Dust falling device for house building construction

By using support components and rotating/tilting mechanisms to adjust the angle and position of the atomizing nozzles during building construction, the problem of limited spray height in existing devices has been solved, achieving wider dust suppression coverage and improving dust suppression effectiveness.

CN224126885UActive Publication Date: 2026-04-17TIANJIN NO 6 MUNICIPAL & HIGHWAY ENG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TIANJIN NO 6 MUNICIPAL & HIGHWAY ENG CO LTD
Filing Date
2025-05-07
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

The existing dust suppression devices at construction sites have limited spray height, resulting in a limited dust suppression area and poor dust suppression effect.

Method used

A dust suppression device for building construction was designed. It uses support components to fix the atomizing nozzle at a high position, and combines a slant pull and a rotation mechanism to adjust the angle and position of the atomizing nozzle, thereby expanding the dust suppression range.

Benefits of technology

By spraying atomized water from high altitudes, the dust suppression effect was significantly improved, the dust suppression range was expanded, and the dust suppression coverage was enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a dust falling device for house building construction, which relates to the technical field of construction dust falling and comprises a supporting piece, a dust falling piece, a dust falling piece and a dust falling piece, and is characterized in that the supporting piece is at least used for fixing an atomizing nozzle at a certain height; a water supply pipe fitting parallel to the supporting piece is arranged above the atomizing nozzle and is at least used for supplying water to the atomizing nozzle; the upper portion of the supporting piece is sleeved with a connecting sleeve, a mounting base is arranged on one side of the connecting sleeve, a rotating mechanism is rotationally arranged on one side of the mounting base, the rotating mechanism is at least used for rotating motion of the atomization spray head, and a cable-stayed mechanism is arranged between the atomization spray head and the mounting base and at least used for changing the spraying angle of the atomization spray head. And through the arranged cable-stayed mechanism, angle adjustment of the atomization spray head can be achieved, meanwhile, the rotation flexibility of the atomization spray head can be further improved in cooperation with the rotating mechanism, the atomization spray head sprays downwards in multiple angles, and the dust falling effect is improved.
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Description

Technical Field

[0001] This utility model relates to the field of construction dust suppression technology, specifically a dust suppression device for building construction. Background Technology

[0002] Outdoor construction is an important part of building construction. Backfilling is involved in outdoor construction. When vehicles drive on the construction site and during backfilling, a lot of dust is generated, causing air pollution. Therefore, dust suppression equipment is needed to spray water to suppress dust at any time during the backfilling process.

[0003] Existing dust suppression devices at construction sites mostly employ spraying or jetting equipment to spray atomized water into the air, thereby using water droplets to adhere to dust and achieve the purpose of dust suppression. However, the spray height of general spray dust suppression is limited, which greatly restricts the dust suppression area and results in poor dust suppression effect. To address this, we propose a dust suppression device for building construction. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides a dust suppression device for building construction, which solves the problems mentioned in the background section.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a dust suppression device for building construction, comprising: a support member for fixing an atomizing nozzle at a certain height; a water supply pipe parallel to the support member above the atomizing nozzle for supplying water to the atomizing nozzle; a connecting sleeve fitted onto the upper part of the support member, with a mounting base on one side of the connecting sleeve; a rotating mechanism rotatably mounted on one side of the mounting base for rotating the atomizing nozzle; and a diagonal pull mechanism between the atomizing nozzle and the mounting base for changing the spray angle of the atomizing nozzle.

[0006] Preferably, the bottom end of the support member is provided with a mounting base, which is a conical tip or a flat plate with holes.

[0007] Preferably, a photovoltaic module is fixedly installed at the top of the support member, and the photovoltaic module is used at least to convert electrical energy into electrical energy.

[0008] Preferably, the photovoltaic module includes a photovoltaic panel bracket fixed to the top of the support member, and a photovoltaic panel is provided on the top of the photovoltaic panel bracket. A connecting cover fixed to the photovoltaic panel bracket is provided on the top of the support member.

