A greening isolation structure and method for construction
Through the design of modular isolation components and greening components, the isolation effect and disassembly and assembly problems at the construction site are solved, and effective isolation and greening at the construction site are achieved to meet the construction safety and environmental beautification needs.
Patent Information
- Application Number
- CN202410588569.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-13
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2044-05-13
AI Technical Summary
The isolation effect and disassembly and assembly convenience of the existing construction greening isolation devices need to be improved, and the fixing and operation of the greening components are inconvenient.
The modular design of isolation components and greening components is adopted, including isolation panels, support frames, spray components, green frames, drip parts and clamping components. The greening components are fixed through clamping components, dust reduction for the spray components, watering for drip parts, and limit components are fixed for planting boxes.
It realizes effective isolation and greening at the construction site. The greening components are easy to disassemble and fix, dust reduction of spray components and water drip parts to meet construction safety and environmental beautification needs.
Smart Images

Figure CN118318634B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of construction isolation, in particular to a greening isolation structure and method for construction. Background Art
[0002] During construction, isolation measures are often implemented to separate the construction site from the surrounding environment. This ensures safety, minimizes impacts on nearby residents and traffic, and prevents the release of construction materials and waste. Adding greenery to the building isolation fences can improve the urban landscape and mitigate the environmental impact of construction.
[0003] The existing patent announcement number CN113261446B discloses a green isolation belt construction method based on a construction project, in which the green isolation device includes two relatively arranged green isolation side panels, and a plurality of limiting slides are opened at the lower end of the green isolation side panels. A filter plate is hinged on the inner side of each green isolation side panel, and the lower ends of the two filter plates are hinged to each other. There are leakage holes on the filter plates, and a limited width support plate is hinged on the inner side of the green isolation side panel, and one end of the limited width support plate cooperates with the plug-in hole on the side of the green isolation side panel; the isolation and water collection device is installed below the green isolation device, and the isolation and water collection device includes a drainage and water collection mechanism, and water collection extension plates are fixed on both sides of the drainage and water collection mechanism. A plurality of guide matching plates that slide with the limiting slides are distributed in an array on the water collection extension plate, and a first baffle is fixed on the guide matching plate by bolts.
[0004] The above-mentioned greening isolation device is used for planting green belts. When used as an isolation structure during construction, the isolation effect still needs to be improved, and the convenience of disassembly and assembly in actual use still needs to be improved. In response to the above problems, a greening isolation structure and method for construction are proposed. Summary of the Invention
[0005] The purpose of the present invention is to provide a greening isolation structure and method for construction to solve the problems raised in the above background technology.
[0006] To achieve the above object, the present invention provides the following technical solutions:
[0007] A greening isolation structure for construction, comprising an isolation component and a greening component;
[0008] The isolation assembly includes a plurality of isolation plates and a support frame connected to one side of the isolation plates. A spray assembly is installed on the top of the isolation plates. The greening assembly is arranged on one side of the isolation plates. A clamping assembly for fixing the greening assembly is provided on one side of the isolation assembly.
[0009] The greening assembly includes a greening frame and a partition connected to the greening frame, with mounting cavities on both sides of the partition, a plurality of arc-shaped plates fixedly connected to the mounting cavities, a water leakage hole provided at the bottom of the arc-shaped plate, a planting box provided at the top of the arc-shaped plate, and a dripping piece installed on the partition for watering the green plants in the planting box; a limiting assembly for fixing the planting box to the top of the arc-shaped plate is installed in the greening frame;
[0010] The snap-on assembly includes a first gusset plate arranged at the top of the greening frame and a second gusset plate arranged at the bottom of the greening frame. The first gusset plate is fixedly connected to the isolation plate, and the isolation plate is provided with an elastic adjustment member for adjusting the height of the second gusset plate.
[0011] In an optional solution: the dripping part includes a dripping pipe, and several dripping heads are connected to the bottom of the dripping pipe. At least two groups of dripping pipes are provided in each installation cavity. A connecting pipe connected to the dripping pipe is provided in the partition bar, and a water inlet trough connected to the connecting pipe is provided at the top of the greening frame. A docking pipe docking with the water inlet trough is provided at the bottom of the first buckle plate, and a water inlet pipe connected to the docking pipe is provided on the side of the isolation plate away from the greening frame.
