CN114804416A - Efficient sewage treatment device and method for sewage treatment - Google Patents
Efficient sewage treatment device and method for sewage treatment Download PDFInfo
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- CN114804416A CN114804416A CN202210416932.9A CN202210416932A CN114804416A CN 114804416 A CN114804416 A CN 114804416A CN 202210416932 A CN202210416932 A CN 202210416932A CN 114804416 A CN114804416 A CN 114804416A
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- C—CHEMISTRY; METALLURGY
- C02—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F1/00—Treatment of water, waste water, or sewage
- C02F1/001—Processes for the treatment of water whereby the filtration technique is of importance
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- C—CHEMISTRY; METALLURGY
- C02—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F1/00—Treatment of water, waste water, or sewage
- C02F1/52—Treatment of water, waste water, or sewage by flocculation or precipitation of suspended impurities
- C02F1/5281—Installations for water purification using chemical agents
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Abstract
The invention relates to a sewage treatment device and a method thereof, in particular to a high-efficiency sewage treatment device and a method thereof for sewage treatment. The invention provides a high-efficiency sewage treatment device and method for sewage treatment, which are convenient for collecting garbage. The utility model provides a high-efficient sewage treatment plant is used in sewage treatment, including first framework, first apron, the drainage frame, first raceway, the second framework, filter screen and push pedal etc, first framework top is equipped with first apron, it has the water inlet to open in the middle of the first apron, first framework downside is equipped with the drainage frame, drainage bottom of the frame intermediate junction has first raceway, first framework upper portion right side is equipped with the second framework, second framework bottom left side is equipped with the filter screen that is used for filtering the rubbish in the sewage, second framework left side slidingtype is equipped with the push pedal, push pedal and filter screen contact. According to the invention, the garbage is dried by the dryer, so that workers can collect the garbage conveniently, and the sewage is prevented from being spilled and inconvenient to clean when the workers take out the garbage with the sewage.
Description
Technical Field
The invention relates to a sewage treatment device and a method thereof, in particular to a high-efficiency sewage treatment device and a method thereof for sewage treatment.
Background
In the processing procedure of sewage, generally all can use the rubbish of filtering the otter board in to sewage to filter, and in order to prevent to filter the otter board and blockked up by rubbish, need the staff to dismantle the otter board of will filtering, regularly clear up the filter again, the operation is comparatively loaded down with trivial details.
Patent publication No. CN209771520U discloses a sewage treatment plant convenient to clearance filter plate, including the processing jar, the bottom of processing jar one side is provided with the delivery port, the bottom of processing jar opposite side is provided with the filling tube, the top of processing jar is provided with the apron, the top of apron is provided with the water inlet, the bottom of apron is provided with the buffering box, the interior top of processing jar and the below that is located the buffering box are provided with filter plate, filter plate's both sides all are provided with a plurality of moving mechanism of group, the interior bottom of processing jar is provided with the puddler. Has the advantages that: compared with the traditional sewage treatment device, the sewage treatment device is provided with the moving mechanism, so that the moving mechanism can drive the filter screen plate to move up and down in the treatment tank, and the filter screen plate can be driven to extend out of the treatment tank so as to be cleaned or replaced by workers, and further great convenience is brought to the work of the workers. However, when the working personnel collect the garbage with sewage on the filter screen plate, the sewage is scattered everywhere, so that the working personnel are inconvenient to collect the garbage.
How to design a sewage treatment device for treating sewage and a method thereof, which are convenient for collecting garbage, is the technical problem to be solved by the patent.
Disclosure of Invention
In order to overcome prior art when the staff collects the rubbish that has sewage on the filter screen board, sewage is unrestrained everywhere to inconvenient staff carries out the shortcoming of collecting to rubbish, the technical problem that solve is: provides a high-efficiency sewage treatment device and a method for sewage treatment, which are convenient for collecting garbage.
