CN201842482U - Back-end dust collecting and discharging air conveyance system for industrial manufacturing process - Google Patents
Back-end dust collecting and discharging air conveyance system for industrial manufacturing process Download PDFInfo
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- CN201842482U CN201842482U CN2010202840097U CN201020284009U CN201842482U CN 201842482 U CN201842482 U CN 201842482U CN 2010202840097 U CN2010202840097 U CN 2010202840097U CN 201020284009 U CN201020284009 U CN 201020284009U CN 201842482 U CN201842482 U CN 201842482U
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- blanking
- air
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Abstract
A back-end dust collecting and discharging air conveyance system for industrial manufacturing process comprises at least one dust collecting machine, an air conveyance pipeline and a filter dust collecting machine, wherein the dust collecting machines below a single working part form a dust collecting machine set; the dust collecting machines of each set are in series connection with a conveying pipe; the lower portion of an opening of each dust collecting machine is connected with the conveying pipe; the dust collecting machine of each set is connected with an air blower; the air blower is used for blowing the dust falling into the dust collecting machine into an air conveying pipe; the air conveyance pipeline is connected with the conveying pipes; openings are respectively arranged at the front end and the back end of the air conveyance pipeline; the opening at the front end is connected with a filter to filter the absorbed air impurities; the dust falls into the filter dust collecting machine; an air draft hole is arranged on the filter dust collecting machine; and the air blower absorbs a great quantity of air and absorbs dust falling into the air conveyance pipeline to the opening at the back end of the air conveyance pipeline so that the dust falls into the filter dust collecting machine. By the aid of the back-end dust collecting and discharging air conveyance system, production departments are free of dust pollution, dust can not be kicked up, and the capacity of the collected dust can be reduced by one thirds after being treated and compressed integrally.
Description
Technical field
The utility model is relevant for a kind of dust collecting, and the empty communication system of back segment control of dust blanking is made in especially a kind of industry.
Background technology
The dust that is produced in the processing procedure of chemical frbre industry in the prior art all must rely on manpower and collect the packing processing, but usually for want of desirable dust-collecting equipment, the dirt bits that often make processing and produced fly upward everywhere, not only cause the dirty and messy of operation place, suck too much dust simultaneously and also hinder the health of respiratory system, remain to manage to solve the improver certainly.
The utility model content
Of the present utility model for solving the problem on the above-mentioned prior art, propose a kind of industry and make the empty communication system of back segment control of dust blanking, using does not need to rely on manpower, can not influence health, and the utility model is applicable to the collection of the dust that quartz conductor, photoelectricity industry, printed circuit board (PCB), liquid crystal display gas, solar film battery, other chemical frbre industry are produced.
Make back segment control of dust blanking air transportation system for proposing a kind of industry in the utility model that achieves the above object, comprise: at least one precipitron; This precipitron is used for collecting the dust that is fallen by the work parts; Precipitron under the same work parts forms a control of dust mantle group; When the precipitron number more than for the moment, the precipitron of each cover group is parallel to a carrier pipe, the hollow space of this carrier pipe inside in the lower opening of each precipitron connects; Wherein the precipitron of each cover group connects an air blast, and the dust that this air blast will fall in this precipitron is blown in the defeated pipeline of this sky, disposes a rotating blanking valve in this carrier pipe distal opening; One empty defeated pipeline, the defeated pipeline of this sky are provided with several to blanking hole that should rotating blanking valve, and this blanking hole connects corresponding rotating blanking valve, so that this dust when falling, falls in the defeated pipeline of this sky via this blanking hole; Respectively there is an opening the defeated pipeline front and back end of this sky, and this front opening connects extraneous by a filter, and this filter filters the outside air impurity that sucks; One filters precipitron, and this dust falls in this filtration precipitron; Dispose a filter in this filtration precipitron, this filter can carry out the action of control of dust; And this filtration precipitron still has an exhausting hole, and this exhausting hole disposes an air blast, and this air blast pushes away to draw falling in this filtration precipitron the dust that falls in the defeated pipeline of this sky is failed the open rearward end of pipeline to this sky after with a large amount of air intakes; Wherein this filtration precipitron lower ending opening disposes a precipitron baiting valve, so that this dust falls via this precipitron baiting valve; And a capacity-reduction device, this capacity-reduction device top has an opening, this opening to connect this this filtration precipitron lower ending opening, so that this dust falls in this capacity-reduction device, and carries out the compression of dust volume.
