EP0836893B1 - Trieuse pneumatique à axe vertical - Google Patents

Trieuse pneumatique à axe vertical Download PDF

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Publication number
EP0836893B1
EP0836893B1 EP97116684A EP97116684A EP0836893B1 EP 0836893 B1 EP0836893 B1 EP 0836893B1 EP 97116684 A EP97116684 A EP 97116684A EP 97116684 A EP97116684 A EP 97116684A EP 0836893 B1 EP0836893 B1 EP 0836893B1
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EP
European Patent Office
Prior art keywords
vertical
axis wind
rotor
wind sifter
sifter
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.)
Expired - Lifetime
Application number
EP97116684A
Other languages
German (de)
English (en)
Other versions
EP0836893A3 (fr
EP0836893A2 (fr
Inventor
Georg Dipl.-Ing. Konetzka
Marcus Dipl.-Ing. Körbler
Stefano Dipl.-Ing. Zampini
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.)
Hosokawa Alpine AG
Original Assignee
Hosokawa Alpine AG
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Priority claimed from DE1996143068 external-priority patent/DE19643068C2/de
Priority claimed from DE1996143042 external-priority patent/DE19643042C2/de
Priority claimed from DE1996143023 external-priority patent/DE19643023C2/de
Priority claimed from DE1996143043 external-priority patent/DE19643043C2/de
Application filed by Hosokawa Alpine AG filed Critical Hosokawa Alpine AG
Publication of EP0836893A2 publication Critical patent/EP0836893A2/fr
Publication of EP0836893A3 publication Critical patent/EP0836893A3/fr
Application granted granted Critical
Publication of EP0836893B1 publication Critical patent/EP0836893B1/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B07SEPARATING SOLIDS FROM SOLIDS; SORTING
    • B07BSEPARATING SOLIDS FROM SOLIDS BY SIEVING, SCREENING, SIFTING OR BY USING GAS CURRENTS; SEPARATING BY OTHER DRY METHODS APPLICABLE TO BULK MATERIAL, e.g. LOOSE ARTICLES FIT TO BE HANDLED LIKE BULK MATERIAL
    • B07B7/00Selective separation of solid materials carried by, or dispersed in, gas currents
    • B07B7/08Selective separation of solid materials carried by, or dispersed in, gas currents using centrifugal force
    • B07B7/083Selective separation of solid materials carried by, or dispersed in, gas currents using centrifugal force generated by rotating vanes, discs, drums, or brushes

