CN206202777U - A kind of powdered activated carbon vacuum Dual module packing machine - Google Patents

A kind of powdered activated carbon vacuum Dual module packing machine Download PDF

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Publication number
CN206202777U
CN206202777U CN201621227515.6U CN201621227515U CN206202777U CN 206202777 U CN206202777 U CN 206202777U CN 201621227515 U CN201621227515 U CN 201621227515U CN 206202777 U CN206202777 U CN 206202777U
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China
Prior art keywords
feed bin
tube
activated carbon
vacuum
bag
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CN201621227515.6U
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李奇志
李奇武
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Hangzhou Rui Xiang Electromechanical Technology Co Ltd
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Hangzhou Rui Xiang Electromechanical Technology Co Ltd
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Abstract

A kind of powdered activated carbon vacuum Dual module packing machine, the active charcoal bag installation includes frame and rack-mounted feeding mechanism, packaging module, transition feeding warehouse and control device, and the control device is arranged in the frame;Weighing device, vacuum extractor and bag-clamping mechanism that the packaging module includes feed bin, dust arrester, weighed for powdered activated carbon in feed bin, the feed bin is arranged on the weighing device, the vacuum extractor is respectively positioned on the top of the feed bin, activated carbon packaging bag is set in the outside of the discharging opening of the feed bin, and the bag-clamping mechanism is located at the lower section of the feed bin;The dust removal port of the dust arrester is connected with the charging aperture of the feed bin.A kind of amount of gas evolved of the utility model offer is adjustable, pack efficiency is higher and the preferable powdered activated carbon vacuum Dual module packing machine of final product quality.

