EP0484758A2 - Apparatus for dispersing materials - Google Patents

Apparatus for dispersing materials Download PDF

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Publication number
EP0484758A2
EP0484758A2 EP91118189A EP91118189A EP0484758A2 EP 0484758 A2 EP0484758 A2 EP 0484758A2 EP 91118189 A EP91118189 A EP 91118189A EP 91118189 A EP91118189 A EP 91118189A EP 0484758 A2 EP0484758 A2 EP 0484758A2
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EP
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Prior art keywords
air channel
air
material feed
sieve
spreading
Prior art date
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Granted
Application number
EP91118189A
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German (de)
French (fr)
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EP0484758A3 (en
EP0484758B1 (en
Inventor
Herbert Dr. Weit
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Christian Pfeiffer Maschinenfabrik GmbH and Co KG
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Christian Pfeiffer Maschinenfabrik GmbH and Co KG
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    • 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
    • B07B11/00Arrangement of accessories in apparatus for separating solids from solids using gas currents
    • B07B11/06Feeding or discharging arrangements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F23/00Mixing according to the phases to be mixed, e.g. dispersing or emulsifying
    • B01F23/30Mixing gases with solids
    • 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
    • B07B4/00Separating solids from solids by subjecting their mixture to gas currents
    • B07B4/02Separating solids from solids by subjecting their mixture to gas currents while the mixtures fall
    • B07B4/025Separating solids from solids by subjecting their mixture to gas currents while the mixtures fall the material being slingered or fled out horizontally before falling, e.g. by dispersing elements
    • 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 device for material dispersion, in particular for scatter classifiers, according to the preamble of claim 1.
  • a device of the generic type is known for example from DE 36 21 221 C2.
  • this known device which is used in a multi-stage scattering sifter, cone-shaped scattering discs are used in a conventional manner.
  • multi-stage processes With multi-stage processes, a relatively good, even distribution of the material to be classified is achieved in front of the viewing area.
  • a single-stage spreader plate In the case of a single-stage spreader plate, however, there is always the risk of a streak-like distribution of the material thrown away by centrifugal forces from the upper edge of the spreader plate, so that subsequently no optimal screening is carried out.
  • the object of the invention is therefore to create a device for material dispersion which is structurally relatively simple and which allows good homogenization to achieve in the dispersion of the material, relatively simple control options should also be possible regardless of the rotation of the sifter basket.
  • the material fed into the air gutter from above, which is preferably fed through several, evenly spaced material feed lines, is therefore fluidized by the inflowing air even in a stationary air gutter, held above the sieve-like surface and, if necessary, set into a rotational movement, so that the material fed in almost like flowing in a gully.
  • the material to be classified can be introduced evenly dispersed into the ring-shaped visual space underneath via the radially outer edge.
  • the supply of compressed air or another gas can be on the bottom side of the air channel or also on the channel Side walls can be provided to improve the material outflow.
  • the height of the sieve-like surface above the bottom of the air channel can also be suitably adjusted.
  • the volume of the material feed and its structure it is possible to regulate the compressed air supplied both in terms of pressure and volume.
  • the air channel can also have a semicircular contour in vertical section.
  • the air channel is usually also arranged horizontally, a slight inclination radially outward being desirable for better flow of the dispersed material.
  • the end surface thereof can be guided upwards against the sieve-like surface in the manner of an inclined plane, so that the floating forces acting against the material particles from below are improved.
  • the formation of sieves and holes can also determine an outflow direction of the compressed air.
  • rotating dispersing vanes can be expediently provided somewhat below the air channel, so that a further rotary influencing of the predispersed material can thereby be carried out.
  • the outer diameter of these dispersing or accelerating blades corresponds approximately the outer diameter of the air channel and can be kept slightly larger.
  • a device for material dispersion designed in this way therefore also allows the feed material to be optimally influenced in terms of control technology with regard to a uniform, homogeneous distribution over the entire circumference, this being possible with a simple construction.
  • both the rotation and the levitation of the material can be influenced by the different compressed air conditions, whereby there is complete independence from the drive of the classifier basket.
  • the feed direction of the supplied material is suitably in the direction of flow of the volume of material fluidized in the air channel.
  • the figure shows a vertical section through a spreading sifter 1 with a sifter cage 4 driven via the central shaft 3.
  • the housing 2 of the spreading sifter 1 has an essentially circular cylindrical shape, which in the lower part merges into a funnel 28 for the coarse material outlet 27.
  • annular or spiral sifting air channels 6 are arranged. From these classifying air channels 6, the classifying air flows through a guide vane ring 7 essentially tangentially into the actual classifying area 24.
  • An approximately U-shaped air channel 10 is provided above the sifter basket 4 and is fixed to the sifter housing in a stationary manner.
  • This upwardly open air channel 10 has a perforated plate at about half the height in a horizontal arrangement 12 on.
  • An air chamber 18 is accordingly formed below this perforated plate 12. Compressed air with a rotationally increasing flow direction flows into this air chamber 18 at the bottom via a feed line 16.
  • the material feed 11 above the air channel 10 is inclined in the direction of the desired rotational movement of the material guided in the air channel.
  • the material to be classified and introduced via the material feed 11 is held above the perforated plate 12 by the air blown in below in the manner of a fluidized medium and blown out uniformly distributed over the radially outer edge 19 of the air channel into the region of the visible space.
  • approximately square-shaped acceleration wings 22 Arranged on the top of the viewing basket 4, approximately square-shaped acceleration wings 22 impart further tangential acceleration to the material dispersed via the air channel, so that the material particles, well dispersed, reach the actual viewing space 24 in the area between the sight strips 5 and the guide vane ring 7.
  • the fine material passing through the viewing strips 5 into the centrifugal basket 4 is drawn off downwards via the fine material outlet 26 in the example. A further withdrawal direction of the fine material could take place vertically upwards over the interior of the classifier basket 4.
  • the coarse material with heavier material particles is guided in the sifter 1 via the funnel 28 into the coarse material outlet 27.
  • the setting of the compressed air supplied via the supply lines 16 and 17 makes it possible, independently of the rotation of the classifier basket 4, to impart a movement to the material to be classified which is the material can flow as in a water channel, so that a well-dispersed material is fed to the actual viewing zone.

