CN116899312A - Anti-blocking filtering device for loading and unloading liquid - Google Patents

Anti-blocking filtering device for loading and unloading liquid Download PDF

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Publication number
CN116899312A
CN116899312A CN202311174015.5A CN202311174015A CN116899312A CN 116899312 A CN116899312 A CN 116899312A CN 202311174015 A CN202311174015 A CN 202311174015A CN 116899312 A CN116899312 A CN 116899312A
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CN
China
Prior art keywords
mounting
switching
discharging
liquid
pipeline
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN202311174015.5A
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Chinese (zh)
Inventor
沙奥琪
沙通
沙广州
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Jiangsu Guangyue Equipment Manufacturing Co ltd
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Jiangsu Guangyue Equipment Manufacturing Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by Jiangsu Guangyue Equipment Manufacturing Co ltd filed Critical Jiangsu Guangyue Equipment Manufacturing Co ltd
Priority to CN202311174015.5A priority Critical patent/CN116899312A/en
Publication of CN116899312A publication Critical patent/CN116899312A/en
Pending legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D35/00Filtering devices having features not specifically covered by groups B01D24/00 - B01D33/00, or for applications not specifically covered by groups B01D24/00 - B01D33/00; Auxiliary devices for filtration; Filter housing constructions
    • B01D35/12Devices for taking out of action one or more units of multi- unit filters, e.g. for regeneration
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D41/00Regeneration of the filtering material or filter elements outside the filter for liquid or gaseous fluids
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/10Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Filtration Of Liquid (AREA)

Abstract

The application relates to the technical field of liquid filtering devices, in particular to a filtering device capable of preventing blockage for loading and unloading liquid, which comprises a high-efficiency filtering discharging device arranged at the discharging end of liquid processing equipment, wherein the high-efficiency filtering discharging device comprises a discharging pipeline arranged at the discharging end of the liquid processing equipment, a switching cavity is arranged in the discharging pipeline, a switching installation tool is arranged in the switching cavity, a plurality of filtering layers are arranged on the switching installation tool, a pushing device is arranged on the side part of the discharging pipeline, the telescopic end of the pushing device is connected with the switching installation tool, a flow detector is further arranged on the discharging pipeline, a quick cleaning device is further arranged on the side part of the discharging pipeline, the quick cleaning device comprises a cleaning bin arranged on the side part of the discharging pipeline, and a friction cleaning device and a flushing device are respectively arranged at the upper end and the lower end of the cleaning bin.

Description

Anti-blocking filtering device for loading and unloading liquid
Technical Field
The application relates to the technical field of liquid filtering devices, in particular to a filtering device capable of preventing blockage for loading and unloading liquid.
Background
In various mechanical devices, the filth blockage phenomenon can occur when the filter is used for a long time, the filth blockage filter can lose the original filtering function, even the pipeline where the filter is located is blocked, and serious consequences are caused. The degree of filth blockage is different due to the different environments in which different filters work. In particular, in the field of slurry filtration of lithium batteries, ideal electrode slurry is a suspension with uniform dispersion and high stability, is formed by uniformly dispersing electrode active materials, conductive agents, binders and solvents, belongs to typical high-viscosity solid-liquid phase suspension, but under the actual condition, substances with different polarities are mutually mixed, so that agglomeration of particles is inevitably caused, and the filter is more easily blocked during filtration.
Chinese patent CN216125273U discloses a filter equipment, including barrel, hollow filter screen and receive dirty section of thick bamboo, the upper end and the lower tip of barrel are provided with the top cap respectively and receive dirty section of thick bamboo, filter screen place in the inside of barrel, the upper end of filter screen has the inside through-hole of intercommunication, filter screen's inside forms the filter chamber, filter screen's lateral wall with the inside wall of barrel forms the toilet, receive the inner chamber of dirty section of thick bamboo and form and receive dirty room, be provided with the liquid outlet on the barrel, the liquid outlet with toilet direct communication, receive dirty room with filter chamber direct communication, the top cap with have the clearance between the through-hole, the clearance forms the buffer chamber that prevents that liquid is silted up, the inlet has been seted up to the lateral wall of buffer chamber, the inlet with through-hole direct communication.
When the filter screen of the technical scheme is used for filtering, impurities of liquid can be adsorbed on the surface of the filter screen, and the device is propped against the inner wall of the filter screen through the scraping blade. When the rotating shaft is rotated, the scraping blade can rotate along with the rotating shaft, and scraping of the scraping blade and the inner wall of the filter screen is further realized, so that the aim of removing impurities adhered to the filter screen is fulfilled.
Disclosure of Invention
To the problem that prior art exists, provide a can prevent filter equipment for liquid loading and unloading of jam, can effectually improve ejection of compact efficiency through high-efficient filtration discharging device, use manpower sparingly simultaneously.
