Atomization dust falling device for building construction
By combining a pneumatic device and a rotating mechanism with an atomizing dust suppression device, the problems of small coverage area and dust accumulation in existing devices are solved, achieving efficient and automated dust control, adapting to complex environments, and improving dust suppression quality and equipment lifespan.
Patent Information
- Application Number
- CN202511309840.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-15
- Publication Date
- 2025-11-07
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing dust suppression devices used in construction can only spray in one direction, resulting in a small coverage area. They require manual adjustment of the direction, leading to low dust suppression efficiency. Furthermore, dust easily accumulates on the devices, affecting equipment operation and work efficiency.
Employing a pneumatic device and a rotating mechanism, the fan generates airflow that works in conjunction with an atomizing device to achieve efficient collision between droplets and dust. Combined with automated control and support mechanisms, the equipment angle is adjusted, and cleaning and scraping mechanisms are included to prevent dust accumulation, ensuring stable operation and efficient dust reduction.
It achieves precise coverage of dust sources, improves dust suppression efficiency, reduces droplet waste, lowers operating costs, protects equipment and personnel health, extends equipment life, adapts to complex environments, reduces noise, and improves the working environment.
Smart Images

Figure CN120900348A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of atomization dust fall, in particular to a building construction atomization dust fall device. BACKGROUND
[0002] In the building construction, a lot of dust will appear in many places, and a lot of dust will seriously affect the visibility of the working environment, and the continuous spread of dust will also seriously affect the health of the construction personnel, so the building construction site will carry out dust fall work through the dust fall device.
[0003] The existing dust fall device for building construction can only spray in one direction, so the coverage area of the water mist sprayed is also small, and when it is necessary to spray in different horizontal angles, the workers need to constantly move the dust fall device, which is troublesome to operate, thereby reducing the dust fall efficiency of the dust fall device, and the dust inside the device is easy to accumulate after a long time of operation, affecting the operation efficiency, therefore, a new design is made for this situation. SUMMARY
[0004] In order to achieve the above purpose, the present application is realized by the following technical scheme: a building construction atomization dust fall device, comprising a pneumatic device, the top of the pneumatic device is fixedly connected with an atomization device; The wind moving device comprises a rotating mechanism, which plays a role in rotating the wind moving frame body, so as to adjust the rotation angle of the component, accurately align the dust source, improve the dust falling efficiency, flexibly cope with different working conditions, cover complex dust falling needs, adapt to "dynamic dust raising source", solve the problem of mobile dust, adapt to "multiple dust raising points coexist", realize "one device multiple coverage", reduce mist drop waste, reduce operation cost, avoid mist drop misoperation, protect equipment and personnel, avoid mist drop misoperation, protect personnel health, cooperate with "automatic control", realize intelligent dust falling, improve the quality of atomization dust falling, the outer side of the rotating mechanism is fixedly connected with a supporting mechanism, the supporting mechanism is arranged outside the rotating mechanism, plays a role in shock absorption and buffering, absorbs vibration, ensures stable operation of the equipment, reduces impact, prolongs the service life of the equipment, adapts to complex sites, improves operation adaptability, reduces noise, improves operation environment, the middle of the top of the rotating mechanism is fixedly connected with the wind moving frame body, the inner side of the wind moving frame body is fixedly connected with a wind moving shell, wind power is generated by the fan, the wind power flows from the wind moving shell to one side of the first grid plate, meanwhile, the wind power is adapted to the atomization device, the atomization device generates atomized liquid, so as to realize efficient collision of the mist drop and the dust, improve the condensation efficiency, directionally convey the mist drop, accurately cover the dust source, disturb the air flow field, break the dust suspension balance, control dust diffusion, reduce secondary pollution, make up for the lack of natural wind, adapt to complex environment, one side of the inner wall of the wind moving shell close to the wind moving frame body is fixedly connected with a fan, one side of the inner wall of the wind moving shell away from the fan is fixedly connected with a first grid plate, the first grid plate and the second grid plate play a role in blocking external sundries from entering, so as to prevent affecting the rotation of the fan, avoid affecting the air supply efficiency, prevent affecting the equipment operation, one side of the inner wall of the wind moving shell away from the first grid plate is fixedly connected with a second grid plate, after a long time operation, a large amount of dust is easily accumulated in the wind moving shell, the cleaning mechanism is rotated by the wind power, so as to play a role in rubbing and cleaning the dust on the inner wall of the equipment, thereby reducing dust accumulation and aggregation, avoiding affecting the internal ventilation efficiency, ensuring the normal function of the core component, avoiding performance failure, protecting the moving parts, avoiding jamming or aggravation of wear and tear, reducing the equipment failure frequency, prolonging the service life, preventing poor heat dissipation, avoiding damage caused by overheating of the parts, avoiding dust blockage of the precision channel, ensuring stable airflow, reducing the operating pressure of the fan, the middle of the inner wall of the wind moving shell is fixedly connected with a cleaning mechanism, after a long time operation, the first grid plate is prone to adhere to impurities, the surface of the first grid plate is rubbed by the scratching mechanism, so as to play a role in cleaning the dust on the surface of the component, maintain "ventilation efficiency", ensure that the core function of the equipment is not invalid, ensure smooth air outlet of the fan, maintain the mist drop conveying capacity, avoid local "atomization blind area", protect the internal core components of the equipment, reduce the risk of failure, avoid local blockage of the first grid plate, so as to cause uneven atomization air supply, avoid affecting the equipment operation efficiency,The outer side of the first grid plate is fixedly connected with a scratching mechanism.
