Field protection frame for green construction of high-rise plant

By integrating dustproof netting, sound insulation panels, and rainwater collection systems into the site protection frame for green construction of high-rise factory buildings, the problems of dust and noise during construction are solved, achieving efficient use of resources and optimization of the environment, and improving the applicability and aesthetics of the construction site.

CN223707309UActive Publication Date: 2025-12-23SHENZHEN JIANAN GRP
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422726999.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-08
Publication Date
2025-12-23
Estimated Expiration
2034-11-08

AI Technical Summary

Technical Problem

Existing green building site protection frames for high-rise factories have limited dust control during construction, generate a lot of noise, fail to make full use of rainwater, affect the surrounding environment and health, and have poor applicability.

Method used

A site protection frame was designed, which includes horizontal bars, vertical bars, dustproof nets, sound insulation panels, greening modules, and a rainwater harvesting system. The dustproof nets block dust, the sound insulation panels reduce noise, rainwater is used to irrigate plants, and the integrated greening modules absorb harmful substances, thereby improving resource utilization.

Benefits of technology

It effectively reduces construction dust and noise, optimizes the living environment, improves rainwater utilization, beautifies construction sites, enhances air quality and greening effects, and strengthens equipment applicability.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223707309U_ABST
    Figure CN223707309U_ABST
Patent Text Reader

Abstract

The utility model discloses a site protective frame for green construction of a high-rise plant, which relates to the technical field of protective frames and comprises two cross rods and two vertical rods, the two cross rods are fixedly connected with the two vertical rods, one end of each cross rod is fixedly provided with a mounting plate, one end of each cross rod is fixedly provided with a mounting frame I, and the other end of each cross rod is fixedly provided with a mounting frame II. A dustproof net is fixedly mounted on the inner wall of the first mounting frame, a second mounting frame and a sound insulation plate are arranged at one ends of the two transverse rods and the two vertical rods, a greening module is arranged on the inner wall of the second mounting frame, and a water inlet groove is formed in one end of each transverse rod; after the sliding rod is pushed, the sliding rod drives the L-shaped plate to move horizontally, so that collected rainwater can quickly flow out of the water inlet groove and irrigate plants through the flow guide plate, the utilization rate of the rainwater is effectively increased, the plants are irrigated in time, the probability that the plants are dried up is reduced, resources are saved, the greening effect can be improved, and the applicability is further improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of protective frame technology, specifically to a site protective frame for green construction of high-rise factory buildings. Background Technology

[0002] Green building generally refers to the use of environmentally friendly, sustainable, and energy-efficient construction methods. Green construction, as a crucial stage in the entire life cycle of a building, is a key link in achieving resource conservation and energy saving and emission reduction in the construction industry. Green construction refers to construction activities that, while ensuring basic requirements such as quality and safety, maximize resource conservation and minimize negative environmental impacts through scientific management and technological advancements, achieving energy saving, land saving, water saving, material saving, and environmental protection. Appropriate site protection scaffolding is required during the construction process.

[0003] Existing green building site protection frames for high-rise factories have limited dust control effects. During construction, the processing of materials such as cement generates a large amount of dust, which can affect the health of nearby residents when passing through the construction area. They also generate a lot of noise, which affects the surrounding environment. They have significant limitations, do not make full use of rainwater, and do not plant green plants during construction, resulting in the lack of timely treatment of gases generated during construction, which can affect the health of nearby people. Therefore, they have poor applicability. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides a site protection frame for green construction of high-rise factory buildings, thereby overcoming the aforementioned technical problems existing in related technologies.