Abstract

The invention relates to a material dispersion apparatus, particularly for spreading classifiers, with an upper material supply and a material feed surface. The material feed surface is constructed as a sieve-like surface, which is installed in an air channel and the material supply is fluidized above the sieve-like surface and discharged over the outer rim of the material feed surface to fall down to the spreading classifier basket.

Description

Die Erfindung betrifft eine Vorrichtung zur Materialdispergierung, insbesondere für Streusichter, gemäß Oberbegriff des Anspruchs 1.The invention relates to a device for material dispersion, in particular for scatter classifiers, according to the preamble of claim 1.

Eine Vorrichtung der gattungsgemäßen Art ist beispielsweise aus der DE 36 21 221 C2 bekannt. Bei dieser bekannten Vorrichtung, die bei einem mehrstufigen Streusichter eingesetzt ist, werden in herkömmlicher Weise umgekehrt kegelförmige Streuteller verwendet. Bei mehrstufigen Verfahren erreicht man zwar eine relativ gute, gleichmäßige Verteilung des zu klassierenden Materials vor dem Sichtraum. Bei einem einstufigen Streuteller besteht jedoch stets die Gefahr einer strähnenhaften Verteilung des durch Zentrifugalkräfte vom oberen Rand des Streutellers weggeschleuderten Materials, so daß nachfolgend auch keine optimale Sichtung durchgeführt werden.A device of the generic type is known for example from DE 36 21 221 C2. In this known device, which is used in a multi-stage scattering sifter, cone-shaped scattering discs are used in a conventional manner. With multi-stage processes, a relatively good, even distribution of the material to be classified is achieved in front of the viewing area. In the case of a single-stage spreader plate, however, there is always the risk of a streak-like distribution of the material thrown away by centrifugal forces from the upper edge of the spreader plate, so that subsequently no optimal screening is carried out.

Die mit Streutellern erreichte Dispergierung des Materials ist daher noch unzureichend, wobei üblicherweise eine starre Kopplung mit der Rotation des entsprechenden Sichterkorbes vorgesehen ist. Eine unterschiedliche Drehzahl des Streutellers in Relation zum Sichterkorb ist daher lediglich mittels der relativ aufwendigen Konstruktion unterschiedlicher Antriebe möglich.The dispersion of the material achieved with spreading discs is therefore still inadequate, and a rigid coupling with the rotation of the corresponding sifter basket is usually provided. A different speed of the spreading disc in relation to the classifier basket is therefore only possible by means of the relatively complex construction of different drives.

