Mine mining sorting device
By introducing a vibrating element and a multi-layer filter structure into the mining sorting device, the problems of sorting stages and soil adhesion were solved, achieving flexible and efficient sorting, and improving the applicability and sorting effect of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2026-04-10
AI Technical Summary
Existing mining sorting equipment cannot flexibly set the number of sorting levels and sorting specifications, and soil easily adheres to minerals, affecting the sorting effect.
A device including a vibrating section and a sorting section was designed. The vibrating section provides vibration force through a vibrating sliding plate, a vibrating motor and a return spring. The sorting section consists of multiple layers of filter screens with different pore sizes for sorting minerals of different particle sizes, and the vibrating section is also provided to shake off soil.
It enables flexible setting of sorting levels and specifications, improves sorting efficiency, prevents soil adhesion, ensures thorough sorting, and increases mineral recovery rate and equipment lifespan.
Smart Images

Figure CN224101174U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to mineral sorting processing technical field, concretely is a mine mining sorting device. BACKGROUND
[0002] Ore sorting is a crucial link in the production of mining industry, and its purpose is to classify the ore according to different physical or chemical properties, so as to realize the optimal utilization and efficient processing of resources; through sorting ore, different crushing, grinding and sorting equipment can be reasonably matched according to its particle size and volume, so as to improve the working efficiency of the equipment and prolong its service life; large ore usually needs stronger crushing force, while small ore is suitable for fine grinding and fine ore dressing, and the sorting can ensure the uniformity of ore particle size in each processing link, improve the recovery rate of minerals and reduce waste, in addition, sorting by volume can also avoid excessive load of equipment, improve the precision and effect of ore dressing, and reduce the risk of environmental pollution and equipment damage, at the same time, the sorted ore is also convenient for storage and transportation.
[0003] The utility model discloses a kind of sorting devices for mine mining, belong to ore sorting technical field, the device includes a shell, shell interior fixed installation has feed frame, and is equipped with the separation plate located below feed frame, separation plate inside is rotatably connected with a group of first rotating shaft, the outer surface of each rotating shaft is fixedly installed with conveying roller. Through the setting of angle adjusting assembly, the angle of separation plate can be adjusted according to actual demand in the process of ore sorting. When the amount of ore falling to the separation plate per unit time is large, the angle of the separation plate can be adjusted to reduce the falling speed of the ore, so as to realize more thorough sorting. When the amount of ore is small per unit time, the angle of the separation plate can be adjusted to increase the falling speed of the ore, so as to improve the sorting efficiency.
[0004] However, the prior art cannot flexibly set the sorting number and sorting specification according to the demand, and its application range is limited, and the prior art cannot solve the problem that mud is easy to cause adhesion between minerals and mud during mineral exploitation, which has adverse effects on sorting. UTILITY MODEL CONTENTS
[0005] To solve the above technical problems, the utility model provides technical scheme as follows: A mine mining sorting device, including base, still including setting on base for providing vibration power vibration part, vibration part on setting has sorting part for sorting, vibration part includes vibration sliding plate, vibration sliding plate on fixed setting has vibration double -end motor, vibration double -end motor's output shaft on fixed setting has vibration cam, vibration sliding plate passes through vibration longitudinal reset spring no. 1, vibration longitudinal reset spring no. 2 slidingly sets up in vibration support, vibration support passes through vibration transverse reset spring slidingly sets up on base, sorting part includes fixed setting on vibration sliding plate's sorting shell, sorting shell can detachably set up in sorting assembly.
[0006] Further, the sorting assembly comprises a sorting large filter screen, a sorting middle filter screen and a sorting small filter screen arranged in sequence from top to bottom, and the sorting large filter screen, the sorting middle filter screen and the sorting small filter screen are detachably arranged on the sorting shell through sorting fixing bolts.
[0007] Further, the sorting large filter screen, the sorting middle filter screen and the sorting small filter screen are provided with filtering holes for sorting, the filtering holes on the sorting large filter screen are larger than the filtering holes on the sorting middle filter screen, and the filtering holes on the sorting middle filter screen are larger than the filtering holes on the sorting small filter screen.
[0008] Further, the sorting large filter screen, the sorting middle filter screen and the sorting small filter screen are provided with sorting collection boxes detachably arranged on both sides through sliding grooves, a plurality of containing cavities are arranged in the sorting collection boxes, and the containing cavities are used for collecting minerals sorted by the sorting assembly.
[0009] Further, the sorting fixing bolts are engaged with the sorting shell through threads, and a plurality of sliding grooves are arranged on the sorting shell.