The technical scheme of the invention is as follows: a high-efficiency sewage treatment device for sewage treatment comprises a first frame body, a first cover plate, a drainage frame, a first water delivery pipe, a second frame body, a filter screen, a push plate, a first fixed column, a cylinder, a first baffle, a first push rod, a stirring mechanism and a drying mechanism, wherein the first cover plate is arranged at the top of the first frame body, a water inlet is formed in the middle of the first cover plate, the drainage frame is arranged at the lower side of the first frame body, the first water delivery pipe is connected in the middle of the bottom of the drainage frame, the second frame body is arranged on the right side of the upper part of the first frame body, the filter screen for filtering garbage in sewage is arranged on the left side of the bottom of the second frame body, the push plate for cleaning garbage on the filter screen is arranged on the left side of the second frame body in a sliding mode, the push plate is in contact with the filter screen, the first fixed column is arranged on the left side of the middle part in the first frame body, the cylinder is arranged on the right side of the upper part of the first fixed column, the first baffle is arranged on the left side of the bottom of the second frame body, the first push rod is connected with the first push rod, the first push rod is located the first baffle downside, and first push rod is connected with the push pedal left side, and first framework upper portion right side is equipped with the toggle mechanism who prevents the filter screen jam, is equipped with the stoving mechanism that is used for stoving rubbish in the second framework.
Further, toggle mechanism is including the second fixed column, first slide bar, the third fixed column, including a motor, an end cap, a controller, and a cover plate, first pivot and stirring pole, both sides all are equipped with the second fixed column around the first framework upper portion right side, the inboard equal slidingtype of second fixed column is equipped with first slide bar, the first slide bar upper portion of front side is equipped with the third fixed column, third fixed column inboard is equipped with the motor, the rotary type is equipped with first pivot between the first slide bar upper portion, first pivot front side and motor output shaft, be equipped with the stirring pole that prevents the filter screen jam in the middle of the first pivot, stirring pole and filter screen contact.
Further, stoving mechanism is equipped with the second pivot including drying apparatus, second pivot, torsional spring and second apron around the second framework right side, both sides all are equipped with the drying apparatus that is used for stoving rubbish, and second framework upper portion right side rotary type is equipped with the second pivot, is equipped with the second apron that is used for closed second framework in the second pivot, and second apron and second framework contact are connected with two torsional springs between second pivot and the second framework.
Further, still including the release mechanism, the release mechanism is including first wedge, the second baffle, first linear spring, second slide bar and second linear spring, both sides all are equipped with first wedge around the push pedal is left, two first slide bar tops all are equipped with the second wedge, the second wedge all contacts with the first wedge of homonymy, both sides all slidingtype is equipped with the second slide bar around the second framework is left, second slide bar top all is equipped with the second baffle, the second baffle all contacts with first pivot, second slide bar downside all with be connected with first linear spring between the left side of second framework bottom, two first slide bar downside all with be connected with second linear spring between the second fixed column of homonymy.
Further, still including preventing that sewage from getting into the ascending mechanism on the inside right side of second framework, ascending mechanism is equipped with the division board that is used for closed second framework including ejector pad, division board and third linear spring, second framework left side slidingtype, and both sides all are equipped with the ejector pad around the division board top, and the ejector pad all contacts with the second baffle of homonymy, is connected with two third linear springs between division board downside and the second framework.
Further, the automatic discharging device comprises a discharging mechanism for realizing automatic discharging, the discharging mechanism comprises a second push rod, a fourth fixed column, a storage box, a discharging barrel, a push pipe, a third push rod, a fifth fixed column, a fourth linear spring and a second water delivery pipe, the second push rod is arranged on the right side of the first push rod, the fourth fixed column is arranged on the right side of the lower portion of the first frame body, the storage box for storing a flocculating agent is arranged on the inner side of the fourth fixed column, the discharging barrel is connected to the lower side of the storage box, a one-way valve for preventing the flocculating agent from flowing back is arranged on the upper side of the discharging barrel, the fifth fixed column is arranged on the right side of the bottom of the discharging barrel, the third push rod is arranged on the right side of the upper portion of the fifth fixed column in a sliding mode, the second push rod moves rightwards to be in contact with the third push rod, the push pipe is arranged on the left side of the lower portion of the third push rod in a sliding mode, the fourth linear spring is connected between the left side of the lower portion of the third push rod and the fifth fixed column, the right side of the lower portion of the drainage frame is connected with the second water delivery pipe for delivering the flocculating agent, the second water delivery pipe is communicated with the blanking barrel.