[0005] Preferably, the rotating mechanism comprises a rotating frame body, the inner side of the rotating frame body is rotatably connected with a rotating block, the bottom of the rotating frame body is fixedly connected with a receiving frame, the bottom of the receiving frame is fixedly connected with a first motor, and the output end of the first motor is fixedly connected with the bottom of the rotating block. The rotating block is controlled to rotate in the inner side of the rotating frame body by the first motor, so as to adjust the angle of the equipment, accurately align the dust source, improve the dust reduction efficiency, flexibly cope with different working conditions, cover complex dust reduction needs, adapt to "dynamic dust source", solve the problem of mobile dust, adapt to "multiple dust points coexist", realize "one device multiple coverage", reduce mist waste, reduce operation cost, avoid mist mis-spraying, protect the equipment and personnel, avoid mist mis-spraying operation personnel, protect the health of personnel, cooperate with "automatic control", realize intelligent dust reduction, and improve the quality of atomization and dust reduction.
[0006] Preferably, the supporting mechanism comprises an external end, one side of the external end is fixedly connected with the outer side of the rotating frame body, and the bottom of the external end is fixedly connected with a supporting rod. When the equipment is working, the internal components of the equipment are prone to shaking due to operation, so that the supporting rod is pressed against the first spring, thereby playing a certain shock absorption and buffering role, so as to absorb vibration, ensure stable operation of the equipment, reduce impact, prolong the service life of the equipment, adapt to complex sites, improve the adaptability of operation, reduce noise, improve the working environment, the bottom of the supporting rod is fixedly connected with a supporting plate, and the outer side of the supporting rod is sleeved with the first spring.
[0007] Preferably, the cleaning mechanism comprises a first sliding rail and a second sliding rail, the outer side of the first sliding rail is rotatably connected with a first frame body, the outer side of the second sliding rail is rotatably connected with a second frame body, the opposite surfaces of the first frame body and the second frame body are fixedly connected with a connecting shaft, the middle part of the outer side of the connecting shaft is fixedly connected with a paddle, the fan generates wind power, the wind power acts on the surface of the paddle, the paddle drives the first frame body and the second frame body to rotate on the first sliding rail and the second sliding rail, the silica gel column of the cleaning support controls the friction of the inner wall of the wind-driven shell, so as to achieve the effect of cleaning the inner wall of the component, thereby reducing the accumulation and accumulation of dust, avoiding affecting the internal ventilation efficiency, protecting the normal function of the core component, avoiding performance failure, protecting the moving parts, avoiding jamming or accelerated wear, reducing the frequency of equipment failure, prolonging the service life, preventing poor heat dissipation, avoiding damage caused by overheating of the component, avoiding dust blocking the precise channel, ensuring stable airflow, the outer side of the connecting shaft is fixedly connected with a cleaning support, the outer side of the cleaning support away from the connecting shaft is rotatably connected with a silica gel column, the silica gel column is made of silica gel material, which is efficient and suitable for the inner wall of the pipeline, improves the dust removal rate, has high flexibility and is suitable for the shape of the pipeline, has no cleaning blind area, has moderate friction, takes into account "dust removal" and "residual prevention", protects the inner wall of the pipeline and the equipment, avoids secondary damage, avoids scratching and coating falling off of the inner wall of the pipeline, prevents the cleaning tool from breaking or falling off, and avoids pipeline blockage.
[0008] Preferably, the scraping mechanism comprises a receiving shaft, the outer side of the receiving shaft is rotatably connected with the outer side of the first grid plate, the outer side of the first grid plate close to the cleaning mechanism is fixedly connected with a second motor, the receiving shaft is controlled to rotate through the second motor, the silicone plate rubs the surface of the first grid plate to clean the surface dust and maintain the ventilation efficiency, protect the core components of the equipment, reduce the risk of failure, avoid the local blockage of the first grid plate, and thus cause uneven atomization and affect the operation efficiency of the equipment, the output end of the second motor is fixedly connected with the outer side of the receiving shaft, the outer side of the receiving shaft is fixedly connected with a scraping frame body, one side of the outer side of the scraping frame body is fixedly connected with a cylindrical shell, the inner side of the cylindrical shell is fixedly connected with a second spring, one side of the outer side of the second spring is fixedly connected with a sliding rod, when the silicone plate is impacted by particles, the sliding rod slides in the inner side of the cylindrical shell to extrude and contract the second spring, which plays a role of shock absorption and buffering, dynamically adapts to the surface morphology of the grid plate, eliminates the cleaning blind area, improves the dust removal rate, elastically adheres to the grid strip, avoids cleaning omission caused by "hard contact", stabilizes the friction pressure, avoids "overpressure leakage" or "underpressure invalidity", avoids surface damage and structural damage, avoids local excessive wear, prolongs the service life of the tool, reduces the manual operation strength, and improves the operation safety.
[0009] Preferably, the atomization device comprises an atomization frame body, the outer side of the atomization frame body away from the wind-driven shell is fixedly connected with an atomization shell, one side of the outer side of the atomization shell is fixedly connected with a water pump pipe, one side of the outer side of the atomization shell away from the water pump pipe is fixedly connected with a water outlet pipe, and one side of the outer side of the water outlet pipe away from the atomization shell is fixedly connected with an atomization nozzle. Water flows into one side of the water pump pipe, the water flow is pressurized through the water pump to increase the flow speed of the water flow, the water flow flows to one side of the water outlet pipe, and the water flow is atomized through the atomization nozzle to achieve the atomization and spraying effect, thereby realizing the effect of atomization and dust removal.
[0010] Preferably, the inner side of the water outlet pipe is provided with a funnel groove, which has a structure of wide at both ends and narrow in the middle. According to Bernoulli's principle, by reducing the diameter of the pipeline, the liquid flow speed is increased, thereby enhancing the "shear force", refining the atomized particles, improving the uniformity of the atomized particles, reducing the "unevenness", expanding the atomization coverage, improving the operation efficiency, improving the "atomization stability", avoiding "broken mist or droplets". The inner side of the funnel groove is fixedly connected with a spiral plate, which is arranged in the inner side of the funnel groove, strengthens the uniformity of gas-liquid mixing, lays the foundation for "high-efficiency atomization", reduces the deposition of impurities in the pipeline, stabilizes the fluid flow state, reduces the flow noise, assists the refinement of droplets, reduces the "droplet agglomeration" problem, prevents pipeline liquid accumulation and blockage, ensures stable operation of the atomization system, stabilizes the flow state, avoids the atomization fluctuation caused by "local vortex", and the top of the atomization shell is fixedly connected with a connecting end. The inner side of the connecting end is insertedly connected with a filtering mechanism.
