CN216419540U - Ore metallurgy sieve motive - Google Patents

Ore metallurgy sieve motive Download PDF

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Publication number
CN216419540U
CN216419540U CN202122268886.6U CN202122268886U CN216419540U CN 216419540 U CN216419540 U CN 216419540U CN 202122268886 U CN202122268886 U CN 202122268886U CN 216419540 U CN216419540 U CN 216419540U
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gear
box body
plate
fixing plate
fixedly arranged
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CN202122268886.6U
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王余刚
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Tangshan Puming Mining Co ltd
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Tangshan Puming Mining Co ltd
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Abstract

The utility model discloses an ore metallurgy sieve machine, which comprises a first box body, a crushing device, a second box body and a conveyor belt, wherein the second box body is internally provided with a sieve device, the sieve device comprises a gear A, a gear B, a sieve plate, a first fixed plate, a first connecting rod, a motor B, a second fixed plate and a connecting plate, the motor B is fixedly arranged at the top of the second box body, the gear A is fixedly arranged at the output end of the motor B, the gear A is connected with the gear B through chain transmission, the second box body is positively provided with a bearing A and a bearing B, the gear B is fixedly arranged on the bearing A through the connecting rod A, the gear B is movably connected with the second box body, the first fixed plate and the second fixed plate are both fixedly arranged on the inner wall of the second box body, the utility model has simple structure, and the matching relationship between the structures is simple, convenient operation and practicality have promoted the practicality and the application range of ore metallurgy sieve motivation.