Furthermore, the sewage treatment device also comprises a flow limiting mechanism for preventing sewage from entering the discharging barrel through a second water delivery pipe, the flow limiting mechanism comprises a sixth fixing column, a flow limiting cone, a limiting disc and a fifth linear spring, the sixth fixing column is arranged on the right side inside the second water delivery pipe, the flow limiting cone is arranged in the middle of the sixth fixing column in a sliding mode, the limiting disc is arranged on the right side inside the second water delivery pipe and located on the right side of the sixth fixing column, the flow limiting cone is in contact with the limiting disc, and the fifth linear spring is connected between the flow limiting cone and the sixth fixing column.
A high-efficiency sewage treatment method for sewage treatment comprises the following steps:
1. sewage enters the first frame body through the water inlet of the first cover plate, garbage in the sewage is filtered by the filter screen, then falls into the drainage frame and is discharged by the first water delivery pipe;
2. starting the air cylinder, wherein the air cylinder drives the push plate to push the garbage on the filter screen to the right into the second frame through the first push rod;
3. the staff collects the clearance through the second framework to rubbish.
The invention has the advantages that:
1. according to the invention, the garbage is dried by the dryer, so that workers can collect the garbage conveniently, and the problem that the sewage is scattered and inconvenient to clean when the workers take out the garbage with the sewage is avoided;
2. according to the garbage pushing device, garbage is pushed to the lower side of the material stirring rod through the push plate, and the material stirring rod rotates and moves downwards at the same time, so that the garbage is pushed to the right side in the second frame body, and the material stirring rod is convenient to push the garbage rightwards;
3. according to the invention, the second frame body is blocked by the isolation plate, so that sewage is prevented from being stored in the second frame body;
4. according to the automatic discharging device, the push pipe moves rightwards, so that a flocculating agent flows into the lower charging barrel, the push pipe moves leftwards, the flocculating agent in the lower charging barrel is further pushed leftwards to enter the drainage frame through the second water conveying pipe, automatic discharging is achieved, the flocculating agent is discharged from the first water conveying pipe to enter the sewage collection frame and is mixed with sewage, fine particles and natural colloidal particles in the sewage are coagulated into large floccules, and then the large floccules are removed from the water to treat the sewage;
5. the limiting disc is blocked by the flow limiting cone, so that sewage is prevented from flowing into the discharging barrel through the second water delivery pipe.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
FIG. 2 is a schematic view of a first partial body structure according to the present invention.
FIG. 3 is a schematic view of a second partial body structure according to the present invention.
Fig. 4 is a perspective view of a third embodiment of the present invention.
Fig. 5 is a schematic perspective view of a toggle mechanism of the present invention.
Fig. 6 is an enlarged schematic perspective view of the invention at a.
Fig. 7 is a schematic perspective view of the drying mechanism of the present invention.
Fig. 8 is a schematic perspective view of the detachment mechanism of the present invention.
Fig. 9 is a schematic perspective view of the lifting mechanism of the present invention.
Fig. 10 is a schematic perspective view of the blanking mechanism of the present invention.
Fig. 11 is a schematic perspective view of a flow restriction mechanism according to the present invention.
Labeled as: 1-a first frame body, 2-a first cover plate, 3-a drainage frame, 4-a first water pipe, 5-a second frame body, 51-a filter screen, 6-a push plate, 7-a first fixed column, 8-an air cylinder, 9-a first baffle, 10-a first push rod, 11-a toggle mechanism, 111-a second fixed column, 112-a first slide rod, 113-a third fixed column, 114-a motor, 115-a first rotating shaft, 116-a material stirring rod, 12-a drying mechanism, 121-a dryer, 122-a second rotating shaft, 123-a torsion spring, 124-a second cover plate, 13-a disengaging mechanism, 131-a first wedge block, 132-a second wedge block, 133-a second baffle, 134-a first linear spring and 135-a second slide rod, 136-a second linear spring, 14-a lifting mechanism, 141-a pushing block, 142-a separation plate, 143-a third linear spring, 15-a blanking mechanism, 151-a second push rod, 152-a fourth fixed column, 153-a storage box, 154-a blanking barrel, 155-a pushing pipe, 156-a third push rod, 157-a fifth fixed column, 158-a fourth linear spring, 159-a second water conveying pipe, 16-a flow limiting mechanism, 161-a sixth fixed column, 162-a flow limiting cone, 163-a limiting disc and 164-a fifth linear spring.
