CN223674337U - Mud cleaning device for sewage treatment - Google Patents
Mud cleaning device for sewage treatmentInfo
- Publication number
- CN223674337U CN223674337U CN202423134191.9U CN202423134191U CN223674337U CN 223674337 U CN223674337 U CN 223674337U CN 202423134191 U CN202423134191 U CN 202423134191U CN 223674337 U CN223674337 U CN 223674337U
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- Prior art keywords
- water inlet
- bearing
- sewage treatment
- fixing
- screening
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Abstract
The utility model relates to a sludge cleaning device for sewage treatment, which relates to the field of sewage treatment and solves the problems that the existing sewage treatment device still needs manpower to manually clean the sludge filtered inside, the waste of the manpower is increased, the efficiency of cleaning the sludge is reduced, the sludge can waste a large amount of water in the treatment process, and the sludge is easy to block when the amount of the sludge is large. The technical characteristics are that the device comprises a base, a fixing structure, a supporting structure and a bearing structure, wherein the fixing structure is arranged on the base and is used for fixing, the supporting structure is arranged on the base and is used for supporting, and the bearing structure is arranged on the supporting structure and is used for bearing. The efficiency of cleaning up mud has been increased, the consumption of time has been reduced, and the structure is simple relatively, convenient to use.
Description
Technical Field
The utility model relates to the technical field of sewage treatment, in particular to a mud cleaning device for sewage treatment.
Background
Sewage treatment, which is to purify sewage to meet the water quality requirement of being discharged into a certain water body or reused. The sewage treatment is widely applied to various fields of buildings, agriculture, traffic, energy sources, petrifaction, environmental protection, urban landscapes, medical treatment, catering and the like, and the sewage treatment is increasingly carried into the daily life of common people.
At present, the sewage treatment device still needs the manpower to carry out manual cleaning to the inside mud of filtering out, increases the waste of manpower, and reduces the efficiency to the mud clearance, and mud can cause the waste of a large amount of water in handling process moreover, and when the mud volume is great, still take place to block up easily, so in order to solve this problem, it is very necessary to design a sewage treatment's clear mud device.
Disclosure of utility model
The utility model aims to solve the technical problems that the prior sewage treatment device still needs manpower to manually clean the sludge filtered inside, the waste of manpower is increased, the efficiency of cleaning the sludge is reduced, the sludge can waste a large amount of water in the treatment process, and the sludge is easy to block when the sludge amount is large, and provides the sludge cleaning device for sewage treatment.
In order to solve the technical problems, the technical scheme of the utility model is as follows:
a sludge removal device for sewage treatment, comprising:
A base;
the fixing structure is arranged on the base and is used for fixing;
The support structure is mounted on the base and is used for supporting;
The bearing structure is arranged on the supporting structure and is used for bearing;
The water inlet and outlet structure is arranged on the bearing structure and is used for water inlet;
A first screening structure mounted on the load bearing structure, the first screening structure being for screening;
the anti-blocking structure is arranged on the bearing structure and is used for blocking;
A second screening structure mounted on the load bearing structure, the second screening structure being for screening;
The mud discharging structure is arranged on the lower surface of the bearing structure and is used for discharging mud.
Preferably, the fixing structure comprises two pairs of fixing support frames, two pairs of electric control telescopic rods and two pairs of fixing support plates;
The two pairs of fixed support frames are arranged on the side surface of the base, each electric control telescopic rod is arranged on the corresponding fixed support frame, and each fixed support plate is arranged on the telescopic end of the corresponding electric control telescopic rod.
Preferably, the support structure comprises a support fixing frame;
The support fixing frame is arranged on the upper surface of the base.
Preferably, the bearing structure comprises an annular supporting plate, a bearing box body and a buckle cover;
The annular supporting plate is arranged on the upper surface of the supporting fixing frame, the bearing box body is arranged on the annular supporting plate, a circular opening is formed in the upper surface of the bearing box body, and the buckle cover is arranged at the circular opening.
