CN201436068U - Multistage turbine pulverizer - Google Patents
Multistage turbine pulverizer Download PDFInfo
- Publication number
- CN201436068U CN201436068U CN2009200586421U CN200920058642U CN201436068U CN 201436068 U CN201436068 U CN 201436068U CN 2009200586421 U CN2009200586421 U CN 2009200586421U CN 200920058642 U CN200920058642 U CN 200920058642U CN 201436068 U CN201436068 U CN 201436068U
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- turbine
- cylindrical shell
- multistage
- diaphragm plate
- multistage turbine
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- Crushing And Pulverization Processes (AREA)
Abstract
A multistage turbine pulverizer is composed of at least two turbine crushers which are superposedly connected. The turbine crusher comprises from top to bottom: an upper feeding cylinder with a feeding hopper arranged therein; a crushing cylinder with its upper end connected with the feeding cylinder, a transversal separator arranged in middle of the crushing cylinder for separation to form a crushing cavity on its upper part and provided with a middle hole and a side hole, its inner wall provided with a wearing layer; a motor arranged in the lower part of the turbine crusher, a turbine disk arranged on a vertical output shaft and below the outlet of the feeding hopper; discharge outlet at the bottom of the crushing cylinder corresponded to the side hole of the transversal separator. The rotary speed of the turbine crusher is gradually increased from top to bottom. The utility model has advantages of equipment weight being 1/15 of that of a ball mill in the case of equivalent output; small power matching and capability of greatly reducing power consumption with power consumption per ton of 4-9KW.h/t, while the ball mill being greater than 25KW.h/t; high crushing and pulverizing efficiency, lower unit cost, investment saving and convenient maintenance.
Description
Technical field
The utility model belongs to the material grinding equipment technical field, especially relates to the efficient flour mill of a kind of multistage turbine.
Background technology
China is cement, pottery, building materials, nonmetal breeze big producing country in the world, the grinding of the raw mill in cement plant, cement grinding, ceramic grinding, kaolin powder, Cornstarch, coal all is to adopt ball mill, and the ball mill that present national every profession and trade adopts reaches the hundreds of thousands platform.Ball mill is a kind of technology maturation product, has the operation rate height, reliable operation, and product fineness is regulated manageable advantage.But ball mill build heaviness, need with the heavy cylindrical shell of up to a hundred tons of jumbo driven by motor and up to a hundred tons steel ball motion, mechanical efficiency is low, and floor space is big, initial investment cost height, power consumption is big during operation, load adaptability is poor, and the consumption of abrasive body and liner plate is big, and noise is big during operation, cost of overhaul height, environment are poor, and product fineness can only reach about 200 orders.Therefore cement industry and grinding industry press for a kind of energy-efficient milling equipment and replace ball mill.
The utility model content
The purpose of this utility model just provides a kind of multistage turbine pulverizer, the few efficient height of its occupation of land simple in structure, the initial investment cost is low, and power consumption is little during operation, and load adaptability is good, the consumption of abrasive body and liner plate is few, and noise is little during operation, and the cost of overhaul is low, few to the pollution of environment.
For realizing above-mentioned utility model purpose, multistage turbine pulverizer of the present utility model adopts following technical scheme:
A kind of multistage turbine pulverizer is characterized in that: connected to form by at least 2 turbine disintegrating machine stacks, described turbine disintegrating machine is formed and is from top to bottom comprised:
One opening two ends up has the last feeding cylinder body or the pipe of adpting flange, is provided with the taper feed hopper in tube or the pipe, and tube end perforate is corresponding to hopper outlet;
One opening two ends up has the broken cylindrical shell that adpting flange, upper end are connected with last feeding cylinder body, and the centre is provided with the diaphragm plate of separating up and down, and cylindrical shell top constitutes crusher chamber, and inwall is provided with wearing layer, and diaphragm plate has interstitial hole and side opening; Cylindrical shell is provided with motor in the bottom, after its vertical output shaft passes the dividing plate interstitial hole turbine disk is housed, and turbine disk correspondence is in feed hopper outlet below, and the tube end has discharge opening corresponding to the diaphragm plate side opening.