Description

Ore metallurgy sieve motive
Technical Field
The utility model relates to an ore metallurgy technical field specifically is an ore metallurgy sieve moves machine.
Background
Ore metallurgy is a process and technology for extracting metal or metal compounds from minerals and preparing metal into a metal material with certain performance by various processing methods, wherein the raw materials need to be screened in multiple layers before metallurgy, the raw materials with different specifications can use different processing technologies, part of the prior ore raw material screening devices have the problem of incomplete screening, the specifications of the raw materials screened from the same layer have larger difference, the actual screening effect is poorer, the situation that ores are blocked in screen holes is often encountered during screening, the quality of subsequent screening is influenced when the ores are not cleaned in time, device faults are easily caused, the actual screening operation is influenced, when the prior iron ore is screened after being crushed, large and small lumps of ores are easy to mix, the screening effect is poor, and the mixed large and small ores are not uniform in ore smelting speed, the smelting efficiency of the ore is influenced, the iron tapping rate of the ore is not high, the slag tapping proportion practicability of the blast furnace slag is additionally increased, and the ore is crushed to enable dust to be larger.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an ore metallurgy sieve moves machine to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides an ore metallurgy sieve machine, includes first box, reducing mechanism, second box, conveyer belt, second box internally mounted has the sieve to move the device, the sieve moves the device and includes gear A, gear B, sieve board, first fixed plate, head rod, motor B, second fixed plate, the connecting plate, motor B fixed mounting is at the top of second box, gear A fixed mounting is at motor B's output, and gear A passes through chain drive with gear B and is connected, bearing A and bearing B are openly installed to the second box, and gear B passes through connecting rod A fixed mounting on bearing A, gear B and second box swing joint, the inner wall of first fixed plate and the equal fixed mounting of second fixed plate at the second box, bar hole A has all been seted up to first fixed plate and second fixed plate both sides, the both sides of sieve board run through first fixed plate and second fixed plate respectively and extend to two of first fixed plate and second fixed plate And the side, the second box openly has seted up bar hole B, the connecting plate run through the second box through bar hole B and with sieve movable plate fixed connection, the one end of head rod articulates on gear B, the other end of head rod articulates on the connecting plate.
Preferably, the reducing mechanism includes first crushing roller, first dead lever, second crushing roller, second dead lever, first gear, second gear, motor A fixed mounting is at the inner wall of first box, first gear fixed mounting is at motor A's output, the one end fixed mounting of first crushing roller is on first gear, and the other end fixed mounting of first crushing roller is on first dead lever, and three bearing C is installed to first box inner wall, the one end of second dead lever runs through second gear and second crushing roller and extends to bearing C on, the second dead lever passes through two bearing C and first box swing joint, first gear and second gear meshing.
Preferably, dust collector is openly installed to the second box, dust collector includes second connecting rod, disc, exhaust fan, shower nozzle, the one end of second connecting rod articulates on the head rod, and the other end of second connecting rod articulates on the disc, the disc passes through connecting rod B fixed mounting on bearing B, disc second box swing joint, exhaust fan fixed mounting is in the front of second box, shower nozzle fixed mounting is on the disc.
Preferably, the apertures of the strip-shaped holes A formed in the first fixing plate and the second fixing plate are the same as the aperture of the sieve moving plate, and the aperture of the strip-shaped hole B formed in the front face of the second box body is the same as the aperture of the connecting plate.
Preferably, the conveyor belts are fixedly arranged on two sides of the inner wall of the second box body.
Preferably, clamping blocks are arranged on two sides of the screening plate.
The utility model provides an ore metallurgy sieve moves machine. The method has the following beneficial effects: through sieving and moving device and reducing mechanism, can carry out shredding and sieve to the ore and move the processing, make large granule ore and tiny particle ore drop and make a round trip to sieve about on the sieve board and move and distribute evenly, can make through dust collector smash and sieve and move the dust that the in-process produced and reduce by a wide margin, the utility model discloses simple structure easily realizes, and the cooperation relation between each structure is simple, and convenient operation and practicality have promoted ore metallurgy sieve machine's practicality and application range.
Drawings
FIG. 1 is a front cross-sectional view of the present invention;
FIG. 2 is a side sectional view of the present invention;
fig. 3 is a partial top sectional view of the present invention.
In the figure: 1 first box, 201 first crushing roller, 202 first fixing rod, 203 second crushing roller, 204 second fixing rod, 205 first gear, 206 second gear, 207 motor A, 301 gear A, 302 gear B, 303 screen plate, 304 first fixing plate, 305 first connecting rod, 306 motor B, 307 second fixing plate, 308 connecting plate, 4 second box, 501 second connecting rod, 502 disc, 503 exhaust fan, 504 spray head, 6 conveyor belt.
