CN209333950U - The second-order separation mud desanding cleaning equipment - Google Patents
The second-order separation mud desanding cleaning equipment Download PDFInfo
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- CN209333950U CN209333950U CN201822116113.4U CN201822116113U CN209333950U CN 209333950 U CN209333950 U CN 209333950U CN 201822116113 U CN201822116113 U CN 201822116113U CN 209333950 U CN209333950 U CN 209333950U
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Abstract
The utility model provides a kind of the second-order separation mud desanding cleaning equipment, including rack, level-one feeding inlet, vibrating screen, pulp storage tank, level-one Pulp pump, second level Pulp pump, middle storage tank are installed in the rack, the pulp storage tank is located at the lower section of the vibrating screen;The level-one Pulp pump is connected with pulp storage tank, level-one cyclone;The underflow opening of the level-one cyclone is located at two top of screen layers, and overflow port is connected with middle storage tank;The second level Pulp pump is connected with pulp storage tank, second cyclone;The underflow opening of the second cyclone is located at three top of screen layers, and overflow port is connected with middle storage tank.Using the utility model, the cyclone of different size can be carried out for slurry using various forms of Pulp pumps, different specification screen layers can also be used to screen mud.The treatment effeciency of mud is not only increased, different mud cycle-indexes, finer purification mud can also be carried out according to different requirements.
Description
Technical field
The utility model relates to field of mechanical technique, and in particular to the second-order separation mud desanding cleaning equipment.
Background technique
As the requirement of the foundation constructions such as bridge, subway is higher and higher, in opposite bored pile construction, to concrete
Sand content in mud before perfusion is required also with continuous improvement.The quality of concrete is directly affected in the construction very of engineering
Quality after building up, but existing sand removing machine low efficiency and desanding effect are unable to satisfy existing construction requirement.Therefore, one is needed
The good equipment of kind desanding efficiency meets the needs of modern project.
Utility model content
Purpose of the utility model is to solve the deficiencies in the prior art, provide the second-order separation mud desanding purification and set
It is standby.
The purpose of this utility model is achieved through the following technical solutions:
A kind of the second-order separation mud desanding cleaning equipment, including rack are equipped with level-one feeding inlet, vibration in the rack
Dynamic sieve, pulp storage tank, level-one Pulp pump, second level Pulp pump, middle storage tank, level-one cyclone group, second cyclone group, the level-one rotation
Flowing device group includes at least one level-one cyclone, and the second cyclone group includes at least one second cyclone;The vibration
Sieve includes screen layers one, screen layers two, screen layers three, pressure baffle;The outlet of the level-one feeding inlet is located at one top of screen layers, the storage slurry
Pond is located at the lower section of the vibrating screen;
The level-one Pulp pump is connected by level-one suction inlet pipeline with pulp storage tank, and the level-one Pulp pump is gone out by level-one
Mouth pipeline is connected with level-one cyclone;The underflow opening of the level-one cyclone is located at two top of screen layers, overflow port and middle storage tank
It is connected;
The second level Pulp pump is connected with pulp storage tank, and the second level Pulp pump passes through secondary exit port pipeline and second level eddy flow
Device is connected;The underflow opening of the second cyclone is located at three top of screen layers, and overflow port is connected with middle storage tank.
Further, the screen layers one, screen layers two are disposed in parallel in three lower section of screen layers, and the screen layers one and screen layers two pass through altogether
It is opened with one group of pressure barrier partitions.
Further, the screen layers one are equipped with back sieve plate close to level-one feeding inlet side, and screen layers two are close to level-one cyclone bottom
Head piece side is equipped with blind plate.
Further, it is provided with wire hole below the pressure baffle, is compressed the sieve plate of screen layers one, screen layers two by bolt, and match
It closes two lateral layering of sieve plate screen layers one, screen layers two are fixed on vibrating screen box.
Further, last row pipe is equipped on the middle storage tank, therefrom storage tank bottom end is extend into middle storage tank for last row pipe one end,
Last row pipe is located at the port of one end in middle storage tank close to middle storage tank lower end.
Further, overflow pipe is equipped on the pulp storage tank, the overflow pipe is deep into storage slurry from pulp storage tank bottom
In pond, overflow pipe is located at the port of one end in pulp storage tank close to the upper end of pulp storage tank.
Further, it is equipped with fluid infusion in the junction of the middle storage tank and pulp storage tank, the middle storage tank and pulp storage tank pass through
Fluid infusion is connected.