Definitions

  • the invention relates to a vertical-axis air classifier with a central good job with tangential air supply arranged at the level of the classifying rotor, with a fixed on the circumference of the classifying rotor arranged at a radial distance Guide vane ring, with a ring-shaped one through one Paddle wheel classifier rotor and a coaxial radial distance to the
  • the outer circumference of the classifying rotor arranged guide vane ring limited Visual space, with a drive shaft a classifier wheel bearing, as well as an annular fine material outlet space and an annular coarse material outlet space, which are arranged on the same side below the classifier rotor.
  • Such an air classifier in which the material to be viewed is arranged around an axis rotating wheel is set in rotating motion and with one from the outside inward running air flow into which the rotating visible material is added evenly over the circumference of the classifying wheel to the classifying zone known from German Offenlegungsschrift DE 16 07 631 A.
  • German Offenlegungsschrift DE 3 521 638 A1 discloses an air classifier in which the Goods to be sifted are placed centrally and spread over a spreading plate distributed and bell-shaped over the outer circumference of the classifying rotor evenly distributed good veil passed past the classifier wheel blades.
  • the classifying wheel is flowed through by the classifying air from the outside in and that Fine material passed into the interior of the classifier rotor.
  • the rejected coarse material follows gravity continues and is surrounded by an annular coarse material discharge area added.
  • the visible air flows radially from the outside to the inside.
  • the rotating paddle wheel rejects the coarse material radially outwards and the fine material together with the classifying air into the interior of the classifying rotor transported.
  • the fine material sighted is then led axially downward Redirected direction and then discharged from the classifier rotor.
  • the drive and the bearing of the classifier rotor are above the classifier rotor arranged and on the same side of the central task.
  • the visible air flowing radially from the outside in through the classifying rotor carries the fine material into the interior of the classifier rotor, whereas the coarse material goes to the rotating blades is rejected.
  • the fines sighted in this way then in a radial direction from the inside to the outside of the classifying rotor discharged.
  • the cover plate together with the classifier wheel blades from an extended one, the classifier rotor penetrating part of the drive shaft.
  • the disadvantage is that the Inside the classifier rotor does not remain free of internals and therefore the flow in the Inside the classifier rotor is disturbed.
  • Another disadvantage is the insufficient sealing of the fine material discharge area vis-à-vis the viewing area, so that spray grain through the gap between Sifter wheel blades and housing penetrate into the fine material that has already been sighted can.
  • the construction is overall not very stable and an assembly or disassembly of the Classifier rotor out of the housing very difficult. Such is an air classifier especially not suitable for very high speeds.
  • the invention is therefore based on the object with a vertical air classifier to create a centralized task and spreading disc, in which the entire constructive design of classifier rotor, storage, drive and housing in such a way is solved that the classifier rotor is stable even at high speeds, a simple assembly / disassembly of the classifier rotor in the classifier housing enables and at the same time the flow is favored and on the other hand an easy one Cleaning is guaranteed, as well as improved sealing of the work rooms is made possible.
  • this object is achieved by the characterizing features solved according to the claims, in particular in that the Drive shaft, an annular fine material outlet space, an annular Coarse material exit space and the classifier wheel storage on the same side are arranged below the classifier rotor.
  • the classifier In order to be able to clean all areas within the classifier, the classifier must do so be completely disassembled into its individual parts. This is about the distribution of the functional connections such as drive, storage, good feed, fine material outlet and Coarse material escaping through several sides of the classifier housing is particularly difficult.
  • classifier according to the invention is that all functional connections are made from one side. The only exception is represents the product task, which is ideally carried out centrally from above.
  • the classifier wheel is from above via a cover in the Sifter housing easy to reach. To the air classifier according to the invention dismantling, only the upper housing cover has to be removed.
  • the classifier rotor can be released, in particular by means of a support device Drive shaft connected.
  • the attachment takes place in a preferred Design by a central screw.
  • the classifier rotor can be screwed off the drive shaft and axially adjusted removed from the top of the classifier housing.
  • the primary task of the support device is to transmit the torque from the drive shaft to the classifier rotor. At the same time, the support device carries the Classifier rotor completely. This construction allows the space inside the Classifier rotor are kept completely free.
  • the aerodynamically designed openings of the support device are used for Removal of the sifted fine material from the inside of the sifting wheel.
