CN210645255U - Concrete muddy water treatment device - Google Patents

Concrete muddy water treatment device Download PDF

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Publication number
CN210645255U
CN210645255U CN201921590425.7U CN201921590425U CN210645255U CN 210645255 U CN210645255 U CN 210645255U CN 201921590425 U CN201921590425 U CN 201921590425U CN 210645255 U CN210645255 U CN 210645255U
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China
Prior art keywords
gear
sedimentation tank
scraper
water treatment
concrete
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CN201921590425.7U
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Chinese (zh)
Inventor
朱虹
梁礼锋
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Zhejiang Yueda Traffic Engineering Co Ltd
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Zhejiang Yueda Traffic Engineering Co Ltd
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Abstract

The utility model discloses a concrete muddy water treatment device, which comprises a sedimentation tank, wherein a driving structure and a scraping structure are arranged in the sedimentation tank, the driving structure comprises a gear set, a motor and a chain, the gear set comprises a first gear set and a second gear set, the first gear set and the second gear set are arranged on two opposite sides of the sedimentation tank, the first gear set comprises a first gear and a second gear, the second gear set comprises a third gear and a fourth gear, the first gear is connected with the third gear, and first gear is connected with the motor, installs one respectively on first gear train and the second gear train the chain, spatula structure link and scraper blade, the link is vertical to be set up in the sedimentation tank, and the upper portion of link is installed between two chains, and the lower part is connected with the scraper blade, and the shovel board is installed to the scraper blade and the one end of sedimentation tank bottom of the pool contact, and motor drive gear group drives the sediment of scraper blade and shovel board clearance sedimentation tank bottom of the pool.

