CN206456978U - Central cleaner multiple spot gas delivery system - Google Patents
Central cleaner multiple spot gas delivery system Download PDFInfo
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- CN206456978U CN206456978U CN201720151919.XU CN201720151919U CN206456978U CN 206456978 U CN206456978 U CN 206456978U CN 201720151919 U CN201720151919 U CN 201720151919U CN 206456978 U CN206456978 U CN 206456978U
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- gas
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- storehouse pump
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Abstract
The utility model is related to a kind of central cleaner multiple spot gas delivery system, it includes the deduster set at each dust generation, the side of each deduster, which is distinguished, adjacent is provided with a storehouse pump, the discharging opening of each deduster is connected with the feeding mouth of adjacent storehouse pump by valve and pipeline sealing, the gas access of each storehouse pump is connected with the outlet of source of the gas by valve and pipeline sealing, and the discharging opening of storehouse pump is connected by valve and pipeline with the inlet seal of bulk cement storage tank;Realize that the dust collected in each deduster is uniformly delivered to bulk cement storage tank by pipeline using storehouse pump, it is middle compared with prior art that deashing is carried using manpower or vehicle, it can prevent dust from being waved everywhere in handling process, the Pipeline transport of dust is carried out by blower fan in compared with prior art, storehouse pump conveying can make the distance of Pipeline transport longer, it is adaptable to the dust collection in large-scale dust generation place and conveying.
Description
Technical field
The utility model is related to a kind of central cleaner multiple spot gas delivery system, for the collection to many places dust with
Conveying.
Background technology
Multiple spot dedusting induction system of the prior art, it is general to use the installation at each generation dust to catch suction hood,
Respectively catch suction hood to be connected with air exhauster by pipeline, the dust for aspirating and coming everywhere is sent into one or more dedusters by air exhauster
In, dust is filtered out coming in deduster from air, so that dustproof function is played, but the mode of this scattered suction is not
It is adapted to the dust conveying of long range, easily accumulation on the inwall of channel bend, needs pipeline when dust is moved in the duct
Often cleaning.
Utility model content
Technical problem to be solved in the utility model is to provide a kind of central cleaner multiple spot gas delivery system, energy
Enough improve the fed distance of dust.
The central cleaner multiple spot gas delivery system includes the deduster set at each dust generation, each deduster
Side distinguish it is adjacent be provided with a storehouse pump, the feeding mouth of the discharging opening of each deduster and adjacent storehouse pump passes through valve and pipeline is sealed
Connection, the gas access of each storehouse pump is connected with the outlet of source of the gas by valve and pipeline sealing, and the discharging opening of storehouse pump passes through valve and pipe
Road is connected with the inlet seal of bulk cement storage tank.
The gas vent being provided with bulk cement storage tank on dust arrester, bulk cement storage tank is connected by the exit seal of pipeline and the source of the gas
It is logical.
Positioned at the outlet of source of the gas at least one Roots blower is provided with also in parallel on the pipeline between the discharging opening of each storehouse pump
Machine, the arrival end of Roots blower and the outlet of source of the gas connects by valve and pipeline sealing, the port of export of Roots blower with respectively
The discharging opening of storehouse pump is connected by valve and pipeline sealing.
It is in parallel on pipeline between the outlet of source of the gas and the gas vent of bulk cement storage tank to be provided with gas cooler, gas cooler
The gas vent of entrance and bulk cement storage tank connected by pipeline sealing, the outlet of gas cooler and the outlet of source of the gas by valve and
Pipeline sealing connection.
It is in parallel on pipeline between the outlet of gas cooler and the outlet of source of the gas to be provided with least one pneumatic filter, gas
The entrance of body filter is connected with the outlet of gas cooler by pipeline sealing, the outlet of pneumatic filter and the outlet of source of the gas
Sealed and connected by pipeline.
Also connected on connecting line between the arrival end of Roots blower and source of the gas provided with a gas bomb, gas bomb
The outlet of entrance and source of the gas is tightly connected by valve and pipeline, the outlet of gas bomb and the arrival end of Roots blower by valve and
Pipeline is tightly connected.
