CN222900506U - Efficient environment-friendly sewage circulation treatment equipment - Google Patents

Efficient environment-friendly sewage circulation treatment equipment Download PDF

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Publication number
CN222900506U
CN222900506U CN202422406387.2U CN202422406387U CN222900506U CN 222900506 U CN222900506 U CN 222900506U CN 202422406387 U CN202422406387 U CN 202422406387U CN 222900506 U CN222900506 U CN 222900506U
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CN
China
Prior art keywords
brush roller
sewage
grid
screw rod
rotating shaft
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CN202422406387.2U
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Chinese (zh)
Inventor
张礼伟
孟祥熠
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Environmental Monitoring Center Of Yishui County Linyi City Ecological Environment Affairs Center Of Yishui County Linyi City
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Environmental Monitoring Center Of Yishui County Linyi City Ecological Environment Affairs Center Of Yishui County Linyi City
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Priority to CN202422406387.2U priority Critical patent/CN222900506U/en
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Abstract

The utility model discloses high-efficiency environment-friendly sewage circulation treatment equipment which comprises a sewage tank, a rotary grid dirt remover and a sedimentation tank, wherein the sedimentation tank is arranged on one side of the sewage tank, the rotary grid dirt remover is arranged between the sewage tank and the sedimentation tank, a filter mechanism is arranged in the rotary grid dirt remover, a grid cleaning mechanism is arranged on one side of the filter mechanism, and a discharge mechanism is arranged at the lower end of the grid cleaning mechanism. According to the utility model, the filtering mechanism is used for filtering water when sewage in the sewage pool enters the sedimentation tank, so that the influence of large-particle impurities on the water quality is reduced, meanwhile, the grating cleaning mechanism is used for effectively cleaning the filtering mechanism to prevent impurities remained on the toothed harrow of the filtering mechanism, the brush roller on the grating cleaning mechanism is used for cleaning the impurities on the toothed harrow, the through type screw rod stepping motor is used for driving the clamping assembly to transversely move, the clamping assembly is used for driving the brush roller to move into the sealing cover, and the brush roller is matched with the spray nozzle and the like to clean the brush roller without stopping, so that the impurities remained on the brush roller are prevented.

Description

Efficient environment-friendly sewage circulation treatment equipment
Technical Field
The utility model belongs to the technical field of sewage treatment, and particularly relates to efficient and environment-friendly sewage circulation treatment equipment.
Background
The sewage circulation treatment process is a complex and fine system, and mainly comprises three stages of physical treatment, biological treatment and chemical treatment, wherein the solid impurities and large-particle suspended matters in the water are removed in the physical treatment stage, a sewage tank, a grid and a sedimentation tank are adopted, the sewage firstly passes through a grid machine after passing through the sewage tank, and the grid machine can intercept larger suspended matters and floating matters, such as plastic bags, branches and the like, so as to prevent the substances from blocking subsequent treatment equipment.
Through the search, a grating with a cleaning function of the prior art with the bulletin number of CN220803507U drives the installation shaft and the brush to rotate under the action of meshing connection of gears, so that the brush brushes impurities on the grating conveyor belt further, when the brush cleans tooth harrows on the conveyor belt for a long time in practical application, impurities can remain among the brush bristles on the brush for a long time, the brush can be wrapped by the impurities, the grating cannot be cleaned, and staff is required to process the impurities on the brush regularly;
Further, through searching, the novel grid machine for sewage treatment with the prior art bulletin number of CN220779315U enables the second belt pulley to rotate through transmission of the transmission belt, a water pump is started to pump water through a water suction head, the grid plate and the brush roller are sprayed out from a pair of spray heads, the brush roller rotates to clean the grid plate, when the grid machine is in actual use, excessive water pressure of the spray heads can lead impurities on the grid plate and the brush roller to not fall down vertically, the impurities are led to one side of a waste hopper, the impurities enter a water body, and when the water pressure of the spray heads is too small, the impurities can not fall into the waste hopper freely under the influence of the water pressure, but the impurities on the brush roller are not washed cleanly;
Therefore, the application provides a scheme aiming at efficient and environment-friendly sewage treatment circulating equipment, which can clean the impurity residue problem on the brush of the grating machine through cleaning equipment, and simultaneously prevent impurities from being influenced by external force when cleaning the brush roller, and flush the impurities to the outer side of the discharge bin.
