SUMMERY OF THE UTILITY MODEL
In order to overcome the shortcoming in the prior art, an object of the utility model is to provide a building civil engineering dust collecting equipment, it can carry out thorough dust removal purification to the raise dust air, is suitable for extensive popularization and application.
Another object of the utility model is to provide a building civil engineering dust collecting equipment, its clearance is convenient to improve user's work efficiency greatly, be suitable for extensive popularization and application.
Another object of the utility model is to provide a building civil engineering dust collecting equipment, its design benefit, the structure is succinct, makes portably, and is with low costs, is suitable for extensive popularization and application.
In order to achieve the purpose, the utility model provides a building civil engineering dust collecting equipment, its characteristics are, including intake pipe, dust removal cabinet, play air cavity, air suction device, water tank, liquid suction device and nozzle, the intake pipe passes through dust removal cabinet gas circuit is connected go out the air cavity, go out the air cavity gas circuit and connect air suction device, the water tank passes through liquid suction device liquid circuit is connected the nozzle, the nozzle with the intake pipe cooperation sets up and is used for the warp nozzle spun water smoke agglutinates the raise dust is in air suction device's suction effect gets into down the import of intake pipe.
Preferably, the dust removal cabinet includes dust removal cabinet casing, filter screen and dust removal net, the intake pipe gas circuit is connected the one end of dust removal cabinet casing, the filter screen sets up the other end of dust removal cabinet casing, the other end of dust removal cabinet casing pass through the filter screen gas circuit is connected go out the air cavity.
Preferably, the number of the dust removing nets is multiple, and the plurality of dust removing nets are alternately arranged up and down along the length direction of the dust removing cabinet.
Preferably, the number of the nozzles is multiple, and the multiple nozzles are connected with the liquid suction device in a liquid-sharing way.
Preferably, the building civil engineering dust collecting equipment further comprises a connecting plate, and the liquid suction device is connected with the nozzle through the connecting plate.
Preferably, the air inlet pipe is horizontally arranged, and the nozzle is arranged towards the upper part in front of the inlet of the air inlet pipe.
Preferably, building civil engineering dust collecting equipment still includes the shell, be provided with the chamber door on the shell, the dust removal cabinet orientation the portable setting of chamber door is in the shell, the intake pipe is worn to establish shell and gas circuit connection the dust removal cabinet, it sets up to go out the air cavity in the shell and gas circuit connection the dust removal cabinet, air suction device sets up on the shell and wear to establish shell and gas circuit connection go out the air cavity, the water tank sets up in the shell, liquid suction device sets up on the shell and wear to establish shell and liquid circuit connection the water tank, the nozzle is located outside the shell and liquid circuit connection liquid suction device.
Preferably, the building civil engineering dust collecting equipment further comprises a pull rod, and the pull rod is located between the dust collecting cabinet and the box door, is connected with the dust collecting cabinet and abuts against the box door.
Furthermore, the air outlet cavity is positioned between the dust removal cabinet and the box door, and the pull rod is positioned in the air outlet cavity.
Preferably, the building civil engineering construction dust removing equipment further comprises a control device and a power supply, the power supply is electrically connected with the control device, the air suction device and the liquid suction device, and the control device is respectively in signal connection with the air suction device and the liquid suction device and is used for respectively controlling the starting and stopping of the air suction device and the starting and stopping of the liquid suction device.
The beneficial effects of the utility model mainly lie in:
1. the utility model discloses a building civil engineering dust collecting equipment includes the intake pipe, the dust removal cabinet, go out the air cavity, air suction device, the water tank, liquid suction device and nozzle, the intake pipe is passed through dust removal cabinet gas circuit and is connected out the air cavity, go out air suction device is connected to air cavity gas circuit, the water tank passes through liquid suction device liquid circuit and connects the nozzle, the nozzle sets up the import that is used for getting into the intake pipe under air suction device's suction effect through nozzle spun water smoke agglutination's raise dust with the intake pipe cooperation, therefore, it can carry out thorough dust removal purification to the raise dust air, be suitable for extensive popularization and application.