In order to solve the problems in the prior art, the application provides a filtering device for loading and unloading liquid, which comprises a high-efficiency filtering and discharging device arranged at the discharging end of liquid processing equipment, wherein the high-efficiency filtering and discharging device comprises a discharging pipeline arranged at the discharging end of the liquid processing equipment, a switching chamber is arranged in the discharging pipeline, a switching installation tool is arranged in the switching chamber, a plurality of filtering layers are arranged on the switching installation tool, a pushing device is arranged on the side part of the discharging pipeline, the telescopic end of the pushing device is connected with the switching installation tool, a flow detector is also arranged on the discharging pipeline, a quick cleaning device is also arranged on the side part of the discharging pipeline, the quick cleaning device comprises a cleaning bin arranged at the side part of the discharging pipeline, and a friction cleaning device and a flushing device are respectively arranged at the upper end and the lower end of the cleaning bin, and the quick cleaning device also comprises a shrinkage clamping device for driving the friction cleaning device and the flushing device to move in a clamping mode.
Preferably, the switching installation tool is slidably installed in the switching chamber of the discharging pipeline, the switching installation tool is provided with a plurality of sealing pressing rings, the switching installation tool is also provided with a plurality of installation hole sites, and the inside of each installation hole site is provided with a fixed installation frame.
Preferably, the fixed mounting frame comprises a limiting frame arranged in the mounting hole, a limiting clamping groove is formed in the limiting frame, and a limiting fixed cover plate is further arranged on the limiting frame.
Preferably, the pushing device comprises a receiving bin at the side part of the discharging pipeline, the receiving bin is in butt joint with a switching cavity of the discharging pipeline, the upper end of the receiving bin is provided with a disassembly through hole, a disassembly cover is installed in the disassembly through hole, the lower end of the receiving bin is provided with a first discharging hole, the first discharging hole is communicated with the discharging pipeline through a first material guiding pipe, a first linear driver is further installed on the receiving bin, and the output end of the first linear driver is connected with a switching installation tool.
Preferably, the upper and lower ends of the inside of the cleaning bin are provided with limit mounting sleeves, the bottom of the cleaning bin is also provided with a second discharging hole, a second material guiding pipe is arranged in the second discharging hole, and the second material guiding pipe is connected with the pollution discharge area.
Preferably, the friction cleaning device comprises a first installation block installed on the shrinkage clamping device, a first installation pipeline is installed on the first installation block, the first installation pipeline is connected with a limit installation sleeve at the upper end of the cleaning bin, a rotation installation plate is installed at one end of the first installation pipeline, a rotation sealing ring is installed at the outer side of the rotation installation plate, a quick friction cleaning head is installed at the bottom of the rotation installation plate, the friction cleaning device further comprises a rotation driving device for driving the first installation pipeline to rotate, the rotation driving device comprises a rotation driver installed on the first installation block, a driving wheel is installed at the output end of the rotation driver, the rotation driving device further comprises a driven wheel installed on the first installation pipeline, and the driven wheel is meshed with the driving wheel.
Preferably, the quick friction cleaning head comprises a rotating support arranged at the bottom of the rotating mounting plate, a plurality of holes are formed in the inner wall of the rotating support, a plurality of brushes are further arranged on the inner wall of the rotating support, a plurality of scraping adhesive tapes are further arranged on the inner wall and the outer wall of the rotating support, and the scraping adhesive tapes are in a spiral shape.
Preferably, the flushing device comprises a second installation block installed on the shrinkage clamping device, a second installation pipeline is installed on the second installation block, the second installation pipeline is connected with a limit installation sleeve at the lower end of the cleaning bin, a sealing pressing plate is also installed on the second installation pipeline, the flushing device further comprises a circulating filtration water tank installed on the side part of the discharging pipeline, a suction pump is installed on the output end of the circulating filtration water tank, the suction pump is connected with the second installation pipeline, and the input end of the circulating filtration water tank is connected with the first installation pipeline.
Preferably, the inside of circulation filtration water tank is equipped with the division board, makes the inside of circulation filtration water tank split into sewage cavity and water purification cavity, and the junction of water cavity and water purification cavity is equipped with the purification layer, and the blowdown fill is installed to the bottom of sewage cavity and water purification cavity, and the bottom of blowdown fill is equipped with the drain.
Preferably, the shrinkage clamping device comprises a mounting bracket arranged at the side part of the discharging pipeline, a second linear driver is arranged on the mounting bracket, a connecting block is arranged at the output end of the second linear driver, a first connecting rod and a second connecting rod are symmetrically arranged on the connecting block, the first connecting rod is connected with the first mounting block, and the second connecting rod is connected with the second mounting block.
Compared with the prior art, the application has the following beneficial effects:
1. the impurity of filtering out can stay in the surface and the filtration pore of filter layer, and long-time filtration can lead to the filter layer to appear blockking up, and the filter layer appears blockking up flow detector and can detect the discharge amount low, when the filter layer that needs in time to clear up to block up, promotes through pusher and switches the installation and switch the removal in the switching cavity of ejection of compact pipeline, can remove the switching cavity of ejection of compact pipeline with reserve filter layer when switching the installation and remove, carries out filtering treatment continuously, effectively guarantees to improve ejection of compact efficiency.
