CN213853673U - Mobile atomizing dust removal device - Google Patents

Mobile atomizing dust removal device Download PDF

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Publication number
CN213853673U
CN213853673U CN202022006079.2U CN202022006079U CN213853673U CN 213853673 U CN213853673 U CN 213853673U CN 202022006079 U CN202022006079 U CN 202022006079U CN 213853673 U CN213853673 U CN 213853673U
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atomizing
mobile
vehicle body
water
atomization
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CN202022006079.2U
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Chinese (zh)
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范中华
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Shenhua Zhungeer Energy Co Ltd
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Shenhua Zhungeer Energy Co Ltd
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Abstract

The application discloses a mobile atomization dust removal device, which comprises a vehicle body, and a water tank, a water pump, an atomization device and a driving device which are carried on the vehicle body; the water pump is connected between the water tank and the atomization device, and the water pump pumps water from the water tank to the atomization device; atomizing device includes air inlet end, spraying end and connecting portion, connecting portion set up the air inlet end with between the spraying end, connecting portion rotationally install on the automobile body, drive arrangement connects the automobile body with between the atomizing device, the drive atomizing device winds connecting portion rotate. The application removes atomizing dust collector and carries on the automobile body, and atomizing device rotationally installs on the automobile body, can drive atomizing device through drive arrangement and rotate, changes the spray direction of spraying, improves dust fall effect.

