Hidden vegetable irrigation mechanism
By burying irrigation pipes in the soil through a concealed irrigation mechanism, combined with valves to control water volume and cleaning rods to clear blockages, the problem of time-consuming and labor-intensive traditional irrigation methods and easy clogging in modern systems is solved, achieving efficient and long-lasting vegetable irrigation.
Patent Information
- Application Number
- CN202423114599.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-12-17
AI Technical Summary
Traditional vegetable irrigation methods are time-consuming and labor-intensive, and it is difficult to control the amount of irrigation. Modern systems are costly and susceptible to soil blockage, which affects their service life and maintenance efficiency.
Design a concealed irrigation mechanism that buries irrigation pipes inside the soil, controls water volume through valves, discharges excess water through an embedded shell, and cleans clogged drip irrigation pipes with cleaning rods and extension rods, while also monitoring and maintaining the pipeline.
It enables efficient control of irrigation water volume, prevents rootstock from being washed out, promptly clears blockages, extends pipeline lifespan, and improves maintenance efficiency.
Smart Images

Figure CN223626605U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to vegetable irrigation technical field, concretely relates to a hidden vegetable irrigation mechanism. BACKGROUND
[0002] Vegetables are indispensable food in people's daily life, and the growth of vegetables needs proper moisture and nutrients. The traditional vegetable irrigation method is divided into manual watering with a bucket or a kettle and the like. This method is time-consuming and laborious, and the irrigation amount is difficult to control, which can easily cause water waste or deficiency. Or, a modern irrigation system such as sprinkling irrigation or drip irrigation is used for irrigation. Although this method can save water resources and improve irrigation efficiency, the installation and maintenance cost of the sprinkling irrigation or drip irrigation system is relatively high, and the sprinkler or dripper of the sprinkling irrigation or drip irrigation system is exposed on the surface of the vegetable bed, which can cause interference in the vegetable production process, and the drip irrigation pipe can be blocked by soil, which is not easy to be found in time, resulting in that the service life of the irrigation structure is affected and maintenance is not easy. CONTENT OF THE UTILITY MODEL
[0003] The utility model provides a hidden vegetable irrigation mechanism, which can hide and bury the irrigation pipeline in the soil, timely discharge the excess water when the irrigation water amount is large, avoid the vegetable roots from being washed out, and monitor the blockage of the irrigation pipeline buried in the soil, so as to clean and maintain the pipeline in time.
[0004] The utility model provides the following technical scheme: a hidden vegetable irrigation mechanism, which comprises an embedded shell, a plurality of through grooves are formed in the two sides of the embedded shell, irrigation pipeline groups are installed on the two sides of the embedded shell, a plurality of drip irrigation pipes are arranged on one side of the irrigation pipeline group, a connecting pipeline is connected to one end of the irrigation pipeline group, a valve is arranged at one end of the drip irrigation pipe, a plurality of connection grooves are formed in the two sides of the irrigation pipeline group, a sealing plug is detachably connected in the inner cavity of the connection groove, a cleaning rod is detachably connected to the sealing plug, an extension rod is detachably connected to one end of the cleaning rod, and the connection groove is arranged in position with the drip irrigation pipe.
[0005] The sealing plug is provided with a connecting groove on one side, an inner sliding groove is formed in the bottom of the inner cavity of the connection groove, and the connecting groove is in communication with the inner sliding groove.
[0006] The diameter of the connecting groove and the inner sliding groove is matched with the diameter of the cleaning rod and the extension rod, the cleaning rod and the extension rod are slidingly connected in the connecting groove and the inner sliding groove.
[0007] One end of the extension rod is provided with a connection part, one end of the cleaning rod is provided with a thread matched with the connection part, and the cleaning rod and the extension rod are detachably connected through the connection part and the thread.
[0008] Wherein, several said through groove is equidistantly arranged, the sealing plug is engaged with the through groove, and the sealing plug one end diameter is greater than the through groove inner diameter.
[0009] Wherein, several said drip irrigation pipe is equidistantly arranged in the irrigation pipeline group one side, and the drip irrigation pipe with the irrigation pipeline group intercommunication arrangement.
[0010] Wherein, the embedded shell both ends are provided with baffle, and the embedded shell top end is provided with open structure, the embedded shell with the irrigation pipeline group length is equal.
[0011] The beneficial effect of the utility model is: this novel can hide and bury irrigation pipeline etc. in the soil, when the irrigation water volume is larger, the excess water volume is discharged in time, avoids the vegetable root stem to be washed out, and can monitor the irrigation pipeline blockage condition buried in the soil, cleans up, maintains in time to the pipeline, makes the pipeline buried in the soil continuously work, and the service life is longer, and the maintenance efficiency is higher.
