Novel high-efficient two whirl water film deduster
Technical Field
The utility model relates to the technical field of dust collectors, in particular to a novel efficient double-cyclone water film dust collector.
Background
The dust remover is an essential device for pollution control of smoke, dust and the like. The dust removing equipment on the market at present comprises desulfurization dust removal, water film dust removal, pulse dust removal, cloth bag dust removal and the like. The water film dust collector is a kind of purifying equipment which uses dust-containing gas to impact the water film on the inner wall of dust collector or other special members and is made by some method to make the dust captured by the water film and the gas purified. The processing effect of the mode is good, the structure is simple, the installation is easy, and the mode is favored in practical application.
However, the water film dust collector on the market at present cannot meet the requirements of people due to relatively imperfect technology, and the water film dust collector in the prior art is usually washed by water when the collected slurry is treated, so that environmental pollution and waste of water resources are caused, and irreversible damage is caused. We have therefore proposed a new high efficiency twin spin flow water dust scrubber to address the problems set out above.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a novel high-efficiency double-cyclone water film dust collector, which solves the problem that the water film dust collector on the market in the background technology cannot meet the requirements of people due to relatively imperfect technology, and the water film dust collector in the prior art is usually flushed by water when processing collected slurry, so that the environment pollution and the waste of water resources are caused, and the irreversible damage is caused.
In order to achieve the purpose, the utility model provides the following technical scheme: a novel high-efficiency double-cyclone water film dust remover comprises a first dust removing bin, a second spraying pipe and a second limiting frame, wherein a feeding pipeline is connected to the first dust removing bin, a second dust removing bin is arranged in the first dust removing bin, a first groove is formed in the second dust removing bin, a second groove is formed in the bottom of the second dust removing bin, a water blocking frame is arranged above the second dust removing bin, a fan is arranged above the second dust removing bin, a water blocking cover is arranged below the fan, a third groove is formed in the lower portion of the first dust removing bin, an extrusion frame is arranged below the first dust removing bin, a spiral disc is arranged in the extrusion frame, a motor is connected to the spiral disc, a filter screen is arranged below the extrusion frame, a water tank is arranged below the extrusion frame, a discharge port is formed in the tail end of the extrusion frame, and a connecting pipeline is connected to the water tank, the water pump is installed to the connecting tube other end, and is provided with the shunt on the water pump, install first conduit on the shunt, and the first conduit other end is connected with first shower, install first spacing frame on the first shower, be provided with second conduit on the shunt, and the second conduit other end installs the second shower, be connected with the spacing frame of second on the second shower.
Preferably, four groups of the first slots are uniformly distributed on the second dust removing bin, and the central axis of the second dust removing bin and the central axis of the first dust removing bin are on the same vertical line.
Preferably, the water blocking frame is conical in shape, and the water blocking frame is fixedly connected to the first dust removal bin.
Preferably, the spiral disc forms a rotating structure inside the extrusion frame through a motor, and the connection mode between the spiral disc and the extrusion frame is a fitting connection.
Preferably, the first spray pipe and the second spray pipe are both annular in shape, and the first spray pipe is fixed with the first dust removal bin through the first limiting frame.
Preferably, the second spray pipe is positioned inside the second dust removal bin, and the second spray pipe is fixed with the second dust removal bin through the second limiting frame.
Compared with the prior art, the utility model has the beneficial effects that: this novel high-efficient bispin flowing water film dust remover:
(1) the device is provided with the motor, the spiral disc and the extrusion frame, the spiral disc can be driven by the motor to rotate to extrude slurry, water in the slurry is extruded out, and finally the squeezed slurry is discharged through the discharge port, so that the device is more environment-friendly to use, and water in the slurry can be separated;
(2) be provided with filter screen, water tank and water pump, inside the accessible filter screen filters the water that extrudes to the water tank, later recycles through the water pump, and this kind of mode can reduce the use cost of device, reduces the waste of water resource for device practicality more.
Drawings
FIG. 1 is a schematic view of the main structure of the present invention;
FIG. 2 is a front sectional view of the present invention;
FIG. 3 is a side cross-sectional structural view of the present invention;
FIG. 4 is a schematic view of the structure at A in FIG. 2 according to the present invention.