Description

Mobile atomizing dust removal device
Technical Field
The application relates to the technical field of coal mine dust removal, in particular to a mobile atomization dust removal device.
Background
In an open pit, floating dust is easily generated on the production site of the open pit particularly in windless weather in winter due to low air pressure and slow air flow, the floating dust is difficult to effectively eliminate by sprinkling water on a traditional sprinkling truck, and floating and sinking not only influence the normal production work of the open pit, but also greatly influence the body and the environment of workers. Therefore, it is necessary to provide a mobile atomizing dust-removing device which can effectively remove air floating dust.
SUMMERY OF THE UTILITY MODEL
The utility model provides a not enough of prior art is overcome to the aim at of this application, provides a remove atomizing dust collector of effectively getting rid of air floating dust.
The technical scheme of the application provides a mobile atomization dust removal device, which comprises a vehicle body, and a water tank, a water pump, an atomization device and a driving device which are carried on the vehicle body;
the water pump is connected between the water tank and the atomization device, and the water pump pumps water from the water tank to the atomization device;
atomizing device includes air inlet end, spraying end and connecting portion, connecting portion set up the air inlet end with between the spraying end, connecting portion rotationally install on the automobile body, drive arrangement connects the automobile body with between the atomizing device, the drive atomizing device winds connecting portion rotate.
Further, the automobile body still carries with to the fan of atomizing device air supply, the fan is installed atomizing device the air inlet end.
Furthermore, the atomizing device is a horn-shaped cylinder, an air supply channel is arranged in the direction from the air inlet end to the spraying end, and the fan is installed in the air supply channel.
Furthermore, a plurality of atomizer are installed to atomizing device's spraying end, atomizer evenly distributed is in air supply channel's periphery.
Further, be provided with the water cavity among the atomizer, atomizer with the water pump all with the water cavity intercommunication.
Further, the driving device comprises a telescopic oil cylinder, and the telescopic oil cylinder comprises a cylinder body and a telescopic rod capable of extending and retracting relative to the cylinder body;
the connecting part of the atomization device comprises a first hinge part and a second hinge part, the first hinge part is hinged with the vehicle body, the second hinge part is hinged with the telescopic rod, and the cylinder body is hinged with the vehicle body.
Furthermore, the first hinge part and the second hinge part are arranged along the direction from the air inlet end to the spraying end, and when the telescopic rod of the telescopic oil cylinder is telescopic, the spraying end of the atomizing device is pushed to move in the up-down direction.
Furthermore, the driving device further comprises a hydraulic pump and a motor, wherein the hydraulic pump and the motor are used for driving the telescopic oil cylinder, the motor is connected with the hydraulic pump, and the hydraulic pump is connected with the telescopic oil cylinder through an oil pipe.
Further, a power generation device is mounted on the vehicle body, and the power generation device is electrically connected to the water pump and the motor, respectively.
Further, the automobile body is the watering lorry.
After adopting above-mentioned technical scheme, have following beneficial effect:
the application removes atomizing dust collector and carries on the automobile body, and atomizing device rotationally installs on the automobile body, can drive atomizing device through drive arrangement and rotate, changes the spray direction of spraying, improves dust fall effect.
Drawings
The disclosure of the present application will become more readily understood by reference to the drawings. It should be understood that: these drawings are for illustrative purposes only and are not intended to limit the scope of the present application. In the figure:
FIG. 1 is a schematic view of a mobile atomizing dust-removing device according to an embodiment of the present application;
FIG. 2 is a schematic view illustrating an installation of a telescopic cylinder according to an embodiment of the present application;
FIG. 3 is a cross-sectional view of an atomizing device in an embodiment of the present application;
FIG. 4 is a schematic view of a drive device according to an embodiment of the present application;
fig. 5 is a circuit structure diagram of the mobile atomizing and dust-removing device in an embodiment of the present application.
Detailed Description
Embodiments of the present application are further described below with reference to the accompanying drawings.
It is easily understood that according to the technical solutions of the present application, those skilled in the art can substitute various structures and implementations without changing the spirit of the present application. Therefore, the following detailed description and the accompanying drawings are merely illustrative of the technical solutions of the present application, and should not be construed as limiting or restricting the technical solutions of the present application in their entirety.
The terms of orientation of up, down, left, right, front, back, top, bottom, and the like referred to or may be referred to in this specification are defined relative to the configuration shown in the drawings, and are relative terms, and thus may be changed correspondingly according to the position and the use state of the device. Therefore, these and other directional terms should not be construed as limiting terms. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
Throughout the description of the present application, it is to be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "coupled" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; can be mechanically or electrically connected; the two components can be directly connected or indirectly connected through an intermediate medium, and the two components can be communicated with each other. The foregoing is to be understood as belonging to the specific meanings in the present application as appropriate to the person of ordinary skill in the art.
The mobile atomizing dust removal device in the embodiment of the application, as shown in fig. 1, includes a vehicle body 01, a water tank (not shown in the figure) mounted on the vehicle body 01, a water pump 06, an atomizing device 02 and a driving device 03;
the water pump 06 is connected between the water tank and the atomizing device 02, and the water pump 06 pumps water from the water tank to the atomizing device 02;
atomizing device 02 includes air inlet end 21, spraying end 22 and connecting portion 23, and connecting portion 23 sets up between air inlet end 21 and spraying end 22, and connecting portion 23 rotationally installs on automobile body 01, and drive arrangement 03 is connected between automobile body 01 and atomizing device 02, and drive atomizing device 02 rotates around connecting portion 23.
Specifically, the vehicle body 01 is a transport vehicle provided with wheels 11, and may be driven by an internal engine, or may be driven by a manual power or an external power provided to the traction rod 12. Preferably, the vehicle body 01 can directly adopt a sprinkler, and the water tank adopts a water tank carried by the sprinkler.
