CN2712898Y - Ceramic purifying device with ultrasonic automatic cleaning device - Google Patents
Ceramic purifying device with ultrasonic automatic cleaning device Download PDFInfo
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- CN2712898Y CN2712898Y CN 200420033900 CN200420033900U CN2712898Y CN 2712898 Y CN2712898 Y CN 2712898Y CN 200420033900 CN200420033900 CN 200420033900 CN 200420033900 U CN200420033900 U CN 200420033900U CN 2712898 Y CN2712898 Y CN 2712898Y
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- water
- valve
- pipe
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- housing
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Abstract
The utility model discloses a ceramic purifying device with ultrasonic automatic cleaning device, mainly used in the aspects of industry, sanitary, food processing industry and life, for processing various liquid represented by the water. The major technique project is via pressboards and sealing blocks, the circumference, top or lower part of the case of a purifying device are respectively fixedly provided with N energy converters respectively connected to an ultrasonic generator via conducting wires. The utility model obtains the automatic cleaning of the ceramic filter element by making use of the ultrasonic wave in the ceramic purifying device completely, and the treated water meets the requirements of Chinese Standard, fundamentally solving the difficult problem that the existing ceramic purifying device cleans the ceramic filter element manually.
Description
One, technical field
The utility model belongs to a kind of ceramic element cleaner, be mainly used in industry, health, food-processing industry and life aspect, to the purifying treatment of various liquid, as: tap water of the water in the special fabrication processes process, oil, medicinal water, wine, beverage and daily people etc. is carried out filtration, purification.
Two, background technology
Existing ceramic element cleaner and contain the treating plant of ceramic element begun to progress into all trades and professions, and this cleaner is generally all by housing, ceramic element, compositions such as water inlet pipe, rising pipe, sealing-ring, safety valve.This technical equipment is economical and practical, the purification efficiency height, reliable in quality is highly commended by customers deeply, but ceramic element is through using for some time, after filtering certain amount of fluid, accumulate a large amount of dirts and bacterium on its surface, filtering traffic is descended, until the forfeiture filtering function, need wash dirt immediately, again works better.But the cleaning problem of ceramic element, it is a great problem that puzzlement ceramic element purifier apparatus uses always, up to the present, to the cleaning of ceramic element, all adopt and open cleaner and ceramic element is manually polished wipe clearly, then put in back on the cleaner, operating process bothers like this, time-consuming, can bring secondary pollution again, the time has been grown the work-ing life that also can influence filter core.
Three, utility model content
Main task of the present utility model is: according to existing cleaner, the deficiency that aspect the ceramic element cleaning, exists, attempt to adopt a kind of new purging method---ultrasonic cleaning process, come filter core is cleaned, under the guidance of this method, design a kind of new ceramic element cleaner that has ultrasonic wave automatic washing device, in cleaner, finish the task of cleaning ceramic filter core specially, fundamentally solve the difficult problem of ceramic purifier and equipment filter core cleaning in use.
Main technical schemes of the present utility model is: in periphery, top or the bottom of housing, fixedly mount N transverter respectively by pressing plate, sealing block, N transverter is connected with ultrasonic generator with lead respectively.
The utility model sample passes through probationary certificate: reach purpose of design fully, ceramic element is accomplished to clean automatically with ultrasonic wave in cleaner fully, saving of work and time, and cleaning quality is better than original, and the time is short, the urgent need of can not delay productions, living.Overcome the shortcoming that artificial cleaning exists fully.
Four, description of drawings
Fig. 1 is a general assembly drawing of the present utility model, and the A-A that also is Fig. 2 is to sectional view.
Fig. 2 is that the B-B of the utility model Fig. 1 cuts open vertical view.
Fig. 3, be the utility model in the process of normally purifying waste water, the programchart of Controlling System.
Fig. 4 is the utility model in cleaning ceramic filter core process automatically, the programchart of Controlling System.
Five, embodiment
With reference to Fig. 1,2, the utility model is by housing 1, liquid level sensor 1a, cover 1b, ultrasonic generator 3, transverter (ultrasonic energy energy converter) 4, sealing block 4a, pressing plate 4b, ripple baton pass 19, ceramic element 18, sealing-ring 17, screwed pipe 16, water-purifying cavity 15, swing bolt 14, sealing-ring 13, force (forcing) pump 12, water inlet pipe 11, water intaking valve 10, rising pipe 9, outlet valve 9a, flow sensor 8, blow-off pipe 6, wash water valve 7, support 6a, base plate 5, safety valve 20, tensimeter 21, Y-junction 21a, air inlet and exhaust valve 22, air inlet-outlet pipe 23, liquid level sensor 1a up and down, screw 24 compositions such as grade.
