Mineral concentrating machine

By employing laminar flow tumbling anti-caking mineral processing technology, which combines gravity and water flow, the problem of handling ultrafine minerals has been solved, achieving efficient mineral separation and recovery and improving the practicality of the mineral processing machine.

CN223847113UActive Publication Date: 2026-01-30SHICHENG COUNTY JINCHUAN MINERAL PROCESSING EQUIP MFG CO LTD
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Patent Information

Application Number
CN202520288551.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-24
Publication Date
2026-01-30
Estimated Expiration
2035-02-24

AI Technical Summary

Technical Problem

Existing technologies are difficult to process ultrafine minerals efficiently, leading to environmental pollution and resource waste. Furthermore, water-washing gravity separation equipment is prone to tailings or incomplete washing when processing ultrafine minerals.

Method used

The laminar flow tumbling anti-caking mineral processing technology is adopted. By adjusting the angle of the grid belt and the direction of water flow, the mineral slurry is made to tumble, disperse and sink on the grid belt by combining gravity and water flow, so as to achieve precise separation and recovery of heavy minerals.

Benefits of technology

This improves the practicality of mineral processing machines, enabling efficient loosening and settling of ultrafine minerals, achieving precise separation and recovery, and reducing environmental pollution and resource waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a mineral concentrating machine, which belongs to the technical field of ore treatment and comprises a concentrate receiving hopper and a push plate. During use, control switches of the two driving wheels are turned on, the cell belt transports heavy minerals to the topmost end from bottom to top, flushing water sprayed out of the backflushing water pipe flushes the driving wheels, the backflushing water is sprayed out of the backflushing water pipe, the backflushing water is sprayed out of the backflushing water pipe, and then the heavy minerals are conveyed to the backflushing water pipe through the backflushing water pipe, so that the heavy minerals are conveyed to the backflushing water pipe through the backflushing water pipe. For example, table tennis balls go down stairs naturally and efficiently, the resistance of the heavy ores is stable, round and slow due to the upwarp gradient, superfine ores just reach a separation critical line, cannot be taken away by water and are discharged through a discharging pipe, and the purpose of washing and recycling the concentrates is achieved, so that during mineral separation, through the laminar flow rolling anti-hardening mineral separation technology, the mineral separation efficiency is improved, and the mineral separation efficiency is improved. Hardened minerals are accelerated, amplified, loosened and sunk, washing is clean and reaches the standard, and meanwhile tailings can be efficiently recycled.
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Description

TECHNICAL FIELD

[0001] The utility model relates to ore processing field especially relates to a mineral concentrator. BACKGROUND

[0002] The concentrator is a kind of equipment for ore processing, and is widely used in mining, metallurgy, chemical industry and other industries. Its main function is to separate useful minerals and waste minerals according to the physical and chemical properties of ore. Through different ore dressing methods, the concentrator can effectively improve the grade of ore, so as to provide high-quality raw materials for subsequent smelting and processing.

[0003] In the prior art, for example, the utility model discloses a concentrator, which comprises a rack, a large belt pulley, a driving belt pulley, a belt, a mine inlet, a mine screen, a water inlet, a water tank, a fine ore inlet and a waste outlet. A small chain wheel (7) is installed on the opposite side of the large belt pulley (5), and the small chain wheel (7) is connected with a large chain wheel (10) through a chain (8). The large chain wheel is connected with a worm gear (9) through a power output shaft (11), and the other end of the worm gear is fixed on a movable ore storage box (12). The movable ore storage box and the water tank (22) are connected as a whole through a water pressure movable device (21). The movable ore storage box is connected with the water tank (22) by a tensioning device (18). The movable ore storage box is provided with a partition (15), a waste tank (16), a coarse ore bucket (25), a plug-in plate (19) and a coarse ore inlet (20). The concentrator made by the above-mentioned method has the advantages of energy saving, fast ore dressing speed, low cost, small size, convenient use, and can simultaneously select coarse ore and fine ore, and can also select one kind of ore.