[0011] Preferably, the filtering mechanism comprises a filter top plate, the top of the filter top plate is fixedly connected with a handle, and the bottom of the filter top plate is fixedly connected with a filter frame body. The filter core is placed in the filter frame body, and the filter core is extruded during the placement process. Thus, the component placement space is provided. The inside of the filter frame body is provided with a filter core, which plays a role of filtering impurities in the liquid, adsorbs particles and the like in the liquid, reduces the impurities entering the pipeline, reduces the impurity accumulation, avoids the blockage of the pipeline, prevents the influence on the equipment operation, the outside of the filter core is provided with an arc-shaped groove, which expands the effective filtering area, improves the filtering flux per unit time, constructs the "impurity temporary storage space", improves the pollution capacity, prolongs the service life, guides the fluid flow, reduces the "dead flow area", and avoids the local impurity accumulation. The top of the inside of the filter frame body is provided with a frame groove, and the inside of the frame groove is fixedly connected with an extrusion mechanism. At the same time, the extrusion mechanism extrudes the filter core, so as to extrude the fixed components, thereby maintaining the stability of the components, avoiding shaking or falling during the subsequent rapid flow of the liquid, and avoiding the influence on the filtering effect of the liquid.
[0012] Preferably, the extrusion mechanism comprises a third spring, one side of the outer part of the third spring is fixedly connected with one side of the inner wall of the frame groove, the other side of the outer part of the third spring is fixedly connected with a connecting rod, the outer side of the connecting rod is slidably connected with the inner side of the frame groove, and the side of the outer part of the connecting rod away from the third spring is fixedly connected with an extrusion plate. When the filter element is placed in the filter frame, the extrusion plate is subjected to the reaction of the filter element, so that the extrusion plate drives the connecting rod to extrude and contract the third spring, thereby providing a component placement space, and the third spring supports the connecting rod, thereby achieving the effect of extruding and fixing the component, thereby achieving the effect of keeping the component stable, avoiding shaking or falling off during the subsequent rapid flow of liquid, and avoiding affecting the filtering effect of the liquid.
[0013] The application provides an atomization dust-settling device for building construction. The atomization dust-settling device has the following beneficial effects: I. The atomizing dust falling device for building construction is designed through a wind driving device. Wind power is generated by a fan, and the wind power flows from the wind driving shell to one side of the first grid plate. At the same time, the wind power is matched with the atomizing device. The atomizing device generates atomized liquid, so as to achieve efficient collision of the atomized droplets with the dust, improve the condensation efficiency, directionally transport the atomized droplets, accurately cover the dust source, disturb the air flow field, break the dust suspension balance, control the dust diffusion, reduce secondary pollution, make up for the lack of natural wind, adapt to complex environments, and prevent the first grid plate and the second grid plate from being blocked by external sundries, so as to prevent the fan from rotating, avoid affecting the air supply efficiency, prevent affecting the equipment operation, and prevent affecting the internal ventilation efficiency. The wind driving shell is easy to accumulate a large amount of dust after a long time of operation. The cleaning mechanism is rotated by the wind power, so as to achieve the effect of rubbing and cleaning the dust on the inner wall of the equipment, thereby reducing the accumulation and aggregation of dust, avoiding affecting the internal ventilation efficiency, protecting the normal function of the core components, avoiding performance failure, protecting the moving parts, avoiding jamming or aggravation of wear and tear, reducing the frequency of equipment failure, prolonging the service life, preventing poor heat dissipation, avoiding damage caused by overheating of parts, avoiding dust blocking the precise channel, ensuring stable airflow, reducing the operating pressure of the fan, and the like. The first grid plate is easy to attach impurities after a long time of operation. The scraping mechanism rubs the surface of the first grid plate, so as to achieve the effect of cleaning the dust on the surface of the component, maintain the ventilation efficiency, protect the core function of the equipment, ensure smooth air outlet of the fan, maintain the atomized droplet transport capacity, avoid local "atomizing blind area", protect the internal core components of the equipment, reduce the risk of failure, avoid local blockage of the first grid plate, thereby causing uneven atomized air supply, avoid affecting the equipment operation efficiency, and the like. The rotating mechanism plays a role in rotating the wind driving frame body, so as to adjust the rotation angle of the component, accurately aim at the dust source, improve the dust falling efficiency, flexibly cope with different working conditions, cover complex dust falling needs, adapt to "dynamic dust source", solve the problem of mobile dust, adapt to "multiple dust points coexistence", realize "one device multiple coverage", reduce waste of atomized droplets, reduce operating costs, avoid mist spraying, protect the equipment and personnel, avoid mist spraying of operators, protect the health of personnel, cooperate with "automatic control", realize intelligent dust falling, and the like. The atomizing dust falling quality is improved. The support mechanism is arranged outside the rotating mechanism, plays a role in shock absorption and buffering, absorbs vibration, ensures stable operation of the equipment, reduces impact, prolongs the service life of the equipment, adapts to complex sites, improves the operation adaptability, reduces noise, and improves the working environment.
[0014] II. The atomization dust falling device for building construction is designed with a rotating mechanism. A first motor is used to control the rotation of the rotating block inside the rotating frame body, so as to adjust the angle of the equipment, accurately aim at the dust source, improve the dust falling efficiency, flexibly cope with different working conditions, cover complex dust falling needs, adapt to "dynamic dust source", solve the problem of mobile dust, adapt to "multiple dust points coexist", realize "one device multiple coverage", reduce mist droplet waste, reduce operation cost, avoid mist droplet misoperation, protect equipment and personnel, avoid mist droplet misoperation of operators, protect the health of personnel, cooperate with "automatic control", realize intelligent dust falling, and improve the atomization dust falling quality.
