Municipal greening isolation fence convenient for supplementing water to potted plants

By designing a water storage chamber and water absorption strip structure in the municipal greening isolation fence, automatic watering of potted plants is realized, which solves the problem of inconvenient watering in the existing technology, improves watering efficiency and extends the life of potted plants.

CN224092366UActive Publication Date: 2026-04-07ZHEJIANG LITIAN HORTICULTURE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-07
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

The existing process of watering potted plants along municipal green barriers requires staff to move along the direction of the barriers, which is inconvenient and time-consuming.

Method used

Design a municipal greening isolation fence structure including a base, water storage chamber, water delivery channel, water absorption strip and connecting pipe. Automatic water replenishment is achieved by inserting the connecting pipe and injecting water. The water absorption strip delivers water to the potted plants, simplifying the water replenishment process.

Benefits of technology

It achieves convenience and efficiency in watering potted plants, reduces the need for manual movement, extends the lifespan of potted plants, and reduces the risk of debris clogging.

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Abstract

The municipal greening isolation fence comprises a base, a planting groove is formed in the base, a water storage cavity and a water supply channel are formed in the base, a water absorption strip is arranged on the base, a connecting pipe is arranged on the base, a through hole is formed in the connecting pipe, and an inserting opening is formed in the outer side wall, away from the connecting pipe, of the base; a water inlet is further formed in the base, and a plugging assembly is arranged on the base. During use, the connecting pipe on the base is inserted into the inserting opening in the adjacent base, then the inserting opening in the base at the head end is plugged, water is injected into the water inlet in the base at the tail end, meanwhile, the through hole in the water injection base is plugged by hands, and water can flow into the water storage cavity in the adjacent base; water in the water storage cavity can be transferred into the planting grooves through the water absorption strips to supplement water to the potted plants in the planting grooves, and workers do not need to move in the arrangement direction of the municipal greening isolation fence, so that water supplementation to the potted plants on the greening isolation fence is more convenient and faster.
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Description

TECHNICAL FIELD

[0001] The application relates to the field of municipal greening isolation fences, in particular to a municipal greening isolation fence facilitating water replenishment of potted plants. BACKGROUND

[0002] The greening isolation fence is commonly used for separating motor vehicle lanes on municipal roads to prevent pedestrians and vehicles from crossing the road at will without observing traffic rules, and in order to improve the greening coverage of the city, a potted plant is usually placed on the top of the isolation fence to achieve the effects of greening and beauty.

[0003] For example, the utility model patent with the patent announcement number CN202936749U discloses a municipal greening isolation fence, which comprises a fence and a base, a flowerpot is arranged on the top of the fence, upper and lower fitting blocks are arranged on the two side edges of the fence, and the fence has the characteristics of quick installation and dismounting and good greening effect.

[0004] In the above-mentioned municipal greening isolation fence, in order to prolong the service life of the potted plants in the flowerpot, the potted plants need to be irrigated regularly to replenish the water required by the potted plants. When irrigating, the staff needs to move along the arrangement direction of the municipal greening isolation fence and then irrigate the potted plants in the flowerpot on the top of the fence in turn, which is relatively troublesome and needs to be improved. UTILITY MODEL CONTENT

[0005] In order to improve the problem that the staff is relatively troublesome to irrigate and replenish water for the potted plants on the municipal greening isolation fence, the application provides a municipal greening isolation fence facilitating water replenishment of potted plants.

[0006] The application provides a municipal greening isolation fence facilitating water replenishment of potted plants, which adopts the following technical scheme:

[0007] The municipal greening isolation fence facilitating water replenishment of potted plants comprises a base, a planting groove is formed in the base, a water storage cavity and a water feeding channel are formed in the base, a water absorbing strip is arranged on the base, opposite ends of the water absorbing strip are located in the planting groove and the water storage cavity respectively, the water feeding channel and the water storage cavity are communicated, and the end of the water absorbing strip close to the water storage cavity is located below the water feeding channel.

[0008] A connecting pipe is arranged on the base, a through hole is formed in the connecting pipe, the through hole and the water feeding channel are communicated, a socket is formed in the outer side wall of the base away from the connecting pipe, the socket and the water storage cavity are communicated, the socket is used for inserting the connecting pipe, a water inlet is formed in the base and communicated with the water storage cavity, and a plugging assembly for plugging the socket is arranged on the base.