[0012] In an optional solution: a mesh plate is installed on one side of the top of the installation cavity, and a plurality of seepage holes for water leakage are provided at the bottom of the planting box, and the leakage holes on the arc plate correspond to the positions of the mesh plate.
[0013] In an optional scheme: the limit assembly includes an adjusting bar and a connecting rod rotatably connected to both sides of the adjusting bar, the connecting rod is rotatably connected to the movable plate at one end away from the adjusting bar, and a movable groove for horizontal sliding of the movable plate is provided in the greening frame, and the two groups of movable grooves are connected through the adjusting cavity, the adjusting bar and the connecting rod are arranged in the adjusting cavity, and the two groups of movable plates are connected on the side close to each other to a number of rectangular blocks docked with the perforations, the side wall of the greening frame is provided with a rectangular hole for sliding of the rectangular block, the rectangular hole connects the movable groove and the installation cavity, the screw rod is rotatably connected in the adjusting cavity, the adjusting bar is slidably arranged in the adjusting cavity, the adjusting bar is provided with a screw hole that cooperates with the screw rod, and the partition bar is installed with a rotating part for driving the screw rod to rotate.
[0014] In an optional solution: the rotating part includes a rotating rod rotatably connected to the partition bar, the end of the rotating rod extending into the adjustment chamber is fixedly connected to the active bevel gear, the bottom end of the screw rod is fixedly connected to a driven bevel gear meshing with the active bevel gear, the rotating rod is fixedly connected to a knob at one end away from the active bevel gear, the partition bar is provided with a receiving groove for accommodating the knob, and the knob is provided with a hexagonal groove.
[0015] In an optional solution: the elastic adjustment member includes a skateboard and two groups of sliders fixedly connected to one side of the skateboard, the second buckle plate is fixedly connected to the skateboard close to the side of the isolation plate, the isolation plate is provided with a lifting groove for the sliding of the slider, the bottom of the slider is connected to a spring telescopic rod installed in the lifting groove, one side of the skateboard slides and cooperates with the isolation plate, a fixing bolt is threaded on the skateboard, and a fixing hole that cooperates with the fixing bolt is provided on the isolation plate.
[0016] In an optional solution: the greening frame is connected to several L-shaped hanging boards near one side of the isolation board, and a limiting groove for docking the L-shaped hanging boards is provided on one side of the isolation board, and a card slot for clamping the top of the L-shaped hanging board is provided on the top of the limiting groove.
[0017] In an optional solution: the spray assembly includes a spray pipe connected to the top of the isolation plate, a plurality of spray heads are installed on the top of the spray pipe, and one side of the spray pipe is connected to a water supply pipe.
[0018] In an optional solution: the first gusset plate and the second gusset plate both include a transverse plate and a limiting strip, the transverse plate contacts the top or bottom of the greening frame, and the limiting strip contacts the side of the greening frame away from the isolation plate.
[0019] A method for using a greening isolation structure for construction, comprising the following steps:
[0020] S1. Fix the support frame at the target position, fix the isolation plate, and connect the water inlet ends of the spray assembly and the dripping piece to the external water supply pipeline;
[0021] S2. Press the second gusset plate downward to make the bottom of the greening frame contact the second gusset plate. Then, the elastic adjustment member adjusts the second gusset plate to rise so that the top of the greening frame contacts the first gusset plate and the bottom contacts the second gusset plate. The raised position of the second gusset plate is fixed so that the greening frame is snapped into the first and second gusset plates.
[0022] S3. Place soil in the planting box and plant green plants. Then place the planting box on top of the curved plate. After the planting box is placed, use the limit assembly to uniformly fix the positions of several planting boxes.
[0023] S4. The spray assembly can be adjusted to spray and reduce dust, and the dripping piece can be adjusted to drip. The excess water in the planting box flows into the curved plate and flows from the leakage hole of the curved plate to the planting box at the bottom.
[0024] Compared with the prior art, the present invention has the following beneficial effects:
[0025] The isolation component of the present invention cooperates with the greening component to play an isolation role in construction. The clamping component is convenient for fixing the greening component and is conducive to the disassembly and assembly of the greening component. The planting box in the greening component is easy to take out, which is conducive to unified fixation and convenient operation.