Valve between the feeding mouth of the discharging opening of each deduster and adjacent storehouse pump is Pneumatic valve, the air inlet of the Pneumatic valve with
The port of export of the adjacent air accumulator in side is connected by valve and pipeline sealing.
Valve between the discharging opening of storehouse pump and the entrance of bulk cement storage tank is motor-driven valve.
Relative to prior art, what the utility model had has the technical effect that:
(1)The present invention realizes that the dust collected in each deduster is uniformly delivered to bulk cement storage tank by pipeline using storehouse pump,
It is middle compared with prior art that deashing is carried using manpower or vehicle, it can prevent dust from being waved everywhere in handling process, compare
The Pipeline transport of dust is carried out by blower fan suction in the prior art, pump conveying in storehouse can make the distance of Pipeline transport longer,
Dust collection and conveying suitable for large-scale dust generation place.
(2)The gas vent on dust arrester, bulk cement storage tank is set to connect by the exit seal of pipeline and source of the gas in bulk cement storage tank
It is logical, the gas that the gas after being separated by bulk cement storage tank dedusting is produced with source of the gas can be made to be operated jointly into each storehouse pump,
Enough cycling and reutilizations are allowed gas to, the consumption of gas is reduced.
(3)Roots blower can be cleared up the pipeline that dust is flowed through, and prevent pipeline from blocking.
(4)Gas cooler can be cooled down to the gas flowed through when needed, make gas after the cooling period can again by
Dust is conveyed for storehouse pump, it is adaptable to which the gas after being conveyed to high-temperature dust is cooled down.
(5)Pneumatic filter can be filtered to the gas flowed through when needed, remove in gas the dust that is mixed into or
Particulate matter.
(6)Gas bomb can store enough gas from source of the gas in advance before Roots blower work, make Roots blower
Machine can directly extract the gas in gas bomb after starting, and make to produce in the pipeline of Roots blower more quickly in its rear and set
Fixed pressure.
(7)Pneumatic valve has higher unlatching and confining pressure compared to general valve, valve is had higher resistance to pressure,
Be conducive to keeping the sealing between storehouse pump and adjacent deduster, motor-driven valve has the convenience flexibly controlled, be conducive to
The open and close of higher FREQUENCY CONTROL valve.
Brief description of the drawings
For clear explanation innovative principle of the present utility model and its technical advantage compared to existing product, below by
Illustrate possible embodiment by the non-limiting examples of the application principle in accompanying drawing.In figure:
Fig. 1 is the structure chart of central cleaner multiple spot gas delivery system of the present utility model.
Embodiment
As shown in figure 1, central cleaner multiple spot gas delivery system of the present utility model, including:Source of the gas 1, cushion gas
Source 2, gas bomb 3, Roots blower 1, Roots blower 25, pneumatic filter 1, pneumatic filter 27, gas cooling
Device 8, bulk cement storage tank 9, control valve 11, cooling water inlet 12, coolant outlet 13, Pneumatic valve 14, air accumulator 15, deduster 16, storehouse
Pump 17, bye-pass 1, bye-pass 2 19, bye-pass 3 20 combines branch pipe 21, main pipeline 22, bypass pipe 23, motor-driven valve 24.