Preferably, the water inlet and outlet structure comprises a water inlet pipe, a water inlet interface, a water inlet valve, a water outlet pipe, a water outlet interface and a water outlet valve;
The water inlet pipe is arranged on the buckle closure, the water inlet interface is arranged on the water inlet pipe, the water inlet valve is arranged on the water inlet pipe, the water outlet pipe is arranged on the bearing box body, the water outlet interface is arranged on the water outlet pipe, and the water outlet valve is arranged on the water outlet pipe.
Preferably, the first screening structure comprises an annular supporting shell, a first filter screen cylinder and a pair of limiting blocks;
the annular support shell is arranged at the circular opening, the first filter screen cylinder is movably arranged on the annular support shell, and the pair of limiting blocks are arranged on the first filter screen cylinder.
Preferably, the anti-blocking structure comprises a first fixing frame, a first rotating motor, a first rotating rod and an anti-blocking brush;
The first fixing frame is arranged on the upper surface of the buckle cover, the first rotating motor is arranged on the first fixing frame, the rotating end of the first rotating motor penetrates through the buckle cover, the first rotating rod is arranged on the rotating end of the first rotating motor, and the anti-blocking brush is arranged on the first rotating rod.
Preferably, the second screening structure comprises a blocking net;
The blocking net is arranged in the bearing box body.
Preferably, the mud discharging structure comprises a bearing shell, a second fixing frame, a second rotating motor and a spiral rotating rod;
The mud outlet is formed in the bearing shell, the bearing shell is mounted on the bearing box body, the bearing shell is communicated with the inside of the bearing box body, the second fixing frame is mounted on the bearing shell body, the rotating end of the second rotating motor stretches into the bearing shell body, and the spiral rotating rod is mounted on the rotating end of the second rotating motor.
Preferably, the base is provided with a controller, and the base is provided with a mains supply interface.
The utility model has the following beneficial effects:
This sewage treatment's clear mud device can be better clear up mud, and is very convenient, has reduced unnecessary trouble, discharges mud through the mud discharging structure, prevents to block up the filter screen because the mud volume is too big through preventing stifled structure, has increased the efficiency to the mud clearance, has reduced the consumption of time, and the structure is simple relatively, convenient to use.
Drawings
The utility model is described in further detail below with reference to the drawings and the detailed description.
FIG. 1 is a schematic diagram of a sludge removal device for sewage treatment according to the present utility model;
FIG. 2 is a front view of a sludge cleaning device for sewage treatment according to the present utility model;
FIG. 3 is a front view of a sludge removal device for sewage treatment according to the present utility model;
FIG. 4 is a top view of a sludge removal device for wastewater treatment according to the present utility model;
Fig. 5 is a partial schematic view of a sludge removal device for sewage treatment according to the present utility model.
Reference numerals in the drawings denote:
The device comprises a base 10, a fixing structure 20, a supporting structure 30, a bearing structure 40, a water inlet and outlet structure 50, a first screening structure 60, an anti-blocking structure 70, a second screening structure 80, a mud discharging structure 90, a controller 100 and a mains supply interface 110;
A fixed support frame 21, an electric control telescopic rod 22 and a fixed support plate 23;
a supporting and fixing frame 31;
an annular support plate 41, a bearing box 42 and a buckle cover 43;
a water inlet pipe 51, a water inlet interface 52, a water inlet valve 53, a water outlet pipe 54, a water outlet interface 55 and a water outlet valve 56;
An annular support housing 61, a first filter screen cylinder 62 and a limiting block 63;
A first fixing frame 71, a first rotating motor 72, a first rotating rod 73 and an anti-blocking brush 74;
A blocking net 81;
A bearing housing 91, a second fixing frame 92, a second rotary motor 93, and a screw rotary lever 94.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-5, a sludge cleaning apparatus for sewage treatment includes a base 10, a fixing structure 20, the fixing structure 20 being mounted on the base 10, the fixing structure 20 being used for fixing, a supporting structure 30, the supporting structure 30 being mounted on the base 10, the supporting structure 30 being used for supporting, a bearing structure 40 being mounted on the supporting structure 30, the bearing structure 40 being used for bearing, a water inlet and outlet structure 50, the water inlet and outlet structure 50 being mounted on the bearing structure 40, the water inlet and outlet structure 50 being used for water inlet, a first screening structure 60, the first screening structure 60 being mounted on the bearing structure 40, and the first screening structure 60 being used for screening, an anti-blocking structure 70 being mounted on the bearing structure 40, and the anti-blocking structure 70 being used for blocking, a second screening structure 80, the second screening structure 80 being mounted on the bearing structure 40, and the second screening structure 80 being used for screening, a sludge discharge structure 90 being mounted on a lower surface of the bearing structure 40, and the sludge discharge structure 90 being used for sludge discharge.
