CN214513184U - Waste residue dewatering device for ore dressing - Google Patents
Waste residue dewatering device for ore dressing Download PDFInfo
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- CN214513184U CN214513184U CN202023262944.6U CN202023262944U CN214513184U CN 214513184 U CN214513184 U CN 214513184U CN 202023262944 U CN202023262944 U CN 202023262944U CN 214513184 U CN214513184 U CN 214513184U
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Abstract
The utility model discloses a waste residue dewatering device for ore dressing, including outer staving, outer staving outside is cylindrical, and outer staving one end is the opening form to the inside filter vat installation bearing that is equipped with the symmetry form of outer staving, the inboard rotation of filter vat installation bearing is provided with the filter vat, the outer wall of outer staving is equipped with the speed reducer, and the outside of speed reducer is equipped with first driving motor to the speed reducer is connected with the outer wall of filter vat through the transmission shaft, the below of outer staving is equipped with the water guide shell, and the outer wall of water guide shell is equipped with second driving motor to there is the material extrusion pole in the pivot of second driving motor through the coupling joint, the material extrusion pole is in the water guide shell. This inside centrifugal filtration structure of waste residue dewatering device for ore dressing, the separation of water in the waste residue that can be quick comes out, and the device is equipped with the extrusion structure simultaneously, can carry out extrusion separation to the suspended solid in the waste water, improves the separation effect of water and waste residue.
Description
Technical Field
The utility model relates to a mineral processing waste residue handles technical field, specifically is a waste residue dewatering device for ore dressing.
Background
One of the products of the separation operation in mineral separation, the fraction with the lowest content of useful target components, is called tailings. Under the current technological economic conditions, further sorting is not suitable. However, with the development of the production science technology, useful target components may have economic value for further recycling. Tailings are not completely useless wastes, often contain components which can be used for other purposes, and can be comprehensively utilized. Realizes no waste discharge, and is a requirement for fully utilizing mineral resources and protecting the ecological environment.
Current ore dressing waste residue generally needs to be handled through the dehydration to this weight that reduces the waste residue makes things convenient for the clear work of transporting of waste residue, and general waste residue dewatering device dehydration efficiency ratio is lower, and contains the suspended solid in waste water, plugs up dewatering device inside like this easily, increases the degree of difficulty of work.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a waste residue dewatering device for ore dressing to the waste residue dewatering device dewatering efficiency ratio that proposes in solving the background art is lower, and contains the suspended solid in waste water, plugs up the inside of dewatering device easily like this, increases the problem of the work degree of difficulty.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a waste residue dewatering device for ore dressing, includes outer staving, outer staving outside is cylindrical, and outer staving one end is the opening form to the inside filter vat installation bearing that is equipped with the symmetry form of outer staving, the inboard rotation of filter vat installation bearing is provided with the filter vat, the outer wall of outer staving is equipped with the speed reducer, and the outside of speed reducer is equipped with first driving motor to the speed reducer is connected with the outer wall of filter vat through the transmission shaft, the below of outer staving is equipped with the water guide shell, and the outer wall of water guide shell is equipped with second driving motor to there is the material extrusion pole in the pivot of second driving motor through the coupling joint, the material extrusion pole is in the water guide shell, and the outside of material extrusion pole is the heliciform.
Preferably, the outer barrel body is communicated with the inside of the water guide shell, and a separation plate is arranged at the joint of the outer barrel body and the water guide shell.
Preferably, the division plate is arc-shaped, the outer wall of the division plate is provided with a flow guide hole, and the inner side of the division plate is attached to the outer ring of the filter barrel mounting bearing.
Preferably, the through hole is opened to the filter vat outside, and the filter vat inner wall is equipped with the material guide plate that the heliciform distributes.
Preferably, one end of the water guide shell, which is far away from the second driving motor, is provided with a conical silt guide pipe, and the silt guide pipe is sleeved outside one end of the material extrusion rod.
Preferably, the water guide shell is located right below the outer barrel body, and the section of the water guide shell is in an inverted cone shape.
