CN211770884U - Mud treatment facility for civil engineering - Google Patents

Mud treatment facility for civil engineering Download PDF

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Publication number
CN211770884U
CN211770884U CN202020110146.2U CN202020110146U CN211770884U CN 211770884 U CN211770884 U CN 211770884U CN 202020110146 U CN202020110146 U CN 202020110146U CN 211770884 U CN211770884 U CN 211770884U
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CN
China
Prior art keywords
motor
upper cover
stirring
civil engineering
slurry
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Expired - Fee Related
Application number
CN202020110146.2U
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Chinese (zh)
Inventor
马滢
韩珏
马倩倩
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Sichuan Zhongzheng Engineering Survey And Design Co ltd
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Sichuan Zhongzheng Engineering Survey And Design Co ltd
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Priority to CN202020110146.2U priority Critical patent/CN211770884U/en
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Publication of CN211770884U publication Critical patent/CN211770884U/en
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Abstract

The utility model relates to a mud treatment facility for civil engineering, including mount, rabbling mechanism, still include hoist mechanism, extrusion mechanism, the mount top is provided with extrusion mechanism, extrusion mechanism top is provided with rabbling mechanism, rabbling mechanism one side is provided with hoist mechanism. The utility model discloses the setting of hoist mechanism can be convenient take off the upper cover from the agitator tank, has made things convenient for the washing to this device, and the setting of extrusion mechanism has realized continuous in transmission process pressurizes mud for moisture in the mud is discharged from the wash port, has saved the process of heating and drying, and then has reduced the energy consumption.