  • the load-bearing webs of the support device can in their cross section be aerodynamically shaped so as not to slow down the flow or otherwise to hinder and on the other hand the fine material with the visual air accelerate from the inside through a fan effect.
  • Suitable shapes of the webs are profiled cross sections, which are also spatial May have curvatures and thus act as an outlet guide. So can ventilation efficiency can be optimized.
  • the inner diameter of the support device in the Transitional area between classifier wheel and blade ring and the openings of the The support device also acts as an aperture.
  • the outer circumference of the transition area is machined as a sealing surface enables an exact seal of the visual space against the Feingutaustrittsraum.
  • the seal is a fluid that can be flushed Poetry.
  • the inner walls of the classifier housing are designed so that a light Accessibility is achieved. With the classifier rotor removed, this can be done Classifier housings can be easily cleaned from above. The too Removing product approaches can from the inner walls of the classifier housing can be easily removed. Visible material that falls on the bottom of the classifier housing can be easily removed from the case base by suction.
  • This classifier construction is essential compared to the prior art simplified.
  • the Cleaning openings mostly on the side of the classifier housing and provide window-like ones Breakthroughs.
  • a horizontal discharge of the product approaches from these Lateral breakthroughs are, however, difficult because of the inner Sifter housing wall loosened product approaches due to gravity vertically fall down and then difficult through the horizontal Cleaning openings can be carried out.
  • the classifier rotor according to the invention Since the classifier rotor according to the invention has no undercuts, must apart from the upper housing cover, the classifier housing is not disassembled become.
  • the visible material is affected by the action of gravity guided down along the classifier rotor. Except for the radial The material to be sifted essentially moves in turbulence Direction of gravity downwards.
  • the visible material is only the sifter offered once and for a short time. Due to the short dwell time of the material to be viewed on the classifier, the fine material cannot be completely diverted from the flow of classifying material and be sighted.
  • the rejected coarse material fraction therefore still contains significant proportions of fine grain. The quality of the coarse goods is therefore not optimal.
  • the vertical alignment of the classifier and the result in Visible material falling downward is an inconsistent Good concentration in the viewing zone, which means that the entire classifier rotor length is not can be used optimally.
  • the classifier To control the dwell time and the concentration of the goods in the visual space can and thus a larger proportion of the fine material through the classifier rotor prospects and thereby optimizing the quality of the coarse goods the classifier with a helical screw that runs coaxially to the classifying wheel Helix equipped, which is within the ring-shaped viewing area extends.
  • the idea is that a visible material introduced into the sifter is in its Residence time is affected. Because with conventional classifiers in the outer Visible zone a mixture of fresh feed material and already viewed material occurs, there is a broad distribution of residence times of individual good particles with negative ones Consequences for the visual quality.
  • the dwell time of the material to be sighted on the classifier is one important parameters for the visual quality. It determines the number of Particle contact with the classifying wheel or the guide vanes and thus the Probability for the release of coarse particles from adhering fine ones Particles.
  • the new helix in the viewing area also enables targeted Control of the visible material concentration in the area of the classifying wheel. unwanted Particle concentrations can thereby be avoided.
  • the helixes do one Transport of the in the viewing area between the guide vanes and the classifying wheel rotating visible material.
  • the transport effect can be selected by choosing the slope the helix can be adjusted. By increasing the slope to Coarse material leakage increases the transport effect and thus the dwell time shortened. If, on the other hand, the pitch of the screw spiral is reduced, it is Dwell time longer. If the slope is reduced to such an extent that it becomes negative, i.e. the transport effect is directed towards the entry of the visible goods, so the visible goods promoted upwards against gravity and it becomes an additional one After-effect of the coarse material achieved.
  • the screw spiral can over in individual areas the sight wheel height can be given a different slope. So that will the dwell time of the material to be classified varies over the height of the classifier wheel set.
  • the visible material in the upper area of the classifying wheel by a Helical section with a high pitch can be quickly drawn in middle section due to a slight slope of the screw spiral a long Dwell time or a negative effect can be achieved and in the lower area of the classifying wheel with a helical section again high incline a quick discharge of the sighted coarse material will be realized.
