CN212998581U - Concentrate recovery device - Google Patents
Concentrate recovery device Download PDFInfo
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- CN212998581U CN212998581U CN202020992888.2U CN202020992888U CN212998581U CN 212998581 U CN212998581 U CN 212998581U CN 202020992888 U CN202020992888 U CN 202020992888U CN 212998581 U CN212998581 U CN 212998581U
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Abstract
The utility model relates to a concentrate recovery unit belongs to the environmental protection equipment field. The utility model discloses a concentrate recovery device, which comprises a washing bin and a recovery bin which are adjacent; the top wall of the washing bin is provided with at least three cylinders along the central axis, output shafts of the cylinders are connected with a top water spraying mechanism, the side walls of the washing bin are respectively provided with a plurality of parallel side water spraying mechanisms which are opposite in position, the bottom wall of the washing bin is provided with a groove along the central axis, a bottom water spraying mechanism is arranged in the groove, the bottom wall of the washing bin is provided with a plurality of water seepage holes, a collecting bin is arranged below the washing bin, and a collecting tank is arranged in the liquid collecting bin; a recovery mechanism is arranged in the recovery bin, a power bin is arranged below the recovery bin, and an impurity pump is placed in the power bin; the water inlet of the impurity pump penetrates through the side wall of the collecting bin through a water pumping pipe to be connected with the collecting tank, and the water outlet of the impurity pump penetrates through the bottom wall of the collecting bin through a recovery pipe to be connected with the feed inlet of the recovery mechanism. The utility model discloses reduce the human cost, reduce the wasting of resources, improve the concentrate rate of recovery.
Description
Technical Field
The utility model belongs to the environmental protection equipment field, specific theory relates to a concentrate recovery unit.
Background
At present, concentrate such as lead, zinc, copper, tin and the like for smelting is drawn from a concentrating mill to a concentrate bin of the smelting plant, and as the concentrate contains water, car hoppers, wheels and car bodies all have the concentrate. No matter in order to recover the concentrate, the cost is saved, and the environment-friendly requirement is met, the transport vehicle needs to be cleaned, and the requirements of environment protection and valuable metal recovery are met. At present, manual flushing is mostly adopted, and the following defects exist: (1) the labor intensity is high, the automation degree is low, and car washing personnel need to be increased. (2) The recovery rate of the residual concentrate on the transport vehicle is low, and great resource waste is generated. (3) Dead corners such as the bottom and the hopper are difficult to clean.
SUMMERY OF THE UTILITY MODEL
In order to overcome the problem that exists among the background art, the utility model provides a concentrate recovery unit reduces the human cost, reduces the wasting of resources, improves the concentrate rate of recovery.
In order to achieve the above purpose, the utility model is realized by the following technical scheme:
the concentrate recovery device comprises a flushing bin 1 and a recovery bin 2 which are adjacent; the washing device is characterized in that at least three cylinders 3 are arranged on the top wall of the washing bin 1 along the central axis, output shafts of the cylinders 3 are connected with a top water spraying mechanism, a plurality of parallel side water spraying mechanisms which are opposite in position are respectively arranged on the side wall of the washing bin 1, a groove 4 is formed in the bottom wall of the washing bin 1 along the central axis, a bottom water spraying mechanism is arranged in the groove 4, a plurality of water seepage holes 5 are formed in the bottom wall of the washing bin 1, a collection bin 6 is arranged below the washing bin 1, and a collection tank 7 is arranged in the liquid collection bin 6; a recovery mechanism is arranged in the recovery bin 2, a power bin 8 is arranged below the recovery bin 2, and an impurity pump 9 is arranged in the power bin 8; the water inlet of the impurity pump 9 passes through the side wall of the collecting bin 6 through a water pumping pipe 10 to be connected with the collecting bin 7, and the water outlet thereof passes through the bottom wall of the recovering bin 2 through a recovering pipe 11 to be connected with the feed inlet of the recovering mechanism.