Described turbine disc structure is:
1) have material receiving port in the middle of the hollow disc, end face, have the shaft with keyway hole in the middle of the bottom surface and cooperate with the vertical output shaft of motor, the side has at least 2 and gets rid of the material mouth.
2) plectane of an impeller and its below is fixed together or one is made, and has the shaft with keyway hole in the middle of the plectane bottom surface and cooperates with the vertical output shaft of motor.
On the basis of the above, the utility model can also be done further improvement:
1, in the middle of described cylindrical shell bottom is divided into two longitudinal baffles and both sides, each is corresponding to a described diaphragm plate side opening and a tube end discharge opening up and down in both sides, and the cylindrical shell wallboard perforate of pars intermedia both sides makes things convenient for disassembling and assembling machine.
2, described wearing layer is the abrasion-proof backing block of splicing, or to encircle the wear-resisting pipe box that is fixed on the crusher chamber inwall up and down.
3, described turbine disintegrating machine rotary speed increases progressively from top to bottom successively.
4, described motor reel is connected by key with the turbine disk.
The utlity model has following superiority:
Under the suitable situation of output, weight of equipment only is 1/15 of a ball mill; The power coupling is little, can reduce power consumption significantly, ton material power consumption 4~9KW.h/t, and ball mill is>25KW.h/t; Crushing and grinding efficient height, unit cost is low, reduced investment, easy to maintenance.
Description of drawings
Fig. 1 is the cross-sectional schematic of this multistage turbine pulverizer embodiment;
Fig. 2 is the turbine disintegrating machine enlarged diagram among Fig. 1;
Fig. 3 analyses and observe enlarged diagram along the A-A line of Fig. 2;
Fig. 4 analyses and observe enlarged diagram along the B-B line of Fig. 2;
Fig. 5 is the C-C line cross-sectional schematic along Fig. 2;
Fig. 6 is the D-D line cross-sectional schematic along Fig. 2;
Fig. 7 is the enlarged diagram of analysing and observe of another kind of turbine disc structure;
Fig. 8 is the schematic top plan view of Fig. 7.
Among the figure: 1-turbine disintegrating machine; The last feeding cylinder body of 2-; 3-taper feed hopper; The broken cylindrical shell of 4-; The 41-discharge opening; The perforate of 42-cylindrical shell wallboard; The 5-wearing layer; The 6-turbine disk; The 61-material receiving port; 62-shaft with keyway hole; 63-gets rid of the material mouth; The 7-key; The 8-motor; The 9-diaphragm plate; 91-diaphragm plate side opening; The 10-crusher chamber, 11-encircles up and down, the 12-longitudinal baffle.
The specific embodiment
The utility model is described in further detail below in conjunction with the drawings and specific embodiments.
As shown in Figure 1: multistage turbine pulverizer embodiment of the present utility model, being superposeed up and down by four turbine disintegrating machines 1 connects to form, and turbine disintegrating machine rotary speed increases progressively from top to bottom successively.
Referring to Fig. 2 to Fig. 6, every turbine disintegrating machine 1 from top to bottom comprises again: opening two ends up has the last feeding cylinder body 2 of adpting flange, is provided with taper feed hopper 3 in the tube, and tube end perforate is corresponding to hopper outlet; One opening two ends up has the broken cylindrical shell 4 that adpting flange, upper flanges are connected with flange at the bottom of the last feeding cylinder body tube, be provided with the diaphragm plate of separating up and down 9 in the middle of the broken cylindrical shell 4, cylindrical shell top constitutes crusher chamber 10, inwall is provided with wearing layer 5, and it is: to encircle the wear-resisting pipe box that is fixed on the crusher chamber inwall up and down; Diaphragm plate has interstitial hole and side opening 91; Be provided with motor 8 in the cylindrical shell bottom, its vertical output shaft is equipped with the turbine disk 6 after passing the dividing plate interstitial hole, motor reel is connected by key with the turbine disk, the turbine disk 6 correspondences are in taper feed hopper 3 outlet belows, the structure of this routine turbine disk 6 is a hollow disc, have material receiving port 61 in the middle of the end face, have shaft with keyway hole 62 in the middle of the bottom surface and cooperate with the vertical output shaft of motor, the side has four and gets rid of material mouth 63.