Description

Concrete muddy water treatment device
Technical Field
The utility model relates to a waste water treatment technology, more specifically say, it relates to a concrete muddy water processing apparatus.
Background
The concrete mixer truck is a vehicle for transporting concrete, when the concrete mixer truck is transported, the concrete can be solidified into blocks and damages a transportation tank to a certain extent, so that the concrete attached to the tank body is cleaned after discharging, a large amount of water is needed for washing the residual concrete after cleaning, the washed water can be accumulated on the ground, the ground accumulated water is inconvenient to pass, the waste of water resources can be caused, and the waste water can be collected generally.
At present, some enterprises only build a simple wastewater collecting tank for collecting and filtering wastewater, but are not easy to clean the collecting tank, and if Chinese patents with the publication number of CN207614498U and the application date of 2017, 11 and 22 disclose a concrete sewage filtering device, which belongs to the technical field of filtering devices and comprises a support, a sedimentation tank and a filtering body for filtering sewage, wherein the filtering body is arranged on the support, and the support is arranged in the sedimentation tank.
The concrete sewage filtering device has the advantages of simple structure and convenience in operation, and can be used for orderly discharging sewage for cleaning the concrete mixing tank and realizing the recycling of the sewage for cleaning the concrete mixing tank, but can not be used for well cleaning precipitates after precipitation.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a concrete muddy water processing apparatus, its precipitate that can clear up the sedimentation tank bottom of the pool.
The above technical purpose of the present invention can be achieved by the following technical solutions:
a concrete muddy water treatment device comprises a sedimentation tank, wherein a driving structure and a scraping structure are arranged in the sedimentation tank, the driving structure comprises a gear set, a motor and a chain, the gear set comprises a first gear set and a second gear set, the first gear set and the second gear set are arranged on two opposite sides of the sedimentation tank, the first gear set comprises a first gear and a second gear, the second gear set comprises a third gear and a fourth gear, the first gear is connected with the third gear, the first gear is connected with the motor, and the first gear set and the second gear set are respectively provided with the chain;
the scraper structure comprises a connecting frame and a scraper plate, the connecting frame is vertically arranged in the sedimentation tank, the upper part of the connecting frame is arranged between the two chains, and the lower part of the connecting frame is connected with the scraper plate.
So set up, first gear and third gear are connected to the motor, install the chain on first gear and the second gear, install the chain on third gear and the fourth gear, and the synchronous rotation of motor drive first gear and third gear, the synchronous rotation of chain on the two gear trains, the chain drives link and scraper blade removal, the precipitate of spatula bottom of the pool.
More preferably: be provided with a mount on the relative both sides of sedimentation tank respectively, the mount includes two L shaped plates, bearing and axostylus axostyle, and the one end of two L shaped plates is installed on the pool limit of sedimentation tank, and the other end is vertical to be set up in the pool limit of sedimentation tank, and the terminal surface of the vertical setting of two L shaped plates sets up relatively, and a bearing is installed respectively to the terminal surface that two L shaped plates set up relatively, and the axostylus axostyle is connected with the bearing, and first gear and third gear are fixed in on same axostylus axostyle, and the second.
So set up, the bearing is installed on the L shaped plate, and the axostylus axostyle is installed on the bearing, and the rotation can take place for the axostylus axostyle, and first gear and third gear, second gear and fourth gear can rotate and rotate on the mount through the axostylus axostyle rotates on the bearing.
More preferably: the link includes fixed plate and two flexible pipes, the fixed plate is installed on two chains, flexible pipe includes telescopic link and sleeve pipe, the one side at the bottom of the pond of bushing installation and fixed plate orientation sedimentation tank, the one end of telescopic link is adorned in the one end that the fixed plate was kept away from to the sleeve pipe, the telescopic one end is kept away from to the telescopic link is connected with the scraper blade, long slide opening has all been opened on two sleeve pipes, two long slide opening set up relatively, be provided with a slide bar on two long slide opening, the both ends of slide bar pass long slide opening respectively and get into two sleeve pipes and adorn in sheathed tube one end with the telescopic link and be connected, install a stretcher on the fixed plate, the.