[0009] By adopting the above technical scheme, in actual use, the connecting pipe on the base is inserted into the spigot on the adjacent base, the spigot on the base at the leading end is blocked by the blocking assembly on the base at the leading end, then water is injected into the water inlet on the base at the trailing end, at the same time, the through hole on the connecting pipe on the water injection base is blocked by hand, when the water overflows the water delivery channel and the spigot, the water will flow into the water storage cavity in the adjacent base through the water delivery channel and the spigot, the water in the water storage cavity will be transmitted to the planting tank through the water absorption of the water absorption strip to wet the soil and the potted root system in the planting tank, thereby achieving water replenishment for the potted plants in the planting tank, when the water overflows the water inlet on the water injection base, it can be judged that the water injection for all the water storage cavities on the bases has been completed, the staff only needs to inject water into one of the bases for replenishment, without the need to move along the arrangement direction of the municipal green isolation fence, so that the water replenishment for the potted plants on the green isolation fence is more convenient and fast.

[0010] Optionally, the blocking assembly comprises a baffle slidingly connected to the base and an elastic member one provided on the base, one end of the baffle extends out of the base, and the elastic member one abuts against the baffle, so that the baffle covers the spigot, and a clamping groove is formed in the outer side wall of the connecting pipe, and the clamping groove is used for clamping the baffle.

[0011] By adopting the above technical scheme, when it is needed to insert the connecting pipe into the spigot on the adjacent base, the part of the baffle extending out of the base is moved to make the baffle disengage from the spigot, then the connecting pipe is inserted into the spigot on the adjacent base, at this time, the clamping groove and the baffle are aligned, the baffle is released, and the baffle is clamped into the clamping groove under the action of the elastic member one, and the baffle abuts against the inner wall of the clamping groove, so that the positioning between the adjacent bases is achieved, and the situation that the bases move due to the vibration of vehicles driving on the road and the connecting pipe disengages from the spigot is reduced; when it is needed to block the spigot, the baffle is moved to make the baffle disengage from the clamping groove, then the connecting pipe is moved to disengage from the spigot, and then the baffle is released, and the baffle covers the spigot under the action of the elastic member one, so that the blocking of the spigot is achieved, and the spigot only needs to be moved to be blocked or used, so that the blocking of the spigot is more convenient.

[0012] Optionally, a fixing block is provided on the base, the fixing block is located in the water storage cavity, a limiting hole is formed in the fixing block, and the water absorption strip is located in the limiting hole and abuts against the inner wall of the bottom of the water storage cavity.

[0013] By adopting the above technical scheme, the fixing block and the limiting hole are provided, the water absorption strip is limited by the inner wall of the limiting hole, so that the water absorption strip keeps abutting against the inner wall of the bottom of the water storage cavity, the situation that the water absorption strip is away from the inner wall of the bottom of the water storage cavity by a certain distance and the water at the bottom of the water storage cavity cannot be absorbed by the water absorption strip is reduced, the water in the water storage cavity can be fully utilized, which is beneficial to prolonging the water replenishment time for the potted plants and prolonging the service life of the potted plants.

[0014] Optionally, the top of the portion of the absorbent strip located inside the water storage cavity is higher than the water delivery channel.

[0015] By adopting the above technical solution, when the water level in the water storage chamber is higher than that in the water delivery channel, the water pressure reduces the portion of water that passes through the base of the water suction strip and is discharged into the planting trough, which helps to accelerate the injection of water into the water storage chambers in the rest of the base.

[0016] Optionally, the base includes a seat and a protrusion on the seat. The water storage chamber, water delivery channel, inlet and planting trough are provided on the seat. The water inlet is provided on the protrusion. A slider is slidably connected to the protrusion. The slider slides closer to or away from the seat. An elastic element two is provided on the protrusion. The elastic element two abuts against the slider, so that the slider covers the water inlet.

[0017] By adopting the above technical solution, a slider and an elastic element are set up. When there is no need to inject water into the water storage chamber, the elastic element presses against the slider, so that the slider keeps the water inlet closed. This reduces the possibility of debris falling into the water inlet and clogging it. When water needs to be injected into the water storage chamber later, there is no need to clean the water inlet, making it more convenient to inject water into the water storage chamber.

[0018] Optionally, the protrusion includes a block on the seat and a protruding ring on the block. The water inlet is located on the block. The slider is slidably connected to the block. A receiving groove is formed on the outer side wall of the slider near the seat. The second elastic element is located on the protruding ring. Both the protruding ring and the second elastic element are located in the receiving groove, and the protruding ring is located on the side of the second elastic element away from the bottom of the receiving groove.

