CN210186696U - High-efficient water-bath dust collector - Google Patents
High-efficient water-bath dust collector Download PDFInfo
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- CN210186696U CN210186696U CN201920720448.9U CN201920720448U CN210186696U CN 210186696 U CN210186696 U CN 210186696U CN 201920720448 U CN201920720448 U CN 201920720448U CN 210186696 U CN210186696 U CN 210186696U
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- 239000000428 dust Substances 0.000 title claims abstract description 113
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims abstract description 185
- 238000005507 spraying Methods 0.000 claims description 36
- 239000007921 spray Substances 0.000 claims description 11
- 230000000149 penetrating effect Effects 0.000 claims description 3
- 239000012535 impurity Substances 0.000 description 21
- 238000000034 method Methods 0.000 description 10
- 239000002245 particle Substances 0.000 description 10
- 230000000694 effects Effects 0.000 description 8
- 238000002203 pretreatment Methods 0.000 description 8
- 239000002351 wastewater Substances 0.000 description 7
- 239000008187 granular material Substances 0.000 description 4
- 238000007599 discharging Methods 0.000 description 3
- 239000003595 mist Substances 0.000 description 3
- 239000000779 smoke Substances 0.000 description 3
- 238000004891 communication Methods 0.000 description 2
- 238000012840 feeding operation Methods 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000002844 continuous effect Effects 0.000 description 1
- 230000003116 impacting effect Effects 0.000 description 1
- 238000007781 pre-processing Methods 0.000 description 1
- 238000006467 substitution reaction Methods 0.000 description 1
- 239000008400 supply water Substances 0.000 description 1
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Abstract
The utility model discloses a high-efficient water-bath dust collector relates to the dust collector field. A high-efficiency water bath dust removal device comprises a dust remover body and a preorder treatment device, wherein a first inlet is formed in the side wall of the dust remover body, a first outlet is formed in the top of the dust remover body, a second inlet is formed in the top of the preorder treatment device, a second outlet is formed in the bottom of the preorder treatment device, and the second outlet is connected with the first inlet through a pipeline; the height of the second outlet in the vertical direction is greater than that of the first inlet in the vertical direction; the side wall of the second inlet is connected with a first water inlet; the bottom of the dust remover body is connected with a silt storage chamber through a flange, and the side wall of the silt storage chamber is provided with a water outlet and a silt discharge port; the water outlet is connected with an external water purifying device through a pipeline, the water purifying device is communicated with an external water storage device, and the water storage device is communicated with the first water inlet.
Description
Technical Field
The utility model relates to a dust collector field, in particular to high-efficient water bath dust collector.
Background
The wet dust collector is a wet dust collector which can make dust-containing gas implement full water-bath action in water. The working principle is as follows: when the dust-containing gas with a certain speed is sprayed out at a high speed at the spray head through the air inlet pipe, the dust-containing gas enters the water after impacting the water layer, the moving direction of the gas is changed, the dust particles continue to move in the original direction due to the action of inertia force, and most of the dust particles are adhered to the water and then stay in the water.
The traditional water bath dust collector generally has the problems of low dust collection efficiency, slow dust collection speed and unsatisfactory dust collection effect. In addition, after the dust impurities filtered by the water are deposited at the bottom of the water bath dust collector, the dredging process is difficult and the dredging is not clean; and the water after dust removal is difficult to recycle.
Disclosure of Invention
The utility model aims to provide a: the utility model provides a high-efficient water bath dust collector, solved dust removal effect poor, the desilting process is difficult, the difficult problem of waste water recycle. The utility model discloses add preorder processing apparatus, before dirty gas gets into the dust remover body for rivers and dirty gas contact in the spiral pipe, adsorb large granule impurity first, make its deposit to retaining chamber bottom more easily. Finally, the aim of improving the dust removal effect is achieved. The utility model is provided with the silt storage chamber, the dedusting wastewater can be treated primarily, the deposited impurities are discharged from the silt discharge port, and the filtered wastewater is discharged from the water discharge port; because the structure of the silt storage chamber is set, the dust removal water caused by the impact of airflow on deposited impurities is prevented from being continuously turbid. The utility model discloses store up for dismantled and assembled flange joint between silt room and the dust remover body, can demolish storing up the silt room when dust collector stops, be convenient for carry out deep cleanness to storing up the silt room. The utility model discloses can carry to outside purifier by delivery port exhaust dust removal waste water, purifier communicates with outside water storage device again, water storage device and first water inlet and second water inlet intercommunication to this has realized the holistic water circulation of dust collector, has improved resource utilization.