[0015] III. The atomization dust falling device for building construction is designed with a cleaning mechanism. A fan generates wind power, which acts on the surface of the paddle plate. The paddle plate drives the first frame body and the second frame body to rotate on the first slide rail and the second slide rail. The cleaning support controls the silica gel column to rub the inner wall of the wind moving shell, so as to clean the inner wall of the component, reduce dust accumulation and accumulation, avoid affecting the internal ventilation efficiency, protect the normal function of the core component, avoid performance failure, protect the moving parts, avoid jamming or wear aggravation, reduce equipment failure frequency, prolong service life, prevent poor heat dissipation, avoid component overheating damage, avoid dust blockage of precise channels, ensure stable airflow, and the silica gel column is made of silica gel material, which is efficient and suitable for pipeline inner wall, improves dust removal rate, high flexibility adapts to pipeline form, no cleaning blind area, moderate friction force, takes into account "dust removal" and "residual protection", protects the pipeline inner wall and the equipment, avoids secondary damage, avoids scratching and coating falling off of the pipeline inner wall, prevents cleaning tools from breaking or falling off, and avoids pipeline blockage.
[0016] Four, the building construction atomization dust falling device, through the design of the scratch mechanism, the second motor controls the rotating of the bearing shaft, the scratch frame body drives the silica gel plate to rub the surface of the first grid plate, so as to achieve the effect of cleaning the surface dust, maintain the "ventilation efficiency", protect the core function of the equipment, ensure the smoothness of the fan outlet, maintain the mist droplet conveying capacity, avoid the local "atomization blind area", protect the internal core components of the equipment, reduce the risk of failure, avoid the local blockage of the first grid plate, so as to cause uneven atomization air supply, avoid affecting the equipment operation efficiency, when the silica gel plate is impacted by particles, the sliding rod slides in the inside of the cylindrical shell to extrude and shrink the second spring, so as to play the role of shock absorption and buffering, dynamically adapt to the surface morphology of the grid plate, eliminate the cleaning blind area, improve the dust removal rate, and the elastic grid bar is pasted, which avoids the cleaning omission caused by "hard contact", stabilizes the friction pressure, avoids "overpressure leakage" or "underpressure invalidity", avoids surface damage and structure damage, avoids local excessive wear, prolongs the tool life, reduces the artificial operation strength, improves the operation safety, the silica gel plate is made of silica gel material, which can accurately control the friction coefficient, adapt to the "anti-skid" or "drag reduction" demand, provide stable adhesion, realize "anti-skid and stop", avoid surface damage, reduce maintenance cost, resist complex environment, and ensure stable friction performance.
[0017] Five, the building construction atomization dust falling device, through the design of the atomization device, water flows into the water pump pipe on one side, the water pump pressurizes the water flow, so as to improve the water flow speed, the water flow flows to the water outlet pipe on one side, and the water flow is atomized through the atomization nozzle, so as to achieve the effect of atomization spraying, thereby realizing the effect of atomization spraying dust falling, the funnel groove adopts the structure of wide at both ends and narrow in the middle, according to Bernoulli's principle, the pipe diameter is reduced, so as to improve the liquid flow speed, thereby enhancing the "shear force", refining the atomization particles, improving the uniformity of the atomization particles, reducing the "unevenness", expanding the atomization coverage range, improving the operation efficiency, improving the "atomization stability", avoiding "broken mist or droplet", the spiral plate is arranged inside the funnel groove, which strengthens the uniformity of gas-liquid mixing, lays a foundation for "high-efficiency atomization", reduces the deposition of impurities in the pipeline, stabilizes the fluid flow state, reduces the flow noise, assists in refining the droplets, reduces the "droplet agglomeration" problem, prevents pipeline liquid accumulation and blockage, protects the stable operation of the atomization system, stabilizes the flow state, and avoids the atomization fluctuation caused by "local vortex". BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is an external structure schematic view of the building construction atomization dust falling device of the present application. Figure 2 It is a structure schematic view of the atomization dust falling device of the present application. Figure 3 It is a cross-sectional structure schematic view of the air driving device of the present application. Figure 4This is a schematic cross-sectional view of the rotating mechanism of the present invention; Figure 5 This is a schematic diagram of the cleaning mechanism structure of the present invention; Figure 6 This is a schematic cross-sectional view of the scraping mechanism of the present invention; Figure 7 This is a schematic cross-sectional view of the atomizing device of the present invention; Figure 8 This is a schematic cross-sectional view of the filtration mechanism of the present invention; Figure 9 This is a schematic diagram of the extrusion mechanism of the present invention.