Detailed Description
The invention is described in further detail below with reference to the drawings and the detailed description, but the invention is not limited to the scope of protection and application.
Example 1
A high-efficiency sewage treatment device for sewage treatment, refer to fig. 1-7, comprising a first frame body 1, a first cover plate 2, a drainage frame 3, a first water pipe 4, a second frame body 5, a filter screen 51, a push plate 6, a first fixed column 7, a cylinder 8, a first baffle 9, a first push rod 10, a toggle mechanism 11 and a drying mechanism 12, wherein the first cover plate 2 is arranged at the top of the first frame body 1, a water inlet is arranged in the middle of the first cover plate 2, the drainage frame 3 is arranged at the lower side of the first frame body 1, the first water pipe 4 is connected with the middle of the bottom of the drainage frame 3, the second frame body 5 is arranged at the right side of the upper part of the first frame body 1, the filter screen 51 is arranged at the left side of the bottom of the second frame body 5, the filter screen 51 is used for filtering garbage in sewage, a push plate 6 is arranged at the left side of the second frame body 5 in a sliding manner, the push plate 6 is used for cleaning the garbage on the filter screen 51, the push plate 6 is in contact with the filter screen 51, the first fixed column 7 is connected with the left side of the middle part in the first frame body 1, the cylinder 8 is installed on 7 upper portions of the first fixing columns right side, the left side of the bottom of the second frame body is connected with the first baffle 9, the telescopic rod of the cylinder 8 is connected with the first push rod 10, the first push rod 10 is located on the lower side of the first baffle 9, the first push rod 10 is connected with the left side of the push plate 6, the right side of the upper portion of the first frame body is provided with the shifting mechanism 11, the shifting mechanism 11 prevents the filter screen 51 from being blocked, the second frame body 5 is provided with the drying mechanism 12, and the drying mechanism 12 is used for drying garbage.
Referring to fig. 5-6, the toggle mechanism 11 includes a second fixing column 111, a first sliding rod 112, a third fixing column 113, a motor 114, a first rotating shaft 115 and a material shifting rod 116, the second fixing column 111 is connected to both the front and rear sides of the right side of the upper portion of the first frame 1, the first sliding rod 112 is slidably disposed inside the second fixing column 111, the third fixing column 113 is disposed on the upper portion of the first sliding rod 112 on the front side, the motor 114 is fixedly connected to the inside of the third fixing column 113 through a bolt, a first rotating shaft 115 is rotatably disposed between the upper portions of the front and rear first sliding rods 112, the front side of the first rotating shaft 115 is connected to an output shaft of the motor 114, the material shifting rod 116 is connected to the middle of the first rotating shaft 115, the material shifting rod 116 prevents the filter screen 51 from being blocked, and the material shifting rod 116 is in contact with the filter screen 51.
Referring to fig. 7, the drying mechanism 12 includes a dryer 121, a second rotating shaft 122, a torsion spring 123 and a second cover plate 124, the dryer 121 is disposed on both sides of the right side of the second frame body 5, the dryer 121 is used for drying garbage, the second rotating shaft 122 is rotatably disposed on the right side of the upper portion of the second frame body 5, the second rotating shaft 122 is connected to the second cover plate 124, the second cover plate 124 is used for closing the second frame body 5, the second cover plate 124 contacts with the second frame body 5, and two torsion springs 123 are connected between the second rotating shaft 122 and the second frame body 5.