[0026] The isolation panels of the present invention can be selected and laid in quantity according to actual use. After laying, it is convenient to fix the greening components. The modular coordination makes the greening isolation structure easy to disassemble and transport. At the same time, the greening measures will not hinder the safety protection function of the isolation components.
[0027] The spray component of the present invention can spray to reduce dust during construction, and the dripping piece can water the green plants in the planting box. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 It is a structural schematic diagram of the present invention.
[0029] Figure 2 It is a structural schematic diagram of the support frame setting side in the present invention.
[0030] Figure 3 It is a structural diagram of the greening component in the present invention.
[0031] Figure 4 This is a schematic diagram of the partial disassembled structure of the greening component in the present invention.
[0032] Figure 5 It is a structural schematic diagram of the L-shaped hanging plate setting location in the present invention.
[0033] Figure 6 It is a schematic diagram of the partial structure of the isolation component in the present invention.
[0034] Figure 7 It is a structural schematic diagram of the connecting components on the second gusset plate in the present invention.
[0035] Figure 8 This is a schematic structural diagram of the first gusset plate in the present invention.
[0036] Figure 9 It is a schematic structural diagram of the limiting component in the present invention.
[0037] Figure 10 It is a structural schematic diagram of the rotating part in the present invention.
[0038] In the figure: 100, isolation assembly; 101, isolation plate; 102, support frame; 103, water inlet pipe; 104, limit groove;
[0039] 200, greening assembly; 201, greening frame; 202, mounting cavity; 203, spacer; 204, curved plate; 205, planting box; 206, mesh plate; 207, perforation; 208, rectangular hole; 209, water inlet trough; 210, drip pipe; 211, L-shaped hanging plate;
[0040] 300, snap-fit assembly; 301, first gusset plate; 302, second gusset plate; 303, spring telescopic rod; 304, lifting slot; 305, slider; 306, slide plate; 307, butt joint;
[0041] 400, spray assembly; 401, spray pipe; 402, sprinkler head; 403, water supply pipe;
[0042] 500, limit assembly; 501, adjustment chamber; 502, lead screw; 503, adjustment bar; 504, connecting rod; 505, moving plate; 506, rectangular block; 507, driven bevel gear; 508, driving bevel gear; 509, rotating rod; 510, knob. DETAILED DESCRIPTION
[0043] In the present invention, unless otherwise specified or limited, the terms "installed," "connected," "connect," "fixed," etc. should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integration; mechanical connection, electrical connection; direct connection, or indirect connection through an intermediate medium; internal communication between two components, or interaction between two components, unless otherwise specified. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.
[0044] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0045] See also Figures 1-10 In an embodiment of the present invention, a greening isolation structure for construction includes an isolation component 100 and a greening component 200;
[0046] The isolation assembly 100 includes a plurality of isolation panels 101 and a support frame 102 connected to one side of the isolation panels 101. A spray assembly 400 is installed on the top of the isolation panels 101. The greening assembly 200 is arranged on one side of the isolation panels 101. A clamping assembly 300 for fixing the greening assembly 200 is provided on one side of the isolation assembly 100.
[0047] The greening assembly 200 includes a greening frame 201 and a partition bar 203 connected to the greening frame 201. The partition bar 203 has mounting cavities 202 on both sides. Several curved plates 204 are fixedly connected to the mounting cavities 202. The bottom of the curved plate 204 is provided with a water leakage hole. The top of the curved plate 204 is provided with a planting box 205. The partition bar 203 is installed with a dripping piece for watering the green plants in the planting box 205. A limiting assembly 500 for fixing the planting box 205 to the top of the curved plate 204 is installed in the greening frame 201.
[0048] The snap-on assembly 300 includes a first gusset plate 301 disposed on the top of the greening frame 201 and a second gusset plate 302 disposed on the bottom of the greening frame 201. The first gusset plate 301 is fixedly connected to the isolation plate 101. The isolation plate 101 is provided with an elastic adjustment member for adjusting the height of the second gusset plate 302.