2. The utility model discloses a building civil engineering dust collecting equipment still includes the shell, be provided with the chamber door on the shell, the dust removal cabinet is in the shell towards the portable setting of chamber door, the shell is worn to establish by the intake pipe and the dust removal cabinet is connected to the gas circuit, go out the setting of air cavity and connect the dust removal cabinet in the shell and gas circuit, air suction device sets up on the shell and wears to establish shell and gas circuit and connect the air cavity, the water tank sets up in the shell, liquid suction device sets up on the shell and wears to establish shell and liquid circuit and connect the water tank, the nozzle is located outside the box and liquid circuit connects liquid suction device, therefore, its clearance is convenient, thereby improve user's work efficiency greatly.
3. The utility model discloses a building civil engineering dust collecting equipment includes the intake pipe, the dust removal cabinet, go out the air cavity, air suction device, the water tank, liquid suction device and nozzle, the intake pipe is passed through dust removal cabinet gas circuit and is connected out the air cavity, go out air suction device is connected to air cavity gas circuit, the water tank passes through liquid suction device liquid circuit and connects the nozzle, the nozzle sets up the import that is used for getting into the intake pipe under air suction device's suction effect through nozzle spun water smoke agglutination's raise dust with the intake pipe cooperation, therefore, its design benefit, the structure is succinct, it is simple and convenient to make, and is low in cost, be suitable for extensive popularization.
These and other objects, features and advantages of the present invention will become more fully apparent from the following detailed description, the accompanying drawings and the appended claims, taken in conjunction with the accompanying drawings and the accompanying claims, wherein like reference numerals refer to like elements throughout.
Detailed Description
In order to clearly understand the technical contents of the present invention, the following embodiments are specifically illustrated in detail.
Please refer to fig. 1-4, in a specific embodiment of the present invention, the utility model discloses a building civil engineering dust collecting equipment includes intake pipe 1, dust removal cabinet 2, goes out air cavity 3, air suction device 4, water tank 5, liquid suction device 6 and nozzle 7, intake pipe 1 passes through dust removal cabinet 2 gas circuit connection go out air cavity 3, go out air cavity 3 gas circuit connection air suction device 4, water tank 5 passes through 6 liquid circuit connection of liquid suction device nozzle 7, nozzle 7 with intake pipe 1 cooperation setting is used for through the dust raising of nozzle 7 spun water smoke agglutination gets into under the suction of air suction device 4 the import of intake pipe 1.
The dust removing cabinet 2 can have any suitable structure, please refer to fig. 2-4, in an embodiment of the present invention, the dust removing cabinet 2 includes a dust removing cabinet casing 8, a filter screen 9 and a dust removing net 10, the air inlet pipe 1 is connected to one end of the dust removing cabinet casing 8 through an air path, the filter screen 9 is disposed at the other end of the dust removing cabinet casing 8, and the other end of the dust removing cabinet casing 8 is connected to the air outlet cavity 3 through the air path of the filter screen 9.
The number of the dust removing nets 10 can be determined according to the requirement, and more preferably, the number of the dust removing nets 10 is multiple, and the multiple dust removing nets 10 are alternately arranged up and down along the length direction of the dust removing cabinet 2. Or alternately arranged up and down along the gas path direction of the dust removal cabinet 2. The dust removal net 10 can block the dust-raising gas entering the dust removal cabinet 2, so that the flowing time of the dust-raising gas in the dust removal cabinet 2 is greatly increased, the contact time of the dust removal net 10 and the dust is prolonged, and the adsorption efficiency of the dust removal net 10 is improved. Referring to fig. 2 to 3, in an embodiment of the present invention, the number of the dust removing nets 10 is 6.
The dust removing cabinet housing 8 may have any suitable shape, as shown in fig. 2 to 3, in an embodiment of the present invention, the dust removing cabinet housing 8 is Contraband-shaped, the open end of the dust removing cabinet housing 8 is the one end of the dust removing cabinet housing 8, and the closed end of the dust removing cabinet housing 8 is the other end of the dust removing cabinet housing 8.
The number of the nozzles 7 can be determined according to the requirement, and preferably, the number of the nozzles 7 is multiple, and the multiple nozzles 7 are all connected with the liquid suction device 6 in a liquid path. Referring to fig. 1-2, in an embodiment of the present invention, the number of the nozzles 7 is 5.
