CN205462477U - Superfine milling equipment of bentonite - Google Patents
Superfine milling equipment of bentonite Download PDFInfo
- Publication number
- CN205462477U CN205462477U CN201521092744.7U CN201521092744U CN205462477U CN 205462477 U CN205462477 U CN 205462477U CN 201521092744 U CN201521092744 U CN 201521092744U CN 205462477 U CN205462477 U CN 205462477U
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- CN
- China
- Prior art keywords
- grinding roller
- ultra
- rotating shaft
- fine powder
- frotton
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Abstract
The utility model provides a superfine milling equipment of bentonite, includes the barrel, locates the classificator at barrel top, locate the central pivot of barrel lower part, be used for driving center pivot pivoted actuating mechanism, connect in the plum blossom frame of center pivot with connect in the shovel material mechanism of center pivot, still including connect in the vertical stabilizing mean of plum blossom frame, connect in vertical stabilizing mean's initiative abrasive material mechanism with locate the barrel lower part with the passive abrasive material mechanism of complex of initiative abrasive material mechanism. The utility model discloses compact structure, convenient to use grind the good just structure of part contact and obtain optimizing, and the crocus is effectual, and the crocus is efficient.
Description
Technical field
This utility model relates to bentonite production technical field, specifically a kind of bentonite super fine powder device.
Background technology
Bentonite flour mill is the visual plant of bentonite processing, but traditional flour mill structure imperfection, function singleness, grinding roller and bull ring are the most limited to the fine grinding degree of earth material, it is impossible to obtain more preferable effect, and abrasive material grinding roller rotate mill time because of the restriction of physical dimension and the most traditional connected mode, easily deflect at vertical direction, and contacting the best with bull ring, flour mill entirety abrasive material weak effect, abrasive efficiency is low.
Utility model content
Technical purpose of the present utility model is to provide a kind of bentonite super fine powder device, and solution pulverizing efficiency is low, the problem of pulverizing weak effect.
Concrete technical scheme of the present utility model is as follows: a kind of bentonite super fine powder device, the clasfficiator including cylinder, being located at described cylinder top, the central rotating shaft being located at described cylinder bottom, for the drive mechanism driving described central rotating shaft to rotate, be connected to described central rotating shaft Flos Mume frame and the Chan Liao mechanism that is connected to described central rotating shaft, the vertical stability mechanism also including being connected to described Flos Mume frame, the active abrasive material mechanism being connected to described vertical stability mechanism and be located at the passive abrasive material mechanism that described cylinder bottom coordinates with described active abrasive material mechanism;Described active abrasive material mechanism includes the grinding roller sleeve being connected with described vertical stability mechanism, the grinding roller bearing being connected to described grinding roller sleeve, be located at described grinding roller sleeve in and the shaft of grinding roller that is connected with described grinding roller bearing and the grinding roller being rotationally connected with described shaft of grinding roller, described grinding roller is provided with the first ultra-fine abradant assembly;Described passive abrasive material mechanism includes that be connected to described cylinder coordinates the fixing bull ring milled and be located on described fixing bull ring the second ultra-fine abradant assembly coordinated with described first ultra-fine abradant assembly with described grinding roller.
As preferably, described first ultra-fine abradant assembly includes the frotton location division being located on described grinding roller outer peripheral face, the frotton rotating shaft being movably connected on described frotton location division and is movably connected on the frotton that rotates of described frotton rotating shaft.
As preferably, described frotton has axially arranged corrugated ring.
As preferably, described first ultra-fine abradant assembly also include being located at described grinding roller outer peripheral face and the mill pearl location division between adjacent described frotton location division, the mill pearl rotating shaft being movably connected on described mill pearl location division and be movably connected on the pearl rotating shaft of described mill around pearl of going round and round a millstone.
As preferably, described second ultra-fine abradant assembly includes the hard flour milling being located on described fixing bull ring inner peripheral surface, described grinding roller has the grinding roller circumferential profile determined by described first ultra-fine abradant assembly, and described hard flour milling has the profile of milling matched with described grinding roller circumferential profile.
As preferably, described hard flour milling is heat-conducting face;Described second ultra-fine abradant assembly also includes being located on described fixing bull ring the zone of heating for conducting heat to described hard flour milling.
As preferably, described vertical stability mechanism includes being connected to the fixed arm of described Flos Mume frame, the vertical axis being connected to described fixed arm and the bearing holder (housing, cover) being connected in described vertical axis.
As preferably, in described cylinder, it is additionally provided with the rough classification screen cloth between described Flos Mume frame and described clasfficiator.
As preferably, described rough classification screen cloth is provided with blanking vibrator.
