CN210080163U - Ore belt cleaning device is adopted in iron ore exploitation - Google Patents

Ore belt cleaning device is adopted in iron ore exploitation Download PDF

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CN210080163U
CN210080163U CN201920835834.2U CN201920835834U CN210080163U CN 210080163 U CN210080163 U CN 210080163U CN 201920835834 U CN201920835834 U CN 201920835834U CN 210080163 U CN210080163 U CN 210080163U
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ore
cleaning box
cleaning
belt pulley
rotating shaft
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刘斌
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Luanping Weiyuan Mining Co Ltd
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Luanping Weiyuan Mining Co Ltd
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Abstract

The utility model discloses an ore cleaning device for producing iron ore, which comprises a discharge hole, a drain valve, a driving roller, a conveyor belt, a driven roller, a motor and a scrubbing mechanism, the iron ore production adopts an ore cleaning device, a scrubbing mechanism is arranged in a cleaning box, a driving roller drives a belt pulley to rotate, so that a first belt pulley drives a second belt pulley to rotate through a transmission belt, the second belt pulley drives a slide block to slide left and right on the inner side of a guide rail through a driving rod, thereby the slide block drives the connecting rod to move left and right on the inner side of the guide post, the connecting rod rotates through the rack drive gear, the gear rotates to drive the rotating shaft to rotate on the inner side of the bearing, thereby the rotating shaft drives the brush head to rotate, the ore is scrubbed, the traditional mode of cleaning with water is changed, and the ore is cleaned thoroughly.

Description

Ore belt cleaning device is adopted in iron ore exploitation
Technical Field
The utility model relates to an exploitation technical field is produced to the iron ore, concretely relates to iron ore is produced and is adopted ore belt cleaning device.
Background
Iron is the earliest metal found in the world, the iron is most widely used, the consumption amount of the metal is the largest, the consumption amount of the metal accounts for about 95% of the total consumption amount of the metal, iron ore is mainly used in the iron and steel industry, pig iron (the carbon content is generally more than 2%) and steel (the carbon content is generally less than 2%) with different carbon contents are smelted, after the iron ore is mined, the mined ore needs to be cleaned, and the existing cleaning device is generally washed by water, so that a large amount of water resources are wasted, the surface of the ore is uneven, and the cleaning effect is poor.
SUMMERY OF THE UTILITY MODEL
Technical problem to be solved
In order to overcome prior art not enough, provide an iron ore at present and produce and adopt ore belt cleaning device, solved current belt cleaning device and generally all use water to wash, can waste a large amount of water resources like this to ore surface unevenness, the poor problem of clearance effect.
(II) technical scheme
The utility model discloses a following technical scheme realizes: the utility model provides an ore cleaning device for iron ore production and development, which comprises a cleaning box, a controller, a button, a power supply wire, an observation port, a baffle, a discharge port, a drain valve, a driving roller, a conveyor belt, a driven roller, a motor and a scrubbing mechanism, wherein the controller is locked and fixed with the upper left end of the front end of the cleaning box through screws, the button is arranged at the upper end of the controller, the power supply wire is arranged at the left end of the cleaning box, the observation port is arranged at the middle part of the top of the cleaning box, the baffle is welded with the front end and the rear end of the inner part of the observation port of the cleaning box, the discharge port is welded with the upper side edge of the right end of the cleaning box, the discharge port is communicated with the upper middle part of the right end of the cleaning box, the drain valve is embedded at the lower side of the right end of the cleaning box and is fixedly, the motor is rotationally connected with the left end of the driving roller through a rotor arranged at the front end, the driving roller is in transmission connection with the inner side wall of the driven roller through a conveying belt, the lower end inside the cleaning box is provided with a brushing mechanism, the brushing mechanism comprises a first belt pulley, a transmission belt, a second belt pulley, a driving rod, a fixed shaft, a sliding block, a guide rail, a guide pillar and a brush mechanism, the driving roller is rotationally connected with the inner side wall of the first belt pulley, the first belt pulley is rotationally connected with the inner side wall of the second belt pulley through the transmission belt, the second belt pulley is fixedly connected with the left end of the driving rod, the driving rod is rotationally connected with the middle part of the front end of the sliding block through the fixed shaft, the sliding block is slidably connected with the inner side wall of the guide rail for guiding, the sliding block is bonded with the left end of the brush mechanism, the guide pillar, the button and the motor are electrically connected with the controller, and the controller is electrically connected with an external power supply through a power supply lead.
