Construction waste flying dust interception facility

By designing a stable interception rod structure and a height-adjustable nozzle system, the instability problem of existing construction waste dust interception facilities has been solved, and flexible adjustment and efficient interception effects have been achieved.

CN223366536UActive Publication Date: 2025-09-23ZHEJIANG CHENGTAI CONSTR GRP CO LTD
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Patent Information

Application Number
CN202422164073.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-04
Publication Date
2025-09-23
Estimated Expiration
2034-09-04

AI Technical Summary

Technical Problem

Existing construction waste dust interception facilities cannot be flexibly adjusted according to the shape and geographical location of the construction site, and there is a problem of unstable dumping of the interception facilities.

Method used

A construction waste dust interception facility is designed, which includes an interception rod, a stabilizing rod, a support rod, a mounting frame and a sprinkler. The stability of the interception rod is ensured by means of structures such as anchor screws, flip diagonal rods and triangular ring frames. The height is increased by means of support rods to expand the interception range, and water mist is sprayed by sprinklers for effective interception.

Benefits of technology

The stability and range of the interception facilities can be adjusted according to the shape and location of the construction site, which improves the effect and coverage of dust interception, avoids the collapse of the facilities, and enhances the adhesion and treatment capacity of dust.

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Abstract

The utility model discloses a construction waste flying dust intercepting facility. Comprising the ground, two sets of intercepting rods fixedly installed on the top of the ground through anchoring screws, a bottom stabilizing rod fixedly installed between the intercepting rods, supporting rods installed on the tops of the intercepting rods in a threaded mode, and an installing frame installed on the tops of the supporting rods in a threaded mode. The dust falling water pipe is installed at the top of the installation frame in a limited mode, the nozzles A and the nozzles B are arranged outside the dust falling water pipe in different directions, and a conveying pump is placed at the top of the ground. When the intercepting rods are connected and spliced according to the building waste flying dust intercepting area, the stability between each group of intercepting rods and the ground is ensured, so that the overall stability of the intercepting facility is ensured, and the situations that the intercepting rods topple over due to unstable connection between the intercepting rods and the overall intercepting facility topples over are avoided.
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Description

Technical Field

[0001] The utility model belongs to the technical field of construction waste treatment, and in particular relates to a construction waste dust interception facility. Background Art

[0002] Construction waste refers to the slag, abandoned soil, discarded materials, silt, and other waste generated by construction companies or individuals during the construction, laying, demolition, and repair of various buildings, structures, and pipeline networks. During construction site operations, construction waste generates a lot of dust, which affects the construction site environment.

[0003] The utility model patent with domestic application number 202321880012.9 discloses a dust removal device for green building construction, including a base plate, a bracket is fixedly connected to one side of the top of the base plate, a dust removal box is fixedly connected to the inside of the bracket, a blower is fixedly connected to the top of the dust removal box, a first connecting pipe is fixedly connected to the bottom of the dust removal box, the end of the first connecting pipe is fixedly connected to a first pump body, the top of the first pump body is fixedly connected to a second connecting pipe, the end of the second connecting pipe is fixedly connected to a water tank, and the top side of the water tank is fixedly connected to a second pump body through a pipe. The utility model can transport the dust gas generated by construction construction to the inside of the dust removal box for precipitation and purification by arranging a large-aperture precipitation filter and a small-aperture precipitation filter to filter and intercept dust and dirt, and can transport the water in the water tank to the inside of the dust suppression sprinkler head by arranging the second pump body, so as to facilitate spraying and dust removal of dust. The dust removal method obtained by the above-mentioned utility model has certain limitations and cannot be changed according to the shape and geographical location of the construction site, and cannot play an interception role; and the installation of a spray dust removal device on the assembled interception facility is prone to produce a heavy top weight, which makes the installation between the bottom of the interception facility and the ground unstable and may fall over. Utility Model Content

[0004] In order to solve the above technical problems, the utility model provides a construction waste dust interception facility, including a ground, two groups of interception rods fixedly installed on the top of the ground by anchor screws, a bottom stabilizing rod fixedly installed between the interception rods, a support rod threadedly installed on the top of the interception rod, a mounting frame threadedly installed on the top of the support rod, a dust reduction water pipe limitedly installed on the top of the mounting frame, and multiple groups of A nozzles and B nozzles with different directions on the outside, and a delivery pump is placed on the top of the ground.