[0004] As described above, ultra-fine minerals (200-800 mesh) and tailings exist widely in China, and now they are in a state of overpopulation and pollution of the environment. However, they contain many useful minerals. Because the minerals are too fine,

[0005] It is extremely difficult to process, and most of the current water washing gravity ore dressing equipment is afraid of it. If the water is too much, the tailings are easy to run, and if the water is too little, the washing and selection are not clean enough to meet the standard. If there is a kind of method, the tailings can be efficiently recycled, economic benefits are created, and environmental pollution is controlled. UTILITY MODEL CONTENTS

[0006] The mineral concentrator provided by the utility model can accelerate the loosening, sinking and re-loosening and sinking of minerals during ore dressing, form precise sinking of heavy minerals, improve the practicability of the device, and adjust the inclination angle to make the machine suitable for more complex and changeable minerals when the device is used.

[0007] In order to achieve the above object, the utility model discloses the following technical scheme: a mineral concentrator, the concentrator includes:

[0008] Concentrate receiving hopper and push plate;

[0009] Support frame, set up in one side of the concentrate receiving hopper, and one side of support frame is equipped with two drive wheels, and the control switch of two drive wheels is opened, and then two drive wheels rotate counterclockwise, further make the groove belt move from below to above;

[0010] Adjusting mechanism, set up on the outer surface of the concentrate receiving hopper, the angle of groove belt can be adjusted through adjusting mechanism;

[0011] Groove belt, set up on the outer surface of two drive wheels, and both sides of groove belt are fixedly provided with skirt, and the two skirts can prevent the ore pulp from flowing out of the groove belt;

[0012] Multiple fixed blocks, fixedly arranged on one side of the concentrate receiving hopper, and a plurality of fixed blocks are provided with backflushing water pipes on the inner wall, and the external pipeline is connected through the water inlet pipe, and water is injected into the water inlet pipe, and the water is transported to the inside of multiple flushing water pipes and the inside of backflushing water pipes through the connecting pipe, and the two fixed blocks support the backflushing water pipes;

[0013] Connecting pipe, set up in one end of the backflushing water pipe, and the outer surface of the connecting pipe is provided with a flushing water pipe, and the two sides of the groove belt are sprayed through multiple flushing water pipes and backflushing water pipes, and the minerals are washed.

[0014] As a further improvement of the utility model: one side of the support frame is fixedly provided with two mounting plates, and a material bin is mounted on the opposite side of the two mounting plates, a separation plate is fixedly arranged on the inner wall of the concentrate receiving hopper, a discharge pipe is fixedly embedded on one side of the separation plate, a tailing receiving hopper is fixedly arranged on one side of the concentrate receiving hopper, and the two mounting plates support the material bin, so that the material bin is fixed above the groove belt, the ore pulp is poured into the inside of the material bin, the concentrate receiving hopper is divided into two parts by the separation plate, the superfine ore is discharged through the discharge pipe due to the blockage of the separation plate, and the tailings are discharged through the tailing receiving hopper, so that the purpose of washing and selecting and recovering the concentrate is achieved.

[0015] As a further improvement of the utility model: the adjusting mechanism includes a vertical support, a plurality of adjusting screws are threadedly embedded on one side of the vertical support, and an adjusting hand wheel is fixedly sleeved on the outer surface of each adjusting screw, the adjusting hand wheels are rotated respectively, the adjusting screws are driven to move up and down, the two sides of the support frame are driven to be in different positions, the angle of the groove belt is further adjusted, and then the inclination angle can be adjusted to make the machine suitable for more complex and variable minerals.

[0016] As a further improvement of the utility model: the one end of multiple adjusting screw rod is fixedly provided with a tow chain, the one end of multiple tow chain is fixedly arranged on the one side of support frame, the one side of push plate is fixedly arranged on the one side of concentrate receiving hopper, under the back and forth movement of push plate, the concentrate receiving hopper is pushed to shake back and forth, through the connection of multiple tow chain and support frame, the overall shaking of concentrate receiving hopper is convenient, the mineral loose, sinking, loose sinking again is accelerated, and the accurate sinking of heavy mineral is formed.