Unter Berücksichtigung dieser Nachteile liegt der Erfindung daher die Aufgabe zugrunde, eine Vorrichtung zur Materialdispergierung zu schaffen, die konstruktiv relativ einfach aufgebaut ist und die es erlaubt, eine gute Homogenisierung bei der Dispergierung des Materials zu erreichen, wobei relativ einfache Regelungsmöglichkeiten auch unabhängig von der Rotation des Sichterkorbes möglich sein sollten.Taking these disadvantages into account, the object of the invention is therefore to create a device for material dispersion which is structurally relatively simple and which allows good homogenization to achieve in the dispersion of the material, relatively simple control options should also be possible regardless of the rotation of the sifter basket.

Diese Aufgabe wird bei der Erfindung durch die Merkmale des Anspruchs 1 gelöst.This object is achieved in the invention by the features of claim 1.

Hierbei kann als Kerngedanke zur Materialdispergierung die Anordnung einer sieb- oder lochartigen Fläche als Materialaufgabefläche gesehen werden, unter der eine Gas- oder Luftströmung im wesentlichen in aufsteigender Richtung erzeugt wird.In this case, the arrangement of a sieve-like or hole-like surface as a material feed surface, under which a gas or air flow is generated essentially in the ascending direction, can be seen as the core idea for material dispersion.

In einfachster Weise läßt sich dies in Art einer Luftrinne, die beispielsweise rechteckige U-Kontur haben kann, realisieren, wobei etwa in halber Höhe der Rinne die siebartige Fläche vorgesehen ist. Unterhalb dieser siebartigen Fläche sind eine oder mehrere unterteilte Luftkammern vorhanden, so daß über eingeströmte Druckluft das auf die siebartige Fläche fallende Material sozusagen fluidisiert wird. Das von oben in die Luftrinne aufgegebene Material, das vorzugsweise über mehrere, gleichmäßig beabstandete Materialzuführleitungen aufgegeben wird, wird daher auch bei einer stationären Luftrinne durch die einströmende Luft fluidisiert, oberhalb der siebartigen Fläche gehalten und gegebenenfalls in eine Drehbewegung versetzt, so daß das aufgegebene Material nahezu wie in einer Wasserrinne fließt. Gleichzeitig kann mittels einer Neigungsorientierung der Luftrinne oder auch ergänzend bzw. alternativ durch Führungsbleche in der Luftrinne selbst das zu klassierende Material über den radial äußeren Rand gleichmäßig dispergiert in den darunter liegenden ringförmigen Sichtraum eingeleitet werden.
Die Zuführung von Druckluft oder auch eines anderen Gases kann bodenseitig an der Luftrinne oder auch an deren Seitenwänden zur Verbesserung der Materialabströmung vorgesehen werden.
This can be implemented in the simplest manner in the manner of an air channel which, for example, can have a rectangular U-contour, the screen-like surface being provided approximately halfway up the channel. Below this sieve-like surface there are one or more subdivided air chambers, so that the material falling on the sieve-like surface is fluidized, so to speak, by inflowing compressed air. The material fed into the air gutter from above, which is preferably fed through several, evenly spaced material feed lines, is therefore fluidized by the inflowing air even in a stationary air gutter, held above the sieve-like surface and, if necessary, set into a rotational movement, so that the material fed in almost like flowing in a gully. At the same time, by means of an inclination orientation of the air channel or additionally or alternatively by means of guide plates in the air channel itself, the material to be classified can be introduced evenly dispersed into the ring-shaped visual space underneath via the radially outer edge.
The supply of compressed air or another gas can be on the bottom side of the air channel or also on the channel Side walls can be provided to improve the material outflow.

Geeigneterweise kann auch die Höhe der siebartigen Fläche über dem Boden der Luftrinne eingestellt werden. Andererseits ist auch im Hinblick auf das Volumen der Materialaufgabe und deren Struktur die Regulierung der zugeführten Druckluft sowohl druck- wie volumenmäßig möglich.The height of the sieve-like surface above the bottom of the air channel can also be suitably adjusted. On the other hand, with regard to the volume of the material feed and its structure, it is possible to regulate the compressed air supplied both in terms of pressure and volume.