When the device is used, the first cover plate 2 is firstly connected at the position of a pipe orifice of sewage, then the first water delivery pipe 4 is connected with the sewage collection frame, sewage enters the first frame body 1 through the water inlet of the first cover plate 2, and then falls into the drainage frame 3 through the filter screen 51, the sewage is discharged from the first water delivery pipe 4 and enters the sewage collection frame, the garbage in the sewage is filtered out by the filter screen 51, when the sewage stops entering the first frame body 1, the air cylinder 8 is started, the telescopic rod of the air cylinder 8 extends to drive the first push rod 10 to move rightwards, the first push rod 10 drives the push plate 6 to move rightwards, so that the garbage on the filter screen 51 is pushed rightwards, the motor 114 is started, the output shaft of the motor 114 rotates to drive the first rotating shaft 115 to rotate, the first rotating shaft 115 drives the material stirring rod 116 to rotate, so that the material stirring rod 116 pushes the garbage to the right side in the second frame body 5, and simultaneously the filter screen 51 is dredged to prevent the filter screen 51 from being blocked, after the garbage on the filter screen 51 is processed, the motor 114 is turned off, the telescopic rod of the cylinder 8 is controlled to contract to drive the first push rod 10 to move leftwards, the first push rod 10 drives the push plate 6 to move leftwards to reset, the cylinder 8 is turned off, the dryer 121 is started, the dryer 121 dries the garbage, thereby being convenient for a worker to collect the garbage, when the worker is prevented from taking out the garbage with sewage, the sewage is scattered to clean the garbage, after the garbage is dried, the dryer 121 is turned off, the worker rotates to open the second cover plate 124, the second cover plate 124 drives the second rotating shaft 122 to rotate, the torsional spring 123 deforms, the garbage in the second frame body 5 can be collected, after the collection is finished, the second cover plate 124 is loosened, and then the second cover plate 124 and the second rotating shaft 122 are driven to rotate reversely to reset under the reset effect of the torsional spring 123.
Example 2
On the basis of the embodiment 1, referring to fig. 2 and 8, the device further comprises a disengaging mechanism 13, wherein the disengaging mechanism 13 comprises a first wedge block 131, a second wedge block 132 and a second baffle 133, first linear spring 134, second slide bar 135 and second linear spring 136, both sides all are connected with first wedge 131 around push pedal 6 left, two first slide bar 112 tops all are connected with second wedge 132, second wedge 132 all contacts with the first wedge 131 of homonymy, both sides all are equipped with second slide bar 135 around the left of second framework 5 is slidingtype, second slide bar 135 top all is equipped with second baffle 133, second baffle 133 all contacts with first pivot 115, second slide bar 135 downside all with be connected with first linear spring 134 between the left side of second framework 5 bottom, all be connected with second linear spring 136 between the second fixed column 111 of homonymy of two first slide bar 112 downside.
When the pushing plate 6 moves rightwards, the first wedge block 131 is driven to move rightwards, the first wedge block 131 upwards extrudes the second wedge block 132, the first sliding rod 112 is driven to move upwards, the first sliding rod 112 drives the third fixed column 113, the motor 114, the first rotating shaft 115 and the material stirring rod 116 to move upwards, the second linear spring 136 is compressed, the first rotating shaft 115 drives the second baffle 133 to move upwards, the first linear spring 134 is compressed, so that the pushing plate 6 can push garbage to the lower part of the material stirring rod 116, when the pushing plate 6 moves leftwards, the first wedge block 131 is driven to move leftwards, the second wedge block 132, the first sliding rod 112, the third fixed column 113, the motor 114, the first rotating shaft 115 and the material stirring rod 116 are driven to move downwards under the action of the reset of the second linear spring 136, so that the material stirring rod 116 moves downwards while rotating, and the garbage is pushed to the right side inside the second frame body 5, and at the same time, the second baffle 133 is driven by the first linear spring 134 to move downwards to be reset.
Referring to fig. 2 and 9, the lifting mechanism 14 is further included, the lifting mechanism 14 includes a push block 141, a partition plate 142 and third linear springs 143, the partition plate 142 is slidably disposed on the left side of the second frame 5, the partition plate 142 is used for closing the second frame 5, the push block 141 is connected to the front side and the rear side of the top of the partition plate 142, the push block 141 is in contact with the second baffle 133 on the same side, and two third linear springs 143 are connected between the lower side of the partition plate 142 and the second frame 5.
