CN210253033U - Improve mineral processing equipment of structure - Google Patents
Improve mineral processing equipment of structure Download PDFInfo
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- CN210253033U CN210253033U CN201920628889.6U CN201920628889U CN210253033U CN 210253033 U CN210253033 U CN 210253033U CN 201920628889 U CN201920628889 U CN 201920628889U CN 210253033 U CN210253033 U CN 210253033U
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- ore
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- ore dressing
- dressing
- push rod
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Abstract
The utility model provides an improve mineral processing equipment of structure, including support, ore dressing actuating mechanism, vibration board, third ore dressing box, second ore dressing box, ore outlet, first ore dressing box promote the handle, electric push rod, the utility model discloses electric push rod promotes the setting of handle and ore outlet, when carrying out the partial shipment to mineral aggregate after screening, is favorable to through electric push rod through promoting the handle with each ore dressing box slope jack-up, the accessible ore outlet is collected and the partial shipment mineral aggregate, has saved the manpower, has improved equipment mechanization degree; mineral separation actuating mechanism's setting, driving motor drive crank connecting rod rotates, and rethread catch bar drives the motion of vibration seat, can effectual realization to the vibrations screening of third ore dressing box, second ore dressing box and first ore dressing box, and the screening efficiency is high.
Description
Technical Field
The utility model belongs to the technical field of mineral processing equipment, especially, relate to a improve mineral processing equipment of structure.
Background
In the existing ore dressing technology, ore dressing equipment for selecting ore materials with different sizes has a lot of problems of complex structure, insufficient ore dressing precision, frequent missed ore dressing, time and labor waste, low working efficiency and the like.
The invention discloses a mineral processing device with Chinese patent publication No. CN 106475320A, which is characterized in that: the automatic feeding device comprises a feeding device, a first-level screening device, a second-level screening device, a third-level screening device and a collecting device, wherein the feeding device, the first-level screening device, the second-level screening device and the third-level screening device are sequentially arranged in sequence. The ore dressing machine developed aiming at ore type materials with different sizes has the advantages that the ore dressing machine can be used for targeted screening according to the required sizes, the accuracy of the screened materials is high, the number of grades is large, the condition of missing selection is avoided, full-automatic screening is realized, the structure is simple, and the operation is simple and convenient. But current mineral processing equipment still has the screening inaccuracy, and one-level sieving mechanism, second grade sieving mechanism, tertiary sieving mechanism can not go on simultaneously, need separately screen, waste time and energy, and the screening finishes the back and still needs the manual work to collect, and intensity of labour is big to and the problem that degree of mechanization is low.
Therefore, the invention is very necessary to develop a mineral processing device with an improved structure.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides an improve mineral processing equipment of structure to solve current mineral processing equipment and still having the screening inaccuracy, one-level sieving mechanism, second grade sieving mechanism, tertiary sieving mechanism can not go on simultaneously, need separately filter, waste time and energy, the screening still needs the manual work to collect after finishing, intensity of labour is big, and the problem that degree of mechanization is low. The ore dressing equipment with the improved structure comprises a support, an ore dressing driving mechanism, a vibrating plate, a third ore dressing box, a second ore dressing box, an ore outlet, a first ore dressing box, a pushing handle, an electric push rod, an ore conveying mechanism and a clamping plate, wherein 2 supports are adopted and are all connected with the bottom of the ore conveying mechanism through bolts; 2 ore dressing driving mechanisms are arranged; and is connected with the vibrating plate through a bolt; the third ore dressing box is connected with the vibrating plate in a turnover mode through a hinge; the third ore dressing box, the second ore dressing box and the first ore dressing box are connected through hinges; the pushing handles are multiple and are respectively riveted at one end of the third mineral processing box, one end of the second mineral processing box and one end of the first mineral processing box; the number of the electric push rods is 3, the electric push rods are all connected with the push handle through bolts, and the installation angle of the electric push rods is 45 degrees; the ore conveying mechanism is obliquely arranged and is positioned above the first ore dressing box; the cardboard adopts 3, and equal joint is in the inboard of ore outlet.
The structure of third ore dressing box, second ore dressing box and first ore dressing box except that the screen cloth diameter is different, all the other structures are the same, can effectually filter according to the mineral of different particle diameters.
The third mineral processing box comprises an embedded groove, a box body and a screen, and the embedded groove is formed in the periphery of the top of the box body; the screen cloth is seted up in the bottom of box body, and what the setting of inlay groove can be better is fixed to third ore dressing box, second ore dressing box and first ore dressing box.
The electric push rod specifically adopts LX600 type direct current push rod, when carrying out the partial shipment to the mineral aggregate after the screening finishes, promotes the handle and will each ore dressing box slope jack-up through electric push rod's promotion, and the manpower has been saved with mineral aggregate collection and partial shipment to the accessible ore outlet.