2. The filter layer can lead to the filter layer to appear blocking, the filter layer appears blocking flow detector can detect the discharge amount low, pusher promotes to switch the installation utensil and removes, remove quick cleaning device's wash bin with the filter layer of blocking, shrink clamping device drives friction belt cleaning device again and washing unit carries out the centre gripping motion, make friction belt cleaning device and washing unit and switch the installation utensil conflict, friction belt cleaning device's cleaning end is contradicted with the filter layer, washing unit carries the filter layer of blocking with the washing liquid in, can form back flush effect when the washing liquid passes the filter layer, effectually wash away impurity in the filtration with the filter layer, friction belt cleaning device carries the sewage that washes to the region of waiting to handle, friction belt cleaning device also can rub the surface of switching installation utensil and filter layer simultaneously, effectually improve towards the effect, can effectually guarantee the washing effect through washing unit and friction belt cleaning device cooperation, reduce the frequency of filter layer change and use manpower sparingly and reduce filtering cost.
Drawings
FIG. 1 is a front view of a filter device for liquid handling and liquid processing equipment that is resistant to clogging;
FIG. 2 is a front view of a filter device for liquid handling that is resistant to clogging;
FIG. 3 is a side view of a filter device for handling liquid that is resistant to clogging;
FIG. 4 is a cross-sectional view taken at section A-A of FIG. 3;
FIG. 5 is a perspective view of a filter device for loading and unloading liquid, which can prevent clogging;
FIG. 6 is a schematic perspective view of a switching fixture in a filter device for handling liquid that is resistant to clogging;
FIG. 7 is an exploded view of a switching installation tool and a filter layer in a filter device for liquid handling that is resistant to clogging;
FIG. 8 is a schematic perspective view of a pusher in a filter device for handling liquid that is resistant to clogging;
FIG. 9 is a schematic perspective view of a friction washer in a liquid handling filter device that is resistant to clogging;
FIG. 10 is a schematic perspective view of a quick friction cleaning head in an anti-clogging liquid handling filter device;
FIG. 11 is a schematic perspective view of a flushing device in a liquid handling filter device that is resistant to clogging;
fig. 12 is a plan sectional perspective view of a circulating filter water tank in a filter device for loading and unloading liquid, which can prevent clogging.
The reference numerals in the figures are:
a1-liquid processing equipment; a2-a high-efficiency filtering discharging device; 1-a discharge pipeline; 2-switching the mounting tool; 21-sealing the pressing ring; 22-mounting hole sites; 23-fixing the mounting frame; 231-a limit frame; 232-limiting and fixing the cover plate; 3-a filter layer; 4-pushing device; 41-receiving bins; 411-removing the cover; 414-a first feed conduit; 42-a first linear drive; 5-a flow detector; 6-a quick cleaning device; 61-cleaning a bin; 611-limit mounting sleeve; 612-a second feed conduit; 62-friction cleaning device; 621-a first mounting block; 622-first mounting duct; 623-rotating the mounting plate; 624-rotating the seal ring; 625-quick friction cleaning head; 6251-rotating the carriage; 6252-cleaning brushes; 6253-scraping adhesive tape; 626-a rotary drive; 627-driving wheel; 628-driven wheel; 63-flushing device; 631-a second mounting block; 632-a second mounting duct; 633-sealing against plate; 634-a circulating filtration water tank; 6341-dividing plates; 6342-purification layer; 6343-sewage chamber; 6344-clean water chamber; 6345-blowdown hopper; 635-suction pump; 64-shrink grip devices; 641-mounting brackets; 642-a second linear drive; 643-connecting block; 644-first connecting rod; 645-second connecting rod.
Detailed Description
The application will be further described in detail with reference to the drawings and the detailed description below, in order to further understand the features and technical means of the application and the specific objects and functions achieved.
As shown in fig. 1 to 12:
the utility model provides a can prevent filter equipment for liquid loading and unloading of jam, including installing the high-efficient discharging device A2 that filters at liquid processing equipment A1 discharge end, high-efficient discharging device A2 is including installing the ejection of compact pipeline 1 at liquid processing equipment A1 discharge end, the inside of ejection of compact pipeline 1 is equipped with the switching cavity, install the switching installation utensil 2 in the switching cavity, install a plurality of filter layers 3 on the switching installation utensil 2, pusher 4 is installed to the lateral part of ejection of compact pipeline 1, pusher 4's flexible end is connected with the switching installation utensil 2, still install flow detector 5 on the ejection of compact pipeline 1, quick cleaning device 6 is still installed to the lateral part of ejection of compact pipeline 1, quick cleaning device 6 is including installing the washing storehouse 61 at ejection of compact pipeline 1 lateral part, friction belt cleaning device 62 and washing unit 63 are installed respectively to the upper and lower both ends in washing storehouse 61, quick cleaning device 6 still includes the shrink clamping device 64 that drives friction belt cleaning device 62 and washing unit 63 centre gripping motion.