Further, the top water spraying mechanism comprises a top main water pipe 12 and top spraying groups, the outer wall of the top main water pipe 12 is connected with an output shaft of the air cylinder 3, a plurality of top spraying groups are distributed on the top main water pipe 12, each top spraying group comprises three top spraying pipes 13, one top spraying pipe 13 is vertically arranged on the top main water pipe 12, the other two top spraying pipes 13 are obliquely and symmetrically arranged on the top main water pipe 12, a water inlet of each top spraying pipe 13 is communicated with the top main water pipe 12, and a water outlet of each top spraying pipe 13 faces downwards; the side water spraying mechanism comprises a side main water pipe 14 and side spraying pipes 15, a plurality of side spraying pipes 15 are distributed on the side main water pipe 14, water inlets of the side spraying pipes 15 are communicated with the side main water pipe 14, and water outlets of the side spraying pipes 15 on two side walls are opposite; the bottom water spraying mechanism comprises a bottom main water pipe 16 and a bottom spraying group, the bottom spraying group comprises two bottom spraying pipes 17 which are obliquely and symmetrically arranged on the bottom main water pipe 16, the water inlets of the bottom spraying pipes 17 are communicated with the bottom main water pipe 16, and the water outlets are upward.
Further, the recovery mechanism comprises a filter press 18, a material receiving hopper 19, a material receiving belt conveyor 20, a material throwing belt conveyor 22 and a recovery tank 21; the feed inlet of the filter press 18 is connected with the discharge outlet of the recovery pipe 11, the discharge outlet of the filter press is connected with the receiving hopper 19, the outlet of the receiving hopper 19 is provided with the receiving belt conveyor 20, the discharge end of the receiving belt conveyor 20 is provided with the throwing belt conveyor 22, and the discharge end of the throwing belt conveyor 22 is provided with the recovery tank 21.
Furthermore, the top main water pipe 12, the side main water pipes 14 and the bottom main water pipe 16 are all parallel to the top wall of the washing chamber 1.
The utility model has the advantages that:
(1) the utility model discloses degree of automation is high, can realize the automation, and low in labor strength can practice thrift cost of labor and working time, and the carwash time is practiced thrift 70-90% than artifical carwash.
(2) The utility model discloses utilize in the washing storehouse 1 top water spray mechanism, side water spray mechanism and end water spray mechanism to realize washing the transport vechicle omnidirectional, avoid being difficult to the abluent condition at dead angle.
(3) The utility model discloses the concentrate that will wash the collection is collected through retrieving the mechanism, reaches the purpose that reduces the wasting of resources, has the advantage that clearance recovery efficiency is high.
Drawings
Fig. 1 is a front view of the present invention.
Fig. 2 is a plan view of the present invention.
In the figure, 1-washing bin, 2-recovery bin, 3-cylinder, 4-groove, 5-water seepage hole, 6-collection bin, 7-collecting tank, 8-power bin, 9-impurity pump, 10-water pumping pipe, 11-recovery pipe, 12-top main water pipe, 13-top shower pipe, 14-side main water pipe, 15-side shower pipe, 16-bottom main water pipe, 17-bottom shower pipe, 18-filter press, 19-receiving funnel, 20-receiving belt conveyor, 21-recovery tank and 22-throwing belt conveyor.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention clearer, the following will explain in detail a preferred embodiment of the present invention with reference to the accompanying drawings to facilitate understanding of the skilled person.
As shown in fig. 1 and 2, the concentrate recovery device comprises a flushing bin 1 and a recovery bin 2 which are adjacent; the washing device is characterized in that three cylinders 3 are arranged on the top wall of the washing bin 1 along the central axis, output shafts of the cylinders 3 are sequentially connected with a top water spraying mechanism, five parallel side water spraying mechanisms which are opposite in position are respectively arranged on the side wall of the washing bin 1, a groove 4 is formed in the bottom wall of the washing bin 1 along the central axis, a bottom water spraying mechanism is arranged in the groove 4, a plurality of water seepage holes 5 are formed in the bottom wall of the washing bin 1, a collecting bin 6 is arranged below the washing bin 1, and a collecting tank 7 is arranged in the liquid collecting bin 6; a recovery mechanism is arranged in the recovery bin 2, a power bin 8 is arranged below the recovery bin 2, and an impurity pump 9 is arranged in the power bin 8; the water inlet of the impurity pump 9 passes through the side wall of the collecting bin 6 through a water pumping pipe 10 to be connected with the collecting bin 7, and the water outlet thereof passes through the bottom wall of the recovering bin 2 through a recovering pipe 11 to be connected with the feed inlet of the recovering mechanism.