The utility model adopts the technical scheme as follows:
a high-efficiency water bath dust removal device comprises a dust remover body and a preorder treatment device, wherein a first inlet is formed in the side wall of the dust remover body, a first outlet is formed in the top of the dust remover body, a second inlet is formed in the top of the preorder treatment device, a second outlet is formed in the bottom of the preorder treatment device, and the second outlet is connected with the first inlet through a pipeline; the height of the second outlet in the vertical direction is greater than that of the first inlet in the vertical direction; the side wall of the second inlet is connected with a first water inlet;
the bottom of the dust remover body is connected with a silt storage chamber through a flange, and the side wall of the silt storage chamber is provided with a water outlet and a silt discharge port; the water outlet is connected with an external water purifying device through a pipeline, the water purifying device is communicated with an external water storage device, and the water storage device is communicated with the first water inlet.
Dusty gas is in the utility model discloses interior circulation route does: the dust-containing gas enters the pre-treatment device from the second inlet, is output from the second outlet, enters the water storage cavity in the dust remover body from the first inlet, is fully mixed with water, is transferred to the spraying cavity from the water storage cavity, and is finally discharged from the first outlet at the top of the dust remover body.
Because the first water inlet is arranged on the side wall of the pipeline of the second inlet, when only the dust removal water is required to be conveyed into the dust remover body, the valve at the first water inlet is opened, and the valve at the second inlet is closed, so that the external water storage device provides water from the first water inlet to the pre-order treatment device, and the water flows into the water storage cavity of the dust remover body along the same line; or the external water storage device can directly supply water to the interior of the dust remover body from the second water inlet. And the pipelines of the external water storage device, the first water inlet and the second water inlet are respectively provided with a water pump. It is worth mentioning that the introduction of dust-containing gas into the water bath dust removing device should be avoided under the condition that no water or water is in shortage in the dust remover body.
The utility model discloses set up and stored up the silt room, because it is solitary dismantled and assembled cavity to store up the silt room, and the bottom in retaining chamber is the toper, the retaining chamber falls into the projection of storing up the silt room in vertical side with the projection of storing up silt room junction in vertical side inside, so when dusty gas constantly carries to the retaining intracavity, the influence that the air current caused to the particle impurity that has already deposited in storing up the silt room is very little, avoided the air current to the impact of deposit impurity and the dust removal water that leads to lasts muddy. In addition, the silt storage chamber is provided with a silt discharge port, so that impurities deposited in the silt storage chamber can be discharged, and the silt storage chamber is convenient to deeply clean due to the detachable flange connection mode.
Furthermore, a spiral pipe is arranged in the preorder processing device, the inlet end of the spiral pipe is communicated with the second inlet, and the outlet end of the spiral pipe is communicated with the second outlet.
The utility model discloses add and establish preorder processing apparatus to before dirty gas gets into the dust remover body, carry out preorder processing work to dirty gas. When the dust-containing gas enters the spiral pipe in the pre-treatment device from the second inlet, the valve at the first water inlet is opened at the same time, and water flow is conveyed into the spiral pipe; because the special structure of spiral pipe for the water of removing dust is in the spiral pipe and is fully contacted with dirty gas, takes away the granule impurity that exists in the dirty gas in a large number, because the continuous effect of rivers again makes granule impurity wash down along the spiral pipe, finally gets into in this internal retaining chamber of dust remover. The dust-containing gas enters the water storage cavity after being processed in the preorder for further processing.
Further, the dust remover body is internally provided with a water storage cavity and a spraying cavity, the water storage cavity is positioned below the spraying cavity, a baffle is arranged between the water storage cavity and the spraying cavity, and a vent hole penetrating in the vertical direction is formed in the geometric center of the baffle.
The utility model discloses an air vent is arranged in passing through dusty gas to spraying the chamber from the retaining intracavity. The baffle plate arranged beside the vent hole limits the flow path of the gas.
Further, the first inlet is communicated with the water storage cavity, a water level sensor is further arranged on the inner wall of the water storage cavity, and the position of the water level sensor in the vertical direction is highly located between the first inlet and the edge of the baffle.