The fixing structure 20 comprises two pairs of fixing support frames 21, two pairs of electric control telescopic rods 22 and two pairs of fixing support plates 23, wherein the two pairs of fixing support frames 21 are arranged on the side surface of the base 10, each electric control telescopic rod 22 is arranged on the corresponding fixing support frame 21, and each fixing support plate 23 is arranged on the telescopic end of the corresponding electric control telescopic rod 22.
The support structure 30 includes a support holder 31, and the support holder 31 is mounted on the upper surface of the base 10.
The bearing structure 40 comprises an annular supporting plate 41, a bearing box body 42 and a buckle cover 43, wherein the annular supporting plate 41 is arranged on the upper surface of the supporting fixing frame 31, the bearing box body 42 is arranged on the annular supporting plate 41, the upper surface of the bearing box body 42 is provided with a circular opening, and the buckle cover 43 is arranged at the circular opening.
The water inlet and outlet structure 50 comprises a water inlet pipe 51, a water inlet interface 52, a water inlet valve 53, a water outlet pipe 54, a water outlet interface 55 and a water outlet valve 56, wherein the water inlet pipe 51 is arranged on the buckle cover 43, the water inlet interface 52 is arranged on the water inlet pipe 51, the water inlet valve 53 is arranged on the water inlet pipe 51, the water outlet pipe 54 is arranged on the bearing box body 42, the water outlet interface 55 is arranged on the water outlet pipe 54, and the water outlet valve 56 is arranged on the water outlet pipe 54.
The first screening structure 60 includes an annular supporting housing 61, a first filter screen cylinder 62, and a pair of stoppers 63, wherein the annular supporting housing 61 is mounted at the circular opening, the first filter screen cylinder 62 is movably mounted on the annular supporting housing 61, and the pair of stoppers 63 are mounted on the first filter screen cylinder 62.
The anti-blocking structure 70 comprises a first fixing frame 71, a first rotating motor 72, a first rotating rod 73 and an anti-blocking brush 74, wherein the first fixing frame 71 is installed on the upper surface of the buckle cover 43, the first rotating motor 72 is installed on the first fixing frame 71, the rotating end of the first rotating motor 72 penetrates through the buckle cover 43, the first rotating rod 73 is installed on the rotating end of the first rotating motor 72, and the anti-blocking brush 74 is installed on the first rotating rod 73.
The second screening arrangement 80 includes a barrier net 81, the barrier net 81 being mounted within the carrier housing 42.
The mud discharging structure 90 comprises a bearing shell 91, a second fixing frame 92, a second rotating motor 93 and a spiral rotating rod 94, wherein a mud outlet is formed in the bearing shell 91, the bearing shell 91 is installed on the bearing box 42, the bearing shell 91 is communicated with the inside of the bearing box 42, the second fixing frame 92 is installed on the bearing shell 91, the rotating end of the second rotating motor 93 stretches into the bearing shell 91, and the spiral rotating rod 94 is installed on the rotating end of the second rotating motor 93.
The base 10 is provided with a controller 100, and the base 10 is provided with a mains supply interface 110.