Disclosure of Invention
The utility model aims to overcome the defects in the prior art, and provides high-efficiency environment-friendly sewage circulation treatment equipment, wherein a discharging bin is arranged at a blanking position at the lower end of a filtering mechanism, grid filtering impurities pass through a toothed harrow and are driven by a traction chain to move towards the discharging bin, meanwhile, the impurities on the toothed harrow are cleaned in an auxiliary mode through the arrangement of a grid cleaning mechanism, the residual impurities of the toothed harrow are prevented from falling into a water body at the rear end of the grid along with the movement of the traction chain, the water quality after the grid filtering is influenced, and meanwhile, a sealing cover is matched, so that high-pressure water flushing is carried out on a brush roller on the grid cleaning mechanism, the residual impurities on the brush roller are reduced, and the cleaning of the toothed harrow is influenced.
In order to achieve the above purpose, the technical scheme adopted by the utility model is as follows:
The high-efficiency environment-friendly sewage circulation treatment equipment comprises a sewage tank, a rotary grid decontamination machine and a sedimentation tank, wherein the sedimentation tank is arranged on one side of the sewage tank, the rotary grid decontamination machine is arranged between the sewage tank and the sedimentation tank, a filtering mechanism is arranged in the rotary grid decontamination machine, a grid cleaning mechanism is arranged on one side of the filtering mechanism, and a discharge mechanism is arranged at the lower end of the grid cleaning mechanism;
The grid cleaning mechanism comprises spray heads, a sealing cover, a hairbrush assembly, a flow divider and a water pump, wherein the sealing cover is symmetrically arranged on two sides of the discharging mechanism, the spray heads are arranged on the side walls of the sealing cover and are connected with the flow divider pipeline, and a water inlet of the flow divider is connected with the water pump pipeline;
The brush subassembly is including running through type lead screw step motor, and the outside fixed mounting of one side sealed cowling has the rotating electrical machines, install the rotation axis on the rotating electrical machines output shaft, the inside cavity of rotation axis, sliding connection has the brush roller on the rotation axis, is equipped with the spacing groove on the brush roller, the spacing groove cooperates with the stopper that the rotation axis transversely was equipped with, brush roller one side joint has the joint subassembly, install running through type lead screw step motor on the opposite side sealed cowling, the lead screw is connected in the drive of running through type lead screw step motor, the lead screw extends to inside the rotation axis, the rotation axis lower extreme is equipped with the fluting, sliding connection has the joint subassembly on the rotation axis, the joint subassembly passes through the fluting and is connected with the lead screw cooperation, joint subassembly and brush roller joint.
Preferably, the joint subassembly includes trapezoidal post, semicircle groove and bearing frame, and two semicircle groove symmetries set up, and through bolt and nut fixed connection, be equipped with the riser on the lower extreme semicircle groove, the riser upper end is equipped with the bearing frame, is equipped with the bearing in the middle of the bearing frame, and the bearing internal diameter is connected with the last lead screw of run-through lead screw stepper motor, and the riser is with the fluting sliding fit of rotation axis, sliding connection is on the rotation axis between two semicircle grooves, all is equipped with trapezoidal post on the semicircle groove of both sides, and both sides trapezoidal post lower extreme is equipped with the limiting plate, and the limiting plate is equipped with spout joint with brush roller tip.
Preferably, the filter mechanism comprises a driving speed change mechanism, a frame, a main shaft, a slag supporting plate, a toothed harrow, a traction chain and grid bars, wherein the frame is installed at a water inlet of the sedimentation tank, the main shaft is installed at the upper end of the frame, the driven shaft is installed at the lower end of the frame, the traction chains are arranged on two sides of the main shaft and the driven shaft, connecting shafts are transversely arranged between the traction chains on two sides, the toothed harrow is transversely arranged between every two connecting shafts and is connected with the traction chains in a matched mode, the grid bars are arranged at the lower end of the frame, the toothed harrow is matched with the outer sides of the grid bars in a surrounding mode, the slag supporting plate is arranged at the upper end of the grid bars, gears are arranged on one side of the main shaft, and the gears are connected with a driving belt of the driving speed change mechanism.