The utility model discloses a valve electric connection of water level sensor and the delivery port department on the storage silt chamber lateral wall, when water level sensor monitor the water level in the retaining chamber and be higher than the predetermined standard, then the valve of control delivery port department is opened to carry out the drainage operation. Generally, the water discharging operation and the water feeding operation are performed simultaneously, and the combined water inflow at the first and second water inlets should be adjusted to control the water inflow and the water discharge to be equivalent.
Further, the height from the geometric center of the baffle to the edge of the baffle is gradually reduced; and a communicating pipe is arranged at a position, close to the edge of the baffle, on the baffle, the vertical position at the top end of the communicating pipe is lower than the height of the vent hole, and the height of the communicating pipe to the value at the bottom end is higher than the height of the water level sensor.
In the water bath dust removal device, when the dust-containing gas is transferred from the water storage cavity to the spraying cavity, the dust-containing proportion in the gas is greatly reduced, but some particle impurities which are not removed still exist, so that the spraying cavity is arranged, and the remaining particle impurities are taken away by the sprayed fine water mist. Because the structure of baffle sets for, the water smoke that sprays can gather in the triangle space between the inner wall of baffle and dust remover body, when the water level exceeds the top of communicating pipe, water can flow into the retaining chamber through communicating pipe automatically. And because the pipe diameter of the communicating pipe is small, and the structure of the baffle is set, the airflow automatically moves to the vent hole, and the gas is difficult to escape from the communicating pipe.
Furthermore, a spraying device is arranged in the spraying cavity and comprises a first rotating ring, a second water inlet is formed in the geometric center of the first rotating ring and connected with at least one arc-shaped pipeline, and a plurality of spray heads are arranged on the arc-shaped pipeline.
Further, the second water inlet is communicated with the water storage device through a pipeline.
Furthermore, the side wall and the top side wall of the spraying cavity are internally provided with internal spaces which are mutually communicated, the internal space of the top side wall of the spraying cavity is provided with a second rotating ring, the internal space of the side wall of the spraying cavity is provided with a connecting rod, one end of the connecting rod is connected with the edge of the second rotating ring, and the other end of the connecting rod is connected with the edge of the first rotating ring; and a rotating motor is arranged at the geometric center of the second rotating ring.
The utility model discloses a spray the intracavity spray the effect and realize through fixing the shower nozzle on first rotatory ring, the rotatory drive that passes through the rotatory ring of second of first rotatory ring, and the rotatory rotation of second rotatory ring is realized by the rotating electrical machines. It is known that the second water inlet on the first rotating ring communicates with an external water reservoir to enable the supply of water to the arc-shaped conduit and the spray head. Preferably, the first rotating ring is provided with four arc-shaped pipelines, and the combined shape formed by the arc-shaped pipelines and the first rotating ring is a centrosymmetric figure taking the second water inlet as a geometric center; so set up to make the water smoke that sprays cover more evenly, dust removal effect is better.
Furthermore, a filter screen is arranged at the joint of the silt storage chamber and the water outlet.
To sum up, owing to adopted above-mentioned technical scheme, the beneficial effects of the utility model are that:
1. the utility model relates to a high-efficient water-bath dust collector has add preorder processing apparatus, before dusty gas gets into the dust remover body for rivers and dusty gas contact in the spiral pipe, adsorb large granule impurity first, make its deposit to retaining chamber bottom more easily. Finally, the aim of improving the dust removal effect is achieved.
2. The utility model relates to a high-efficiency water bath dust removal device, which is provided with a silt storage chamber, can preliminarily treat dust removal wastewater, discharge deposited impurities from a silt discharge port and discharge filtered wastewater from a water discharge port; because the structure of the silt storage chamber is set, the dust removal water caused by the impact of airflow on deposited impurities is prevented from being continuously turbid.
3. The utility model relates to a high-efficient water-bath dust collector stores up for dismantled and assembled flange joint between silt room and the dust remover body, can demolish storing up the silt room when dust collector stops, is convenient for carry out deep cleanness to storing up the silt room.
4. The utility model relates to a high-efficient water-bath dust collector can carry to outside purifier by delivery port exhaust dust removal waste water, purifier communicates with outside water storage device again, water storage device and first water inlet and second water inlet intercommunication to this has realized the holistic water circulation of dust collector, has improved resource utilization.