Working principle:
The fixing structure 20 on the base 10 is used for fixing, the supporting structure 30 on the base 10 is used for supporting, the bearing structure 40 on the supporting structure 30 is used for bearing, the water inlet and outlet structure 50 on the bearing structure 40 is used for water inlet, the first screening structure 60 on the bearing structure 40 is used for screening, the anti-blocking structure 70 on the bearing structure 40 is used for blocking, the second screening structure 80 on the bearing structure 40 is used for screening, the mud discharging structure 90 on the lower surface of the bearing structure 40 is used for discharging mud, firstly, the device is moved to a proper position, then a power supply is connected through a commercial power interface 110 on the base 10, a controller 100 on the base 10 is opened, the electric control telescopic rod 22 on the fixed supporting frame 21 is controlled through the controller 100 on the base 10 to put down the fixed supporting plate 23, so as to fix the device, then the water inlet pipeline is connected through the water inlet interface 52 on the water inlet pipe 51, the water outlet pipeline is connected through the water outlet port 55 on the water outlet pipe 54, the water inlet valve 53 on the water inlet pipe 51 and the water outlet valve 56 on the water outlet pipe 54 are opened, sewage enters the bearing box body 42 through the water inlet pipe 51 and is filtered through the first filter screen cylinder 62 and the blocking net 81 on the annular supporting shell 61, meanwhile, the first rotating motor 72 on the first fixing frame 71 is opened, the first rotating motor 72 on the first fixing frame 71 drives the anti-blocking brush 74 on the first rotating rod 73 to clean the first filter screen cylinder 62, blocking is prevented, filtered water is discharged through the water outlet pipe 54, sludge is accumulated in the first filter screen cylinder 62 and the bearing box body 42, when cleaning, the buckle cover 43 is opened, the buckle cover 43 is lifted, then the first filter screen cylinder 62 is taken out for cleaning, the second rotating motor 93 on the second fixing frame 92 is opened, the second rotating motor 93 on the second fixing frame 92 drives the spiral rotating rod 94 to discharge the sludge in the bearing box 42, which is very convenient.
It is apparent that the above examples are given by way of illustration only and are not limiting of the embodiments. Other variations or modifications of the above teachings will be apparent to those of ordinary skill in the art. It is not necessary here nor is it exhaustive of all embodiments. While still being apparent from variations or modifications that may be made by those skilled in the art are within the scope of the invention.
Claims (10)
1. A sludge removal device for sewage treatment, comprising:
A base (10);
a fixing structure (20), wherein the fixing structure (20) is arranged on the base (10), and the fixing structure (20) is used for fixing;
-a support structure (30), the support structure (30) being mounted on the base (10) and the support structure (30) being for support;
-a carrying structure (40), the carrying structure (40) being mounted on a support structure (30), and the carrying structure (40) being for carrying;
The water inlet and outlet structure (50), the water inlet and outlet structure (50) is arranged on the bearing structure (40), and the water inlet and outlet structure (50) is used for water inlet;
-a first screening structure (60), the first screening structure (60) being mounted on a carrier structure (40), and the first screening structure (60) being for screening;
the anti-blocking structure (70), the anti-blocking structure (70) is arranged on the bearing structure (40), and the anti-blocking structure (70) is used for preventing blocking;
-a second screening arrangement (80), the second screening arrangement (80) being mounted on the carrier arrangement (40) and the second screening arrangement (80) being for screening;
the mud discharging structure (90), the mud discharging structure (90) is installed on the lower surface of the bearing structure (40), and the mud discharging structure (90) is used for discharging mud.
2. The sludge removal device for sewage treatment according to claim 1, wherein the fixing structure (20) comprises two pairs of fixing support frames (21), two pairs of electrically controlled telescopic rods (22) and two pairs of fixing support plates (23);
Two pairs of fixed support frames (21) are arranged on the side surface of the base (10), each electric control telescopic rod (22) is arranged on the corresponding fixed support frame (21), and each fixed support plate (23) is arranged on the telescopic end of the corresponding electric control telescopic rod (22).