[0019] By adopting the above technical solution, a receiving groove and a convex ring are set, and the elastic element two is surrounded by the block and the convex ring, thereby protecting the elastic element two, reducing the contact corrosion of the elastic element two by rainwater, and helping to extend the service life of the elastic element two.

[0020] In summary, this application includes at least one of the following beneficial technical effects:

[0021] 1. Insert the connecting pipe on the base into the socket on the adjacent base, then seal the socket on the first base. Next, fill the water inlet on the base at the tail end with water, and at the same time block the through hole on the water filling base with your hand. The water will flow into the water storage chamber in the adjacent base. The water in the water storage chamber will be transferred to the planting trough through the water absorption strip to replenish the water in the potted plants in the planting trough. The staff does not need to move along the arrangement direction of the municipal greening isolation fence, making it more convenient and faster to replenish the water in the potted plants on the greening isolation fence.

[0022] 2. By setting a fixing block and limiting hole, the water absorption strip is kept in contact with the bottom inner wall of the water storage cavity, which can make full use of the water in the water storage cavity, which helps to extend the watering time of the potted plant and thus extend the life of the potted plant.

[0023] 3. By setting up a slider and elastic element two, when there is no need to inject water into the water storage chamber, the elastic element two presses against the slider, keeping the slider in a state of covering the water inlet. This reduces the possibility of debris falling into the water inlet and clogging it. When water needs to be injected into the water storage chamber later, there is no need to clean the water inlet, making it more convenient to inject water into the water storage chamber. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of an embodiment of this application.

[0025] Figure 2 This is a cross-sectional view of the structure of the base, slider and elastic element in the embodiment of this application, mainly showing the structure of the water storage cavity, the fixing block and the water absorption strip.

[0026] Figure 3 for Figure 2 The enlarged view of section A mainly shows the structure of the through hole and the slot.

[0027] Figure 4 for Figure 2 The enlarged view of section B mainly shows the structure of the receiving groove and the second elastic element.

[0028] Figure 5 This is a partial structural diagram of an embodiment of this application, mainly showing the structure of the water inlet.

[0029] Explanation of reference numerals in the attached drawings: 1. Base; 11. Seat body; 111. Planting trough; 112. Water storage chamber; 113. Water delivery channel; 114. Insert; 115. Movable chamber; 12. Protrusion; 121. Block; 1211. Water inlet; 122. Protruding ring; 2. Connecting pipe; 21. Through hole; 22. Slot; 3. Water absorption strip; 4. Fixing block; 41. Limiting hole; 5. Sealing assembly; 51. Baffle; 511. Sliding part; 512. Extension part; 52. Elastic element one; 7. Sliding block; 71. Receiving groove; 8. Elastic element two. Detailed Implementation

[0030] The following is in conjunction with the appendix Figures 1-5 This application will be described in further detail.

[0031] This application discloses a municipal greening barrier that facilitates watering potted plants. See also... Figures 1-3The municipal greening isolation fence for easy watering of potted plants includes a base 1, which includes a seat body 11 and a protrusion 12. A planting trough 111 is provided on the upper end surface of the seat body 11. A water storage cavity 112 and a water delivery channel 113 are provided inside the seat body 11. The water delivery channel 113 is located on one side of the water storage cavity 112 in the horizontal direction and is connected to the water storage cavity 112. The water delivery channel 113 passes through the seat body 11 in a direction away from the water storage cavity 112. A connecting pipe 2 is fixed on the outer wall of the seat body 11. A through hole 21 is provided on the outer wall of the connecting pipe 2. The through hole 21 passes through the connecting pipe 2 along the length direction of the connecting pipe 2 and is connected to the water delivery channel 113.

[0032] See Figure 2 A plurality of absorbent strips 3 are fixed on the base 11. The plurality of absorbent strips 3 are evenly spaced along the horizontal direction. The opposite ends of each absorbent strip 3 are located in the planting trough 111 and the water storage cavity 112, respectively. The end of each absorbent strip 3 near the water storage cavity 112 is located below the water delivery channel 113. The top of the part of each absorbent strip 3 located in the water storage cavity 112 is higher than the water delivery channel 113. In this embodiment, the absorbent strip 3 is made of cotton.