[0019] In the diagram: 1. Pneumatic device; 2. Atomizing device; 11. Rotating mechanism; 12. Supporting mechanism; 13. Pneumatic frame; 14. Pneumatic housing; 15. Fan; 16. Second grating plate; 17. First grating plate; 18. Cleaning mechanism; 19. Scraping mechanism; 111. Rotating frame; 112. Rotating block; 113. Support frame; 114. First motor; 121. External end; 122. Support rod; 123. First spring; 124. Support plate; 181. First slide rail; 182. Second slide rail; 183. First frame; 184. Second frame; 185. Connecting shaft; 186. Paddle plate; 187. Cleaning bracket; 188. Silicone column ; 191. Receiving shaft; 192. Second motor; 193. Scraping frame; 194. Cylindrical housing; 195. Second spring; 196. Sliding rod; 197. Connecting plate; 198. Silicone plate; 21. Atomizing frame; 22. Atomizing housing; 23. Water pump pipe; 24. Water outlet pipe; 25. Funnel groove; 26. Spiral plate; 27. Atomizing nozzle; 28. Connecting end; 29. Filtering mechanism; 291. Filter top plate; 292. Handle; 293. Filtering frame; 294. Filter element; 295. Arc-shaped groove; 296. Extrusion mechanism; 297. Frame groove; 2961. Third spring; 2962. Connecting rod; 2963. Extrusion plate. Detailed Implementation
[0020] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0021] First embodiment, such as Figures 1 to 4 As shown, the present invention provides a technical solution: a dust suppression device for building construction, including a pneumatic device 1, and a dust suppression device 2 fixedly connected to the top of the pneumatic device 1; The wind-driven device 1 comprises a rotating mechanism 11, the outer side of the rotating mechanism 11 is fixedly connected with a supporting mechanism 12, the middle of the top of the rotating mechanism 11 is fixedly connected with a wind-driven frame body 13, the inner side of the wind-driven frame body 13 is fixedly connected with a wind-driven shell 14, the inner wall of the wind-driven shell 14 is fixedly connected with a fan 15 on the side close to the wind-driven frame body 13, the inner wall of the wind-driven shell 14 is fixedly connected with a first grid plate 17 on the side away from the fan 15, the inner wall of the wind-driven shell 14 is fixedly connected with a second grid plate 16 on the side away from the first grid plate 17, the middle of the inner wall of the wind-driven shell 14 is fixedly connected with a cleaning mechanism 18, and the outer side of the first grid plate 17 is fixedly connected with a scraping mechanism 19.The fan 15 generates wind power, which flows from the wind shell 14 to one side of the first grid plate 17, and at the same time, the wind power is matched with the atomizing device 2, which generates atomized liquid, so as to achieve efficient collision of mist droplets and dust, improve condensation efficiency, directional delivery of mist droplets, precise coverage of dust sources, disturbance of air flow field, breaking of dust suspension balance, control of dust dispersion, reduction of secondary pollution, compensation for natural wind deficiency, adaptation to complex environment, the first grid plate 17 and the second grid plate 16 play a role in blocking external sundries from entering, so as to prevent affecting the rotation of the fan 15, avoid affecting the air supply efficiency, prevent affecting the equipment operation, after a long time of operation, a large amount of dust is easily accumulated in the wind shell 14, the cleaning mechanism 18 is driven by wind power to rotate, so as to achieve the role of rubbing and cleaning the dust on the inner wall of the equipment, thereby reducing the accumulation and accumulation of dust, avoiding affecting the internal ventilation efficiency, protecting the normal function of the core components, avoiding performance failure, protecting the moving parts, avoiding jamming or aggravation of wear and tear, reducing the frequency of equipment failure, prolonging the service life, preventing poor heat dissipation, avoiding damage caused by overheating of parts, avoiding dust blocking the precision channel, ensuring stable airflow, reducing the operating pressure of the fan 15, and secondly, the first grid plate 17 is prevented from easily attaching impurities after a long time of operation, the first grid plate 17 is rubbed by the scraping mechanism 19, so as to achieve the role of cleaning the dust on the surface of the component, maintaining the "ventilation efficiency", protecting the core function of the equipment, ensuring smooth air outlet of the fan, maintaining the mist delivery capacity, avoiding local "atomization blind area", protecting the internal core components of the equipment, reducing the risk of failure, avoiding local blockage of the first grid plate 17, thereby causing uneven atomization and air supply, avoiding affecting the equipment operation efficiency, the rotating mechanism 11 plays a role in rotating the wind rack 13, so as to adjust the rotation angle of the component, thereby accurately aiming at the dust source, improving the dust removal efficiency, flexibly coping with different working conditions, covering complex dust removal needs, adapting to "dynamic dust source", solving the problem of mobile dust, adapting to "multiple dust points coexist", realizing "one device multiple coverage", reducing mist waste, reducing operating costs, avoiding mist misoperation, protecting equipment and personnel, avoiding mist misoperation of operators, protecting the health of personnel, cooperating with "automatic control", realizing intelligent dust removal, thereby improving the quality of atomization and dust removal, the support mechanism 12 is provided outside the rotating mechanism 11, which plays a role in shock absorption and buffering, absorbs vibration, ensures stable operation of the equipment, reduces impact, prolongs the service life of the equipment, adapts to complex sites, improves operation adaptability, reduces noise, and improves the working environment.
[0022] The rotating mechanism 11 comprises a rotating frame body 111, the inner side of the rotating frame body 111 is rotatably connected with a rotating block 112, the bottom of the rotating frame body 111 is fixedly connected with a receiving frame 113, the bottom of the receiving frame 113 is fixedly connected with a first motor 114, and the output end of the first motor 114 is fixedly connected with the bottom of the rotating block 112. The rotating block 112 is controlled to rotate in the inner side of the rotating frame body 111 by the first motor 114, so as to adjust the angle of the equipment, accurately align the dust source, improve the dust reduction efficiency, flexibly cope with different working conditions, cover complex dust reduction requirements, adapt to the "dynamic dust source", solve the problem of mobile dust, adapt to "multiple dust points coexist", realize "one device multiple coverage", reduce the waste of mist droplets, reduce the operation cost, avoid mist droplet mis-spraying, protect the equipment and personnel, avoid mist droplet mis-spraying operation personnel, protect the health of personnel, cooperate with "automatic control", realize intelligent dust reduction, and improve the atomization dust reduction quality.
[0023] The supporting mechanism 12 comprises an external end 121, one side of the external end 121 is fixedly connected with the outer side of the rotating frame body 111, the bottom of the external end 121 is fixedly connected with a supporting rod 122, the bottom of the supporting rod 122 is fixedly connected with a supporting plate 124, and the outer side of the supporting rod 122 is sleeved with a first spring 123. When the equipment is working, the internal components of the equipment are prone to shaking due to operation, so that the supporting rod 122 extrudes the first spring 123, so as to play a certain shock absorption and buffering role, thereby absorbing vibration, ensuring stable operation of the equipment, reducing impact, prolonging service life of the equipment, adapting to complex sites, improving operation adaptability, reducing noise, and improving operation environment.