Description

A kind of powdered activated carbon vacuum Dual module packing machine
Technical field
The utility model be related to powder (Gu) packaging field of body material, more particularly, to a kind of powdered activated carbon vacuum bimodulus Block packing machine.
Background technology
Packaging facilities is commonly used in people live, and the life for giving people brings convenience.For some powdered activated carbons, Because density is low, granularity is small, air content is big, in existing conventional packaging, standard sack is difficult within the normal packaging time Specified packed weight is completed, generally using the original packaging mode of more precipitation, this method conventional packing time is long, efficiency Low, labor strength is big, and dust recycling is big, has a strong impact on the healthy of plant area's working environment and workman.In order to solve powder The packaging quality of last shaped activated carbon, packaging efficiency and working environment, therefore, people have carried out long-term research, it is proposed that various Solution.
For example, Chinese patent literature discloses the equipment that a kind of activated carbon is packed for, conveying pipeline outlet by activated carbon Extrusion, while taking away conveying pipeline inner air by vacuum outgas extrusion mechanism, improves packaging efficiency and packaging quality, there is one Fixed usability.
Above-mentioned scheme improves the subproblem of prior art to a certain extent, but the method at least exist it is following Defect:This method is fixed due to the extrusion capacity for unit air, and unit vacuum outgas amount can not design too big, or It is easily caused activated carbon and bonds blocking, influence packaging speed, while amount of gas evolved can not regulate and control in the unit interval, for some gassiness The larger activated carbon of amount still cannot meet the requirement of packaging efficiency and volume.
The content of the invention
In order to overcome existing activated carbon packing technique to exist, amount of gas evolved is nonadjustable not enough and packaging efficiency is low, this practicality A kind of new amount of gas evolved of offer is adjustable, pack efficiency is higher and the preferable powdered activated carbon vacuum Dual module packaging of final product quality Machine.
The utility model solves the technical scheme that its technical problem used:
A kind of powdered activated carbon vacuum Dual module packing machine, the active charcoal bag installation includes frame and installed in frame On feeding mechanism, packaging module, transition feeding warehouse and control device, the control device is arranged in the frame;
The packaging module includes feed bin, dust arrester, weigh for powdered activated carbon in feed bin weighing device, take out true Empty device and bag-clamping mechanism, the feed bin are arranged on the weighing device, and the vacuum extractor is respectively positioned on the feed bin Top, activated carbon packaging bag is set in the outside of the discharging opening of the feed bin, and the bag-clamping mechanism is located at the lower section of the feed bin; The dust removal port of the dust arrester is connected with the charging aperture of the feed bin;
The vacuum extractor includes being provided with vavuum pump, vacuum tank, vacuum control valve, tube wall the microporous pipe and use of micropore With the elevating mechanism of microporous pipe oscilaltion, the air inlet of the vavuum pump is connected with the gas outlet of the vacuum tank, described true The air inlet of slack tank is connected by vacuum control valve with one end of appendix, and the other end of the appendix connects with the microporous pipe It is logical;The microporous pipe arranges that the elevating mechanism is located at the top of feed bin, the upper end of the microporous pipe and the lift vertically Structure is connected, and the lower end of the microporous pipe is stretched into activated carbon packaging bag through the discharging opening of feed bin;
The packaging module is provided with two, and the respectively first packaging module and second pack module, first packaging Module is arranged side by side with the second packaging module, and the transition feeding warehouse is located at two tops of the feed bin of packaging module and is arranged in The rear side of vacuum extractor, the feeding mechanism is located at the top middle of transition feeding warehouse, and the transition feeding warehouse is provided with two Individual discharging opening, respectively the first discharging opening and the second discharging opening from left to right, discharge end and the transition of the feeding mechanism feed The charging aperture connection in storehouse, the first discharging opening of the transition feeding warehouse is by the first feed bin inlet control valve and the first packaging module Feed bin charging aperture connection, the second discharging opening of the transition feeding warehouse packed by the second feed bin inlet control valve with second The charging aperture connection of the feed bin of module;The inwall top of the left end of the transition feeding warehouse is provided with for detecting whether full material Level-sensing device;