Drawings
The invention will now be described, by way of example, with reference to the accompanying drawings, in which:
fig. 1 is a schematic front view of the present invention;
fig. 2 is a schematic view of the internal structure of the utility model in front view;
FIG. 3 is a schematic view of the spraying device of the present invention;
in the figure, 1-a dust remover body, 11-a first inlet, 12-a first outlet, 13-a water storage cavity, 14-a spraying cavity, 15-a baffle, 16-a vent hole, 17-a water level sensor, 18-a communicating pipe, 2-a pre-processing device, 21-a second inlet, 22-a second outlet, 23-a first water inlet, 24-a spiral pipe, 3-a silt storage chamber, 31-a water outlet, 32-a silt discharging port, 33-a filter screen, 4-a water purifying device, 5-a water storage device, 6-a spraying device, 61-a first rotating ring, 62-a second water inlet, 63-an arc pipeline, 64-a spray head, 65-a second rotating ring, 66-a connecting rod and 67-a rotating motor.
Detailed Description
All of the features disclosed in this specification, or all of the steps in any method or process so disclosed, may be combined in any combination, except combinations of features and/or steps that are mutually exclusive.
It is noted that relational terms such as "first" and "second," and the like, may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising an … …" does not exclude the presence of other identical elements in a process, method, article, or apparatus that comprises the element.
The present invention will be described in detail with reference to fig. 1, 2 and 3.
Example 1
A high-efficiency water bath dust removal device is shown in figures 1 and 2 and comprises a dust remover body 1 and a pre-treatment device 2, wherein a first inlet 11 is arranged on the side wall of the dust remover body 1, a first outlet 12 is arranged at the top of the dust remover body 1, a second inlet 21 is arranged at the top of the pre-treatment device 2, a second outlet 22 is arranged at the bottom of the pre-treatment device 2, and the second outlet 22 is connected with the first inlet 11 through a pipeline; the height of the second outlet 22 in the vertical direction is greater than the height of the first inlet 11 in the vertical direction; the duct side wall of the second inlet 21 is connected to a first water inlet 23.
The utility model discloses add and establish preorder processing apparatus 2 to before dirty gas gets into dust remover body 1, carry out preorder processing work to dirty gas. Dusty gas is in the utility model discloses interior circulation route does: the dust-containing gas enters the pre-treatment device 2 from the second inlet 21, is output from the second outlet 22, enters the water storage cavity 13 in the dust remover body 1 from the first inlet 11, is fully mixed with water, is transited to the spraying cavity 14 from the water storage cavity 13, and is finally discharged from the first outlet 12 at the top of the dust remover body 1.
Example 2
As shown in fig. 2, the bottom of the dust collector body 1 is connected with a silt storage chamber 3 through a flange, and a water outlet 31 and a silt discharge port 32 are arranged on the side wall of the silt storage chamber 3; the water outlet 31 is connected with an external water purifying device 4 through a pipeline, the water purifying device 4 is communicated with an external water storage device 5, and the water storage device 5 is communicated with the first water inlet 23.
Because store up silt chamber 3 and be solitary dismantled and assembled cavity, and the bottom of retaining chamber 13 is the toper, retaining chamber 13 falls into the projection of retaining chamber 3 in vertical direction with the projection of the opening of storing up silt 3 junction inside in vertical direction, so when dusty gas constantly carries to retaining chamber 13 in, the influence that the air current caused to the particle impurity that has depositionally in storing up silt chamber 3 is very little, avoided the air current to deposit impurity's impact and the dust removal water that leads to and continue to be muddy. In addition, the silt storage chamber 3 is provided with a silt discharge port 32 which can discharge impurities deposited in the silt storage chamber 3, and the silt storage chamber 3 can be cleaned deeply due to the detachable flange connection mode.
Example 3
As shown in fig. 2, a spiral pipe 24 is arranged in the pretreatment device 2, the inlet end of the spiral pipe 24 is communicated with the second inlet 21, and the outlet end of the spiral pipe 24 is communicated with the second outlet 22.
When the dust-containing gas enters the spiral pipe 24 in the pre-treatment device 2 from the second inlet 21, the valve at the first water inlet 23 is opened at the same time, and water flow is conveyed into the spiral pipe 24; because the special structure of the spiral pipe 24, the dust removal water is fully contacted with the dust-containing gas in the spiral pipe 24, a large amount of particle impurities existing in the dust-containing gas are taken away, and due to the continuous action of water flow, the particle impurities are washed downwards along the spiral pipe 24 and finally enter the water storage cavity 13 in the dust remover body 1. The dust-containing gas enters the water storage cavity 13 after the pre-treatment for the next treatment.
