CN113877705A - Multistage breaker of mineral processing raw materials - Google Patents

Multistage breaker of mineral processing raw materials Download PDF

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Publication number
CN113877705A
CN113877705A CN202111150478.9A CN202111150478A CN113877705A CN 113877705 A CN113877705 A CN 113877705A CN 202111150478 A CN202111150478 A CN 202111150478A CN 113877705 A CN113877705 A CN 113877705A
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CN
China
Prior art keywords
plate
shell
crushing
mineral processing
side wall
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Granted
Application number
CN202111150478.9A
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Chinese (zh)
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CN113877705B (en
Inventor
谭震
郑奇军
焦璐璐
荆祎
陈江
郭刚
李韧杰
李巩
张利兴
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Xinbosi Nanjing Intelligent Technology Co ltd
Nanjing Aobo Industrial Intelligent Technology Research Institute Co ltd
Original Assignee
Xinbosi Nanjing Intelligent Technology Co ltd
Nanjing Aobo Industrial Intelligent Technology Research Institute Co ltd
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Priority to CN202111150478.9A priority Critical patent/CN113877705B/en
Publication of CN113877705A publication Critical patent/CN113877705A/en
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Publication of CN113877705B publication Critical patent/CN113877705B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C21/00Disintegrating plant with or without drying of the material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C19/00Other disintegrating devices or methods
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C19/00Other disintegrating devices or methods
    • B02C19/0056Other disintegrating devices or methods specially adapted for specific materials not otherwise provided for
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C23/00Auxiliary methods or auxiliary devices or accessories specially adapted for crushing or disintegrating not provided for in preceding groups or not specially adapted to apparatus covered by a single preceding group
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C23/00Auxiliary methods or auxiliary devices or accessories specially adapted for crushing or disintegrating not provided for in preceding groups or not specially adapted to apparatus covered by a single preceding group
    • B02C23/02Feeding devices

Abstract

The invention discloses a multistage crushing device for mineral processing raw materials, which comprises a shell, wherein handrail connecting blocks are symmetrically arranged on the side surface of the shell, a fixed handrail is arranged between the two handrail connecting blocks, a feeding box is arranged above the inner part of the shell, an open slot is formed in the feeding box, a feeding mechanism is arranged on the side wall of the feeding box, a crushing mechanism is arranged below the feeding mechanism and inside the shell, movable wheels are symmetrically arranged at the bottom end of the shell, the feeding mechanism comprises a displacement plate, the displacement plate is embedded on the side wall of the feeding box and extends into the feeding box, a connecting rod is arranged on the side surface of the displacement plate, a reinforcing plate is arranged on the inner side wall of the shell, and the reinforcing plate is fixedly connected to the inner side wall of the shell. Has the advantages that: not only can realize the multistage breakage to mineral simultaneously, obtain the mineral of different granules simultaneously, can adjust the feeding volume moreover, increase the flexibility of device.