[0005] According to the specific location and scope of the construction site, the interception poles are laid and positioned. The dust suppression water pipes can transmit water through connecting hoses, the external water flow is transported at high pressure by the delivery pump, and sprayed out through the A and B nozzles, thereby achieving the effect of intercepting dust.

[0006] As a further preferred technical solution of the present invention, a threaded butt-jointed round rod is welded and installed on the top of the intercepting rod, bearing blocks are welded and installed on both sides of the intercepting rod, and a cross bar is clamped and placed between the bearing blocks.

[0007] The horizontal bars placed by snapping are used to increase the interception effect between the interception bars, and physical interception is performed in the dust interception area to prevent pedestrians or workers from accidentally entering the dust interception area.

[0008] As a further preferred technical solution of the present invention, a base frame is welded and installed at the bottom of the intercepting rod, a matching part is integrally installed on one side of the base frame, a ground nail hole is opened through the top of the middle position of the bottom stabilizing rod, and a card slot that cooperates with the matching part is opened at the bottom of both ends of the bottom stabilizing rod, and the matching part, the card slot and the base frame are all provided with installation holes for anchoring to the ground.

[0009] The intercepting rod is stably anchored to the ground by means of anchoring nails penetrating the matching portion, the clamping slot and the mounting hole on the base frame.

[0010] As a further preferred technical solution of the present invention, a triangular ring frame is slidably mounted on the intercepting rod, and the triangular ring frame is fixed to the intercepting rod via fixing bolts. Triangular clamping ends are integrally welded to both sides of the triangular ring frame. Flip blocks are mounted on both sides of the top of the bottom stabilizing rod, and a flip diagonal rod is flipped and mounted via the flip blocks. The ends of the flip diagonal rod are fixed to the triangular clamping ends via limiting bolts.

[0011] By flipping the flip diagonal rod and sliding the triangular ring frame at the same time, the inner side of the triangular clamping end is clamped and fixed to the end of the flip diagonal rod, and then the position of the triangular ring frame is fixed, and the flip diagonal rod and the triangular clamping end are fixed and installed by the limit bolts, the flip diagonal rod provides triangular support for the intercepting rod, thereby ensuring the stability of the bottom connection installation of the intercepting rod. When the intercepting rods are connected and assembled according to the dust interception area of ​​construction waste, the stability between each set of intercepting rods and the ground is guaranteed, thereby ensuring the stability of the intercepting facility as a whole, and avoiding the intercepting rods from tipping over and the intercepting facility as a whole due to unstable connections between the intercepting rods.

[0012] As a further preferred technical solution of the present invention, the top and bottom of the support rod are welded with threaded butt ends, and the threaded butt ends are respectively mounted in conjunction with the bottom of the mounting frame and the top of the intercepting rod.

[0013] The height of the interception facility is increased by assembling support poles, thereby increasing the range of dust interception. The higher the height, the longer the sprayed water mist stays in the air, and the better the dust adhesion treatment effect.

[0014] As a further preferred technical solution of the present invention, the mounting frame includes threaded mounting ends at both ends of the bottom that mate with the threaded mating ends, a mounting top plate welded to the top, and a mounting vertical plate welded to the bottom of the mounting top plate. Multiple exhaust fans are fixedly mounted on the mounting vertical plates, and two sets of hanging rings are fixedly mounted on the side surfaces of the mounting top plate.

[0015] The water mist is blown away by exhaust fans, thereby increasing the scope of dust adhesion treatment and ensuring the completeness of dust interception.

[0016] As a further preferred technical solution of the present invention; the dust reduction water pipe is installed on the top of the installation top plate through two groups of welding fixing rings and the installation top plate limit installation, both ends of the dust reduction water pipe are provided with water pipe connecting parts, and the end of the water pipe connecting part is threadedly installed with a sealing cover, an extraction pipe is fixedly installed on the top of the delivery pump, and a delivery pipe docked with the sealing cover is fixedly installed on the front of the delivery pump.