The removal atomizing dust collector of this application embodiment, during water pump 06 extracts atomizing device 02 with the water in the water tank, atomizing device 02 from spraying end 22 blowout after with water atomization, drive atomizing device 02 through drive arrangement 03 whole around its connecting portion 23 rotation, can change spraying end 22's orientation, combine the removal of automobile body 01, can concentrate the dust fall to the region that local floating dust is heavier, the dust fall effect has also been guaranteed to the mode of spraying.
Further, as shown in fig. 1, the vehicle body 01 is further provided with a fan 04 for blowing air to the atomizing device 02, and the fan 04 is attached to the air inlet end 21 of the atomizing device 02. The fan 04 supplies air to the atomizing device 02 from the air inlet end 21, so that the atomizing quality of water is enhanced.
Specifically, as shown in fig. 1 and 3, the atomizing device 02 is a trumpet-shaped cylinder, the diameters of the air inlet end 21 and the spraying end 22 are the largest, and the diameters of the cylinder are gradually reduced toward the middle of the cylinder, and the trumpet-shaped arrangement makes the blown spray more uniformly dispersed. In the atomizing device 02, an air supply passage 24 is provided along the direction from the air inlet end 21 to the atomizing end 22, and the fan 04 is installed at one end of the air supply passage 24 close to the air supply end 21 and supplies air toward the atomizing end 22.
Further, as shown in fig. 1, the spraying end 22 of the atomizer 02 is provided with a plurality of atomizer heads 25, and the atomizer heads 25 are uniformly distributed on the outer periphery of the air supply passage 21. The atomizing end 22 of the atomizing device 02 is annular, the air outlet of the air supply channel 24 is formed in the middle of the atomizing end 22, the atomizing nozzles 25 are uniformly arranged on the atomizing end 22 of the atomizing device 02, the number of the atomizing nozzles 25 is set according to the annular diameter of the atomizing end 22 of the atomizing device 02, the larger the diameter is, the larger the number of the atomizing nozzles 25 is, and the wider the water mist spraying area is.
As shown in fig. 3, a water chamber 26 is provided in the atomizer 02, and both the atomizer 25 and the water pump 06 communicate with the water chamber 26. The water cavity 26 is used for storing water, the water pump 06 pumps the water in the water tank into the water cavity 26 of the atomization device 02, and the atomization nozzle 25 atomizes the water in the water cavity 26 and then sprays the atomized water.
Further, as shown in fig. 2, the driving device 03 includes a telescopic cylinder 31, and the telescopic cylinder 31 includes a cylinder body 311 and a telescopic rod 312 capable of extending and contracting relative to the cylinder body 311;
the connection portion 23 of the atomizing device 02 includes a first hinge 231 and a second hinge 232, the first hinge 231 is hinged to the vehicle body 01, the second hinge 232 is hinged to the telescopic rod 312, and the cylinder 311 is hinged to the vehicle body 01.
When the telescopic rod 312 of the telescopic cylinder 31 extends or shortens, the second hinge part 232 of the atomization device 02 is driven to move, so that the atomization device 02 integrally rotates around the first hinge part 231; meanwhile, the telescopic rod 312 of the telescopic cylinder 31 rotates around the second hinge part 323, and the cylinder body 311 rotates around the hinge point of the cylinder body 311 and the vehicle body 01, so that the position relation of the telescopic cylinder 31, the vehicle body 01 and the atomizing device 02 is changed by adapting to the telescopic of the telescopic cylinder 31 and the rotation of the atomizing device 02.
Further, the first hinge 231 and the second hinge 232 are disposed along the direction from the air inlet end 21 to the spraying end 22, and when the telescopic rod 312 of the telescopic cylinder 31 is telescopic, the spraying end 22 of the atomizing device 02 is pushed to move in the up-and-down direction.
Specifically, the second hinge portion 232 is closer to the spraying end 22 than the first hinge portion 231, and when the telescopic rod 312 of the telescopic cylinder 31 is extended, the second hinge portion 232 is pushed to move upwards, so that the spraying end 22 rotates upwards, and the air inlet end 21 rotates downwards; when the telescopic rod 312 of the telescopic cylinder 31 is shortened, the second hinge part 232 is pulled to move downwards, so that the spraying end 22 rotates downwards, and the air inlet end 21 rotates upwards.
Therefore, the orientation of the spraying end 22 of the atomizing device 02 in the height direction can be changed by the telescopic cylinder 31, and the dustfall of each area in the open pit can be performed in combination with the left-right rotation and the front-back movement of the vehicle body 01.
Further, as shown in fig. 4, the driving device 03 further includes a hydraulic pump 32 and a motor 33 for driving the telescopic cylinder 31, the motor 33 is connected to the hydraulic pump 32, and the hydraulic pump 32 is connected to the telescopic cylinder 31 through an oil pipe.
Specifically, the motor 33 drives the hydraulic pump 32, and the hydraulic pump 32 supplies or pumps the oil in the telescopic cylinder 31 to or from the telescopic cylinder 31. The telescopic rod 312 of the telescopic cylinder 31 is extended and retracted by delivering oil to the telescopic cylinder 31 or extracting oil from the telescopic cylinder 31, specifically, the telescopic rod 312 of the telescopic cylinder 31 is controlled by controlling the forward and reverse rotation of the motor 33.
Further, as shown in fig. 1 and 5, a power generation device 05 is mounted on the vehicle body 01, and the power generation device 05 is electrically connected to the water pump 06 and the motor 33, respectively, for supplying power to the water pump 06 and the motor 33. If the car body 01 adopts a sprinkler, the power generation device 05 can adopt a diesel generator set in the sprinkler.
As shown in fig. 5, the power generation device 05 and the motor 33 are electrically connected through a motor switch 331, and when the motor switch 331 is closed, the power supply of the motor 33 is turned on, and the motor 33 is powered on to start working; a water pump switch 61 is also electrically connected between the power generation device 05 and the water pump 06, and when the water pump switch 61 is closed, the power supply of the water pump 06 is switched on, the water pump 06 starts to work, and the atomization device 02 sprays the spray.
The removal atomizing dust collector in this application embodiment spouts behind with water atomization through atomizing device to further strengthen the atomization effect through the fan, ensure dust fall effect, atomizing device can change the direction of spraying under drive arrangement's drive simultaneously, ensures to carry out effective dust fall to each region.
What has been described above is merely the principles and preferred embodiments of the present application. It should be noted that, for a person skilled in the art, several other modifications can be made on the basis of the principle of the present application, and these should also be considered as the scope of protection of the present application.