Further, liquid level buoyancy tank is installed below the fluid infusion.
Further, for the vibrating screen using vibrating motor as power source, the vibrating motor is mounted on the upper of vibrating screen
Side.
In conclusion by adopting the above-described technical solution, the utility model compared with prior art, has the advantage that
Using the utility model, the cyclone of different size can be carried out for slurry, also using various forms of Pulp pumps
Different specification screen layers can be used to screen mud.The treatment effeciency of mud is not only increased, it can also be according to difference
It is required that carrying out different mud cycle-indexes, finer purification mud.
Detailed description of the invention
Fig. 1 is the front structure schematic diagram of the utility model;
Fig. 2 is structural schematic diagram behind the utility model;
Fig. 3 is the setting schematic diagram of the utility model liquid level buoyancy tank and fluid infusion;
Fig. 4 is the setting schematic diagram of the utility model pressure baffle and press strip;
Fig. 5 is the setting schematic diagram of the utility model back sieve plate and blind plate;
Fig. 6 is the structural schematic diagram of the utility model pressure baffle.
Mark explanation: 1, level-one feeding inlet;2, vibrating screen;3, screen layers one;4, vibrating motor;5, pulp storage tank;6, level-one slag
Stock pump;7, level-one suction inlet pipeline;8, primary outlet pipeline;9, level-one cyclone;10, screen layers two;11, middle storage tank;12, second level slag
Stock pump;13, secondary exit port pipeline;14, second cyclone;15, screen layers three;16, last row pipe;17, overflow pipe;18, fluid infusion;
19, liquid level buoyancy tank;20, vibrating screen box;21, baffle is pressed;22, sieve plate is carried on the back;23, blind plate;24, press strip.
Specific embodiment
Specific embodiment of the present utility model is further described in detail with reference to the accompanying drawing.
Referring to Figure 1~6, the utility model provides a kind of the second-order separation mud desanding cleaning equipment, including rack,
Level-one feeding inlet 1, vibrating screen 2, pulp storage tank 5, level-one Pulp pump 6, second level Pulp pump 12, middle storage tank 11, one are installed in rack
Grade cyclone group, second cyclone group, level-one cyclone group includes at least one level-one cyclone 9, and second cyclone group includes
At least one second cyclone 14;Vibrating screen 2 includes screen layers 1, screen layers 2 10, screen layers 3 15.
Screen layers 1, screen layers 2 10 are disposed in parallel in 3 15 lower section of screen layers, and screen layers 1 and screen layers 2 10 are by sharing one group
Pressure baffle 21 separates.Screen layers 1 are equipped with back sieve plate 22 close to 1 side of level-one feeding inlet, and screen layers 2 10 are close to level-one cyclone 9
Underflow opening side is equipped with blind plate 23.It is provided with wire hole below pressure baffle 21, by bolt by screen layers 1, the sieve plate pressure of screen layers 2 10
Tightly, and cooperate two lateral layering 24 of sieve plate that screen layers 1, screen layers 2 10 are fixed on vibrating screen box 20.
Vibrating screen 2 is used as power source using vibrating motor 4, and vibrating motor 4 is mounted on vibrating screen box 20, and is located at vibration
The top of sieve.The outlet of level-one feeding inlet 1 is located at one 3 top of screen layers, and pulp storage tank 5 is located at the lower section of vibrating screen 2.
Waste mud to be processed enters in level-one feeding inlet 1, is transported in 2 screen layers 1 of vibrating screen through level-one feeding inlet 1,
Preferably, the aperture of screen layers 1 is 3mm;At this moment by two 4 straight-line oscillation of vibrating motor screenings, by the slag charge of bulky grain point
It separates out and, the mud elected through one 3 scalping of screen layers is fallen into pulp storage tank 5.
Pulp storage tank 5 is connected with level-one Pulp pump 6, second level Pulp pump 12 respectively, and the mud fallen into pulp storage tank 5 will be respectively
By twice pipeline.