Have discharge opening 41 corresponding to diaphragm plate side opening 91 at the bottom of 4 of the broken cylindrical shells; In the middle of the cylindrical shell bottom is divided into two longitudinal baffles 12 and both sides, both sides are up and down respectively corresponding to a described diaphragm plate side opening 91 and a tube end discharge opening 41, motor is installed in the centre of cylindrical shell bottom, and the motor both sides are tapping channel, and the cylindrical shell wallboard perforate 42 of pars intermedia both sides makes things convenient for disassembling and assembling machine.
Fig. 7 and shown in Figure 8 be the structure of the another kind of turbine disk:
The plectane of one impeller and its below is fixed together or one is made, and has the shaft with keyway hole in the middle of the plectane bottom surface and cooperates with the vertical output shaft of motor.
Certainly, the structure of the turbine disk can also have other form, as long as the material that can will fall is thereon thrown the crusher chamber wall away.
Every turbine disintegrating machine is fixed with bolt, spring washer, nut by adpting flange, the superiors are that the charging cylindrical shell of first turbine disintegrating machine is as charging aperture, from top to bottom the discharging cylindrical shell of the turbine disintegrating machine on each layer all is communicated with the charging cylindrical shell of turbine disintegrating machine on the adjacent layer, and the bottom discharging cylindrical shell of the 4th turbine disintegrating machine is as discharging opening.
The turbine disk of each turbine disintegrating machine can turn clockwise, and also can be rotated counterclockwise, and also can rotate in opposite directions; From top to bottom the secondary speed of each disintegrating machine raises step by step.
In addition, the motor of described turbine disintegrating machine also can change the hydraulic motor drive into.
The course of work: material particles enters in the turbine disk of first disintegrating machine in the taper feed hopper of last feeding cylinder body, by motor and key, motor turns clockwise, driving the turbine disk and material rotates in the crusher chamber indoor high-speed, material throws away and forms continuous material curtain, material is subjected to the effect of turbine disk centrifugal force and acceleration of gravity, in crusher chamber, impact voluntarily mutually, rub, and follow-up material continuously throws away to wearing layer, material crusher chamber indoor as bullet beat that the hail of bullets are impacted, hit being subjected to, collision friction and pulverizing.
Material through the 1st turbine disk crusher in crushing, continuously enter into the taper charging aperture of the 2nd turbine disk disintegrating machine top charging cylindrical shell, enter the turbine disk of the 2nd turbine disk disintegrating machine, the turbine disk up time rotation of the 2nd turbine disk disintegrating machine, material is thrown on the wearing layer material on every side by the turbine disk once more, and material is subjected to impact, strike, collision once more, rubbing makes the material pulverizing.Through the comminuting matter of second turbine disk disintegrating machine, repeat the aforesaid operations process, material particles enters the 3rd~4 crusher in crushing chamber in mode continuously, carries out crushing and grinding, finally makes material meet the requirements of superfine powder.
In the above-mentioned multistage turbine dish flour mill, material enters in the turbine disk of first turbine disk disintegrating machine, because the turbine disk rotates, the rotation of drive material produces air force, material particles flows in the indoor rotation of crusher chamber, and material particles and material produce impact, extruding, collision once more, rubbing grinds material.Again because many turbine disk disintegrating machine series connection, it is the broken chamber series connection of many turbine disk disintegrating machines, every crusher turbine dish is also connected, a kind of multistage turbine dish flour mill described in the utility model and powder concentrator can be formed closed cycle, the above superfine powder of 325 orders is selected through powder concentrator, and the following material particles of 325 orders returns in the grinding machine to be regrinded.
The turbine disk rotating speed of every disintegrating machine is high more, and the material particles grinding is just tiny more, otherwise just big; Disintegrating machine series connection platform number is many more, material particles grinding tiny more, and the order number is high more.