The ore dressing driving mechanism comprises a driving motor, a crank connecting rod, a pushing rod, a mounting seat and a vibrating seat, wherein the driving motor is fixed with the mounting seat through a bolt and is fixedly connected with the crank connecting rod; the left end of the crank connecting rod is rotationally connected with the mounting seat through a pin shaft; the middle positions of the push rod and the crank connecting rod are fixed through bolts; 2 mounting seats are adopted; the vibration seat is arranged at the bottom of the vibration plate through a bolt and is rotationally connected with the push rod; the driving motor adopts a ZYT22-22018 direct current motor.
Compared with the prior art, the utility model discloses following beneficial effect has:
1. the utility model discloses the electric push rod promotes the setting of handle and ore outlet, when screening back carries out the partial shipment to the mineral aggregate, is favorable to through electric push rod through promoting the handle with each ore dressing box slope jack-up, and the accessible ore outlet is collected the mineral aggregate and is partial shipment, has saved the manpower, has improved equipment mechanization degree.
2. The utility model discloses a mineral processing actuating mechanism's setting, driving motor drive crank connecting rod rotate, and the rethread catch bar drives the motion of vibration seat, can effectual realization to the third ore dressing box, the vibrations screening of second ore dressing box and first ore dressing box, and the screening efficiency is high.
3. The utility model discloses a setting of inlay groove and box body is favorable to realizing third ore dressing box, and second ore dressing box and first ore dressing box stack screening can once only carry out the tertiary selection of drying in the sun through ore dressing actuating mechanism, have saved the condition of the mineral aggregate of rising repeatedly, the effectual screening speed and the screening efficiency and precision that have improved.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is the schematic structural diagram of the mineral separation driving mechanism of the utility model.
Fig. 3 is a schematic structural view of a third mineral processing box of the present invention.
In the figure:
1-bracket, 2-ore dressing driving mechanism, 21-driving motor, 22-crank connecting rod, 23-pushing rod, 24-mounting seat, 25-vibrating seat, 3-vibrating plate, 4-third ore dressing box, 41-embedded groove, 42-box body, 43-screen, 5-second ore dressing box, 6-ore outlet, 7-first ore dressing box, 8-pushing handle, 9-electric pushing rod, 10-ore feeding mechanism and 11-clamping plate.
Detailed Description
The invention is further described below with reference to the accompanying drawings:
example (b):
as shown in figures 1 to 3
The utility model provides a mineral processing equipment with improved structure, which comprises a bracket 1, a mineral processing driving mechanism 2, a vibration plate 3, a third mineral processing box 4, a second mineral processing box 5, a mineral outlet 6, a first mineral processing box 7, a pushing handle 8, an electric push rod 9, a mineral conveying mechanism 10 and a clamping plate 11, wherein 2 brackets 1 are connected with the bottom of the mineral conveying mechanism 10 through bolts; 2 ore dressing driving mechanisms are arranged; and is connected with the vibrating plate 3 through a bolt; the third mineral processing box 4 is connected with the vibrating plate 3 in an overturning manner through a hinge; the third ore dressing box 4, the second ore dressing box 5 and the first ore dressing box 7 are connected through hinges; a plurality of pushing handles 8 are respectively riveted at one end of the third mineral processing box 4, one end of the second mineral processing box 5 and one end of the first mineral processing box 7; the number of the electric push rods 9 is 3, the electric push rods are all connected with the push handle 8 through bolts, and the installation angle of the electric push rods is 45 degrees; the ore conveying mechanism 10 is obliquely arranged and is positioned above the first ore dressing box 7; the cardboard 11 adopts 3, all blocks in the inboard of ore outlet 6.
The structure of the third ore dressing box 4, the second ore dressing box 5 and the first ore dressing box 7 is the same except that the diameter of the screen 43 is different, and the ore can be effectively screened according to different particle diameters.
The third mineral processing box 4 comprises an embedded groove 41, a box body 42 and a screen 43, wherein the embedded groove 41 is formed in the periphery of the top of the box body 42; the screen 43 is arranged at the bottom of the box body 42, and the third mineral separation box 4, the second mineral separation box 5 and the first mineral separation box 7 can be better fixed by arranging the embedded groove 41.
The ore dressing driving mechanism 2 comprises a driving motor 21, a crank connecting rod 22, a push rod 23, a mounting seat 24 and a vibration seat 25, wherein the driving motor 21 is fixed with the mounting seat 24 through a bolt and is fixedly connected with the crank connecting rod 22; the left end of the crank connecting rod 22 is rotationally connected with the mounting seat 24 through a pin shaft; the middle positions of the push rod 23 and the crank connecting rod 22 are fixed through bolts; 2 mounting seats 24 are adopted; the vibration seat 25 is installed at the bottom of the vibration plate 3 through a bolt and is rotationally connected with the push rod 23; the driving motor 21 adopts a ZYT22-22018 direct current motor.
