CN217516072U - High-efficient transportation equipment of non-metallic ore deposit - Google Patents

High-efficient transportation equipment of non-metallic ore deposit Download PDF

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Publication number
CN217516072U
CN217516072U CN202221771659.3U CN202221771659U CN217516072U CN 217516072 U CN217516072 U CN 217516072U CN 202221771659 U CN202221771659 U CN 202221771659U CN 217516072 U CN217516072 U CN 217516072U
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China
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sets
movable block
supporting seat
rotation
axis
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CN202221771659.3U
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Chinese (zh)
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高军荣
高书明
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Shijiazhuang Oriental Sillimanite Co ltd
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Shijiazhuang Oriental Sillimanite Co ltd
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Abstract

The utility model discloses a high-efficient haulage equipment in non-metallic ore deposit relates to ore transportation field, including a supporting seat, the supporting seat top is connected with adjusting part, and adjusting part is including mounting bracket, stand, activity groove, movable block, first axis of rotation, spout, slider, second axis of rotation, bolt and fixed axle, and adjusting part can adjust the inclination of conveyer belt, the scrubbing subassembly is installed to supporting seat one side, and the residual ore powder on belt surface can be got rid of to the scrubbing subassembly. The utility model discloses an adjusting part of the installation that sets up is through the movable block that slides from top to bottom to the inclination of the first axis of rotation of control utilizes the bolt fixed with the movable block to suitable position, makes the inclination of first axis of rotation fixed, thereby the inclination of control conveyer belt, the inclination of conveyer belt both sides is favorable to preventing the ore landing in the transportation, improves the transportation volume of ore, increases production efficiency, strengthens the flexibility of device.

