A rainwater harvesting device for farmland construction

CN224705207UActive Publication Date: 2026-09-01SHAANXI QIANCHANG RAINWATER CONSTR TECH CO LTD
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Patent Information

Application Number
CN202521826920.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-27
Publication Date
2026-09-01
Estimated Expiration
2035-08-27

AI Technical Summary

Technical Problem

[0005]本实用新型的目的在于提供一种农田建设雨水收集设备,以解决现有技术中,用于农田建设雨水收集系统的PP模块,其连接结构通常较为简单,容易出现拼装不稳或后期位移的情况,使用效率有待提升的问题

Benefits of technology

[0017]本实用新型通过设置第一卡槽、第一卡块和锁定组件等结构,多层错位卡扣与工字锁定组件配合,保证拼装效率和竖向承载,且多向锁定,整体结构稳固,操作便捷,提高农田建设雨水收集设备的使用效率。

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Abstract

This utility model discloses a rainwater harvesting device for farmland construction, relating to the technical field of farmland construction equipment. It includes multiple plates, each with an integrally formed support body. Multiple support bodies are arranged in a matrix, and four identical docking areas are formed on the plates. Two of the diagonally distributed docking areas have first slots on their support bodies located at the ends of the support bodies furthest from the plates. The other two diagonally distributed docking areas have integrally formed first locking blocks on their support bodies located at the ends of the support bodies furthest from the plates. This rainwater harvesting device for farmland construction, through its structure of first slots, first locking blocks, and locking components, utilizes multi-layered staggered buckles and I-beam locking components to ensure assembly efficiency and vertical load-bearing capacity. It also provides multi-directional locking, resulting in a stable overall structure, convenient operation, and improved efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of farmland construction equipment technology, and in particular to a rainwater harvesting device for farmland construction. Background Technology

[0002] PP modular rainwater storage tanks are underground rainwater storage systems assembled from recycled polypropylene (PP) plastic modules. They have been widely used in sponge cities, green buildings, and municipal drainage. Their core value lies in "assembly instead of pouring," replacing traditional reinforced concrete or fiberglass tanks to achieve faster, more economical, and more flexible rainwater collection and utilization.

[0003] In the existing technology, the PP modules used in farmland rainwater harvesting systems usually have a relatively simple connection structure, which is prone to unstable assembly or displacement later, and the efficiency of use needs to be improved.

[0004] Therefore, it is necessary to propose a rainwater harvesting device for farmland construction to solve the above problems. Utility Model Content

[0005] The purpose of this utility model is to provide a rainwater harvesting device for farmland construction, in order to solve the problem that the PP modules used in the existing farmland construction rainwater harvesting system have a relatively simple connection structure, which is prone to unstable assembly or displacement later, and the efficiency of use needs to be improved.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a rainwater collection device for farmland construction, comprising multiple plates, on which a support body is integrally formed, and multiple support bodies are provided, which are distributed in a matrix, and four docking areas with the same shape are formed on the plate.

[0007] Among them, the support body on the two diagonally distributed docking areas is provided with a first slot, and the first slot is located at the end of the support body away from the plate. The support body on the other two diagonally distributed docking areas is integrally formed with a first block, and the first block is located at the end of the support body away from the plate. The first block is inserted and engaged with the corresponding first slot.

[0008] Adjacent panels are connected by a locking assembly.

[0009] Preferably, the locking component includes a first locking member and a connecting member. There are two first locking members, which are respectively fixedly connected to both ends of the connecting member. The connecting member and the two first locking members are distributed in an I-shape. The plate body has a limiting groove for the first locking members to engage, and the edge of the plate body has a placement groove for the connecting member to engage.

[0010] Preferably, the placement groove does not penetrate the plate.

[0011] Preferably, a through groove is provided at the docking area. The through groove is formed on the plate body. Two through grooves that are diagonally distributed are provided with a second slot on their outer side. Multiple second slots are formed on the plate body and are evenly distributed around the through groove. Two other through grooves that are diagonally distributed are provided with a second post on their outer side. Multiple second posts are formed on the plate body and are evenly distributed around the through groove. The second posts engage with the corresponding second slot.