The charging motor of the feeding mechanism, the dedusting motor of dust arrester, weighing device, elevating mechanism, vacuum means Vacuum control valve, bag-clamping mechanism, the first feed bin inlet control valve, the second feed bin inlet control valve and the level-sensing device put with it is described Control device is connected.
Further, the feeding mechanism is screw(-type) feeder.
Further, the elevating mechanism includes lift cylinder and connecting tube, and the connecting tube is arranged vertically, the lifting The piston rod of cylinder is connected with the upper end of the connecting tube, and the upper end of the connecting tube also connects with the appendix, the company The lower end of adapter connects through the mounting hole at the top of feed bin with the upper end of the microporous pipe.
Further, the vacuum extractor also includes being used to dredge the microporous pipe dredger of microporous pipe, the micropore Pipe dredger is connected by dredging control valve with one end of the appendix.
Further, the microporous pipe can be using the netted pipe or micropore tank of micropore.
Further, the connecting tube is telescoping tube, and the telescoping tube includes inner and outer tubes, and said inner tube is sleeved on institute State in outer tube and be connected with outer tube sliding extension, the upper end of the outer tube is fixed with the cylinder body of the lift cylinder, said inner tube Lower end fix and connect with the upper end of the microporous pipe, the upper end of said inner tube is connected with the piston rod of the lift cylinder, The outer tube is connected with the appendix, and said inner tube is connected with the outer tube.
Further, the micropore dredger includes watertight aircase and dredging cylinder, and the dredging cylinder includes cylinder block, Piston is provided with the cylinder block, the watertight aircase is connected by air shut-off valve with the cylinder block of piston side, and piston is another The cylinder block of side is connected by dredging control valve with one end of the appendix, the other end of the appendix and the microporous pipe Connection.
The beneficial effects of the utility model are mainly manifested in:Can be adjusted according to activated carbon air content, density, granule size Its feed bin charging rate, pumpdown time, working environment improve;Feeding mechanism is set using screw(-type) feeder and transition feeding warehouse Meter, avoids the need for the charging motor of Frequency Converter Control feeding mechanism, additionally, same set of feeding mechanism passes through transition feeding warehouse reality The chargings of existing two packagings module, pack efficiency improves, while also saving the cost of investment above equipment;Microporous pipe directly with Powdered activated carbon is contacted, and what is vacuumized is more thorough so that powdered activated carbon toughens up, air content is less;After packaging into Condition homogenous quantities lower volume is smaller, increase the activated carbon hauled weight in same volume compartment, saves the transport of activity per unit weight charcoal Cost.
Brief description of the drawings
Fig. 1 is a kind of front view of powdered activated carbon vacuum Dual module packing machine, wherein not including supporting plate.
Fig. 2 is the right view of Fig. 1.
Specific embodiment
The utility model is further described below in conjunction with the accompanying drawings.
Referring to Figures 1 and 2, a kind of powdered activated carbon vacuum Dual module packing machine, the active charcoal bag installation includes frame 1 And feeding mechanism in frame 1, packaging module, transition feeding warehouse 10 and control device 8, the control device 8 pacifies In the frame 1;
The packaging module includes feed bin 3, dust arrester 4, weigh for powdered activated carbon in feed bin 3 weighing device 5, Vacuum extractor 6 and bag-clamping mechanism 7, the feed bin 3 are arranged on the weighing device 5, and the vacuum extractor 6 is respectively positioned on institute The top of feed bin 3 is stated, activated carbon packaging bag 9 is set in the outside of the discharging opening of the feed bin 3, and the bag-clamping mechanism 7 is located at institute State the lower section of feed bin 3;The dust removal port of the dust arrester 4 is connected with the charging aperture of the feed bin 3;
The vacuum extractor 6 includes being provided with vavuum pump, vacuum tank, vacuum control valve, tube wall the microporous pipe 62 of micropore With the elevating mechanism to microporous pipe oscilaltion, the air inlet of the vavuum pump connects with the gas outlet of the vacuum tank, institute The air inlet for stating vacuum tank is connected by vacuum control valve with one end of appendix, the other end of the appendix and the micropore Pipe 62 is connected;The microporous pipe 62 arranges that the elevating mechanism is located at the top of feed bin 3, the upper end of the microporous pipe 62 vertically It is connected with the elevating mechanism, the lower end of the microporous pipe 62 is stretched into activated carbon packaging bag 9 through the discharging opening of feed bin;