The high-efficiency filtering discharging device A2 is arranged at the discharging end of the liquid processing equipment A1, when the liquid processing equipment A1 mixes and processes liquid, the liquid processing equipment A1 conveys mixed liquid into the discharging pipeline 1 of the high-efficiency filtering discharging device A2, the mixed liquid enters the discharging pipeline 1 and contacts with the filter layer 3 of the switching installation tool 2, the filter layer 3 can effectively filter the mixed liquid, the filtered mixed liquid can be discharged to a to-be-processed area along the discharging pipeline 1, the flow detector 5 can detect the discharging amount of the discharging pipeline 1 in real time, filtered impurities can stay on the surface of the filter layer 3 and in the filtering holes, the filter layer 3 is blocked after long-time filtering, the filter layer 3 is blocked, the flow detector 5 can detect low discharging amount, and when the blocked filter layer 3 needs to be cleaned in time, the pushing device 4 pushes the switching installation tool 2 to switch in the switching chamber of the discharging pipeline 1, the standby filter layer 3 is moved into the switching chamber of the discharging pipeline 1 when the switching installation tool 2 moves to continue filtering treatment, meanwhile, the switching installation tool 2 moves the blocked filter layer into the cleaning bin 61 of the quick cleaning device 6, the contracting clamping device 64 drives the friction cleaning device 62 and the flushing device 63 to carry out clamping movement, the friction cleaning device 62 and the flushing device 63 are in contact with the switching installation tool 2, the cleaning end of the friction cleaning device 62 is in contact with the filter layer 3, the flushing device 63 conveys cleaning liquid into the blocked filter layer 3, a back flushing effect is formed when the cleaning liquid passes through the filter layer 3, impurities in the filtering of the filter layer 3 are effectively flushed out, the friction cleaning device 62 conveys the flushed sewage to a region to be treated, the friction cleaning device 62 also rubs the surfaces of the switching installation tool 2 and the filter layer 3, the flushing effect is effectively improved, the shrinkage clamping device 64 is provided with the friction cleaning device 62 and the flushing device 63 to return to the original position after the cleaning is finished, and the pushing device 4 drives the switching installation tool 2 to return to the original position, so that the cleaned filter layer 3 moves into the switching chamber of the discharging pipeline 1 to continue filtering and discharging.
As shown in fig. 4 and 6:
the switching installation tool 2 is slidably installed in a switching chamber of the discharging pipeline 1, a plurality of sealing pressing rings 21 are arranged on the switching installation tool 2, a plurality of installation hole sites 22 are further arranged on the switching installation tool 2, and fixed installation frames 23 are installed in the installation hole sites 22.
The installation hole site 22 on the switching installation tool 2 is used for butt joint intercommunication ejection of compact pipeline 1, and the inside fixed mounting bracket 23 of installation hole site 22 is used for fixed mounting filter layer 3, and the sealed pressure ring 21 on the switching installation tool 2 is used for contradicting with the switching cavity inner wall of ejection of compact pipeline 1 when switching, ensures the leakproofness when switching.
As shown in fig. 6 and 7:
the fixed mounting frame 23 comprises a limiting frame 231 arranged in the mounting hole 22, a limiting clamping groove is formed in the limiting frame 231, and a limiting fixed cover plate 232 is further arranged on the limiting frame 231.
When the filter layer 3 is required to be installed on the switching installation tool 2, a worker sleeves the filter layer 3 in a limiting clamping groove in the limiting frame 231, the worker installs the limiting frame 231 through the limiting fixed cover plate 232, and the limiting fixed cover plate 232 clamps the filter layer 3 in a limiting mode, so that the filter layer 3 is installed, and the maintenance is effectively convenient to disassemble.
As shown in fig. 4 and 8:
the pusher 4 includes that the Anhui connects feed bin 41 at ejection of compact pipeline 1 lateral part, connects feed bin 41 and ejection of compact pipeline 1's switching cavity butt joint, connects the upper end of feed bin 41 all to be equipped with and dismantle the through-hole, installs in the dismantlement through-hole and dismantle lid 411, connects the lower extreme of feed bin 41 all to be equipped with first discharge opening, and first discharge opening communicates with ejection of compact pipeline 1 through first passage 414, connects still installs first linear drive 42 on the feed bin 41, and the output and the switching of first linear drive 42 are installed 2 and are connected.
When the flow detector 5 detects that the discharge amount in the discharge pipeline 1 is too low, the first linear driver 42 is preferably an electric push rod, when the position of the switching installation tool 2 needs to be switched, the electric push rod pushes the switching installation tool 2 to switch and move in the switching chamber of the discharge pipeline 1, the switching installation tool 2 which is remained in the storage bin 41 moves into the switching chamber, the standby filter layer 3 is replaced by the filter layer 3 to continue to carry out filtering treatment, the blocked filter layer can be pushed into the quick cleaning device 6 at the same time, the quick cleaning device 6 carries out back flushing treatment on the blocked filter layer 3, the blocked filter layer 3 is cleaned, the first linear driver 42 can mobilize the switching installation tool 2 to return to the original position, the standby filter layer 3 can adhere filtered liquid when the switching installation tool 2 returns to the original position, the adhered filtered liquid can fall into the storage bin 41, the first guide pipe 414 at the bottom of the storage bin 41 conveys the filtered liquid into the discharge pipeline 1, the disassembly cover 411 on the storage bin 41 is convenient for a worker to detach, and the worker to maintain the filter layer 3 after the disassembly cover 411.