Further, the brush mechanism comprises a connecting rod, a rack, a rotating shaft, a gear, a bearing and a brush body, the connecting rod is fixedly connected with the right end of the sliding block, the connecting rod is slidably connected with the inner side wall of the guide pillar used for guiding, the connecting rod is fixedly connected with the left end of the rack, the rotating shaft is pivoted with the inner side wall of the bearing, the rotating shaft penetrates through the middle of the gear and is rotatably connected with the inner side wall of the middle of the gear, the rack is in transmission connection with tooth angle meshing of the upper end of the gear used for driving, the brush body is arranged at the upper end of the rotating shaft, and the brush body is arranged at the.
Furthermore, the gear and the central line of the rotating shaft are in the same vertical direction.
Furthermore, the number of the brush mechanisms is three, and the brush mechanisms are uniformly distributed along the horizontal direction of the lower end inside the cleaning box.
Furthermore, seven baffles are arranged, and the baffles are uniformly distributed along the horizontal direction of the upper end inside the cleaning box.
Furthermore, the sliding block and the central line of the connecting rod are in the same horizontal direction.
Furthermore, the guide posts are three in number, and guide cavities are formed in the upper ends of the guide posts.
Further, the motor is an AKM series, and the specific model is designed or customized according to the actual use condition.
Furthermore, the rotating shaft is made of No. 45 steel and is high in wear resistance.
(III) advantageous effects
Compared with the prior art, the utility model, following beneficial effect has:
1) for solving current belt cleaning device and generally all using water to wash, can waste a large amount of water resources like this, and to the ore surface unevenness, the poor problem of clearance effect, through having set up scrubbing mechanism at washing incasement portion, the drive roll drives the belt pulley and rotates, make first belt pulley drive the second belt pulley through driving belt and rotate, the second belt pulley drives the slider and carries out the horizontal slip in the guide rail inboard through the actuating lever, thereby make the slider drive the connecting rod and control about the guide pillar inboard, the connecting rod rotates through rack drive gear, gear revolve drives the axis of rotation and rotates inboard at the bearing, thereby make the axis of rotation drive the brush head and rotate, scrub the ore, traditional water that uses has changed carries out abluent mode, make the thorough advantage of sanitization.
Drawings
Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:
fig. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic view of the structure of the motor of the present invention;
FIG. 3 is a schematic sectional view of the brushing mechanism of the present invention;
FIG. 4 is a schematic view of a brush mechanism according to the present invention;
fig. 5 is a schematic view of the structure of the brush mechanism of the present invention.
In the figure: the cleaning machine comprises a cleaning box-1, a controller-2, a button-3, a power supply wire-4, an observation port-5, a baffle-6, a discharge port-7, a drain valve-8, a driving roller-9, a conveying belt-10, a driven roller-11, a motor-12, a brushing mechanism-13, a first belt pulley-131, a transmission belt-132, a second belt pulley-133, a driving rod-134, a fixed shaft-135, a sliding block-136, a guide rail-137, a guide post-138, a brush mechanism-139, a connecting rod-1391, a rack-1392, a rotating shaft-1393, a gear-1394, a bearing-1395 and a brush body-1396.
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.