Source of the gas 1 and bailout gas 2 are to provide the source of the gas of nitrogen, the outlet of source of the gas 1 and bailout gas 2 respectively by pipeline,
Multiple control valves 11 are connected with the inlet seal of gas bomb 3, and the outlet of gas bomb 3 passes through control valve 11 and pipeline and Roots respectively
Air blower 1, the arrival end of Roots blower 25 are tightly connected, the port of export of Roots blower 1 and Roots blower 25
It is connected respectively by bye-pass 3 20, control valve 11 with the exit seal of source of the gas 1, a storehouse is respectively equipped with each dust generation
The port of export of pump 17, Roots blower 1 and Roots blower 25 passes through control valve 11, the gas of pipeline and each storehouse pump 17 respectively
Body arrival end is tightly connected, and the top of each storehouse pump 17 is respectively equipped with a deduster 16, and deduster 16 can absorb each from porch
Dust at dust generation and by dust collection in the ash hole of deduster 16, the ash hole of deduster 16 and adjacent storehouse pump 17
Feeding mouth be tightly connected by pipeline and Pneumatic valve 14, the discharging opening of each storehouse pump 17 is pooled to one by motor-driven valve 24 and pipeline
It is connected in bar main pipeline 22 and by main pipeline 22 with the inlet seal of bulk cement storage tank 9, sack cleaner is provided with bulk cement storage tank 9,
The dust outlet of bulk cement storage tank 9 is located at its bottom, and the gas vent of bulk cement storage tank 9 is located at its top, the gas vent by pipeline with
The inlet seal connection of gas cooler 8, gas cooler 8 is provided with cooling water inlet 12 and coolant outlet 13, cooling water
In the water channel under corresponding circulating pump drives, in gas coming through cooler 8, carried out with the gas in gas coming through cooler 8
Heat exchange, the outlet of gas cooler 8 passes through control valve 11, pipeline and pneumatic filter 1, pneumatic filter 27 respectively
Arrival end is tightly connected, and pneumatic filter 1, the port of export of pneumatic filter 27 pass through control valve 11, pipeline and gas storage respectively
The inlet seal connection of bottle 3.Bypass line is also parallel between pneumatic filter 1, the entry and exit of pneumatic filter 27
23, bypass pipe 23 is provided with control valve 11.
The main pipeline 22 is connected with the gas access of each storehouse pump 17 by pipeline and the sealing of control valve 11.
The control gas entrance of the Pneumatic valve 14 is connected by pipeline, control valve 11 and the exit seal of the air accumulator 15 of side
Connect, the entrance of air accumulator 15 is connected with another source of the gas by seal for pipe joints, air gauge is provided with the pipeline.
The arrival end that the entrance of the gas cooler 8 also combines branch pipe 21 with one is tightly connected, and combines going out for branch pipe 21
Inlet seal of the mouth end respectively with bye-pass 1 and bye-pass 2 19 is connected, outlet and the Roots blower one of bye-pass 1
4 exit seal connection, the outlet of bye-pass 2 19 is connected with the exit seal of Roots blower 25.
Each control valve 11, drive flow of cooling water each circulating pump and each motor-driven valve 24 electrically connected with central computer and by
Central computer is uniformly controlled.
The course of work of the central cleaner multiple spot gas delivery system includes:The dust produced at each dust generation
Absorbed by each deduster 16, when the Dust Capacity in deduster 16 reaches setting value, between Pneumatic valve 14 and air accumulator 15
Each control valve 11 on pipeline is opened, and the air pressure transmission in air accumulator 15 is directed at the air inlet of each Pneumatic valve 14, the lower section of deduster 16
Pneumatic valve 14 it is controlled in the case where coming from the effect of the gas pressure in air accumulator 15 open, the dust in each deduster 16 falls into phase
In adjacent storehouse pump 17, when the Dust Capacity in each storehouse pump 17 reaches setting value, the control valve between Pneumatic valve 14 and air accumulator 15
11 are closed, and Pneumatic valve 14 is closed, and each storehouse pump 17 is opened to the corresponding control valve 11 on the outlet connecting pipe road of source of the gas 1, source of the gas 1
The nitrogen of generation reaches the gas access end of each storehouse pump 17 by bye-pass 3 20 and remaining pipeline, and nitrogen enters corresponding storehouse pump
In 17, the pressure in storehouse pump 17 raises rapidly and reaches setting value, now the adjacent control being connected with source of the gas 1 in the outside of storehouse pump 17
Valve 11 is closed, and computer controls internal pressure to reach that the motor-driven valve 24 at each storehouse pump 17 of setting value is opened successively, so as to ensure
When any storehouse pump 17 motor-driven valve 24 open when, remaining storehouse pump 17 motor-driven valve 24 be closed, when the electricity of each storehouse pump 17
After dynamic valve 24 is opened, the dust in storehouse pump 17 is mixed with the gases at high pressure of accumulation to be integrated heel row and enters in main pipeline 22, and along master
Pipeline 22 enters in bulk cement storage tank 9, and the mixture of dust and gas is filtered in bulk cement storage tank 9 by sack cleaner therein, dust
Discharged when the dust fallen into the lower end of bulk cement storage tank 9, bulk cement storage tank 9 runs up to set amount from the dust outlet of the bottom of bulk cement storage tank 9, on
State the gas in mixture then to be flowed out by the gas vent of bulk cement storage tank 9, and cooled down through gas cooler 8, if because cloth bag is removed
Dirt device is damaged and failed to separate dust from gas totally, then the gas come out by gas cooler 8 is via pneumatic filter
One 6, pneumatic filter 27 is filtered, and the gas otherwise come out by gas cooler 8 is directly over bypass pipe 23 and reaches source of the gas
1 exit, converges entrance at one with the generation nitrogen of source of the gas 1 and circulates next time.