Description

Mud treatment facility for civil engineering
Technical Field
The utility model relates to a civil engineering technical field especially relates to a mud treatment facility for civil engineering.
Background
The sludge is a necessary product after sewage treatment in sewage treatment plants and sewage stations, and after the sludge which is not treated well enters the environment, secondary pollution is directly brought to water and atmosphere, and serious threat is formed to ecological environment and human activities. Therefore, the sludge is very careful in terms of treatment, and the sludge produced in civil engineering works is also one of the sludge.
Chinese patent publication No. CN208776566U discloses a geotechnical engineering slurry treatment device, which comprises a support, wherein a conveying pipe is arranged on the top end of the support, a motor is arranged on one side of the conveying pipe, an output shaft of the motor penetrates through and extends into the conveying pipe and is connected with a conveying frame, a filtering bin is arranged outside the conveying pipe, a filter screen is arranged at the bottom end of the inner wall of the conveying pipe corresponding to the position of the filtering bin, a drying bin is arranged on the conveying pipe on the side surface of the filtering bin, an electric heating pipe is arranged inside the drying bin, an exhaust pipe is arranged on the conveying pipe on the side surface of the drying bin, an inlet pipe is arranged on one side top end of the conveying pipe, the geotechnical engineering slurry treatment device firstly filters slurry, then heats the slurry through the operation of the electric heating pipe, can dry the slurry, thereby facilitating the recovery and reuse, meanwhile, the waste of resources is avoided, but the device utilizes the electric heating pipe to dry the slurry, and the water content in the slurry is generally larger, so that the energy consumption is increased.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a mud treatment equipment for civil engineering in order to solve above-mentioned problem.
The utility model discloses a following technical scheme realizes above-mentioned purpose:
the utility model provides a mud treatment facility for civil engineering, includes mount, rabbling mechanism, still includes hoist mechanism, extrusion mechanism, the mount top is provided with extrusion mechanism, extrusion mechanism top is provided with rabbling mechanism, rabbling mechanism one side is provided with hoist mechanism.
Preferably, the lifting mechanism comprises a mounting frame, a sliding rail, an electric slider and a lifting support, the mounting frame is welded above the mounting frame, the sliding rail is connected to one side of the mounting frame through a bolt, the sliding rail is connected to the electric slider in a sliding mode, one side of the electric slider is connected to the lifting support through a screw, and the stirring mechanism is connected to the lower portion of the lifting support.
Preferably, the lifting mechanism comprises an N-shaped frame and an air cylinder, the N-shaped frame is welded above the fixing frame, the air cylinder is connected above the N-shaped frame through a bolt, and the moving end of the air cylinder penetrates through the top of the N-shaped frame and is connected with the stirring mechanism.
Preferably, state extrusion mechanism and promote auger, connecting plate, wash port, arc board that catchments, drain pipe including a propelling movement section of thick bamboo, second motor, pressure boost, a propelling movement section of thick bamboo passes through bolted connection and is in the mount top, a propelling movement section of thick bamboo one side has through bolted connection the second motor, the output of second motor has through the key-type connection the pressure boost promotes the auger, the pressure boost promotes the one end of keeping away from the second motor on the auger and is connected with through the bearing the connecting plate, the connecting plate passes through bolt fixed connection and is in on the propelling movement section of thick bamboo, the propelling movement bobbin base has been seted up the wash port, welding below the propelling movement section of thick bamboo has the arc board that catchments, the welding of arc board one side of catchmenting has the drain pipe, a.
Preferably, the diameter of one end of the pushing cylinder is larger than that of the other end of the pushing cylinder.
Preferably, rabbling mechanism includes agitator tank, upper cover, first motor, agitator frame, booster pump, solvent case, mud extraction pump, mud conveyer pipe, the agitator tank welding is in the propelling movement section of thick bamboo top, agitator tank top lock has the upper cover, it has through bolted connection to cover the top first motor, the welding of first motor lower extreme has the agitator frame, it is provided with at first motor rear to cover on, the booster pump with the solvent case, the solvent case passes through the screw connection and is in booster pump one side, cover on and be connected with in first motor the place ahead mud conveyer pipe, be equipped with on the mud conveyer pipe the mud extraction pump, the mud conveyer pipe with the upper cover passes through the larynx hoop and connects, the booster pump with the solvent case with the upper cover passes through the screw connection.
Preferably, a flange is arranged below the upper cover and is positioned on the inner side of the top of the stirring box.
Has the advantages that: the upper cover can be conveniently taken down from the stirring box by the aid of the lifting mechanism, cleaning of the device is facilitated, and the arrangement of the extrusion forming mechanism realizes continuous pressurization of slurry in a transmission process, so that moisture in the slurry is discharged from the drain hole, heating and drying processes are omitted, and energy consumption is reduced.
Additional features and advantages of the invention will be set forth in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention.
Drawings
Fig. 1 is a schematic structural view of a first embodiment of a slurry treatment apparatus for civil engineering work according to the present invention;
fig. 2 is a plan view of a first embodiment of a slurry treatment apparatus for civil engineering work according to the present invention;
fig. 3 is a sectional view a-a of a first embodiment of a slurry treatment apparatus for civil engineering work according to the present invention;
fig. 4 is a schematic structural view of a second embodiment of a slurry treatment apparatus for civil engineering work of the present invention.
The reference numerals are explained below:
1. a fixed mount; 2. a lifting mechanism; 3. a stirring mechanism; 4. an extrusion molding mechanism; 201. a mounting frame; 202. a slide rail; 203. an electric slider; 204. lifting the support; 21. an N-shaped frame; 22. a cylinder; 301. a stirring box; 302. an upper cover; 303. a first motor; 304. a stirring frame; 305. a booster pump; 306. a solvent tank; 307. a slurry pump; 308. a slurry delivery pipe; 401. a push cylinder; 402. a second motor; 403. pressurizing and pushing the packing auger; 404. a connecting plate; 405. a drain hole; 406. a water collecting arc plate; 407. and a water discharge pipe.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Example 1