Description

Multistage breaker of mineral processing raw materials
Technical Field
The invention relates to the field of mineral crushing, in particular to a multistage crushing device for mineral processing raw materials.
Background
Mineral processing engineering is an applied technical subject for researching mineral separation. The subject is to separate the useful minerals from the gangue minerals. In the coal industry, clean coal is selected by gravity separation and flotation, and coal gangue is discarded. In the process of mineral processing, need to carry out broken thinning processing to mineral, however if want to realize multistage breakage to mineral in current device, need to realize the breakage of equidimension with the mineral after the breakage in transferring to other machine, can obtain the mineral of wanting at last, very big consumption manpower of this mode has increased the periodicity to mineral processing, makes whole process become very loaded down with trivial details, and the condition that the jam also appears very easily in the mineral of different granule sizes entering crushing mechanism process takes place.
Disclosure of Invention
In view of the problems in the related art, the present invention provides a multistage mineral processing raw material crushing device to overcome the above technical problems in the related art.
Therefore, the invention adopts the following specific technical scheme:
in order to solve the technical problems, the invention provides the following technical scheme:
the utility model provides a multistage breaker of mineral processing raw materials, includes the casing, the side symmetry of casing is equipped with the handrail connecting block, two be equipped with fixed handrail between the handrail connecting block, the inside top of casing is equipped with the feeding case, be equipped with the open slot on the feeding case, be equipped with feed mechanism on the lateral wall of feeding case feed mechanism's below and the inside of casing is equipped with broken mechanism, the bottom symmetry of casing is equipped with the movable pulley.
Further, including the displacement board in the feed mechanism, the displacement board is inlayed on the lateral wall of feeding case, the displacement board extends to the inside of feeding case, the side of displacement board is equipped with the connecting rod, be equipped with the reinforcing plate on the inside lateral wall of casing, reinforcing plate fixed connection be in on the inside lateral wall of casing.
Furthermore, the connecting rod runs through the reinforcing plate and extends to the inside of reinforcing plate, the tip that the connecting rod kept away from the displacement board is equipped with the worker's board, the tip of worker's board is equipped with location axle one be equipped with the cooperation gear on the location axle one, the cooperation gear with location axle one is for rotating the connection.
Further, the cooperation gear with location axle one is the design of decentration, the top of reinforcing plate is equipped with location axle two be equipped with the driving gear on the location axle two, the driving gear with the circular not same department of location axle two, and the driving gear with the cooperation gear cooperatees, the tip of location axle two is equipped with motor one, on the lateral wall of feeding case and the below symmetry of displacement board is equipped with the inlet pipe.
Furthermore, the crushing mechanism comprises a placing plate, the placing plate is a circular design mode with a circular groove in the middle, a first annular groove is formed in the placing plate, a second annular groove is formed in the placing plate, the diameter of the first annular groove is larger than that of the second annular groove, and an auxiliary disc is arranged at the bottom end of the placing plate.
Furthermore, the bottom end of the auxiliary disc is provided with an oblique angle, the oblique angle is in an asymmetric design mode, an auxiliary spring is arranged at the top end of the auxiliary disc, a cover plate is arranged at the end part, far away from the auxiliary disc, of the auxiliary spring, the diameter of the cover plate is larger than the outermost side diameter of the placing plate, a plurality of uniformly distributed first crushing rollers are arranged at the bottom end of the cover plate, and a second crushing roller is arranged at the bottom end of the cover plate.
Furthermore, the width of the first crushing roller is smaller than that of the second crushing roller, feed inlets are symmetrically formed in the cover plate and penetrate through the cover plate, the feed inlets are designed to be waist-shaped, the long waist edges of the feed inlets are larger than the widths of the inner walls of the first annular groove and the second annular groove, a first main shaft is arranged at the top end of the cover plate, a second motor is arranged at the top end of the first main shaft, a connecting plate is arranged at the bottom end of the second motor, and the connecting plate is fixed to the inner side wall of the shell.
Further, the bottom of auxiliary plate is equipped with the arc ball, the circular arc on the arc ball with the oblique angle cooperatees, the top of arc ball is equipped with the straight-bar be equipped with square groove on the inside lateral wall of casing, be equipped with the sliding block in the square groove the inside of sliding block is equipped with the screw rod, the tip of screw rod is equipped with motor three, motor three with the lateral wall of casing is fixed connection.
The invention has the beneficial effects that:
1: the crushing mechanism can realize multi-stage crushing of minerals, and drives the main shaft I to rotate through the motor II, so that the minerals placed in the annular groove I and the annular groove II are crushed by the crushing roller I and the crushing roller II at the bottom end of the cover plate, and because the annular widths of the crushing roller I and the crushing roller II are different, particles with different sizes can be finally realized when the minerals are crushed, multi-stage crushing of the minerals in the same machine is realized, and the mineral crushing efficiency is improved.