Claims (8)
1. multistage turbine pulverizer is characterized in that: connected to form by at least 2 turbine disintegrating machines (1) stack, described turbine disintegrating machine (1) is formed and is from top to bottom comprised:
One opening two ends up has the last feeding cylinder or the pipe (2) of adpting flange, and (2) are provided with feed hopper (3) in last feeding cylinder body or the pipe, and tube end perforate is corresponding to hopper outlet;
One opening two ends up has the broken cylindrical shell (4) that adpting flange, upper end are connected with last feeding cylinder body, the centre is provided with the diaphragm plate of separating up and down (9), cylindrical shell top constitutes crusher chamber (10), and inwall is provided with wearing layer (5), and diaphragm plate has interstitial hole and side opening (91); Be provided with motor (8) in the cylindrical shell bottom, its vertical output shaft is equipped with the turbine disk (6) after passing the dividing plate interstitial hole, and turbine disk correspondence is in feed hopper outlet below, and the tube end has discharge opening (41) corresponding to diaphragm plate side opening (91).
2. multistage turbine pulverizer according to claim 1, it is characterized in that: the described turbine disk (6) structure is a hollow disc, have material receiving port (61) in the middle of the end face, have shaft with keyway hole (62) in the middle of the bottom surface and cooperate with the vertical output shaft of motor, the side has at least 2 and gets rid of material mouthful (63).
3. multistage turbine pulverizer according to claim 1, it is characterized in that: the described turbine disk (6) structure is one to be fixed together or integrally formed impeller with the plectane of its below, has the shaft with keyway hole in the middle of the plectane bottom surface to cooperate with the vertical output shaft of motor.
4. according to claim 1 or 2 or 3 described multistage turbine pulverizers, it is characterized in that: in the middle of the bottom that described broken cylindrical shell (4) is separated by diaphragm plate is divided into two longitudinal baffles (12) and both sides, each is corresponding to described diaphragm plate side opening (91) and tube end discharge opening (41) up and down in both sides, and the cylindrical shell wallboard perforate of pars intermedia both sides makes things convenient for disassembling and assembling machine.
5. according to claim 1 or 2 or 3 described multistage turbine pulverizers, it is characterized in that: described wearing layer (5) is the abrasion-proof backing block of splicing, or to encircle the wear-resisting pipe box that (11) are fixed on the crusher chamber inwall up and down.
6. multistage turbine pulverizer according to claim 4 is characterized in that: described wearing layer (5) is the abrasion-proof backing block of splicing, or to encircle the wear-resisting pipe box that is fixed on the crusher chamber inwall up and down.
7. multistage turbine pulverizer according to claim 5 is characterized in that: described turbine disintegrating machine rotary speed increases progressively from top to bottom successively.
8. multistage turbine pulverizer according to claim 6 is characterized in that: described turbine disintegrating machine rotary speed increases progressively from top to bottom successively.
Priority Applications (1)
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CN2009200586421U CN201436068U (en) | 2009-06-17 | 2009-06-17 | Multistage turbine pulverizer |
Applications Claiming Priority (1)
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CN2009200586421U CN201436068U (en) | 2009-06-17 | 2009-06-17 | Multistage turbine pulverizer |
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CN201436068U true CN201436068U (en) | 2010-04-07 |
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CN2009200586421U Expired - Fee Related CN201436068U (en) | 2009-06-17 | 2009-06-17 | Multistage turbine pulverizer |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102357387A (en) * | 2011-07-19 | 2012-02-22 | 刘国俊 | Turbine reaction composite vertical mill |
CN104759335A (en) * | 2015-03-18 | 2015-07-08 | 兰贤光 | Machine-made sand production process |
CN111701690A (en) * | 2020-06-30 | 2020-09-25 | 江苏鹏飞集团股份有限公司 | Centrifugal iron remover for powder |
-
2009
- 2009-06-17 CN CN2009200586421U patent/CN201436068U/en not_active Expired - Fee Related
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102357387A (en) * | 2011-07-19 | 2012-02-22 | 刘国俊 | Turbine reaction composite vertical mill |
CN102357387B (en) * | 2011-07-19 | 2013-11-20 | 刘国俊 | Turbine reaction composite vertical mill |
CN104759335A (en) * | 2015-03-18 | 2015-07-08 | 兰贤光 | Machine-made sand production process |
CN111701690A (en) * | 2020-06-30 | 2020-09-25 | 江苏鹏飞集团股份有限公司 | Centrifugal iron remover for powder |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20100407 Termination date: 20130617 |