In the figure: 1. a first dust removal bin; 2. a feed conduit; 3. a second dust removal bin; 4. a first slot; 5. a second slot; 6. a water-blocking frame; 7. a fan; 8. a water blocking cover; 9. a third slot is formed; 10. a pressing frame; 11. a spiral disc; 12. a motor; 13. a filter screen; 14. a water tank; 15. a discharge port; 16. connecting a pipeline; 17. a water pump; 18. a flow divider; 19. a first water delivery pipeline; 20. a first shower pipe; 21. a first limit frame; 22. a second water delivery pipeline; 23. a second shower pipe; 24. a second limiting frame.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: a novel high-efficiency double-cyclone water film dust collector comprises a first dust removing bin 1, a feeding pipeline 2, a second dust removing bin 3, a first open groove 4, a second open groove 5, a water blocking frame 6, a fan 7, a water blocking cover 8, a third open groove 9, an extrusion frame 10, a spiral disc 11, a motor 12, a filter screen 13, a water tank 14, a discharge port 15, a connecting pipeline 16, a water pump 17, a flow divider 18, a first water pipeline 19, a first spray pipe 20, a first limit frame 21, a second water pipeline 22, a second spray pipe 23 and a second limit frame 24, wherein the feeding pipeline 2 is connected to the first dust removing bin 1, the second dust removing bin 3 is arranged inside the first dust removing bin 1, the first open groove 4 is formed in the second dust removing bin 3, the second open groove 5 is formed in the bottom of the second dust removing bin 3, the water blocking frame 6 is arranged above the second dust removing bin 3, and the fan 7 is arranged above the second dust removing bin 3, a water blocking cover 8 is arranged below the fan 7, a third open slot 9 is arranged below the first dedusting bin 1, an extrusion frame 10 is arranged below the first dedusting bin 1, a spiral disc 11 is arranged inside the extrusion frame 10, a motor 12 is connected on the spiral disk 11, a filter screen 13 is arranged below the extrusion frame 10, a water tank 14 is arranged below the extrusion frame 10, a discharge hole 15 is arranged at the tail end of the extrusion frame 10, and the water tank 14 is connected with a connecting pipeline 16, the other end of the connecting pipeline 16 is provided with a water pump 17, and the water pump 17 is provided with a flow divider 18, the flow divider 18 is provided with a first water conveying pipeline 19, and the other end of the first water pipe 19 is connected with a first spraying pipe 20, a first limit frame 21 is arranged on the first spraying pipe 20, a second water pipe 22 is arranged on the flow divider 18, and a second spraying pipe 23 is installed at the other end of the second water conveying pipeline 22, and a second limiting frame 24 is connected to the second spraying pipe 23.
First fluting 4 evenly distributed has four groups on second dust removal storehouse 3, and the axis in second dust removal storehouse 3 and the axis in first dust removal storehouse 1 all are on same vertical line to can make the device carry out the secondary and catch, make the device more reasonable.
The shape of the water blocking frame 6 is conical, and the water blocking frame 6 is fixedly connected with the first dust removing bin 1, so that water in the air can be blocked, and the water can be drained and dripped through gravity.
The spiral disk 11 passes through motor 12 and constitutes revolution mechanic inside extrusion frame 10, and the connected mode between spiral disk 11 and the extrusion frame 10 is connected for the laminating to the realization squeezes the mud of collecting, thereby recycles, and this kind of mode can make the use environmental protection and the economy more of device.
The first spraying pipe 20 and the second spraying pipe 23 are both annular in shape, and the first spraying pipe 20 is fixed with the first dedusting bin 1 through the first limiting frame 21, and the dust in the air is captured through spraying, so that the device is more practical.
The position of the second spraying pipe 23 is positioned inside the second dedusting bin 3, and the second spraying pipe 23 is fixed with the second dedusting bin 3 through the second limiting frame 24, so that the device is more reasonable.
The working principle is as follows: when using this novel high-efficient pair of cyclone water film dust remover, at first, start fan 7 and carry out the suction to inside with external water source filling to water tank 14 simultaneously. Then, the air with dust enters the first dust removing bin 1 through the feeding pipe 2, and at the same time, the water pump 17 is started to pump the water in the water tank 14 to the inside of the flow divider 18 through the connecting pipe 16, and the water is discharged into the first spraying pipe 20 and the second spraying pipe 23 through the first water conveying pipe 19 and the second water conveying pipe 22, respectively, and is sprayed out. Then the dust in the air is captured by the water fog and is attached to the inner wall of the first dust removing bin 1 by the centrifugal force, and then the air enters the inside of the second dust removing bin 3 through the first slot 4 to be secondarily treated.
Then, the attached slurry flows into the extrusion frame 10 from the second slot 5 and the third slot 9 through gravity, then the motor 12 is started to drive the spiral disc 11 to rotate so as to squeeze and extrude the slurry, water is filtered by the filter screen 13 and then enters the water tank 14 for recycling, and the squeezed sludge is discharged through the discharge hole 15. This is the entire workflow. And those not described in detail in this specification are well within the skill of those in the art.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that various changes in the embodiments and/or modifications of the utility model can be made, and equivalents and modifications of some features of the utility model can be made without departing from the spirit and scope of the utility model.