As shown in fig. 1, 2 and 3, a slurry treatment device for civil engineering comprises a fixed frame 1, a stirring mechanism 3, a lifting mechanism 2 and an extrusion forming mechanism 4, wherein the extrusion forming mechanism 4 is arranged above the fixed frame 1, the stirring mechanism 3 is arranged above the extrusion forming mechanism 4, the lifting mechanism 2 is arranged on one side of the stirring mechanism 3, the lifting mechanism 2 comprises a mounting frame 201, a slide rail 202, an electric slider 203 and a lifting support 204, the mounting frame 201 is welded above the fixed frame 1, the slide rail 202 is connected to one side of the mounting frame 201 through a bolt, the electric slider 203 is connected to the inner side of the slide rail 202 in a sliding manner, one side of the electric slider 203 is connected with the lifting support 204 through a bolt, the lower side of the lifting support 204 is fixedly connected with an upper cover 302 of the stirring mechanism 3, the lifting support 204 can be driven to ascend through the, so that the upper cover 302 is separated from the stirring box 301, which is convenient for cleaning the whole device, the extrusion forming mechanism 4 comprises a pushing cylinder 401, a second motor 402, a boosting pushing auger 403, a connecting plate 404, a water discharge hole 405, a water collecting arc plate 406 and a water discharge pipe 407, the pushing cylinder 401 is connected above the fixed frame 1 through a bolt, one side of the pushing cylinder 401 is connected with the second motor 402 through a bolt, the output end of the second motor 402 is connected with the boosting pushing auger 403 through a key, one end of the boosting pushing auger 403, which is far away from the second motor, is connected with the connecting plate 404 through a bearing, the connecting plate 404 is fixedly connected on the pushing cylinder 401 through a bolt, the water discharge hole 405 is arranged at the bottom of the pushing cylinder 401, the water collecting arc plate 406 is welded below the pushing cylinder 401, the water discharge pipe 407 is welded at one side of the water collecting arc plate 406, the stirring mechanism 3 is communicated above the pushing, the auger 403 is pushed by pressurization to have the function of pushing mud, and due to the arrangement of the structure of the pushing cylinder 401, mud is gradually extruded in the process of pushing mud, so that the water in the mud is extruded, the water in the mud can be discharged through the arrangement of the drain hole 405, and the diameter of one end of the pushing cylinder 401 is larger than that of the other end of the pushing cylinder.
The stirring mechanism 3 comprises a stirring box 301, an upper cover 302, a first motor 303, a stirring frame 304, a booster pump 305, a solvent box 306, a slurry extraction pump 307 and a slurry conveying pipe 308, wherein the stirring box 301 is welded above a pushing cylinder 401, the upper cover 302 is buckled above the stirring box 301, the first motor 303 is connected above the upper cover 302 through a bolt, the stirring frame 304 is welded at the lower end of the first motor 303, the booster pump 305 and the solvent box 306 are arranged on the upper cover 302 behind the first motor 303, the solvent box 306 is connected to one side of the booster pump 305 through a bolt, the slurry conveying pipe 308 is connected to the upper cover 302 in front of the first motor 303, the slurry extracting pump 307 is arranged on the slurry conveying pipe 308, the slurry conveying pipe 308 is connected with the upper cover 302 through a throat hoop, the booster pump 305 and the solvent box 306 are connected with the upper cover 302 through a bolt, so that the slurry can be extracted into the stirring box 301 through the slurry extraction pump 307, and the additive in the solvent box 306 is, in the process of mud whereabouts, drive agitator 304 through first motor 303 and rotate, realized the effect of agitator 304 stirring mud for mud and additive mix fully, upper cover 302 below is provided with the flange, and this flange is located agitator tank 301 top inboard, sets up like this and can make agitator tank 301 and upper cover 302 coaxial.
In the structure, when in use, the first motor 303, the booster pump 305 and the slurry extraction pump 307 are started, the slurry extraction pump 307 pumps slurry into the stirring tank 301, the booster pump 305 pumps additives in the solvent tank 306 into the stirring tank 301, meanwhile, the first motor 303 drives the stirring frame 304 to rotate, so that the stirring frame 304 has the function of stirring the slurry, the stirred slurry falls into the pushing cylinder 401, the second motor 402 is started, the second motor 402 drives the boosting pushing auger 403 to rotate, the boosting pushing auger 403 starts to push the slurry, the slurry is gradually extruded in the pushing process, moisture in the slurry flows out of the water discharge hole 405 and flows out of the device through the water collecting arc plate 406 and the water discharge pipe 407, the extruded slurry is formed into a slurry cake and is discharged out of the device from the other end of the pushing cylinder 401, after the treatment is finished, the electric slide block 203 is started, the electric slide block 203 drives the lifting support 204 to ascend, the lifting bracket 204 drives the upper cover 302 to ascend, so that the upper cover 302, the first motor 303 and the stirring frame 304 are lifted, and the device can be conveniently cleaned.
Example 2
As shown in fig. 4, embodiment 2 differs from embodiment 1 in that: lifting mechanism 2 includes N type frame 21, cylinder 22, and the welding of N type frame 21 is in 1 top of mount, and there is cylinder 22N type frame 21 top through bolted connection, and the removal end of cylinder 22 passes N type frame 21 top and connects rabbling mechanism 3, sets up like this and to drive upper cover 302 through cylinder 22 and rise, has realized that upper cover 302 breaks away from agitator tank 301, has made things convenient for and has washd whole device.
In the structure, when the device is used, the first motor 303, the booster pump 305 and the slurry extraction pump 307 are started firstly, the slurry extraction pump 307 pumps slurry into the stirring tank 301, the booster pump 305 pumps additives in the solvent tank 306 into the stirring tank 301, meanwhile, the first motor 303 drives the stirring frame 304 to rotate, so that the stirring frame 304 has the function of stirring the slurry, the stirred slurry falls into the pushing cylinder 401, the second motor 402 is started, the second motor 402 drives the pressurizing pushing auger 403 to rotate, the pressurizing pushing auger 403 starts to push the slurry, the slurry is gradually squeezed in the pushing process, moisture in the slurry flows out of the water discharging hole 405 and flows out of the device through the water collecting arc plate 406 and the water discharging pipe 407, the squeezed slurry is formed into a slurry cake, the slurry cake is discharged out of the device from the other end of the pushing cylinder 401, after the treatment is finished, the air cylinder 22 is started, the air cylinder 22 drives the upper cover 302 to ascend, so that the upper cover 302 and the first motor 303, The agitator frame 304 is raised, at which point the apparatus may be conveniently cleaned.