As shown in fig. 4 and 5:
the upper and lower both ends of the inside of wash bin 61 all are equipped with spacing installation cover 611, and the bottom of wash bin 61 still is equipped with the second discharge opening, and second passage 612 is installed to the second discharge opening, and second passage 612 is connected with the blowdown region.
The electric putter promotes and switches the installation utensil 2 and switches the removal in the switching cavity of ejection of compact pipeline 1, will stop at the inside switching installation utensil 2 of receiving the feed bin 41 and remove to switch the cavity, make reserve filter layer 3 that replaces the jam at filter layer 3 continue to carry out filtration treatment, the filter layer 3 that blocks up then can be bulldozed to the inside of washing storehouse 61, the spacing installation cover 611 at the upper and lower both ends of washing storehouse 61 is used for spacing guide friction belt cleaning device 62 and washing unit 63 to the installation hole site 22 removal of switching installation utensil 2, the effective accuracy of guaranteeing friction belt cleaning device 62 and washing unit 63 butt joint, the leakage of cleaning sewage can be produced when friction belt cleaning device 62 and washing unit 63 cooperate the jam filter layer 3 on the switching installation utensil 2 to wash, the second discharge port can be with abluent sewage guide transport to the region of waiting to handle.
As shown in fig. 5 and 9:
the friction cleaning device 62 comprises a first mounting block 621 mounted on the shrinkage clamping device 64, a first mounting pipeline 622 is mounted on the first mounting block 621, the first mounting pipeline 622 is connected with a limit mounting sleeve 611 at the upper end of the cleaning bin 61, a rotation mounting plate 623 is mounted at one end of the first mounting pipeline 622, a rotation sealing ring 624 is mounted on the outer side of the rotation mounting plate 623, a quick friction cleaning head 625 is mounted at the bottom of the rotation mounting plate 623, the friction cleaning device 62 further comprises a rotation driving device for driving the first mounting pipeline 622 to rotate, the rotation driving device comprises a rotation driver 626 mounted on the first mounting block 621, a driving wheel 627 is mounted at the output end of the rotation driver 626, the rotation driving device further comprises a driven wheel 628 mounted on the first mounting pipeline 622, and the driven wheel 628 is meshed with the driving wheel 627.
When the switching installation tool 2 is used for cleaning the cleaning bin 61 to which the blocking filter is moved, the shrinkage clamping device 64 drives the first installation block 621 and the flushing device 63 to synchronously shrink and move, the flushing device 63 can move along the limit installation sleeve 611 of the cleaning bin 61 when shrinking and moving, the flushing end of the flushing device 63 is in butt joint sealing conflict with the installation hole site 22 of the switching installation tool 2, meanwhile, the first installation block 621 can push the first installation pipeline 622 to move downwards along the limit installation sleeve 611 of the cleaning bin 61 when shrinking and moving, the first installation pipeline 622 can drive the rotation installation plate 623 to move downwards when moving downwards, the rotation installation plate 623 can drive the rotation sealing ring 624 to be in sealing conflict with the installation hole site 22 of the switching installation tool 2, and the rotation installation plate 623 can drive the quick friction cleaning head 625 to be inserted into the installation hole site 22 of the installation tool when moving downwards, so that the quick friction cleaning head 625 can avoid conflict with the blocked filter layer 3;
when the blocked filter layer 3 is cleaned, the cleaning device 63 conveys cleaning liquid to the installation hole site 22 of the switching installation tool 2, the cleaning liquid continuously and reversely passes through the filter layer 3 to flow out, the cleaning liquid can enable fine impurity particles permeated into the filter layer 3 to be flushed into the first installation pipeline 622 when passing through the filter layer 3, the first installation pipeline 622 conveys the flushed sewage to a region to be treated, the rotary driver 626 is preferably a servo motor when the filter layer 3 is flushed, the servo motor drives the driving wheel 627 to rotate, the driving wheel 627 can drive the driven wheel 628 to rotate when rotating, the driving wheel 627 can drive the first installation pipeline 622 to rotate when rotating, the rotating installation plate 623 rotates along with the first installation pipeline 622, the quick friction cleaning head 625 which is abutted against the filter layer 3 can be driven to rotate when rotating the installation plate 623, the quick friction cleaning head rotates can effectively scrape the inner walls of the filter layer 3 and the installation hole site 22 of the switching installation tool 2, and the cleaning liquid can be ensured to be matched to flow again.
As shown in fig. 9 and 10:
the quick friction cleaning head 625 comprises a rotating bracket 6251 arranged at the bottom of a rotating mounting plate 623, wherein a plurality of holes are formed in the inner wall of the rotating bracket 6251, a plurality of brushes are further arranged on the inner wall of the rotating bracket 6251, a plurality of scraping adhesive strips 6253 are further arranged on the inner wall and the outer wall of the rotating bracket 6251, and the scraping adhesive strips 6253 are in a spiral shape.