[0012] Preferably, the plate is hollowed out.

[0013] This utility model also discloses a rainwater harvesting process for farmland construction. Using the above-mentioned rainwater harvesting equipment for farmland construction, the process further includes the following steps:

[0014] S1. Vertical stacking is achieved by splicing one plate to another vertically or by splicing one support to another vertically.

[0015] S2. At the same time, use locking components to fix the two adjacent plates horizontally.

[0016] The technical effects and advantages of this utility model are as follows:

[0017] This utility model, through the setting of a first slot, a first block, and a locking component, with multi-layered staggered buckles and I-beam locking components, ensures assembly efficiency and vertical load-bearing capacity, and provides multi-directional locking, resulting in a stable overall structure, convenient operation, and improved efficiency of rainwater harvesting equipment in farmland construction. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of the rainwater harvesting device for farmland construction according to this utility model.

[0019] Figure 2 This is a schematic diagram of the structure of the rainwater harvesting device for farmland construction from another perspective.

[0020] Figure 3 This is a schematic diagram illustrating the installation and use of the rainwater harvesting equipment for farmland construction according to this utility model.

[0021] Figure 4 This is a schematic diagram of the plate and support structure of this utility model.

[0022] Figure 5 This utility model Figure 4 Enlarged schematic diagram of the structure at point A in the middle.

[0023] Figure 6 This is a schematic diagram of the plate body and the second card post structure of this utility model.

[0024] Figure 7 This utility model Figure 6 Enlarged schematic diagram of the structure at point B.

[0025] In the figure: 1. Plate; 2. Support body; 3. First slot; 4. First block; 5. Through slot; 6. Second slot; 7. Second post; 8. Limiting slot; 9. Placement slot; 10. First fastener; 11. Connector. Detailed Implementation

[0026] This utility model provides, for example Figures 1 to 7 The rainwater harvesting device for farmland construction shown includes multiple plates 1, each plate 1 is hollow, and a support body 2 is integrally formed on the plate 1. Multiple support bodies 2 are arranged in a matrix. The plate 1 is square, and four identical square docking areas are formed on the plate 1.

[0027] The plate body 1, support body 2, etc. can be made of polypropylene (PP) material, but are not limited to.

[0028] Among them, the support body 2 on the two diagonally distributed docking areas is provided with a first slot 3, and the first slot 3 is located at the end of the support body 2 away from the plate body 1; the support body 2 on the other two diagonally distributed docking areas is integrally formed with a first block 4, and the first block 4 is located at the end of the support body 2 away from the plate body 1.

[0029] When the support bodies 2 on the two plates 1 are attached and spliced ​​together, the docking area with the first card block 4 corresponding to the upper plate 1 and the docking area with the first card slot 3 corresponding to the lower plate 1 are aligned vertically. At this time, the first card block 4 can be inserted and engaged with the corresponding first card slot 3.

[0030] A through groove 5 is provided at the docking area. The through groove 5 is opened on the plate 1. Two through grooves 5 are diagonally distributed and have a second locking groove 6 on their outer side. The second locking groove 6 is opened on the plate 1 and there are multiple second locking grooves 6 evenly distributed around the through groove 5. The other two through grooves 5 are diagonally distributed and have a second locking post 7 on their outer side. The second locking post 7 is integrally formed on the plate 1 and there are multiple second locking posts 7 evenly distributed around the through groove 5.

[0031] When the two plates 1 are attached and spliced ​​together, the docking area with the second locking post 7 corresponding to the upper plate 1 and the docking area with the second locking groove 6 corresponding to the lower plate 1 are aligned vertically. At this time, the second locking post 7 can be inserted and engaged with the corresponding second locking groove 6.

[0032] Furthermore, two adjacent plates 1 are connected by a locking assembly, which includes a first locking piece 10 and a connecting piece 11. There are two first locking pieces 10, which are fixedly connected to the two ends of the connecting piece 11 respectively. The connecting piece 11 and the two first locking pieces 10 are distributed in an I-shape. A limiting groove 8 is provided on the plate 1 for the first locking piece 10 to engage, and a placement groove 9 is provided at the edge of the plate 1 for the connecting piece 11 to engage. The placement groove 9 does not penetrate the plate 1 and does not affect the strength of the plate 1.