Claims (7)

1. The utility model provides a mud treatment facility for civil engineering, includes mount (1), rabbling mechanism (3), its characterized in that: still include hoist mechanism (2), extrusion mechanism (4), mount (1) top is provided with extrusion mechanism (4), extrusion mechanism (4) top is provided with rabbling mechanism (3), rabbling mechanism (3) one side is provided with hoist mechanism (2).
2. The mud treatment apparatus for civil engineering work of claim 1, wherein: lifting mechanism (2) are including mounting bracket (201), slide rail (202), electronic slider (203), promotion support (204), mounting bracket (201) welding is in mount (1) top, slide rail (202) are in through bolted connection mounting bracket (201) one side, the inboard sliding connection of slide rail (202) has electronic slider (203), there is through bolted connection electronic slider (203) one side promote support (204), it connects to promote support (204) below rabbling mechanism (3).
3. The mud treatment apparatus for civil engineering work of claim 1, wherein: hoist mechanism (2) include N type frame (21), cylinder (22), N type frame (21) welding is in mount (1) top, there is cylinder (22) N type frame (21) top through bolted connection, the removal end of cylinder (22) passes N type frame (21) top and connection rabbling mechanism (3).
4. The mud treatment apparatus for civil engineering work of claim 1, wherein: the extrusion forming mechanism (4) comprises a pushing cylinder (401), a second motor (402), a pressurizing pushing auger (403), a connecting plate (404), a drain hole (405), a water collecting arc plate (406) and a drain pipe (407), wherein the pushing cylinder (401) is connected above the fixing frame (1) through a bolt, one side of the pushing cylinder (401) is connected with the second motor (402) through a bolt, the output end of the second motor (402) is connected with the pressurizing pushing auger (403) through a key, one end, far away from the second motor, of the pressurizing pushing auger (403) is connected with the connecting plate (404) through a bearing, the connecting plate (404) is fixedly connected on the pushing cylinder (401) through a bolt, the drain hole (405) is formed in the bottom of the pushing cylinder (401), and the water collecting arc plate (406) is welded below the pushing cylinder (401), the water draining pipe (407) is welded on one side of the water collecting arc plate (406), and the stirring mechanism (3) is communicated with the upper portion of the pushing cylinder (401).
5. The mud treatment apparatus for civil engineering work of claim 4, wherein: the diameter of one end of the pushing cylinder (401) is larger than that of the other end of the pushing cylinder.
6. The mud treatment apparatus for civil engineering work of claim 4, wherein: the stirring mechanism (3) comprises a stirring box (301), an upper cover (302), a first motor (303), a stirring frame (304), a booster pump (305), a solvent box (306), a slurry extraction pump (307) and a slurry conveying pipe (308), wherein the stirring box (301) is welded above the pushing cylinder (401), the upper cover (302) is buckled above the stirring box (301), the first motor (303) is connected above the upper cover (302) through a bolt, the stirring frame (304) is welded at the lower end of the first motor (303), the booster pump (305) and the solvent box (306) are arranged behind the first motor (303) on the upper cover, the solvent box (306) is connected on one side of the booster pump (305) through a bolt, the slurry conveying pipe (308) is connected in front of the first motor (303) on the upper cover, and the slurry extraction pump (307) is arranged on the slurry conveying pipe (308), the slurry delivery pipe (308) is connected with the upper cover (302) through a hose clamp, and the booster pump (305) and the solvent tank (306) are connected with the upper cover (302) through screws.
7. The mud treatment apparatus for civil engineering work of claim 6, wherein: and a flange is arranged below the upper cover (302) and is positioned on the inner side of the top of the stirring tank (301).
CN202020110146.2U 2020-01-18 2020-01-18 Mud treatment facility for civil engineering Expired - Fee Related CN211770884U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020110146.2U CN211770884U (en) 2020-01-18 2020-01-18 Mud treatment facility for civil engineering

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020110146.2U CN211770884U (en) 2020-01-18 2020-01-18 Mud treatment facility for civil engineering

Publications (1)

Publication Number Publication Date
CN211770884U true CN211770884U (en) 2020-10-27

Family

ID=72893922

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020110146.2U Expired - Fee Related CN211770884U (en) 2020-01-18 2020-01-18 Mud treatment facility for civil engineering

Country Status (1)

Country Link
CN (1) CN211770884U (en)

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GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20201027

Termination date: 20220118

CF01 Termination of patent right due to non-payment of annual fee