Compared with the prior art, the beneficial effects of the utility model are that: this inside centrifugal filtration structure of waste residue dewatering device for ore dressing, the separation of water in the waste residue that can be quick comes out, and the device is equipped with the extrusion structure simultaneously, can carry out extrusion separation to the suspended solid in the waste water, improves the separation effect of water and waste residue. The device's outer staving is equipped with the division board with the intercommunication department inboard of water guide shell, the outer wall of installing the bearing with the filter vat through the division board is propped, make the crooked condition of filter vat installation bearing be difficult to appear, the division board plays certain filtering action simultaneously, avoid in the outer staving in the great impurity of volume enters into the water guide shell, and the inside material extrusion pole that is equipped with of water guide shell, extrude the suspended solid in the inside waste water of water guide shell through material extrusion pole, carry out filterable work to waste water once more, the filter vat drives the material through the material guide plate and removes when the pivoted, can lead out the material from the filter vat is inside through the material guide plate, make things convenient for the work of unloading of filter vat.
Drawings
FIG. 1 is a schematic structural view of a waste residue dewatering device for mineral separation according to the present invention;
FIG. 2 is a sectional view taken at A-A in FIG. 1 of the waste residue dewatering device for mineral separation according to the present invention;
fig. 3 is the utility model relates to a waste residue dewatering device division plate structure schematic diagram for ore dressing.
In the figure: 1. outer staving, 2, speed reducer, 3, first driving motor, 4, filter vat, 5, filter vat installation bearing, 6, second driving motor, 7, water guide shell, 8, material extrusion pole, 9, division board, 10, lead the silt pipe, 11, material guide plate, 12, water conservancy diversion hole.
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. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-3, the present invention provides a technical solution: a waste residue dewatering device for mineral separation comprises an outer barrel body 1, wherein the outer portion of the outer barrel body 1 is cylindrical, one end of the outer barrel body 1 is open, symmetrical filter barrel installation bearings 5 are arranged inside the outer barrel body 1, the outer barrel body 1 is communicated with the inside of a water guide shell 7, a partition plate 9 is arranged at the joint of the outer barrel body 1 and the water guide shell 7, the outer barrel body 1 of the structure is communicated with the inside of the water guide shell 7, so that water inside the outer barrel body 1 can flow into the water guide shell 7 and is guided out through the water guide shell 7, the outer portion of the partition plate 9 is arc-shaped, a flow guide hole 12 is formed in the outer wall of the partition plate 9, the inner side of the partition plate 9 is attached to the outer ring of the filter barrel installation bearings 5, the partition plate 9 of the structure is positioned at the joint of the outer barrel body 1 and the water guide shell 7, and is used for filtering through the flow guide hole 12 in the partition plate 9, so that impurities with large internal volume inside the outer barrel body 1 are prevented from entering the water guide shell 7, and the partition board 9 can fix the outer wall of the filter barrel installation bearing 5, so as to increase the installation and fixation work of the filter barrel installation bearing 5, the inner side of the filter barrel installation bearing 5 is rotatably provided with the filter barrel 4, the outer wall of the outer barrel body 1 is provided with the speed reducer 2, the outer side of the speed reducer 2 is provided with the first driving motor 3, the speed reducer 2 is connected with the outer wall of the filter barrel 4 through the transmission shaft, the outer part of the filter barrel 4 is provided with a through hole, the inner wall of the filter barrel 4 is provided with the material guide plate 11 which is spirally distributed, the through hole of the outer wall of the filter barrel 4 of the structure plays a role of water guide, so that the water in the filter barrel 4 can flow into the inner part of the outer barrel body 1, the spiral material guide plate 11 is arranged in the filter barrel 4, when the material guide plate 11 reversely rotates along with the filter barrel 4, the material guide plate 11 can push out the material in the filter barrel 4, the filter barrel 4 is convenient to unload materials, a water guide shell 7 is arranged below the outer barrel body 1, a second driving motor 6 is arranged on the outer wall of the water guide shell 7, a rotating shaft of the second driving motor 6 is connected with a material extrusion rod 8 through a coupler, a conical silt guide pipe 10 is arranged at one end, away from the second driving motor 6, of the water guide shell 7, the silt guide pipe 10 is sleeved outside one end of the material extrusion rod 8, the silt guide pipe 10 of the structure is arranged on the outer wall of the water guide shell 7, water in the water guide shell 7 can be guided out through the silt guide pipe 10, when one end of the material extrusion rod 8 rotates inside the silt guide pipe 10, the material extrusion rod 8 can guide the materials in the water guide shell 7 into the silt guide pipe 10, the materials in the water guide shell 7 are mutually extruded with the inner wall of the silt guide pipe 10 through the material extrusion rod 8, so that the materials and the water are separated, carry out the work of dehydration to remaining material, water guide shell 7 is located outer staving 1 under, and the section of water guide shell 7 is the back taper, the water guide shell 7 of this structure plays the effect of water guide, water guide shell 7 is wider with outer staving 1 junction, can derive the water of outer staving 1 inside fast, avoid the condition that the accumulation appears in the water of outer staving 1 inside, material extrusion stem 8 is in water guide shell 7, and the outside of material extrusion stem 8 is the heliciform.