The quick friction cleaning head 625 is inserted into the mounting hole 22 of the mounting tool, the rotating support 6251 of the quick friction cleaning head 625 is sleeved on the outer side of the filter layer 3, the brush of the quick friction cleaning head 625 can be abutted against the surface of the filter layer 3, loose impurities can be effectively cleaned when the brush rubs against the surface of the filter layer 3, the inner wall and the outer wall of the rotating support 6251 are provided with scraping adhesive strips 6253 in a spiral shape, the inner wall of the rotating support 6251 is provided with scraping adhesive strips 6253 which can effectively scrape and clean the impurities on the surface of the filter layer 3 during rotation, the outer wall of the rotating support 6251 is provided with scraping adhesive strips 6253 which can effectively scrape and clean the impurities attached to the switching mounting tool 2, and holes on the inner wall of the rotating support 6251 are convenient for scraping impurities to circulate along with cleaning liquid.
As shown in fig. 5 and 11:
the flushing device 63 comprises a second mounting block 631 mounted on the shrinkage clamping device 64, a second mounting pipeline 632 is mounted on the second mounting block 631, the second mounting pipeline 632 is connected with a limit mounting sleeve 611 at the lower end of the cleaning bin 61, a sealing pressing plate 633 is further mounted on the second mounting pipeline 632, the flushing device 63 further comprises a circulating filtering water tank 634 mounted on the side part of the discharging pipeline 1, a suction pump 635 is mounted on the output end of the circulating filtering water tank 634, the suction pump 635 is connected with the second mounting pipeline 632, and the input end of the circulating filtering water tank 634 is connected with the first mounting pipeline 622.
The second installation piece 631 of the flushing device 63 is used for connecting the shrink end of shrink clamping device 64, can drive the second installation piece 631 to carry out synchronous shrink movement when shrink clamping device 64 shrink, can promote the second installation pipeline 632 to carry out synchronous shrink movement when second installation piece 631 shrink movement, the second installation pipeline 632 can be along the lower spacing installation cover 611 of cleaning storehouse 61 remove, the second installation pipeline 632 is through sealed butt joint of pressing plate 633 with the mounting hole site 22 of switching installation utensil 2, shrink clamping device 64 drives friction belt cleaning device 62 and switching installation utensil 2 butt joint simultaneously and contradicts, when needs flushing filter layer 3, draw the washing liquid from circulation filter tank 634 through suction pump 635, and carry the washing liquid to filter layer 3 from second installation pipeline 632, the washing liquid can form the backwash effect through filter layer 3, the effectual impurity that gets rid of infiltration filter layer 3 inside that gets rid of, the washing liquid that washes flows back to circulation filter tank 634 from the first installation pipeline 622 of friction belt cleaning device 62 through the filter layer 3, circulation filter tank 634 washs waste water and filters for cyclic use.
As shown in fig. 11 and 12:
the inside of the circulating filtration water tank 634 is provided with a partition plate 6341, so that the inside of the circulating filtration water tank 634 is divided into a sewage chamber 6343 and a clean water chamber 6344, a purification layer 6342 is arranged at the joint of the water chamber and the clean water chamber 6344, a sewage hopper 6345 is arranged at the bottoms of the sewage chamber 6343 and the clean water chamber 6344, and a sewage outlet is arranged at the bottom of the sewage hopper 6345.
The inside sewage cavity 6343 of circulation filtration water tank 634 is used for collecting wash waste water, and the purification layer 6342 of water cavity and water purification cavity 6344's junction is used for filtering aquatic impurity, and the washing liquid that filters can permeate into water purification cavity 6344, and the pollution impurity in the aquatic can deposit the bottom of blowdown fill 6345, effectual cyclic utilization, saves the cost.
As shown in fig. 3 to 5:
the shrinkage clamping device 64 comprises a mounting bracket 641 arranged on the side part of the discharge pipeline 1, a second linear driver 642 is arranged on the mounting bracket 641, a connecting block 643 is arranged at the output end of the second linear driver 642, a first connecting rod 644 and a second connecting rod 645 are symmetrically arranged on the connecting block 643, the first connecting rod 644 is connected with the first mounting block 621, and the second connecting rod 645 is connected with the second mounting block 631.
The second linear driver 642 is preferably a linear driver, when the flushing device 63 and the friction cleaning device 62 need to be synchronously moved in a shrinking manner, the linear driver drives the connecting block 643 to perform shrinking motion, when the connecting block 643 shrinks motion, the first connecting rod 644 and the second connecting rod 645 are driven to synchronously move, when the first connecting rod 644 and the second connecting rod 645 move, the first mounting block 621 of the friction cleaning device 62 is driven to move, and when the second connecting rod 645 moves, the second mounting block 631 of the friction cleaning device 62 is driven to move, and the flushing device 63 and the friction cleaning device 62 are driven to perform clamping motion in an effective synchronous manner.