[0005] A site protection frame for green construction of high-rise factory buildings includes two horizontal bars and two vertical bars, which are fixedly connected. An installation plate is fixedly installed at one end of each of the two horizontal bars. An installation frame one is fixedly installed at one end of each of the two horizontal bars. A dustproof net is fixedly installed on the inner wall of the installation frame one. An installation frame two and a sound insulation plate are provided at one end of each of the two horizontal bars and two vertical bars. A greening module is provided on the inner wall of the installation frame two. A water inlet groove is provided at one end of each horizontal bar. A water collection shell is fixedly installed at the top of one of the horizontal bars. A water collection groove is provided at the top of the water collection shell, and a water-blocking component is provided at one end. The water-blocking component includes a handle, a compression spring, and an L-shaped plate. When the handle moves, it drives the L-shaped plate to move horizontally and compresses the compression spring. When the L-shaped plate moves, it slides against the water collection shell. A guide plate is fixedly installed at one end of the upper horizontal bar.

[0006] Preferably, the mounting frame 2, the sound insulation board, and the two mounting plates are connected by threaded fastening bolts.

[0007] Preferably, one end of the mounting frame two is fixedly mounted with a partition plate, and a drainage hole is formed in one end of the partition plate.

[0008] Preferably, the water blocking assembly further comprises two connecting rods and two limiting blocks, the handle and the two connecting rods are in sliding fit with the water accumulation shell, one end of each of the two connecting rods is fixedly connected with the L-shaped plate, and the two limiting blocks are fixedly connected with the two connecting rods respectively.

[0009] Preferably, the water blocking assembly further comprises a sliding rod, the other end of the handle is fixedly connected with the sliding rod, and the compression spring is sleeved on the handle and connected with the water accumulation shell at two ends respectively.

[0010] Preferably, the two ends of the horizontal rod are fixedly provided with a connecting piece one and a connecting piece two respectively.

[0011] Preferably, the bottom of one of the horizontal rods is fixedly provided with a support.

[0012] Thanks to the above technical scheme, the present application has the following technical progress compared with the prior art:

[0013] 1. The site protection frame for green construction of high-rise factory building has the advantages that the dust screen and the sound insulation plate can effectively reduce air pollution and construction noise, optimize the living environment, the greening module can utilize rainwater, beautify the construction site environment after growth, help absorb harmful substances in the air, improve the air quality effect and resource utilization rate, and has strong applicability.

[0014] 2. The site protection frame for green construction of high-rise factory building has the advantages that the horizontal rod, the water accumulation shell, the water inlet groove, the water collecting groove, the water blocking assembly, the flow guide plate and the greening module are mutually matched, after the sliding rod is pushed, the sliding rod drives the L-shaped plate to move horizontally, so that the collected rainwater can quickly flow out of the water inlet groove and be irrigated on the plants through the flow guide plate, thereby effectively improving the utilization rate of rainwater, timely irrigating the plants, reducing the probability of plant drying, saving resources, improving the greening effect, and further improving the applicability. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 is a schematic view of the three-dimensional structure of the present application;

[0016] Figure 2 is a schematic view of the local structure of the present application;

[0017] Figure 3 is a schematic view of the cross-sectional structure of the present application;

[0018] Figure 4 It is the cross section structure schematic view of the utility model.

[0019] Figure 5 It is the local structure schematic view of the utility model.

[0020] In the drawing:

[0021] 1, cross rod; 100, vertical rod; 101, connecting piece one; 102, connecting piece two; 103, water inlet groove; 104, guide plate; 105, mounting plate; 106, support; 2, mounting frame one; 200, dust screen; 3, mounting frame two; 300, greening module; 301, isolation plate; 4, sound insulation board; 401, fastening bolt; 5, accumulated water shell; 500, water collecting groove; 6, water blocking assembly; 601, sliding rod; 602, handle; 603, compression spring; 604, L-shaped plate; 605, connecting rod; 606, limiting block. DETAILED DESCRIPTION

[0022] In order to make the technical means, creation features, purposes and effects realized by the utility model easy to understand, the utility model is further described below in combination with specific embodiments:

[0023] As shown in Figures 1-5 The utility model provides a high -rise factory green construction site protection frame for building, including two cross rods 1, two vertical rods 100, two cross rods 1 and two vertical rods 100 fixed connection, the one end of two cross rods 1 is fixedly installed with mounting plate 105, the one end of two cross rods 1 is fixedly installed with mounting frame one 2, the inner wall fixedly installed with dust screen 200 in mounting frame one 2, the one end of two cross rods 1 and two vertical rods 100 is provided with mounting frame two 3 and sound insulation board 4, the inner wall of mounting frame two 3 is provided with greening module 300, the one end of cross rod 1 is provided with water inlet groove 103, and the top of one cross rod 1 is fixedly installed with accumulated water shell 5, the top of accumulated water shell 5 is provided with water collecting groove 500, and one end is provided with water blocking assembly 6, and water blocking assembly 6 includes handle 602, compression spring 603 and L-shaped plate 604, handle 602 moves and drives L-shaped plate 604 to move horizontally, and extrudes compression spring 603, L-shaped plate 604 moves and is slidably connected with accumulated water shell 5, and the one end of the cross rod 1 located in the upper portion is fixedly installed with guide plate 104.

[0024] The planting area of the greening module 300 is first planted with appropriate plants. When it rains, the rain falls on the dust screen 200, then through the holes on the surface of the dust screen 200, falls on the surface of the greening module 300, and then irrigates the plants planted at one end of the greening module 300, thereby saving resources while improving the cultivation effect of the plants, so that the planted plants can not only beautify the construction site environment after growing, but also help to absorb harmful substances in the air, improve air quality, and the dust screen 200 effectively blocks the dust generated during construction, reduces the impact on the surrounding environment, and the sound insulation board 4 reduces construction noise and improves the living environment of surrounding residents, thereby effectively improving the applicability of the equipment;

[0025] When it rains, rainwater can also be collected by the water collecting groove 500 to the top of the water storage shell 5 and the horizontal rod 1, and part of the rainwater flows into the guide plate 104 through the water inlet groove 103 of the upper horizontal rod 1, and the guide plate 104 pours the rainwater into the planting area of the greening module 300 and irrigates the plants. When it stops raining, the staff pushes the sliding rod 601, which moves the L-shaped plate 604 horizontally and compresses the compression spring 603. After the L-shaped plate 604 moves, the blocked part of the water inlet groove 103 is gradually exposed. At this time, the collected rainwater can also be irrigated on the plants through the water inlet groove 103 and the guide plate 104, thereby effectively improving the utilization rate of rainwater, timely irrigating the plants, reducing the probability of plant drying, saving resources, and improving the greening effect, further improving the applicability, and the compression spring 603 can limit the L-shaped plate 604 to a certain extent, preventing the collected rainwater from flowing out directly;

[0026] Most of the structures of the device are made of environmentally friendly materials and are easy to recycle. The sound insulation board 4 and the greening module 300 are prior art and are not described here.

[0027] As shown in Figure 2 In one embodiment, the mounting frame two 3, the sound insulation board 4 and the two mounting plates 105 are threadedly connected with the fastening bolt 401. One end of the mounting frame two 3 is fixedly installed with the isolation plate 301. One end of part of the isolation plate 301 penetrates the drain hole.

[0028] The fastening bolt 401 can fix the sound insulation board 4 and the mounting frame two 3, improve the structural stability, and at the same time, the water source will flow along the drain hole to the plants below, improve the rainwater utilization rate, and have strong applicability.

[0029] As shown in Figure 4As shown in the drawings, in one embodiment, the water blocking assembly 6 further comprises two connecting rods 605 and two limiting blocks 606, the handle 602 and the two connecting rods 605 are in sliding fit with the water accumulation shell 5, and one end is fixedly connected with the L-shaped plate 604, the two limiting blocks 606 are fixedly connected with the two connecting rods 605 respectively, the water blocking assembly 6 further comprises a sliding rod 601, the other end of the handle 602 is fixedly connected with the sliding rod 601, the compression spring 603 is sleeved on the handle 602, and both ends are connected with the compression spring 603 and the water accumulation shell 5 respectively.