In order to fix the nozzle 7, please refer to fig. 1-2, in a specific embodiment of the present invention, the building civil engineering dust removing apparatus further includes a connecting plate 11, and the liquid suction device 6 is connected to the nozzle 7 through the connecting plate 11.
The air pumping device 4 may be any suitable air pumping device, as shown in fig. 1-2, and in an embodiment of the present invention, the air pumping device 4 is an air pump.
The fluid pumping device 6 may be any suitable fluid pumping device, as shown in fig. 2, and in an embodiment of the present invention, the fluid pumping device 6 is a water pump.
The nozzle 7 and the intake pipe 1 may be disposed in a matching manner by any suitable structure, as shown in fig. 1-2, in a specific embodiment of the present invention, the intake pipe 1 is disposed horizontally, and the nozzle 7 is disposed toward the upper portion of the front of the inlet of the intake pipe 1.
In order to make the above-mentioned components and components reasonably distributed and easy to clean, please refer to fig. 1-2 and 4, in a specific embodiment of the utility model, the building civil engineering dust removing device further comprises a shell 12, a door 13 is arranged on the outer shell 12, the dust removal cabinet 2 is movably arranged in the outer shell 12 towards the door 13, the air inlet pipe 1 penetrates through the shell 12 and is connected with the dust removal cabinet 2 through an air path, the air outlet cavity 3 is arranged in the shell 12 and is connected with the dust removal cabinet 2 through an air path, the air suction device 4 is arranged on the shell 12 and penetrates through the shell 12 and is connected with the air outlet cavity 3 through an air path, the water tank 5 is arranged in the shell 12, the liquid suction device 6 is arranged on the shell 12, penetrates through the shell 12 and is connected with the water tank 5 in a liquid path, and the nozzle 7 is positioned outside the shell 12 and is connected with the liquid suction device 6 in a liquid path.
In order to prevent the dust-removing cabinet 2 from undesired sliding, please refer to fig. 2 to 3, in an embodiment of the present invention, the dust-removing apparatus for building and civil engineering further includes a pull rod 14, the pull rod 14 is located between the dust-removing cabinet 2 and the door 13, is connected to the dust-removing cabinet 2, and abuts against the door 13. After the box door 13 is closed, the dust removal cabinet 2 can be pressed through the pull rod 14, so that the dust removal cabinet 2 is prevented from sliding in the shell 12. And after the box door 13 is opened, the dust removal cabinet 2 can be pulled out of the shell 2 through the pull rod 14, so that the dust removal cabinet 2 can be cleaned conveniently.
The air outlet cavity 3 can be disposed at any suitable position in the housing 12, as shown in fig. 2, in a specific embodiment of the present invention, the air outlet cavity 3 is located between the dust removing cabinet 2 and the box door 13, and the pull rod 14 is located in the air outlet cavity 3.
In order to increase the sealing performance of the box door 13 and avoid the gas from leaking and dissipating through the box door 13, preferably, the building civil engineering dust removing equipment further comprises a sealing gasket 15, and the sealing gasket 15 is arranged on the inner side surface of the box door 13. Referring to fig. 2, in an embodiment of the present invention, when the building and civil engineering dust removing apparatus further includes a pull rod 14, the pull rod 14 abuts against the sealing pad 15.
The sealing gasket 15 may be a sealing gasket made of any suitable material, and in an embodiment of the present invention, the sealing gasket 15 is a rubber gasket.
In order to facilitate the promotion of the present invention, please refer to fig. 1-2, in a specific embodiment of the present invention, the building civil engineering dust removing device further includes a push rod 16, and the push rod 16 is disposed on the housing 12.
In order to facilitate the promotion of the present invention, please refer to fig. 1-2 and 4, in a specific embodiment of the present invention, the building civil engineering dust removing device further includes a roller 17, and the roller 17 is rotatably installed at the bottom of the housing 12.
The dust-removing cabinet 2 is movably disposed in the housing 12 toward the door 13, and any suitable structure may be adopted, please refer to fig. 2 to 4, in a specific embodiment of the present invention, the dust-removing apparatus for building civil engineering further includes a rollable member 18, and the rollable member 18 is rollably disposed at the bottom of the dust-removing cabinet 2 toward the door 13 and supported on the bottom of the housing 12. In this case, the water tank 5 may be disposed at an upper portion of the housing 12, the dust removing cabinet 2 is located below the housing 12, and the air outlet chamber 3 is further located between the water tank 5 and the housing 12.