When the second baffle 133 moves upward, the pushing block 141 is further driven to move upward, the pushing block 141 drives the isolation board 142 to move upward and open, the third linear spring 143 is compressed, so that the isolation board 142 does not block the second frame 5 any more, when the second baffle 133 moves downward, the isolation board 142 and the pushing block 141 are further driven to move downward and reset under the reset effect of the third linear spring 143, so that the isolation board 142 blocks the second frame 5, and sewage is prevented from being stored in the second frame 5.
Referring to fig. 1 and 10, the blanking device 15 further includes a blanking mechanism 15, the blanking mechanism 15 includes a second push rod 151, a fourth fixed column 152, a storage box 153, a blanking barrel 154, a push pipe 155, a third push rod 156, a fifth fixed column 157, a fourth linear spring 158 and a second water pipe 159, the second push rod 151 is disposed on the right side of the first push rod 10, the fourth fixed column 152 is disposed on the right side of the lower portion of the first frame 1, the storage box 153 is disposed on the inner side of the fourth fixed column 152, the storage box 153 is used for storing a flocculating agent, the lower side of the storage box 153 is communicated with the blanking barrel 154, a check valve for preventing the flocculating agent from flowing back is disposed on the upper side of the blanking barrel 154, the fifth fixed column 157 is welded on the right side of the bottom of the blanking barrel 154, a third push rod 156 is slidably disposed on the right side of the upper portion of the fifth fixed column 157, the second push rod 151 moves to the right to contact with the third push rod 156, the push pipe 155 is disposed on the left side of the lower portion of the third push rod 156, the push pipe 155 is slidably connected with the blanking barrel 154, a fourth linear spring 158 is connected between the left side of the lower part of the third push rod 156 and the fifth fixing column 157, a second water pipe 159 is connected to the right side of the lower part of the drainage frame 3, the second water pipe 159 is used for conveying a flocculating agent, and the second water pipe 159 is communicated with the blanking barrel 154.
An appropriate amount of flocculant is added into the storage tank 153, when the first push rod 10 moves rightwards, the second push rod 151 is driven to move rightwards, when the second push rod 151 is in contact with the third push rod 156, the third push rod 156 is driven to move rightwards, the fourth linear spring 158 is compressed, the third push rod 156 drives the push pipe 155 to move rightwards, so that the flocculant flows into the lower charging barrel 154, when the first push rod 10 moves leftwards, the second push rod 151 is driven to move leftwards, the third push rod 156 and the push pipe 155 are driven to move leftwards and reset under the reset action of the fourth linear spring 158, the push pipe 155 pushes the flocculant in the lower charging barrel 154 leftwards, so that the flocculant enters the drainage frame 3 through the second water pipe 159, is discharged into the sewage collection frame through the first water pipe 4, and is mixed with sewage, fine particles and natural colloidal particles in the sewage are coagulated into large floccules, thereby removing the wastewater from the water and treating the wastewater.
Referring to fig. 2 and 11, the flow limiting device 16 further includes a flow limiting mechanism 16, the flow limiting mechanism 16 includes a sixth fixing column 161, a flow limiting cone 162, a limiting disc 163 and a fifth linear spring 164, the sixth fixing column 161 is disposed on the right side inside the second water pipe 159, the flow limiting cone 162 is slidably disposed in the middle of the sixth fixing column 161, the limiting disc 163 is disposed on the right side inside the second water pipe 159, the limiting disc 163 is located on the right side of the sixth fixing column 161, the flow limiting cone 162 is in contact with the limiting disc 163, and the fifth linear spring 164 is connected between the flow limiting cone 162 and the sixth fixing column 161.
The flocculating agent is pushed to the left and enters the second water pipe 159, so that the flow limiting cone 162 is extruded leftwards, the fifth linear spring 164 is compressed, the flow limiting cone 162 does not block the limiting disc 163 any more, the flocculating agent further enters the drainage frame 3 through the second water pipe 159, when the flocculating agent stops entering the second water pipe 159, the flocculating agent further drives the flow limiting cone 162 to move leftwards under the reset effect of the fifth linear spring 164 to reset and block the limiting disc 163, and therefore sewage is prevented from flowing into the lower charging barrel 154 through the second water pipe 159.