[0049] Fix the support frame 102 at the target position, fix the isolation plate 101, and connect the water inlet ends of the spray assembly 400 and the dripping piece to the external water supply pipeline;
[0050] Press the second gusset plate 302 downward to make the bottom of the greening frame 201 contact the second gusset plate 302. Then, the elastic adjustment member adjusts the second gusset plate 302 to rise, so that the top of the greening frame 201 contacts the first gusset plate 301 and the bottom contacts the second gusset plate 302. The raised position of the second gusset plate 302 is fixed, so that the greening frame 201 is snapped into the first gusset plate 301 and the second gusset plate 302.
[0051] Soil is placed in the planting box 205 and green plants are planted. The planting box 205 is then placed on top of the curved plate 204. After the planting box 205 is placed, the position of the plurality of planting boxes 205 can be uniformly fixed using the limiting assembly 500.
[0052] The spray assembly 400 can be adjusted to spray and reduce dust, and the dripping piece can be adjusted to drip, so that excess water in the planting box 205 flows into the arc plate 204 and flows from the leakage hole of the arc plate 204 to the planting box 205 at the bottom.
[0053] like Figure 3 and Figure 4 As shown, the dripping part includes a dripping pipe 210, and a plurality of dripping heads are connected to the bottom of the dripping pipe 210. At least two groups of dripping pipes 210 are provided in each installation cavity 202. A connecting pipe connected to the dripping pipe 210 is provided in the partition bar 203. A water inlet groove 209 connected to the connecting pipe is provided at the top of the greening frame 201. A docking pipe 307 docking with the water inlet groove 209 is provided at the bottom of the first gusset plate 301. A water inlet pipe 103 connected to the docking pipe 307 is provided on the side of the isolation plate 101 away from the greening frame 201.
[0054] The top of the greening frame 201 is docked with the first gusset plate 301, the water inlet trough 209 is docked with the docking pipe 307, and the water inlet pipe 103 can be connected to the external water supply pipeline for connecting the water supply in the pipe, and then the drip pipe 210 can perform dripping operation.
[0055] A mesh plate 206 is installed on one side of the top of the installation cavity 202, and a plurality of seepage holes for water leakage are provided at the bottom of the planting box 205. The water leakage holes on the arc plate 204 correspond to the positions of the mesh plate 206; green plants can be planted in the planting box 205.
[0056] like Figure 9 As shown, the limit assembly 500 includes an adjustment bar 503 and a connecting rod 504 rotatably connected to both sides of the adjustment bar 503. The connecting rod 504 is rotatably connected to the movable plate 505 at one end away from the adjustment bar 503. A movable groove for the movable plate 505 to slide horizontally is provided in the greening frame 201. The two sets of movable grooves are connected through the adjustment cavity 501. The adjustment bar 503 and the connecting rod 504 are arranged in the adjustment cavity 501. The two sets of movable plates 505 are connected to a plurality of adjacent sides. A rectangular block 506 docking with the through-hole 207, a rectangular hole 208 for sliding the rectangular block 506 is provided on the side wall of the greening frame 201, the rectangular hole 208 communicates with the movable groove and the installation cavity 202, the screw rod 502 is rotated in the adjustment cavity 501, the adjustment bar 503 is slidably arranged in the adjustment cavity 501, the adjustment bar 503 is provided with a screw hole that cooperates with the screw rod 502, and a rotating member for driving the screw rod 502 to rotate is installed on the spacer 203;
[0057] The rotating member drives the screw rod 502 to rotate, and the height of the adjustment bar 503 can be adjusted, thereby adjusting the horizontal position of the movable plate 505 through the connecting rod 504. When the horizontal position of the movable plate 505 is adjusted, the position of the rectangular block 506 is adjusted, and the adjustable rectangular block 506 is placed in the through hole 207 to limit and fix the planting box 205.
[0058] like Figure 10 As shown, the rotating member includes a rotating rod 509 rotatably connected to the spacer 203, the end of the rotating rod 509 extending into the adjustment chamber 501 is fixedly connected to the active bevel gear 508, the bottom end of the screw rod 502 is fixedly connected to the driven bevel gear 507 meshing with the active bevel gear 508, the end of the rotating rod 509 away from the active bevel gear 508 is fixedly connected to the knob 510, the spacer 203 is provided with a receiving groove for accommodating the knob 510, and the knob 510 is provided with a hexagonal groove;
[0059] By rotating the knob 510 or using an external tool, the rotating rod 509 drives the active bevel gear 508 to rotate, thereby driving the driven bevel gear 507 to rotate, and the screw rod 502 rotates to adjust the position of the adjustment bar 503.
