CN209680074U - A kind of charging dedusting and discharge device for reaction kettle - Google Patents
A kind of charging dedusting and discharge device for reaction kettle Download PDFInfo
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- CN209680074U CN209680074U CN201920117797.1U CN201920117797U CN209680074U CN 209680074 U CN209680074 U CN 209680074U CN 201920117797 U CN201920117797 U CN 201920117797U CN 209680074 U CN209680074 U CN 209680074U
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- reaction kettle
- filter device
- communicating pipe
- exhaust tube
- feed pipe
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Abstract
The utility model relates to a kind of charging dedusting for reaction kettle and discharge devices, including filler bin, reaction kettle ontology, filter device, extractor fan and central cleaning shaft, feed pipe and exhaust tube are inserted on the reaction kettle ontology, one end that the feed pipe is located at reaction kettle outer body can be connect with filler bin, one end that the exhaust tube is located at reaction kettle outer body is connected with filter device, exhaust tube, which is located on the intrinsic one end of reaction kettle, is fixedly installed with filter screen, the filter device is connected with extractor fan, the extractor fan is connected with central cleaning shaft, discharge gate is offered on filter device.Little particle dust-filtering can be fallen in feeding, dust is made to be not easy to be mixed into material in reactor, reduce the probability for producing defect ware.
Description
Technical field
The utility model relates to emulsifier manufacture equipment technical field more particularly to it is a kind of for reaction kettle into
Expect dedusting and discharge device.
Background technique
Emulsifier is to refer to improve the surface tension in emulsification system between various compositions, forms homogeneous dispersion or cream
Change the substance of body, also referred to as surfactant, or be known as the substance for making immiscible liquid matter switch to evenly dispersed phase, addition is few
The dosage of amount can significantly reduce oil-water two-phase interfaces tension, generate the additive of emulsifying effectiveness.Existing manufacture emulsifier
Powder is to take out material machine by vacuum mostly to carry out feeding, one be often mixed into air during feeding, in powder
The impurity such as a little tiny dust.If dust is mixed into reaction kettle and mixes with material therein, it will affect and manufacture
Product quality improves the product manufactured and the probability of defect ware occurs.
Utility model content
The purpose of the utility model is to provide one kind to be used for reaction kettle for what little particle dust-filtering fell in feeding
Charging dedusting and discharge device.
The above-mentioned purpose of the utility model has the technical scheme that a kind of charging for reaction kettle
Dedusting and discharge device, including filler bin, reaction kettle ontology, filter device, extractor fan and central cleaning shaft, described is anti-
It answers and is inserted with feed pipe and exhaust tube on kettle ontology, one end that the feed pipe is located at reaction kettle outer body can be with powder
Storehouse connection, one end that the exhaust tube is located at reaction kettle outer body are connected with filter device, and exhaust tube is located at reaction kettle sheet
Filter screen is fixedly installed on intracorporal one end, the filter device is connected with extractor fan, the extractor fan with
Central cleaning shaft is connected, and discharge gate is offered on filter device.
By using above-mentioned technical proposal, by opening extractor fan, gas in reaction kettle ontology is extracted out, thus make into
Granule materials in expects pipe sucks powder storehouse, and enter in reaction kettle ontology along feed pipe.By pre-setting filter screen
The size of online mesh, the intrinsic granule materials greater than filter screen of reaction kettle can be stopped, it is made to fall into reaction kettle
In ontology;And particle is less than the granule materials of the mesh and dust is taken away by exhaust tube, into filter device.By filtering
After the filtering of device, the biggish granule materials of particle can be fallen, and more tiny dust can then be taken away by extractor fan, and most
It is sent to central cleaning shaft eventually.After running for a period of time, the material collection at discharge gate can be got up re-work, then
It is added in filler bin.Little particle dust-filtering can be fallen well in feeding, dust is made to be not easy to be mixed into reaction kettle, reduced
Produce the probability of defect ware.
The utility model is further arranged to: the first communicating pipe, the cross of the first communicating pipe are connected on the filler bin
Cross-sectional sizes are less than the cross section size of feed pipe, and the feed pipe, which is located on one end of reaction kettle outer body, to be fixedly mounted
There is clamping device, the clamping device can clamp for the first communicating pipe.
By using above-mentioned technical proposal, one end of the first communicating pipe easily can be embedded in feed pipe or from feed pipe
Interior taking-up, so as to simply control whether reaction kettle is fed.Because when reaction in reaction kettle ontology
A large amount of exhaust gas can be generated, needs constantly to carry out exhausting, it can not be by opening or closing exhaust fan, to control whether to carry out
Charging.Clamping device limits the position of the first communicating pipe, can when extracting for the first communicating pipe out of feed pipe
The position of first communicating pipe is fixed.When needing the first communicating pipe being inserted into feed pipe, easily first can be connected
Siphunculus is inserted into feed pipe.
The utility model is further arranged to: the one end of the feed pipe on the inside of reaction kettle ontology is located at exhaust tube and exists
The surface of one end on the inside of reaction kettle ontology.