The utility model is divided into three groups of structures and forms promptly: I. ultrasonic cleaning structure; II. purification system structure; III. Controlling System structure.Below in conjunction with Fig. 1,2, do to specifically describe item by item.
I, ultrasonic cleaning structure: in periphery, top or the bottom of housing 1, fixedly mount N transverter 4 respectively by pressing plate 4b, sealing block 4a, N transverter is connected with ultrasonic generator 3 with lead respectively.
II, purification system structure: A, a safety valve 20 is installed in the top of housing 1 side, a relative side is installed a Y-junction 21a, the upper end of Y-junction connects a tensimeter 21, the right side is connected with air inlet-outlet pipe 23, inlet and outlet valve 22 of serial connection in air inlet-outlet pipe, housing 1 upper right corner is equipped with one and is gone up liquid level sensor 1a.B, on base plate 5 left sides, fixedly mount a water inlet pipe 11, a water intaking valve 10 is housed on water inlet pipe, the middle part of base plate 5 has a rising pipe 9 to communicate with water-purifying cavity 15, and outlet valve 9a of serial connection and flow sensor 8 on the rising pipe are on the right of base plate 5, fixedly mount a blow-off pipe 6, wash water valve 7 of serial connection on the blow-off pipe, water-purifying cavity 15 and N the ceramic element 18 that sealing-ring is housed communicate by screwed pipe 16 connections.A following liquid level sensor 1a is equipped with in housing 1 lower right corner, and housing 1 is tightly connected with base plate 5 usefulness sealing-rings 13, swing bolt 14.
III, Controlling System structure: force (forcing) pump 12, water intaking valve 10, outlet valve 9a, flow sensor 8, wash water valve 7, liquid level sensor 1a and air inlet and exhaust valve 22 up and down in Controlling System are connected with controller 2 usefulness leads respectively.
Housing 1 described in the purification system structure as required, can be multiple shapes such as cylindricality, multiaspect shape, taper.
At N transverter 4, the N number described in the ultrasonic cleaning structure is to determine according to the power of the total surface area of the ceramic element in the cleaner 18 and ultrasonic generator 3, the amount doesn't matter.
N described in a purification system structure ceramic element, N number are to determine according to the size of the scavenging solution scale of construction, and be the amount doesn't matter.
The ultrasonic generator 3 that the utility model adopted, transverter 4, controller 2 are to purchase the ready-made use of assembling.
With reference to Fig. 1,2,3,4, principle of work of the present utility model: the system state before energising back, the start: water intaking valve 10 is in open mode, outlet valve 9a and is in that closing condition, air inlet and exhaust valve 22 are in open mode, wash water valve 7 is in closing condition.Send start-up command this moment, makes controller 2 send first group of instruction, and force (forcing) pump 12 starts, and enters working order, and former water enters water intaking valve 10, enters in the housing 1, and water level increases with flooding quantity and rises.When water level rose to liquid level sensor 1a, liquid level sensor 1a sent signal to controller 2, and controller 2 sends second group of instruction, closed air inlet and exhaust valve 22 and opened outlet valve 9a.Former water flows into water-purifying cavity 15 through the filtration of ceramic element 18, and the water purification in the water-purifying cavity 15 flows out from rising pipe 9 through outlet valve 9a and flow sensor 8.Former water constantly enters, and purifies waste water to continuously outflow from rising pipe 9.
Ceramic element 18 has accumulated a large amount of dirts and bacterium on the surface of ceramic element 18 after the former water to some amount carries out filtration, purification, filtration flow-rate is descended.When flow velocity drops to when being lower than preset flow, flow sensor 8 sends signal to controller 2, controller 2 sends the 3rd group of instruction, make purification system enter the state of cleaning ceramic filter core 18, promptly close outlet valve 9a, force (forcing) pump 12 quits work, close water intaking valve 10, ultrasonic generator 3 starts, and enters working order.Owing to hyperacoustic cavitation, directly advance effect, acceleration effect, the dirt on ceramic element 18 surfaces, bacterium etc. are charged and attacked, dissolve in the former water.On schedule, after cleaning up, controller 2 sends the 4th group of instruction, opens wash water valve 7, opens air inlet and exhaust valve 22.Liquid level drops to level sensing receiver 1a, and liquid level sensor sends signal to controller 2, and controller 2 sends the 5th group of instruction, force (forcing) pump 12 startup work, open water intaking valve 10, close wash water valve 7, liquid level rises to liquid level sensor 1a in the housing, liquid level sensor 1a sends signal to controller 2, controller 2 sends the 6th group of instruction, closes intake valve 22, opens outlet valve 9a, system enters filter like this, and rising pipe 9 constantly flows out purifies waste water.