Referring to fig. 1, 2, 3, 4 and 5, the present invention provides an ore cleaning device for producing iron ore, comprising: comprises a cleaning box 1, a controller 2, a button 3, a power supply wire 4, an observation port 5, a baffle 6, a discharge port 7, a drain valve 8, a driving roller 9, a conveyor belt 10, a driven roller 11, a motor 12 and a scrubbing mechanism 13, wherein the controller 2 is locked and fixed with the upper left end of the front end of the cleaning box 1 through screws, the button 3 is arranged at the upper end of the controller 2, the power supply wire 4 is arranged at the left end of the cleaning box 1, the observation port 5 is arranged at the middle part of the top of the cleaning box 1, the baffle 6 is welded with the front end and the rear end inside the observation port 5 of the cleaning box 1, the discharge port 7 is welded with the upper side edge of the right end of the cleaning box 1, the discharge port 7 is communicated with the middle part of the upper side of the right end of the cleaning box 1, the drain valve 8 is embedded at the lower side of the right end of the cleaning box 1, the motor 12 is rotationally connected with the left end of a driving roller 9 through a rotor arranged at the front end, the driving roller 9 is in transmission connection with the inner side wall of a driven roller 11 through a transmission belt 10, a brushing mechanism 13 is arranged at the lower end inside the cleaning box 1, the brushing mechanism 13 comprises a first belt pulley 131, a transmission belt 132, a second belt pulley 133, a driving rod 134, a fixed shaft 135, a sliding block 136, a guide rail 137, a guide post 138 and a brush mechanism 139, the driving roller 9 is rotationally connected with the inner side wall of the first belt pulley 131, the first belt pulley 131 is rotationally connected with the inner side wall of the second belt pulley 133 through the transmission belt 132, the second belt pulley 133 is fixedly connected with the left end of the driving rod 134, the driving rod 134 is rotationally connected with the middle part of the front end of a sliding block 136 through the fixed shaft 135, the sliding block 136 is slidably connected with the inner side wall of the guide rail 137 for, the brush mechanism 139 is connected with the inner side wall of the guide post 138 for guiding in a sliding way, the button 3 and the motor 12 are both electrically connected with the controller 2, and the controller 2 is electrically connected with an external power supply through a power supply lead 4.
Wherein, brush mechanism 139 includes connecting rod 1391, rack 1392, axis of rotation 1393, gear 1394, bearing 1395 and brush body 1396, connecting rod 1391 and slider 136 right-hand member fixed connection, connecting rod 1391 and the guide pillar 138 inside wall sliding connection that is used for the direction, connecting rod 1391 and rack 1392 left end fixed connection, axis of rotation 1393 and the pivot of bearing 1395 inside wall, axis of rotation 1393 runs through in the middle part of gear 1394 to axis of rotation 1393 and gear 1394 middle part inside wall rotate and be connected, rack 1392 is connected with the tooth angle meshing transmission that is used for the gear 1394 upper end of drive, axis of rotation 1393 upper end is provided with brush body 1396, brush body 1396 installs in the inside left lower extreme of washing case 1, does benefit to play and brushes the effect to the ore.
The gear 1394 and the center line of the rotating shaft 1393 are in the same vertical direction, which is favorable for the rotating shaft 1393 to rotate smoothly.
The number of the brush devices 139 is three, and the brush devices 139 are uniformly distributed along the horizontal direction of the lower end inside the cleaning tank 1, however, the number of the brush devices 139 may be more, and the brush devices may also be uniformly distributed along the horizontal direction of the lower end inside the cleaning tank 1, which is not limited herein.
Wherein, the baffle 6 is provided with seven pieces altogether, and the baffle 6 evenly distributes along the inside upper end horizontal direction of washing case 1, of course, the quantity of baffle 6 can also be more, can also evenly distribute along the inside upper end horizontal direction of washing case 1, does not limit here.
The sliding block 136 and the center line of the connecting rod 1391 are in the same horizontal direction, which is beneficial to the effect of enabling the connecting rod 1391 to move stably.
The number of the guide pillars 138 is three, and guide cavities are formed in the upper ends of the guide pillars 138, so that the guide effect is facilitated.
The motor 12 is an AKM series, and the specific model is designed or customized according to the actual use condition.