So set up, two telescopic links are connected at the both ends of slide bar, and the slide bar can slide on long slide opening to drive the telescopic link and stretch out and draw back in the intraductal synchronization of cover, tensile one end and sliding connection can be stretched to tensile, and tensile driving piece can drive the slide bar and slide in long slide opening as tensile driving piece.
More preferably: the stretching piece comprises an air cylinder, a through hole is formed in the center of the fixing plate, and a piston rod of the air cylinder penetrates through the through hole to be connected with the sliding rod.
So set up, the cylinder is as tensile driving piece, and the installation is simple and easy, and it is easy to change, convenient operation, and the cylinder cost that the device needs is low.
More preferably: two sides of the scraping plate and the sedimentation tank are respectively provided with a shovel plate.
So set up, the setting of shovel board can be shoveled the deposit to make the deposit of clearance deposit on the shovel board.
More preferably: the end of one end of the shovel plate, which is far away from the connecting scraper, is arranged in a conical shape.
So set up, the end that the toper set up can be better the laminating ground scoops up the precipitate.
More preferably: the cross-section of shovel board is L shape, all opens a plurality of mounting holes on the terminal surface that two shovel boards and scraper blade are connected, and the shovel board corresponds the setting with the mounting hole position on the scraper blade, be equipped with on the mounting hole long screw and with long screw complex nut, two shovel boards and scraper blade bolted connection.
So set up, the position of mounting hole corresponds, uses the bolt to fix the shovel board of scraper blade both sides on the scraper blade with the bolt, and the shovel board of L shape is convenient to be connected with scraper blade erection.
More preferably: two side ends of the shovel plate are respectively vertically provided with a baffle.
So set up, the baffle can prevent that the sediment of spatula to the shovel board from spilling because of rising or the shake of device self.
To sum up, the utility model discloses there is following beneficial effect: because the air cylinder is arranged on the connecting frame, the connecting frame is provided with the telescopic pipe, when water exists in the sedimentation tank, the scraper can be pulled out of the water surface by the air cylinder, when the sedimentation tank is empty of water and sediments need to be cleaned, the air cylinder pushes the scraper into the tank bottom through the telescopic pipe, then the motor drives the gear set to synchronously rotate, the gear set drives the chain to synchronously rotate, and the chain drives the connecting frame and the scraper to move at the tank bottom.
Drawings
FIG. 1 is a schematic view showing the construction of a concrete muddy water treatment apparatus;
FIG. 2 is a schematic structural diagram of a driving device;
FIG. 3 is a schematic view of the connection between the fixing frame and the gear;
FIG. 4 is a schematic structural view of a spatula structure;
FIG. 5 is a schematic view of the connection of the cylinder and the connecting frame;
FIG. 6 is a schematic view of the attachment of the blade to the blade.
In the figure, 1, a sedimentation tank; 2. a drive structure; 21. a gear set; 211. a first gear set; 2111. a first gear; 2112. a second gear; 212. a second gear set; 2121. a third gear; 2122. a fourth gear; 22. a motor; 23. a chain; 3. a spatula structure; 31. a connecting frame; 311. a fixing plate; 3111. a through hole; 312. a telescopic pipe; 3121. a telescopic rod; 3122. a sleeve; 3123. a long slide hole; 3124. a slide bar; 32. a squeegee; 321. a shovel plate; 322. mounting holes; 323. a baffle plate; 324. a long screw; 325. a nut; 4. a fixed mount; 41. an L-shaped plate; 42. a bearing; 43. a shaft lever; 5. a tension member; 51. a cylinder; 52. a piston rod.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
The present embodiment is only for explaining the present invention, and it is not limited to the present invention, and those skilled in the art can make modifications of the present embodiment without inventive contribution as needed after reading the present specification, but all of them are protected by patent law within the scope of the present invention.
The utility model provides a concrete muddy water processing apparatus, includes sedimentation tank 1, is provided with drive structure 2 and spatula structure 3 in the sedimentation tank 1.
Referring to fig. 1 and 2, the driving structure 2 includes a gear set 21, a motor 22 and a chain 23, the gear set 21 includes a first gear set 211 and a second gear set 212, the first gear set 211 and the second gear set 212 are installed on opposite sides of the sedimentation tank 1, the first gear set 211 includes a first gear 2111 and a second gear 2112, the second gear set 212 includes a third gear 2121 and a fourth gear 2122, the first gear 2111 is connected with the third gear 2121, and the second gear 2112 is connected with the fourth gear 2122.