  • the control of the particle concentration is determined by the number of Snail spirals reached. Due to the fact that the sifters according to the invention the visual goods task in general on the the entire circumference of the sight wheel takes place evenly, takes each one Helix a peripheral part of the amount of particles to be sifted. By the number of screw spirals thus becomes the maximum particle concentration limited. To determine the particle concentration in individual areas above the Changing the sight wheel height can vary the number of worm helixes become.
  • the helical coils do not necessarily have to cover the whole Extend sight wheel height, you can only in partial areas of sight wheel heights be arranged.
  • a flat washer is below arranged of the classifier rotor and extends over the entire bottom of the annular coarse material discharge space.
  • the washer according to the invention is provided with clearers which are fixed on the Are attached to the surface of the ring disc, the transport effect reinforced, but there is a risk that the sighted coarse material through the The scraper is crushed and thus the quality of the coarse goods deteriorates.
  • the additional idea of the invention is the coarse material that has been sighted through a fluidize additional air flow and through a rotating ring disc to transport to the coarse goods outlet.
  • An additional, fixed ring prevents the finished coarse material from being returned to the viewing area.
  • Fig. 1 shows the cross section of an air classifier according to the invention with a closed drive shaft.
  • Fig. 2 shows the cross section of an air classifier according to the invention with a perforated drive shaft.
  • the drive shaft 2 In the wind sifter according to Fig. 1 at the lower end of the housing 1 is mounted the drive shaft 2.
  • the drive shaft 2 penetrates the housing 1 and receives the classifying rotor 8 at the shaft end.
  • the guide vane ring 3 is fixedly arranged within the housing 1 at the level of the classifier wheel vane ring 9 .
  • the complete classifier rotor 8 is detachably fastened to the drive shaft 2 with the fastening screw 12 .
  • the cover disk of the rotor 8, which is designed as a diffusing disk 16 is closed by a releasable cover screw 11 in order to allow access to the fastening screw 12 so that the complete rotor 8 can be detached from the drive shaft 2 .
  • the classifying air is supplied through the classifying air inlet 4 behind the guide vane ring 3 .
  • the annular coarse material discharge space 13 and the annular fine material discharge space 14 are arranged coaxially to the drive shaft below the classifying wheel vane ring 9 .
  • the lower cover plate 15 of the classifying rotor 8 is provided with openings and thereby opens the fine material outlet from the inside of the classifying rotor 8 into the fine material discharge space 14.
  • the section of the drive shaft 2 penetrating the fine material discharge space is designed as a perforated shaft part, the support device 10, and thereby enables the fine material to pass from inside the classifier wheel 8 into the fine material discharge space 14.
  • This support device 10 comprises the base plate 18, the ring washer 17 and the aerodynamic spacer webs 10a and form a connecting link between the drive shaft 2 and classifier wheel 8 and the passages for the discharge of the fine material from the inside of classifier wheel 8 .
  • the classifying wheel 8 consists of the classifying wheel vane ring 9, the diffusing screen 16 and the cover plate 15 and is connected to the support device 10 in a rotationally fixed manner.
  • This connection in the area of the discs 15 and 17 can be designed releasably and z. B. by screws 19 arranged uniformly over the circumference of the classifying rotor.
  • a seal 20 that can be flushed with a fluid is shown in an axial arrangement and reliably separates the visible space 21 from the fine material outlet space 14.
  • the lower cover disk 15 projects beyond the inner diameter of the annular disk 17, and thus over the support device 10 into the interior , and thus forms an orifice with a throttling effect in the transition area.
  • the good feed takes place on the cover plate 16 of the classifying rotor 8 , which forms a diffusing plate.
  • the annular channel between the outer diameter of the classifying wheel 8 and the inner diameter of the guide vane ring 3 forms the classifying space 21 over the height of the classifying wheel 8 .
  • the visible material 21 flows through the visible space 21 in the vertical direction.
  • a screw spiral 29 extends almost over the entire radial width of the visible space 21 and extends over the entire height of the classifying wheel 8 .
  • a single helical screw with a constant pitch is used.
  • the sifting air flow runs perpendicular to the sifting material flow.
  • the classifying air from the classifying air inlet 22 passes horizontally through the fixed guide vane ring 3 into the classifying chamber 21 and flows through it perpendicularly to the classifying material flow.
  • the fine material sighted is discharged axially with the classifying air via the fine material outlet 23 .
  • the coarse material sighted is discharged through the coarse material discharge space 13 below the viewing space 21 via the coarse material outlet 24 .
  • the coarse material discharge ring 25 is fixedly connected to the classifying wheel 8 and rotates within the coarse material discharge space 13 .
  • the fixed retaining ring 26 is arranged above the coarse material discharge space 13 and is firmly connected to the housing 1 .
  • the gap 27 for the introduction of the scavenging air 28 is located between the bottom of the coarse material discharge space 13 and the coarse material discharge ring 25 .