2: drive the screw rod through three starts of motor and realize rotating and make the sliding block realize the motion in square groove, drive the displacement about the arc ball realizes, make the oblique angle on the auxiliary disc realize removing on the cambered surface on the arc ball to the degree of depth of nimble adjustment broken rod one in the ring channel, the degree of depth of crushing roller two in ring channel two makes the interval between the two change, thereby also can break the different mineral of granule simultaneously, increased the flexibility of device.
3: the feeding mechanism can realize ordered feeding of minerals, wherein the positioning shaft II is driven to rotate by the motor I, and the positioning shaft II and the driving gear are in an eccentric design mode, so that the driving gear rotates annularly to drive the matching gear to move together, and the connecting rod moves in the reinforcing plate, so that the displacement plate realizes different sizes of gaps in the feeding box, the descending volume of the minerals is flexibly adjusted, the situation of blocking a feeding pipe is prevented, the situation of incomplete crushing caused by excessive minerals is prevented, and the crushing degree of the minerals is improved.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of the invention and not to limit the invention. In the drawings:
FIG. 1 is an isometric view of an integrated mechanism in a multi-stage mineral processing feed crushing apparatus of the present invention;
FIG. 2 is an isometric view of a feed mechanism in a mineral processing feedstock multi-stage crushing plant according to the present invention;
FIG. 3 is a side view of a drive gear or like component of a multi-stage mineral processing feed crushing apparatus of the present invention;
FIG. 4 is a side view of the crushing mechanism of a multiple stage mineral processing feed crushing apparatus of the present invention;
fig. 5 is an isometric view of a mineral processing feed multi-stage crushing apparatus of the present invention with plates and the like positioned;
fig. 6 is an isometric view of a cover plate or the like in a mineral processing feed multi-stage crushing apparatus of the present invention;
fig. 7 is an isometric view of the slide blocks and arcuate balls of a mineral processing material multistage crushing apparatus of the present invention.
In the figure: 1. a housing; 2. a handrail connecting block; 3. fixing the handrail; 4. a feeding box; 5. an open slot; 6. a feeding mechanism; 7. a crushing mechanism; 8. a movable wheel; 9. a displacement plate; 10. a connecting rod; 11. a reinforcing plate; 12. a tooling plate; 13. positioning the first shaft; 14. a mating gear; 15. a second positioning shaft; 16. a driving gear; 17. a first motor; 18. a feed pipe; 19. placing the plate; 20. a first annular groove; 21. a second annular groove; 22. an auxiliary disc; 23. oblique angle; 24. an auxiliary spring; 25. a cover plate; 26. a first crushing roller; 27. a second crushing roller; 28. a feed inlet; 29. a first main shaft; 30. a second motor; 31. an arc-shaped ball; 32. a straight rod; 33. a square groove; 34. a slider; 35. a screw; 36. and a third motor.
Detailed Description
The preferred embodiments of the present invention will be described in conjunction with the accompanying drawings, and it will be understood that they are described herein for the purpose of illustration and explanation and not limitation.
Example one
As shown in fig. 1 to 3:
the invention provides a multistage crushing device for mineral processing raw materials, wherein,
including casing 1, the side symmetry of casing 1 is equipped with handrail connecting block 2, two be equipped with fixed handrail 3 between handrail connecting block 2, the inside top of casing 1 is equipped with feeding case 4, be equipped with open slot 5 on feeding case 4, be equipped with feed mechanism 6 on the lateral wall of feeding case 4 the below of feed mechanism 6 and the inside of casing 1 is equipped with broken mechanism 7, the bottom symmetry of casing 1 is equipped with movable wheel 8, including displacement plate 9 in feed mechanism 6, displacement plate 9 inlays on the lateral wall of feeding case 4, displacement plate 9 extends to the inside of feeding case 4, the side of displacement plate 9 is equipped with connecting rod 10, be equipped with reinforcing plate 11 on the inside lateral wall of casing 1.
The reinforcing plate 11 is fixedly connected to the inner side wall of the shell 1, the connecting rod 10 penetrates through the reinforcing plate 11, and extends to the inner part of the reinforcing plate 11, the end part of the connecting rod 10 far away from the displacement plate 9 is provided with a tool plate 12, the end part of the tool plate 12 is provided with a first positioning shaft 13, a matching gear 14 is arranged on the first positioning shaft 13, the matching gear 14 is in rotary connection with the first positioning shaft 13, the matching gear 14 and the first positioning shaft 13 are in an eccentric design mode, the top end of the reinforcing plate 11 is provided with a second positioning shaft 15, a driving gear 16 is arranged on the second positioning shaft 15, the driving gear 16 and the second positioning shaft 15 are not in the same circle, the driving gear 16 is matched with the matching gear 14, the end part of the second positioning shaft 15 is provided with a first motor 17, feed pipes 18 are symmetrically arranged on the side wall of the feed box 4 below the displacement plate 9.