In above process, if the gas temperature come out by bulk cement storage tank 9 is less than 60 degrees Celsius and without filtering powder again
Dirt, the then gas flowed out by the gas vent of bulk cement storage tank 9 is reached by joint branch pipe 1, bye-pass 1 and bye-pass 2 19
The arrival end of Roots blower 1, Roots blower 25, is then reached the gas of each storehouse pump 17 by the arrival end by pipeline
Entrance and enter circulate next time.
If occurring in that blocking in the pipeline that dust passes through, Roots blower 1, Roots blower 25 are started working,
The gas that source of the gas 1 is sent into gas bomb 3 is pumped out, the rise of air pressure in the pipeline passed the gas through, at the same main pipeline 22 with it is each
Control valve 11 between the gas access of storehouse pump 17 is opened, and the pressure produced by thatch air blower 1, Roots blower 25 is higher
Gas be directly entered without storehouse pump in the pipeline at the discharging opening rear of storehouse pump 17 and main pipeline 22, so as to remove respective tube
Dust in road is blocked, and whole system is continued normal work.
The effect of the source of the gas 1 is supplemented for the gas in whole system, is maintained the normal pressure in pipeline, is worked as gas
Control when source 1 is broken down, on the pipeline that the outlet of bailout gas 2 is connected with the outlet of the entrance, source of the gas 1 of gas bomb 3
Valve 11 is opened, so that bailout gas 2 plays supply instead of source of the gas 1.
Obviously, above-described embodiment is only intended to clearly illustrate the utility model example, and is not to this reality
With the restriction of new embodiment.For those of ordinary skill in the field, may be used also on the basis of the above description
To make other changes in different forms.There is no necessity and possibility to exhaust all the enbodiments.And these
Belong to obvious changes or variations that spirit of the present utility model extends out still in protection domain of the present utility model
Among.
Claims (8)
1. a kind of central cleaner multiple spot gas delivery system, it is characterised in that including:The dedusting set at each dust generation
Device(16), each deduster(16)Side distinguish and adjacent be provided with a storehouse pump(17), each deduster(16)Discharging opening with it is adjacent
Storehouse pump(17)Feeding mouth pass through valve and pipeline sealing connection, each storehouse pump(17)Gas access and source of the gas(1)Outlet pass through
Valve and pipeline sealing connection, storehouse pump(17)Discharging opening pass through valve and pipeline and bulk cement storage tank(9)Inlet seal connection.
2. central cleaner multiple spot gas delivery system according to claim 1, it is characterised in that:Bulk cement storage tank(9)It is interior
Provided with dust arrester, bulk cement storage tank(9)On gas vent pass through pipeline and the source of the gas(1)Exit seal connection.
