Supernatant drainage device for water purifying agent production
Technical Field
The application relates to the technical field of water purifying agents, in particular to a supernatant drainage device for producing a water purifying agent.
Background
The water purifying agent is a generic name of a polymer with broad meaning, cannot be directly used as a resource name generally, and is specifically named as polyaluminium chloride, polyaluminium ferric chloride, basic aluminum chloride, polyacrylamide, ferrous sulfate, aluminum sulfate, polyaluminium sulfate and the like, and is a medicament which is put into water and can react with other impurities in the water, and mainly plays the purpose of purifying water, and the commonly used water purifying agent is polyaluminium chloride, polyaluminium ferric chloride, basic aluminum chloride, polyacrylamide, ferrous sulfate, aluminum sulfate, polyaluminium sulfate and the like.
In the process of implementing the embodiments of the present disclosure, it is found that at least the following problems exist in the related art:
1. In the process of draining the supernatant in the production of the water purifying agent, a fixed water pumping pipe is adopted to pump and drain the supernatant in the precipitation barrel from the bottom of the supernatant at present, so that more impurities are caused in the supernatant pumped by the water pumping pipe;
2. In the production of water purifying agent, in the drainage to the supernatant, need filter the supernatant that the drainage comes out, the filter equipment in the current supernatant drainage device for the production of water purifying agent does not possess the subassembly of automatic clearance filter screen mostly, leads to the filter screen to block up easily, influences the filtration of supernatant.
Disclosure of utility model
The following presents a simplified summary in order to provide a basic understanding of some aspects of the disclosed embodiments. This summary is not an extensive overview, and is intended to neither identify key/critical elements nor delineate the scope of such embodiments, but is intended as a prelude to the more detailed description that follows.
The embodiment of the disclosure provides a supernatant drainage device for water purifier production to solve the filter equipment among the current supernatant drainage device for water purifier production and mostly do not possess the subassembly of automatic clearance filter screen, lead to the problem that the filter screen blockked up easily.
In some embodiments, a supernatant drainage device is used in water purification agent production, including sedimentation tank and rose box, sedimentation tank top fixed mounting has the inlet pipe, sedimentation tank bottom fixed mounting has the discharging pipe, and inlet pipe and discharging pipe and the inside intercommunication of sedimentation tank, install drainage subassembly on the sedimentation tank, install the filter screen in the rose box, the drain has all been seted up to the both sides that the rose box kept away from each other, the both sides that the drain was seted up to the rose box all demountable installation has the collecting box, rose box bottom fixed mounting has the outlet pipe, and outlet pipe and the inside intercommunication of rose box, install the clearance subassembly in the rose box.
The supernatant drainage device for producing the water purifying agent provided by the embodiment of the disclosure can realize the following technical effects:
1. According to the utility model, the drainage assembly is arranged, so that the purpose of extracting and draining the supernatant in the precipitation barrel by using the floating pumping pipe in the drainage assembly instead of the traditional fixed pumping pipe is realized, and the extracted supernatant has fewer impurities;
2. According to the utility model, the cleaning assembly is arranged, so that the aim of cleaning impurities on the filter screen into the collecting box through the drain outlet by using the cleaning assembly is fulfilled, the filter screen is prevented from being blocked, and the filtering of supernatant is prevented from being influenced.
The foregoing general description and the following description are exemplary and explanatory only and are not restrictive of the application.
Drawings
One or more embodiments are illustrated by way of example and not limitation in the figures of the accompanying drawings, in which like references indicate similar elements, and in which like reference numerals refer to similar elements, and in which:
FIG. 1 is a schematic diagram of the overall frontal structure provided by an embodiment of the present disclosure;
FIG. 2 is a schematic diagram of an overall rear structure provided by an embodiment of the present disclosure;
FIG. 3 is a schematic view of the internal structure of a precipitation tank according to an embodiment of the present disclosure;
FIG. 4 is a schematic view of the internal structure of a filter box according to an embodiment of the present disclosure;
fig. 5 is a schematic view of a cleaning assembly provided in an embodiment of the present disclosure.