Wherein, the rotating shaft 1393 is made of No. 45 steel and has strong wear resistance.
Figure BDA0002083907250000061
According to the table, the rotating shaft 1393 is made of No. 45 steel, so that the strength, the wear resistance and the corrosion resistance of the rotating shaft are greatly enhanced, and the service life of the rotating shaft is prolonged
The guide rail 137 described in this patent is a groove or ridge made of metal or other materials, and is a device capable of bearing, fixing, guiding a moving device or equipment and reducing friction thereof, the longitudinal groove or ridge on the surface of the guide rail is used for guiding and fixing machine parts, special equipment, instruments and the like, and the guide rail is also called a slide rail, a linear guide rail and a linear slide rail, is used in the linear reciprocating motion occasion, has a rated load higher than that of a linear bearing, can bear a certain torque, and can realize high-precision linear motion under the condition of high load; the slide 136 is a mold unit that can slide in a direction perpendicular to the mold opening and closing direction or at a certain angle to the mold opening and closing direction during mold opening operation.
The working principle is as follows: before use, firstly, the iron ore is horizontally placed by using an ore cleaning device, and then a proper amount of water is added into the cleaning box 1 through the observation port 5; before use, firstly, an external power supply is connected through a power supply lead 4 to provide power for an ore cleaning device for iron ore production; secondly, pressing a button 3 at the upper end of the controller 2 to start the device, then placing ore from the left end of the conveyor belt into the cleaning box 1, electrifying a motor 12 to work, driving a driving roller 9 to rotate through a rotor arranged at the front end, driving the driving roller 9 to drive a driven roller 11 to rotate through the conveyor belt 10, so that the conveyor belt 10 transmits iron ore, simultaneously driving the belt pulley 131 to rotate through the driving roller 9, driving a second belt pulley 133 to rotate through a driving belt 132, driving the slider 136 to slide left and right inside the guide rail 137 through the driving rod 134 by the second belt pulley 133, so that the slider 136 drives the connecting rod 1391 to move left and right inside the guide post 138, the connecting rod 1391 rotates through a rack 1392 to drive the gear 1394 to rotate, driving a rotating shaft 1393 to rotate inside the bearing 1395, so that the rotating shaft 1393 drives the brush head 1396 to rotate, the ore is scrubbed, so that the traditional cleaning mode by using water is changed, and the ore is cleaned completely; and finally, discharging and collecting the cleaned iron ore through a discharging opening 7, and discharging the water in the cleaning tank 1 through a drain valve 8 after the cleaning is finished.
The basic principle and the main characteristics of the utility model and the advantages of the utility model have been shown and described above, and the utility model discloses the standard part that uses all can purchase from the market, and dysmorphism piece all can be customized according to the record of the description with the drawing, and the concrete connection mode of each part all adopts conventional means such as ripe bolt rivet among the prior art, welding, and machinery, part and equipment all adopt prior art, conventional model, and conventional connection mode in the prior art is adopted in addition to circuit connection, and the details are not repeated here.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned. Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (7)

1. An ore cleaning device for iron ore production and exploitation comprises a cleaning box (1), a controller (2), a button (3), a power supply lead (4), an observation port (5), a baffle (6), a discharge port (7), a drain valve (8), a driving roller (9), a conveyor belt (10), a driven roller (11) and a motor (12), wherein the controller (2) is locked and fixed with the upper left end of the front end of the cleaning box (1) through screws, the button (3) is arranged at the upper end of the controller (2), the power supply lead (4) is installed at the left end of the cleaning box (1), the observation port (5) is arranged in the middle of the top of the cleaning box (1), the baffle (6) is welded with the front end and the rear end of the inside of the observation port (5) of the cleaning box (1), the discharge port (7) is welded with the upper side edge of the right end of the cleaning box (1), and the discharge port (7) is communicated with the upper side of, the water discharge valve (8) is embedded into the lower side of the right end of the cleaning box (1), the water discharge valve (8) is fixedly connected with the lower side of the right end of the cleaning box (1), the motor (12) is locked and fixed with the rear side of the left end in the cleaning box (1) through a hexagon socket head cap screw, the motor (12) is rotatably connected with the left end of the driving roller (9) through a rotor arranged at the front end, the driving roller (9) is in transmission connection with the inner side wall of the driven roller (11) through a conveyor belt (10), and the lower end in the cleaning box (1) is provided with a brushing mechanism (13);