[0024] The second embodiment is based on the first embodiment, please refer to Figures 5 to 6As shown, the cleaning mechanism 18 comprises a first sliding rail 181 and a second sliding rail 182, the outer side of the first sliding rail 181 is rotatably connected with a first frame body 183, the outer side of the second sliding rail 182 is rotatably connected with a second frame body 184, the opposite faces of the first frame body 183 and the second frame body 184 are fixedly connected with a connecting shaft 185, the middle part of the outer side of the connecting shaft 185 is fixedly connected with a paddle 186, the two ends of the outer side of the connecting shaft 185 are fixedly connected with a cleaning bracket 187, the side of the outer side of the cleaning bracket 187 away from the connecting shaft 185 is rotatably connected with a silica gel column 188. The fan 15 generates wind power, which acts on the surface of the paddle 186, the paddle 186 drives the first frame body 183 and the second frame body 184 to rotate on the first sliding rail 181 and the second sliding rail 182, so that the cleaning bracket 187 controls the silica gel column 188 to rub the inner wall of the wind moving shell 14, so as to achieve the effect of cleaning the inner wall of the component, thereby reducing the accumulation and accumulation of dust, avoiding affecting the internal ventilation efficiency, protecting the normal function of the core component, avoiding performance failure, protecting the moving parts, avoiding jamming or wear and tear, reducing the frequency of equipment failure, prolonging the service life, preventing poor heat dissipation, avoiding damage caused by overheating of the component, avoiding dust blocking the precise channel, ensuring stable airflow, wherein the silica gel column 188 is made of silica gel material, which is efficiently matched with the inner wall of the pipeline, improves the dust removal rate, has high flexibility to adapt to the shape of the pipeline, has no cleaning blind area, has moderate friction, takes into account "dust removal" and "residual prevention", protects the inner wall of the pipeline and the equipment, avoids secondary damage, avoids scratching and coating falling off of the inner wall of the pipeline, prevents the cleaning tool from breaking or falling off, and avoids pipeline blockage.
[0025] The scratch mechanism 19 comprises a receiving shaft 191, the outer side of the receiving shaft 191 is rotatably connected with the outer side of the first grid plate 17, the outer side of the first grid plate 17 is fixedly connected with a second motor 192 close to the cleaning mechanism 18, the output end of the second motor 192 is fixedly connected with the outer side of the receiving shaft 191, the outer side of the receiving shaft 191 is fixedly connected with a scratch frame body 193, one side of the outer side of the scratch frame body 193 is fixedly connected with a cylindrical shell 194, the inner side of the cylindrical shell 194 is fixedly connected with a second spring 195, one side of the outer side of the second spring 195 is fixedly connected with a sliding rod 196, one side of the outer side of the sliding rod 196 away from the second spring 195 is fixedly connected with a connecting plate 197, and one side of the outer side of the connecting plate 197 away from the sliding rod 196 is fixedly connected with a silica gel plate 198. The second motor 192 controls the rotation of the receiving shaft 191, and the silica gel plate 198 is driven by the scratch frame body 193 to rub the surface of the first grid plate 17, so as to achieve the effect of cleaning the surface dust, maintain the "ventilation efficiency", protect the core function of the equipment, ensure the smoothness of the fan air outlet, maintain the fog droplet conveying capacity, avoid local "atomization blind area", protect the internal core components of the equipment, reduce the risk of failure, avoid local blockage of the first grid plate 17, so as to cause uneven atomization of the air supply, avoid affecting the operation efficiency of the equipment, when the silica gel plate 198 is impacted by particles, the sliding rod 196 slides in the inner side of the cylindrical shell 194 to extrude and contract the second spring 195, so as to play the role of shock absorption and buffering, dynamically adapt to the surface morphology of the grid plate, eliminate the cleaning blind area, improve the dust removal rate, elastically adhere to the grid strip, avoid cleaning omission caused by "hard contact", stabilize the friction pressure, avoid "overpressure leakage" or "underpressure invalidity", avoid surface damage and structural damage, avoid local excessive wear, prolong the service life of the tool, reduce the labor intensity of manual operation, improve the operation safety, the silica gel plate 198 is made of silica gel material, can accurately control the friction coefficient, adapt to the "anti-skid" or "drag reduction" demand, provide stable adhesion, realize "anti-skid and stop", avoid damage to the contact surface, reduce maintenance cost, resist complex environment, and ensure stable friction performance.
[0026] In the third embodiment, on the basis of the first and second embodiments, referring to Figures 7 to 9 As shown in the figure, the atomization device 2 comprises an atomization frame body 21, the outer side of the atomization frame body 21 away from the wind-driven shell 14 is fixedly connected with an atomization shell 22, one side of the outer side of the atomization shell 22 is fixedly connected with a water pump pipe 23, one side of the outer side of the atomization shell 22 away from the water pump pipe 23 is fixedly connected with a water outlet pipe 24, and one side of the outer side of the water outlet pipe 24 away from the atomization shell 22 is fixedly connected with an atomization nozzle 27. Water flows into one side of the water pump pipe 23, and the water flow is pressurized by the water pump to increase the flow speed of the water flow, the water flow flows to one side of the water outlet pipe 24, and the water flow is atomized by the atomization nozzle 27 to achieve the effect of atomization and spraying, thereby realizing the effect of atomization and dust reduction.