Reference numerals:
1. The sedimentation tank, 11, a feed pipe, 12, a discharge pipe, 2, a drainage component, 21, a water suction pump, 22, a water suction pipe, 23, a floating plate, 3, a filter box, 31, a water outlet pipe, 32, a filter screen, 33, a drain outlet, 34, a collection box, 4, a cleaning component, 41, a scraper, 42, a deflector rod, 43, a rotating shaft, 44, a first sector gear, 45, a first rotating rod, 451, a second sector gear, 46, a second rotating rod, 461, a third sector gear, 47, a fixed rod, 48, a conical gear, 49 and a driving motor.
Detailed Description
So that the manner in which the features and techniques of the disclosed embodiments can be understood in more detail, a more particular description of the embodiments of the disclosure, briefly summarized below, may be had by reference to the appended drawings, which are not intended to be limiting of the embodiments of the disclosure. In the following description of the technology, for purposes of explanation, numerous details are set forth in order to provide a thorough understanding of the disclosed embodiments. However, one or more embodiments may still be practiced without these details. In other instances, well-known structures and devices may be shown simplified in order to simplify the drawing.
The terms first, second and the like in the description and in the claims of the embodiments of the disclosure and in the above-described figures are used for distinguishing between similar objects and not necessarily for describing a particular sequential or chronological order. It is to be understood that the data so used may be interchanged where appropriate in order to describe embodiments of the present disclosure. Furthermore, the terms "comprise" and "have," as well as any variations thereof, are intended to cover a non-exclusive inclusion.
In the embodiments of the present disclosure, the terms "upper", "lower", "inner", "middle", "outer", "front", "rear", and the like indicate an azimuth or a positional relationship based on that shown in the drawings. These terms are used primarily to better describe embodiments of the present disclosure and embodiments thereof and are not intended to limit the indicated device, element, or component to a particular orientation or to be constructed and operated in a particular orientation. Also, some of the terms described above may be used to indicate other meanings in addition to orientation or positional relationships, for example, the term "upper" may also be used to indicate some sort of attachment or connection in some cases. The specific meaning of these terms in the embodiments of the present disclosure will be understood by those of ordinary skill in the art in view of the specific circumstances.
In addition, the terms "disposed," "connected," "secured" and "affixed" are to be construed broadly. For example, the term "coupled" may be a fixed connection, a removable connection, or a unitary construction, may be a mechanical connection, or an electrical connection, may be a direct connection, or may be an indirect connection via an intermediary, or may be an internal communication between two devices, elements, or components. The specific meaning of the above terms in the embodiments of the present disclosure may be understood by those of ordinary skill in the art according to specific circumstances.
The term "plurality" means two or more, unless otherwise indicated.
In the embodiment of the present disclosure, the character "/" indicates that the front and rear objects are an or relationship. For example, A/B represents A or B.
The term "and/or" is an associative relationship that describes an object, meaning that there may be three relationships. For example, A and/or B, represent A or B, or three relationships of A and B.
It should be noted that, without conflict, the embodiments of the present disclosure and features of the embodiments may be combined with each other.
Referring to fig. 1-5, the embodiment of the disclosure provides a supernatant drainage device for purifying agent production, including sedimentation tank 1 and rose box 3, sedimentation tank 1 top fixed mounting has inlet pipe 11, sedimentation tank 1 bottom fixed mounting has discharging pipe 12, and inlet pipe 11 and discharging pipe 12 and the inside intercommunication of sedimentation tank 1, install drainage subassembly 2 on the sedimentation tank 1, install filter screen 32 in the rose box 3, drain 33 has all been seted up to the both sides that rose box 3 kept away from each other, drain 33 has all been dismantled to both sides that drain 33 was seted up to rose box 3, the outlet pipe 31 is installed to rose box 3 bottom fixed mounting, and outlet pipe 31 and the inside intercommunication of rose box 3, install clean assembly 4 in the rose box 3, at first pour into the material into sedimentation tank 1 through inlet pipe 11 and deposit, then utilize drainage subassembly 2 to drain the supernatant in the sedimentation tank 1 to filter in rose box 3, the precipitate in the sedimentation tank 1 can be discharged through discharging pipe 12, filter screen 32 in the rose box 3 can filter the impurity in the supernatant, and utilize clean up subassembly 4 to pass through drain 33 in the drain 33 of drain 32, clean up the supernatant after the supernatant has been filtered through drain 34.