[0017] As a further improvement of the utility model: the adjusting mechanism includes two adjusting rods, the two adjusting rods are arranged on the two sides of support frame, the one side of two adjusting rods is fixedly provided with an adjusting hand wheel, the outer surface of two adjusting rods is slidably provided with a sitting support, the both sides of sitting support are provided with notches, the inner wall of two notches is slidably provided with two adjusting rods, two adjusting rods can rotate on two notches, by counterclockwise rotating two adjusting hand wheels, two adjusting rods are slid in two notches, the angle of support frame is further adjusted, the angle of grid groove belt is further adjusted, by clockwise rotating two adjusting hand wheels, two adjusting rods are fixed in two notches, the position of grid groove belt is further fixed, and the inclination angle is adjusted, so that the machine is suitable for more complex mineral.

[0018] As a further improvement of the utility model: the one side of sitting support is fixedly provided with two horizontal shafts, the outer surface of two horizontal shafts is movably sleeved with a sleeve rod, the one side of two sleeve rods is fixedly arranged on the bottom of support frame close to the two sides, two sleeve rods can slide on the outer surface of two horizontal shafts, and the one side of support frame can rotate.

[0019] As a further improvement of the utility model: the bottom of sitting support is fixedly provided with multiple bosses, the inner wall of multiple bosses is installed with multiple pulleys, the outer surface of multiple pulleys is provided with a track, the one side of push plate is fixedly arranged on the one side of sitting support, multiple pulleys can roll on the outer surface of track, under the back and forth movement of push plate, support frame is pushed to move back and forth, the grid groove belt is further shaken back and forth, multiple pulleys facilitate the movement of sitting support, so that the mineral loose, sinking, loose sinking again is accelerated, the accurate sinking of heavy mineral is formed, and the practicability of the device is improved.

[0020] As a further improvement of the utility model: the one end of push plate is fixedly provided with a reciprocating speed reducer, the one side of reciprocating speed reducer is fixedly provided with a bottom plate, the one side of bottom plate is installed with a driving motor, under the operation of reciprocating speed reducer, push plate is driven to move back and forth, the grid groove belt is further moved back and forth, the mineral loose, sinking, loose sinking again is accelerated, the accurate sinking of heavy mineral is formed, and the practicability of the device is improved.

[0021] As a further improvement of the utility model: the output shaft of the driving motor is provided with a first belt pulley, the outer surface of the first belt pulley is provided with a belt, the inner wall of the belt is provided with a second belt pulley, by opening the external power switch of the driving motor, the output shaft of the driving motor drives the first belt pulley to rotate, further drives the second belt pulley to rotate through the belt, and further drives the connecting rod to rotate through the second belt pulley.

[0022] As a further improvement of the utility model: the inner wall of the second belt pulley is fixedly embedded with a connecting rod, the connecting rod is fixedly arranged on the driving shaft of the reciprocating speed reducer, and the connecting rod drives the driving shaft in the reciprocating speed reducer to rotate when rotating, and further drives the push plate to move back and forth through the reciprocating speed reducer.

[0023] Compared with the prior art, the utility model has the advantages and positive effects that,