The packaging module is provided with two, and the respectively first packaging module and second pack module, first packaging Module is arranged side by side with the second packaging module, and the transition feeding warehouse 10 is located at two tops of the feed bin of packaging module and arrangement In the rear side of vacuum extractor 6, the feeding mechanism is located at the top middle of transition feeding warehouse 10, the transition feeding warehouse 10 Two discharging openings are provided with, from left to right respectively the first discharging opening and the second discharging opening, the discharge end and mistake of the feeding mechanism The charging aperture connection of feeding warehouse is crossed, the first discharging opening of the transition feeding warehouse is by the first feed bin inlet control valve and the first bag The charging aperture connection of die-filling piece of feed bin, the second discharging opening of the transition feeding warehouse is by the second feed bin inlet control valve and the The charging aperture connection of the feed bin of two packaging modules;The inwall top of the left end of the transition feeding warehouse 10 is provided with and is for detection The level-sensing device of no full material;
The charging motor of the feeding mechanism, the dedusting motor of dust arrester 4, weighing device 5, elevating mechanism, vacuumize The vacuum control valve of device 6, bag-clamping mechanism 7, the first feed bin inlet control valve, the second feed bin inlet control valve and level-sensing device with The control device 8 is connected.
Further, the feeding mechanism is screw(-type) feeder.
Further, the elevating mechanism includes lift cylinder and connecting tube 61, and the connecting tube 61 is arranged vertically, described The piston rod of lift cylinder is connected with the upper end of the connecting tube 61, and the upper end of the connecting tube 61 also connects with the appendix Logical, the lower end of the connecting tube 61 connects through the mounting hole at the top of feed bin with the upper end of the microporous pipe 62.
Further, the vacuum extractor 6 also includes being used to dredge the microporous pipe dredger of microporous pipe 62, described micro- Hole pipe dredger is connected by dredging control valve with one end of the appendix.
Further, the microporous pipe 62 can be using the netted pipe or micropore tank of micropore.
Further, the connecting tube 61 is telescoping tube, and the telescoping tube includes inner and outer tubes, and said inner tube is sleeved on It is connected in the outer tube and with outer tube sliding extension, the upper end of the outer tube is fixed with the cylinder body of the lift cylinder, it is described interior The lower end of pipe is fixed and is connected with the upper end of the microporous pipe 62, and the upper end of said inner tube connects with the piston rod of the lift cylinder Connect, the outer tube is connected with the appendix, said inner tube is connected with the outer tube.
Further, the micropore dredger includes watertight aircase and dredging cylinder, and the dredging cylinder includes cylinder block, Piston is provided with the cylinder block, the watertight aircase is connected by air shut-off valve with the cylinder block of piston side, and piston is another The cylinder block of side is connected by dredging control valve with one end of the appendix, the other end of the appendix and the microporous pipe Connection.
In the present embodiment, the supporting plate of the activated carbon packaging bag 9 that powdered activated carbon is had been filled with for support is additionally provided with frame 1 11, the supporting plate 11 is located at the lower section of the feed bin 3 and bag-clamping mechanism 7;Level-sensing device is mounted in a left side for the inwall of transition feeding warehouse 10 Top, feeding mechanism feeds in the middle of transition feeding warehouse 10, does not interfere with transition feeding warehouse 10 and feeds, when transition feeding warehouse When 10 material are full, it is issued by signal to control device, and control device 8 cuts off the power supply of the charging motor of feeding mechanism again, stops Feeding;Feed bin inlet control valve includes the first feed bin inlet control valve and the second feed bin inlet control valve, the charging of feeding mechanism Motor is double control, and one is that the material of transition feeding warehouse 10 can stop when full, and two is entering when two feed bins of packaging module When material control valve is closed, it is also possible to stop;The gas in watertight aircase is controlled to enter dredging gas by controlling air shut-off valve In the cylinder body of cylinder, piston is promoted, piston pushes in microporous pipe 62 gas of opposite side by appendix, in the work of gases at high pressure It is rushed out with the tamper in lower microporous pipe 62;Micropore dredger in certain the utility model can also can be blown using other The dredger of gas;Because dredging gas during dredging with the gas flow for vacuumizing just conversely, so being referred to as anti- Gas is dredged.