The rollable member 18 can be any suitable rollable member, see fig. 2-3. in one embodiment of the present invention, the rollable member 18 is a pulley.
The liquid suction device 6 is disposed on the housing 12 and may have any suitable structure, as shown in fig. 1-2, in a specific embodiment of the present invention, the dust removing device for building and civil engineering further includes a fixing box 19, the fixing box 19 is disposed on the housing 12, the nozzle 7 is located outside the fixing box 19, the liquid suction device 6 is disposed in the fixing box 19 and penetrates through the fixing box 19, and the liquid path is connected to the nozzle 7.
For convenient operation, the building civil engineering construction dust removing equipment further comprises a control device 20 and a power supply 21, wherein the power supply 21 is electrically connected with the control device 20, the air suction device 4 and the liquid suction device 6, and the control device 20 is respectively in signal connection with the air suction device 4 and the liquid suction device 6 and is used for respectively controlling the starting and stopping of the air suction device 4 and the starting and stopping of the liquid suction device 6. Referring to fig. 1 to 2, in an embodiment of the present invention, in a case that the building civil engineering dust removing apparatus further includes a housing 12, the power source 21 is disposed under the housing 12, and the control device 20 is disposed on the housing 12.
The control device 20 may be any suitable control device, and in an embodiment of the present invention, the control device 20 is an operation panel.
The power source 21 may be any suitable power source, and in one embodiment of the present invention, the power source 21 is a battery.
In order to add water to the water tank 5, preferably, the building civil engineering dust removal equipment further comprises a water inlet pipe 22, and the water inlet pipe 22 penetrates through the water tank 5 and is communicated with an internal liquid path of the water tank 5. It is convenient for the user to add water to the water tank 5 through the water inlet pipe 22. Referring to fig. 1-2, in an embodiment of the present invention, in case that the building civil engineering dust removing apparatus further includes a housing 12, the water inlet pipe 22 further penetrates the housing 12.
When in use, the utility model can be pushed to move to the construction site through the push rod 16, and water is added into the water tank 5 through the water inlet pipe 22, when the construction generates the flying dust, the user can start the air pump and the water pump through the working panel, the air inside the air outlet cavity 3 is extracted and discharged after the air pump is started, so that the air negative pressure is generated inside the air outlet cavity 3, simultaneously the water in the water tank 5 is extracted after the water pump is started, the water is conveyed to the nozzle 7, the water is atomized and sprayed out through the nozzle 7, so that the water mist is attached to the flying dust for flocculation, the flying dust is gathered near the air inlet pipe 1, the flying dust is prevented from flying around, the air flow can be driven by the negative pressure generated inside the air outlet cavity 3 at the moment, the flying dust gathered near the air inlet pipe 1 is extracted into the dust removal cabinet 2, after the air enters the dust removal cabinet 2, the dust removal net 10 can block and adsorb the flying dust gas, purify the air with this, the inside of the air accessible filter screen 9 discharge dust removal cabinet 2 after the purification to again drive through the air current and discharge through the air pump, finally, after the dust removal, the user can open chamber door 13, and remove to the outside of shell 12 through pull rod 14 pulling dust removal cabinet 2 through the pulley, thereby to the raise dust in the dust removal cabinet 2 clear up can.
Therefore, adopt the utility model discloses, solved and proposed in the background art because the raise dust is wafted everywhere, adopt single dust removal mode to be difficult to carry out thorough dust removal purification to the raise dust, and the device is inside to be stained with attaches the raise dust and causes the user to clear up inconveniently, influences user work efficiency's problem.
To sum up, the utility model discloses a building civil engineering dust collecting equipment can carry out thorough dust removal purification to the raise dust air, and better ground, and the clearance is convenient to improve user's work efficiency greatly, design benefit, the structure is succinct, makes portably, and is with low costs, is suitable for extensive popularization and application.
Therefore, the purpose of the utility model is completely and effectively realized. The functional and structural principles of the present invention have been shown and described in the embodiments, and the embodiments may be modified without departing from the principles. Therefore, the present invention includes all modifications within the spirit and scope of the appended claims.