Preferably, the discharging mechanism comprises a driving motor, a discharging bin, an auger blade, a discharging opening and a hopper car, wherein a supporting leg is arranged at the lower end of the discharging bin, the upper end of the discharging bin is in a horn mouth shape, the driving motor is arranged on one side of the discharging bin, an output shaft of the driving motor extends to the inside of the discharging bin, the output shaft is connected with the auger blade, the discharging opening is arranged on the other side of the discharging bin, and the hopper car is arranged at the end part of the discharging opening.
Preferably, the upper end of the discharging bin is matched with the lower end of the main shaft, the hairbrush component is matched with the tooth rake at the lower end of the main shaft, and sealing covers are arranged on two sides of the upper end of the discharging bin.
Preferably, the seal cover is internally provided with a push button, the push button is matched with the brush roller, the push button is electrically connected with the water pump, the brush roller is provided with a circular ring, and the circular ring is matched with the push button.
Compared with the prior art, the utility model has the beneficial effects that:
1) Filtering the sewage in the sewage tank when the sewage enters the sedimentation tank through a filtering mechanism on the rotary grid sewage remover, reducing larger suspended matters and floaters in the water body, such as plastic bags, branches and the like, and arranging a grid cleaning mechanism between a blanking side on the filtering mechanism and a discharging mechanism to effectively clean the toothed harrow and prevent impurities from remaining on the toothed harrow, wherein when the impurities are driven by a traction chain to move to the grid, the impurities receive water flow to influence, and the impurities flow into the water body from the rear side of the grid;
2) The brush roller is arranged on the grid cleaning mechanism, and is driven to rotate by the rotating motor, brush hairs on the brush roller clean the toothed harrow, so that residual impurities on the toothed harrow are reduced, and a water source after the impurities are filtered by the grid is influenced;
3) Through being provided with through type lead screw step motor, the drive lead screw stretches out and draws back, the lead screw drives joint subassembly lateral movement, the brush roller lateral movement of joint subassembly drive both sides makes the brush roller enter into in the sealed cowling, contact with push type button, push type button cooperation shower nozzle, shunt and water pump are towards the brush roller that gets into the sealed cowling side high pressure water, wash impurity on the brush roller off, impurity wash off on the sealed cowling, in the sealed cowling landing is to the bin of arranging, the drainage hole in the bin of arranging of cooperation again is discharged liquid, large granule impurity remains, simultaneously, the brush roller of one side is when wasing in the sealed cowling, the brush roller of joint subassembly opposite side can also be to the work of tooth harrow clearance, the benefit of design like this lies in not needing to shut down, when the brush roller clearance of one side, the normal work of opposite side brush roller, realize handling to sewage circulation.
Drawings
FIG. 1 is a schematic diagram of an explosion structure of a rotary grid dirt remover of the utility model;
FIG. 2 is a schematic perspective view of the present utility model;
FIG. 3 is a schematic diagram of a rotary grid dirt remover of the utility model;
FIG. 4 is a schematic view of another view angle structure of the rotary grid cleaner of the present utility model;
FIG. 5 is a schematic diagram of a semi-sectional structure of the rotary grid dirt remover of the utility model;
FIG. 6 is a schematic view of another view semi-section structure of the rotary grid cleaner of the present utility model;
FIG. 7 is a schematic view of a partial structure from another perspective of the present utility model;
FIG. 8 is a schematic view of an exploded view of a brush assembly according to the present disclosure;
FIG. 9 is a schematic view of a clamping assembly according to the present utility model;
FIG. 10 is a schematic view of the structure of view A provided in FIG. 2 in accordance with the present utility model;
In the figure, 1, a sewage tank, 2, a rotary grid dirt remover, 21, a filtering mechanism, 211, a driving speed change mechanism, 212, a frame, 213, a main shaft, 214, a slag supporting plate, 215, a toothed harrow, 216, a traction chain, 217, grid bars, 22, a grid cleaning mechanism, 221, a spray head, 222, a sealing cover, 223, a hairbrush assembly, 2231, a penetrating screw stepping motor, 2232, a hairbrush roller, 2233, a clamping assembly, 22331, a trapezoid column, 22332, a semicircular groove, 22333, a bearing seat, 2234, a rotating shaft, 2235, a push button, 2236, a rotating motor, 224, a diverter, 225, a water pump, 23, a discharge mechanism, 231, a driving motor, 232, a discharge bin, 233, a twisted dragon leaf, 234, a discharge port, 235, a hopper car and 3, a sedimentation tank.