Claims (10)

1. A mobile atomization dust removal device is characterized by comprising a vehicle body, a water tank, a water pump, an atomization device and a driving device, wherein the water tank, the water pump, the atomization device and the driving device are carried on the vehicle body;
the water pump is connected between the water tank and the atomization device, and the water pump pumps water from the water tank to the atomization device;
atomizing device includes air inlet end, spraying end and connecting portion, connecting portion set up the air inlet end with between the spraying end, connecting portion rotationally install on the automobile body, drive arrangement connects the automobile body with between the atomizing device, the drive atomizing device winds connecting portion rotate.
2. The mobile atomizing and dedusting device as claimed in claim 1, wherein the vehicle body is further provided with a fan for supplying air to the atomizing device, and the fan is installed at the air inlet end of the atomizing device.
3. The mobile atomizing dust removal device of claim 2, wherein the atomizing device is a trumpet-shaped cylinder, an air supply channel is arranged along the direction from the air inlet end to the atomizing end, and the fan is installed in the air supply channel.
4. The mobile atomizing and dedusting device as claimed in claim 3, wherein a plurality of atomizing nozzles are installed at the atomizing end of the atomizing device, and the atomizing nozzles are uniformly distributed on the outer periphery of the air supply channel.
5. The mobile atomizing and dedusting device as claimed in claim 4, wherein a water cavity is arranged in the atomizing device, and the atomizing nozzle and the water pump are both communicated with the water cavity.
6. The mobile atomizing dust-removing device according to any one of claims 1 to 5, characterized in that the driving device comprises a telescopic oil cylinder, and the telescopic oil cylinder comprises a cylinder body and a telescopic rod capable of telescoping relative to the cylinder body;
the connecting part of the atomization device comprises a first hinge part and a second hinge part, the first hinge part is hinged with the vehicle body, the second hinge part is hinged with the telescopic rod, and the cylinder body is hinged with the vehicle body.
7. The mobile atomizing and dedusting device of claim 6, wherein the first hinge portion and the second hinge portion are arranged along the direction from the air inlet end to the atomizing end, and the telescopic rod of the telescopic oil cylinder pushes the atomizing end of the atomizing device to move in the up-and-down direction when being telescopic.
8. The mobile atomizing and dedusting device of claim 6, wherein the driving device further comprises a hydraulic pump and a motor for driving the telescopic cylinder, the motor is connected with the hydraulic pump, and the hydraulic pump is connected with the telescopic cylinder through an oil pipe.
9. The mobile atomizing dust-removing device according to claim 8, wherein a power generator is further mounted on the vehicle body, and the power generator is electrically connected to the water pump and the motor, respectively.
10. The mobile atomizing and dedusting device of any one of claims 1 to 5, wherein the vehicle body is a sprinkler.
CN202022006079.2U 2020-09-14 2020-09-14 Mobile atomizing dust removal device Active CN213853673U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022006079.2U CN213853673U (en) 2020-09-14 2020-09-14 Mobile atomizing dust removal device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022006079.2U CN213853673U (en) 2020-09-14 2020-09-14 Mobile atomizing dust removal device

Publications (1)

Publication Number Publication Date
CN213853673U true CN213853673U (en) 2021-08-03

Family

ID=77048425

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022006079.2U Active CN213853673U (en) 2020-09-14 2020-09-14 Mobile atomizing dust removal device

Country Status (1)

Country Link
CN (1) CN213853673U (en)

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