Detailed methods of use and effects of the above examples: when mineral needs to be crushed, firstly, the mineral is placed in the feeding box 4, the mineral enters from the open slot 5, slides out from the feeding hole 28 in the cover plate 25 when sliding in the feeding pipe 18, and falls into the placing plate 19, because the length of the feeding hole 28 is larger than that of the first annular groove 20 and the second annular groove 21, the mineral slides into the feeding hole, at this time, the crushing mechanism 7 starts to work, the motor second 30 drives the main shaft first 29 to rotate, the cover plate 25 is connected to the main shaft first 29, the crushing roller first 26 and the crushing roller second 27 are arranged on the bottom end of the cover plate 25, the widths of the crushing roller first 26 and the crushing roller second 27 are different, when the cover plate 25 rotates, the gap for the crushing roller first 26 to rotate in the first annular groove 20 is large, the second crushing roller 27 realizes a rotating gap pin in the second annular groove 21, because of the difference of the width, when the mineral is crushed, the difference of the particle size is realized, the bottom end of the placing plate 19 is provided with an auxiliary disc 22, when the motor third 36 rotates, the screw rod 35 is driven to rotate, the sliding block 34 can move in the square groove 33, the arc-shaped ball 31 is driven to contact with the bevel 23, when the bevel 23 contacts with different arcs on the arc-shaped ball 31, the placing plate 19 is driven to realize the difference of the height, so that the gap between the first crushing roller 26 and the bottom end of the first annular groove 20 is changed, the mineral in the placing plate 19 is also crushed in a grading way, and the difference of the particle size is realized.
Example two
As shown in fig. 1, 4 to 7:
the invention provides a multistage crushing device for mineral processing raw materials, wherein,
the crushing mechanism 7 comprises a placing plate 19, the placing plate 19 is in a circular design mode with a circular groove in the middle, a first annular groove 20 is formed in the placing plate 19, a second annular groove 21 is formed in the placing plate 19, the diameter of the first annular groove 20 is larger than that of the second annular groove 21, an auxiliary disc 22 is arranged at the bottom end of the placing plate 19, an oblique angle 23 is formed in the bottom end of the auxiliary disc 22, the oblique angle 23 is in an asymmetric design mode, an auxiliary spring 24 is arranged at the top end of the auxiliary disc 22, a cover plate 25 is arranged at the end, away from the auxiliary disc 22, of the auxiliary spring 24, the diameter of the cover plate 25 is larger than the outermost side diameter of the placing plate 19, a plurality of uniformly distributed first crushing rollers 26 are arranged at the bottom end of the cover plate 25, and a second crushing roller 27 is arranged at the bottom end of the cover plate 25.
The width of the first crushing roller 26 is smaller than that of the second crushing roller 27, feed inlets 28 are symmetrically arranged on the cover plate 25, the feed inlets 28 penetrate through the cover plate 25, the feed inlets 28 are designed to be waist-shaped, the long waist side of each feed inlet 28 is larger than the width of the inner walls of the first annular groove 20 and the second annular groove 21, the top end of the cover plate 25 is provided with a first main shaft 29, the top end of the first main shaft 29 is provided with a second motor 30, the bottom end of the second motor 30 is provided with a connecting plate, the connecting plate is fixed on the inner side wall of the shell 1, the bottom end of the auxiliary disc 22 is provided with an arc-shaped ball 31, the arc on the arc-shaped ball 31 is matched with the bevel angle 23, the top end of the arc-shaped ball 31 is provided with a straight rod 32, the inner side wall of the shell 1 is provided with a square groove 33, a sliding block 34 is arranged in the square groove 33, and a screw rod 35 is arranged inside the sliding block 34, the end part of the screw 35 is provided with a third motor 36, and the third motor 36 is fixedly connected with the side wall of the shell 1.
Detailed methods of use and effects of the above examples: when the crushing work is carried out, in order to ensure that the minerals are crushed in a better grading manner, the feeding mechanism 6 is started, the first motor 17 drives the second positioning shaft 15 to rotate, the second positioning shaft 15 is provided with a driving gear 16, the driving gear 16 and the second positioning shaft 15 are in an eccentric design mode, so that the driving gear 16 rotates in an annular mode, the driving gear 16 is connected with the matching gear 14, the first positioning shaft 13 is arranged on the matching gear 14 and drives the matching gear 14 to move in an annular mode, and the displacement plate 9 connected with the connecting rod 10 moves, so that the gap of the displacement plate 9 in the feeding box 4 is adjusted, and the size of the minerals falling into the placing plate 19 is adjusted flexibly.
In the description of the present invention, it should be noted that the terms "vertical", "upper", "lower", "horizontal", and the like indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience of describing the present invention and simplifying the description, but do not indicate or imply that the referred device or element must have a specific orientation, be constructed in a specific orientation, and be operated, and thus, should not be construed as limiting the present invention.
In the description of the present invention, it should also be noted that, unless otherwise explicitly specified or limited, the terms "disposed," "mounted," "connected," and "connected" are to be construed broadly and may, for example, be fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meanings of the above terms in the present invention can be understood by those skilled in the art according to specific situations.
Finally, it should be noted that: 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 changes may be made in the embodiments and/or equivalents thereof without departing from the spirit and scope of the invention. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (8)

