CN205603267U - Automatic scrape dirty formula water treatment facilities - Google Patents

Automatic scrape dirty formula water treatment facilities Download PDF

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Publication number
CN205603267U
CN205603267U CN201620190713.3U CN201620190713U CN205603267U CN 205603267 U CN205603267 U CN 205603267U CN 201620190713 U CN201620190713 U CN 201620190713U CN 205603267 U CN205603267 U CN 205603267U
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CN
China
Prior art keywords
plate
water treatment
treatment facilities
formula water
automatic
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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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CN201620190713.3U
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Chinese (zh)
Inventor
于亮
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
SHANGHAI DINGXIANG ENVIRONMENTAL TECHNOLOGY Co Ltd
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SHANGHAI DINGXIANG ENVIRONMENTAL TECHNOLOGY Co Ltd
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Priority to CN201620190713.3U priority Critical patent/CN205603267U/en
Application granted granted Critical
Publication of CN205603267U publication Critical patent/CN205603267U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides an automatic scrape dirty formula water treatment facilities, including the cavity, locate negative plate and anode plate in the cavity to and automatic scraper mechanism, every negative plate and anode plate all are the tube -shape, negative plate and anode plate altogether vertical to axle center layer cover arrange, the negative plate is adjacent with the anode plate interval, automatic scraper mechanism does for automatic the negative plate scale removal.