As preferably, described blanking vibrator is set to staggered banding on described rough classification screen cloth.
Technological merit of the present utility model is that described bentonite super fine powder apparatus structure is compact, easy to use, and grinding component contact is good and structure is optimized, it is possible to fine grinding degree to material is greatly improved, and pulverizing is effective, and pulverizing efficiency is high, and yield is greatly improved.
Accompanying drawing explanation
Fig. 1 is the structural representation of this utility model embodiment;
Fig. 2 is the close-up schematic view of A in Fig. 1;
The each toponym numbering correspondence in figure is respectively as follows: 1-cylinder, 11-bull ring, 111-hard flour milling, 112-zone of heating, 2-clasfficiator, 3-central rotating shaft, 4-Flos Mume frame, 5-grinding roller sleeve, 51-grinding roller bearing, 52-shaft of grinding roller, 53-grinding roller, 531-frotton location division, 532-frotton rotating shaft, 533-rotates frotton, and 534-grinds pearl location division, and 535-grinds pearl rotating shaft, 536-is around pearl of going round and round a millstone, 6-fixed arm, 61-vertical axis, 62-bearing holder (housing, cover), 7-rough classification screen cloth, 8-blanking vibrator.
Detailed description of the invention
Below in conjunction with accompanying drawing, by specific embodiment, the utility model is described in further detail:
See Fig. 1, Fig. 2, a kind of bentonite super fine powder device, the clasfficiator 2 including cylinder 1, being located at cylinder 1 top, the central rotating shaft 3 being located at cylinder 1 bottom, for the drive mechanism driving central rotating shaft 3 to rotate, be connected to central rotating shaft 3 Flos Mume frame 4 and the Chan Liao mechanism that is connected to central rotating shaft 3, the vertical stability mechanism also including being connected to Flos Mume frame 4, the active abrasive material mechanism being connected to vertical stability mechanism and be located at cylinder 1 bottom and passive abrasive material mechanism that actively abrasive material mechanism coordinates;Vertical stability mechanism includes being connected to the fixed arm 6 of Flos Mume frame 4, the vertical axis 61 being connected to fixed arm 6 and the bearing holder (housing, cover) 62 being connected in vertical axis 61;Actively abrasive material mechanism include the grinding roller sleeve 5 being connected with vertical stability mechanism, the grinding roller bearing 51 that is connected to grinding roller sleeve 5, be located at grinding roller sleeve 5 in and the shaft of grinding roller 52 that is connected with grinding roller bearing 51 and the grinding roller 53 being rotationally connected with shaft of grinding roller 52, grinding roller 53 is provided with the first ultra-fine abradant assembly;Passive abrasive material mechanism includes that be connected to cylinder 1 coordinates the fixing bull ring 11 milled and be located on fixing bull ring 11 the second ultra-fine abradant assembly coordinated with the first ultra-fine abradant assembly with grinding roller 53.
First ultra-fine abradant assembly includes the frotton location division 531 being located on grinding roller 53 outer peripheral face, the frotton rotating shaft 532 being movably connected on frotton location division 531 and is movably connected on the frotton 533 that rotates of frotton rotating shaft 532.Frotton 533 has axially arranged corrugated ring.First ultra-fine abradant assembly also include being located at grinding roller 53 outer peripheral face and the mill pearl location division 534 between adjacent frotton location division 531, the mill pearl rotating shaft 535 being movably connected on mill pearl location division 531 and be movably connected on mill pearl rotating shaft 535 around pearl 536 of going round and round a millstone.
Second ultra-fine abradant assembly includes the hard flour milling 111 being located on fixing bull ring 11 inner peripheral surface, and grinding roller 53 has the grinding roller circumferential profile determined by the first ultra-fine abradant assembly, and hard flour milling 111 has the profile of milling matched with grinding roller circumferential profile.Hard flour milling 111 is heat-conducting face;Second ultra-fine abradant assembly also includes being located on fixing bull ring 11 for the zone of heating 112 conducted heat to hard flour milling 111.
The rough classification screen cloth 7 between Flos Mume frame 4 and clasfficiator 2 it is additionally provided with in cylinder 1.Rough classification screen cloth 7 is provided with blanking vibrator 8.Blanking vibrator 8 is set to staggered banding on rough classification screen cloth 7.
