CN204261466U - Multistage filter - Google Patents
Multistage filter Download PDFInfo
- Publication number
- CN204261466U CN204261466U CN201420709688.6U CN201420709688U CN204261466U CN 204261466 U CN204261466 U CN 204261466U CN 201420709688 U CN201420709688 U CN 201420709688U CN 204261466 U CN204261466 U CN 204261466U
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- CN
- China
- Prior art keywords
- filter
- exocoel
- screen pack
- chamber
- inner chamber
- 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.)
- Expired - Fee Related
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Abstract
The utility model provides a kind of multistage filter, comprises and filters exocoel and be arranged at the screen pack chamber of filtering outer chamber; Screen pack is provided with feed pipe above chamber, inside, screen pack chamber is provided with inner chamber spring, the outer edge of inner chamber spring is provided with inner chamber brush, bottom is connected with base, pole is provided with below base, pole is connected with push-and-pull motor, screen pack chamber is provided with screen pack chamber lower connecting plate, inner chamber separating rotary rotary device and screen pack chamber upper junction plate; Filter on exocoel and be provided with exocoel separating rotary rotary device, filtration exocoel lower connecting plate and filtration exocoel upper junction plate, filter bottom exocoel and be connected with discharge nozzle, discharge nozzle is provided with discharging switch, fluid monitoring device and feed back lower flange; This multistage filter can solve filter well and often occur using after-filter inside to occur a large amount of impurity buildups for a long time, greatly have impact on the problem of the filter efficiency of filter.
Description
Technical field
The utility model relates to filter technology field, is specifically related to a kind of multistage filter.
Background technology
Filter is grouped into by cylindrical shell, stainless steel filtering net, blowdown part, transmission device and electrical control division.Filter work time, water to be filtered enters by during the mouth of a river, flows through filter screen, by outlet enter user institute palpus pipeline carry out process cycles, the particle acrobatics in water is trapped within its interior.So constantly circulation, the particle be retained down gets more and more, the rate of filtration is more and more slower, and the sewage of import still enters continuously, filter opening can be more and more less, entering thus, pressure differential is produced between outlet, when magnanimous difference reaches setting value, the signal of telecommunication is sent to controller by differential pressure transmitter, control system is started CD-ROM drive motor and is rotated by transmission component band moving axis, sewage draining exit is opened simultaneously, discharged by sewage draining exit, after filter gauze cleaning, pressure reduction drops to minimum of a value, system turns back to inceptive filtering shape, system is normally run, existing filter often occurs using after-filter inside to occur a large amount of impurity buildups for a long time, greatly have impact on the filter efficiency of filter, so need a kind of multistage filter badly to solve the problem.
Utility model content
The purpose of this utility model is for the deficiencies in the prior art, a kind of multistage filter is provided, this multistage filter can solve filter well and often occur using after-filter inside to occur a large amount of impurity buildups for a long time, greatly have impact on the problem of the filter efficiency of filter.
For reaching above-mentioned requirements, the technical scheme that the utility model is taked is: provide a kind of multistage filter, and this multistage filter comprises the screen pack chamber of filtering exocoel and being arranged at filtration outer chamber, screen pack is provided with feed pipe above chamber, inside, screen pack chamber is provided with inner chamber spring, the outer edge of inner chamber spring is provided with inner chamber brush, inner chamber spring bottom is connected with base, pole is provided with below base, pole is connected with push-and-pull motor, screen pack chamber is provided with screen pack chamber lower connecting plate, inner chamber separating rotary rotary device and screen pack chamber upper junction plate, filter on exocoel and be provided with exocoel separating rotary rotary device, filter exocoel lower connecting plate and filter exocoel upper junction plate, filter bottom exocoel and be connected with discharge nozzle, discharge nozzle is provided with discharging switch, fluid monitoring device and feed back lower flange, discharge nozzle is connected with feed back pipe, described feed back pipe is provided with feed back pump, the other end of feed back pipe is connected with feed pipe by feed back upper flange, the top of filtering exocoel is provided with temperature measuring equipment, the bottom of filtering exocoel is provided with lower temperature measuring equipment, upper temperature measuring equipment is all connected with total attemperating unit by connecting circuit with lower temperature measuring equipment, discharge nozzle is connected with ionization filter, and ionization filter inside is provided with electrode bar, and the bottom of ionization filter is provided with battery lead plate and lower outlet.