[0033] See Figure 2 A number of fixing blocks 4 are fixed on the base 11. The fixing blocks 4 are all located in the water storage cavity 112. The number and position of the fixing blocks 4 correspond one-to-one with the number and position of the water absorption strips 3. Each fixing block 4 has a limiting hole 41. The limiting hole 41 penetrates the fixing block 4 vertically. Each water absorption strip 3 is located in the corresponding limiting hole 41 and abuts against the bottom inner wall of the water storage cavity 112. The water absorption strip 3 is limited by the inner wall of the limiting hole 41, so that the water absorption strip 3 is kept in the state of abutting against the bottom inner wall of the water storage cavity 112, and the water in the water storage cavity 112 can be fully utilized.

[0034] See Figures 2-3An insertion port 114 is provided on the outer side wall of the seat body 11 away from the connecting pipe 2. The insertion port 114 communicates with the water storage chamber 112 and allows the connecting pipe 2 to be inserted. A movable cavity 115 is located inside the seat body 11. A sealing assembly 5 is provided on the seat body 11. The sealing assembly 5 includes a baffle 51 and an elastic element 52. The baffle 51 includes a sliding part 511 and an extension part 512. The sliding part 511 passes through the movable cavity 115 and slides up and down on the seat body 11. The lower end of the sliding part 511 extends out of the seat body 11. The extension part 512 is located inside the movable cavity 115 and slides down with the sliding part 512. The movable part 511 is fixedly connected, and the elastic element 52 is located inside the movable cavity 115 and below the extension 512. The opposite ends of the elastic element 52 are fixedly connected to the extension 512 and the seat 11, respectively. The elastic element 52 abuts against the extension 512, so that the extension 512 abuts against the top inner wall of the movable cavity 115 and the sliding part 511 covers the insertion port 114. A slot 22 is provided on the outer wall of the connecting tube 2. The slot 22 is located below the through hole 21 and the slot 22 is for the sliding part 511 to be inserted. In this embodiment, the elastic element 52 is a spring.

[0035] In practical use, when it is necessary to insert the connecting tube 2 into the socket 114 on the adjacent base 11, the sliding part 511 is moved out of the socket 11 by moving the part of the sliding part 511 that extends out of the base 11, so that the sliding part 511 is disengaged from the socket 114. Then the connecting tube 2 is inserted into the socket 114 on the adjacent base 1. At this time, the slot 22 and the sliding part 511 are aligned. The sliding part 511 is released, and the extension part 512 drives the sliding part 511 to be inserted into the slot 22 under the action of the elastic element 52. The positioning between the adjacent bases 11 can be achieved by the sliding part 511 abutting against the inner wall of the slot 22.

[0036] When it is necessary to block the socket 114, the sliding part 511 is moved to disengage from the slot 22, and then the connecting tube 2 is moved away from the socket 114. Then the sliding part 511 is released, and the sliding part 511 covers the socket 114 under the action of the elastic element 52, thereby blocking the socket 114.

[0037] See Figures 2-5 The protrusion 12 is located above the base 11. The protrusion 12 includes a block 121 and a protruding ring 122. The block 121 is fixed on the base 11. A water inlet 1211 is provided on the outer wall of the block 121. The water inlet 1211 is connected to the water storage cavity 112. The protruding ring 122 is located below the water inlet 1211 and is arranged around the outer periphery of the block 121 and fixed on the block 121.

[0038] See Figures 2-5A slider 7 is slidably connected to the block 121. The slider 7 is sleeved on the outside of the block 121 and slides closer to or away from the base 11. A receiving groove 71 is opened on the outer wall of the slider 7 near the base 11. An elastic element 8 is fixed on the protruding ring 122. The elastic element 8 is arranged around the outer periphery of the block 121. Both the protruding ring 122 and the elastic element 8 are located in the receiving groove 71, and the protruding ring 122 is located on the side of the elastic element 8 away from the bottom of the receiving groove 71. The elastic element 8 and the slider 7 are fixedly connected, and the elastic element 8 abuts against the slider 7. When the elastic element 8 is in its natural state, the slider 7 covers the water inlet 1211. The block 121 and the protruding ring 122 surround the elastic element 8, thereby protecting the elastic element 8, reducing the contact corrosion of the elastic element 8 by rainwater, and helping to extend the service life of the elastic element 8. In this embodiment, the elastic element 8 is a spring.

[0039] In practical use, when there is no need to fill the water storage chamber 112 with water, the elastic element 8 presses against the slider 7, keeping the slider 7 in a state that covers the water inlet 1211. This reduces the possibility of debris falling into the water inlet 1211 and clogging it. When it is necessary to fill the water storage chamber 112 with water later, the slider 7 is moved down to expose the water inlet 1211, and water can be filled into the water inlet 1211 without cleaning it, making it more convenient to fill the water storage chamber 112 with water.