The frame 1 is fixed on ground by four screws, carries thereon or carries other devices or mechanism indirectly except defeated Send the weight of all devices outside the screw rod flood dragon weight in mechanism.The rear side of feed bin 3 is connected by linkage with weighing device Connect, weighing device 5 is fixedly connected by steel band and crossbeam with frame 1, weighing device 5 is passed through under the control of control device 8 can be with The weight of powdered activated carbon in measurement feed bin, the discharging opening of feed bin 3 controls the discharging of feed bin, feed bin by feed bin discharging control valve Discharging control valve can be controlled by control device 8, if the discharging opening of feed bin 3 does not have feed bin discharging control valve, to feed bin 3 and need to be lived Property charcoal bag pack 9 and powdered activated carbon weigh together;Feed bin 3 includes feed bin body and feed bin lid, and feed bin lid is located at feed bin body It is flexible coupling above and by cloth with feed bin body, the lower end of feed bin body is provided with the discharging opening of feed bin 3, and feed bin is covered and is provided with use The mounting hole and charging aperture passed through with connecting tube 61;Feed bin lid is arranged in frame 1, and a part of weight of such feed bin 3 is material Cang Gai falls in frame, and the bottom of feed bin 3 is inlayed soft seal bar and clamps activity under control device control together with bag-clamping mechanism 7 Charcoal bag pack 9, the clamping sack surrounding of activated carbon packaging bag 9 of bag-clamping mechanism 7, can manual envelope also sealed by envelope body Bag;Feeding mechanism includes charging motor, screw rod transmission mechanism and charging aperture controlled valve, under the control of control device 8, can basis The characteristic of activated carbon, such as density, the working time of air content state modulator motor, the size of charging aperture, so as to according to packaging The inlet amount of feed bin 3 in the control from view of profit unit interval;Control device 8 is arranged on the left side of frame 1, is easy to operation, and it is whole bag The maincenter of installation, can be controlled, together according to packaging efficiency and activated carbon characteristic to charging rate and quality and pumpdown time When the action control such as folder bag and loose bag is carried out to bag-clamping mechanism 7;Microporous pipe 62 is sent to feed bin by vacuum extractor 6 by telescoping tube 3 and activated carbon packaging bag 9 in pumping process is carried out to the powdered activated carbon of surrounding, so as to reduce under powdered activated carbon equal mass Volume, reach nominal volume pack rated weight requirement.
When microporous pipe 62 is blocked, by microporous pipe dredger to the air inlet of microporous pipe 62, by the work in microporous pipe 62 Property charcoal blowout.
Bag-clamping mechanism 7 is made up of top board, lower platen and three folder bag cylinders, and top board is fixed on the discharging of feed bin bottom Mouthful, cylinder body one end of folder bag cylinder is fixed on the outer wall of feed bin bottom, and mobile boom end is connected with lower platen, when needing folder bag When, control device 8 gives magnetic valve one inflation signal, and mobile bar drives lower platen that packaging bag is pressed on top board upwards, When loose bag, then reverse motions;Dust arrester 4 is arranged on the top of feed bin, when the mobile bar of folder bag cylinder moves down loose bag, removes Dirt valve is synchronously opened, and absorbs the dust that packaging bag is overflowed.
The course of work of the present utility model is:The control of control device 8 charging motor causes powdered activated carbon by feeding mechanism Into transition feeding warehouse 3, two feed bin inlet control valves on transition feeding warehouse have respectively entered the feed bin of the first packaging module With the feed bin of the second packaging module, control device 8 controls the respective bag-clamping mechanism 7 to carry out folder bag, then by the discharging opening of respective feed bin 3 Into respective activated carbon packaging bag 9, the then respective dedusting motor work of control device control is removed by dust arrester 4 Dirt, is vacuumized respectively by respective vacuum extractor 6, finally by respective bag-clamping mechanism 7 is controlled, by respective work Property charcoal bag pack 9 remove and sealed.
The vacuum of vacuum extractor 6:Elevating mechanism is by the drive appendix of connecting tube 61 and microporous pipe about 62 Motion, therefore when connecting tube 61 is common tube non-telescoping pipe, need design appendix to have one when moving up and down above feed bin Fixed stroke;If connecting tube 61 is telescoping tube, it is i.e. achievable micro- that elevating mechanism such as lift cylinder can drive inner tube to move up and down The up and down motion of hole pipe 62, as long as appendix is connected with outer tube, because outer tube can be connected with inner tube, so appendix also can Connected with microporous pipe 62, so as to realize the process for vacuumizing.
It is big that the utility model is directed to air content in powdered activated carbon, powdery in activated carbon in setting time in conventional packaging Activated carbon is difficult to separate with air, causes nominal volume to be difficult to the problem of the activated carbon of packaging rated weight, employs a kind of profit With it is ventilative but during the microporous pipe that powdered activated carbon passes through can be prevented to be put in activated carbon packaging bag or activated carbon storage tank to surrounding Activated carbon directly contact is vacuumized, so that powdered activated carbon is separated with air, last powdered activated carbon toughens up, Air content is also less.