By using above-mentioned technical proposal, granule materials along feed pipe enter reaction kettle it is intrinsic when, particle
Material can be directly fallen on the filter screen of exhaust tube nozzle, convenient for little particle dust being sucked in exhaust tube, is made in feeding
Little particle dust is not easy to be mixed into reaction kettle, reduces the probability for producing defect ware.
The utility model is further arranged to: the extractor fan is three leaves Roots blower.
It,, can be fine without lubrication because its structure of three leaves Roots blower is relatively stable by using above-mentioned technical proposal
Be suitable for extracts have a large amount of little particle dust gas.Its structure is simple, and operation and maintenance is all very convenient.
The utility model is further arranged to: the filter device is cyclopneumatic separator, the exhaust tube and filtering
The position of device junction being located among cyclopneumatic separator, is connected between filter device and extractor fan by the second communicating pipe
It connects, the second communicating pipe was located at the top of filter device with filter device junction.
By using above-mentioned technical proposal, when little particle dust and granule materials enter filter device along exhaust tube,
Little particle dust is siphoned away upwards, and granule materials can fall into the bottom of filter device because of heavier-weight.It can reduce appearance
Granule materials are drawn to the situation in extractor fan, protect extractor fan well, improve the service life of extractor fan.
The utility model is further arranged to: the filter device bottom end setting is funnel-shaped, and the discharge gate is set
Set the lowermost end in filter device.
, can be when granule materials be filtered out by filter device by using above-mentioned technical proposal, granule materials are straight
It connects and is skidded off along the bottom surface of filter device from discharge gate, place container at discharge gate when collecting, can easily be received
Collection.The granule materials being collected into re-use after processing, reduce production cost.
The utility model is further arranged to: the mounting side of annular, institute are fixedly installed on the filter device bottom end
The discharge gate stated is located in mounting side.
It, can be when collecting granule materials using collecting bag, by the side of collecting bag by using above-mentioned technical proposal
Edge is fixed on mounting side, is kept collecting bag fixed more firm, is less prone to the phenomenon that material leaks out.
The utility model is further arranged to: first communicating pipe and the second communicating pipe is that bellows is made.
By using above-mentioned technical proposal, because the equipment will appear vibration when operation, and bellows is with stretching
Malleability can be very good buffering vibration, make to connect between each device more firm.
In conclusion the advantageous effects of the utility model are as follows:
1, little particle dust-filtering can be fallen in feeding, dust is made to be not easy to be mixed into material in reactor, reduce manufacture
The probability of defect ware out;
2, the granule materials filtered down by filter device can be collected, are convenient for recycling.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the utility model;
Fig. 2 is the position view of feed pipe and exhaust tube inside reaction kettle;
Fig. 3 is the schematic diagram of internal structure of filter device.
Appended drawing reference: 1, filler bin;11, reaction kettle ontology;12, filter device;13, extractor fan;14, central dust removing tube
Road;2, the first communicating pipe;21, feed pipe;22, clamping device;23, exhaust tube;24, filter screen;3, side is mounted;31, second
Communicating pipe;32, discharge gate.
Specific embodiment
The utility model is described in further detail below in conjunction with attached drawing.
As shown in Figure 1, a kind of charging dedusting and discharge device for reaction kettle, including it is sequentially connected filler bin 1, anti-
Answer kettle ontology 11, filter device 12, three leaves Roots blower and central cleaning shaft 14 as extractor fan 13.
As depicted in figs. 1 and 2, it was connected with for the first communicating pipe 2 on filler bin 1, the first communicating pipe 2 was bellows.It is reacting
Feed pipe 21 is inserted on kettle ontology 11, feed pipe 21, which is located on the one end in 11 outside of reaction kettle ontology, to be fixedly installed with as folder
Hold the pipeline jig of device 22.The cross section size of first communicating pipe 2 is less than the cross section size of feed pipe 21, the first communicating pipe
2 can insert in feed pipe 21, when being not inserted into feed pipe 21 the first communicating pipe 2, can be pressed from both sides by pipeline jig
Handled for the first communicating pipe 2.Exhaust tube 23 is also inserted on reaction kettle ontology 11, exhaust tube 23 is located in reaction kettle ontology 11
Filter screen 24 is fixedly installed on one end.The one end of exhaust tube 23 in reaction kettle ontology 11 is located at feed pipe 21 in reaction kettle
The underface of one end in ontology 11.Setting in this way can be come by the way that the first communicating pipe 2 to be inserted into feed pipe 21
It will be in the material sucting reaction kettle ontology 11 in filler bin 1.Clamping device 22 can not need the insertion charging of the first communicating pipe 2
When in pipe 21, the position of feed pipe 21 is limited.It, can when needing the first communicating pipe 2 being inserted into feed pipe 21
Easily the first communicating pipe 2 was inserted into feed pipe 21.When the granule materials in powder box enter in reaction kettle ontology 11, meeting
It directly falls on the filter screen 24 at 23 nozzle of exhaust tube.The granule materials of bulky grain will be filtered under the filtering of sieve 24, more
It can be then inhaled into exhaust tube 23 for tiny little particle dust.Little particle dust can be made to be not easy to be mixed into reaction kettle, reduced
Produce the probability of defect ware.