The top water spraying mechanism comprises a top main water pipe 12 and a top spraying group, the outer wall of the top main water pipe 12 is connected with an output shaft of the air cylinder 3, the top main water pipe 12 is parallel to the top wall of the washing bin 1, eleven groups of top spraying groups are distributed on the top main water pipe 12, and the diameter of the top main water pipe 12 is 80-120 mm; the top spraying group comprises three top spraying pipes 13, the diameter of each top spraying pipe 13 is 15-25mm, one top spraying pipe 13 is vertically arranged on the top main water pipe 12, the other two top spraying pipes 13 are obliquely and symmetrically arranged on the top main water pipe 12, the water inlets of the top spraying pipes 13 are communicated with the top main water pipe 12, and the water outlets are downward.
The side water spraying mechanism comprises a side main water pipe 14 and a side spraying pipe 15, the diameter of the side main water pipe 14 is 80-120mm, and the side main water pipe 14 is parallel to the top wall of the washing bin 1; a plurality of side spray pipes 15 are distributed on the side main water pipe 14, the diameter of the side main water pipe 13 is 15-25mm, the water inlets of the side spray pipes 15 are communicated with the side main water pipe 14, and the water outlets of the side spray pipes 15 on the two side walls are opposite;
the bottom water spraying mechanism comprises a bottom main water pipe 16 and a bottom spraying group, the diameter of the bottom main water pipe 16 is 80-120mm, and the bottom main water pipe 16 is parallel to the washing bin 1; the bottom spray pipes 17 comprise two bottom spray pipes 17 which are obliquely and symmetrically arranged on the bottom main water pipe 16, the water inlets of the bottom spray pipes 17 are communicated with the bottom main water pipe 16, the water outlets are upward, and the diameter of each bottom spray pipe 17 is 15-25 mm.
The recovery mechanism comprises a filter press 18, a material receiving hopper 19, a material receiving belt conveyor 20, a material throwing belt conveyor 22 and a recovery tank 21; the feed inlet of the filter press 18 is connected with the discharge outlet of the recovery pipe 11, the discharge outlet of the filter press is connected with the receiving hopper 19, the outlet of the receiving hopper 19 is provided with the receiving belt conveyor 20, the discharge end of the receiving belt conveyor 20 is provided with the throwing belt conveyor 22, and the discharge end of the throwing belt conveyor 22 is provided with the recovery tank 21.
The working process of the utility model is as follows:
after the carrier vehicle finishes the concentrate discharge, the carrier vehicle is driven into a flushing bin 1 of the concentrate recovery device and stops, and the central axes of the central lines of the vehicles coincide. And starting a descending button of the air cylinder 3, and placing the top water spraying mechanism in a hopper of the transport vehicle. The top main water pipe 12, the side main water pipe 14 and the bottom main water pipe 16 are respectively connected with a water source through water conveying pipes, water in the water storage tank is respectively conveyed to the top main water pipe 12, the side main water pipe 14 and the bottom main water pipe 16 through the booster pump, and is respectively cleaned by the top spraying group, the side spraying pipe 15 and the bottom spraying group.
The cleaned water is collected in a collecting tank 7 through a seepage hole 5, and the impurity pump 9 is started to connect the ore washing water into the filter press 18 through a recovery pipe 11. The filter press 18 presses the concentrate in the water into a filter cake by filter pressing, and the water is sent to a water storage tank for car washing. The concentrate filter cake enters the receiving funnel 19 from the outlet of the filter press 18, the concentrate filter cake goes down to the receiving belt conveyor 20 from the feed opening of the receiving funnel 19, and the concentrate filter cake is thrown into the recovery tank 21 by the receiving belt conveyor 20. The next car washing can be finished by repeating the steps.