1. The utility model provides a multistage breaker of mineral processing raw materials, a serial communication port, including casing (1), the side symmetry of casing (1) is equipped with handrail connecting block (2), two be equipped with between handrail connecting block (2) fixed handrail (3), the inside top of casing (1) is equipped with feeding case (4), be equipped with open slot (5) on feeding case (4), be equipped with feed mechanism (6) on the lateral wall of feeding case (4) the below of feed mechanism (6) and the inside of casing (1) is equipped with crushing mechanism (7), the bottom symmetry of casing (1) is equipped with activity wheel (8).
2. A mineral processing raw material multi-stage crushing device according to claim 1, characterized in that the feeding mechanism (6) comprises a displacement plate (9), the displacement plate (9) is embedded on the side wall of the feeding box (4), the displacement plate (9) extends to the inside of the feeding box (4), the side surface of the displacement plate (9) is provided with a connecting rod (10), the inner side wall of the shell (1) is provided with a reinforcing plate (11), and the reinforcing plate (11) is fixedly connected on the inner side wall of the shell (1).
3. A mineral processing raw material multistage crushing device according to claim 2, characterized in that the connecting rod (10) extends through the reinforcing plate (11) and extends to the inside of the reinforcing plate (11), the end of the connecting rod (10) far away from the displacement plate (9) is provided with a tooling plate (12), the end of the tooling plate (12) is provided with a first positioning shaft (13), the first positioning shaft (13) is provided with a matching gear (14), and the matching gear (14) and the first positioning shaft (13) are in rotational connection.
4. A mineral processing raw material multistage crushing device according to claim 3, characterized in that the matching gear (14) and the first positioning shaft (13) are of an eccentric design, the top end of the reinforcing plate (11) is provided with a second positioning shaft (15), the second positioning shaft (15) is provided with a driving gear (16), the driving gear (16) and the second positioning shaft (15) are not in the same circle, the driving gear (16) and the matching gear (14) are matched, the end of the second positioning shaft (15) is provided with a first motor (17), and the side wall of the feeding box (4) and below the displacement plate (9) are symmetrically provided with feeding pipes (18).
5. The multistage mineral processing raw material crushing device according to claim 1, wherein the crushing mechanism (7) comprises a placing plate (19), the placing plate (19) is designed in a circular manner with a circular groove in the middle, a first annular groove (20) is formed in the placing plate (19), a second annular groove (21) is formed in the placing plate (19), the diameter of the first annular groove (20) is larger than that of the second annular groove (21), and an auxiliary disc (22) is arranged at the bottom end of the placing plate (19).
6. A mineral processing raw material multi-stage crushing device according to claim 5, characterized in that the bottom end of the auxiliary disc (22) is provided with an oblique angle (23), the oblique angle (23) is in an asymmetric design, an auxiliary spring (24) is arranged at the top end of the auxiliary disc (22), the end part of the auxiliary spring (24) far away from the auxiliary disc (22) is provided with a cover plate (25), the diameter of the cover plate (25) is larger than the outermost diameter of the placing plate (19), the bottom end of the cover plate (25) is provided with a plurality of uniformly distributed first crushing rollers (26), and the bottom end of the cover plate (25) is provided with a second crushing roller (27).
7. The multistage mineral processing raw material crushing device according to claim 6, wherein the width of the first crushing roller (26) is smaller than that of the second crushing roller (27), feed inlets (28) are symmetrically arranged on the cover plate (25), the feed inlets (28) penetrate through the cover plate (25), the feed inlets (28) are waist-shaped, the long waist edges of the feed inlets are larger than the widths of the inner walls of the first annular groove (20) and the second annular groove (21), the top end of the cover plate (25) is provided with a first main shaft (29), the top end of the first main shaft (29) is provided with a second motor (30), the bottom end of the second motor (30) is provided with a connecting plate, and the connecting plate is fixed on the inner side wall of the shell (1).
8. The multistage mineral processing raw material crushing device according to claim 7, wherein an arc-shaped ball (31) is arranged at the bottom end of the auxiliary disc (22), an arc on the arc-shaped ball (31) is matched with the bevel angle (23), a straight rod (32) is arranged at the top end of the arc-shaped ball (31), a square groove (33) is formed in the side wall of the inner portion of the shell (1), a sliding block (34) is arranged in the square groove (33), a screw rod (35) is arranged in the sliding block (34), a motor III (36) is arranged at the end portion of the screw rod (35), and the motor III (36) is fixedly connected with the side wall of the shell (1).
CN202111150478.9A 2021-09-29 2021-09-29 Multistage breaker of mineral processing raw materials Active CN113877705B (en)