[0009] Preferably, the support includes a straight column, the top of which is provided with an integrally formed tenon, the tenon being larger than the column, and a groove being provided on the top outer wall of the tenon.

[0010] Preferably, the water supply fitting consists of a straight pipe connected to a water source at its bottom and a corrugated pipe connected to an atomizing nozzle.

[0011] Preferably, the inclined pull mechanism includes a hinge seat disposed on the atomizing nozzle and the mounting base, and an electric telescopic rod is disposed between the two hinge seats.

[0012] Preferably, the rotating mechanism includes a clamp sleeved on the outside of the atomizing nozzle, a bushing fixedly connected to one side of the clamp, a motor fixedly mounted on the top of the bushing, and a gear one connected to the output shaft of the motor, a guide sleeve provided on one outer wall of the bushing, and a sliding groove provided inside the guide sleeve, a gear two meshingly connected below the gear one, a rotating body fixedly connected to one side of the gear two, the rotating body being rotatably inserted into the inside of the guide sleeve, and a rotating connecting seat fixedly connected to one outer wall of the gear two, the rotating connecting seat being rotatably connected to one side of the mounting base.

[0013] This utility model provides a dust suppression device for building construction, which has the following beneficial effects:

[0014] 1. The angle of the atomizing nozzle can be adjusted by the inclined pull mechanism. At the same time, the rotation mechanism can further improve the rotation flexibility of the atomizing nozzle, allowing the atomizing nozzle to spray downwards at multiple angles, thus improving the dust suppression effect.

[0015] 2. With the support components and mounting base, the atomizing nozzle can be installed at a high point in building construction to spray wastewater downwards. Compared with dust suppression methods that spray upwards from the ground, it has the advantages of a wider dust suppression range and better dust suppression effect. Attached Figure Description

[0016] Figure 1 This utility model provides a three-dimensional structure for a dust suppression device used in building construction. Figure 1 ;

[0017] Figure 2 This utility model provides a three-dimensional structure for a dust suppression device used in building construction. Figure 2 ;

[0018] Figure 3 This is an exploded view of the structure of a dust suppression device for building construction according to this utility model;

[0019] Figure 4 This is a schematic diagram of the inclined pull mechanism and rotating mechanism of a dust suppression device for building construction according to this utility model;

[0020] Figure 5 This utility model relates to a dust suppression device for building construction. Figure 4 Partial view of the central structure.

[0021] 1. Support component; 11. Column; 12. Tenon; 13. Groove; 2. Mounting base; 3. Water supply fittings; 31. Straight pipe; 32. Corrugated pipe; 4. Connecting sleeve; 5. Photovoltaic module; 51. Photovoltaic panel bracket; 52. Connecting cover; 53. Photovoltaic panel; 6. Mounting seat; 7. Inclined pull mechanism; 71. Hinge seat; 72. Electric telescopic rod; 8. Rotating mechanism; 81. Liner; 82. Motor; 83. Gear 1; 84. Guide sleeve; 85. Gear 2; 86. Rotating body; 87. Rotating connecting seat; 88. Clamp; 9. Atomizing nozzle. Detailed Implementation

[0022] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.

[0023] like Figures 1-5 As shown, this utility model provides a technical solution: a dust suppression device for building construction, comprising: a support member 1: the support member 1 is used to fix the atomizing nozzle 9 at a certain height; a water supply pipe 3 parallel to the support member 1 is provided above the atomizing nozzle 9, the water supply pipe 3 is used to supply water to the atomizing nozzle 9; a connecting sleeve 4 is sleeved on the upper part of the support member 1, and a mounting base 6 is provided on one side of the connecting sleeve 4, a rotating mechanism 8 is rotatably provided on one side of the mounting base 6, the rotating mechanism 8 is used to rotate the atomizing nozzle 9, and a diagonal pull mechanism 7 is provided between the atomizing nozzle 9 and the mounting base 6, the diagonal pull mechanism 7 is used to change the spray angle of the atomizing nozzle 9.