Referring to fig. 3, the fixing frame 4 is respectively arranged on two opposite sides of the sedimentation tank 1, the fixing frame 4 comprises two L-shaped plates 41, a bearing 42 and a shaft rod 43, one ends of the two L-shaped plates 41 are mounted on the tank side of the sedimentation tank 1 through screws, the other ends of the two L-shaped plates are vertically arranged on the tank side of the sedimentation tank 1, the end faces of the two L-shaped plates 41 which are vertically arranged are oppositely arranged, the bearing 42 is respectively mounted on the end faces of the two L-shaped plates 41 which are oppositely arranged, and the shaft rod 43 is connected with.
The first gear 2111 and the third gear 2121 are fixed to one shaft 43, and the second gear 2112 and the fourth gear 2122 are fixed to the other shaft 43.
The end of the rotating shaft of the motor 22 extending out of the motor 22 is connected to the end of the shaft 43 near the first gear 2111.
A chain 23 is mounted on the first gear 2111 and the second gear 2112, and another chain 23 is mounted on the third gear 2121 and the fourth gear 2122.
Referring to fig. 4 and 5, the spatula structure 3 comprises a connecting frame 31 and a scraper 32, the connecting frame 31 is vertically arranged in the sedimentation tank 1, the upper part of the connecting frame 31 is installed between the two chains 23, and the lower part is welded with the scraper 32.
The connecting frame 31 comprises a fixing plate 311 and two telescopic pipes 312, the fixing plate 311 is mounted on the two chains 23, wherein the fixing plate 311 is not shown in the figure, and can be fixedly mounted by bolts or the like. The telescopic tube 312 comprises a telescopic rod 3121 and sleeves 3122, the two sleeves 3122 are both provided with a long sliding hole 3123, the lower end of the long sliding hole 3123 penetrates through the sleeves 3122, the two long sliding holes 3123 are oppositely arranged, a sliding rod 3124 with two ends penetrating into the two long sliding holes 3123 is arranged between the two long sliding holes 3123, one end of the telescopic rod 3121 is arranged in the sleeve 3122, and one end of the two telescopic rods 3121 arranged in the sleeves 3122 is respectively connected with two ends of the sliding rod 3124.
One end of the sleeve 3122 far away from the telescopic rod 3121 is fixedly installed on one side of the fixing plate 311 facing the bottom of the sedimentation tank 1, and one end of the telescopic rod 3121 far away from the sleeve 3122 is welded with the scraper 32.
An air cylinder 51 is mounted on the fixed plate 311, a through hole 3111 is formed in the center of the fixed plate 311, and a piston rod 52 of the air cylinder 51 penetrates through the through hole 3111 and is welded with the sliding rod 3124.
Referring to fig. 6, two side surfaces of the scraper plate 32 and the sedimentation tank 1 are respectively provided with a shovel plate 321, the shovel plate 321 is L-shaped, one end of the shovel plate 321, which is connected with the scraper plate 32, is provided with a plurality of mounting holes 322, the mounting holes 322 are correspondingly arranged, the mounting holes 322 can be penetrated by long screws 324, and one end of the long screws 324 is provided with nuts 325, so that the two shovel plates 321 are fixed on the scraper plate 32.
The end of blade 321 distal from connecting scraper 32 is tapered.
A baffle 323 is vertically disposed on each side of blade 321.
The working principle is as follows:
the sedimentation tank 1 is empty of water, when sediment needs to be scraped, the air cylinder 51 pushes the sliding rod 3124, the telescopic rod 3121 connected with the sliding rod 3124 moves on the long sliding hole 3123 on the sleeve 3122, the movement of the telescopic rod 3121 makes the scraping plate 32 touch with the bottom of the sedimentation tank 1, the motor 22 is started, the motor 22 drives the gear set 21 to rotate, two chains 23 on the two gear sets 21 synchronously rotate, the chains 23 drive the connecting frame 31 to move, the connecting piece drives the scraping plate 32 to move, the scraping plate 321 on the scraping plate 32 scrapes the sediment on the scraping plate 321, the motor 22 stops moving, the air cylinder 51 pulls up the connecting frame 31 and the scraping plate 32, and the sediment on the scraping plate 321 is cleaned.
It is above only the utility model discloses a preferred embodiment, the utility model discloses a scope of protection does not only confine above-mentioned embodiment, the all belongs to the utility model discloses a technical scheme under the thinking all belongs to the utility model discloses a scope of protection. It should be noted that, for those skilled in the art, various modifications and decorations can be made without departing from the principle of the present invention, and these modifications and decorations should also be regarded as the protection scope of the present invention.