[0010] Further, a handle is arranged on the sorting collection box, and a feeding port is arranged on the sorting shell.
[0011] The utility model has the advantages that: 1. The sorting part is arranged, the number of sorting stages and the size of sorting can be flexibly set according to the sorting requirement, and the practicability and applicability are enhanced; 2. The vibration part is arranged, the minerals are screened and sorted by vibration, the efficiency is improved, and the problem that the minerals are not completely sorted due to the adhesion of soil is solved. DRAWINGS
[0012] Figure 1 It is a whole structure schematic view of the utility model.
[0013] Figure 2 It is a whole structure front view angle schematic view of the utility model.
[0014] Figure 3 It is the whole structure side view angle schematic view of the utility model.
[0015] Figure 4 It is the whole structure sectional view of the utility model.
[0016] Figure 5 It is the sorting part local structure schematic view of the utility model.
[0017] Reference signs: 1 - sorting part; 2 - vibration part; 3 - base; 101 - sorting large filter screen; 102 - sorting middle filter screen; 103 - sorting small filter screen; 104 - sorting shell; 105 - sorting fixed bolt; 106 - sorting collection box; 201 - vibration sliding plate; 202 - vibration longitudinal reset spring one; 203 - vibration longitudinal reset spring two; 204 - vibration transverse reset spring; 205 - vibration double-head motor; 206 - vibration cam; 207 - vibration support. DETAILED DESCRIPTION
[0018] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.
[0019] As shown in Figures 1 to 5 A mine sorting device, comprising a base 3, further comprising a vibration part 2 arranged on the base 3 for providing vibration force, and a sorting part 1 arranged on the vibration part 2 for sorting.
[0020] As shown in Figures 1 to 5 The vibration part 2 comprises a vibration sliding plate 201, a vibration longitudinal reset spring one 202, a vibration longitudinal reset spring two 203, a vibration transverse reset spring 204, a vibration double-head motor 205, a vibration cam 206 and a vibration support 207; the vibration double-head motor 205 is fixedly arranged on the vibration sliding plate 201, the vibration cam 206 is fixedly arranged on the output shaft of the vibration double-head motor 205, the vibration sliding plate 201 is vertically slidably arranged on the vibration support 207 through the vibration longitudinal reset spring one 202 and the vibration longitudinal reset spring two 203, and the vibration support 207 is transversely slidably arranged on the base 3 through the vibration transverse reset spring 204.
[0021] As shown in Figures 1 to 5As shown, the sorting part 1 includes a sorting large filter screen 101, a sorting middle filter screen 102, a sorting small filter screen 103, a sorting shell 104, a sorting fixed bolt 105, and a sorting collection box 106; the sorting shell 104 is fixedly arranged on the vibration sliding plate 201, and a sorting assembly is detachably arranged in the sorting shell 104 through a sliding groove; the sorting assembly includes the sorting large filter screen 101, the sorting middle filter screen 102, and the sorting small filter screen 103 arranged in sequence from top to bottom, and the sorting large filter screen 101, the sorting middle filter screen 102, and the sorting small filter screen 103 are detachably arranged on the sorting shell 104 through the sorting fixed bolt 105; the sorting large filter screen 101, the sorting middle filter screen 102, and the sorting small filter screen 103 are all provided with filter holes for sorting, the filter holes on the sorting large filter screen 101 have a larger diameter than the filter holes on the sorting middle filter screen 102, and the filter holes on the sorting middle filter screen 102 have a larger diameter than the filter holes on the sorting small filter screen 103; the sorting large filter screen 101, the sorting middle filter screen 102, and the sorting small filter screen 103 are detachably provided with the sorting collection box 106 through the sliding groove on both sides, the sorting collection box 106 is provided with a plurality of containing cavities, both ends of the sorting large filter screen 101, the sorting middle filter screen 102, and the sorting small filter screen 103 are provided with discharge ports, the discharge ports are correspondingly arranged with the plurality of containing cavities in the sorting collection box 106, and the corresponding containing cavities are used for collecting the minerals sorted by the sorting large filter screen 101, the sorting middle filter screen 102, and the sorting small filter screen 103; the sorting fixed bolt 105 and the sorting shell 104 are threadedly engaged to fix the sorting large filter screen 101, the sorting middle filter screen 102, and the sorting small filter screen 103 on the sorting shell 104, and the sorting shell 104 is provided with a plurality of sliding grooves; the sorting large filter screen 101, the sorting middle filter screen 102, and the sorting small filter screen 103 are installed in the sliding grooves, the sorting collection box 106 is provided with a handle, and the sorting shell 104 is provided with a feeding port at the top; the sorting small filter screen 103 and the sorting shell 104 are provided with a powder collection box through the sliding groove, which is used for collecting the smallest mineral after filtering and sorting.