The working principle is as follows: when the waste residue dewatering device for mineral separation is used, the outer barrel body 1 of the device is arranged at a proper place, then materials are guided into the filter barrel 4, then the first driving motor 3 is started, the first driving motor 3 can drive the filter barrel 4 to rotate through the speed reducer 2, so that the filter barrel 4 rotates on the inner side of the filter barrel mounting bearing 5, then the filter barrel 4 can drive the materials to rotate, under the action of centrifugal force, water in the materials can flow into the outer barrel body 1 through the through hole in the outer wall of the filter barrel 4, then the water in the outer barrel body 1 enters the water guide shell 7 through the flow guide hole 12 in the partition plate 9, the water in the water guide shell 7 can flow out through the silt guide pipe 10, meanwhile, tiny suspended matters in the water can be accumulated in the water guide shell 7, then the second driving motor 6 is started, the second driving motor 6 can drive the material extrusion rod 8 to rotate, extrude the dehydration through 8 outside helical structure of material extrusion pole to the material, then material extrusion pole 8 can extrude the material of dehydration from leading silt pipe 10 is inside, at last filter vat 4 accomplishes the dehydration work after, drive filter vat 4 through a driving motor 3 and carry out reverse rotation, the inside material guide plate 11 of filter vat 4 can promote the material and remove, 4 inside materials of filter vat can spill like this, the work of unloading is conveniently carried out filter vat 4, thereby accomplish a series of works.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments or portions thereof without departing from the spirit and scope of the invention.
Claims (6)
1. The utility model provides a waste residue dewatering device for ore dressing, includes outer staving (1), its characterized in that: the outer part of the outer barrel body (1) is cylindrical, one end of the outer barrel body (1) is open, and symmetrical filter vat mounting bearings (5) are arranged in the outer vat body (1), the inner side of the filter barrel mounting bearing (5) is rotatably provided with a filter barrel (4), the outer wall of the outer barrel body (1) is provided with a speed reducer (2), the outer side of the speed reducer (2) is provided with a first driving motor (3), and the speed reducer (2) is connected with the outer wall of the filter barrel (4) through a transmission shaft, a water guide shell (7) is arranged below the outer barrel body (1), a second driving motor (6) is arranged on the outer wall of the water guide shell (7), and the rotating shaft of the second driving motor (6) is connected with a material extrusion rod (8) through a coupling, the material extrusion rod (8) is positioned in the water guide shell (7), and the outer part of the material extrusion rod (8) is spiral.
2. The slag dewatering device for mineral processing according to claim 1, characterized in that: the outer barrel body (1) is communicated with the inside of the water guide shell (7), and a separation plate (9) is arranged at the joint of the outer barrel body (1) and the water guide shell (7).
3. The slag dewatering device for mineral processing according to claim 2, characterized in that: the outside of division board (9) is the arc, and the water conservancy diversion hole (12) have been seted up to the outer wall of division board (9) to the outer lane of division board (9) inboard laminating at filter vat installation bearing (5).
4. The slag dewatering device for mineral processing according to claim 1, characterized in that: the through hole is opened to filter vat (4) outside, and filter vat (4) inner wall is equipped with material guide plate (11) that the heliciform distributes.
5. The slag dewatering device for mineral processing according to claim 1, characterized in that: one end of the water guide shell (7) far away from the second driving motor (6) is provided with a conical silt guide pipe (10), and the silt guide pipe (10) is sleeved outside one end of the material extrusion rod (8).
6. The slag dewatering device for mineral processing according to claim 1, characterized in that: the water guide shell (7) is positioned under the outer barrel body (1), and the section of the water guide shell (7) is inverted cone-shaped.
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CN202023262944.6U CN214513184U (en) | 2020-12-30 | 2020-12-30 | Waste residue dewatering device for ore dressing |
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CN202023262944.6U CN214513184U (en) | 2020-12-30 | 2020-12-30 | Waste residue dewatering device for ore dressing |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114735848A (en) * | 2022-04-01 | 2022-07-12 | 安徽省恒金矿业有限公司 | Comprehensive utilization device for mine wastewater |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114735848A (en) * | 2022-04-01 | 2022-07-12 | 安徽省恒金矿业有限公司 | Comprehensive utilization device for mine wastewater |
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