head (6), insertion rod (7) and sealing rubber ring (10) are integrated into a single structure. The internal spaces of the supporting water box (5), combined pipe head (6) and water inlet pipe (9) are interconnected, and the combined pipe head (6) is symmetrically distributed on the supporting water box (5).

4. The overwintering protection device for field crops according to claim 1, characterized in that: The annular iron sheet (8) is connected to the supporting water box (5) by embedding and fixing, and the top surface of the annular iron sheet (8) is flush with the top surface of the supporting water box (5).

5. The overwintering protection device for field crops according to claim 1, characterized in that: The connection between the installation pipe head (11) and the water inlet pipe (9) is a rotary sliding method. The installation pipe head (11), the supporting straight pipe (13), and the connecting hollow ball (14) are integrated into a single structure. Spraying holes (15) are distributed at equal angles on the connecting hollow ball (14).

6. The overwintering protection device for field crops according to claim 1, characterized in that: The magnets (12) are evenly distributed on the mounting tube head (11), and the magnets (12) are connected to the mounting tube head (11) by embedding and fixing. The bottom surface of the magnets (12) is flush with the bottom surface of the mounting tube head (11), and the magnets (12) are connected to the annular iron sheet (8) by magnetic adsorption.