[0060] like Figure 6 and Figure 7 As shown, the elastic adjustment member includes a slide plate 306 and two groups of sliders 305 fixedly connected to one side of the slide plate 306, the second gusset plate 302 is fixedly connected to the slide plate 306 on the side close to the isolation plate 101, the isolation plate 101 is provided with a lifting groove 304 for the slider 305 to slide, the bottom of the slider 305 is connected to the spring telescopic rod 303 installed in the lifting groove 304, one side of the slide plate 306 slides and cooperates with the isolation plate 101, the slide plate 306 is threadedly connected to a fixing bolt, and the isolation plate 101 is provided with a fixing hole that cooperates with the fixing bolt;
[0061] When the second buckle plate 302 moves downward, the slider 305 slides in the lifting groove 304, squeezing the spring telescopic rod 303. Then, under the force of the spring in the spring telescopic rod 303, the second buckle plate 302 drives the greening frame 201 to move upward, so that the first buckle plate 301 and the second buckle plate 302 cooperate to preliminarily fix the greening frame 201, and the position of the second buckle plate 302 is fixed with fixing bolts.
[0062] like Figure 5 and Figure 6 As shown, the greening frame 201 is connected to several L-shaped hanging plates 211 on one side close to the isolation plate 101, and a limiting groove 104 is provided on one side of the isolation plate 101 for docking the L-shaped hanging plates 211, and a card slot is provided on the top of the limiting groove 104 for clamping the top of the L-shaped hanging plates 211; the second buckle plate 302 moves downward, and the bottom of the greening frame 201 contacts the second buckle plate 302, and the greening frame 201 is docked into the limiting groove 104, and the greening frame 201 moves upward to contact the first buckle plate 301, and the L-shaped hanging plate 211 slides in the limiting groove 104, and the top of the L-shaped hanging plate 211 is clamped into the card slot, so that when the first buckle plate 301 and the second buckle plate 302 clamp and fix the greening frame 201, the L-shaped hanging plate 211 is clamped with the card slot, so that the greening frame 201 is stably fixed, and the horizontal movement of the greening frame 201 is limited.
[0063] like Figure 2 As shown, the spray assembly 400 includes a spray pipe 401 connected to the top of the isolation plate 101, and several nozzles 402 are installed on the top of the spray pipe 401. One side of the spray pipe 401 is connected to a water supply pipe 403; the water supply pipe 403 can be connected to an external water supply pipeline to supply water to the spray pipe 401, and then the nozzle 402 sprays water, which can spray the construction area to reduce dust and reduce the dust from drifting to the greening isolation structure away from the construction side.
[0064] like Figure 6As shown, the first buckle plate 301 and the second buckle plate 302 both include a horizontal plate and a limiting bar. The horizontal plate contacts the top or bottom of the greening frame 201, and the limiting bar contacts the side of the greening frame 201 away from the isolation plate 101; the first buckle plate 301 and the second buckle plate 302 are used together to clamp and fix the greening frame 201.