[0040] The implementation principle of a municipal greening isolation fence that facilitates watering potted plants according to an embodiment of this application is as follows:

[0041] In practical use, the connecting pipe 2 on the base 11 is inserted into the socket 114 on the adjacent base 11. The socket 114 on the first base 11 is sealed by the sealing component 5 on the first base 11. Then, water is injected into the water inlet 1211 on the block 121 at the tail end. At the same time, the through hole 21 on the connecting pipe 2 on the water injection base 11 is blocked by hand. When the water overflows the water delivery channel 113 and the socket 114, the water will flow through the water delivery channel 113 and the socket 114 into the water storage chamber 112 in the adjacent base 11. Water in section 2 is transferred to planting trough 111 through the water absorption strip 3 to moisten the soil and roots of the potted plants in planting trough 111, thereby replenishing water for the potted plants in planting trough 111. When water overflows from the water inlet 1211 on the water-filled block 121, it can be determined that watering of the water storage chambers 112 on all seats 11 is complete. Staff only need to replenish water for one seat 11, without having to move along the layout of the municipal greening isolation fence, making it more convenient and faster to replenish water for the potted plants on the greening isolation fence.

[0042] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A municipal greening barrier for easy watering of potted plants, comprising a base (1), wherein a planting trough (111) is provided on the base (1), characterized in that: The base (1) is provided with a water storage cavity (112) and a water delivery channel (113). The base (1) is provided with a water absorption strip (3). The two ends of the water absorption strip (3) are located in the planting trough (111) and the water storage cavity (112) respectively. The water delivery channel (113) is connected to the water storage cavity (112). The end of the water absorption strip (3) near the water storage cavity (112) is located below the water delivery channel (113). The base (1) is provided with a connecting pipe (2), and the connecting pipe (2) is provided with a through hole (21). The through hole (21) is connected to the water delivery channel (113). The outer wall of the base (1) away from the connecting pipe (2) is provided with a socket (114). The socket (114) is connected to the water storage chamber (112), and the socket (114) is for the connecting pipe (2) to be inserted. The base (1) is also provided with a water inlet (1211) connected to the water storage chamber (112). The base (1) is provided with a sealing component (5) for sealing the socket (114).

2. The municipal greening isolation fence according to claim 1, which facilitates watering potted plants, is characterized in that: The sealing assembly (5) includes a baffle (51) slidably connected to the base (1) and an elastic element (52) provided on the base (1). One end of the baffle (51) extends out of the base (1), and the elastic element (52) abuts against the baffle (51) so that the baffle (51) covers the socket (114). A slot (22) is provided on the outer side wall of the connecting pipe (2) for the baffle (51) to be inserted.

3. The municipal greening isolation fence according to claim 1, which facilitates watering potted plants, is characterized in that: The base (1) is provided with a fixing block (4), which is located in the water storage cavity (112). The fixing block (4) has a limiting hole (41), and the water absorption strip (3) is located in the limiting hole (41) and abuts against the bottom inner wall of the water storage cavity (112).

4. The municipal greening isolation fence for facilitating watering potted plants as described in claim 1, characterized in that: The top of the portion of the absorbent strip (3) located inside the water storage cavity (112) is higher than the water delivery channel (113).

5. The municipal greening isolation fence for facilitating watering potted plants as described in claim 1, characterized in that: The base (1) includes a seat (11) and a protrusion (12) on the seat (11). The water storage cavity (112), water delivery channel (113), inlet (114) and planting trough (111) are located on the seat (11). The water inlet (1211) is located on the protrusion (12). A slider (7) is slidably connected to the protrusion (12). The slider (7) slides closer to or away from the seat (11). An elastic element (8) is provided on the protrusion (12). The elastic element (8) abuts against the slider (7) so that the slider (7) covers the water inlet (1211).

6. The municipal greening isolation fence according to claim 5, which facilitates watering potted plants, is characterized in that: The protrusion (12) includes a block (121) disposed on the base (11) and a protruding ring (122) disposed on the block (121). The water inlet (1211) is disposed on the block (121). The slider (7) is slidably connected to the block (121). The slider (7) has a receiving groove (71) on the outer side wall near the base (11). The second elastic element (8) is disposed on the protruding ring (122). The protruding ring (122) and the second elastic element (8) are both located in the receiving groove (71), and the protruding ring (122) is located on the side of the second elastic element (8) away from the bottom of the receiving groove (71).

Citation Information

Patent Citations

  • Insulation fence for municipal greening

    CN202936749U