Detailed Description
The technical scheme of the present utility model will be further specifically described below with reference to fig. 1 to 10 for the convenience of understanding of those skilled in the art.
The utility model provides a high-efficient environmental protection type sewage circulation treatment facility, includes effluent water sump 1, rotation type grid scrubbing machine 2 and sedimentation tank 3, 1 one side of effluent water sump is equipped with sedimentation tank 3, is equipped with rotation type grid scrubbing machine 2 between 1 and the sedimentation tank 3 simultaneously, and rotation type grid scrubbing machine 2 model is GSHP type rotation type grid scrubbing machine, be equipped with filter mechanism 21 in the rotation type grid scrubbing machine 2, filter mechanism 21 one side is equipped with grid clearance mechanism 22, and grid clearance mechanism 22 lower extreme is equipped with discharging mechanism 23;
Referring to fig. 1 and 7, the grille cleaning mechanism 22 includes a nozzle 221, a sealing cover 222, a brush assembly 223, a diverter 224 and a water pump 225, wherein the sealing cover 222 is symmetrically installed at two sides of the discharging mechanism 23, the nozzle 221 is arranged on the side wall of the sealing cover 222, the nozzle 221 is connected with the diverter 224 through a pipeline, and the water inlet of the diverter 224 is connected with the water pump 225 through a pipeline;
In summary, as shown in fig. 6 and 8, the brush assembly 223 includes a penetrating screw rod stepper motor 2231, a rotating motor 2236 is fixedly installed on the outer side of the one-side sealing cover 222, the type of the rotating motor 2236 is GS7112, a rotating shaft 2234 is installed on an output shaft of the rotating motor 2236, the rotating shaft 2234 is hollow, a brush roller 2232 is slidingly connected to the rotating shaft 2234, a limit groove is formed on the brush roller 2232, the limit groove is matched with a limit block transversely provided on the rotating shaft 2234, one side of the brush roller 2232 is clamped with a clamping assembly 2233, the other-side sealing cover 222 is provided with a penetrating screw rod stepper motor 2231, the penetrating screw rod stepper motor 2231 drives and connects with a screw rod, the screw rod extends to the inside of the rotating shaft 2234, a slot is provided at the lower end of the rotating shaft 2234, a clamping assembly 2233 is slidingly connected to the rotating shaft 2234, and the clamping assembly 2233 is clamped with the brush roller 2232 through the slot.
Further, as shown in fig. 9, the clamping assembly 2233 includes a trapezoidal column 22331, a semicircular groove 22332 and a bearing seat 22333, the two semicircular grooves 22332 are symmetrically arranged and fixedly connected through bolts and nuts, a vertical plate is arranged on the semicircular groove 22332 at the lower end, the upper end of the vertical plate is provided with the bearing seat 22333, a bearing is arranged in the middle of the bearing seat 22333, the inner diameter of the bearing is connected with a screw rod on a penetrating screw rod stepping motor, the vertical plate is in sliding fit with a groove of the rotating shaft 2234, the two semicircular grooves 22332 are in sliding connection with the rotating shaft 2234, the trapezoidal columns 22331 are arranged on the semicircular grooves 22332 at two sides, a limiting plate is arranged at the lower end of the trapezoidal columns 22331 at two sides, and the limiting plate is in sliding groove clamping connection with the end part of the brush roller 2232.