3. central cleaner multiple spot gas delivery system according to claim 2, it is characterised in that:Positioned at source of the gas(1)
Outlet and each storehouse pump(17)Discharging opening between pipeline on also in parallel be provided with least one Roots blower, Roots blower
Arrival end and source of the gas(1)Outlet pass through valve and pipeline sealing connection, the port of export of Roots blower and each storehouse pump(17)'s
Discharging opening is connected by valve and pipeline sealing.
4. the central cleaner multiple spot gas delivery system according to one of claim 2-3, it is characterised in that:Source of the gas
(1)Outlet and bulk cement storage tank(9)Gas vent between pipeline in parallel be provided with gas cooler(8), gas cooler(8)
Entrance and bulk cement storage tank(9)Gas vent pass through pipeline sealing connection, gas cooler(8)Outlet and source of the gas(1)Go out
Mouth passes through valve and pipeline sealing is connected.
5. central cleaner multiple spot gas delivery system according to claim 4, it is characterised in that:Gas cooler
(8)Outlet and source of the gas(1)Outlet between pipeline on it is in parallel be provided with least one pneumatic filter, pneumatic filter enters
Mouth and gas cooler(8)Outlet pass through pipeline sealing connection, the outlet of pneumatic filter and source of the gas(1)Outlet pass through pipe
Road sealing connection.
6. central cleaner multiple spot gas delivery system according to claim 3, it is characterised in that:Roots blower
Arrival end and source of the gas(1)Between connecting line on also series connection provided with gas bomb(3), gas bomb(3)Entrance and source of the gas
(1)Outlet be tightly connected by valve and pipeline, gas bomb(3)Outlet and the arrival end of Roots blower pass through valve and pipeline
It is tightly connected.
7. central cleaner multiple spot gas delivery system according to claim 1, it is characterised in that:Each deduster(16)
Discharging opening and adjacent storehouse pump(17)Feeding mouth between valve be Pneumatic valve(14), the Pneumatic valve(14)Air inlet and side
Adjacent air accumulator(15)The port of export pass through valve and pipeline sealing connection.
8. central cleaner multiple spot gas delivery system according to claim 1, it is characterised in that:Storehouse pump(17)Go out
Material mouth and bulk cement storage tank(9)Entrance between valve be motor-driven valve(24).
Priority Applications (1)
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CN201720151919.XU CN206456978U (en) | 2017-02-20 | 2017-02-20 | Central cleaner multiple spot gas delivery system |
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CN201720151919.XU CN206456978U (en) | 2017-02-20 | 2017-02-20 | Central cleaner multiple spot gas delivery system |
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CN206456978U true CN206456978U (en) | 2017-09-01 |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109384049A (en) * | 2018-12-04 | 2019-02-26 | 广东信科技有限公司 | A kind of multi-functional central-feed transportation system |
CN112024107A (en) * | 2020-08-03 | 2020-12-04 | 内蒙古双欣环保材料股份有限公司 | Low-temperature crushing system and low-temperature crushing process |
-
2017
- 2017-02-20 CN CN201720151919.XU patent/CN206456978U/en active Active
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109384049A (en) * | 2018-12-04 | 2019-02-26 | 广东信科技有限公司 | A kind of multi-functional central-feed transportation system |
CN109384049B (en) * | 2018-12-04 | 2023-12-08 | 广东信一科技有限公司 | Multifunctional central feeding conveying system |
CN112024107A (en) * | 2020-08-03 | 2020-12-04 | 内蒙古双欣环保材料股份有限公司 | Low-temperature crushing system and low-temperature crushing process |
CN112024107B (en) * | 2020-08-03 | 2023-01-06 | 内蒙古双欣环保材料股份有限公司 | Low-temperature crushing system and low-temperature crushing process |
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
TR01 | Transfer of patent right |
Effective date of registration: 20180323 Address after: 213000 Huichang Road, Xinbei District, Changzhou, Jiangsu Province, No. 8 Patentee after: Jiangsu Zhong Wu Environmental Engineering Co., Ltd. Address before: 213000 Jiangsu Province, Changzhou City New District Longhutang Jiuzhou Garden Building 7 room 1501 a unit Patentee before: Li Guodong |
|
TR01 | Transfer of patent right |