The specific working principle is as follows:
the high-efficiency filtering discharging device A2 is arranged at the discharging end of the liquid processing equipment A1, when the liquid processing equipment A1 mixes and processes liquid, the liquid processing equipment A1 conveys mixed liquid into the discharging pipeline 1 of the high-efficiency filtering discharging device A2, the mixed liquid enters the discharging pipeline 1 and contacts with the filter layer 3 of the switching installation tool 2, the filter layer 3 can effectively filter the mixed liquid, the filtered mixed liquid can be discharged to a to-be-processed area along the discharging pipeline 1, the flow detector 5 can detect the discharging amount of the discharging pipeline 1 in real time, filtered impurities can stay on the surface of the filter layer 3 and in the filtering holes, the filter layer 3 is blocked after long-time filtering, the filter layer 3 is blocked, the flow detector 5 can detect low discharging amount, and when the blocked filter layer 3 needs to be cleaned in time, the pushing device 4 pushes the switching installation tool 2 to switch in the switching chamber of the discharging pipeline 1, the standby filter layer 3 is moved into the switching chamber of the discharging pipeline 1 when the switching installation tool 2 moves to continue filtering treatment, meanwhile, the switching installation tool 2 moves the blocked filter layer into the cleaning bin 61 of the quick cleaning device 6, the contracting clamping device 64 drives the friction cleaning device 62 and the flushing device 63 to carry out clamping movement, the friction cleaning device 62 and the flushing device 63 are in contact with the switching installation tool 2, the cleaning end of the friction cleaning device 62 is in contact with the filter layer 3, the flushing device 63 conveys cleaning liquid into the blocked filter layer 3, a back flushing effect is formed when the cleaning liquid passes through the filter layer 3, impurities in the filtering of the filter layer 3 are effectively flushed out, the friction cleaning device 62 conveys the flushed sewage to a region to be treated, the friction cleaning device 62 also rubs the surfaces of the switching installation tool 2 and the filter layer 3, the flushing effect is effectively improved, the shrinkage clamping device 64 is provided with the friction cleaning device 62 and the flushing device 63 to return to the original position after the cleaning is finished, and the pushing device 4 drives the switching installation tool 2 to return to the original position, so that the cleaned filter layer 3 moves into the switching chamber of the discharging pipeline 1 to continue filtering and discharging.
The foregoing examples merely illustrate one or more embodiments of the application, which are described in greater detail and are not to be construed as limiting the scope of the application. It should be noted that it will be apparent to those skilled in the art that several variations and modifications can be made without departing from the spirit of the application, which are all within the scope of the application. Accordingly, the scope of protection of the present application is to be determined by the appended claims.

Claims (10)

1. The utility model provides a can prevent filter equipment for liquid loading and unloading of jam, including installing high-efficient filtration discharging device (A2) at liquid processing equipment (A1) discharge end, a serial communication port, high-efficient filtration discharging device (A2) is including installing discharge tube (1) at liquid processing equipment (A1) discharge end, the inside of discharge tube (1) is equipped with the switching cavity, install in the switching cavity and switch install utensil (2), install a plurality of filter layers (3) on switching install utensil (2), pusher (4) are installed to the lateral part of discharge tube (1), the flexible end and the switching install utensil (2) of pusher (4) are connected, still install flow detector (5) on discharge tube (1), quick cleaning device (6) are still installed to the lateral part of discharge tube (1), quick cleaning device (6) are including installing in the wash bin (61) of discharge tube (1) lateral part, friction belt cleaning device (62) and washing device (63) are installed respectively to the upper and lower both ends of wash bin (61), quick cleaning device (6) still include drive friction belt cleaning device (62) and clamping device (64) of clamping movement.
2. The anti-clogging filtering device for liquid handling according to claim 1, wherein the switching installation tool (2) is slidably installed in the switching chamber of the discharging pipeline (1), a plurality of sealing pressing rings (21) are arranged on the switching installation tool (2), a plurality of installation hole sites (22) are further arranged on the switching installation tool (2), and the fixing installation frames (23) are installed inside the installation hole sites (22).
3. The anti-clogging filtering device for liquid handling according to claim 2, wherein the fixing mounting frame (23) comprises a limiting frame (231) mounted inside the mounting hole (22), a limiting clamping groove is formed in the limiting frame (231), and a limiting fixing cover plate (232) is further mounted on the limiting frame (231).
4. The anti-blocking filtering device for liquid loading and unloading according to claim 3, wherein the pushing device (4) comprises a receiving bin (41) arranged on the side part of the discharging pipeline (1), the receiving bin (41) is in butt joint with a switching chamber of the discharging pipeline (1), the upper end of the receiving bin (41) is provided with a disassembly through hole, a disassembly cover (411) is arranged in the disassembly through hole, the lower end of the receiving bin (41) is provided with a first discharging hole, the first discharging hole is communicated with the discharging pipeline (1) through a first material guide pipe (414), a first linear driver (42) is further arranged on the receiving bin (41), and the output end of the first linear driver (42) is connected with the switching installation tool (2).
5. The anti-clogging filtering device for loading and unloading liquid according to claim 4, wherein the upper end and the lower end of the inside of the cleaning bin (61) are respectively provided with a limit mounting sleeve (611), the bottom of the cleaning bin (61) is further provided with a second discharging hole, a second material guiding pipe (612) is arranged in the second discharging hole, and the second material guiding pipe (612) is connected with a pollution discharge area.