[0017] High-pressure external water is delivered through an extraction pipe and then transferred to the dust suppression water pipes via a delivery pipe, where it is sprayed out by nozzles A and B. Water is transferred between the dust suppression water pipes via connecting hoses, allowing the dust suppression water pipes to be connected to extend the dust spray range when the interceptor bar adjusts the dust interception range as needed.

[0018] Beneficial effects

[0019] Compared with the prior art, the beneficial effects of the present invention are:

[0020] 1. By flipping the flip diagonal rod and sliding the triangular ring frame at the same time, the inner side of the triangular clamping end is clamped and fixed to the end of the flip diagonal rod, and then the position of the triangular ring frame is fixed, and the flip diagonal rod and the triangular clamping end are fixed and installed by the limit bolts, the flip diagonal rod is used to provide triangular support for the intercepting rod, thereby ensuring the stability of the bottom connection installation of the intercepting rod. When connecting and assembling the intercepting rods according to the dust interception area of ​​construction waste, the stability between each set of intercepting rods and the ground is ensured, thereby ensuring the stability of the intercepting facility as a whole, and avoiding the intercepting rods from tipping over and the intercepting facility as a whole due to unstable connections between the intercepting rods.

[0021] 2. The overall height of the interception facility is increased by assembling support poles, thereby increasing the range of dust interception. The higher the height, the longer the sprayed water mist stays in the air, and the better the effect of dust adhesion treatment. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 This is a front view structural diagram of the utility model;

[0023] Figure 2 This is a rear view structural diagram of the utility model;

[0024] Figure 3 This is a schematic diagram of the installation structure of the utility model;

[0025] Figure 4 for Figure 1 Schematic diagram of the enlarged structure at A in the middle;

[0026] Figure 5 It is an enlarged structural diagram of the triangular ring frame of the utility model.

[0027] In the figure: 1. Ground; 2. Interceptor rod; 21. Threaded butt rod; 22. Bearing block; 23. Cross bar; 24. Triangular ring frame; 25. Triangular clamping end; 26. Limit bolt; 27. Base frame; 28. Matching part; 3. Bottom stabilizing rod; 31. Ground nail hole; 32. Clamping slot; 33. Flip block; 34. Flip diagonal rod; 4. Support rod; 41. Threaded butt end; 5. Mounting frame; 51. Hanging ring; 52. Threaded mounting end; 53. Exhaust fan; 54. Install top plate; 55. Install vertical plate; 6. Dust suppression water pipe; 61. Nozzle A; 62. Sealing cover; 63. Water pipe connection; 64. Nozzle B; 65. Fixing ring; 7. Delivery pump; 71. Extraction pipe; 72. Delivery pipe. DETAILED DESCRIPTION

[0028] This specific implementation method is a construction waste dust interception facility.

[0029] The dust removal method obtained by the above-mentioned utility model has certain limitations and cannot be changed according to the shape and geographical location of the construction site, and cannot play an interception role; and the installation of a spray dust removal device on the assembled interception facility is prone to produce a heavy top weight, which makes the installation between the bottom of the interception facility and the ground unstable and may fall over.

[0030] Its structural diagram is as follows Figure 1-Figure 5 A construction waste dust interception facility comprises a floor 1 and two sets of interception bars 2 fixed to the top of the floor 1 by anchor screws. The interception bars 2 have threaded round rods 21 welded to their tops, bearing blocks 22 welded to their sides, and crossbars 23 clamped between the bearing blocks 22. The clamped crossbars 23 enhance the interception effect between the interception bars 2, providing physical isolation in the dust interception area and preventing pedestrians and workers from accidentally entering the dust interception area.

