Mineral sorting unit for mining industry
Technical Field
The utility model relates to a mining equipment technical field, concretely relates to mineral sorting unit for mining.
Background
Simple substances of natural elements and compounds of the natural elements, minerals have relatively fixed chemical compositions, the minerals in a solid state also have determined internal structures, the simple substances are basic units for forming rocks and ores, the ores are crushed and ground and then are sorted, the labor intensity of manual sorting is high, the subjectivity is strong during sorting, the size of the minerals cannot have a standard sorting specification, the crushed small particles are screened out, and the large particles cannot meet the requirement of particle size and are placed in crushing equipment to be crushed again and then are sorted again, so the mineral sorting device for the mining industry is provided for solving the problems.
SUMMERY OF THE UTILITY MODEL
Technical problem to be solved
In order to overcome prior art not enough, now provide a mineral sorting unit for mining industry, simple structure, rolling machine can carry out the breakage with mineral earlier, then screens the mineral stone that department accords with the specification through the screening board, and great granule is along the screening board and is rolled into the collection case to carry out breakage once more and screening, improved work efficiency, ensured the specification standard of mineral stone.
(II) technical scheme
The utility model discloses a following technical scheme realizes: the utility model provides a mineral sorting unit for mining industry, a serial communication port, including sorting box, rolling machine, connecing thing dolly and collection box, sorting box's inside sets up the screening mesh board through fixed slope and separates for screening chamber and blanking chamber, and sorting box's the fixed motor that is provided with in side, the side in screening chamber has seted up the discharge port in the low side top of screening mesh board, the side in blanking chamber is provided with the opening, rolling machine includes drive roll and driven voller, the horizontal parallel rotation of drive roll and driven voller sets up within the screening chamber, connect the thing dolly to set up within the blanking chamber, the fixed side that is provided with the discharge port that sets up on sorting box of collection box.
Furthermore, a feed inlet is formed in the position, opposite to the position between the driving roller and the driven roller, of the upper end face of the sorting box body.
Further, a rack meshed with the driving roller and the driven roller is arranged on the driving roller and the driven roller.
Furthermore, the end parts of the rotating shafts of the driving roller and the driven roller penetrate through the side wall of the sorting box body and are exposed outside, belt pulleys are fixedly arranged on one end of the rotating shaft of the driving roller and the output shaft of the motor, the two belt pulleys are linked through a triangular belt, and a gear which is meshed with the other end of the rotating shaft of the driving roller and the rotating shaft of the driven roller is fixedly arranged on the other end of the rotating shaft of the driving roller.
Furthermore, four corners of the lower end of the trolley body of the object receiving trolley are provided with traveling wheels, and the side surface of the trolley body is fixedly provided with a handle.
Further, the header tank is located below the discharge port.
(III) advantageous effects
Compared with the prior art, the utility model, following beneficial effect has:
1. the rolling machine can crush minerals firstly, then the mineral stones meeting the specification are screened through the screening plate, the working efficiency is improved, and the specification standard of the mineral stones is guaranteed.
2. The receiving trolley is convenient to transport and screen mineral stones with sizes meeting the specification, and larger particles roll into the collecting box along the screening plate so as to be crushed and screened again.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a left side view of the present invention.
Fig. 3 is a structural sectional view of the present invention.
3 fig. 3 4 3 is 3 a 3 structural 3 sectional 3 view 3 taken 3 along 3 the 3 plane 3 a 3- 3 a 3 in 3 fig. 3 2 3. 3
1-sorting box body; 2-rolling device; 3-receiving the object trolley; 4-a concentration box; 5-screening mesh plates; 6, a motor; 7-a belt pulley; 8-V belt; 9-gear; 10-a handle; 11-a screening chamber; 12-a blanking chamber; 13-a discharge port; 14-an opening; 15-a feed inlet; 21-a drive roll; 22-a driven roller; 23-rack.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
As shown in fig. 1, 2, 3 and 4, the mineral sorting device for mining comprises a sorting box body 1, a rolling device 2, a material receiving trolley 3 and a collecting box 4, wherein the sorting box body 1 is internally divided into a screening cavity 11 and a blanking cavity 12 by a screening mesh plate 5 which is fixedly arranged in an inclined manner, a motor 6 is fixedly arranged on the side surface of the sorting box body 1, a discharge port 13 is arranged on the side surface of the screening cavity 11 above the lower end of the screening mesh plate 5, an opening 14 is arranged on the side surface of the blanking cavity 12, the rolling device 2 comprises a driving roller 21 and a driven roller 22, the driving roller 21 and the driven roller 22 are transversely and parallelly and rotatably arranged in the screening cavity 11, the material receiving trolley 3 is arranged in the blanking cavity 12, and the collecting box 4 is fixedly arranged on the sorting box body 1 and is provided with the side surface of the discharge port 13.
Wherein, a feed inlet 15 is arranged at the position of the upper end surface of the sorting box body 1, which is opposite to the position between the driving roller 21 and the driven roller 22; a meshed rack 23 is arranged on the driving roller 21 and the driven roller 22; the end parts of the rotating shafts of the driving roller 21 and the driven roller 22 penetrate through the side wall of the sorting box body 1 and are exposed outside, belt pulleys 7 are fixedly arranged on one end of the rotating shaft of the driving roller 21 and an output shaft of the motor 6, the two belt pulleys 7 are linked through a triangular belt 8, and a gear 9 which is meshed with the other end of the rotating shaft of the driving roller 21 and the rotating shaft of the driven roller 22 is fixedly arranged; four corners of the lower end of the trolley body of the object receiving trolley 3 are provided with walking wheels, and the side surface of the trolley body is fixedly provided with a handle 10; the concentration tank 4 is located below the discharge opening 13.
The utility model provides a mineral sorting unit for mining industry, when it is specifically used, the up end of sorting box 1 just has seted up feed inlet 15 to the position between drive roll 21 and the driven voller 22, add mineral stone from feed inlet 15, start motor 6, the pivot tip of drive roll 21 and driven voller 22 all runs through the lateral wall of sorting box 1 and exposes outside, all be fixed with belt pulley 7 on the pivot one end of drive roll 21 and the motor 6 output shaft, two belt pulleys 7 are linked through V belt 8, motor 6 drives drive roll 21 and rotates, fixed engaged gear 9 that is provided with on the other end of drive roll 21 pivot and the pivot of driven voller 22, drive roll 21 drives driven voller 22 and inwards rotates relatively, be provided with engaged rack 23 on drive roll 21 and the driven voller 22, pulverize mineral stone during the rotation, the ground mineral stone falls in screening mesh board 5, mineral stones with sizes meeting the specification are screened by the screening mesh plate 5 and fall into the receiving trolley 3 in the blanking cavity 12, and larger mineral stone particles roll into the concentration box 4 from the discharge port 13 along the inclined screening mesh plate 5 so as to be crushed and screened again, so that the working efficiency is improved, and the specification standard of the mineral stones is guaranteed.
The above-described embodiments are merely illustrative of the preferred embodiments of the present invention and are not intended to limit the spirit and scope of the present invention. Without departing from the design concept of the present invention, various modifications and improvements made by the technical solution of the present invention by those skilled in the art should fall into the protection scope of the present invention, and the technical contents claimed by the present invention have been fully recorded in the claims.