Landscapes

  • Combined Means For Separation Of Solids (AREA)
  • Meat, Egg Or Seafood Products (AREA)
  • Farming Of Fish And Shellfish (AREA)
  • Separation By Low-Temperature Treatments (AREA)
  • Gas Separation By Absorption (AREA)
  • Sampling And Sample Adjustment (AREA)
  • Centrifugal Separators (AREA)

Claims (30)

  1. Séparateur à air avec un axe vertical, une alimentation centrale de la matière, une arrivée de l'air de séparation (4) tangentielle, disposée à hauteur du rotor du séparateur (8), avec une couronne directrice (3) fixe disposée sur la périphérie du rotor du séparateur (8) selon un espacement radial, avec une enceinte de séparation (21) annulaire, délimitée par un rotor du séparateur en forme de roue à aubes (8) logé d'un côté et une couronne directrice (3) disposée de manière coaxiale selon un espacement radial par rapport à la périphérie extérieure du rotor du séparateur (8), avec un arbre d'entraínement (2), un palier pour la roue du séparateur, ainsi qu'une enceinte annulaire d'évacuation des particules fines (14) et une enceinte annulaire d'évacuation des particules grossières (13), qui sont disposées du même côté et au dessous du rotor du séparateur (8), caractérisé en ce que l'arbre d'entraínement (2) est raccordé au rotor du séparateur (8) par un dispositif de support (10) percé pour évacuer les particules fines, transmettant le moment de rotation et agencé d'une manière favorable à l'écoulement pour acheminer le flux de particules fines.
  2. Séparateur à air avec un axe vertical selon la revendication 1, caractérisé en ce que les perforations favorables à l'écoulement en coupe transversal, ménagées dans le dispositif de support (10) sont conçues sous la forme de fentes s'étendant de manière sensiblement axiale.
  3. Séparateur à air avec un axe vertical selon la revendication 1 ou 2, caractérisé en ce que les fentes s'étendant de manière axiale sont réparties régulièrement sur la périphérie.
  4. Séparateur à air avec un axe vertical selon les revendications 1 à 3, caractérisé en ce qu'au moins 20 % de la surface périphérique du dispositif de support (10) est dotée d'ouvertures.
  5. Séparateur à air avec un axe vertical selon les revendications 1 à 4, caractérisé en ce que le pourcentage de la surface représenté par les ouvertures au niveau de la surface de l'enveloppe du dispositif de support (10) est au moins égal au pourcentage de la surface représenté par les ouvertures au niveau de la surface de l'enveloppe du rotor du séparateur (8).
  6. Séparateur à air selon les revendications 1 à 5, caractérisé en ce que les perforations favorables à l'écoulement du dispositif de support (10) sont disposées sur une périphérie s'écartant de la périphérie radiale des aubes de la roue du séparateur (9).
  7. Séparateur à air avec un axe vertical selon les revendications 1 à 6, caractérisé en ce que le rotor du séparateur (8) est raccordé de manière amovible au dispositif de support (10).
  8. Séparateur à air avec un axe vertical selon les revendications 1 à 7, caractérisé en ce que, dans la zone d'écoulement intérieure du rotor du séparateur (8), au niveau de la transition entre le rotor du séparateur (8) et le dispositif de support (10), est disposé un limiteur de débit.
  9. Séparateur à air avec un axe vertical selon les revendications 1 à 8, caractérisé en ce qu'un joint d'étanchéité (20) est disposé entre l'enceinte d'évacuation des particules fines (14) et l'enceinte de séparation (21) dans la zone de transition entre le dispositif de support (10) et le rotor du séparateur (8).
  10. Séparateur à air avec un axe vertical selon la revendication 9, caractérisé en ce que le joint d'étanchéité (20) est un joint pouvant être nettoyé avec un fluide.
  11. Séparateur à air selon la revendication 10, caractérisé en ce que la fente de nettoyage du joint d'étanchéité (20) pouvant être nettoyé avec un fluide est disposée de manière axiale.
  12. Séparateur à air avec un axe vertical selon la revendication 10, caractérisé en ce que la fente de nettoyage du joint d'étanchéité (20) pouvant être nettoyé avec un fluide est disposée de manière radiale.