[0065] When the present invention is used, the support frame 102 is fixed at the target position, the isolation plate 101 is fixed, the water spraying pipe 403 can be connected to the external water supply pipeline to deliver water to the spray pipe 401, and then the nozzle 402 sprays water to spray the construction area to reduce dust, thereby reducing dust from drifting to the greening isolation structure away from the construction side. The water inlet pipe 103 can be connected to the external water supply pipeline for connecting the water supply in the pipe. After the greening frame 201 is installed, the drip pipe 210 can perform a dripping operation;
[0066] When the second gusset plate 302 moves down, the slider 305 slides in the lifting groove 304, squeezing the spring telescopic rod 303. Then, under the force of the spring in the spring telescopic rod 303, the second gusset plate 302 drives the greening frame 201 to move up. The top of the greening frame 201 docks with the first gusset plate 301, and the water inlet groove 209 docks with the docking pipe 307, so that the first gusset plate 301 and the second gusset plate 302 cooperate to preliminarily fix the greening frame 201. The L-shaped hanging plate 211 is engaged with the card slot to stably fix the greening frame 201 and limit the horizontal movement of the greening frame 201. The position of the second gusset plate 302 is fixed with the fixing bolts so that the greening frame 201 is clamped in the first gusset plate 301 and the second gusset plate 302;
[0067] Soil is placed in the planting box 205 and green plants are planted. Then, the planting box 205 is placed on the top of the curved plate 204. After the planting box 205 is placed, the knob 510 is turned, or the knob 510 is turned by an external tool. The rotating rod 509 drives the active bevel gear 508 to rotate, thereby driving the driven bevel gear 507 to rotate. The screw rod 502 rotates to adjust the position of the adjustment bar 503, and the horizontal position of the movable plate 505 is adjusted by the connecting rod 504. When the horizontal position of the movable plate 505 is adjusted, the position of the rectangular block 506 is adjusted, and the adjustable rectangular block 506 is placed in the through hole 207 to limit and fix the planting box 205.
[0068] The above description is merely a preferred embodiment of the present invention and does not constitute any other form of limitation to the present invention. Any person skilled in the art may utilize the technical contents disclosed above to change or modify them into equivalent embodiments with equivalent changes for application in other fields. However, any simple modification, equivalent change, and modification of the above embodiments made in accordance with the technical essence of the present invention without departing from the technical solution of the present invention shall still fall within the scope of protection of the technical solution of the present invention.
Claims
1. A greening isolation structure for construction, comprising an isolation component (100) and a greening component (200); It is characterized by: The isolation assembly (100) comprises a plurality of isolation plates (101) and a support frame (102) connected to one side of the isolation plates (101); a spray assembly (400) is installed on the top of the isolation plates (101); the greening assembly (200) is arranged on one side of the isolation plates (101); and a clamping assembly (300) for fixing the greening assembly (200) is provided on one side of the isolation assembly (100); The greening assembly (200) comprises a greening frame (201) and a spacer (203) connected to the greening frame (201); the spacer (203) is provided with mounting cavities (202) on both sides; a plurality of arc-shaped plates (204) are fixedly connected to the mounting cavities (202); the bottom of the arc-shaped plates (204) is provided with a water leakage hole; the top of the arc-shaped plates (204) is provided with a planting box (205); the spacer (203) is provided with a dripping piece for watering the green plants in the planting box (205); and a limiting assembly (500) for fixing the planting box (205) on the top of the arc-shaped plates (204) is installed in the greening frame (201); The snap-on assembly (300) comprises a first gusset plate (301) arranged at the top of the greening frame (201) and a second gusset plate (302) arranged at the bottom of the greening frame (201), wherein the first gusset plate (301) is fixedly connected to the isolation plate (101), and an elastic adjustment member for adjusting the height of the second gusset plate (302) is provided on the isolation plate (101); The limiting assembly (500) comprises an adjusting bar (503) and a connecting rod (504) rotatably connected to both sides of the adjusting bar (503); the connecting rod (504) is rotatably connected to a movable plate (505) at one end away from the adjusting bar (503); a movable groove for horizontal sliding of the movable plate (505) is provided in the greening frame (201); the two sets of movable grooves are connected through the adjusting cavity (501); the adjusting bar (503) and the connecting rod (504) are arranged in the adjusting cavity (501); and the two sets of movable plates (505) are connected to a plurality of grooves on the sides close to each other. The greening frame (201) is provided with a rectangular block (506) connected to the hole (207), and a rectangular hole (208) is provided on the side wall of the greening frame (201) for the rectangular block (506) to slide. The rectangular hole (208) is connected to the movable groove and the installation cavity (202). The screw rod (502) is rotated in the adjustment cavity (501), and the adjustment bar (503) is slidably arranged in the adjustment cavity (501). The adjustment bar (503) is provided with a screw hole that cooperates with the screw rod (502), and a rotating part for driving the screw rod (502) to rotate is installed on the spacer (203).