[0027] The inner side of the water outlet pipe 24 is provided with a funnel groove 25, the inner side of the funnel groove 25 is fixedly connected with a spiral plate 26, the top of the atomization shell 22 is fixedly connected with a connecting end 28, and the inner side of the connecting end 28 is insertedly connected with a filtering mechanism 29. The funnel groove 25 adopts a structure that the two ends are wide and the middle part is narrow, according to Bernoulli's principle, by reducing the diameter of the pipeline, the liquid flow speed is increased, thereby enhancing the "shear force", refining the atomized particles, improving the uniformity of the atomized particles, reducing the "unevenness", expanding the atomization coverage, improving the operation efficiency, improving the "atomization stability", avoiding "broken mist or droplets", the spiral plate 26 is arranged in the inner side of the funnel groove 25, the uniformity of gas-liquid mixing is strengthened, which lays a foundation for "high-efficiency atomization", reduces the deposition of impurities in the pipeline, stabilizes the fluid flow state, reduces the flow noise, assists in refining the liquid droplets, reduces the "liquid droplet aggregation" problem, prevents pipeline liquid accumulation and blockage, ensures stable operation of the atomization system, stabilizes the flow state, and avoids atomization fluctuations caused by "local vortex".
[0028] The filtering mechanism 29 comprises a filtering top plate 291, the top of the filtering top plate 291 is fixedly connected with a handle 292, the bottom of the filtering top plate 291 is fixedly connected with a filtering frame body 293, the inside of the filtering frame body 293 is provided with a filter core 294, the outer side of the filter core 294 is provided with an arc-shaped groove 295, the top of the inner side of the filtering frame body 293 is provided with a frame body groove 297, and the inner side of the frame body groove 297 is fixedly connected with a extrusion mechanism 296. The filter core 294 is placed in the inside of the filtering frame body 293, and the filter core 294 extrudes the extrusion mechanism 296 during the placement process, so as to provide a component placement space, and the extrusion mechanism 296 extrudes the filter core 294, so as to achieve the effect of extruding and fixing the components, thereby achieving the effect of keeping the components stable, avoiding shaking or falling during the subsequent rapid flow of the liquid, avoiding affecting the filtering effect of the liquid, the filter core 294 plays a role in filtering impurities in the liquid, adsorbs particles and the like in the liquid, reduces the impurities entering the pipeline, thereby reducing the accumulation of impurities, avoiding blocking the pipeline, preventing affecting the operation of the equipment, and the arc-shaped groove 295 is provided to expand the effective filtering area, improve the filtering flux per unit time, build a "impurity temporary storage space", improve the pollution capacity, prolong the service life, guide the fluid flow, reduce the "dead flow area", and avoid local impurity accumulation.
[0029] The extrusion mechanism 296 comprises a third spring 2961, one side of the outer portion of the third spring 2961 is fixedly connected with one side of the inner wall of the frame groove 297, the other side of the outer portion of the third spring 2961 is fixedly connected with a connecting rod 2962, the outer side of the connecting rod 2962 is slidably connected with the inner side of the frame groove 297, and the side of the outer portion of the connecting rod 2962 away from the third spring 2961 is fixedly connected with an extrusion plate 2963. When the filter element 294 is placed in the filter frame 293, the extrusion plate 2963 is subjected to the reaction of the filter element 294, so that the extrusion plate 2963 drives the connecting rod 2962 to extrude and contract the third spring 2961, so as to provide a component placement space, and at the same time, the third spring 2961 supports the connecting rod 2962, so as to achieve the effect of extruding and fixing the component, thereby achieving the effect of keeping the component stable, avoiding shaking or falling off in the process of subsequent liquid rapid flow, and avoiding affecting the filtering effect of the liquid.
[0030] In use, the fan 15 generates wind power, which flows from the wind-driven shell 14 to one side of the first grid plate 17, and at the same time, the wind power is matched with the atomizing device 2, and the atomizing device 2 generates atomized liquid, so as to achieve efficient collision of mist droplets and dust, improve condensation efficiency, directional delivery of mist droplets, precise coverage of dust source, disturbance of air flow field, breaking of dust suspension balance, control of dust dispersion, reduction of secondary pollution, compensation of natural wind deficiency, adaptation to complex environment, the first grid plate 17 and the second grid plate 16 play a role in blocking external sundries from entering, so as to prevent affecting the rotation of the fan 15, avoid affecting the air supply efficiency, prevent affecting the equipment operation, after a long time of operation, a large amount of dust is easily accumulated in the wind-driven shell 14, the cleaning mechanism 18 is rotated by the wind power, so as to achieve the role of rubbing and cleaning the dust on the inner wall of the equipment, thereby reducing the accumulation and accumulation of dust, avoiding affecting the internal ventilation efficiency, protecting the normal function of the core components, avoiding performance failure, protecting the moving parts, avoiding jamming or aggravation of wear and tear, reducing the frequency of equipment failure, prolonging the service life, preventing poor heat dissipation, avoiding damage caused by overheating of parts, avoiding dust blocking the precision channel, ensuring stable airflow, reducing the operating pressure of the fan 15, and secondly, the first grid plate 17 is prevented from easily attaching impurities after a long time of operation, the first grid plate 17 is rubbed by the scratching mechanism 19, so as to achieve the role of cleaning the dust on the surface of the component, maintaining the "ventilation efficiency", protecting the core function of the equipment, ensuring smooth air outlet of the fan, maintaining the mist droplet delivery capacity, avoiding local "atomization blind area", protecting the internal core components of the equipment, reducing the risk of failure, avoiding local blockage of the first grid plate 17, thereby causing uneven atomization and air supply, avoiding affecting the equipment operation efficiency, the rotating mechanism 11 plays a role in rotating the wind-driven frame 13, so as to adjust the rotation angle of the component, thereby accurately aiming at the dust source, improving the dust removal efficiency, flexibly coping with different working conditions, covering complex dust removal needs, adapting to "dynamic dust source", solving the problem of mobile dust, adapting to "multiple dust points coexist", realizing "one device multiple coverage", reducing mist droplet waste, reducing operating costs, avoiding mist droplet misoperation, protecting equipment and personnel, avoiding mist droplet misoperation of operators, protecting the health of personnel, cooperating with "automatic control", realizing intelligent dust removal, thereby improving the quality of atomization and dust removal, the support mechanism 12 is arranged outside the rotating mechanism 11, which plays a role in shock absorption and buffering, absorbs vibration, ensures stable operation of the equipment, reduces impact, prolongs the service life of the equipment, adapts to complex sites, improves operation adaptability, reduces noise, and improves the working environment.