  13. Séparateur à air avec un axe vertical selon la revendication 1, caractérisé en ce que, à l'intérieur de l'espace de séparation (21), s'étend au moins une hélice (29) en forme de vis qui s'étend de manière coaxiale par rapport à la roue de séparation (8).
  14. Séparateur à air selon la revendication 13, caractérisé en ce que l'hélice (29) est fixée au niveau de la périphérie intérieure de la couronne directrice (3) fixe.
  15. Séparateur à air avec un axe vertical selon la revendication 13 ou 14, caractérisé en ce que l'hélice (29) présente un pas positif.
  16. Séparateur à air selon les revendications 13 à 15, caractérisé en ce que l'hélice (29) présente un pas négatif.
  17. Séparateur à air avec un axe vertical selon les revendications 13 à 16, caractérisé en ce que le pas de l'hélice (29) varie sur sa longueur.
  18. Séparateur à air avec un axe vertical selon les revendications 13 à 17, caractérisé en ce que l'hélice (29) présente des pas différents à différentes positions en hauteur de l'enceinte de séparation (21).
  19. Séparateur à air avec un axe vertical selon les revendications 13 à 18, caractérisé en ce que l'hélice (29) est seulement disposée dans dans une zone partielle de la distance radiale sur laquelle s'étend l'enceinte de séparation (21).
  20. Séparateur à air avec un axe vertical selon les revendications 13 à 19, caractérisé en ce que l'hélice (29) est seulement disposée dans une zone partielle de la hauteur axiale de l'enceinte de séparation.
  21. Séparateur à air avec un axe vertical selon les revendications 13 à 20, caractérisé en ce que plusieurs hélices (29) sont disposées dans l'enceinte de séparation (21).
  22. Séparateur à air avec un axe vertical selon la revendication 1, caractérisé en ce qu'un disque annulaire (25) est disposé au dessous de la roue du séparateur (8) en tournant à l'intérieur de l'enceinte d'évacuation des particules grossières (13) qui s'étend de manière coaxiale par rapport à l'arbre d'entraínement (2).
  23. Séparateur à air avec un axe vertical selon la revendication 22, caractérisé en ce que le disque annulaire rotatif (25) est raccordé de manière fixe à la roue du séparateur (8).
  24. Séparateur à air avec un axe vertical selon les revendications 22 ou 23, caractérisé en ce que le disque annulaire (25) s'étend sur la paroi latérale intérieure radiale de l'enceinte d'évacuation des particules grossières (13) et le fond de l'enceinte d'évacuation des particules grossières (13).
  25. Séparateur à air avec un axe vertical selon les revendications 22 à 24, caractérisé en ce que, entre le fond de l'enceinte d'évacuation des particules grossières (13) et le disque annulaire (25) se trouve un canal fendu permettant l'écoulement d'un fluide destiné à fluidiser les particules grossières.
  26. Séparateur à air avec un axe vertical selon les revendications 22 à 25, caractérisé en ce que le disque annulaire (25) est doté d'enceintes faisant saillie dans l'enceinte d'évacuation des particules grossières (13) réparties régulièrement sur la périphérie.
  27. Séparateur à air avec un axe vertical selon les revendications 22 à 26, caractérisé en ce qu'il est prévu, de manière coaxiale avec le disque annulaire rotatif (25), une bague de retenue fixe (26) destinée aux particules grossières.
  28. Séparateur à air avec un axe vertical selon la revendication 27, caractérisé en ce que la bague de retenue fixe (26) est raccordée de manière fixe au châssis (1).
  29. Séparateur à air avec un axe vertical selon les revendications 1 à 28, caractérisé en ce que l'évacuation des particules grossières depuis l'enceinte d'évacuation des particules grossières (13) est réalisée de manière axiale vers le bas.
  30. Séparateur à air avec un axe vertical selon les revendications 1 à 29, caractérisé en ce que l'évacuation des particules fines depuis l'enceinte d'évacuation des particules fines (14) est réalisée de manière axiale vers le bas.
EP97116684A 1996-10-18 1997-09-25 Trieuse pneumatique à axe vertical Expired - Lifetime EP0836893B1 (fr)