Description

High-efficient transportation equipment of non-metallic ore deposit
Technical Field
The utility model relates to an ore transportation field specifically is a high-efficient transportation equipment of non-metallic ore deposit.
Background
Mine transportation is divided into the following parts according to transportation equipment: rail transportation such as mine locomotive transportation and steel wire rope transportation; trackless transport such as mining conveyor transport, hydraulic transport and cableway transport, underground ore transport refers to transport from a stope face to a mine pit or a mining area, ore is loaded in a stage transport roadway and forms a train, the ore is transported to the mine pit by electric locomotive traction, or is transported by a conveyor, ore hoisting refers to transport from a shaft bottom yard to a well head, and a winch, a steel wire rope, a hoisting container, a belt conveyor or a dump truck is used, wherein the belt conveyor is widely used in ore transport.
The patent number is CN211309843U and discloses an effectual integral conveying equipment that has solved of mine is comparatively heavy when the ore deposit way installation, inflexible problem, but current patent number CN211309843U does not set up the device of adjusting the belt inclination, needs a high-efficient haulage equipment of non-metallic ore for this reason urgently.
SUMMERY OF THE UTILITY MODEL
Based on this, the utility model aims at providing a high-efficient haulage equipment in non-metallic ore deposit to the current patent number CN211309843U patent of solution does not set up the device technical problem who adjusts the belt inclination.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a high-efficient haulage equipment in non-metallic ore deposit, includes the supporting seat, the supporting seat top is connected with adjusting part, and adjusting part is including mounting bracket, stand, movable groove, movable block, first axis of rotation, spout, slider, second axis of rotation, bolt and fixed axle, the inclination of conveyer belt can be adjusted to adjusting part, the scrubbing subassembly is installed to supporting seat one side, and the scrubbing subassembly can remove the remaining ore deposit powder on belt surface including first motor, connecting axle, cleaning brush and scrubbing subassembly.
Preferably, the mounting bracket is located the supporting seat top, and stand quantity is two sets of, and is two sets of the stand is located mounting bracket top symmetry setting, the activity groove quantity is two sets of, and is two sets of the activity groove is located inside two sets of stands respectively.
Preferably, the movable block quantity is two sets of, and is two sets of the movable block is located two sets of movable inslot portions respectively, first axis of rotation quantity is two sets of, and is two sets of first axis of rotation is located the one end of movable block respectively, movable block one end is connected with first articulated seat, and movable block and first axis of rotation rotate through first articulated seat.
Preferably, spout and slider quantity are two sets ofly, and are two sets of the spout is located inside the fixed axle both sides, the slider is located inside the spout, and is two sets of the articulated seat of second is all connected to slider one end, and is two sets of slider and two sets of first axis of rotation rotate through the articulated seat of two sets of second.
Preferably, the second axis of rotation is located the fixed axle outside and rotates, bolt quantity is the multiunit, and all seted up on movable block and the stand with bolt assorted screw, adjusting part quantity is the multiunit, the multiunit adjusting part is located the equidistant distribution on the supporting seat.
Preferably, the first motor is located outside the supporting seat, the connecting shaft is located at the output end of the connecting shaft, one end of the connecting shaft is connected with a bearing, and the cleaning brush is located outside the connecting shaft.
Preferably, the second motor is installed to supporting seat one side, and the output of second motor is connected with the action wheel, the action wheel outside is connected with the belt, and belt internal connection has from the driving wheel, and the action wheel with rotate through the belt from the driving wheel and connect, the one end that the second motor was kept away from to the supporting seat is installed driven shaft, and is connected with initiative pivot from driving wheel one end, driven shaft and the initiative pivot outside are connected with the conveyer belt, the feeding storehouse is installed to the one side that is close to initiative pivot on the supporting seat.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses a mounting bracket, stand, activity groove, movable block, first axis of rotation, slider, second axis of rotation, fixed axle and bolt that set up, through sliding the movable block from top to bottom to control the inclination of first axis of rotation, it is fixed with the movable block to utilize the bolt to fix to suitable position, makes the inclination of first axis of rotation fixed, thereby controls the inclination of conveyer belt, and the inclination of conveyer belt both sides is favorable to preventing the landing of ore in the transportation, improves the transportation volume of ore, increases production efficiency, strengthens the flexibility of device;
2. the utility model discloses a first motor, connecting axle, the cleaning brush that set up utilize first motor to drive the connecting axle and rotate to make the connecting axle drive the cleaning brush and rotate, can clean the conveying belt surface, improve the life of belt.
Drawings
FIG. 1 is a schematic view of the present invention;
fig. 2 is a cross-sectional view of the present invention;
fig. 3 is a schematic connection diagram of the adjusting assembly of the present invention;
fig. 4 is a schematic structural view of the cleaning brush of the present invention.
In the figure: 1. a supporting seat; 2. an adjustment assembly; 201. a mounting frame; 202. a column; 203. a movable groove; 204. a movable block; 205. a first rotating shaft; 206. a chute; 207. a slider; 208. a second rotating shaft; 209. a bolt; 210. a fixed shaft; 3. a decontamination assembly; 301. a first motor; 302. a connecting shaft; 303. a cleaning brush; 4. a driving wheel; 5. a belt; 6. a driven wheel; 7. a second motor; 8. a driven rotating shaft; 9. a driving rotating shaft; 10. a conveyor belt; 11. and a feeding bin.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. The embodiments described below with reference to the drawings are exemplary only for the purpose of explaining the present invention, and should not be construed as limiting the present invention.
Next, an embodiment of the present invention will be described with reference to the overall structure thereof.