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CN202111150478.9A CN113877705B (en) 2021-09-29 2021-09-29 Multistage breaker of mineral processing raw materials

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CN113877705B CN113877705B (en) 2022-11-01

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050127216A1 (en) * 2002-05-09 2005-06-16 David Mead Shredding machines
US20090220885A1 (en) * 2008-02-29 2009-09-03 Atsushi Inoue Toner production method and toner granulating apparatus
CN110238749A (en) * 2019-07-04 2019-09-17 扬州市职业大学(扬州市广播电视大学) A kind of ball grinder
CN112221662A (en) * 2020-09-24 2021-01-15 王彤 Abundant breaker of construction waste based on environmental protection theory
CN214051861U (en) * 2020-10-26 2021-08-27 青岛聚能石墨科技有限公司 Abrasive disc type graphite powder preparation system

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050127216A1 (en) * 2002-05-09 2005-06-16 David Mead Shredding machines
US20090220885A1 (en) * 2008-02-29 2009-09-03 Atsushi Inoue Toner production method and toner granulating apparatus
CN110238749A (en) * 2019-07-04 2019-09-17 扬州市职业大学(扬州市广播电视大学) A kind of ball grinder
CN112221662A (en) * 2020-09-24 2021-01-15 王彤 Abundant breaker of construction waste based on environmental protection theory
CN214051861U (en) * 2020-10-26 2021-08-27 青岛聚能石墨科技有限公司 Abrasive disc type graphite powder preparation system

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