Claims (7)

1. a kind of powdered activated carbon vacuum Dual module packing machine, it is characterised in that:Active charcoal bag installation include frame and Rack-mounted feeding mechanism, packaging module, transition feeding warehouse and control device, the control device are arranged on the machine On frame;
Weighing device, vacuum means that the packaging module includes feed bin, dust arrester, weighed for powdered activated carbon in feed bin Put and bag-clamping mechanism, the feed bin is arranged on the weighing device, and the vacuum extractor is respectively positioned on the top of the feed bin, Activated carbon packaging bag is set in the outside of the discharging opening of the feed bin, and the bag-clamping mechanism is located at the lower section of the feed bin;It is described The dust removal port of dust arrester is connected with the charging aperture of the feed bin;
The vacuum extractor includes being provided with the microporous pipe of micropore and to micro- on vavuum pump, vacuum tank, vacuum control valve, tube wall The elevating mechanism of hole pipe oscilaltion, the air inlet of the vavuum pump is connected with the gas outlet of the vacuum tank, the vacuum tank Air inlet connected with one end of appendix by vacuum control valve, the other end of the appendix is connected with the microporous pipe; The microporous pipe arranges that the elevating mechanism is located at the top of feed bin, the upper end of the microporous pipe and the elevating mechanism vertically Stretched into activated carbon packaging bag through the discharging opening of feed bin connection, the lower end of the microporous pipe;
The packaging module is provided with two, and the respectively first packaging module and second pack module, the first packaging module It is arranged side by side with the second packaging module, the transition feeding warehouse is located at two tops of the feed bin of packaging module and is arranged in takes out true The rear side of empty device, the feeding mechanism is located at the top middle of transition feeding warehouse, and the transition feeding warehouse is provided with two and goes out Material mouth, from left to right respectively the first discharging opening and the second discharging opening, discharge end and the transition feeding warehouse of the feeding mechanism Charging aperture is connected, and the first discharging opening of the transition feeding warehouse is by the first feed bin inlet control valve and the material of the first packaging module The charging aperture connection in storehouse, the second discharging opening of the transition feeding warehouse is by the second feed bin inlet control valve and the second packaging module Feed bin charging aperture connection;The inwall top of the left end of the transition feeding warehouse is provided with for detecting whether the material of full material Position instrument;
The charging motor of the feeding mechanism, the dedusting motor of dust arrester, weighing device, elevating mechanism, vacuum extractor Vacuum control valve, bag-clamping mechanism, the first feed bin inlet control valve, the second feed bin inlet control valve and level-sensing device with the control Device is connected.
2. a kind of powdered activated carbon vacuum Dual module packing machine as claimed in claim 1, it is characterised in that:The feeding mechanism It is screw(-type) feeder.
3. a kind of powdered activated carbon vacuum Dual module packing machine as claimed in claim 1 or 2, it is characterised in that:The lifting Mechanism includes lift cylinder and connecting tube, and the connecting tube arranges vertically, the piston rod of the lift cylinder and the connecting tube Upper end connection, the upper end of the connecting tube also connect with the appendix, and the lower end of the connecting tube is passed through at the top of feed bin Mounting hole is connected with the upper end of the microporous pipe.
4. a kind of powdered activated carbon vacuum Dual module packing machine as claimed in claim 1 or 2, it is characterised in that:It is described to take out true Empty device also includes being used to dredge the microporous pipe dredger of microporous pipe, the microporous pipe dredger by dredge control valve with One end connection of the appendix.
5. a kind of powdered activated carbon vacuum Dual module packing machine as claimed in claim 3, it is characterised in that:The microporous pipe can Using the netted pipe or micropore tank of micropore.
6. a kind of powdered activated carbon vacuum Dual module packing machine as claimed in claim 3, it is characterised in that:The connecting tube is Telescoping tube, the telescoping tube includes inner and outer tubes, and said inner tube is sleeved in the outer tube and is connected with outer tube sliding extension, The upper end of the outer tube is fixed with the cylinder body of the lift cylinder, and the lower end of said inner tube is fixed simultaneously with the upper end of the microporous pipe Connection, the upper end of said inner tube is connected with the piston rod of the lift cylinder, and the outer tube is connected with the appendix, described interior Pipe is connected with the outer tube.
7. a kind of powdered activated carbon vacuum Dual module packing machine as claimed in claim 4, it is characterised in that:The micropore dredging Device includes watertight aircase and dredging cylinder, and the dredging cylinder includes cylinder block, piston, the air are provided with the cylinder block Case is connected by air shut-off valve with the cylinder block of piston side, the cylinder block of piston opposite side by dredge control valve with it is described One end connection of appendix, the other end of the appendix is connected with the microporous pipe.
CN201621227515.6U 2016-11-15 2016-11-15 A kind of powdered activated carbon vacuum Dual module packing machine Active CN206202777U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201621227515.6U CN206202777U (en) 2016-11-15 2016-11-15 A kind of powdered activated carbon vacuum Dual module packing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201621227515.6U CN206202777U (en) 2016-11-15 2016-11-15 A kind of powdered activated carbon vacuum Dual module packing machine

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Publication Number Publication Date
CN206202777U true CN206202777U (en) 2017-05-31

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CN201621227515.6U Active CN206202777U (en) 2016-11-15 2016-11-15 A kind of powdered activated carbon vacuum Dual module packing machine

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109250164A (en) * 2018-08-23 2019-01-22 杭州睿湘机电科技有限公司 Quick, the high-precision powdered activated carbon packing machine of one kind and its packing method
CN111824532A (en) * 2020-08-07 2020-10-27 蔡连玉 Packagine machine is used in active carbon processing

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109250164A (en) * 2018-08-23 2019-01-22 杭州睿湘机电科技有限公司 Quick, the high-precision powdered activated carbon packing machine of one kind and its packing method
CN111824532A (en) * 2020-08-07 2020-10-27 蔡连玉 Packagine machine is used in active carbon processing

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