Referring to fig. 1, fig. 3, fig. 4, and fig. 5, the filtering mechanism 21 includes a driving speed change mechanism 211, a frame 212, a main shaft 213, a slag supporting plate 214, a toothed harrow 215, a traction chain 216, and a grid 217, the frame 212 is installed at a water inlet of the sedimentation tank 3, the main shaft 213 is installed at an upper end of the frame 212, tooth discs are further provided at two sides of the main shaft 213, the tooth discs are meshed with the traction chain 216, a driven shaft is installed at a lower end of the frame 212, the traction chain 216 is provided at two sides of the main shaft 213 and the driven shaft, connecting shafts are transversely provided between the traction chains 216 at two sides, a toothed harrow 215 is transversely provided between each two connecting shafts, the toothed harrow 215 is in cooperation with the traction chain 216, the grid 217 is provided at a lower end of the frame 212, the toothed harrow 215 is in cooperation around the grid 217, the slag supporting plate 214 is provided at an upper end of the grid 217, a gear is provided at one side of the main shaft 213, and the gear is connected with a driving speed change mechanism 211.
Referring to fig. 3, 6 and 10, the discharging mechanism 23 includes a driving motor 231, a discharging bin 232, an auger blade 233, a discharging opening 234 and a hopper car 235, a water filtering hole is provided at the lower end of the discharging bin 232, after impurities fall to the discharging bin 232, the impurities are discharged through the water filtering hole, a supporting leg is provided at the lower end of the discharging bin 232, the upper end of the discharging bin 232 is bell mouth-shaped, a driving motor 231 is provided at one side of the discharging bin 232, an output shaft of the driving motor 231 extends into the discharging bin 232, and the output shaft is connected with the auger blade 233, a discharging opening 234 is provided at the other side of the discharging bin 232, and a hopper car 235 is provided at the end of the discharging opening 234.
Further, as shown in fig. 5, the upper end of the discharging bin 232 is matched with the lower end of the main shaft 213, the brush assembly 223 is matched with the toothed harrow 215 at the lower end of the main shaft 213, and both sides of the upper end of the discharging bin 232 are provided with sealing covers 222.
As shown in fig. 6, a push button 2235 is disposed in the seal cover 222, the push button 2235 is matched with the brush roller 2232, the push button 2235 is electrically connected with the water pump 225, a ring is disposed on the brush roller 2232, the ring is matched with the push button 2235, the penetrating screw rod stepper motor 2231 is started, the penetrating screw rod stepper motor 2231 drives the screw rod to rotate and stretch in the penetrating screw rod stepper motor 2231, the screw rod is matched with a bearing in a bearing seat 22333 to move on an axis of a rotating shaft 2234, the brush roller 2232 is driven to transversely move, two brush rollers 2232 are disposed on the rotating shaft 2234, the screw rod drives a clamping assembly 2233 to reciprocate through the bearing seat 22333, so that one side of the brush roller 2232 enters the seal cover 222, and after the other side of the brush roller 2232 enters the seal cover 222, the ring contacts with the push button 2235, and a spray nozzle on the seal cover 222 corresponding to the push button 2235 is started.