A high-efficiency sewage treatment method for sewage treatment comprises the following steps:
1. sewage enters the first frame body 1 through the water inlet of the first cover plate 2, garbage in the sewage is filtered by the filter screen 51, then falls into the drainage frame 3 and is discharged by the first water conveying pipe 4;
2. starting the air cylinder 8, wherein the air cylinder 8 drives the push plate 6 to push the garbage on the filter screen 51 to the right into the second frame body 5 through the first push rod 10;
3. the staff collects the clearance through second framework 5 to rubbish.
It should be understood by those skilled in the art that the above embodiments do not limit the present invention in any way, and all technical solutions obtained by using equivalent alternatives or equivalent variations fall within the scope of the present invention.
Claims (8)
1. A high-efficiency sewage treatment device for sewage treatment comprises a first frame body (1), a first cover plate (2), a drainage frame (3), a first water delivery pipe (4), a second frame body (5), a filter screen (51), a push plate (6), a first fixing column (7), a cylinder (8), a first baffle (9) and a first push rod (10), wherein the first cover plate (2) is arranged at the top of the first frame body (1), a water inlet is formed in the middle of the first cover plate (2), the drainage frame (3) is arranged at the lower side of the first frame body (1), the first water delivery pipe (4) is connected in the middle of the bottom of the drainage frame (3), the second frame body (5) is arranged at the right side of the upper part of the first frame body (1), the filter screen (51) for filtering garbage in sewage is arranged at the left side of the bottom of the second frame body (5), the push plate (6) for cleaning the garbage on the filter screen (51) is arranged at the left side of the second frame body (5) in a sliding manner, push pedal (6) and filter screen (51) contact, the middle part left side is equipped with first fixed column (7) in first framework (1), first fixed column (7) upper portion right side is equipped with cylinder (8), second framework (5) bottom left side is equipped with first baffle (9), be connected with first push rod (10) on cylinder (8) the telescopic link, first push rod (10) are located first baffle (9) downside, first push rod (10) are connected on the left of push pedal (6), its characterized in that: the garbage drying machine is characterized by further comprising a shifting mechanism (11) and a drying mechanism (12), wherein the shifting mechanism (11) for preventing the filter screen (51) from being blocked is arranged on the right side of the upper portion of the first frame body (1), and the drying mechanism (12) for drying garbage is arranged on the second frame body (5).
2. The high efficiency sewage treatment apparatus for sewage treatment as set forth in claim 1, wherein: toggle mechanism (11) is including second fixed column (111), first slide bar (112), third fixed column (113), motor (114), first pivot (115) and kickoff pole (116), both sides all are equipped with second fixed column (111) around first framework (1) upper portion right side, second fixed column (111) inboard all is equipped with first slide bar (112) of slidingtype, first slide bar (112) upper portion of front side is equipped with third fixed column (113), third fixed column (113) inboard is equipped with motor (114), the rotary type is equipped with first pivot (115) between first slide bar (112) upper portion, first pivot (115) front side and motor (114) output shaft, be equipped with kickoff pole (116) that prevent filter screen (51) jam in the middle of first pivot (115), kickoff pole (116) and filter screen (51) contact.
3. The high-efficiency sewage treatment device for sewage treatment as set forth in claim 2, characterized in that: drying mechanism (12) are including drying apparatus (121), second pivot (122), torsional spring (123) and second apron (124), both sides all are equipped with drying apparatus (121) that are used for drying rubbish around second framework (5) right side, second framework (5) upper portion right side rotary type is equipped with second pivot (122), be equipped with second apron (124) that are used for closed second framework (5) on second pivot (122), second apron (124) and second framework (5) contact, be connected with two torsional springs (123) between second pivot (122) and second framework (5).