The technical scheme of above-mentioned automatic cleaning ceramic filter core and structure are basic technical schemes of the present utility model.
Claims (3)
1, a kind of ceramic purifier that has ultrasonic wave automatic washing device, contain housing (1), ceramic element (18), water inlet pipe (11), rising pipe (9), sealing-ring (13), safety valve (20), it is characterized in that: periphery, top or bottom in housing (1), fixedly mount N transverter (4) respectively by pressing plate (4b), sealing block (4a), N transverter uses lead to be connected with ultrasonic generator (3) respectively.
2, ceramic purifier according to claim 1, it is characterized in that: the purification system structure is made up of A, B two portions, A, a safety valve (20) is installed in the top of housing (a 1) side, a relative side is installed a Y-junction (21a), the upper end of Y-junction connects a tensimeter (21), the right side is connected with air inlet-outlet pipe (23), a serial connection air inlet and exhaust valve (22) in air inlet-outlet pipe, and housing (1) upper right corner is equipped with one and is gone up liquid level sensor (1a).B, on base plate (5) left side, fixedly mount a water inlet pipe (11), a water intaking valve (10) is housed on water inlet pipe, there is a rising pipe (9) at the middle part of base plate (5), communicate with water-purifying cavity (15), a serial connection outlet valve (9a) and flow sensor (8) on the rising pipe, the right in base plate (5), fixedly mount a water shoot (6), a serial connection wash water valve (7) on the blow-off pipe, water-purifying cavity (15) and N the ceramic element (18) that sealing-ring is housed, communicate by screwed pipe (16) connection, a following liquid level sensor (1a) is equipped with in housing (1) lower right corner, housing (1) and base plate (5) sealing-ring (13), swing bolt (14) is tightly connected.
3, ceramic purifier according to claim 1, it is characterized in that: in the Controlling System structure, force (forcing) pump (12), water intaking valve (10), outlet valve (9a), flow sensor (8), wash water valve (7), upper and lower liquid level sensor (1a) and air inlet and exhaust valve (22) are connected with lead with controller (2) respectively.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 200420033900 CN2712898Y (en) | 2004-06-04 | 2004-06-04 | Ceramic purifying device with ultrasonic automatic cleaning device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 200420033900 CN2712898Y (en) | 2004-06-04 | 2004-06-04 | Ceramic purifying device with ultrasonic automatic cleaning device |
Publications (1)
Publication Number | Publication Date |
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CN2712898Y true CN2712898Y (en) | 2005-07-27 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN 200420033900 Expired - Fee Related CN2712898Y (en) | 2004-06-04 | 2004-06-04 | Ceramic purifying device with ultrasonic automatic cleaning device |
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CN (1) | CN2712898Y (en) |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104056485A (en) * | 2014-05-27 | 2014-09-24 | 苏州市职业大学 | Ultrasonic self-purification device |
CN107032444A (en) * | 2016-02-04 | 2017-08-11 | 清华大学煤燃烧工程研究中心 | Ultrasonic wave Heisui River filter for air flow bed |
CN107376452A (en) * | 2016-05-16 | 2017-11-24 | 魏华山 | A kind of intelligent self-cleaning ceramic water purifier |
-
2004
- 2004-06-04 CN CN 200420033900 patent/CN2712898Y/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104056485A (en) * | 2014-05-27 | 2014-09-24 | 苏州市职业大学 | Ultrasonic self-purification device |
CN107032444A (en) * | 2016-02-04 | 2017-08-11 | 清华大学煤燃烧工程研究中心 | Ultrasonic wave Heisui River filter for air flow bed |
CN107376452A (en) * | 2016-05-16 | 2017-11-24 | 魏华山 | A kind of intelligent self-cleaning ceramic water purifier |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20050727 Termination date: 20120604 |