Description

Automatic scraping dirt formula water treatment facilities
Technical field
This utility model relates to water treatment field, particularly relates to a kind of automatic scraping dirt formula water treatment facilities.
Background technology
Currently, along with developing rapidly of China's economy, the environmental pollution that industrial wastewater brings is on the rise.The apparatus for electrochemical treatment used in prior art, including two kinds of snaking modes:
One, uses manual snaking equipment, need to open casing snaking, waste of manpower and time;
Its two, use existing automation equipment, blade shaft is horizontally set, negative and positive extremely flat board, this structure be unfavorable for control water the flow direction, it is impossible to guarantee that all of water flows through all uniformly between anode and cathode, thus obtain whole process;Being limited by installing scraper, it is less that the distance between anode and cathode can not contract, and treatment effeciency can not preferably be promoted simultaneously.
Additionally, in automation equipment, because of design structure problem, negative electrode is smaller with annode area, and the distance between negative electrode and anode is big, and electric current density is low, and therefore separate unit disposal ability is the least;Install multiple devices additional, cost can be greatly increased, add occupation area of equipment simultaneously, be therefore not suitable with the cooling circulating water system of big cycle volume.
Utility model content
The technical problems to be solved in the utility model is how to improve the treating capacity during water processes.
In order to solve this technical problem, this utility model provides a kind of automatic scraping dirt formula water treatment facilities, including cavity, it is located at the minus plate in described cavity and positive plate, and automatic scraper mechanism, each described minus plate and positive plate are all in tubular, and described minus plate and positive plate vertical axle center layer set altogether is arranged, described minus plate and positive plate interval are adjacent, and described automatic scraper mechanism is in order to being automatically described minus plate scale removal.
Optionally, described automatic scraper mechanism includes rotating driving device, scraper matrix and at least two-layer structure of the cutter body, the number of plies of described structure of the cutter body matches with the quantity of described minus plate, described structure of the cutter body is fixed at described scraper matrix, described rotating driving device drives described cutter hub substrate and structure of the cutter body thereon to rotate, and then make: a surface of the described minus plate of every layer of described structure of the cutter body edge correspondence rotates, and then realizes the scale removal on this surface.
Optionally, the quantity of described scraper matrix is one, described minus plate and positive plate include two groups, two groups of the upper side and lower side laying respectively at described scraper matrix, every layer of described structure of the cutter body all includes two groups, structure of the cutter body described in one of which is located on the upside of described scraper matrix, for the minus plate scale removal on the upside of described scraper matrix;Another is mounted on the downside of described scraper matrix, for the minus plate scale removal on the downside of described scraper matrix.
Optionally, described scraper matrix is circular substrate, and the center of this circular substrate is fixing with the output shaft of described rotating driving device to be connected, and outside is connected with the inwall of described cavity by bearing arrangement.
Optionally, described scraper matrix is provided with to realize the through hole of current circulation.
Optionally, described vertical formula water treatment facilities also includes that installing plate, described minus plate and positive plate are fixedly installed in described installing plate, and described installing plate is fixed in described cavity.
Optionally, being provided with centre bore in the middle of described installing plate, the output shaft of described rotating driving device is arranged through described center port.
Optionally, the quantity of described installing plate is two, and described minus plate and positive plate include two groups, and one group is installed on the downside of an installing plate therein, another group is installed on the upside of another installing plate, and minus plate and positive plate described in two groups are respectively positioned between two described installing plates.
Optionally, described installing plate is provided with to realize the through hole of current circulation.
Optionally, on the downside of described cavity, connection is provided with infundibular body.
This utility model uses minus plate and the positive plate of tubular, and described minus plate and positive plate vertical axle center all altogether is arranged so that anode and cathode is spaced the setting being nested;The program both can guarantee that the water of all entrance flow through uniformly between anode and cathode, make area ratio between minus plate and positive plate closer to 1:1, thus improve disposal ability, simultaneously, again can the distance between anode and cathode contract less, thus under identical volume, be capable of bigger disposal ability.Additionally, this utility model realizes the automatic desludging to cathode plate surface by the introducing of automatic scraper mechanism.
Accompanying drawing explanation
Fig. 1 is the structural representation of automatic scraping dirt formula water treatment facilities in this utility model one embodiment;
Fig. 2 is the schematic cross-section of automatic scraping dirt formula water treatment facilities internal structure in this utility model one embodiment;
Fig. 3 is the structural representation of automatic scraping dirt formula water treatment facilities in this utility model one embodiment;
Fig. 4 is the structural representation of automatic scraping dirt formula water treatment facilities in this utility model one embodiment;
In figure, 1-structure of the cutter body;2-minus plate;3-positive plate;4-scraper matrix;5-installing plate;6-cavity;7-infundibular body;8-rotating driving device.
Detailed description of the invention
Below with reference to Fig. 1 to Fig. 4, the vertical formula water treatment facilities provided this utility model by several alternative embodiments is described in detail, it is this utility model optional embodiment, it is believed that, those skilled in the art are not changing in the range of this utility model spirit and content, it is possible to modify it and polish.