[0024] In this embodiment, the support member 1 is used to fix the atomizing nozzle 9 at a certain height. The atomizing nozzle 9 can be fixed at the top of the building using the support member 1, and water mist can be sprayed from top to bottom, which improves the dust suppression effect. The bottom end of the support member 1 is provided with a mounting base 2. The mounting base 2 is a conical tip or a flat plate with holes. It can be fixed by inserting the conical tip or by using bolts and flat plates to achieve stable installation of the support member 1 and ensure the stability of the atomizing nozzle 9. The support component 1 includes a straight column 11, which is a hollow steel pipe structure. The top of the column 11 is provided with an integrally formed tenon 12. The specifications of the tenon 12 are larger than those of the column 11, and the diameter of the tenon 12 is larger than that of the column 11. The opening on one side of the connecting sleeve 4 is fastened to the outside of the column 11, and then slides upward to the outside of the tenon 12. The connecting sleeve 4 is fixedly connected to the outside of the tenon 12 using bolts. A groove 13 is provided on the top outer wall of the tenon 12. The photovoltaic panel bracket 51 is embedded in the groove 13, which improves the stability of the photovoltaic panel bracket 51 installed on the tenon 12.

[0025] In this embodiment, a photovoltaic module 5 is fixedly installed on the top of the support member 1. The photovoltaic module 5 is used to convert electrical energy into electrical energy. The photovoltaic module 5 includes a photovoltaic panel bracket 51 fixed to the top of the support member 1, and a photovoltaic panel 53 is provided on the top of the photovoltaic panel bracket 51. A connecting cover 52 fixed to the photovoltaic panel bracket 51 is provided on the top of the support member 1. The photovoltaic panel bracket 51 is embedded in the groove 13, and the connecting cover 52 is fixed to the top of the tenon 12 by bolts, thereby realizing the fixed installation of the photovoltaic panel bracket 51. The photovoltaic panel 53 generates electricity to power the electric telescopic rod 72 and the motor 82.

[0026] In this embodiment, a water supply pipe 3 parallel to the support member 1 is provided above the atomizing nozzle 9. The water supply pipe 3 is used to supply water to the atomizing nozzle 9. The water supply pipe 3 is composed of a straight pipe 31 connected to the water source at its bottom end and a corrugated pipe 32 connected to the atomizing nozzle 9. Water is transported upward through the straight pipe 31 and transported to the atomizing nozzle 9 through the corrugated pipe 32. With the adjustment of the inclined pull mechanism 7 and the rotating mechanism 8, the corrugated pipe 32 can supply water better.

[0027] In this embodiment, a connecting sleeve 4 is sleeved on the upper part of the support member 1, and a mounting seat 6 is provided on one side of the connecting sleeve 4. The mounting seat 6 is fixedly connected to the connecting sleeve 4.

[0028] In this embodiment, a rotating mechanism 8 is rotatably provided on one side of the mounting base 6. The rotating mechanism 8 is used for at least the rotational movement of the atomizing nozzle 9. The rotating mechanism 8 includes a clamp 88 sleeved on the outside of the atomizing nozzle 9. A bushing 81 is fixedly connected to one side of the clamp 88. A motor 82 is fixedly provided on the top of the bushing 81, and a gear 83 is connected to the output shaft of the motor 82. A guide sleeve 84 is provided on the outer wall of one side of the bushing 81, and a sliding groove is provided inside the guide sleeve 84. A gear 85 is meshed below the gear 83, and a rotating body 8 is fixedly connected to one side of the gear 85. 6. The rotating body 86 is rotatably inserted into the inside of the guide sleeve 84. A rotating connecting seat 87 is fixedly connected to one side of the outer wall of the gear 2 85. The rotating connecting seat 87 is rotatably connected to one side of the mounting seat 6. When using the atomizing nozzle 9, the motor 82 can be turned on, so that the motor 82 drives the gear 1 83 to rotate. The rotation of the gear 1 83 can rotate along the gear 2 85, so that the gear 1 83, the guide sleeve 84 and the bushing 81 rotate synchronously with the motor 82, thereby driving the clamp 88 and the atomizing nozzle 9 to rotate synchronously along the gear 2 85, realizing the change of the angle of the atomizing nozzle 9.