An Stelle einer Rechteckkontur kann die Luftrinne auch etwa Halbkreiskontur im Vertikalschnitt aufweisen.Instead of a rectangular contour, the air channel can also have a semicircular contour in vertical section.

Üblicherweise wird die Luftrinne auch horizontal angeordnet, wobei eine geringfügige Neigung nach radial außen zum besseren Abströmen des dispergierten Gutes wünschenswert ist.The air channel is usually also arranged horizontally, a slight inclination radially outward being desirable for better flow of the dispersed material.

Andererseits ist auch eine spiralförmige Anordnung der Luftrinne selbst in vertikaler Richtung denkbar, wobei auch mehrere Materialaufgaben und Luftkammern, abhängig von den Anwendungsfällen, eine vorteilhafte Dispergierung ergeben können.On the other hand, a spiral arrangement of the air channel even in the vertical direction is also conceivable, although several material tasks and air chambers, depending on the application, can also result in advantageous dispersion.

Im Falle mehrerer Luftkammern kann deren Endfläche in Art einer schiefen Ebene nach oben gegen die siebartige Fläche geführt werden, so daß die von unten gegen die Materialpartikel wirkenden Schwebekräfte verbessert werden. In diesem Sinne kann auch die Sieb- und Lochbildung eine Ausströmrichtung der Druckluft mitbestimmen.In the case of a plurality of air chambers, the end surface thereof can be guided upwards against the sieve-like surface in the manner of an inclined plane, so that the floating forces acting against the material particles from below are improved. In this sense, the formation of sieves and holes can also determine an outflow direction of the compressed air.

Zur weiteren Dispergierung des Materials können zweckmäßigerweise etwas unterhalb der Luftrinne rotierende Dispergierflügel vorgesehen sein, so daß hierdurch eine weitere rotative Beeinflussung des vordispergierten Materials durchgeführt werden kann. Der äußere Durchmesser dieser Dispergier- bzw. Beschleunigungsflügel entspricht etwa dem äußeren Durchmesser der Luftrinne und kann geringfügig größer gehalten sein.For further dispersion of the material, rotating dispersing vanes can be expediently provided somewhat below the air channel, so that a further rotary influencing of the predispersed material can thereby be carried out. The outer diameter of these dispersing or accelerating blades corresponds approximately the outer diameter of the air channel and can be kept slightly larger.

Eine derart ausgebildete Vorrichtung zur Materialdispergierung gestattet daher auch in regelungstechnischer Art eine optimale Beeinflussung des aufgegebenen Materials im Hinblick auf eine gleichmäßige, homogene Verteilung über den gesamten Umfang, wobei dies mit einer einfachen Konstruktion möglich ist. Zudem kann über die unterschiedlichen Druckluftverhältnisse sowohl die Rotation als auch das Schweben des Materials beeinflußt werden, wobei eine vollkommene Unabhängigkeit vom Antrieb des Sichterkorbes besteht.A device for material dispersion designed in this way therefore also allows the feed material to be optimally influenced in terms of control technology with regard to a uniform, homogeneous distribution over the entire circumference, this being possible with a simple construction. In addition, both the rotation and the levitation of the material can be influenced by the different compressed air conditions, whereby there is complete independence from the drive of the classifier basket.

Die Aufgaberichtung des zugeführten Materials erfolgt geeigneterweise in Strömungsrichtung des in der Luftrinne fluidisierten Materialvolumens.The feed direction of the supplied material is suitably in the direction of flow of the volume of material fluidized in the air channel.

Nachstehend wird die Erfindung anhand eines schematischen Beispiels noch näher erläutert.The invention is explained in more detail below with the aid of a schematic example.

Die Figur zeigt einen vertikalen Schnitt durch einen Streusichter 1 mit einem über die zentrale Welle 3 angetriebenen Sichterkorb 4. Das Gehäuse 2 des Streusichters 1 hat im wesentlichen kreiszylindrische Form, die im unteren Teil in einen Trichter 28 für den Grobgutauslaß 27 übergeht. In Höhe des Sichterkorbes 4, der radial außen Sichtleisten 5 aufweist, sind ring- bzw. spiralförmige Sichtluftkanäle 6 angeordnet. Aus diesen Sichtluftkanälen 6 strömt die Sichtluft durch einen Leitschaufelkranz 7 im wesentlichen tangential in den eigentlichen Sichtraum 24 ein.The figure shows a vertical section through a spreading sifter 1 with a sifter cage 4 driven via the central shaft 3. The housing 2 of the spreading sifter 1 has an essentially circular cylindrical shape, which in the lower part merges into a funnel 28 for the coarse material outlet 27. At the level of the sifter basket 4, which has sight strips 5 radially on the outside, annular or spiral sifting air channels 6 are arranged. From these classifying air channels 6, the classifying air flows through a guide vane ring 7 essentially tangentially into the actual classifying area 24.