The technical scheme that the utility model provides is: back segment control of dust blanking air transportation system is made in a kind of industry, it comprises: at least one precipitron, each precipitron has a side openings and a lower opening at least, and this precipitron is collected the dust that is fallen by the work parts; At least one precipitron under the same work parts forms a control of dust mantle group; Precipitron in each cover group is parallel to respectively a carrier pipe, and the lower opening of each precipitron connects the hollow space of this carrier pipe inside; Wherein the precipitron of each cover group connects an air blast, and the dust that this air blast function will fall in this precipitron blows off to the carrier pipe of correspondence; The defeated pipeline of sky, the defeated pipeline of this sky connects respectively the carrier pipe of each control of dust mantle group, and respectively there is an opening the defeated pipeline front and back end of this sky, and this front opening connects extraneous by a filter, and this filter filters the outside air impurity that sucks; And a filtration precipitron, this filtration precipitron has a left end opening and lower ending opening, and this left end opening connects the defeated pipeline open rearward end of this sky, collects so that this dust falls in this filtration precipitron; And this filtration precipitron has an exhausting hole, and this exhausting hole disposes an air blast, and this air blast is with a large amount of air intakes, and the dust that attracts to fall in the defeated pipeline of this sky falls in this filtration precipitron to the open rearward end of the defeated pipeline of this sky.
The beneficial effects of the utility model are: can make does not have dust pollution in the workshop, and dust can not kicked up.The dust of being collected can reach to subtract and hold 1/3 after compressing through unified processing.And has energy-conservation design.
Description of drawings
Fig. 1 shows assembly detail drawing of the present utility model.
Fig. 2 shows application drawing of the present utility model
The specific embodiment
Now careful just this later-model structure is formed, and the effect and the advantage that can produce, and cooperates graphicly, and act originally later-model preferred embodiment is described in detail as follows.
Please refer to shown in Figure 1ly, show that industry of the present utility model makes the empty communication system of back segment control of dust blanking, comprise following assembly:
Several precipitrons 1, each precipitron have a side openings 10 and a below opening 11.This precipitron is used to collect the dust that is fallen by the work parts, this dust such as silicon dioxide, CVD dust.In the use can one work parts near several precipitrons 1 of configuration, with sufficient collection dust.
Several precipitrons of same work parts below form a control of dust mantle group 100.As four precipitrons of a control of dust mantle group 100 configuration in this example.In example shown in Figure 2, first row has two control of dust mantle groups 100, has eight precipitrons 1; Second series has two control of dust mantle groups 100, has eight precipitrons 1; The 3rd row has two control of dust mantle groups 100, has eight precipitrons 1.Therefore form the structure of three row.The utility model can expand this structure, in use to adapt to the needs of actual factory.
Wherein this precipitron is the magazine-type precipitron.
The precipitron of each cover group is parallel to a carrier pipe 12, the hollow space of this carrier pipe inside in the lower opening of each precipitron connects.Wherein the precipitron of each cover group connects an air blast 101, and the dust that this air blast 101 will fall in this precipitron 1 blows, so that the dust in each precipitron 1 can drop to corresponding carrier pipe 12, and is accumulated in the carrier pipe 12.Each delivery pipe 12 configurations one auger loader 121; Dispose a rotary unloading valve 13 in these delivery pipe 12 end openings.
Be accumulated in the dust of the hollow space in this delivery pipe 12, dust taken to this rotary unloading valve 13, when dust is pulled to the end openings of this delivery pipe 12, by the rotation of this rotary unloading valve 13 thereby fall by this auger loader 121.