[0031] It includes a bottom stabilizing bar 3 fixedly installed between the intercepting bars 2. A base frame 27 is welded to the bottom of the intercepting bar 2, and a matching portion 28 is integrally installed on one side of the base frame 27. A ground nail hole 31 is opened through the top of the middle position of the bottom stabilizing bar 3, and a clamping groove 32 that cooperates with the matching portion 28 is opened at the bottom of both ends of the bottom stabilizing bar 3. The matching portion 28, the clamping groove 32 and the base frame 27 are all provided with mounting holes for anchoring to the ground 1. The intercepting bar 2 is stably anchored to the ground 1 by the anchoring nails passing through the matching portion 28, the clamping groove 32 and the mounting holes on the base frame 27. A triangular ring frame 24 is slidably installed on the intercepting bar 2, and the triangular ring frame 24 is fixed to the intercepting bar 2 by fixing bolts. Triangular clamping ends 25 are integrally welded on both sides of the triangular ring frame 24. Flip blocks 33 are installed on both sides of the top of the bottom stabilizing bar 3, and a flip diagonal bar 34 is flipped and installed by the flip blocks 33. The end of the flip diagonal bar 34 and the triangular clamping end 25 are fixed by limit bolts 26. By flipping the flip diagonal rod 34 and sliding the triangular ring frame 24 at the same time, the inner side of the triangular clamping end 25 is clamped and fixed to the end of the flip diagonal rod 34, and then the position of the triangular ring frame 24 is fixed, and the flip diagonal rod 34 and the triangular clamping end 25 are fixedly installed by the limiting bolt 26, so that the flip diagonal rod 34 provides triangular support for the intercepting rod 2, thereby ensuring the stability of the bottom connection installation of the intercepting rod 2. When the intercepting rod 2 is connected and assembled according to the dust interception area of ​​construction waste, the stability between each group of intercepting rods 2 and the ground 1 is ensured, thereby ensuring the stability of the interception facility as a whole, and avoiding the situation where the intercepting rod 2 tumbles due to unstable connection between the intercepting rods 2 and the intercepting facility as a whole.

[0032] The system also includes a support rod 4 threadedly mounted on the top of the intercepting rod 2, and a mounting bracket 5 threadedly mounted on the top of the support rod 4. Threaded butt ends 41 are welded to the top and bottom of the support rod 4, and these butt ends 41 mate with the bottom of the mounting bracket 5 and the top of the intercepting rod 2, respectively. The assembly of the support rods 4 increases the overall height of the interception facility, thereby expanding the range of dust interception. The higher the height, the longer the spray mist remains in the air, effectively removing dust.

[0033] The system also includes a dust suppression water pipe 6 positioned at the top of a mounting frame 5, along with multiple sets of nozzles A 61 and B 64 facing in different directions. A delivery pump 7 is placed on top of the floor 1. The mounting frame 5 includes threaded mounting ends 52 at both ends of the bottom, which mate with threaded butt joints 41, a top mounting plate 54 welded to the top, and vertical mounting plates 55 welded to the bottom of the top mounting plate 54. Multiple exhaust fans 53 are fixedly mounted on the vertical mounting plates 55, and two sets of hanging rings 51 are fixedly mounted on the sides of the top mounting plate 54. The exhaust fans 53 disperse the water mist, thereby increasing the range of dust adhesion and ensuring complete dust interception. The dust suppression water pipe 6 is fixed to the mounting top plate 54 via two sets of welded fixing rings 65 mounted on the top of the mounting top plate 54. A water pipe connection portion 63 is provided at both ends of the dust suppression water pipe 6, and a sealing cap 62 is threadedly mounted on the end of the water pipe connection portion 63. An extraction pipe 71 is fixedly mounted on the top of the delivery pump 7, and a delivery pipe 72 is fixedly mounted on the front of the delivery pump 7, which is docked with the sealing cap 62. The external water flow is delivered at high pressure through the extraction pipe 71 and transmitted to the dust suppression water pipe 6 through the delivery pipe 72, and sprayed out by the A nozzle 61 and the B nozzle 64. Water can be transmitted between the dust suppression water pipes 6 through connecting hoses, so that when the interception rod 2 adjusts the dust interception range as needed, the connection between the dust suppression water pipes 6 can be coordinated to extend the range of the dust spray.

[0034] First, interceptor bars 2 are positioned according to the specific location and scope of the construction site. Crossbars 23 are placed and connected to increase the interception effect between interceptor bars 2, providing physical interception of the dust interception area to prevent pedestrians or workers from accidentally entering the dust interception area. Dust suppression water pipes 6 can be connected through hoses to transmit water. When the interceptor bars 2 adjust the dust interception range as needed, the connection between dust suppression water pipes 6 can extend the dust spray range. External water flow is delivered at high pressure through extraction pipe 71 and transported to dust suppression water pipe 6 through delivery pipe 72. It is sprayed by nozzles A 61 and B 64, thereby achieving a dust interception effect.