[0022] As shown, Figures 1 to 5 The working principle of the mine mining sorting device is as follows: according to the sorting requirement of the minerals, the sorting large filter screen 101, the sorting middle filter screen 102, and the sorting small filter screen 103 are sequentially installed in the sorting shell 104 through the sliding grooves on the sorting shell 104 from top to bottom, and are fixed through the sorting fixed bolt 105; after installation, the minerals to be sorted are put into the sorting shell 104 from the feeding port arranged at the top of the sorting shell 104 and are on the sorting large filter screen 101.
[0023] The vibration double-head motor 205 is started, and the vibration double-head motor 205 rotates to drive the vibration cam 206 to rotate. The vibration cam 206 rotates to generate vibration, so that the minerals fall into the sorting middle filter screen 102 from the filtering holes of the sorting large filter screen 101. In this process, the minerals with large volume fall into the corresponding accommodation cavities in the sorting collection box 106 from both sides of the sorting large filter screen 101, the minerals with the second volume fall into the corresponding accommodation cavities in the sorting collection box 106 from both sides of the sorting middle filter screen 102, the minerals with the smallest volume fall into the corresponding accommodation cavities in the sorting collection box 106 from both sides of the sorting small filter screen 103, and finally, the powdered minerals fall into the powder collection box arranged between the sorting small filter screen 103 and the sorting shell 104 to be collected, so that the sorting work of the multi-stage sorting requirement is completed.
[0024] The sorting large filter screen 101, the sorting middle filter screen 102 and the sorting small filter screen 103 with different filtering hole diameters can be replaced according to the requirement, and the number of the sorting large filter screen 101, the sorting middle filter screen 102 and the sorting small filter screen 103 can be increased or reduced according to the requirement to control the sorting stages.
Claims
1. A mine extraction sorting device comprising a base (3), characterised in that: Also include set in the base (3) for providing the vibration power vibration part (2), the vibration part (2) is provided with sorting part (1) for sorting; The vibration part (2) includes a vibration sliding plate (201), the vibration sliding plate (201) is fixedly provided with a vibration double head motor (205), the output shaft of the vibration double head motor (205) is fixedly provided with a vibration cam (206), the vibration sliding plate (201) is slidably arranged on the vibration support (207) through the vibration longitudinal reset spring one (202) and the vibration longitudinal reset spring two (203), the vibration support (207) is slidably arranged on the base (3) through the vibration transverse reset spring (204); The sorting part (1) includes a sorting shell (104) fixedly arranged on the vibration sliding plate (201), and the sorting shell (104) is detachably provided with a sorting assembly.
2. A mine sorting device according to claim 1, characterised in that: The sorting assembly includes a sorting large filter screen (101), a sorting middle filter screen (102) and a sorting small filter screen (103) arranged in sequence from top to bottom, and the sorting large filter screen (101), the sorting middle filter screen (102) and the sorting small filter screen (103) are detachably arranged on the sorting shell (104) through sorting fixing pegs (105).
3. A mine sorting device according to claim 2, characterised in that: The sorting large filter screen (101), the sorting middle filter screen (102) and the sorting small filter screen (103) are all provided with filter holes for sorting, the aperture of the filter holes on the sorting large filter screen (101) is larger than that of the filter holes on the sorting middle filter screen (102), and the aperture of the filter holes on the sorting middle filter screen (102) is larger than that of the filter holes on the sorting small filter screen (103).
4. A mine sorting device according to claim 3, characterised in that: The sorting large filter screen (101), the sorting middle filter screen (102) and the sorting small filter screen (103) are detachably provided with sorting collection boxes (106) on both sides through sliding grooves, and a plurality of containing cavities are arranged in the sorting collection boxes (106), and the containing cavities are used for collecting minerals sorted by the sorting assembly.
5. A mine sorting device according to claim 4, characterised in that: The sorting fixing pegs (105) are engaged with the sorting shell (104) through threads, and a plurality of sliding grooves are arranged on the sorting shell (104).
6. A mine sorting device according to claim 5, characterised in that: The sorting collection boxes (106) are provided with handles, and the sorting shell (104) is provided with a feeding port.
Citation Information
Patent Citations
Tea sieving device
CN108636791B