A high-efficient environment-friendly sewage circulation treatment device, the working process is as follows:
When the device is used, firstly, sewage is discharged into a sedimentation tank from a sewage tank 1, at the moment, the sewage is filtered by a rotary grid sewage remover 2, a speed change mechanism 211 is driven to rotate by a conveying belt, a main shaft 213 drives a traction chain 216 to rotate, the traction chain 216 drives a toothed harrow 215 to move around a grid bar 217 in a matched mode, residues filtered by the grid bar 217 are moved upwards by the toothed harrow 215, then the residues pass through a slag supporting plate, the toothed harrow 215 is matched with the traction chain 216 to the lower end of the main shaft 213, the impurities fall into a discharge bin 232 from the toothed harrow 215 by gravity, and then a driving motor 231 drives a auger 233 to discharge the impurities into a hopper car 235;
Meanwhile, when impurities are discharged into the discharging bin 232 by the toothed harrow 215, the toothed harrow 215 is adhered with the impurities, and when the toothed harrow 215 circularly rotates to the lower end, the impurities are flushed into the sedimentation tank 3 by water flow to affect the water quality, so that the impurities are removed by the grid cleaning mechanism 22 when the toothed harrow 215 is required to be recycled into the water at the lower end;
The grating cleaning mechanism 22 is started by a rotating motor 2236, a brush roller 2232 is driven to rotate by a driving rotating shaft 2234, and impurities on the surface of the toothed harrow 215 are cleaned by the brush roller 2232 through brush hairs, so that the downward residual impurities of the toothed harrow 215 are prevented from being brought into a water body filtered by the lower-end grating strip 217, and the filtering of the grating strip 217 is prevented from being influenced;
Simultaneously, sewage treatment, long-term use, brush roller 2232 surface can remain impurity, the parcel is lived brush roller 2232, influence brush roller 2232 filter effect, consequently, need clear up brush roller 2232, start run-through lead screw stepper motor 2231, run-through lead screw stepper motor 2231 drives the lead screw and rotate the flexible at run-through lead screw stepper motor 2231, lead screw cooperation bearing frame 22333 inner bearing is in rotation axis motion of rotation axis 2234, drive brush roller 2232 lateral movement, be equipped with two brush rollers 2232 on rotation axis 2234, the lead screw passes through bearing frame 22333 and drives joint subassembly 2233 reciprocating motion, make one side brush roller 2232 get into in the sealed cowling 222, and the brush roller 2232 of opposite side gets into after the sealed cowling 222, with push button 2235 contact, start the shower nozzle water spray on the sealed cowling 222 that push button 2235 corresponds, make high pressure wash brush roller 2232 in this sealed cowling 222, wash impurity to seal cowling 222 through the rivers, in the axis motion of rotation axis 2234, drive brush roller 2232 in the filter silo 232, filter screen window on rotation axis run-down, the brush roller 2232 is with the effect is washed to the seal cowling 232, when the high-pressure is washed to the brush roller 2232 is washed to the outside, prevent the filter screen bar from being washed to the outside.
In summary, the electronic or electric components including but not limited to the through screw stepping motor, the push button, the rotary motor, the current divider, the water pump, the driving motor, etc. are components in the prior art, and the electrical connection between the components is conventional circuit connection or electrical connection in the prior art through private customization or purchase, which is not the protection scope of the present utility model.
The foregoing is merely illustrative and explanatory of the utility model, as it is well within the scope of the utility model as claimed, as it relates to various modifications, additions and substitutions for those skilled in the art, without departing from the inventive concept and without departing from the scope of the utility model as defined in the accompanying claims.

Claims (5)

1. The efficient environment-friendly sewage circulation treatment equipment comprises a sewage tank, a rotary grid sewage removing machine and a sedimentation tank, wherein the sedimentation tank is arranged on one side of the sewage tank, and the rotary grid sewage removing machine is arranged between the sewage tank and the sedimentation tank;
The grid cleaning mechanism comprises spray heads, a sealing cover, a hairbrush assembly, a flow divider and a water pump, wherein the sealing cover is symmetrically arranged on two sides of the discharging mechanism, the spray heads are arranged on the side walls of the sealing cover and are connected with the flow divider pipeline, and a water inlet of the flow divider is connected with the water pump pipeline;
The brush assembly comprises a penetrating type screw rod stepping motor, a rotating motor is fixedly arranged on the outer side of a sealing cover on one side, a rotating shaft is arranged on an output shaft of the rotating motor, the rotating shaft is hollow, a brush roller is connected to the rotating shaft in a sliding mode, a limiting groove is formed in the brush roller and matched with a limiting block transversely arranged on the rotating shaft, a clamping assembly is clamped on one side of the brush roller, a penetrating type screw rod stepping motor is arranged on the sealing cover on the other side of the brush roller, the penetrating type screw rod stepping motor is driven to be connected with a screw rod, the screw rod extends to the inside of the rotating shaft, a groove is formed in the lower end of the rotating shaft, a clamping assembly is connected to the rotating shaft in a sliding mode through the groove, and the clamping assembly is clamped with the screw rod in a clamping mode;
The clamping assembly comprises trapezoidal columns, semicircular grooves and bearing seats, wherein the two semicircular grooves are symmetrically arranged and fixedly connected through bolts and nuts, a vertical plate is arranged on the semicircular groove at the lower end, the bearing seats are arranged at the upper ends of the vertical plates, bearings are arranged in the middle of the bearing seats, the inner diameter of each bearing is connected with a screw rod on a through screw rod stepping motor, the vertical plate is in sliding fit with a groove of a rotating shaft, the two semicircular grooves are slidably connected with the rotating shaft, trapezoidal columns are arranged on the semicircular grooves at two sides, limiting plates are arranged at the lower ends of the trapezoidal columns at two sides, and sliding grooves are formed in the limiting plates and the ends of brush rollers.