Refer to Fig. 1 to Fig. 4, this utility model provides a kind of vertical formula water treatment facilities, including chamber, 6, it is located at the minus plate 2 in described cavity 6 and positive plate 3, and automatic scraper mechanism, each described minus plate 2 and positive plate 3 are all in tubular, described minus plate 2 and positive plate 3 vertical axle center all altogether is arranged, described minus plate 2 and positive plate 3 are spaced adjacently positioned along the direction being perpendicular to axle center, geo-stationary between minus plate and positive plate, after absorption dirt thing, described automatic scraper mechanism is in order to being automatically the scale removal of described minus plate 2.
This utility model uses minus plate and the positive plate of tubular, and described minus plate and positive plate vertical axle center all altogether is arranged so that anode and cathode is spaced the setting being nested;The program both can guarantee that the water of all entrance flow through uniformly between anode and cathode, make area ratio between minus plate and positive plate closer to 1:1, thus improve disposal ability, simultaneously, again can the distance between anode and cathode contract less, thus under identical volume, be capable of bigger disposal ability.
Furthermore, in order to adapt to minus plate 2 and the positive plate 3 of tubular, thus carry out scraping dirt, this utility model alternative embodiment provides some automatic scraper mechanisms, in one of them alternative, straight line driving mechanism can be utilized to drive structure of the cutter body 1 to carry out scraping dirt, but this mode can affect current, although, this utility model is not excluded for this scheme, but, this utility model alternative still proposes a kind of preferably scheme, a kind of automatic scraper mechanism of rotation mode, certainly, this utility model is not precluded from the scraper mechanism of other forms, as long as employing minus plate 2 of the present utility model and positive plate 3, it it is exactly this utility model one of scheme of making every effort to protection.
Refer to Fig. 1 to Fig. 4, in the automatic scraper mechanism of rotation mode, described automatic scraper mechanism includes rotating driving device 8, scraper matrix 4 and at least two-layer structure of the cutter body 1, the number of plies of described structure of the cutter body 1 matches with the quantity of described minus plate 2, this coupling, it is believed that so that a side surface relative with positive plate 3 of minus plate 2 is each equipped with structure of the cutter body 1;Described structure of the cutter body 1 is fixed at described scraper matrix 4, described rotating driving device 8 drives described cutter hub substrate 4 and structure of the cutter body thereon 1 to rotate, and then make: every layer of described structure of the cutter body 1 rotates along a surface of corresponding described minus plate 2, and then realizes the scale removal on this surface.
In the embodiment of this utility model Fig. 1 and Fig. 3 signal, the quantity of described scraper matrix 4 is one, wherein, in the embodiment of Fig. 1 signal, described minus plate 2 and positive plate 3 only include one group, in the embodiment of Fig. 3 signal, described minus plate 2 and positive plate 3 include two groups, two groups of the upper side and lower side laying respectively at described scraper matrix 4, every layer of described structure of the cutter body 1 all includes two groups, structure of the cutter body 1 described in one of which is located on the upside of described scraper matrix 4, for minus plate 2 scale removal on the upside of described scraper matrix 4;Another is mounted on the downside of described scraper matrix 4, for minus plate 2 scale removal on the downside of described scraper matrix 4.
For further, in the embodiment of Fig. 4 signal, described minus plate 2 and positive plate 3 include three groups, and every layer of described structure of the cutter body 1 all includes three groups, and two installing plates 5 and two scraper matrixes 4 such as Fig. 4 signal can be used to realize installing.It is intended to indicate, regardless of quantity, is the optional scheme of this utility model, falls in protection domain of the present utility model.
In this utility model one optional embodiment, described scraper matrix 4 is circular substrate, and the center of this circular substrate is fixing with the output shaft of described rotating driving device 8 to be connected, and outside can be connected with the inwall of described cavity by bearing arrangement, thus both realize rotating, meet again load-bearing demand.Certainly, do not use bearing arrangement, but load-bearing is all put on the output shaft of rotating driving device 8, be a kind of scheme under this utility model design yet.Additionally, in order to realize current circulation, described scraper matrix is provided with to realize the through hole of current circulation, the size shape of this through hole all can be big according to doing as much as possible.
In each embodiment shown in the drawings of this utility model, described automatic scraping dirt formula water treatment facilities also includes that installing plate 5, described minus plate 2 and positive plate 3 are fixedly installed in described installing plate 5, and described installing plate 5 is fixed in described cavity 6.Being provided with centre bore in the middle of described installing plate 5, the output shaft of described rotating driving device is arranged through described center port, and both rotate against in realization, can realize scraping dirt under rotary motion.Certainly, as scraper matrix 4, described installing plate 5 is provided with to realize the through hole of current circulation, and the size shape of this through hole all can be big according to doing as much as possible.
In the embodiment of this utility model Fig. 3 signal, the quantity of described installing plate 5 is two, described minus plate 2 and positive plate 3 include two groups, one group is installed on the downside of an installing plate 5 therein, another group is installed on the upside of another installing plate 5, and minus plate 2 described in two groups and positive plate 3 are respectively positioned between two described installing plates 5.As previously mentioned, this type of quantity is arranged, the only citing of this utility model alternative, the scope that this utility model is protected is not restricted to this.
Refer to Fig. 1, Fig. 3 and Fig. 4, on the downside of described cavity 6, connection is provided with infundibular body 7, and then is conducive to the deposition row of dirt thing logical.
In sum, this utility model uses minus plate and the positive plate of tubular, and described minus plate and positive plate vertical axle center all altogether is arranged so that anode and cathode is spaced the setting being nested;The program both can guarantee that the water of all entrance flow through uniformly between anode and cathode, make area ratio between minus plate and positive plate closer to 1:1, thus improve disposal ability, simultaneously, again can the distance between anode and cathode contract less, thus under identical volume, be capable of bigger disposal ability.Additionally, this utility model realizes the automatic desludging to cathode plate surface by the introducing of automatic scraper mechanism.