Claims (10)
1. a bentonite super fine powder device, including cylinder (1), it is located at the clasfficiator (2) at described cylinder (1) top, it is located at the central rotating shaft (3) of described cylinder (1) bottom, for the drive mechanism driving described central rotating shaft (3) to rotate, it is connected to the Flos Mume frame (4) of described central rotating shaft (3) and is connected to the Chan Liao mechanism of described central rotating shaft (3), it is characterized in that: also include being connected to the vertical stability mechanism of described Flos Mume frame (4), it is connected to the active abrasive material mechanism of described vertical stability mechanism and is located at the passive abrasive material mechanism that described cylinder (1) bottom coordinates with described active abrasive material mechanism;Described active abrasive material mechanism includes the grinding roller sleeve (5) being connected with described vertical stability mechanism, be connected to described grinding roller sleeve (5) grinding roller bearing (51), be located at described grinding roller sleeve (5) in and the shaft of grinding roller (52) that is connected with described grinding roller bearing (51) and the grinding roller (53) being rotationally connected with described shaft of grinding roller (52), described grinding roller (53) is provided with the first ultra-fine abradant assembly;Described passive abrasive material mechanism includes that be connected to described cylinder (1) coordinates the bull ring (11) milled and be located at upper the second ultra-fine abradant assembly coordinated with described first ultra-fine abradant assembly of described bull ring (11) with described grinding roller (53).
A kind of bentonite super fine powder device the most according to claim 1, it is characterised in that: described first ultra-fine abradant assembly includes the frotton location division (531) being located on described grinding roller (53) outer peripheral face, the frotton rotating shaft (532) being movably connected on described frotton location division (531) and is movably connected on the frotton that rotates (533) of described frotton rotating shaft (532).
A kind of bentonite super fine powder device the most according to claim 2, it is characterised in that: described frotton (533) has axially arranged corrugated ring.
A kind of bentonite super fine powder device the most according to claim 2, it is characterised in that: described first ultra-fine abradant assembly also include being located at described grinding roller (53) outer peripheral face and be positioned at the mill pearl location division (534) between adjacent described frotton location division (531), be movably connected on mill pearl rotating shaft (535) of described mill pearl location division (531) and be movably connected on described grind pearl rotating shaft (535) around pearl of going round and round a millstone (536).
5. according to a kind of bentonite super fine powder device described in claim 1 or 2 or 3 or 4, it is characterized in that: described second ultra-fine abradant assembly includes the hard flour milling (111) being located on described bull ring (11) inner peripheral surface, described grinding roller (53) has the grinding roller circumferential profile determined by described first ultra-fine abradant assembly, and described hard flour milling (111) has the profile of milling matched with described grinding roller circumferential profile.
A kind of bentonite super fine powder device the most according to claim 5, it is characterised in that: described hard flour milling (111) is heat-conducting face;Described second ultra-fine abradant assembly also includes being located at the upper zone of heating (112) for conducting heat of described bull ring (11) to described hard flour milling (111).
A kind of bentonite super fine powder device the most according to claim 1, it is characterised in that: described vertical stability mechanism includes being connected to the fixed arm (6) of described Flos Mume frame (4), the vertical axis (61) being connected to described fixed arm (6) and the bearing holder (housing, cover) (62) being connected in described vertical axis (61).
A kind of bentonite super fine powder device the most according to claim 1, it is characterised in that: it is additionally provided with the rough classification screen cloth (7) being positioned between described Flos Mume frame (4) and described clasfficiator (2) in described cylinder (1).
A kind of bentonite super fine powder device the most according to claim 8, it is characterised in that: described rough classification screen cloth (7) is provided with blanking vibrator (8).
A kind of bentonite super fine powder device the most according to claim 9, it is characterised in that: described blanking vibrator (8) is set to staggered banding on described rough classification screen cloth (7).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201521092744.7U CN205462477U (en) | 2015-12-25 | 2015-12-25 | Superfine milling equipment of bentonite |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201521092744.7U CN205462477U (en) | 2015-12-25 | 2015-12-25 | Superfine milling equipment of bentonite |
Publications (1)
Publication Number | Publication Date |
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CN205462477U true CN205462477U (en) | 2016-08-17 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201521092744.7U Withdrawn - After Issue CN205462477U (en) | 2015-12-25 | 2015-12-25 | Superfine milling equipment of bentonite |
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CN (1) | CN205462477U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105381838A (en) * | 2015-12-25 | 2016-03-09 | 安吉中瑞膨润土化工有限公司 | Superfine grinding device for bentonite |
-
2015
- 2015-12-25 CN CN201521092744.7U patent/CN205462477U/en not_active Withdrawn - After Issue
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105381838A (en) * | 2015-12-25 | 2016-03-09 | 安吉中瑞膨润土化工有限公司 | Superfine grinding device for bentonite |
CN105381838B (en) * | 2015-12-25 | 2017-11-14 | 安吉中瑞膨润土化工有限公司 | A kind of bentonite super fine powder device |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20160817 Effective date of abandoning: 20171114 |