Example 4
The present embodiment is different from embodiment 1 in that:
as shown in fig. 2, a water storage cavity 13 and a spraying cavity 14 are arranged inside the dust collector body 1, the water storage cavity 13 is located below the spraying cavity 14, a baffle 15 is arranged between the water storage cavity and the spraying cavity 14, and a vent hole 16 penetrating in the vertical direction is arranged at the geometric center of the baffle 15.
The first inlet 11 is communicated with the water storage cavity 13, a water level sensor 17 is further arranged on the inner wall of the water storage cavity 13, and the position height of the water level sensor 17 in the vertical direction is located between the first inlet 11 and the edge of the baffle 15.
The height from the geometric center of the baffle 15 to the height from the edge of the baffle 15 is gradually reduced; and a communicating pipe 18 is arranged on the baffle 15 and close to the edge of the baffle 15, the height of the vertical position of the top end of the communicating pipe 18 is lower than that of the vent hole 16, and the height of the numerical value of the bottom end of the communicating pipe 18 is higher than that of the water level sensor 17.
In the water bath dust removing device, when the dust-containing gas is transferred from the water storage cavity 13 to the spraying cavity 14, the dust-containing proportion in the gas is greatly reduced, but some particle impurities which are not removed still exist, so the spraying cavity 14 is arranged, and the remaining particle impurities are taken away by the sprayed fine water mist. Due to the structure of the baffle 15, the sprayed water mist can be accumulated in the triangular space between the baffle 15 and the inner wall of the dust remover body 1, and when the water level is higher than the top end of the communicating pipe 18, the water can automatically flow into the water storage cavity 13 through the communicating pipe 18. In addition, because the diameter of the communication pipe 18 is small, and the structure of the baffle 15 is set, the airflow automatically moves to the vent hole 16, and the gas is difficult to escape from the communication pipe 18. The water level sensor 17 is electrically connected with a valve at the water outlet 31 on the side wall of the silt storage chamber 3, and when the water level sensor 17 monitors that the water level in the water storage cavity 13 is higher than a preset standard, the valve at the water outlet 31 is controlled to be opened so as to perform water drainage operation. Generally, the water discharging operation and the water feeding operation are simultaneously performed, and the combined water inflow at the first and second water inlets 23 and 62 should be adjusted to control the water inflow and the water discharge to be equivalent.
Example 5
As shown in fig. 2 and 3, a spraying device 6 is disposed in the spraying chamber 14, the spraying device 6 includes a first rotating ring 61, a second water inlet 62 is disposed at a geometric center of the first rotating ring 61, the second water inlet 62 is connected to at least one arc-shaped pipe 63, and a plurality of nozzles 64 are disposed on the arc-shaped pipe 63.
The second water inlet 62 is communicated with the water storage device 5 through a pipeline.
The side wall and the top side wall of the spraying cavity 14 are internally provided with internal spaces which are mutually communicated, the inside of the top side wall of the spraying cavity 14 is provided with a second rotating ring 65, the inside of the side wall of the side surface of the spraying cavity 14 is provided with a connecting rod 66, one end of the connecting rod 66 is connected with the edge of the second rotating ring 65, and the other end of the connecting rod 66 is connected with the edge of the first rotating ring 61; a rotating motor 67 is arranged at the geometric center of the second rotating ring 65.
The utility model discloses a spray the effect in the chamber 14 and realize through the shower nozzle of fixing on first rotatory ring 61, the rotatory drive that passes through second rotatory ring 65 of the rotation of first rotatory ring 61, and the rotation of second rotatory ring 65 is realized by rotating electrical machines 67. Preferably, the first rotating ring 61 of the present invention is provided with four arc-shaped pipes 63, and the combined shape of the arc-shaped pipes 63 and the first rotating ring 61 is a centrosymmetric pattern with the second water inlet 62 as a geometric center; so set up to make the water smoke that sprays cover more evenly, dust removal effect is better.
The above description is only for the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art can be covered within the protection scope of the present invention without the changes or substitutions conceived by the inventive work within the technical scope disclosed by the present invention. Therefore, the protection scope of the present invention should be subject to the protection scope defined by the claims.