Optionally, the drainage component 2 includes a floating plate 23, and the floating plate 23 is movably mounted in the sedimentation tank 1, a water pumping pipe 22 is fixedly mounted in the sedimentation tank 1, the water pumping pipe 22 is a telescopic corrugated hose, one end of the water pumping pipe 22 is fixedly mounted on the floating plate 23, a water pumping pump 21 is fixedly mounted at the top end of the sedimentation tank 1, and the output end of the water pumping pump 21 is communicated with the interior of the water pumping pipe 22.
Like this, start suction pump 21 and draw the supernatant in the sedimentation tank 1 to the rose box 3 through suction pipe 22 and filter, when drawing water, the kickboard 23 drives suction pipe 22 and descends along with the decline of the water level in the sedimentation tank 1, is convenient for to the extraction drainage of supernatant in the sedimentation tank 1.
Optionally, the cleaning assembly 4 includes a scraper 41, the scraper 41 is movably installed in the filter box 3, and the bottom end of the scraper 41 contacts with the surface of the filter screen 32, a rotating shaft 43 is rotatably installed in the filter box 3, two ends of the rotating shaft 43 are fixedly installed with a deflector rod 42, two ends of the scraper 41 are movably clamped in the corresponding deflector rods 42, a first rotating rod 45 and a second rotating rod 46 which are in mirror image distribution are rotatably installed in the filter box 3, one ends of the first rotating rod 45 and the second rotating rod 46 are fixedly installed with a second sector gear 451 and a third sector gear 461, the second sector gear 451 is in mirror image distribution with the third sector gear 461, the bottom ends of the two deflector rods 42 are fixedly installed with a first sector gear 44, the first sector gear 44 can be meshed with the corresponding second sector gear 451 and the third sector gear 461, a fixed rod 47 is fixedly installed in the filter box 3, one ends of the fixed rod 47 and the first rotating rod 45 and one ends of the second rotating rod 46 are fixedly installed with a bevel gear 48, one side of the filter box 3 is fixedly meshed with the output end of the motor 49, and the output end of the motor 49 is fixedly connected with the drive end of the drive 49.
Thus, the driving motor 49 is started to drive the first rotating rod 45 and the second sector gear 451 to rotate, the first rotating rod 45 drives the second rotating rod 46 and the third sector gear 461 to reversely rotate through the conical gear 48, the second sector gear 451 and the third sector gear 461 are rotationally meshed with the first sector gear 44 on the deflector rod 42, the deflector rod 42 is driven to reciprocate, and the deflector rod 42 drives the scraper 41 to reciprocate along the surface of the filter screen 32.
When the utility model is used, firstly, materials are injected into a sedimentation tank 1 through a feed pipe 11 to carry out sedimentation, then, a water suction pump 21 is started to pump supernatant liquid in the sedimentation tank 1 into a filter tank 3 through a water suction pipe 22 to carry out filtration, simultaneously, a floating plate 23 drives the water suction pipe 22 to descend along with the descending of the water level in the sedimentation tank 1 so as to facilitate the drainage of the supernatant liquid in the sedimentation tank 1, sediment in the sedimentation tank 1 can be discharged through a discharge pipe 12, a filter screen 32 in the filter tank 3 can filter impurities in the supernatant liquid, then, a driving motor 49 is started to drive a first rotating rod 45 and a second sector gear 451 to rotate, the first rotating rod 45 drives a second rotating rod 46 and a third sector gear 461 to rotate reversely through a conical gear 48, the second sector gear 461 and the third sector gear 461 are meshed with the first sector gear 44 on a deflector rod 42 to drive the deflector rod 42 to swing reciprocally, the deflector rod 42 drives a scraper 41 to reciprocate along the surface of the filter screen 32 to clean the impurities in the filter screen 32 into a collecting tank 34, and the filtered supernatant liquid is discharged through a drain outlet pipe 31.
The above description and the drawings illustrate embodiments of the disclosure sufficiently to enable those skilled in the art to practice them. Other embodiments may include structural and other modifications. The embodiments represent only possible variations. Individual components and functions are optional unless explicitly required, and the sequence of operations may vary. Portions and features of some embodiments may be included in, or substituted for, those of others. The embodiments of the present disclosure are not limited to the structures that have been described above and shown in the drawings, and various modifications and changes may be made without departing from the scope thereof. The scope of the present disclosure is limited only by the appended claims.