As shown in figures 1 and 3, one end that exhaust tube 23 is located at 11 outside of reaction kettle ontology is connected with filter device 12, mistake
Filter device 12 is cyclopneumatic separator, is connected between filter device 12 and extractor fan 13 by the second communicating pipe 31, the second connection
Pipe 31 is also bellows.Second communicating pipe 31 was located at the top of filter device 12, exhaust tube 23 with the junction of filter device 12
The position being connected with filter device 12 is located at the middle section of filter device 12.The bottom surface setting of filter device 12 is in funnel
Shape, and discharge gate 32 is offered in its minimum points out.The mounting side of annular is formed on the outside of 12 bottom surface of filter device
3, discharge gate 32 is provided in mounting side 3.Setting in this way, little particle dust and granule materials can along exhaust tube 23 into
Enter filter device 12, because of granule materials heavier mass, and little particle dust lighter weight, under the influence of centrifugal force, small
Grain dust can be sucked away, and granule materials can then fall into the bottom of filter device 12, and granule materials is made to be not easy to be inhaled into extractor fan
In 13, the service life of extractor fan 13 can be improved.The granule materials to sift can come along 12 bottom surface of filter device from
Discharge gate 32 skids off, and when collecting, the edge of collecting bag is fixed on mounting side 3, collecting bag is fixed more firm
Gu to be collected well.
The embodiment of present embodiment is the preferred embodiment of the utility model, and not limitation is originally practical new according to this
The protection scope of type, therefore: the equivalence changes that all structures, shape, principle according to the utility model are done should all be covered by practical
Within novel protection scope.
Claims (8)
1. a kind of charging dedusting and discharge device for reaction kettle, including filler bin (1), reaction kettle ontology (11), filtering dress
Set (12), extractor fan (13) and central cleaning shaft (14), it is characterised in that: be inserted on the reaction kettle ontology (11)
Feed pipe (21) and exhaust tube (23), the feed pipe (21) is located at one end on the outside of reaction kettle ontology (11) can be with powder
Storehouse (1) connection, the exhaust tube (23) are located at one end on the outside of reaction kettle ontology (11) and are connected with filter device (12), are evacuated
Be fixedly installed with filter screen (24) on pipe (23) one end for being located in reaction kettle ontology (11), the filter device (12) and
Extractor fan (13) is connected, and the extractor fan (13) is connected with central cleaning shaft (14), opens on filter device (12)
Equipped with discharge gate (32).
2. a kind of charging dedusting and discharge device for reaction kettle according to claim 1, it is characterised in that: described
It is connected on filler bin (1) the first communicating pipe (2), the cross section size of the first communicating pipe (2) is less than the transversal of feed pipe (21)
Face size, the feed pipe (21), which is located on one end on the outside of reaction kettle ontology (11), is fixedly installed with clamping device (22),
The clamping device (22) can clamp the first communicating pipe (2).
3. a kind of charging dedusting and discharge device for reaction kettle according to claim 2, it is characterised in that: described
The one end of feed pipe (21) on the inside of reaction kettle ontology (11) is located at the one end of exhaust tube (23) on the inside of reaction kettle ontology (11)
Surface.
4. a kind of charging dedusting and discharge device for reaction kettle according to claim 1, it is characterised in that: described
Extractor fan (13) is three leaves Roots blower.
5. a kind of charging dedusting and discharge device for reaction kettle according to claim 2, it is characterised in that: described
Filter device (12) is cyclopneumatic separator, and the exhaust tube (23) is located at cyclopneumatic separator with filter device (12) junction
Intermediate position is connect between filter device (12) and extractor fan (13) by the second communicating pipe (31), the second communicating pipe
(31) it is located at the top of filter device (12) with filter device (12) junction.
6. a kind of charging dedusting and discharge device for reaction kettle according to claim 5, it is characterised in that: described
The setting of filter device (12) bottom end is funnel-shaped, lowermost end of discharge gate (32) setting in filter device (12).
7. a kind of charging dedusting and discharge device for reaction kettle according to claim 6, it is characterised in that: described
The mounting side (3) of annular is fixedly installed on filter device (12) bottom end, the discharge gate (32) is located in mounting side (3).
8. a kind of charging dedusting and discharge device for reaction kettle according to claim 7, it is characterised in that: described
First communicating pipe (2) and the second communicating pipe (31) are that bellows is made.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920117797.1U CN209680074U (en) | 2019-01-23 | 2019-01-23 | A kind of charging dedusting and discharge device for reaction kettle |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920117797.1U CN209680074U (en) | 2019-01-23 | 2019-01-23 | A kind of charging dedusting and discharge device for reaction kettle |
Publications (1)
Publication Number | Publication Date |
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CN209680074U true CN209680074U (en) | 2019-11-26 |
Family
ID=68600167
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201920117797.1U Active CN209680074U (en) | 2019-01-23 | 2019-01-23 | A kind of charging dedusting and discharge device for reaction kettle |
Country Status (1)
Country | Link |
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CN (1) | CN209680074U (en) |
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2019
- 2019-01-23 CN CN201920117797.1U patent/CN209680074U/en active Active
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