[0035] All technical features in this embodiment can be freely combined according to actual needs.

[0036] The above embodiments are preferred implementation schemes of the present invention. In addition, the present invention can also be implemented in other ways. Any obvious replacement without departing from the concept of the present technical solution is within the scope of protection of the present invention.

Claims

1. A construction waste dust interception facility, characterized in that: The invention comprises a ground (1), two groups of intercepting rods (2) fixedly mounted on the top of the ground (1) by anchor screws, a bottom stabilizing rod (3) fixedly mounted between the intercepting rods (2), a support rod (4) threadedly mounted on the top of the intercepting rod (2), a mounting frame (5) threadedly mounted on the top of the support rod (4), a dust suppression water pipe (6) position-limitedly mounted on the top of the mounting frame (5), and a plurality of groups of A nozzles (61) and B nozzles (64) with different directions on the outside thereof, and a delivery pump (7) is placed on the top of the ground (1).

2. A construction waste dust interception facility according to claim 1, characterized in that: A threaded butt-jointed round rod (21) is welded and installed on the top of the intercepting rod (2), bearing blocks (22) are welded and installed on both sides of the intercepting rod (2), and a cross bar (23) is clamped and placed between the bearing blocks (22).

3. The construction waste dust interception facility according to claim 2, characterized in that: A base frame (27) is welded to the bottom of the intercepting rod (2), and a matching portion (28) is integrally mounted on one side of the base frame (27). A ground nail hole (31) is provided through the top of the middle position of the bottom stabilizing rod (3), and slots (32) that cooperate with the matching portion (28) are provided at the bottom of both ends of the bottom stabilizing rod (3), and mounting holes for anchoring to the ground (1) are provided on the matching portion (28), the slots (32) and the base frame (27).

4. The construction waste dust interception facility according to claim 3, characterized in that: A triangular ring frame (24) is slidably mounted on the intercepting rod (2), the triangular ring frame (24) and the intercepting rod (2) are fixedly mounted via fixing bolts, triangular clamping ends (25) are integrally welded on both sides of the triangular ring frame (24), flip blocks (33) are mounted on both sides of the top of the bottom stabilizing rod (3), and a flip oblique rod (34) is flipped and mounted via the flip blocks (33), and the ends of the flip oblique rod (34) and the triangular clamping ends (25) are fixedly mounted via limiting bolts (26).

5. The construction waste dust interception facility according to claim 4, characterized in that: The top and bottom of the support rod (4) are both welded with threaded butt ends (41), and the threaded butt ends (41) are respectively mounted in cooperation with the bottom of the mounting frame (5) and the top of the intercepting rod (2).

6. The construction waste dust interception facility according to claim 5, characterized in that: The mounting frame (5) comprises threaded mounting ends (52) at both ends of the bottom that are mounted in cooperation with the threaded butt ends (41), a mounting top plate (54) welded to the top, and a mounting vertical plate (55) welded to the bottom of the mounting top plate (54), wherein a plurality of exhaust fans (53) are fixedly mounted on the mounting vertical plates (55), and two sets of hanging rings (51) are fixedly mounted on the two side surfaces of the mounting top plate (54).

7. The construction waste dust interception facility according to claim 6, characterized in that: The dust suppression water pipe (6) is fixedly mounted on the top of the mounting top plate (54) through two sets of fixing rings (65) welded to the top of the mounting top plate (54) and is limitedly mounted. Both ends of the dust suppression water pipe (6) are provided with water pipe connecting parts (63), and the ends of the water pipe connecting parts (63) are threadedly mounted with sealing covers (62). An extraction pipe (71) is fixedly mounted on the top of the delivery pump (7), and a delivery pipe (72) is fixedly mounted on the front of the delivery pump (7) and is docked with the sealing cover (62).

Citation Information

Patent Citations

  • Dust removal device for green building construction

    CN220656932U