Finally, it is noted that the above-mentioned preferred embodiments illustrate rather than limit the invention, and that, although the invention has been described in detail with reference to the above-mentioned preferred embodiments, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the scope of the invention as defined by the appended claims.
Claims (4)
1. A concentrate recovery device is characterized in that: comprises a flushing bin (1) and a recovery bin (2) which are adjacent; the washing machine is characterized in that at least three cylinders (3) are arranged on the top wall of the washing bin (1) along the central axis, output shafts of the cylinders (3) are connected with a top water spraying mechanism, a plurality of parallel side water spraying mechanisms which are opposite in position are arranged on the side wall of the washing bin (1) respectively, a groove (4) is formed in the bottom wall of the washing bin (1) along the central axis, a bottom water spraying mechanism is arranged in the groove (4), a plurality of water seepage holes (5) are formed in the bottom wall of the washing bin (1), a collecting bin (6) is arranged below the washing bin (1), and a collecting tank (7) is arranged in the liquid collecting bin (; a recovery mechanism is arranged in the recovery bin (2), a power bin (8) is arranged below the recovery bin (2), and an impurity pump (9) is arranged in the power bin (8); the water inlet of the impurity pump (9) penetrates through the side wall of the collection bin (6) through a water pumping pipe (10) to be connected with the collection tank (7), and the water outlet of the impurity pump penetrates through the bottom wall of the recovery bin (2) through a recovery pipe (11) to be connected with the feed inlet of the recovery mechanism.
2. A concentrate recovery plant according to claim 1, characterized in that: the top water spraying mechanism comprises a top main water pipe (12) and a top spraying group, the outer wall of the top main water pipe (12) is connected with an output shaft of the air cylinder (3), a plurality of top spraying groups are distributed on the top main water pipe (12), each top spraying group comprises three top spraying pipes (13), one top spraying pipe (13) is vertically arranged on the top main water pipe (12), the other two top spraying pipes (13) are obliquely and symmetrically arranged on the top main water pipe (12), a water inlet of each top spraying pipe (13) is communicated with the top main water pipe (12), and a water outlet is downward; the side water spraying mechanism comprises a side main water pipe (14) and side spraying pipes (15), a plurality of side spraying pipes (15) are distributed on the side main water pipe (14), a water inlet of each side spraying pipe (15) is communicated with the side main water pipe (14), and water outlets of the side spraying pipes (15) on the two side walls are opposite; the bottom water spraying mechanism comprises a bottom main water pipe (16) and a bottom spraying group, the bottom spraying group comprises two bottom spraying pipes (17) which are obliquely and symmetrically arranged on the bottom main water pipe (16), the water inlets of the bottom spraying pipes (17) are communicated with the bottom main water pipe (16), and the water outlets are upward.
3. A concentrate recovery plant according to claim 1, characterized in that: the recovery mechanism comprises a filter press (18), a material receiving hopper (19), a material receiving belt conveyor (20), a material throwing belt conveyor (22) and a recovery tank (21); the feed inlet of the filter press (18) is connected with the discharge outlet of the recovery pipe (11), the discharge outlet of the filter press is connected with the material receiving funnel (19), the outlet of the material receiving funnel (19) is provided with the material receiving belt conveyor (20), the discharge end of the material receiving belt conveyor (20) is provided with the material throwing belt conveyor (22), and the discharge end of the material throwing belt conveyor (22) is provided with the recovery groove (21).
4. A concentrate recovery plant according to claim 2, characterized in that: the top main water pipe (12), the side main water pipe (14) and the bottom main water pipe (16) are all parallel to the top wall of the washing bin (1).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202020992888.2U CN212998581U (en) | 2020-06-03 | 2020-06-03 | Concentrate recovery device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202020992888.2U CN212998581U (en) | 2020-06-03 | 2020-06-03 | Concentrate recovery device |
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Publication Number | Publication Date |
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CN212998581U true CN212998581U (en) | 2021-04-20 |
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CN202020992888.2U Active CN212998581U (en) | 2020-06-03 | 2020-06-03 | Concentrate recovery device |
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CN (1) | CN212998581U (en) |
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2020
- 2020-06-03 CN CN202020992888.2U patent/CN212998581U/en active Active
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