Claims (9)
1. The utility model provides a high-efficient water-bath dust collector which characterized in that: the dust remover comprises a dust remover body (1) and a preorder processing device (2), wherein a first inlet (11) is formed in the side wall of the dust remover body (1), a first outlet (12) is formed in the top of the dust remover body (1), a second inlet (21) is formed in the top of the preorder processing device (2), a second outlet (22) is formed in the bottom of the preorder processing device (2), and the second outlet (22) is connected with the first inlet (11) through a pipeline; the height of the second outlet (22) in the vertical direction is greater than the height of the first inlet (11) in the vertical direction; a first water inlet (23) is connected to the side wall of the pipeline of the second inlet (21);
the bottom of the dust remover body (1) is connected with a silt storage chamber (3) through a flange, and a water outlet (31) and a silt discharge port (32) are formed in the side wall of the silt storage chamber (3); the water outlet (31) is connected with an external water purifying device (4) through a pipeline, the water purifying device (4) is communicated with an external water storage device (5), and the water storage device (5) is communicated with the first water inlet (23).
2. The high-efficiency dust collector through water bath as claimed in claim 1, wherein: a spiral pipe (24) is arranged in the preorder processing device (2), the inlet end of the spiral pipe (24) is communicated with the second inlet (21), and the outlet end of the spiral pipe (24) is communicated with the second outlet (22).
3. The high-efficiency dust collector through water bath as claimed in claim 1, wherein: the dust remover comprises a dust remover body (1), wherein a water storage cavity (13) and a spraying cavity (14) are arranged inside the dust remover body (1), the water storage cavity (13) is located below the spraying cavity (14), a baffle (15) is arranged between the water storage cavity and the spraying cavity, and a vent hole (16) penetrating in the vertical direction is formed in the geometric center of the baffle (15).
4. The high-efficiency dust collector unit of claim 3, wherein: the first inlet (11) is communicated with the water storage cavity (13), a water level sensor (17) is further arranged on the inner wall of the water storage cavity (13), and the position of the water level sensor (17) in the vertical direction is highly positioned between the first inlet (11) and the edge of the baffle (15).
5. The high-efficiency dust collector unit of claim 4, wherein: the height of the geometric center of the baffle (15) is gradually reduced to the height of the edge of the baffle (15); and a communicating pipe (18) is arranged at a position, close to the edge of the baffle plate (15), on the baffle plate (15), the height of the vertical position at the top end of the communicating pipe (18) is lower than that of the vent hole (16), and the height of the numerical value at the bottom end of the communicating pipe (18) is higher than that of the water level sensor (17).
6. The high-efficiency dust collector unit of claim 3, wherein: the spraying device (6) is arranged in the spraying cavity (14), the spraying device (6) comprises a first rotating ring (61), a second water inlet (62) is formed in the geometric center of the first rotating ring (61), the second water inlet (62) is connected with at least one arc-shaped pipeline (63), and a plurality of spray heads (64) are arranged on the arc-shaped pipeline (63).
7. The high-efficiency dust collector unit of claim 6, wherein: the second water inlet (62) is communicated with the water storage device (5) through a pipeline.
8. The high-efficiency dust collector unit of claim 6, wherein: the side wall and the top side wall of the spraying cavity (14) are internally provided with internal spaces which are mutually communicated, the internal space of the top side wall of the spraying cavity (14) is provided with a second rotating ring (65), the internal space of the side wall of the side surface of the spraying cavity (14) is provided with a connecting rod (66), one end of the connecting rod (66) is connected with the edge of the second rotating ring (65), and the other end of the connecting rod is connected with the edge of the first rotating ring (61); and a rotating motor (67) is arranged at the geometric center of the second rotating ring (65).
9. The high-efficiency dust collector through water bath as claimed in claim 1, wherein: a filter screen (33) is arranged at the joint of the silt storage chamber (3) and the water outlet (31).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201920720448.9U CN210186696U (en) | 2019-05-20 | 2019-05-20 | High-efficient water-bath dust collector |
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201920720448.9U CN210186696U (en) | 2019-05-20 | 2019-05-20 | High-efficient water-bath dust collector |
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| Publication Number | Publication Date |
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| CN210186696U true CN210186696U (en) | 2020-03-27 |
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| CN201920720448.9U Active CN210186696U (en) | 2019-05-20 | 2019-05-20 | High-efficient water-bath dust collector |
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Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN114225595A (en) * | 2021-12-29 | 2022-03-25 | 贵州互惠混凝土机械服务有限公司 | Dust filtering device |
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2019
- 2019-05-20 CN CN201920720448.9U patent/CN210186696U/en active Active
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN114225595A (en) * | 2021-12-29 | 2022-03-25 | 贵州互惠混凝土机械服务有限公司 | Dust filtering device |
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