2. The efficient environment-friendly sewage circulation treatment equipment is characterized in that the filtering mechanism comprises a driving speed changing mechanism, a frame, a main shaft, a slag supporting plate, a toothed harrow, a traction chain and grid bars, wherein the frame is arranged at a water inlet of a sedimentation tank, the main shaft is arranged at the upper end of the frame, a driven shaft is arranged at the lower end of the frame, the traction chains are arranged on the two sides of the main shaft and the driven shaft, connecting shafts are transversely arranged between the traction chains on the two sides, the toothed harrow is transversely arranged between every two connecting shafts, the toothed harrow is matched and connected with the traction chain, the grid bars are arranged at the lower end of the frame, the toothed harrow is matched around the outer sides of the grid bars, the slag supporting plate is arranged at the upper end of the grid bars, a gear is arranged on one side of the main shaft, and the gear is connected with a driving belt of the driving speed changing mechanism.
3. The efficient and environment-friendly sewage circulation treatment equipment is characterized in that the discharging mechanism comprises a driving motor, a discharging bin, an auger blade, a discharging port and a hopper car, wherein a supporting leg is arranged at the lower end of the discharging bin, the upper end of the discharging bin is in a horn mouth shape, the driving motor is arranged on one side of the discharging bin, an output shaft of the driving motor extends into the discharging bin, the output shaft is connected with the auger blade, the discharging port is arranged on the other side of the discharging bin, and the hopper car is arranged at the end part of the discharging port.
4. The efficient and environment-friendly sewage recycling treatment device according to claim 3, wherein the upper end of the discharging bin is matched with the lower end of the main shaft, the brush component is matched with a tooth rake at the lower end of the main shaft, and sealing covers are arranged on two sides of the upper end of the discharging bin.
5. The efficient and environment-friendly sewage circulation treatment equipment according to claim 1, wherein a push button is arranged in the sealing cover and is matched with the brush roller, the push button is electrically connected with the water pump, a circular ring is arranged on the brush roller, and the circular ring is matched with the push button.
CN202422406387.2U 2024-10-08 2024-10-08 Efficient environment-friendly sewage circulation treatment equipment Active CN222900506U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202422406387.2U CN222900506U (en) 2024-10-08 2024-10-08 Efficient environment-friendly sewage circulation treatment equipment

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Application Number Priority Date Filing Date Title
CN202422406387.2U CN222900506U (en) 2024-10-08 2024-10-08 Efficient environment-friendly sewage circulation treatment equipment

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Publication Number Publication Date
CN222900506U true CN222900506U (en) 2025-05-27

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN120253003A (en) * 2025-06-03 2025-07-04 江苏绿浥农业科技股份有限公司 A substrate temperature detection device with temperature difference control function for soilless cultivation

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN120253003A (en) * 2025-06-03 2025-07-04 江苏绿浥农业科技股份有限公司 A substrate temperature detection device with temperature difference control function for soilless cultivation

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