CN210252611U - Mechanism sand belt cleaning device - Google Patents
Mechanism sand belt cleaning device Download PDFInfo
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- CN210252611U CN210252611U CN201920722764.XU CN201920722764U CN210252611U CN 210252611 U CN210252611 U CN 210252611U CN 201920722764 U CN201920722764 U CN 201920722764U CN 210252611 U CN210252611 U CN 210252611U
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Abstract
A machine-made sand cleaning device, wherein the feed end of a vibrating screen is communicated with a crusher through a conveying belt, the discharge end of the vibrating screen is communicated with a cleaning screen, a water spray component is arranged above the cleaning screen, the discharge end of the vibrating screen is provided with a screen, the cleaning sieve is communicated with the discharge end and is of a net structure and at least comprises a bottom surface and two side walls, the bottom surface is obliquely arranged, a first vibrating motor is arranged outside the cleaning sieve and is used for vibrating the cleaning sieve, the water spraying component is arranged above the cleaning sieve, the water spraying component comprises a first water spraying pipeline and a second water spraying pipeline, the first water spraying pipeline is arranged in parallel with the bottom surface, a plurality of first water spraying ports are arranged below the first water spraying pipeline, the water is sprayed to the bottom surface, the second water spraying pipeline is perpendicular to the bottom surface, and the side wall of the second water spraying pipeline is provided with second water spraying ports for spraying water to the two side walls. The utility model provides a mechanism sand belt cleaning device washs and the drainage from a plurality of directions, and the cleaning performance is showing.
Description
Technical Field
The utility model belongs to the technical field of the mechanism grit washs, concretely relates to mechanism sand belt cleaning device.
Background
The sandstone aggregate is an indispensable basic material for infrastructure engineering construction in China, the dosage of 2016 is as high as 180 hundred million tons, the annual output value is close to 1 trillion yuan, the transportation industry is driven to exceed 2 billions, and along with the vigorous promotion of policy routes depending on infrastructure construction, such as 'one-by-one' and the like, the market demand and development space of the sandstone aggregate are huge. In the production process of machine-made sand, a large amount of dust can be generated and attached to the surfaces of particles to influence the quality of the machine-made sand, so that methods such as water pipe flushing are mostly adopted in actual production, the flushing effect is poor, and the water consumption is large.
Disclosure of Invention
In order to overcome the not enough of above-mentioned prior art, the utility model aims at providing a mechanism sand belt cleaning device solves among the prior art mechanism grit and washs the technical problem that the washing effect is poor, the water consumption is big.
In order to realize the purpose, the utility model discloses a technical scheme is:
a machine-made sand cleaning device comprises a vibrating screen, a cleaning screen and a water spraying assembly, wherein the feeding end of the vibrating screen is communicated with a crusher through a conveying belt, the discharging end of the vibrating screen is communicated with the cleaning screen, and the water spraying assembly is arranged above the cleaning screen;
a screen is arranged at the discharge end of the vibrating screen; a second vibrating motor is arranged on the outer side of the vibrating screen and used for vibrating the vibrating screen;
the cleaning sieve is of a net-shaped structure and at least comprises a bottom surface and two side walls, the bottom surface is obliquely arranged, and a first vibrating motor is arranged on the outer side of the cleaning sieve and used for vibrating the cleaning sieve;
the water spraying assembly comprises a first water spraying pipeline and a second water spraying pipeline, the first water spraying pipeline is parallel to the bottom surface, a plurality of first water spraying ports are arranged below the first water spraying pipeline and used for spraying water to the bottom surface, the second water spraying pipeline is perpendicular to the bottom surface, and the side wall of the second water spraying pipeline is provided with second water spraying ports used for spraying water to two side walls.
The second water spraying pipes are arranged in two groups and are respectively communicated with two ends of the first water spraying pipe, and the second water spraying ports are oppositely arranged.
The second water spraying pipes at the two ends are arranged in a staggered mode.
The second water spraying pipes are arranged in a group and communicated with the centers of the first water spraying pipes, and the second water spraying ports are arranged on two sides of the second water spraying pipes.
The first water spraying pipeline comprises a transverse pipeline and a longitudinal pipeline, the transverse pipeline and the longitudinal pipeline form a communicated grid shape, and a water inlet is formed in one of the transverse pipeline and the longitudinal pipeline.