6. The anti-clogging filtering device for liquid handling according to claim 5, wherein the friction washer (62) includes a first mounting block (621) mounted on the shrink grip device (64), a first mounting pipe (622) is mounted on the first mounting block (621), the first mounting pipe (622) is connected with a limit mounting sleeve (611) at an upper end of the washing compartment (61), a rotation mounting plate (623) is mounted at one end of the first mounting pipe (622), a rotation seal ring (624) is mounted at an outer side of the rotation mounting plate (623), a quick friction washer (625) is mounted at a bottom of the rotation mounting plate (623), the friction washer (62) further includes a rotation driver (626) for driving the first mounting pipe (622), the rotation driver (626) includes a driving wheel (627) mounted at an output end of the first mounting block (621), and the rotation driver further includes a driven wheel (628) mounted on the first mounting pipe (622), the driven wheel (628) is meshed with the driving wheel (627).
7. The anti-clogging filtering device for liquid handling according to claim 6, wherein the quick friction cleaning head (625) comprises a rotating bracket (6251) mounted at the bottom of the rotating mounting plate (623), a plurality of holes are formed in the inner wall of the rotating bracket (6251), a plurality of brushes are further arranged in the inner wall of the rotating bracket (6251), a plurality of scraping rubber strips (6253) are further arranged on the inner and outer walls of the rotating bracket (6251), and the scraping rubber strips (6253) are in a spiral shape.
8. The anti-clogging filtering device for liquid handling according to claim 7, wherein the flushing device (63) comprises a second mounting block (631) mounted on the shrink clamping device (64), a second mounting pipe (632) is mounted on the second mounting block (631), the second mounting pipe (632) is connected with a limit mounting sleeve (611) at the lower end of the cleaning bin (61), a sealing pressing plate (633) is further mounted on the second mounting pipe (632), the flushing device (63) further comprises a circulating filtering water tank (634) mounted on the side of the discharging pipe (1), a suction pump (635) is mounted on the output end of the circulating filtering water tank (634), the suction pump (635) is connected with the second mounting pipe (632), and the input end of the circulating filtering water tank (634) is connected with the first mounting pipe (622).
9. The anti-clogging filtering device for loading and unloading liquid according to claim 8, wherein a partition plate (6341) is provided inside the circulating filter water tank (634), the inside of the circulating filter water tank (634) is partitioned into a sewage chamber (6343) and a clean water chamber (6344), a purifying layer (6342) is provided at the junction of the water chamber and the clean water chamber (6344), a sewage hopper (6345) is provided at the bottoms of the sewage chamber (6343) and the clean water chamber (6344), and a sewage outlet is provided at the bottom of the sewage hopper (6345).
10. The anti-clogging filtering device for liquid handling according to claim 9, wherein the contracting and holding device (64) comprises a mounting bracket (641) mounted on the side of the discharge pipe (1), a second linear driver (642) is mounted on the mounting bracket (641), a connecting block (643) is mounted on the output end of the second linear driver (642), a first connecting rod (644) and a second connecting rod (645) are symmetrically mounted on the connecting block (643), the first connecting rod (644) is connected with the first mounting block (621), and the second connecting rod (645) is connected with the second mounting block (631).
CN202311174015.5A 2023-09-12 2023-09-12 Anti-blocking filtering device for loading and unloading liquid Pending CN116899312A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202311174015.5A CN116899312A (en) 2023-09-12 2023-09-12 Anti-blocking filtering device for loading and unloading liquid

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202311174015.5A CN116899312A (en) 2023-09-12 2023-09-12 Anti-blocking filtering device for loading and unloading liquid

Publications (1)

Publication Number Publication Date
CN116899312A true CN116899312A (en) 2023-10-20

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Country Link
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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111203015A (en) * 2020-01-16 2020-05-29 四川省泰达建设工程有限公司 A filtration system for hydraulic and hydroelectric engineering
CN211462312U (en) * 2019-11-07 2020-09-11 广西双宇环保科技有限公司 Conveniently change filter equipment for sewage treatment of filter screen
CN212757538U (en) * 2020-04-15 2021-03-23 中化重庆涪陵化工有限公司 Domestic sludge filter box
CN114931830A (en) * 2022-06-17 2022-08-23 江西赣悦新材料有限公司 Purification device for glass raw material processing and use method thereof
CN219376307U (en) * 2023-03-07 2023-07-21 沈阳航星饮业有限公司 Water filter device convenient for cleaning filter cylinder

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN211462312U (en) * 2019-11-07 2020-09-11 广西双宇环保科技有限公司 Conveniently change filter equipment for sewage treatment of filter screen
CN111203015A (en) * 2020-01-16 2020-05-29 四川省泰达建设工程有限公司 A filtration system for hydraulic and hydroelectric engineering
CN212757538U (en) * 2020-04-15 2021-03-23 中化重庆涪陵化工有限公司 Domestic sludge filter box
CN114931830A (en) * 2022-06-17 2022-08-23 江西赣悦新材料有限公司 Purification device for glass raw material processing and use method thereof
CN219376307U (en) * 2023-03-07 2023-07-21 沈阳航星饮业有限公司 Water filter device convenient for cleaning filter cylinder

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