the method is characterized in that: the cleaning device is characterized by further comprising a cleaning mechanism (13), wherein the cleaning mechanism (13) comprises a first belt pulley (131), a transmission belt (132), a second belt pulley (133), a driving rod (134), a fixed shaft (135), a sliding block (136), a guide rail (137), a guide post (138) and a brush mechanism (139), the driving roller (9) is rotatably connected with the inner side wall of the first belt pulley (131), the first belt pulley (131) is rotatably connected with the inner side wall of the second belt pulley (133) through the transmission belt (132), the second belt pulley (133) is fixedly connected with the left end of the driving rod (134), the driving rod (134) is rotatably connected with the middle part of the front end of the sliding block (136) through the fixed shaft (135), the sliding block (136) is slidably connected with the guide rail (137) for guiding, the sliding block (136) is bonded with the left end of the brush mechanism (139), and the guide post (138) is fixedly connected with the left lower end inside the cleaning box (, the brush mechanism (139) is connected with the inner side wall of the guide post (138) in a sliding mode, the button (3) and the motor (12) are electrically connected with the controller (2), and the controller (2) is electrically connected with an external power supply through a power supply lead (4).
2. An ore cleaning apparatus for iron ore production according to claim 1, wherein: the brush mechanism (139) comprises a connecting rod (1391), a rack (1392), a rotating shaft (1393), a gear (1394), a bearing (1395) and a brush body (1396), the connecting rod (1391) is fixedly connected with the right end of the sliding block (136), the connecting rod (1391) is connected with the inner side wall of the guide post (138) used for guiding in a sliding way, the connecting rod (1391) is fixedly connected with the left end of the rack (1392), the rotating shaft (1393) is pivoted with the inner side wall of the bearing (1395), the rotating shaft (1393) penetrates through the middle part of the gear (1394), the rotating shaft (1393) is rotationally connected with the inner side wall of the middle part of the gear (1394), the rack (1392) is in meshing transmission connection with the tooth angle at the upper end of the gear (1394) used for driving, the upper end of the rotating shaft (1393) is provided with a brush body (1396), and the brush body (1396) is arranged at the left lower end inside the cleaning box (1).
3. An ore cleaning apparatus for iron ore production according to claim 2, wherein: the gear (1394) and the central line of the rotating shaft (1393) are in the same vertical direction.
4. An ore cleaning apparatus for iron ore production according to claim 2, wherein: the number of the brush mechanisms (139) is three, and the brush mechanisms (139) are uniformly distributed along the horizontal direction of the lower end inside the cleaning box (1).
5. An ore cleaning apparatus for iron ore production according to claim 1, wherein: seven baffles (6) are arranged, and the baffles (6) are uniformly distributed along the horizontal direction of the upper end inside the cleaning box (1).
6. An ore cleaning apparatus for iron ore production according to claim 1, wherein: the sliding block (136) and the central line of the connecting rod (1391) are in the same horizontal direction.
7. An ore cleaning apparatus for iron ore production according to claim 1, wherein: the number of the guide columns (138) is three, and guide cavities are formed in the upper ends of the guide columns (138).
CN201920835834.2U 2019-06-04 2019-06-04 Ore belt cleaning device is adopted in iron ore exploitation Active CN210080163U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111644416A (en) * 2020-06-12 2020-09-11 姜国英 Ore machining cleaning equipment

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111644416A (en) * 2020-06-12 2020-09-11 姜国英 Ore machining cleaning equipment

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