The utility model has the advantages that:
the utility model provides a mechanism sand belt cleaning device is through setting up netted washing sieve, and the washing sieve includes bottom surface and both sides wall, and the water spray subassembly sprays water to the bottom surface through first spray pipe, sprays water to the lateral wall through the second spray pipe, washs from a plurality of directions, and the cleaning performance is showing.
Secondly, the bottom surface slope of cleaning screen sets up, and is provided with first vibrating motor, lets the mechanism grit on the cleaning screen take place to beat through first vibrating motor for wash more abundant.
Finally, the bottom surface and the two side walls of the cleaning sieve are both of a net structure, dust and impurities washed by the second water spraying pipeline can be directly removed from the side walls, the impurities are prevented from being accumulated at the bottom, the cleaning effect is more obvious, and the blockage is not easy to occur.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present invention;
fig. 2 is a bottom view of a first water spraying pipe according to an embodiment of the present invention;
fig. 3 is a front view of a water spray assembly in a first preferred embodiment of the present invention;
fig. 4 is a front view of a water spray assembly in a second preferred embodiment of the present invention;
fig. 5 is an axial view of a water spray assembly in a first preferred embodiment of the present invention;
fig. 6 is an axial view of a water spray assembly in a second preferred embodiment of the present invention;
wherein, 1 is a vibrating screen; 11 is a discharge end; 2, a cleaning sieve; 21 is a bottom surface; 22 are two side walls; 3 is a water spraying component; 31a is a transverse duct; 31b is a longitudinal duct; 31 is a first water spraying pipe; 311 is a first water jet; 312 is a water inlet; 32 is a second water spraying pipeline; 321 is a second water jet; 4 is a crusher; and 5 is a conveying belt.
Detailed Description
The present invention will be further described with reference to the accompanying drawings.
As shown in fig. 1 to 6, a machine-made sand cleaning device comprises a vibrating screen 1, a cleaning screen 2 and a water spraying assembly 3, wherein a discharge end 11 of the vibrating screen 1 is provided with a screen for screening machine-made sand, the cleaning screen 2 is communicated with the discharge end 11, the cleaning screen 2 is of a net structure and at least comprises a bottom surface 21 and two side walls 22, the bottom surface 21 is obliquely arranged, a first vibrating motor is arranged outside the cleaning screen 2 and is used for vibrating the cleaning screen 2, so that the machine-made sand on the cleaning screen 2 is in a jumping state, the cleaning effect of the machine-made sand in a suspended state is more remarkable, the water spraying assembly 3 is arranged above the cleaning screen 2, the water spraying assembly 3 comprises a first water spraying pipeline 31 and a second water spraying pipeline 32, the first water spraying pipeline 31 is arranged parallel to the bottom surface 21, a plurality of first water spraying nozzles 311 are arranged below the first water spraying pipeline 31 for spraying water to the bottom, the second water spraying pipe 32 is disposed perpendicular to the bottom surface 21, and the side wall of the second water spraying pipe 32 is provided with second water spraying holes 321 for spraying water to the two side walls 22. Compared with the prior art, the embodiment of the utility model provides a mechanism sand belt cleaning device is through setting up netted washing sieve 2, and washing sieve 2 includes bottom surface 21 and both sides wall 22, and water spray component 3 sprays water to the bottom surface through first spray pipe 31, sprays water to side wall 22 through second spray pipe 32, washs from a plurality of directions, and the cleaning performance is showing.
As a preferred embodiment, 1 outside of shale shaker is provided with second vibrating motor, and second vibrating motor is used for shale shaker 1 for the screening is faster, simultaneously, during the vibration, can effectively avoid great mechanism grit to block up the screen cloth.
In this embodiment, the first water spraying pipe 31 includes a transverse pipe 31a and a longitudinal pipe 31b, the transverse pipe 31a and the longitudinal pipe 31b form a connected grid, wherein a water inlet 312 is provided on one of the transverse pipe 31a and the longitudinal pipe 31b, and high-pressure water enters the first water spraying pipe 31 and the second water spraying pipe 32 from the water inlet 312.
In this embodiment, two sets of the second water spraying pipes 32 are provided, and are respectively communicated with two ends of the first water spraying pipe 31, and the second water spraying ports 321 are oppositely arranged. In specific implementation, as shown in fig. 5, the second water spraying pipes 32 are disposed inside the cleaning screen 2, when the machine-made sand is transported from the cleaning screen 2, the first water spraying pipes 31 spray water from above, and the second water spraying pipes 32 on both sides spray water from both sides simultaneously.
In actual cleaning, the cleaned sewage is often accumulated on the bottom side of the cleaning screen 2, and a small amount of sewage still flows to a subsequent process along with machine-made sand and stones, so that insufficient cleaning is realized.