3. A sludge removal device for sewage treatment according to claim 1, wherein said support structure (30) comprises a support mount (31);
the supporting and fixing frame (31) is arranged on the upper surface of the base (10).
4. A sludge removal apparatus for sewage treatment according to claim 3, wherein said carrying structure (40) comprises an annular supporting plate (41), a carrying case (42) and a buckle closure (43);
The annular supporting plate (41) is arranged on the upper surface of the supporting fixing frame (31), the bearing box body (42) is arranged on the annular supporting plate (41), a circular opening is formed in the upper surface of the bearing box body (42), and the buckle cover (43) is arranged at the circular opening.
5. The sludge removal device for sewage treatment according to claim 4, wherein the water inlet and outlet structure (50) comprises a water inlet pipe (51), a water inlet interface (52), a water inlet valve (53), a water outlet pipe (54), a water outlet interface (55) and a water outlet valve (56);
The water inlet pipe (51) is arranged on the buckle cover (43), the water inlet interface (52) is arranged on the water inlet pipe (51), the water inlet valve (53) is arranged on the water inlet pipe (51), the water outlet pipe (54) is arranged on the bearing box body (42), the water outlet interface (55) is arranged on the water outlet pipe (54), and the water outlet valve (56) is arranged on the water outlet pipe (54).
6. The sludge removal device for sewage treatment as claimed in claim 4, wherein the first screening structure (60) comprises an annular supporting housing (61), a first filter screen cylinder (62) and a pair of stoppers (63);
The annular support shell (61) is arranged at the circular opening, the first filter screen cylinder (62) is movably arranged on the annular support shell (61), and the pair of limiting blocks (63) are arranged on the first filter screen cylinder (62).
7. The sludge removal device for sewage treatment according to claim 4, wherein the anti-blocking structure (70) comprises a first fixing frame (71), a first rotating motor (72), a first rotating rod (73) and an anti-blocking brush (74);
The first fixing frame (71) is arranged on the upper surface of the buckle cover (43), the first rotating motor (72) is arranged on the first fixing frame (71), the rotating end of the first rotating motor (72) penetrates through the buckle cover (43), the first rotating rod (73) is arranged on the rotating end of the first rotating motor (72), and the anti-blocking brush (74) is arranged on the first rotating rod (73).
8. The sludge removal apparatus for sewage treatment as claimed in claim 4, wherein said second screening means (80) comprises a blocking net (81);
the blocking net (81) is arranged in the bearing box body (42).
9. The sludge removal device for sewage treatment according to claim 4, wherein the sludge discharge structure (90) comprises a bearing housing (91), a second fixing frame (92), a second rotary motor (93) and a screw rotary rod (94);
The mud outlet is formed in the bearing shell (91), the bearing shell (91) is mounted on the bearing box body (42), the bearing shell (91) is communicated with the inside of the bearing box body (42), the second fixing frame (92) is mounted on the bearing shell (91), the rotating end of the second rotating motor (93) stretches into the bearing shell (91), and the spiral rotating rod (94) is mounted on the rotating end of the second rotating motor (93).
10. The sludge cleaning device for sewage treatment according to claim 1, wherein the base (10) is provided with a controller (100), and the base (10) is provided with a mains interface (110).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202423134191.9U CN223674337U (en) | 2024-12-18 | 2024-12-18 | Mud cleaning device for sewage treatment |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202423134191.9U CN223674337U (en) | 2024-12-18 | 2024-12-18 | Mud cleaning device for sewage treatment |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN223674337U true CN223674337U (en) | 2025-12-16 |
Family
ID=97971748
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202423134191.9U Active CN223674337U (en) | 2024-12-18 | 2024-12-18 | Mud cleaning device for sewage treatment |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN223674337U (en) |
-
2024
- 2024-12-18 CN CN202423134191.9U patent/CN223674337U/en active Active
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