4. A high-efficiency sewage treatment apparatus for sewage treatment as set forth in claim 3, wherein: still including breaking away from mechanism (13), break away from mechanism (13) including first wedge (131), second wedge (132), second baffle (133), first linear spring (134), second slide bar (135) and second linear spring (136), push pedal (6) left front and back both sides all are equipped with first wedge (131), two first slide bar (112) tops all are equipped with second wedge (132), second wedge (132) all contact with first wedge (131) of homonymy, second framework (5) left front and back both sides all slidingtype is equipped with second slide bar (135), second slide bar (135) top all is equipped with second baffle (133), second baffle (133) all contact with first pivot (115), be connected with first linear spring (134) between second slide bar (135) downside all and second framework (5) bottom left side, be connected with second linear spring (136) between two first slide bar (112) downside all and the second fixed column (111) of homonymy .
5. The high-efficiency sewage treatment device for sewage treatment as set forth in claim 4, wherein: still including preventing that sewage from getting into ascending mechanism (14) on the inside right side of second framework (5), ascending mechanism (14) are including ejector pad (141), division board (142) and third linear spring (143), second framework (5) left side slidingtype is equipped with division board (142) that are used for closed second framework (5), both sides all are equipped with ejector pad (141) around division board (142) top, ejector pad (141) all contact with second baffle (133) of homonymy, be connected with two third linear spring (143) between division board (142) downside and second framework (5).
6. The high-efficiency sewage treatment device for sewage treatment as set forth in claim 5, wherein: the automatic discharging device also comprises a discharging mechanism (15) for realizing automatic discharging, wherein the discharging mechanism (15) comprises a second push rod (151), a fourth fixed column (152), a storage box (153), a discharging barrel (154), a push pipe (155), a third push rod (156), a fifth fixed column (157), a fourth linear spring (158) and a second water conveying pipe (159), the second push rod (151) is arranged on the right side of the first push rod (10), the fourth fixed column (152) is arranged on the right side of the lower part of the first frame body (1), the storage box (153) for storing flocculating agents is arranged on the inner side of the fourth fixed column (152), the discharging barrel (154) is connected to the lower side of the storage box (153), a one-way valve for preventing flocculating agents from flowing back is arranged on the upper side of the discharging barrel (154), the fifth fixed column (157) is arranged on the right side of the bottom of the discharging barrel (154), the third push rod (156) is arranged on the right side of the upper part of the fifth fixed column (157) in a sliding manner, the second push rod (151) moves rightwards and contacts with the third push rod (156), a push pipe (155) is arranged on the left side of the lower portion of the third push rod (156), the push pipe (155) is connected with the lower charging barrel (154) in a sliding mode, a fourth linear spring (158) is connected between the left side of the lower portion of the third push rod (156) and the fifth fixing column (157), a second water conveying pipe (159) used for conveying flocculating agents is connected to the right side of the lower portion of the drainage frame (3), and the second water conveying pipe (159) is communicated with the lower charging barrel (154).
7. The high-efficiency sewage treatment device for sewage treatment according to claim 6, characterized in that: still including preventing that sewage from getting into current-limiting mechanism (16) in feed cylinder (154) down through second raceway (159), current-limiting mechanism (16) is equipped with sixth fixed column (161) including sixth fixed column (161), current-limiting awl (162), spacing dish (163) and fifth linear spring (164), the inside right side of second raceway (159) is equipped with sixth fixed column (161), the slidingtype is equipped with current-limiting awl (162) in the middle of sixth fixed column (161), the inside right side of second raceway (159) is equipped with spacing dish (163), spacing dish (163) are located sixth fixed column (161) right side, current-limiting awl (162) and spacing dish (163) contact, be connected with fifth linear spring (164) between current-limiting awl (162) and sixth fixed column (161).
8. A high-efficiency sewage treatment method for sewage treatment comprises the following steps:
1. sewage enters the first frame body (1) through a water inlet of the first cover plate (2), garbage in the sewage is filtered by the filter screen (51), then falls into the drainage frame (3), and is discharged by the first water delivery pipe (4);
2. starting the air cylinder (8), wherein the air cylinder (8) drives the push plate (6) to push the garbage on the filter screen (51) to the right into the second frame body (5) through the first push rod (10);
3. the staff collects the clearance through second framework (5) to rubbish.
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