[0030] The two connecting rods 605 and the two limiting blocks 606 can further limit the L-shaped plate 604, improve the stability when the L-shaped plate moves, and prolong the service life of the equipment.

[0031] As shown in the drawings, Figure 1 and Figure 5 As shown in the drawings, in one embodiment, the two ends of the cross rod 1 are fixedly provided with a connecting piece one 101 and a connecting piece two 102 respectively, and the bottom of one cross rod 1 is fixedly provided with a support 106.

[0032] By setting the connecting piece one 101 and the connecting piece two 102, flexible adjustment according to actual needs can be facilitated, and the applicability is further improved.

[0033] The working principle of the site protection frame for green construction of high-rise factory building will be described below:

[0034] First, appropriate plants are planted in the planting area of the greening module 300, when it rains, rain falls on the dust screen 200, then falls into the surface of the greening module 300 through the holes on the surface of the dust screen 200, and then irrigates the plants planted at one end of the greening module 300, thereby saving resources while improving the cultivation effect of the plants, so that the planted plants can not only beautify the construction site environment after growing, but also help to absorb harmful substances in the air, improve air quality, the dust screen 200 effectively blocks the dust generated during construction, reduces the impact on the surrounding environment, and the sound insulation board reduces construction noise and improves the living environment of surrounding residents, thereby effectively improving the applicability of the equipment;

[0035] When the weather is in the state of raining, rainwater can also be collected to the top of the water accumulation shell 5 and the horizontal rod 1 through the water collecting tank 500, and part of the rainwater flows into the guide plate 104 through the water inlet tank 103 of the upper horizontal rod 1, the guide plate 104 pours the rainwater into the planting area of the greening module 300 and irrigates the plants, when it is needed to irrigate the plants after the rain stops, the staff holds the handle 602 and then pushes the handle 602 and the sliding rod 601, the sliding rod 601 moves to drive the L-shaped plate 604 to move horizontally and squeeze the compression spring 603, after the L-shaped plate 604 moves, the hidden part of the water inlet tank 103 is gradually exposed, at this time, the collected rainwater can also be irrigated on the plants through the water inlet tank 103 and the guide plate 104, thereby effectively improving the utilization rate of rainwater, timely irrigating the plants and reducing the probability of the plants drying, not only saving resources, but also improving the greening effect and further improving the applicability.

[0036] The above has made a detailed description of the utility model in general, but some modifications or improvements can be made on the basis of the utility model, which is obvious to those skilled in the art. Therefore, the modifications or improvements without departing from the spirit of the utility model are within the protection scope of the utility model.

Claims

1. A site protection frame for green construction of high-rise factory building, comprising two horizontal rods (1) and two vertical rods (100), characterized in that: Two described horizontal bars (1) and two described vertical bars (100) are fixedly connected, one end of two described horizontal bars (1) is fixedly installed with mounting plate (105), one end of two described horizontal bars (1) is fixedly installed with mounting frame one (2), dust screen (200) is fixedly installed on the inner wall of mounting frame one (2), one end of two described horizontal bars (1) and two described vertical bars (100) is provided with mounting frame two (3) and soundproof board (4), the inner wall of mounting frame two (3) is provided with green module (300), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar (1) is provided with water inlet groove (103), one end of the horizontal bar ( 2. The site protection frame for green construction of high-rise factory building according to claim 1, characterized in that: ​ 3. The site protection frame for green construction of high-rise factory building according to claim 1, characterized in that: ​ 4. The site protection frame for green construction of high-rise factory building according to claim 1, characterized in that: ​ 5. The site protection frame for green construction of high-rise factory building according to claim 1, characterized in that: ​ 6. The site protection frame for green construction of high-rise factory building according to claim 1, characterized in that: ​ 7. The site protection frame for green construction of high-rise factory building according to claim 1, characterized in that: ​