[0024] 1、The utility model discloses, open the control switch of two driving wheels, and further make two driving wheels rotate counterclockwise, further make the groove belt move from below to above, connect the external pipeline through the water inlet pipe, inject water in the inside of the water inlet pipe, and water is transported to the inside of a plurality of flushing water pipes and the inside of the backflushing pipe through the connecting pipe, two fixed blocks have the supporting effect to the backflushing pipe, spray water to both sides of the groove belt through a plurality of flushing water pipes and backflushing pipes, at this moment, pour the ore pulp in the inside of the stock bin, and the ore pulp evenly and constant speed drops on the groove belt from the inside of the stock bin and adds material, can prevent the ore pulp from flowing out on the groove belt through two skirt edges, the ore pulp flows from top to bottom under the driving of the water flow, because of gravity and water, the ore pulp generates the downward flow force, the groove belt is the stair shape, the heavy mineral meets the steps on the groove belt in this process, the uphill resistance formed gradually sinks, makes the ore pulp particle like ping -pong ball to form countless times of tumbling, dispersing and sinking movement when going downstairs, the reciprocating speed reducer at the side does reciprocating motion, and the tumbling, dispersing and sinking work of high frequency are added again, the smooth gradient of the upturned smooth slope makes the heavy mineral resistance stable and gentle, and the light and heavy minerals just reach the separation critical line, so as not to be taken away by water, the groove belt transports the heavy mineral to the top end from below to above, and the washing water sprayed from the backflushing pipe washes the groove belt, and the heavy mineral is washed into the concentrate receiving hopper inside, is discharged through the discharge pipe, and the lighter ore pulp and water flow into the tailing receiving hopper inside and are discharged, reach the washing and selecting recovery concentrate purpose, so that when carrying out mineral separation, the laminar flow tumbling anti -caking mineral separation technology is used, the caked mineral is accelerated and enlarged to loosen the sinking effect, and the practicability of the mineral separator is improved.

[0025] 2. The utility model discloses a drive motor external power switch is opened, and then the output shaft of drive motor drives first pulley to rotate, further through the belt drive second pulley rotation, further make second pulley drive connecting rod rotation, the connecting rod rotation drives the internal drive shaft of reciprocating speed reducer to rotate, further make reciprocating speed reducer drive push board to and fro removal, when reciprocating speed reducer operation, drive push board to and fro removal, further make the groove belt to and fro removal, thereby when mineral separation can accelerate mineral loose, sink, loose sink again, form heavy mineral precision sinking, improve the practicality of device.

[0026] 3. The utility model discloses the angle position of groove belt is further adjusted through the rotation of multiple adjusting handwheels in different directions, and then when using the device, the inclination angle can be adjusted to make the machine suitable for more complex and changeable mineral. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 A side view three-dimensional structure schematic diagram of the vertical support of the mineral concentrator is provided for the utility model.

[0028] Figure 2 A side view three-dimensional structure schematic diagram of the vertical support of the mineral concentrator is provided for the utility model.

[0029] Figure 3 A side view three-dimensional structure schematic diagram of the vertical support of the mineral concentrator is provided for the utility model.

[0030] Figure 4 A side view three-dimensional structure schematic diagram of the vertical support of the mineral concentrator is provided for the utility model.

[0031] Figure 5 A side view three-dimensional structure schematic diagram of the vertical support of the mineral concentrator is provided for the utility model.

[0032] Figure 6 A side view three-dimensional structure schematic diagram of the vertical support of the mineral concentrator is provided for the utility model.

[0033] Figure 7 A side view three-dimensional structure schematic diagram of the vertical support of the mineral concentrator is provided for the utility model.

[0034] Figure 8 A side view three-dimensional structure schematic diagram of the vertical support of the mineral concentrator is provided for the utility model.

[0035] Figure 9 A side view three-dimensional structure schematic diagram of the vertical support of the mineral concentrator is provided for the utility model. Figure 4

[0036] Figure 10 ​The utility model provides a mineral beneficiation machine Figure 6 The B amplification stereogram structure schematic diagram in.

[0037] Figure 11 The utility model provides a mineral beneficiation machine Figure 6 The C amplification stereogram structure schematic diagram in.

[0038] Figure 12 The utility model provides a mineral beneficiation machine Figure 6 The D amplification stereogram structure schematic diagram in.

[0039] Legend: 1, concentrate receiving hopper, 2, support frame, 201, drive wheel, 202, grid slot belt, 203, skirt, 204, fixed block, 205, backflushing water pipe, 206, water inlet pipe, 207, connecting pipe, 208, flushing water pipe, 209, mounting plate, 210, bin, 211, separation plate, 212, tailings receiving hopper, 213, discharge pipe, 3, adjusting mechanism, 3001, vertical support, 302, adjusting hand wheel, 3003, adjusting screw rod, 3004, drag chain, 3011, adjusting rod, 3012, notch, 3013, seat support, 3014, sleeve rod, 3015, cross shaft, 3016, boss, 3017, pulley, 3018, track, 4, bottom plate, 401, reciprocating motion speed reducer, 402, push plate, 403, drive motor, 404, first belt pulley, 405, belt, 406, second belt pulley, 407, connecting rod. DETAILED DESCRIPTION

[0040] In order to more clearly understand the above purpose, features and advantages of the utility model, the utility model is further described below in conjunction with the drawings and examples.It should be explained that the embodiment of the application and the features in the example can be combined mutually in the case of no conflict.