Detailed Description
As shown in fig. 1-3, the utility model provides a technical solution: a mineral metallurgy screening machine comprises a first box body 1, a crushing device 2, a second box body 4 and a conveyor belt 6, wherein a screening device 3 is arranged inside the second box body 4, the screening device 3 and the crushing device 2 can crush and screen ores to enable large-particle ores and small-particle ores to fall on a screening plate and to be screened back and forth left and right and uniformly distributed, the screening device 3 comprises a gear A301, a gear B302, a screening plate 303, a first fixing plate 304, a first connecting rod 305, a motor B306, a second fixing plate 307 and a connecting plate 308, the motor B306 is fixedly arranged at the top of the second box body 4, the gear A301 is fixedly arranged at the output end of the motor B306, the gear A301 is connected with the gear B302 through chain transmission, a bearing A and a bearing B are arranged on the front surface of the second box body 4, the gear B302 is fixedly arranged on the bearing A through the connecting rod A, and the gear B302 is movably connected with the second box body 4, the first fixing plate 304 and the second fixing plate 307 are both fixedly installed on the inner wall of the second box 4, the two sides of the first fixing plate 304 and the second fixing plate 307 are both provided with strip holes A, the calibers of the strip holes A provided on the first fixing plate 304 and the second fixing plate 307 are the same as the calibers of the sieving plate 303, the caliber of the strip hole B provided on the front surface of the second box 4 is the same as the caliber of the connecting plate 308, the sieving plate 303 is provided with holes with different sizes and is uniformly distributed, the two sides of the sieving plate 303 respectively penetrate through the first fixing plate 304 and the second fixing plate 307 and extend to the two sides of the first fixing plate 304 and the second fixing plate 307, the two sides of the sieving plate 303 are both provided with clamping blocks, the front surface of the second box 4 is provided with strip holes B, the connecting plate 308 penetrates through the second box 4 through the strip holes B and is fixedly connected with the sieving plate 303, one end of the first connecting rod 305 is hinged on the gear B302, the other end of the first connecting rod 305 is hinged on the connecting plate 308, the crushing device 2 comprises a first crushing roller 201, a first fixing rod 202, a second crushing roller 203, a second fixing rod 204, a first gear 205, a second gear 206 and a motor A207, wherein the motor A207 is fixedly arranged on the inner wall of a first box body 1, the first gear 205 is fixedly arranged at the output end of the motor A207, one end of the first crushing roller 205201 is fixedly arranged on the first gear 205, the other end of the first crushing roller 201 is fixedly arranged on the first fixing rod 202, three bearings C are arranged on the inner wall of the first box body 1, one end of the second fixing rod 204 penetrates through the second gear 206 and the second crushing roller 203 and extends to the bearings C, the second fixing rod 204 is movably connected with the first box body 1 through the two bearings C, the first gear 205 is meshed with the second gear 206, the front surface of a second box body 4 is provided with a dust removal device 5, and the dust removal device 5 can greatly reduce dust generated in the crushing and sieving processes, dust collector 5 includes second connecting rod 501, disc 502, exhaust fan 503, shower nozzle 504, the one end of second connecting rod 501 articulates on first connecting rod 305, the other end of second connecting rod 501 articulates on disc 502, disc 502 passes through connecting rod B fixed mounting on bearing B, disc 502 second box 4 swing joint, exhaust fan 503 fixed mounting is in the front of second box 4, shower nozzle 504 fixed mounting is on disc 502, conveyer belt 6 fixed mounting is in 4 inner wall both sides of second box.
The working principle is as follows: the motor B306 is fixedly arranged at the top of the second box body 4, the gear A301 is fixedly arranged at the output end of the motor B306, the gear A301 and the gear B302 are connected through a chain in a transmission way, the bearing A and the bearing B are arranged on the front surface of the second box body 4, the gear B302 is fixedly arranged on the bearing A through a connecting rod A, the gear B302 is movably connected with the second box body 4, the first fixing plate 304 and the second fixing plate 307 are both fixedly arranged on the inner wall of the second box body 4, the two sides of the first fixing plate 304 and the second fixing plate 307 are both provided with strip-shaped holes A, the caliber of the strip-shaped holes A formed in the first fixing plate 304 and the second fixing plate 307 is consistent with the caliber of the sieving plate 303, the caliber of the strip-shaped hole B formed in the front surface of the second box body 4 is consistent with the caliber of the connecting plate 308, holes with different sizes are arranged on the sieving plate 303, the holes are uniformly distributed, the two sides of the sieving plate 303 respectively penetrate through the first fixing plate 304 and the second fixing plate 307 and extend to the two sides of the first fixing plate 304 and the second fixing plate 307, the fixture block is all installed to sieve movable plate 303 both sides, and bar hole B has been seted up in the second box 4 front, and connecting plate 308 runs through second box 4 through bar hole B and moves plate 303 fixed connection with the sieve, and the one end of head rod 305 articulates on gear B302, and the other end of head rod 305 articulates on connecting plate 308 to the sieve that makes a round trip to move about realizing sieve movable plate 303.