Applications Claiming Priority (8)

Application Number Priority Date Filing Date Title
DE1996143068 DE19643068C2 (de) 1996-10-18 1996-10-18 Windsichter mit Grobgutaustragsring
DE19643023 1996-10-18
DE19643068 1996-10-18
DE19643042 1996-10-18
DE1996143042 DE19643042C2 (de) 1996-10-18 1996-10-18 Vertikalachsiger Windsichter
DE1996143023 DE19643023C2 (de) 1996-10-18 1996-10-18 Windsichter mit Grobgutwendel
DE1996143043 DE19643043C2 (de) 1996-10-18 1996-10-18 Schleuderrad-Windsichter mit radialem Feingutaustrag
DE19643043 1996-10-18

Publications (3)

Publication Number Publication Date
EP0836893A2 EP0836893A2 (fr) 1998-04-22
EP0836893A3 EP0836893A3 (fr) 1999-04-14
EP0836893B1 true EP0836893B1 (fr) 2002-12-11

Family

ID=27438462

Family Applications (1)

Application Number Title Priority Date Filing Date
EP97116684A Expired - Lifetime EP0836893B1 (fr) 1996-10-18 1997-09-25 Trieuse pneumatique à axe vertical

Country Status (8)

Country Link
US (1) US6109448A (fr)
EP (1) EP0836893B1 (fr)
JP (1) JP4191272B2 (fr)
CN (1) CN1118339C (fr)
AT (1) ATE229377T1 (fr)
DE (1) DE59708938D1 (fr)
DK (1) DK0836893T3 (fr)
ES (1) ES2190796T3 (fr)

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DE102005044600B4 (de) * 2004-09-21 2022-09-15 Kao Corp. Verfahren zur Herstellung von Toner
JP5072333B2 (ja) * 2006-12-05 2012-11-14 株式会社トクヤマデンタル 有機無機複合粉末の処理方法
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CN101956765A (zh) * 2010-10-18 2011-01-26 洛阳栾川钼业集团股份有限公司 螺旋分级机齿轮轴
CN103127996A (zh) * 2011-11-29 2013-06-05 洛阳宇航重工机械有限公司 高效选粉机
JP7484041B2 (ja) 2018-08-30 2024-05-16 トーヨーカネツ株式会社 表示装置、表示装置付き搬送システム、プログラム、及び記録媒体

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DE2556382C3 (de) * 1975-12-15 1985-06-27 Alpine Ag, 8900 Augsburg Zentrifugalwindsichter
JPS594477A (ja) * 1982-06-30 1984-01-11 日清製粉株式会社 粉体分級機
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DE3521638C2 (de) * 1985-06-15 1994-03-31 Kloeckner Humboldt Deutz Ag Streuwindsichter zum Sichten von feinkörnigem Gut
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DE4140656C1 (fr) * 1991-12-10 1992-09-10 Alpine Ag, 8900 Augsburg, De
JP2897904B2 (ja) * 1992-11-10 1999-05-31 宇部興産株式会社 分級設備
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DE19513745A1 (de) * 1995-04-11 1996-10-17 Hosokawa Mikropul Ges Fuer Mah Klassierer
DE19629924C2 (de) * 1995-08-02 2001-04-12 Herbert Horlamus Vorrichtung und Verfahren zur Trennung von Teilchenströmen

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JPH10118571A (ja) 1998-05-12
JP4191272B2 (ja) 2008-12-03
EP0836893A3 (fr) 1999-04-14
CN1180591A (zh) 1998-05-06
US6109448A (en) 2000-08-29
ES2190796T3 (es) 2003-08-16
CN1118339C (zh) 2003-08-20
DK0836893T3 (da) 2003-03-24
ATE229377T1 (de) 2002-12-15
DE59708938D1 (de) 2003-01-23
EP0836893A2 (fr) 1998-04-22

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