[0041] In the following description, a lot of specific details are set forth in order to fully understand the utility model, but the utility model can also be implemented in other ways different from the description, therefore, the utility model is not limited to the specific embodiment disclosed in the following disclosure.

[0042] Please refer to Figures 1 to 12The embodiment provides a mineral beneficiation machine, which comprises a concentrate receiving hopper 1 and a push plate 402; a support frame 2 arranged on one side of the concentrate receiving hopper 1, and two driving wheels 201 are arranged on one side of the support frame 2; an adjusting mechanism 3 arranged on the outer surface of the concentrate receiving hopper 1; a groove belt 202 arranged on the outer surface of the two driving wheels 201, and skirt edges 203 are fixedly arranged on the two sides of the groove belt 202; a plurality of fixed blocks 204 fixedly arranged on one side of the concentrate receiving hopper 1, and backflushing water pipes 205 are arranged on the inner walls of the plurality of fixed blocks 204; a connecting pipe 207 arranged on one end of the backflushing water pipe 205, and a flushing water pipe 208 is arranged on the outer surface of the connecting pipe 207; two mounting plates 209 fixedly arranged on one side of the support frame 2, a material bin 210 is arranged on the opposite side of the two mounting plates 209, a separation plate 211 is fixedly arranged on the inner wall of the concentrate receiving hopper 1, a discharge pipe 213 is fixedly arranged on one side of the separation plate 211, and a tailing receiving hopper 212 is fixedly arranged on one side of the concentrate receiving hopper 1.

[0043] In use, the control switch of the two drive wheels 201 is opened, and the two drive wheels 201 rotate counterclockwise, further making the grid belt 202 move from bottom to top, connecting the external pipeline through the water inlet pipe 206, injecting water in the inside of the water inlet pipe 206, and the water is transported to the inside of the plurality of flushing water pipes 208 and the inside of the backflushing water pipe 205 through the connecting pipe 207, the two fixed blocks 204 support the backflushing water pipe 205, and the plurality of flushing water pipes 208 and the backflushing water pipe 205 spray water on both sides of the grid belt 202, at this time, the ore pulp is poured into the inside of the stock bin 210, the two mounting plates 209 support the stock bin 210, and the stock bin 210 is fixed above the grid belt 202, and then the ore pulp uniformly and at a constant speed falls from the inside of the stock bin 210 to the grid belt 202 for feeding, the two skirts 203 can prevent the ore pulp from flowing out of the grid belt 202, and the ore pulp flows from top to bottom under the driving of the water flow, because of the gravity and the water, the ore pulp generates downward flow force, the grid belt 202 is in a stair shape, and the heavy minerals meet the upward steps of the grid belt 202 in the process, and the formed uphill resistance gradually sinks, so that the ore pulp particles form countless tumbling, dispersing and sinking movements like ping-pong balls descending the stairs, and the side swing decelerator reciprocates, and the tumbling, dispersing and sinking work is superimposed again, the upward smooth slope makes the heavy mineral resistance smooth and gentle, so that the heavy and light minerals just reach the separation critical line, and are not taken away by the water, the grid belt 202 transports the heavy minerals to the top end from bottom to top, and the flushing water sprayed by the backflushing water pipe 205 washes the grid belt 202, and the heavy minerals are washed into the concentrate receiving hopper 1, and are discharged through the discharge pipe 213, while the lighter ore pulp and water flow into the tailings receiving hopper 212 and are discharged, so as to achieve the purpose of washing and recovering the concentrate, so that when the ore is selected, the laminar flow tumbling anti-caking ore dressing technology is used to accelerate and enlarge the loosening and sinking effect of the caked ore, and the practicality of the ore dressing machine is improved.