Referring to fig. 1, 2 and 3, a non-metallic ore efficient transportation device comprises a supporting seat 1, an adjusting assembly 2 is connected above the supporting seat 1, the adjusting assembly 2 comprises mounting frames 201, upright posts 202, movable grooves 203, movable blocks 204, first rotating shafts 205, sliding grooves 206, sliding blocks 207, second rotating shafts 208, bolts 209 and fixing shafts 210, the adjusting assembly 2 can adjust the inclination angle of a conveyor belt, the mounting frames 201 are positioned above the supporting seat 1, the number of the upright posts 202 is two, the two sets of upright posts 202 are symmetrically arranged above the mounting frame 201, the number of the movable grooves 203 is two, the two sets of movable grooves 203 are respectively positioned inside the two sets of upright posts 202, the mounting frames 201 are welded on the supporting seat 1, the upright posts 202 are welded at two ends of the mounting frame 201, the number of the movable blocks 204 is two sets, the two sets of movable blocks 204 are respectively positioned inside the two sets of movable grooves 203, and the first rotating shafts 205 are two sets, two groups of first rotating shafts 205 are respectively positioned at one end of a movable block 204, one end of the movable block 204 is connected with a first hinged seat, the movable block 204 and the first rotating shaft 205 rotate through the first hinged seat, the movable block 204 slides in a movable groove 203, two ends of the first rotating shaft 205 are connected with bearings, the sliding grooves 206 and the sliding blocks 207 are respectively in two groups, the two groups of sliding grooves 206 are positioned in two sides of a fixed shaft 210, the sliding blocks 207 are positioned in the sliding grooves 206, one ends of the two groups of sliding blocks 207 are respectively connected with a second hinged seat, the two groups of sliding blocks 207 and the two groups of first rotating shafts 205 rotate through the two groups of second hinged seats, the sliding grooves 206 can easily slide in the fixed shaft 210, the second rotating shafts 208 are positioned outside the fixed shaft 210 to rotate, the bolts 209 are in multiple groups, screw holes matched with the bolts 209 are respectively formed in the movable block 204 and the upright column 202, the number of the adjusting assemblies 2 is multiple groups, the groups of adjusting assemblies 2 are positioned on the supporting seat 1 and distributed at equal intervals, second axis of rotation 208 both sides are provided with the stopper, prevent that second axis of rotation 208 from sliding, novel mounting bracket 201 through setting up, stand 202, activity groove 203, movable block 204, first axis of rotation 205, spout 206, slider 207, second axis of rotation 208, bolt 209 and fixed axle 210, through sliding movable block 204 from top to bottom, thereby control the inclination of first axis of rotation 205, it is fixed with movable block 204 to utilize bolt 209 to suitable position, make the inclination of first axis of rotation 205 fixed, thereby control the inclination of conveyer belt 10, the inclination of conveyer belt 10 is favorable to preventing the ore landing in the transportation, improve the transportation volume of ore, increase production efficiency, strengthen the flexibility of device.
Referring to fig. 1 and 4, a high-efficiency transportation device for nonmetallic ore, wherein a decontamination assembly 3 is installed on one side of a support base 1, the decontamination assembly 3 includes a first motor 301, a connecting shaft 302, a cleaning brush 303, and the decontamination assembly 3 can remove residual ore powder on the surface of a belt, the first motor 301 is located on the outer side of the support base 1, the connecting shaft 302 is located on the output end of the connecting shaft 302, one end of the connecting shaft 302 is connected with a bearing, the cleaning brush 303 is located on the outer side of the connecting shaft 302, the first motor 301 is a servo motor, the brush hair material on the cleaning brush 303 is hard, so as to remove the ore powder on the belt 10 conveniently, a second motor 7 is installed on one side of the support base 1, the output end of the second motor 7 is connected with a driving wheel 4, the outer side of the driving wheel 4 is connected with a belt 5, and the inner portion of the belt 5 is connected with a driven wheel 6, and the driving wheel 4 and the driven wheel 6 are rotatably connected through the belt 5, supporting seat 1 keeps away from the one end of second motor 7 and installs driven shaft 8, and is connected with initiative pivot 9 from 6 one end of driving wheel, driven shaft 8 and the 9 outsides of initiative pivot are connected with conveyer belt 10, feeding storehouse 11 is installed to one side that is close to initiative pivot 9 on supporting seat 1, second motor 7 is high-power motor, the other end of initiative pivot 9 is connected with the bearing, driven shaft 8's two all are connected with the bearing, a certain amount of ore can be piled up in feeding storehouse 11, be convenient for go out the conveyer belt transportation.
The working principle is as follows: when in use, the movable block 204 is positioned in the movable groove 203 to move, the movable block 204 is moved downwards to enable the first rotating shaft 205 hinged with the movable block to move along with the movable block, the sliding block 207 hinged with the other end of the first rotating shaft 205 moves towards the inside of the sliding groove 206 and is adjusted to a proper position, the position of the movable block 204 is fixed through the bolt 209, so that the position of the first rotating shaft 205 is fixed, the inclined angle of the conveyor belt 10 and a plane is reduced, the large-volume ore is convenient to transport, the movable block 204 is moved upwards to enable the first rotating shaft 205 to move along with the movable block 207 hinged with the other end of the first rotating shaft 205 to move towards the outer side of the sliding groove 206, the position of the movable block 204 is fixed through the bolt 209 to a proper position, so that the position of the first rotating shaft 205 is fixed, the inclined angle of the conveyor belt 10 and the plane is increased, the small-volume ore is convenient to transport, so that the conveyor belt 10 is positioned on the surfaces of the first rotating shaft 205 and the second rotating shaft 208, the belt conveyor has the advantages that the belt conveyor helps to reduce friction force, the service life of the belt is protected, the conveying efficiency is improved, some mineral powder can remain on the surface of the conveyor belt 10 in the conveying process of the conveyor belt, the mineral powder on the surface of the conveyor belt 10 can be removed by the cleaning brush 303, the service life of the conveyor belt 10 is prolonged, and details which are not described in detail in the specification belong to the prior art which is well known to a person skilled in the art.
The terms "central," "longitudinal," "lateral," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like refer to orientations or positional relationships illustrated in the drawings, and are used merely to simplify the description of the present disclosure, rather than to indicate or imply that the device or element so referred to must have a particular orientation, be constructed and operated in a particular orientation, and are not to be construed as limiting the scope of the present disclosure.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments or portions thereof without departing from the spirit and scope of the invention.