[0012] The part not involved in the device is same as the prior art or can be realized by the prior art. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is cross section structure schematic diagram of the utility model;
[0014] Figure 2 It is dynamic schematic diagram of extension rod in the utility model;
[0015] Figure 3 It is three-dimensional structure schematic diagram of embedded shell in the utility model;
[0016] Figure 4 It is the utility model Figure 1 A enlarged view;
[0017] Figure 5 It is the utility model Figure 2 B enlarged view.
[0018] In the drawing: 1, embedded shell;11, through groove;2, irrigation pipeline group;21, drip irrigation pipe;22, connecting pipeline;23, valve;24, link groove;3, sealing plug;31, connecting groove;4, cleaning rod;41, inner sliding groove;5, extension rod;51, link part. DETAILED DESCRIPTION
[0019] Please refer to Figures 1-5The utility model provides following technical scheme: a hidden vegetable irrigation mechanism, including embedding casing 1, embedding casing 1 both sides are provided with a plurality of through grooves 11, and embedding casing 1 both sides are equipped with irrigation pipeline group 2, and irrigation pipeline group 2 one side is provided with a plurality of drip irrigation pipe 21, and irrigation pipeline group 2 one end is connected with connecting pipeline 22, and drip irrigation pipe 21 one end is provided with valve 23, and irrigation pipeline group 2 both sides are provided with a plurality of link grooves 24, and the link groove 24 inner chamber is detachably connected with sealing plug 3, and sealing plug 3 is detachably connected with cleaning rod 4, and cleaning rod 4 one end is detachably connected with extension rod 5, and the link groove 24 is set up with drip irrigation pipe 21 alignment.
[0020] In the embodiment: the new type is embedded in the shell 1, the irrigation pipeline group 2 is embedded in the soil, the irrigation pipeline group 2 is provided with a plurality of drip irrigation pipes 21 on one side, the irrigation pipeline group 2 and the drip irrigation pipe 21 form a drip irrigation pipe assembly, and the irrigation pipeline group 2 is connected with the connecting pipeline 22 at one end, the connecting pipeline 22 is connected with the external water source, the drip irrigation pipe assembly composed of the irrigation pipeline group 2 and the drip irrigation pipe 21 is water supplied, the drip irrigation pipe 21 is provided with a valve 23 at one end, the water pressure penetrates the valve 23 to the soil, thereby drip irrigation, and the valve 23 is used to block one end of the drip irrigation pipe 21, the irrigation pipeline group 2 is provided with a plurality of connecting grooves 24 on both sides, the connecting grooves 24 are detachably connected with the sealing plugs 3, the connecting grooves 24 and the sealing plugs 3 are used to block the inner wall of the through groove 11, so as to prevent dust and the like from entering the inner cavity of the drip irrigation pipe 21, the sealing plugs 3 are detachably connected with the cleaning rods 4, the cleaning rods 4 are detachably connected with the extension rods 5 at one end, the cleaning rods 4 and the extension rods 5 form an assembly for cleaning the drip irrigation pipe 21, the connecting grooves 24 are arranged in position with the drip irrigation pipe 21, and the connecting grooves 24, the inner sliding grooves 41 and the drip irrigation pipe 21 are in communication, the cleaning assembly composed of the cleaning rods 4 and the extension rods 5 passes through the connecting grooves 31 and the inner sliding grooves 41 on the sealing plugs 3 and then enters the inner cavity of the drip irrigation pipe 21, until the cleaning rod 4 penetrates the opening in the center of the valve 23, thereby cleaning the drip irrigation pipe 21, when the new type is used, the irrigation pipeline group 2 is embedded in the soil in advance, the embedded shell 1 is embedded in the soil, the drip irrigation pipe group composed of the irrigation pipeline group 2, the drip irrigation pipe 21 and the connecting pipeline 22 is used for irrigation, when the irrigation water volume is too large, the soil water penetration speed is less than the irrigation speed, the excess water in the soil is discharged to the inner cavity of the embedded shell 1 through the through groove 11, at this time, it indicates that the irrigation water volume is too large, the operator stops in time, and the irrigation pipeline group 2 and the drip irrigation pipe 21 are embedded in the soil, the end of the drip irrigation pipe 21 may be blocked by soil and the like, so that normal drip irrigation cannot be realized, the backflow from the inner cavity of the embedded shell 1 can be used to observe which position of the drip irrigation pipe 21 is blocked, when water enters the inner cavity of the embedded shell 1, the drip irrigation pipe 21 corresponding to the position with less water volume may be blocked, the drip irrigation pipe 21 at the position is cleaned in time, the extension rod 5 is installed at one end of the cleaning rod 4 during cleaning, the length of the cleaning rod 4 is increased, then the cleaning rod 4 and the extension rod 5 are pushed into the soil, so that the soil blocked at one end of the drip irrigation pipe 21 is cleaned, thereby maintaining the continuous work of the new type, reducing the difficulty and time for cleaning the drip irrigation pipe, avoiding the influence of the drip irrigation pipe on the irrigation of the vegetables, the service life of the hidden irrigation mechanism is longer, and the maintenance efficiency is higher.