Claims (10)

1. an automatic scraping dirt formula water treatment facilities, it is characterized in that: include cavity, it is located at the minus plate in described cavity and positive plate, and automatic scraper mechanism, each described minus plate and positive plate are all in tubular, described minus plate and positive plate vertical axle center layer set altogether is arranged, described minus plate and positive plate interval are adjacent, and described automatic scraper mechanism is in order to being described minus plate scale removal automatically.
2. automatic scraping dirt formula water treatment facilities as claimed in claim 1, it is characterized in that: described automatic scraper mechanism includes rotating driving device, scraper matrix and at least two-layer structure of the cutter body, the number of plies of described structure of the cutter body matches with the quantity of described minus plate, described structure of the cutter body is fixed at described scraper matrix, described rotating driving device drives described cutter hub substrate and structure of the cutter body thereon to rotate, and then make: a surface of the described minus plate of every layer of described structure of the cutter body edge correspondence rotates, and then realizes the scale removal on this surface.
3. automatic scraping dirt formula water treatment facilities as claimed in claim 2, it is characterized in that: the quantity of described scraper matrix is one, described minus plate and positive plate include two groups, two groups of the upper side and lower side laying respectively at described scraper matrix, every layer of described structure of the cutter body all includes two groups, structure of the cutter body described in one of which is located on the upside of described scraper matrix, for the minus plate scale removal on the upside of described scraper matrix;Another is mounted on the downside of described scraper matrix, for the minus plate scale removal on the downside of described scraper matrix.
4. automatic scraping dirt formula water treatment facilities as claimed in claim 2, it is characterized in that: described scraper matrix is circular substrate, the center of this circular substrate is fixing with the output shaft of described rotating driving device to be connected, and outside is connected with the inwall of described cavity by bearing arrangement.
5. automatic scraping dirt formula water treatment facilities as claimed in claim 2, it is characterised in that: described scraper matrix is provided with to realize the through hole of current circulation.
6. automatic scraping dirt formula water treatment facilities as claimed in claim 2, it is characterised in that: also including that installing plate, described minus plate and positive plate are fixedly installed in described installing plate, described installing plate is fixed in described cavity.
7. automatic scraping dirt formula water treatment facilities as claimed in claim 6, it is characterised in that: being provided with centre bore in the middle of described installing plate, the output shaft of described rotating driving device is arranged through described center port.
8. automatic scraping dirt formula water treatment facilities as claimed in claim 6, it is characterized in that: the quantity of described installing plate is two, described minus plate and positive plate include two groups, one group is installed on the downside of an installing plate therein, another group is installed on the upside of another installing plate, and minus plate and positive plate described in two groups are respectively positioned between two described installing plates.
9. automatic scraping dirt formula water treatment facilities as claimed in claim 6, it is characterised in that: described installing plate is provided with to realize the through hole of current circulation.
10. automatic scraping dirt formula water treatment facilities as claimed in claim 1, it is characterised in that: on the downside of described cavity, connection is provided with infundibular body.
CN201620190713.3U 2016-03-11 2016-03-11 Automatic scrape dirty formula water treatment facilities Expired - Fee Related CN205603267U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620190713.3U CN205603267U (en) 2016-03-11 2016-03-11 Automatic scrape dirty formula water treatment facilities

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620190713.3U CN205603267U (en) 2016-03-11 2016-03-11 Automatic scrape dirty formula water treatment facilities

Publications (1)

Publication Number Publication Date
CN205603267U true CN205603267U (en) 2016-09-28

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Application Number Title Priority Date Filing Date
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105565438A (en) * 2016-03-11 2016-05-11 上海丁香环境科技有限公司 Automatic scale-scrapping type water treatment device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105565438A (en) * 2016-03-11 2016-05-11 上海丁香环境科技有限公司 Automatic scale-scrapping type water treatment device

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CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160928