[0044] Please refer to Figure 1 、 Figure 2 、 Figure 3 and Figure 4In one embodiment, the adjusting mechanism 3 comprises a vertical support 3001, one side of the vertical support 3001 is threadedly embedded with a plurality of adjusting screws 3003, the outer surface of each adjusting screw 3003 is fixedly sleeved with an adjusting hand wheel 302, one end of each adjusting screw 3003 is fixedly provided with a drag chain 3004, one end of each drag chain 3004 is fixedly provided on one side of the support frame 2, the push plate 402 is fixedly provided on one side of the concentrate receiving hopper 1, the adjusting mechanism 3 can adjust the angle of the lattice groove belt 202, by rotating the adjusting hand wheels 302 respectively, the adjusting screws 3003 are driven to move up and down, further driving the two sides of the support frame 2 to be in different positions, further adjusting the angle of the lattice groove belt 202, and then adjusting the inclination angle to make the machine suitable for more complex and variable minerals, under the back-and-forth movement of the push plate 402, the concentrate receiving hopper 1 is pushed to shake back and forth, by connecting the drag chains 3004 and the support frame 2 together, the overall shaking of the concentrate receiving hopper 1 is facilitated, the mineral is accelerated to loosen, sink, loosen again and sink, the heavy mineral is accurately sunk, and the practicability of the device is improved.

[0045] Please refer to Figure 5 、 Figure 6 、 Figure 7 、 Figure 8 、 Figure 10 、 Figure 11 and Figure 12In another embodiment, the adjusting mechanism 3 comprises two adjusting rods 3011, which are arranged on the two sides of the support frame 2 respectively, and one adjusting hand wheel 302 is fixedly arranged on one side of each adjusting rod 3011. A sitting support 3013 is slidably arranged on the outer surface of each adjusting rod 3011, and a notch 3012 is formed on the two sides of the sitting support 3013. Each adjusting rod 3011 is slidably arranged on the inner wall of the two notches 3012. Two horizontal shafts 3015 are fixedly arranged on one side of the sitting support 3013, and a sleeve rod 3014 is movably sleeved on the outer surface of each horizontal shaft 3015. The sleeve rod 3014 is fixedly arranged on the bottom of the support frame 2 near the two sides. A plurality of bosses 3016 are fixedly arranged on the bottom of the sitting support 3013, and a pulley 3017 is installed on the inner wall of each boss 3016. An track 3018 is arranged on the outer surface of the pulley 3017. One side of the push plate 402 is fixedly arranged on one side of the sitting support 3013. The two sleeve rods 3014 can slide on the outer surfaces of the two horizontal shafts 3015, and one side of the support frame 2 can rotate. The two adjusting rods 3011 can rotate on the two notches 3012. By counterclockwise rotating the two adjusting hand wheels 302, the two adjusting rods 3011 slide in the two notches 3012, the angle of the support frame 2 is adjusted, the angle of the groove belt 202 is adjusted, and the position of the groove belt 202 is fixed by clockwise rotating the two adjusting hand wheels 302. The inclination angle can be adjusted to make the machine suitable for more complex and variable minerals. The plurality of pulleys 3017 can roll on the outer surface of the track 3018. The push plate 402 moves back and forth to push the support frame 2 to move back and forth, and the groove belt 202 moves back and forth. The plurality of pulleys 3017 facilitate the movement of the sitting support 3013, so as to accelerate the loosening, sinking, and loosening and sinking of the minerals, form precise sinking of heavy minerals, and improve the practicality of the device.

[0046] Please refer to Figures 1 to 12 In one embodiment, one end of the push plate 402 is fixedly provided with a reciprocating speed reducer 401, and the other end of the push plate 402 is fixedly provided with the support frame 2. The reciprocating speed reducer 401 is fixedly arranged on one side of the bottom plate 4, and the driving motor 403 is installed on one side of the bottom plate 4. When the reciprocating speed reducer 401 operates, the push plate 402 moves back and forth, and the groove belt 202 moves back and forth. The loosening, sinking, and loosening and sinking of the minerals are accelerated, the precise sinking of the heavy minerals is formed, and the practicality of the device is improved.