[0021] The connecting groove 31 is communicated with the inner sliding groove 41.
[0022] The connecting groove 31 and the inner sliding groove 41 are matched in diameter with the cleaning rod 4 and the extension rod 5.
[0023] The extension rod 5 is provided with an adapter 51 at one end, and the cleaning rod 4 is provided with a thread matched with the adapter 51 at one end.
[0024] The plurality of through grooves 11 are arranged at intervals, the sealing plug 3 is connected with the through grooves 11, and the diameter of one end of the sealing plug 3 is greater than the inner diameter of the through groove 11.
[0025] The plurality of drip irrigation pipes 21 are arranged at intervals on one side of the irrigation pipeline group 2 and are communicated with the irrigation pipeline group 2.
[0026] The embedded shell 1 is provided with a partition plate at both ends, and the top end of the embedded shell 1 is provided as an open structure.
[0027] The utility model discloses a working principle and use flow: in use, advance with irrigation pipeline group 2 is buried in the soil inside, and the embedding shell 1 is embedded in the soil inside, and through irrigation pipeline group 2, drip irrigation pipe 21 and connecting pipeline 22 group drip irrigation pipe group irrigation, when the irrigation water volume is too large, the soil water seepage speed is less than irrigation speed, and the excess moisture in the soil is discharged to the embedding shell 1 inner chamber through the through groove 11, at this time, it shows that irrigation water volume is too large, and the operator stops in time, and irrigation pipeline group 2, drip irrigation pipe 21 are buried in the soil inside, and the one end of drip irrigation pipe 21 can be blocked by soil etc., lead to unable normal drip irrigation, from the embedding shell 1 inner reflux condition, can observe which position's drip irrigation pipe 21 blockage occurs, when embedding shell 1 inner chamber water, the drip irrigation pipe 21 of less water volume position possibly blockage, promptly clean the drip irrigation pipe 21 of this position, when cleaning, will extension rod 5 install at the one end of cleaning rod 4, increase the length of cleaning rod 4, then push cleaning rod 4 and extension rod 5 to the soil inside, make the soil that block in the one end of drip irrigation pipe 21 be cleaned, thereby keep the continuous work of the utility model, reduce the difficulty and time of cleaning drip irrigation concern, avoid its influence vegetable irrigation, as hidden irrigation mechanism, service life is longer, and maintenance efficiency is higher.
Claims
1. A concealed vegetable irrigation mechanism comprising an embedded housing (1), characterized in that: The embedded shell (1) is provided with a plurality of through grooves (11) on both sides, and the embedded shell (1) is provided with an irrigation pipeline group (2) on both sides, the irrigation pipeline group (2) is provided with a plurality of drip irrigation pipes (21) on one side, and the irrigation pipeline group (2) is connected with a connecting pipeline (22) at one end, the drip irrigation pipe (21) is provided with a valve (23) at one end, the irrigation pipeline group (2) is provided with a plurality of connecting grooves (24) on both sides, the connecting groove (24) is detachably connected with a sealing plug (3) in the inner cavity, the sealing plug (3) is detachably connected with a cleaning rod (4), and the cleaning rod (4) is detachably connected with an extension rod (5) at one end, the connecting groove (24) is arranged in position with the drip irrigation pipe (21).
2. The concealed vegetable irrigation mechanism according to claim 1, characterized in that: The sealing plug (3) is provided with a connecting groove (31) on one side, and the connecting groove (31) is in communication with the inner sliding groove (41) in the inner cavity.
3. The concealed vegetable irrigation mechanism according to claim 2, characterized in that: The diameter of the connecting groove (31) and the inner sliding groove (41) is matched with the diameter of the cleaning rod (4) and the extension rod (5), and the cleaning rod (4) and the extension rod (5) are slidingly connected in the connecting groove (31) and the inner sliding groove (41).
4. The concealed vegetable irrigation mechanism according to claim 1, characterized in that: The extension rod (5) is provided with an adapter (51) at one end, and the cleaning rod (4) is provided with a thread matched with the adapter (51) at one end, and the cleaning rod (4) and the extension rod (5) are detachably connected through the adapter (51) and the thread.
5. The concealed vegetable irrigation mechanism according to claim 1, characterized in that: A plurality of through grooves (11) are arranged at equal intervals, the sealing plug (3) is connected with the through groove (11), and the diameter of one end of the sealing plug (3) is greater than the inner diameter of the through groove (11).
6. The concealed vegetable irrigation mechanism according to claim 1, characterized in that: A plurality of drip irrigation pipes (21) are arranged at equal intervals on one side of the irrigation pipeline group (2), and the drip irrigation pipe (21) is in communication with the irrigation pipeline group (2).
7. The concealed vegetable irrigation mechanism according to claim 1, characterized in that: The embedded shell (1) is provided with a partition plate at both ends, and the top end of the embedded shell (1) is provided as an open structure, the embedded shell (1) and the irrigation pipeline group (2) are equal in length.