Principle of operation
In the utility model, during operation, mineral aggregate is conveyed into the first mineral separation box 7 through the ore conveying mechanism 10, at the moment, the driving motor 21 in the ore driving mechanism 2 drives the crank connecting rod 22 to rotate, and then the push rod 23 drives the vibration seat 25 to move, so that the vibration screening of the third mineral separation box 7, the second mineral separation box 5 and the first mineral separation box 4 can be effectively realized, the third mineral separation box 4 and the second mineral separation box 5 and the first mineral separation box 7 can be better fixed due to the arrangement of the embedded groove 41, the one-time operation of three-stage screening can be realized, the situation of repeatedly pouring the mineral aggregate is saved, the screening speed, the screening efficiency and the screening precision are effectively improved, the mineral aggregate is subpackaged after screening, each mineral separation box is obliquely jacked up through the pushing handle 8 through the electric push rod 9, the clamping plate 11 is taken out, the mineral aggregate can be collected and subpackaged through the ore outlet 6, the manpower is saved, the degree of mechanization of the equipment is improved.
Utilize technical scheme, or technical personnel in the field are in the utility model discloses under technical scheme's the inspiration, design similar technical scheme, and reach above-mentioned technological effect, all fall into the utility model discloses a protection scope.
Claims (5)
1. The utility model provides an improve mineral processing equipment of structure which characterized in that: the ore-dressing device comprises a support (1), an ore-dressing driving mechanism (2), a vibrating plate (3), a third ore-dressing box (4), a second ore-dressing box (5), an ore outlet (6), a first ore-dressing box (7), a pushing handle (8), an electric push rod (9), an ore conveying mechanism (10) and a clamping plate (11), wherein 2 supports (1) are connected with the bottom of the ore conveying mechanism (10) through bolts; 2 ore dressing driving mechanisms (2) are arranged; and is connected with the vibrating plate (3) through a bolt; the third ore dressing box (4) is connected with the vibrating plate (3) in a turnover mode through a hinge; the third ore dressing box (4), the second ore dressing box (5) and the first ore dressing box (7) are connected through hinges; the pushing handles (8) are multiple and are respectively riveted at one end of the third mineral separation box (4), one end of the second mineral separation box (5) and one end of the first mineral separation box (7), the number of the electric push rods (9) is 3, the electric push rods are all connected with the pushing handles (8) through bolts, and the installation angle of the electric push rods is 45 degrees; the ore conveying mechanism (10) is obliquely arranged and is positioned above the first ore dressing box (7); the number of the clamping plates (11) is 3, and the clamping plates are all clamped on the inner side of the ore outlet (6).
2. The improved structure of the ore dressing equipment according to claim 1, characterized in that: the structure of the third mineral processing box (4), the second mineral processing box (5) and the first mineral processing box (7) is the same except that the diameter of the screen is different.
3. The improved structure of the ore dressing equipment according to claim 1, characterized in that: the third ore dressing box (4) comprises an embedded groove (41), a box body (42) and a screen (43), and the embedded groove (41) is formed in the periphery of the top of the box body (42); the screen (43) is arranged at the bottom of the box body (42).
4. The improved structure of the ore dressing equipment according to claim 1, characterized in that: the electric push rod (9) is an LX600 type direct current push rod.
5. The improved structure of the ore dressing equipment according to claim 1, characterized in that: the ore dressing driving mechanism (2) comprises a driving motor (21), a crank connecting rod (22), a push rod (23), a mounting seat (24) and a vibrating seat (25), wherein the driving motor (21) is fixed with the mounting seat (24) through a bolt and is fixedly connected with the crank connecting rod (22); the left end of the crank connecting rod (22) is rotationally connected with the mounting seat (24) through a pin shaft; the middle positions of the push rod (23) and the crank connecting rod (22) are fixed through bolts; 2 mounting seats (24) are adopted; the vibration seat (25) is arranged at the bottom of the vibration plate (3) through a bolt and is rotationally connected with the push rod (23); the driving motor (21) adopts a ZYT22-22018 direct current motor.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920628889.6U CN210253033U (en) | 2019-05-05 | 2019-05-05 | Improve mineral processing equipment of structure |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920628889.6U CN210253033U (en) | 2019-05-05 | 2019-05-05 | Improve mineral processing equipment of structure |
Publications (1)
Publication Number | Publication Date |
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CN210253033U true CN210253033U (en) | 2020-04-07 |
Family
ID=70023673
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201920628889.6U Expired - Fee Related CN210253033U (en) | 2019-05-05 | 2019-05-05 | Improve mineral processing equipment of structure |
Country Status (1)
Country | Link |
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CN (1) | CN210253033U (en) |
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2019
- 2019-05-05 CN CN201920628889.6U patent/CN210253033U/en not_active Expired - Fee Related
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Legal Events
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20200407 Termination date: 20210505 |
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CF01 | Termination of patent right due to non-payment of annual fee |