[0033] In actual use, the assembly at the same horizontal level is completed first, and then the assembly continues upward. When assembling two adjacent plates 1 at the same horizontal level, the two adjacent plates 1 are close together, and the lower half of one of the first locking components 10 is engaged in the limiting groove 8 on one of the plates 1, and the lower half of the other first locking component 10 is engaged in the limiting groove 8 on the other plate 1. The lower half of the connecting component 11 is engaged in the placement groove 9, so that the two adjacent plates 1 will not separate.

[0034] When the two plates 1 are attached and spliced ​​together, the upper half of the first clip 10 can also be clipped into the limiting groove 8 corresponding to the upper plate 1, and the upper half of the connector 11 can be clipped into the placement groove 9 corresponding to the upper plate 1.

[0035] This utility model, through the setting of a first slot 3, a first block 4 and a locking component, etc., with multi-layered staggered buckles and I-beam locking components, ensures assembly efficiency and vertical load-bearing capacity, and provides multi-directional locking. The overall structure is stable, easy to operate, and improves the efficiency of rainwater harvesting equipment in farmland construction.

[0036] In actual use, the entire assembly is wrapped with an impermeable geomembrane (or permeable geotextile) to form a closed water storage tank or infiltration tank. The modular water storage tank and its working principle are common existing technologies, and will not be described in detail here.

[0037] This utility model also provides a rainwater harvesting process for farmland construction. Using the above-mentioned rainwater harvesting equipment for farmland construction, the following operating steps are also included:

[0038] S1. Vertical stacking is achieved by splicing plate 1 with another plate 1 vertically or by splicing support 2 with another support 2 vertically.

[0039] S2. At the same time, the locking components are used to fix the two adjacent plates 1 horizontally.

Claims

1. A rainwater collecting device for farmland construction, comprising a plurality of plate bodies (1), characterized in that: The plate (1) is integrally formed with a support body (2), and multiple support bodies (2) are provided. The multiple support bodies (2) are distributed in a matrix, and four docking areas with the same shape are formed on the plate (1). Among them, the support body (2) on the two diagonally distributed docking areas is provided with a first slot (3), and the first slot (3) is located at the end of the support body (2) away from the plate (1). The support body (2) on the other two diagonally distributed docking areas is integrally formed with a first block (4), and the first block (4) is located at the end of the support body (2) away from the plate (1). The first block (4) is inserted and engaged with the corresponding first slot (3). The two adjacent plates (1) are connected by a locking assembly.

2. The farmland construction rainwater collecting device according to claim 1, characterized in that: The locking assembly includes a first locking piece (10) and a connector (11). There are two first locking pieces (10), which are fixedly connected to the two ends of the connector (11). The connector (11) and the two first locking pieces (10) are arranged in an I-shape. The plate (1) is provided with a limiting groove (8) for the first locking piece (10) to engage. The edge of the plate (1) is provided with a placement groove (9) for the connector (11) to engage.

3. The farmland construction rainwater collecting device according to claim 2, characterized in that: The placement slot (9) does not penetrate the plate (1).

4. The farmland construction rainwater collecting device according to claim 1, characterized in that: A through groove (5) is provided at the docking area. The through groove (5) is opened on the plate (1). Two through grooves (5) that are diagonally distributed are provided with a second slot (6) on the outside. The second slot (6) is opened on the plate (1). There are multiple second slots (6). The multiple second slots (6) are evenly distributed around the through groove (5). There are two other through grooves (5) that are diagonally distributed on the outside. The second slots (7) are integrally formed on the plate (1). There are multiple second slots (7). The multiple second slots (7) are evenly distributed around the through groove (5). The second slots (7) are engaged with the corresponding second slots (6).

5. The farmland construction rainwater collecting device according to claim 1, characterized in that: The plate (1) is hollow.