Claims (7)

1. The utility model provides a high-efficient haulage equipment of non-metallic ore deposit, includes supporting seat (1), its characterized in that: supporting seat (1) top is connected with adjusting part (2), and adjusting part (2) including mounting bracket (201), stand (202), activity groove (203), movable block (204), first axis of rotation (205), spout (206), slider (207), second axis of rotation (208), bolt (209) and fixed axle (210), the inclination of conveyer belt can be adjusted in adjusting part (2), scrubbing subassembly (3) is installed to supporting seat (1) one side, and scrubbing subassembly (3) including first motor (301), connecting axle (302), cleaning brush (303), the remaining ore deposit powder on belt surface can be got rid of in scrubbing subassembly (3).
2. The efficient transportation equipment for nonmetallic ore according to claim 1, wherein: mounting bracket (201) are located supporting seat (1) top, and stand (202) quantity is two sets of, and is two sets of stand (202) are located mounting bracket (201) top symmetry setting, activity groove (203) quantity is two sets of, and is two sets of activity groove (203) are located inside two sets of stand (202) respectively.
3. The efficient transportation equipment for nonmetallic ore according to claim 1, wherein: the quantity of movable block (204) is two sets of, and is two sets of movable block (204) are located two sets of movable grooves (203) respectively inside, first rotation axis (205) quantity is two sets of, and is two sets of first rotation axis (205) are located the one end of movable block (204) respectively, movable block (204) one end is connected with first articulated seat, and movable block (204) and first rotation axis (205) rotate through first articulated seat.
4. The efficient transportation equipment for nonmetallic ore according to claim 1, wherein: spout (206) and slider (207) quantity are two sets ofly, and are two sets of spout (206) are located fixed axle (210) both sides inside, slider (207) are located spout (206) inside, and are two sets of the articulated seat of second is all connected to slider (207) one end, and are two sets of slider (207) and two sets of first axis of rotation (205) rotate through the articulated seat of two sets of second.
5. The efficient transportation equipment for nonmetallic ore according to claim 1, wherein: second axis of rotation (208) are located fixed axle (210) outside and rotate, bolt (209) quantity is the multiunit, and all set up on movable block (204) and stand (202) with bolt (209) assorted screw, adjusting part (2) quantity is the multiunit, multiunit adjusting part (2) are located support seat (1) equidistance and distribute.
6. The efficient transportation equipment for nonmetallic mines according to claim 1, wherein: first motor (301) are located supporting seat (1) outside, and connecting axle (302) are located connecting axle (302) output, connecting axle (302) one end is connected with the bearing, cleaning brush (303) are located connecting axle (302) outside.
7. The efficient transportation equipment for nonmetallic mines according to claim 1, wherein: second motor (7) is installed to supporting seat (1) one side, and the output of second motor (7) is connected with action wheel (4), action wheel (4) outside is connected with belt (5), and belt (5) internal connection has from driving wheel (6), and action wheel (4) with rotate through belt (5) from driving wheel (6) and connect, driven shaft (8) are installed to the one end of keeping away from second motor (7) in supporting seat (1), and are connected with initiative pivot (9) from driving wheel (6) one end, driven shaft (8) and initiative pivot (9) outside are connected with conveyer belt (10), feeding storehouse (11) are installed to the one side that is close to initiative pivot (9) on supporting seat (1).
CN202221771659.3U 2022-07-11 2022-07-11 High-efficient transportation equipment of non-metallic ore deposit Active CN217516072U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221771659.3U CN217516072U (en) 2022-07-11 2022-07-11 High-efficient transportation equipment of non-metallic ore deposit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221771659.3U CN217516072U (en) 2022-07-11 2022-07-11 High-efficient transportation equipment of non-metallic ore deposit

Publications (1)

Publication Number Publication Date
CN217516072U true CN217516072U (en) 2022-09-30

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ID=83393203

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221771659.3U Active CN217516072U (en) 2022-07-11 2022-07-11 High-efficient transportation equipment of non-metallic ore deposit

Country Status (1)

Country Link
CN (1) CN217516072U (en)

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