Wherein one of pipeline include: level-one Pulp pump 6, level-one suction inlet pipeline 7, primary outlet pipeline 8, level-one cyclone 9,
Middle storage tank 11, level-one Pulp pump 6 are connected by level-one suction inlet pipeline 7 with pulp storage tank 5, and level-one Pulp pump 6 passes through primary outlet
Pipeline 8 is connected with level-one cyclone 9, and the underflow opening of 9 lower end of level-one cyclone is located at 2 10 top of screen layers, level-one cyclone 9
Overflow port be connected with middle storage tank 11.Level-one Pulp pump 6 sucks mud, mud by level-one suction inlet pipeline 7 out of pulp storage tank 5
From the tangential feeding inlet that the outlet of level-one Pulp pump 6 is transported to level-one cyclone 9 by primary outlet pipeline 8, pass through level-one
The sorting of cyclone 9, the slurries containing fine particle size are fallen in screen layers 2 10 by the underflow opening discharge of 9 lower end of level-one cyclone,
It later falls into pulp storage tank 5.Preferably, the aperture of screen layers 2 10 is 0.5mm.The overflow port in cyclone sieve of level-one cyclone 9
In the mud entrance that overflow goes out in storage tank 11.
Other one of pipeline includes: second level Pulp pump 12, secondary exit port pipeline 13, second cyclone 14, middle storage tank 11, and two
Grade Pulp pump 12 is connected with pulp storage tank 5, and second level Pulp pump 12 is connected by secondary exit port pipeline 13 with second cyclone 14,
The underflow opening of 14 lower end of second cyclone is located at 3 15 top of screen layers, and the overflow port of second cyclone 14 is connected with middle storage tank 11
It is logical.Second level Pulp pump 12 sucks mud out of pulp storage tank 5, and the mud of sucking is passed through secondary exit port from outlet by second level Pulp pump 12
Pipeline 13 is transported to the tangential feeding inlet of second cyclone 14, is sorted by second cyclone 14, contains the fine slurries of partial size
It is fallen in screen layers 3 15 by the underflow opening discharge of 14 lower end of second cyclone, then falls on screen layers 1, screen layers two from screen layers 3 15
On 10, finally fall into pulp storage tank 5.Preferably, screen layers 3 15 are 80 mesh layers.Second cyclone 14 is in cyclone sieve from excessive
In the mud entrance that head piece overflow goes out in storage tank 11.
The mud fallen into pulp storage tank 5 again from screen layers 2 10 or screen layers 3 15 participates in following for above-mentioned twice pipeline again
Ring.
Last row pipe 16 is equipped on middle storage tank 11, therefrom 11 bottom end of storage tank is extend into middle storage tank 11 16 one end of last row pipe.
Fig. 3 is referred to, is equipped with fluid infusion 18 in the junction of middle storage tank 11 and pulp storage tank 5, middle storage tank 11 and pulp storage tank 5 pass through fluid infusion
18 are connected;Liquid level buoyancy tank 19 is equipped with by attachment device in the lower section of fluid infusion 18, liquid level buoyancy tank 19 is located at pulp storage tank 5
It is interior.Liquid level buoyancy tank 19 is arranged in the frame of a cuboid, can float up and down with the liquid level of mud.
When mud in pulp storage tank 5 is less, liquid level buoyancy tank 19 fails to block fluid infusion 18, at this time storage tank 11 in inflow
Mud flows into pulp storage tank 5 from fluid infusion 18, is recycled again.As mud increases in pulp storage tank 5, liquid level buoyancy tank 19 to
Upper floating, when liquid level buoyancy tank 19 can block fluid infusion 18, the mud of level-one cyclone 9 or/and 14 overflow of second cyclone out
Slurry will be discharged by the last row pipe 16 of middle storage tank 11.
Overflow pipe 17 is equipped on pulp storage tank 5, overflow pipe 17 is deep into pulp storage tank 5 from 5 bottom of pulp storage tank, overflow
Pipeline 17 is located at the port of one end in pulp storage tank 5 close to the upper end of pulp storage tank.The feelings of fluid infusion 18 are blocked in liquid level buoyancy tank 19
Under condition, the mud in pulp storage tank 5 overflows pulp storage tank by overflow pipe 17.
Using the utility model, the cyclone of different size can be carried out for slurry, also using various forms of Pulp pumps
Different specification screen layers can be used to screen mud.The treatment effeciency of mud is not only increased, it can also be according to difference
It is required that carrying out different mud cycle-indexes, finer purification mud.
Embodiment described above is merely to illustrate the technical idea and feature of the utility model, and its object is to make ability
Technical staff in domain can understand the content of the utility model and implement accordingly, cannot be only practical to limit with the present embodiment
Novel the scope of the patents, i.e., it is all according to same changes or modifications made by the revealed spirit of the utility model, it still falls in practical
In novel the scope of the patents.