2. The greening isolation structure for construction according to claim 1, characterized in that: The dripping member comprises a dripping pipe (210), the bottom of the dripping pipe (210) is connected to a plurality of dripping heads, at least two groups of dripping pipes (210) are provided in each group of mounting cavities (202), a connecting pipe communicating with the dripping pipe (210) is provided in the partition bar (203), a water inlet groove (209) communicating with the connecting pipe is provided at the top of the greening frame (201), a docking pipe (307) docking with the water inlet groove (209) is provided at the bottom of the first gusset plate (301), and a water inlet pipe (103) communicating with the docking pipe (307) is provided on the side of the isolation plate (101) away from the greening frame (201).
3. The greening isolation structure for construction according to claim 2, characterized in that: A mesh plate (206) is installed on one side of the top of the installation cavity (202), and a plurality of water seepage holes for water leakage are provided at the bottom of the planting box (205), and the water seepage holes on the arc plate (204) correspond to the positions of the mesh plate (206).
4. The greening isolation structure for construction according to claim 1, characterized in that: The rotating member comprises a rotating rod (509) rotatably connected to the spacer (203); the end of the rotating rod (509) extending into the adjustment chamber (501) is fixedly connected to the driving bevel gear (508); the bottom end of the screw rod (502) is fixedly connected to a driven bevel gear (507) meshing with the driving bevel gear (508); the end of the rotating rod (509) away from the driving bevel gear (508) is fixedly connected to a knob (510); the spacer (203) is provided with a receiving groove for receiving the knob (510); and the knob (510) is provided with a hexagonal groove.
5. The greening isolation structure for construction according to claim 1, characterized in that: The elastic adjustment member includes a slide plate (306) and two groups of sliders (305) fixedly connected to one side of the slide plate (306); the second buckle plate (302) is fixedly connected to the slide plate (306) on one side close to the isolation plate (101); the isolation plate (101) is provided with a lifting groove (304) for the slider (305) to slide; the bottom of the slider (305) is connected to a spring telescopic rod (303) installed in the lifting groove (304); one side of the slide plate (306) slides to cooperate with the isolation plate (101); a fixing bolt is threadedly connected to the slide plate (306); and a fixing hole that cooperates with the fixing bolt is provided on the isolation plate (101).
6. The greening isolation structure for construction according to claim 1, characterized in that: The greening frame (201) is connected to a plurality of L-shaped hanging plates (211) on one side close to the isolation plate (101); a limiting groove (104) for docking the L-shaped hanging plates (211) is provided on one side of the isolation plate (101); and a clamping groove for clamping the top of the L-shaped hanging plate (211) is provided on the top of the limiting groove (104).
7. The greening isolation structure for construction according to claim 1, characterized in that: The spray assembly (400) comprises a spray pipe (401) connected to the top of the isolation plate (101), a plurality of spray heads (402) are installed on the top of the spray pipe (401), and one side of the spray pipe (401) is connected to a water supply pipe (403).
8. The greening isolation structure for construction according to claim 1, characterized in that: The first gusset plate (301) and the second gusset plate (302) both comprise a transverse plate and a limiting strip, wherein the transverse plate contacts the top or bottom of the greening frame (201), and the limiting strip contacts the side of the greening frame (201) away from the isolation plate (101).
9. A method for using the greening isolation structure for construction according to claim 1, characterized in that: The following steps are involved: S1, fixing the support frame (102) at the target position, fixing the isolation plate (101), and connecting the water inlet ends of the spray assembly (400) and the dripping piece to the external water supply pipeline; S2, press the second gusset plate (302) downward, so that the bottom of the greening frame (201) contacts the second gusset plate (302), and then the elastic adjustment member adjusts the second gusset plate (302) to rise, so that the top of the greening frame (201) contacts the first gusset plate (301) and the bottom contacts the second gusset plate (302), and the raised position of the second gusset plate (302) is fixed, so that the greening frame (201) is clamped in the first gusset plate (301) and the second gusset plate (302); S3, placing soil in the planting box (205) and planting green plants, then placing the planting box (205) on top of the curved plate (204), after the planting box (205) is placed, the position of the plurality of planting boxes (205) can be uniformly fixed using the limiting assembly (500); S4, the spray assembly (400) can be adjusted to spray and reduce dust, and the dripping piece is adjusted to drip, so that excess water in the planting box (205) flows into the curved plate (204), and flows from the leakage hole of the curved plate (204) to the planting box (205) at the bottom.
Citation Information
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