[0029] In this embodiment, a diagonal pull mechanism 7 is provided between the atomizing nozzle 9 and the mounting base 6. The diagonal pull mechanism 7 is used at least to change the spray angle of the atomizing nozzle 9. The diagonal pull mechanism 7 includes hinge seats 71 provided on the atomizing nozzle 9 and the mounting base 6. An electric telescopic rod 72 is provided between the two hinge seats 71. When the atomizing nozzle 9 is used to spray water, the electric telescopic rod 72 is activated, which can extend or retract. Under the action of the two hinge seats 71, the angle of the atomizing nozzle 9 is adjusted, thereby cooperating with the rotating mechanism 8 to better utilize the atomizing nozzle 9 to spray water mist downwards, improving the dust suppression capability.

Claims

1. A dust suppression device for building construction, comprising: Support member (1): characterized in that: the support member (1) is used at least to fix the atomizing nozzle (9) at a certain height; a water supply pipe (3) parallel to the support member (1) is provided above the atomizing nozzle (9), and the water supply pipe (3) is used at least to supply water to the atomizing nozzle (9); a connecting sleeve (4) is sleeved on the upper part of the support member (1), and a mounting seat (6) is provided on one side of the connecting sleeve (4), and a rotating mechanism (8) is rotatably provided on one side of the mounting seat (6), and the rotating mechanism (8) is used at least for the rotational movement of the atomizing nozzle (9), and a diagonal pull mechanism (7) is provided between the atomizing nozzle (9) and the mounting seat (6), and the diagonal pull mechanism (7) is used at least for changing the spray angle of the atomizing nozzle (9).

2. The dust falling device for house construction according to claim 1, characterized in that: The bottom end of the support member (1) is provided with a mounting base (2), which is a conical tip or a flat plate with holes.

3. The dust falling device for house construction according to claim 1, characterized in that: A photovoltaic module (5) is fixedly installed on the top of the support (1), and the photovoltaic module (5) is used to convert electrical energy into electrical energy.

4. The dust falling device for house construction according to claim 3, characterized in that: The photovoltaic module (5) includes a photovoltaic panel bracket (51) fixed to the top of the support member (1), and a photovoltaic panel (53) is provided on the top of the photovoltaic panel bracket (51). A connecting buckle (52) fixed on the photovoltaic panel bracket (51) is provided on the top of the support member (1).

5. The dust falling device for house construction according to claim 1, characterized in that: The support member (1) includes a straight column (11), the top of which is provided with an integrally formed tenon (12), the size of which is larger than that of the column (11), and a groove (13) is provided on the top outer wall of the tenon (12).

6. The dust falling device for house construction according to claim 1, characterized in that: The water supply fitting (3) is composed of a straight pipe (31) connected to the water source at the bottom and a corrugated pipe (32) connected to the atomizing nozzle (9).

7. The dust falling device for house construction according to claim 1, characterized in that: The inclined pull mechanism (7) includes a hinge seat (71) disposed on the atomizing nozzle (9) and the mounting base (6), and an electric telescopic rod (72) is disposed between the two hinge seats (71).

8. The dust falling device for house construction according to claim 1, characterized in that: The rotating mechanism (8) includes a clamp (88) sleeved on the outside of the atomizing nozzle (9). A bushing (81) is fixedly connected to one side of the clamp (88). A motor (82) is fixedly installed on the top of the bushing (81). A gear (83) is connected to the output shaft of the motor (82). A guide sleeve (84) is provided on one side of the outer wall of the bushing (81). A sliding groove is provided inside the guide sleeve (84). A gear (85) is meshed below the gear (83). A rotating body (86) is fixedly connected to one side of the gear (85). The rotating body (86) is rotatably inserted into the inside of the guide sleeve (84). A rotating connecting seat (87) is fixedly connected to one side of the outer wall of the gear (85). The rotating connecting seat (87) is rotatably connected to one side of the mounting seat (6).