One empty defeated pipeline 2, the defeated pipeline 2 of this sky are provided with several to blanking hole that should rotating blanking valve 13, and this blanking hole connects corresponding rotating blanking valve, so that this dust when falling, falls in the defeated pipeline of this sky via this blanking hole.Respectively there is an opening the defeated pipeline front and back end of this sky, and this front opening 21 connects a filter 200, is used for filtering the air plankton that sucks.
One filters precipitron 3, and this filtration precipitron has a left end opening 31 and lower ending opening 33, and this left end opening 31 connects the defeated pipeline open rearward end 22 of this sky, so that this dust falls in this filtration precipitron 3.Dispose a filter in this filtration precipitron 3, this filter can carry out the action of control of dust.And this filtration precipitron 3 still has an exhausting hole 32, and this exhausting hole disposes an air blast 210, and this air blast is with a large amount of air intakes, and the dust that attracts to fall in the defeated pipeline of this sky falls in this filtration precipitron 3 to the open rearward end 22 of the defeated pipeline of this sky.
Wherein these filtration precipitron 3 lower ending openings dispose a precipitron baiting valve 4, make this dust fall via this precipitron baiting valve 4.This precipitron baiting valve 4 can be the baiting valve of a rotation form.
One capacity-reduction device 5, there is an opening this capacity-reduction device top, and this opening 51 connects this and filters precipitron 3 lower ending openings 33, so that this dust falls in this capacity-reduction device 5, and carries out the compression of dust volume.
Wherein this capacity-reduction device disposes a motor 510 and a delivery tube 520, and this delivery tube disposes an auger loader 521; This delivery tube end has a delivery port 522.After this dust volume compression, push to this delivery tube via this motor, dust is taken to the delivery port 522 of this delivery tube end by the auger loader in this delivery tube 521, accept this dust with a primary and secondary chassis 6, after treating that dust collection arrives to a certain degree, just change empty primary and secondary chassis and take over.
Wherein can load space bag or compressed package in this primary and secondary chassis ... wait article, with convenient directly pack.
Use of the present utility model does not need to rely on manpower, can not influence health, and the utility model is applicable to the collection of quartz conductor, photoelectricity industry, dust that printed circuit board (PCB), Liquid Crystal Display (LCD), solar film battery, other chemical frbre industry produced, advantage wherein of the present utility model is: do not have dust pollution, and dust can not kicked up.The dust of being collected can reach to subtract and hold 1/3 after compressing through unified processing.And has energy-conservation design.
Above-listed detailed description is specifying at a possible embodiments of the present utility model, only this embodiment is not in order to limit claim of the present utility model, allly do not break away from the equivalence that the utility model skill spirit does and implement or change, all should be contained in the claim of the present utility model.
Claims (10)
1. the empty communication system of back segment control of dust blanking is made in an industry, it is characterized in that comprising:
At least one precipitron, each precipitron have a side openings and a lower opening at least, and this precipitron is collected the dust that is fallen by the work parts;
At least one precipitron under the same work parts forms a control of dust mantle group; Precipitron in each cover group is parallel to respectively a carrier pipe, and the lower opening of each precipitron connects the hollow space of this carrier pipe inside; Wherein the precipitron of each cover group connects an air blast, and the dust that this air blast function will fall in this precipitron blows off to the carrier pipe of correspondence;
The defeated pipeline of sky, the defeated pipeline of this sky connects the delivery pipe of each control of dust mantle group respectively, and respectively there is an opening the defeated pipeline front and back end of this sky, and this front opening connects extraneous by a filter, and this filter filters the outside air impurity that is sucked; And
One is filtered precipitron, and this filtration precipitron has a left end opening and lower ending opening, and this left end opening connects the defeated pipeline open rearward end of this sky, collects so that this dust falls in this filtration precipitron; And this filtration precipitron has an exhausting hole, and this exhausting hole disposes an air blast, and this air blast is with a large amount of air intakes, and the dust that attracts to fall in the defeated pipeline of this sky falls in this filtration precipitron to the open rearward end of the defeated pipeline of this sky.