[0047] Please refer to Figures 1 to 12In one embodiment, the output shaft of the driving motor 403 is provided with a first pulley 404, the outer surface of the first pulley 404 is provided with a belt 405, the inner wall of the belt 405 is provided with a second pulley 406, by opening the external power supply switch of the driving motor 403, the output shaft of the driving motor 403 drives the first pulley 404 to rotate, the second pulley 406 is further driven to rotate through the belt 405, and the second pulley 406 further drives the connecting rod 407 to rotate.

[0048] Please refer to Figures 1 to 12 In one embodiment, the inner wall of the second pulley 406 is fixedly embedded with a connecting rod 407, the connecting rod 407 is fixedly arranged on the driving shaft of the reciprocating speed reducer 401, the connecting rod 407 drives the driving shaft inside the reciprocating speed reducer 401 to rotate when rotating, and the reciprocating speed reducer 401 further drives the push plate 402 to move back and forth.

[0049] Working principle: in use, open the control switch of the two drive wheels 201, and then make the two drive wheels 201 rotate counterclockwise, further make the groove belt 202 move from bottom to top, connect the external pipeline through the water inlet pipe 206, inject water in the inside of the water inlet pipe 206, the water is transported to the inside of the plurality of flushing water pipes 208 and the inside of the backflushing water pipe 205 through the connecting pipe 207, the two fixed blocks 204 support the backflushing water pipe 205, spray water to both sides of the groove belt 202 through the plurality of flushing water pipes 208 and the backflushing water pipe 205, at this time, pour the ore pulp into the inside of the stock bin 210, the two mounting plates 209 support the stock bin 210, make the stock bin 210 fixed above the groove belt 202, and then the ore pulp is uniformly and equally speedily lowered from the inside of the stock bin 210 to the groove belt 202, the two skirts 203 can prevent the ore pulp from flowing out of the groove belt 202, the ore pulp flows from top to bottom under the driving of water flow, the heavy minerals meet the steps on the groove belt 202 in the process, the uphill resistance formed gradually sinks, the groove belt 202 transports the heavy minerals to the top end from bottom to top, the washing water sprayed from the backflushing water pipe 205 washes the drive wheels 201, and the heavy minerals are washed into the concentrate receiving hopper 1, like ping pong balls going down the stairs naturally and efficiently, the upward slope makes the heavy mineral resistance smooth and gentle, so that the superfine minerals just reach the separation critical line and are not taken away by water, open the external power switch of the drive motor 403, then the output shaft of the drive motor 403 drives the first pulley 404 to rotate, further drives the second pulley 406 to rotate through the belt 405, further makes the second pulley 406 drive the connecting rod 407 to rotate, the connecting rod 407 drives the drive shaft in the reciprocating speed reducer 401 to rotate when rotating, further makes the reciprocating speed reducer 401 drive the push plate 402 to move back and forth, the reciprocating speed reducer 401 operates to drive the push plate 402 to move back and forth, further makes the groove belt 202 move back and forth, accelerates the ore to loosen, sink, loosen and sink again, forms accurate sinking of the heavy minerals, improves the practicability of the device, is discharged through the discharge pipe 213, and the purpose of washing and recovering concentrate is achieved, so that when the ore dressing is carried out, the layer flow tumbling anti-caking ore dressing technology is used to accelerate and enlarge the loosening and sinking effect of the caked minerals, and the practicability of the ore dressing machine is improved.

[0050] The above is only a preferred embodiment of the present application, and does not limit the present application in other forms. Any person skilled in the art can modify or change the above disclosed technical content to equivalent embodiments applied to other fields, but any simple modification, equivalent change and modification made on the basis of the technical essence of the present application to the above embodiments still belongs to the protection scope of the technical scheme of the present application.