Claims (9)
1. a kind of the second-order separation mud desanding cleaning equipment, which is characterized in that including rack, be equipped with level-one in the rack
Feeding inlet, vibrating screen, pulp storage tank, level-one Pulp pump, second level Pulp pump, middle storage tank, level-one cyclone group, second cyclone group,
The level-one cyclone group includes at least one level-one cyclone, and the second cyclone group includes at least one second level eddy flow
Device;The vibrating screen includes screen layers one, screen layers two, screen layers three, pressure baffle;The outlet of the level-one feeding inlet is located in screen layers one
Side, the pulp storage tank are located at the lower section of the vibrating screen;
The level-one Pulp pump is connected by level-one suction inlet pipeline with pulp storage tank, and the level-one Pulp pump passes through primary outlet pipe
Road is connected with level-one cyclone;The underflow opening of the level-one cyclone is located at two top of screen layers, and overflow port is connected with middle storage tank
It is logical;
The second level Pulp pump is connected with pulp storage tank, and the second level Pulp pump passes through secondary exit port pipeline and second cyclone phase
Connection;The underflow opening of the second cyclone is located at three top of screen layers, and overflow port is connected with middle storage tank.
2. a kind of the second-order separation mud desanding cleaning equipment according to claim 1, which is characterized in that the screen layers one,
Screen layers two are disposed in parallel in three lower section of screen layers, and the screen layers one and screen layers two are opened by sharing one group of pressure barrier partitions.
3. a kind of the second-order separation mud desanding cleaning equipment according to claim 1, which is characterized in that the screen layers one are leaned on
Nearly level-one feeding inlet side is equipped with back sieve plate, and screen layers two are equipped with blind plate close to level-one cyclone underflow opening side.
4. a kind of the second-order separation mud desanding cleaning equipment according to claim 1, which is characterized in that under the pressure baffle
The sieve plate of screen layers one, screen layers two is compressed by bolt, and cooperates two lateral layering of sieve plate by screen layers one, screen layers by Fang Kaiyou wire hole
Two are fixed on vibrating screen box.
5. a kind of the second-order separation mud desanding cleaning equipment according to claim 1, which is characterized in that in the middle storage tank
It is equipped with last row pipe, therefrom storage tank bottom end is extend into middle storage tank for last row pipe one end.
6. a kind of the second-order separation mud desanding cleaning equipment according to claim 1, which is characterized in that in the pulp storage tank
It is equipped with overflow pipe, the overflow pipe is deep into pulp storage tank from pulp storage tank bottom, and overflow pipe is located in pulp storage tank
The port of one end is close to the upper end of pulp storage tank.
7. a kind of the second-order separation mud desanding cleaning equipment according to claim 1, which is characterized in that in the middle storage tank
It is equipped with fluid infusion with the junction of pulp storage tank, the middle storage tank is connected with pulp storage tank by fluid infusion.
8. a kind of the second-order separation mud desanding cleaning equipment according to claim 7, which is characterized in that in the fluid infusion
Lower section liquid level buoyancy tank is installed.
9. a kind of the second-order separation mud desanding cleaning equipment according to claim 1, which is characterized in that the vibrating screen is adopted
Use vibrating motor as power source, the vibrating motor is mounted on the top of vibrating screen.
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CN201822116113.4U CN209333950U (en) | 2018-12-17 | 2018-12-17 | The second-order separation mud desanding cleaning equipment |
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CN201822116113.4U CN209333950U (en) | 2018-12-17 | 2018-12-17 | The second-order separation mud desanding cleaning equipment |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111974085A (en) * | 2020-08-28 | 2020-11-24 | 徐州格雷安环保设备有限公司 | Be used for mud clarification plant |
CN114075935A (en) * | 2021-12-06 | 2022-02-22 | 廊坊市金来源环保科技有限公司 | Treatment equipment for high-sand-content super-viscous slurry |
CN117680276A (en) * | 2024-01-31 | 2024-03-12 | 福建南方路面机械股份有限公司 | Frame type efficient sand washing, dewatering and recycling system and control method |
-
2018
- 2018-12-17 CN CN201822116113.4U patent/CN209333950U/en active Active
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111974085A (en) * | 2020-08-28 | 2020-11-24 | 徐州格雷安环保设备有限公司 | Be used for mud clarification plant |
CN114075935A (en) * | 2021-12-06 | 2022-02-22 | 廊坊市金来源环保科技有限公司 | Treatment equipment for high-sand-content super-viscous slurry |
CN117680276A (en) * | 2024-01-31 | 2024-03-12 | 福建南方路面机械股份有限公司 | Frame type efficient sand washing, dewatering and recycling system and control method |
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