2. the empty communication system of back segment control of dust blanking is made in industry as claimed in claim 1, it is characterized in that, at rotary unloading valve of this delivery pipe end openings configuration respectively; The defeated pipeline of this sky is provided with several to blanking hole that should the rotary unloading valve, and this blanking hole connects corresponding rotary unloading valve, when this dust falls, falls into the defeated pipeline of this sky via this blanking hole.
3. the empty communication system of back segment control of dust blanking is made in industry as claimed in claim 1 or 2, it is characterized in that, disposes a filter in this filtration precipitron.
4. back segment control of dust blanking air transportation system is made in industry as claimed in claim 1 or 2, it is characterized in that, this filtration precipitron lower ending opening disposes a precipitron baiting valve, and this dust falls via this precipitron baiting valve; And, a capacity-reduction device, this capacity-reduction device top has an opening, this opening to connect this this filtration precipitron lower ending opening, and this dust falls in this capacity-reduction device, and carries out the compression of dust volume.
5. the empty communication system of back segment control of dust blanking is made in industry as claimed in claim 1 or 2, it is characterized in that this precipitron is the magazine-type precipitron.
6. the empty communication system of back segment control of dust blanking is made in industry as claimed in claim 2, it is characterized in that auger loader of each delivery pipe configuration; Be accumulated in the dust of the hollow space in this delivery pipe, dust taken to this rotary unloading valve, when dust is pulled to the end openings of this delivery pipe, by the rotation of this rotary unloading valve thereby fall by this auger loader.
7. the empty communication system of back segment control of dust blanking is made in industry as claimed in claim 4, it is characterized in that the precipitron baiting valve of this filtration precipitron lower end is the baiting valve of rotation form.
8. back segment control of dust blanking air transportation system is made in industry as claimed in claim 4, it is characterized in that, this capacity-reduction device disposes a motor and a delivery tube, auger conveyor of this delivery tube configuration; This delivery tube end has a delivery outlet; After the compression of this dust volume, push to this delivery tube via this motor, by the auger conveyor in this delivery tube dust is taken to the delivery outlet of this delivery tube end, accept this dust with the space bag.
9. the empty communication system of back segment control of dust blanking is made in industry as claimed in claim 1, it is characterized in that other comprises at least one primary and secondary chassis, and this primary and secondary chassis is positioned at this capacity-reduction device below and is used to accept the dust that falls.
10. back segment control of dust blanking air transportation system is made in industry as claimed in claim 1, it is characterized in that the space bag that loading can directly pack in this primary and secondary chassis.
Priority Applications (1)
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CN2010202840097U CN201842482U (en) | 2010-08-06 | 2010-08-06 | Back-end dust collecting and discharging air conveyance system for industrial manufacturing process |
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CN2010202840097U CN201842482U (en) | 2010-08-06 | 2010-08-06 | Back-end dust collecting and discharging air conveyance system for industrial manufacturing process |
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CN2010202840097U Expired - Fee Related CN201842482U (en) | 2010-08-06 | 2010-08-06 | Back-end dust collecting and discharging air conveyance system for industrial manufacturing process |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102328277A (en) * | 2011-09-14 | 2012-01-25 | 天津中屹铭科技有限公司 | Cast post-processing workshop-level production control system |
CN103922127A (en) * | 2014-03-27 | 2014-07-16 | 安徽蒂王集团食品有限公司 | Novel material receiving device |
-
2010
- 2010-08-06 CN CN2010202840097U patent/CN201842482U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102328277A (en) * | 2011-09-14 | 2012-01-25 | 天津中屹铭科技有限公司 | Cast post-processing workshop-level production control system |
CN103922127A (en) * | 2014-03-27 | 2014-07-16 | 安徽蒂王集团食品有限公司 | Novel material receiving device |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20110525 Termination date: 20160806 |
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CF01 | Termination of patent right due to non-payment of annual fee |