Claims (8)

1. A concrete muddy water treatment device comprises a sedimentation tank (1) and is characterized in that, a driving structure (2) and a scraping structure (3) are arranged in the sedimentation tank (1), the driving structure (2) comprises a gear set (21), a motor (22) and a chain (23), the gear set (21) comprises a first gear set (211) and a second gear set (212), the first gear set (211) and the second gear set (212) are arranged on two opposite sides of the sedimentation tank (1), the first gear set (211) comprises a first gear (2111) and a second gear (2112), the second gear set (212) comprises a third gear (2121) and a fourth gear (2122), the first gear (2111) is connected to the third gear (2121), and the first gear (2111) is connected to the motor (22), the first gear set (211) and the second gear set (212) are respectively provided with a chain (23);
scraper structure (3) include link (31) and scraper blade (32), link (31) vertical set up in sedimentation tank (1), the upper portion of link (31) is installed two between chain (23), the lower part is installed scraper blade (32).
2. A concrete mud water treatment device according to claim 1, wherein a fixing frame (4) is respectively arranged on two opposite sides of the sedimentation tank (1), the fixing frame (4) comprises two L-shaped plates (41), a bearing (42) and a shaft lever (43), one end of each of the two L-shaped plates (41) is arranged on the edge of the sedimentation tank (1), the other end of each of the two L-shaped plates is vertically arranged on the edge of the sedimentation tank (1), the vertically arranged end faces of the two L-shaped plates (41) are oppositely arranged, the end faces of the two L-shaped plates (41) which are oppositely arranged are respectively provided with the bearing (42), the shaft lever (43) is connected with the bearing (42), the first gear (2111) and the third gear (2121) are fixed on the same shaft lever (43), the second gear (2112) and the fourth gear (2122) are fixed to the same shaft (43).
3. A concrete muddy water treatment device according to claim 1, wherein the connecting frame (31) comprises a fixed plate (311) and two telescopic pipes (312), the fixed plate (311) is mounted on the two chains (23), the telescopic pipes (312) comprise telescopic rods (3121) and sleeves (3122), the sleeves (3122) are mounted on the side of the fixed plate (311) facing the bottom of the sedimentation tank (1), one end of the telescopic rod (3121) is mounted in the end of the sleeve (3122) away from the fixed plate (311), the end of the telescopic rod (3121) away from the sleeve (3122) is connected with the scraper (32), the sleeves (3122) are both provided with long sliding holes (3123), the long sliding holes (3123) are oppositely arranged, a sliding rod (3124) is arranged on the long sliding holes (3123), and the two ends of the sliding rod (3124) respectively penetrate through the long sliding holes (3123) to enter the sleeves (3122) and the telescopic rod (3122) and the telescopic rods (3122) (3121) The lifting end of the stretching piece (5) is connected with the sliding rod (3124).
4. A concrete muddy water treatment apparatus according to claim 3, wherein said tension member (5) comprises an air cylinder (51), a through hole (3111) is formed at a central position of said fixed plate (311), and a piston rod (52) of said air cylinder (51) passes through said through hole (3111) to be connected with said slide bar (3124).
5. A concrete sludge water treatment apparatus according to claim 4 wherein a shovel plate (321) is provided on each of both sides of the scraper (32) and the sedimentation tank (1).
6. A concrete muddy water treatment apparatus as set forth in claim 5, wherein said blade (321) is tapered at an end thereof remote from the end connected to said blade (32).
7. The concrete muddy water treatment device according to claim 6, wherein the cross section of the shovel plate (321) is L-shaped, a plurality of mounting holes (322) are formed in the end surfaces of the two shovel plates (321) connected with the scraper (32), the shovel plate (321) and the mounting holes (322) in the scraper (32) are correspondingly arranged, long screws (324) and nuts (325) matched with the long screws (324) are arranged on the mounting holes (322), and the two shovel plates (321) are connected with the scraper (32).
8. A concrete muddy water treatment apparatus as defined in claim 7 wherein said blade (321) is provided at each of both side ends thereof with a baffle plate (323) vertically.
CN201921590425.7U 2019-09-23 2019-09-23 Concrete muddy water treatment device Active CN210645255U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921590425.7U CN210645255U (en) 2019-09-23 2019-09-23 Concrete muddy water treatment device

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Application Number Priority Date Filing Date Title
CN201921590425.7U CN210645255U (en) 2019-09-23 2019-09-23 Concrete muddy water treatment device

Publications (1)

Publication Number Publication Date
CN210645255U true CN210645255U (en) 2020-06-02

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111825185A (en) * 2020-07-29 2020-10-27 中煤第一建设有限公司 Method for treating slime water based on polyacrylamide
CN112354223A (en) * 2021-01-15 2021-02-12 山东锦绣山河环境工程有限公司 Environment-friendly self-adaptive adjustment type sedimentation tank mud scraper
CN113082795A (en) * 2021-05-12 2021-07-09 王国军 Environment-friendly sewage purification auxiliary assembly is used in building site construction

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111825185A (en) * 2020-07-29 2020-10-27 中煤第一建设有限公司 Method for treating slime water based on polyacrylamide
CN112354223A (en) * 2021-01-15 2021-02-12 山东锦绣山河环境工程有限公司 Environment-friendly self-adaptive adjustment type sedimentation tank mud scraper
CN113082795A (en) * 2021-05-12 2021-07-09 王国军 Environment-friendly sewage purification auxiliary assembly is used in building site construction

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