Claims

1. A mineral concentrator, characterised in that, The beneficiation machine comprises: A concentrate receiving hopper (1) and a push plate (402); A support frame (2) is arranged on one side of the concentrate receiving hopper (1), and two drive wheels (201) are mounted on one side of the support frame (2); An adjusting mechanism (3) is arranged on the outer surface of the concentrate receiving hopper (1); A lattice belt (202) is arranged on the outer surface of the two drive wheels (201), and skirts (203) are fixedly arranged on the two sides of the lattice belt (202); A plurality of fixing blocks (204) are fixedly arranged on one side of the concentrate receiving hopper (1), and a backflushing water pipe (205) is mounted on the inner wall of the fixing blocks (204); A connecting pipe (207) is arranged at one end of the backflushing water pipe (205), and a flushing water pipe (208) is mounted on the outer surface of the connecting pipe (207).

2. A mineral concentrator as claimed in claim 1, characterised in that: Two mounting plates (209) are fixedly arranged on one side of the support frame (2), a material bin (210) is mounted on the opposite side of the two mounting plates (209), a separation plate (211) is fixedly arranged on the inner wall of the concentrate receiving hopper (1), a discharge pipe (213) is fixedly embedded on one side of the separation plate (211), and a tailing receiving hopper (212) is fixedly arranged on one side of the concentrate receiving hopper (1).

3. A mineral concentrator as claimed in claim 1, characterised in that: The adjusting mechanism (3) comprises a vertical support (3001), a plurality of adjusting screws (3003) are threadedly embedded on one side of the vertical support (3001), and an adjusting hand wheel (302) is fixedly sleeved on the outer surface of each adjusting screw (3003).

4. A mineral concentrator as claimed in claim 3, characterised in that: One end of each adjusting screw (3003) is fixedly provided with a drag chain (3004), one end of each drag chain (3004) is fixedly arranged on one side of the support frame (2), and the push plate (402) is fixedly arranged on one side of the concentrate receiving hopper (1).

5. A mineral concentrator as claimed in claim 1, characterised in that: The adjusting mechanism (3) comprises two adjusting rods (3011), the two adjusting rods (3011) are arranged on the two sides of the support frame (2), an adjusting hand wheel (302) is fixedly arranged on one side of each adjusting rod (3011), a sitting support (3013) is slidingly arranged on the outer surface of each adjusting rod (3011), notches (3012) are formed in the two sides of the sitting support (3013), and each adjusting rod (3011) is slidingly arranged on the inner wall of each notch (3012).

6. A mineral concentrator as claimed in claim 5 wherein: Two horizontal shafts (3015) are fixedly arranged on one side of the sitting support (3013), a sleeve rod (3014) is movably sleeved on the outer surface of each horizontal shaft (3015), and one end of each sleeve rod (3014) is fixedly arranged on the bottom of the support frame (2) close to the side.

7. A mineral concentrator as claimed in claim 6, characterised in that: A plurality of bosses (3016) are fixedly arranged on the bottom of the sitting support (3013), a pulley (3017) is mounted on the inner wall of each boss (3016), a track (3018) is arranged on the outer surface of each pulley (3017), and one side of the push plate (402) is fixedly arranged on one side of the sitting support (3013).

8. A mineral concentrator as claimed in claim 1, characterised in that: One end of the push plate (402) is fixedly provided with a reciprocating speed reducer (401), one side of the reciprocating speed reducer (401) is fixedly provided with a bottom plate (4), one side of the bottom plate (4) is mounted with a driving motor (403).

9. A mineral concentrator as claimed in claim 8, characterised in that: The output shaft of the driving motor (403) is provided with a first belt pulley (404), the outer surface of the first belt pulley (404) is provided with a belt (405), and the inner wall of the belt (405) is provided with a second belt pulley (406).

10. A mineral concentrator as claimed in claim 9, characterised in that: The inner wall of the second belt pulley (406) is fixedly embedded with a connecting rod (407), and the connecting rod (407) is fixedly arranged on the driving shaft of the reciprocating speed reducer (401).

Citation Information

Patent Citations

  • Ore selecting machine

    CN100423849C