The advantage that this multistage filter has is as follows:
(1) by arranging exocoel separating rotary rotary device, filter exocoel lower connecting plate, filter dismounting that exocoel upper junction plate, screen pack chamber lower connecting plate, inner chamber separating rotary rotary device and screen pack chamber upper junction plate can realize filtering exocoel and screen pack chamber and be separated, and then it is clean to realize filter interior.
(2) by arranging inner chamber spring and arrange inner chamber brush on the outer edge of inner chamber spring, cleaning inside, screen pack chamber can be realized.
(3) by arrange feed back pump, discharging switch, discharge nozzle, fluid monitoring device and feed back lower flange can realize to filter after liquid monitor, when filtration qualified be can discharge from discharge nozzle, be again to filter when defective.
(4) can measure the fluid temperature of filter top and bottom by arranging lower temperature measuring equipment, connecting circuit, total attemperating unit and upper temperature measuring equipment, thus draw the data that can embody filter internal temperature more accurately.
(5) by arranging ionization filter, electrode bar, battery lead plate and lower outlet can realize to liquid multistage filtering, thus improve the efficiency of filtering.
Accompanying drawing explanation
Accompanying drawing described herein is used to provide further understanding of the present application, form a application's part, use identical reference number to represent same or analogous part in the drawings, the schematic description and description of the application, for explaining the application, does not form the improper restriction to the application.In the accompanying drawings:
Fig. 1 schematically shows the structural representation of the multistage filter according to the application's embodiment.
Wherein: 1, feed pipe; 2, feed back upper flange; 3, exocoel separating rotary rotary device; 4, feed back pipe; 5, feed back pump; 6, discharging switch; 7, discharge nozzle; 8, fluid monitoring device; 9, feed back lower flange; 10, push-and-pull motor; 11, pole; 12, lower temperature measuring equipment; 13, connecting circuit; 14, total attemperating unit; 15, upper temperature measuring equipment; 16, exocoel is filtered; 17, inner chamber spring; 18, inner chamber brush; 19, base; 20, screen pack chamber; 21, exocoel lower connecting plate is filtered; 22, exocoel upper junction plate is filtered; 23, screen pack chamber lower connecting plate; 24, inner chamber separating rotary rotary device; 25, screen pack chamber upper junction plate; 26, filter is ionized; 27, electrode bar; 28, battery lead plate; 29, lower outlet.
Detailed description of the invention
For making the object of the application, technical scheme and advantage clearly, below in conjunction with drawings and the specific embodiments, the application is described in further detail.
In the following description, quoting of " embodiment ", " embodiment ", " example ", " example " etc. is shown that the embodiment of so description or example can comprise special characteristic, structure, characteristic, character, element or limit, but not each embodiment or example must comprise special characteristic, structure, characteristic, character, element or limit.In addition, reuse phrase " embodiment according to the application " although be likely refer to identical embodiment, and not necessarily refers to identical embodiment.
For the sake of simplicity, eliminate in below describing and well known to a person skilled in the art some technical characteristic.
According to an embodiment of the application, provide a kind of multistage filter, as shown in Figure 1, comprise and filter exocoel 16 and be arranged at the screen pack chamber 20 of filtering exocoel 16 inside, feed pipe 1 is provided with above screen pack chamber 20, inside, screen pack chamber 20 is provided with inner chamber spring 17, the outer edge of inner chamber spring 17 is provided with inner chamber brush 18, bottom is connected with base 19, pole 11 is provided with below base 19, pole 11 is connected with push-and-pull motor 10, screen pack chamber 20 is provided with screen pack chamber lower connecting plate 23, inner chamber separating rotary rotary device 24 and screen pack chamber upper junction plate 25, filter on exocoel 16 and be provided with exocoel separating rotary rotary device 3, filter exocoel lower connecting plate 21 and filter exocoel upper junction plate, filter bottom exocoel 16 and be connected with discharge nozzle 7, discharge nozzle 7 is provided with discharging switch 6, fluid monitoring device 8 and feed back lower flange 9, discharge nozzle 7 is connected with feed back pipe 4, feed back pipe 4 is provided with feed back pump 5, the other end of feed back pipe 4 is connected with feed pipe 1 by feed back upper flange 2, the top of filtering exocoel 16 is provided with temperature measuring equipment 15, the bottom of filtering exocoel 16 is provided with lower temperature measuring equipment 12, upper temperature measuring equipment 15 is all connected with total attemperating unit 14 by connecting circuit 13 with described lower temperature measuring equipment 12, discharge nozzle 7 is connected with ionization filter 26, ionization filter 26 inside is provided with electrode bar 27, the bottom of ionization filter 26 is provided with battery lead plate 28 and lower outlet 29.