[0031] Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art and related fields without creative labor should belong to the protection scope of the present application. The structures, devices and operation methods not specifically described and explained in the present application are implemented according to the conventional means in the art, if not specifically described and limited.
Claims
1. An atomizing dust-settling device for use in construction work, characterized by comprising: Including wind moving device (1), the top of wind moving device (1) is fixedly connected with atomizing device (2); The wind moving device (1) includes rotating mechanism (11), the outer side of rotating mechanism (11) is fixedly connected with support mechanism (12), the top of rotating mechanism (11) is fixedly connected with wind moving frame body (13), the inner side of wind moving frame body (13) is fixedly connected with wind moving shell (14), the inner wall of wind moving shell (14) is fixedly connected with fan (15) on the side close to wind moving frame body (13), the inner wall of wind moving shell (14) is fixedly connected with first grid plate (17) on the side away from fan (15), the inner wall of wind moving shell (14) is fixedly connected with second grid plate (16) on the side away from first grid plate (17), the inner wall of wind moving shell (11) is fixedly connected with cleaning mechanism (18) in the middle, the outer side of first grid plate (17) is fixedly connected with scratch mechanism (19).
2. The atomizing dust-settling device for building construction according to claim 1, characterized in that: The rotating mechanism (11) includes rotating frame body (111), the inner side of rotating frame body (111) is rotatably connected with rotating block (112), the bottom of rotating frame body (111) is fixedly connected with receiving frame (113), the bottom of receiving frame (113) is fixedly connected with first motor (114), the output end of first motor (114) is fixedly connected with the bottom of rotating block (112).
3. The atomizing dust-settling device for building construction according to claim 2, characterized in that: The support mechanism (12) includes external terminal (121), one side of the external terminal (121) is fixedly connected with the outer side of rotating frame body (111), the bottom of external terminal (121) is fixedly connected with support rod (122), the bottom of support rod (122) is fixedly connected with support plate (124), the outer side of support rod (122) is provided with first spring (123).
4. The atomizing dust-settling device for building construction according to claim 1, characterized in that: The cleaning mechanism (18) includes first sliding rail (181) and second sliding rail (182), the outer side of first sliding rail (181) is rotatably connected with first frame body (183), the outer side of second sliding rail (182) is rotatably connected with second frame body (184), the opposite faces of first frame body (183) and second frame body (184) are fixedly connected with connecting shaft (185), the middle of the outer side of connecting shaft (185) is fixedly connected with paddle (186), the both ends of the outer side of connecting shaft (185) are fixedly connected with cleaning support (187), the outer side of cleaning support (187) is rotatably connected with silica gel column (188) on the side away from connecting shaft (185).
5. The atomizing dust-settling device for building construction according to claim 1, characterized in that: The scratch mechanism (19) includes a receiving shaft (191), the outer side of the receiving shaft (191) is rotatably connected with the outer side of the first grid plate (17), the outer side of the first grid plate (17) is fixedly connected with a second motor (192) near the cleaning mechanism (18), the output end of the second motor (192) is fixedly connected with the outer side of the receiving shaft (191), the outer side of the receiving shaft (191) is fixedly connected with a scratch frame body (193), one side of the outer side of the scratch frame body (193) is fixedly connected with a cylindrical shell (194), the inner side of the cylindrical shell (194) is fixedly connected with a second spring (195), one side of the outer side of the second spring (195) is fixedly connected with a sliding rod (196), one side of the outer side of the sliding rod (196) away from the second spring (195) is fixedly connected with a connecting plate (197), one side of the outer side of the connecting plate (197) away from the sliding rod (196) is fixedly connected with a silica gel plate (198).
6. The atomizing dust-settling device for building construction according to claim 1, characterized in that: The atomization device (2) includes an atomization frame body (21), the atomization frame body (21) is fixedly connected with an atomization shell (22) on the side away from the wind-driven shell (14), the atomization shell (22) is fixedly connected with a water pump pipe (23) on one side, the atomization shell (22) is fixedly connected with a water outlet pipe (24) on the side away from the water pump pipe (23), and the water outlet pipe (24) is fixedly connected with an atomization nozzle (27) on the side away from the atomization shell (22).
7. The atomizing dust-settling device for building construction according to claim 6, characterized in that: The inner side of the water outlet pipe (24) is provided with a funnel groove (25), and the inner side of the funnel groove (25) is fixedly connected with a spiral plate (26). The top of the atomization shell (22) is fixedly connected with a connection end (28), and the inner side of the connection end (28) is connected with a filtering mechanism (29) in a plug-in manner.
8. The atomizing dust-settling device for building construction according to claim 7, characterized in that: The filtering mechanism (29) includes a filtering top plate (291), the top of the filtering top plate (291) is fixedly connected with a handle (292), the bottom of the filtering top plate (291) is fixedly connected with a filtering frame body (293), the inside of the filtering frame body (293) is provided with a filter core (294), the outer side of the filter core (294) is provided with an arc-shaped groove (295), the top of the inner side of the filtering frame body (293) is provided with a frame body groove (297), and the inner side of the frame body groove (297) is fixedly connected with a squeezing mechanism (296).
9. The atomizing dust-settling device for constructional engineering according to claim 8, characterized in that: The squeezing mechanism (296) includes a third spring (2961), one side of the outer side of the third spring (2961) is fixedly connected with one side of the inner wall of the frame body groove (297), the other side of the outer side of the third spring (2961) is fixedly connected with a connecting rod (2962), the outer side of the connecting rod (2962) is slidably connected with the inner side of the frame body groove (297), and the outer side of the connecting rod (2962) away from the third spring (2961) is fixedly connected with a squeezing plate (2963).