As a preferred embodiment, in order to further improve the washing efficiency and save water resources, the second water spraying pipes 32 are arranged in a group and communicated with the center of the first water spraying pipe 31, the second water spraying ports 321 are arranged at two sides of the second water spraying pipes 32, that is, both the left and right sides of the second water spraying pipes 32 can spray water, as shown in fig. 4, in specific implementation, a splitter plate can be arranged at the junction of the vibrating screen 1 and the cleaning screen 2 to allow machine-made sand and stones to roll down from both sides of the second water spraying ports 321, the second water spraying pipes 32 spray water from both sides of the middle phase, and when cleaning, sewage is impacted and discharged to both sides, so as to avoid accumulation of sewage at the bottom.
In this embodiment, the screening machine further comprises a crusher 4 and a conveyor belt 5, wherein the crusher 4 is used for crushing machine-made sand, the conveyor belt 5 is used for conveying the machine-made sand after crushing into the vibrating screen 1, and after the vibrating screen 1 is screened, the large machine-made sand which cannot pass through the screen is conveyed into the crusher 4 through another conveyor belt 5 to be continuously crushed, so as to form a circulation.
Claims (5)
1. A machine-made sand cleaning device comprises a vibrating screen (1), a cleaning screen (2) and a water spraying assembly (3), and is characterized in that the feeding end of the vibrating screen (1) is communicated with a crusher (4) through a conveying belt (5), the discharging end (11) of the vibrating screen (1) is communicated with the cleaning screen (2), and the water spraying assembly (3) is arranged above the cleaning screen (2);
a screen is arranged at the discharge end (11) of the vibrating screen (1); a second vibrating motor is arranged on the outer side of the vibrating screen (1) and used for vibrating the vibrating screen (1);
the cleaning sieve (2) is of a net-shaped structure and at least comprises a bottom surface (21) and two side walls (22), the bottom surface (21) is obliquely arranged, and a first vibration motor is arranged on the outer side of the cleaning sieve (2) and used for vibrating the cleaning sieve (2);
the water spraying component (3) comprises a first water spraying pipeline (31) and a second water spraying pipeline (32), the first water spraying pipeline (31) is parallel to the bottom surface (21) in arrangement, a plurality of first water spraying ports (311) are arranged below the first water spraying pipeline (31) and spray water on the bottom surface (21), the second water spraying pipeline (32) is perpendicular to the bottom surface (21) in arrangement, and the side wall of the second water spraying pipeline (32) is provided with a second water spraying port (321) for spraying water on the side wall (22).
2. A machine-made sand washing device according to claim 1, wherein said second water injection pipes (32) are provided in two sets, respectively communicating with both ends of said first water injection pipe (31), and said second water injection ports (321) are provided oppositely.
3. A machine-made sand washing device according to claim 2, characterised in that the second water injection pipes (32) at both ends are arranged offset.
4. The machine-made sand washing device as claimed in claim 1, wherein said second water injection pipes (32) are arranged in a group to communicate with the center of said first water injection pipe (31), and said second water injection ports (321) are arranged on both sides of said second water injection pipes (32).
5. A machine-made sand washing device according to claim 2, characterized in that said first water-jet pipe (31) comprises a transverse pipe (31 a) and a longitudinal pipe (31 b), said transverse pipe (31 a) and said longitudinal pipe (31 b) forming a communicating grid, wherein one of said transverse pipe (31 a) or said longitudinal pipe (31 b) is provided with a water inlet (312).
Priority Applications (1)
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CN201920722764.XU CN210252611U (en) | 2019-05-20 | 2019-05-20 | Mechanism sand belt cleaning device |
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CN201920722764.XU CN210252611U (en) | 2019-05-20 | 2019-05-20 | Mechanism sand belt cleaning device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110302879A (en) * | 2019-05-20 | 2019-10-08 | 中铁十二局集团有限公司 | A kind of mechanism sandstone high-efficiency water-saving cleaning process units |
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2019
- 2019-05-20 CN CN201920722764.XU patent/CN210252611U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110302879A (en) * | 2019-05-20 | 2019-10-08 | 中铁十二局集团有限公司 | A kind of mechanism sandstone high-efficiency water-saving cleaning process units |
CN110302879B (en) * | 2019-05-20 | 2023-10-10 | 中铁十二局集团有限公司 | High-efficient water conservation of mechanism grit washs apparatus for producing |
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