According to an embodiment of the application, the length of the feed pipe 1 of this multistage filter is 30cm.
This multistage filter by arranging exocoel separating rotary rotary device 3, filter exocoel lower connecting plate 21, filter dismounting that exocoel upper junction plate 22, screen pack chamber lower connecting plate 23, inner chamber separating rotary rotary device 24 and screen pack chamber upper junction plate 25 can realize filtering exocoel 16 and screen pack chamber 20 and be separated, and then it is clean to realize filter interior; By arranging inner chamber spring 17 and arrange inner chamber brush 18 on the outer edge of inner chamber spring 17, cleaning inside, screen pack chamber 20 can be realized; By arrange feed back pump 5, discharging switch 6, discharge nozzle 7, fluid monitoring device 8 and feed back lower flange 9 can realize to filter after liquid monitor, when filtration qualified be can discharge from discharge nozzle 7, be again to filter when defective; Can measure the fluid temperature of filter top and bottom by arranging lower temperature measuring equipment 12, connecting circuit 13, total attemperating unit 14 and upper temperature measuring equipment 15, thus draw the data that can embody filter internal temperature more accurately; By arranging ionization filter 26, electrode bar 27, battery lead plate 28 and lower outlet 29 can realize to liquid multistage filtering, thus improve the efficiency of filtering, filtrate can carry out ionization filtration entering ionization filter 26 after the filtration in exocoel 16 and screen pack chamber 20 after filtration.
The above embodiment only represents several embodiment of the present utility model, and it describes comparatively concrete and detailed, but can not be interpreted as the restriction to the utility model scope.It should be pointed out that for the person of ordinary skill of the art, without departing from the concept of the premise utility, can also make some distortion and improvement, these all belong to the utility model protection domain.Therefore protection domain of the present utility model should be as the criterion with described claim.
Claims (2)
1. a multistage filter, is characterized in that: comprise the screen pack chamber of filtering exocoel and being arranged at described filtration outer chamber, feed pipe is provided with above described screen pack chamber, inside, described screen pack chamber is provided with inner chamber spring, the outer edge of described inner chamber spring is provided with inner chamber brush, described inner chamber spring bottom is connected with base, pole is provided with below described base, described pole is connected with push-and-pull motor, described screen pack chamber is provided with screen pack chamber lower connecting plate, inner chamber separating rotary rotary device and screen pack chamber upper junction plate, described filtration exocoel is provided with exocoel separating rotary rotary device, filter exocoel lower connecting plate and filter exocoel upper junction plate, be connected with discharge nozzle bottom described filtration exocoel, described discharge nozzle is provided with discharging switch, fluid monitoring device and feed back lower flange, described discharge nozzle is connected with feed back pipe, described feed back pipe is provided with feed back pump, the other end of described feed back pipe is connected with described feed pipe by feed back upper flange, the top of described filtration exocoel is provided with temperature measuring equipment, the bottom of described filtration exocoel is provided with lower temperature measuring equipment, described upper temperature measuring equipment is all connected with total attemperating unit by connecting circuit with described lower temperature measuring equipment, described discharge nozzle is connected with ionization filter, and described ionization filter inside is provided with electrode bar, and the bottom of described ionization filter is provided with battery lead plate and lower outlet.
2. multistage filter according to claim 1, is characterized in that: the length of described feed pipe is 30cm.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201420709688.6U CN204261466U (en) | 2014-11-24 | 2014-11-24 | Multistage filter |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201420709688.6U CN204261466U (en) | 2014-11-24 | 2014-11-24 | Multistage filter |
Publications (1)
Publication Number | Publication Date |
---|---|
CN204261466U true CN204261466U (en) | 2015-04-15 |
Family
ID=52796366
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201420709688.6U Expired - Fee Related CN204261466U (en) | 2014-11-24 | 2014-11-24 | Multistage filter |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN204261466U (en) |
-
2014
- 2014-11-24 CN CN201420709688.6U patent/CN204261466U/en not_active Expired - Fee Related
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20150415 Termination date: 20151124 |