Claims (6)

1. The utility model provides a metallurgical sieve motivation of ore, includes first box (1), reducing mechanism (2), second box (4), conveyer belt (6), its characterized in that: the screening device (3) is arranged in the second box body (4), the screening device (3) comprises a gear A (301), a gear B (302), a screening plate (303), a first fixing plate (304), a first connecting rod (305), a motor B (306), a second fixing plate (307) and a connecting plate (308), the motor B (306) is fixedly arranged at the top of the second box body (4), the gear A (301) is fixedly arranged at the output end of the motor B (306), the gear A (301) is connected with the gear B (302) through chain transmission, a bearing A and a bearing B are arranged on the front surface of the second box body (4), the gear B (302) is fixedly arranged on the bearing A through the connecting rod A, the gear B (302) is movably connected with the second box body (4), and the first fixing plate (304) and the second fixing plate (307) are both fixedly arranged on the inner wall of the second box body (4), bar holes A are formed in two sides of the first fixing plate (304) and the second fixing plate (307), two sides of the screening plate (303) penetrate through the first fixing plate (304) and the second fixing plate (307) respectively and extend to two sides of the first fixing plate (304) and the second fixing plate (307), a bar hole B is formed in the front face of the second box body (4), the connecting plate (308) penetrates through the second box body (4) through the bar hole B and is fixedly connected with the screening plate (303), one end of the first connecting rod (305) is hinged to the gear B (302), and the other end of the first connecting rod (305) is hinged to the connecting plate (308).
2. A mineral metallurgical screening machine in accordance with claim 1, wherein: the crushing device (2) comprises a first crushing roller (201), a first fixing rod (202), a second crushing roller (203), a second fixing rod (204), a first gear (205), a second gear (206) and a motor A (207), wherein the motor A (207) is fixedly arranged on the inner wall of a first box body (1), the first gear (205) is fixedly arranged at the output end of the motor A (207), one end of the first crushing roller (201) is fixedly arranged on the first gear (205), the other end of the first crushing roller (201) is fixedly arranged on the first fixing rod (202), three bearings C are arranged on the inner wall of the first box body (1), one end of the second fixing rod (204) penetrates through the second gear (206) and the second crushing roller (203) and extends to the bearings C, and the second fixing rod (204) is movably connected with the first box body (1) through the two bearings C, the first gear (205) meshes with the second gear (206).
3. A mineral metallurgical screening machine in accordance with claim 1, wherein: dust collector (5) are openly installed to second box (4), dust collector (5) include second connecting rod (501), disc (502), exhaust fan (503), shower nozzle (504), the one end of second connecting rod (501) articulates on head rod (305), and the other end of second connecting rod (501) articulates on disc (502), disc (502) are through connecting rod B fixed mounting on bearing B, disc (502) second box (4) swing joint, exhaust fan (503) fixed mounting is in the front of second box (4), shower nozzle (504) fixed mounting is on disc (502).
4. A mineral metallurgical screening machine in accordance with claim 1, wherein: the caliber of the strip-shaped hole A formed in the first fixing plate (304) and the second fixing plate (307) is the same as that of the screening plate (303), and the caliber of the strip-shaped hole B formed in the front face of the second box body (4) is the same as that of the connecting plate (308).
5. A mineral metallurgical screening machine in accordance with claim 1, wherein: the conveyor belt (6) is fixedly arranged on two sides of the inner wall of the second box body (4).
6. A mineral metallurgical screening machine in accordance with claim 1, wherein: clamping blocks are arranged on two sides of the screening plate (303).
CN202122268886.6U 2021-09-18 2021-09-18 Ore metallurgy sieve motive Active CN216419540U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122268886.6U CN216419540U (en) 2021-09-18 2021-09-18 Ore metallurgy sieve motive

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122268886.6U CN216419540U (en) 2021-09-18 2021-09-18 Ore metallurgy sieve motive

Publications (1)

Publication Number Publication Date
CN216419540U true CN216419540U (en) 2022-05-03

Family

ID=81323017

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122268886.6U Active CN216419540U (en) 2021-09-18 2021-09-18 Ore metallurgy sieve motive

Country Status (1)

Country Link
CN (1) CN216419540U (en)

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