Oberhalb des Sichterkorbes 4 ist eine etwa U-förmige Luftrinne 10 vorgesehen, die stationär am Sichtergehäuse befestigt ist. Diese nach oben offene Luftrinne 10 weist in etwa halber Höhe in horizontaler Anordnung ein Lochblech 12 auf. Unterhalb dieses Lochblechs 12 wird dementsprechend eine Luftkammer 18 gebildet. In diese Luftkammer 18 strömt bodenseitig über eine Zuleitung 16 Druckluft mit rotativer aufsteigender Strömungsrichtung ein.An approximately U-shaped air channel 10 is provided above the sifter basket 4 and is fixed to the sifter housing in a stationary manner. This upwardly open air channel 10 has a perforated plate at about half the height in a horizontal arrangement 12 on. An air chamber 18 is accordingly formed below this perforated plate 12. Compressed air with a rotationally increasing flow direction flows into this air chamber 18 at the bottom via a feed line 16.

Die Materialzuführung 11 oberhalb der Luftrinne 10 ist in Richtung der gewünschten Rotationsbewegung des in der Luftrinne geführten Materials geneigt.The material feed 11 above the air channel 10 is inclined in the direction of the desired rotational movement of the material guided in the air channel.

Im Betrieb wird daher das zu klassierende und über die Materialzuführung 11 eingeleitete Material oberhalb des Lochblechs 12 durch die darunter eingeblasene Luft in Art eines fluidisierten Mediums gehalten und über den radial äußeren Rand 19 der Luftrinne gleichmäßig verteilt in den Bereich des Sichtraums ausgeblasen.During operation, the material to be classified and introduced via the material feed 11 is held above the perforated plate 12 by the air blown in below in the manner of a fluidized medium and blown out uniformly distributed over the radially outer edge 19 of the air channel into the region of the visible space.

Auf der Oberseite des Sichtkorbes 4 angeordnete, etwa viereckigförmige Beschleunigungsflügel 22 verleihen dem über die Luftrinne dispergierten Material eine weitere tangentiale Beschleunigung, so daß die Materialpartikel gut dispergiert in den eigentlichen Sichtraum 24 im Bereich zwischen Sichterleisten 5 und Leitschaufelkranz 7 gelangen.Arranged on the top of the viewing basket 4, approximately square-shaped acceleration wings 22 impart further tangential acceleration to the material dispersed via the air channel, so that the material particles, well dispersed, reach the actual viewing space 24 in the area between the sight strips 5 and the guide vane ring 7.

Das durch die Sichtleisten 5 in den Schleuderkorb 4 gelangende Feingut wird im Beispiel nach unten über den Feingutauslaß 26 abgezogen. Eine weitere Abzugsrichtung des Feingutes könnte vertikal nach oben über das Innere des Sichterkorbes 4 erfolgen.The fine material passing through the viewing strips 5 into the centrifugal basket 4 is drawn off downwards via the fine material outlet 26 in the example. A further withdrawal direction of the fine material could take place vertically upwards over the interior of the classifier basket 4.

Das Grobgut mit schwereren Materialpartikeln wird im Sichter 1 über den Trichter 28 in den Grobgutauslaß 27 geführt.The coarse material with heavier material particles is guided in the sifter 1 via the funnel 28 into the coarse material outlet 27.

Die Einstellung der zugeführten Druckluft über die Zuführleitungen 16 und 17 gestattet es unabhängig von der Rotation des Sichterkorbes 4 dem aufgegebenen, zu klassierenden Material eine Bewegung zu verleihen, die das Material wie in einer Wasserrinne fließen läßt, so daß ein gut dispergiertes Material der eigentlichen Sichtzone zugeführt wird.The setting of the compressed air supplied via the supply lines 16 and 17 makes it possible, independently of the rotation of the classifier basket 4, to impart a movement to the material to be classified which is the material can flow as in a water channel, so that a well-dispersed material is fed to the actual viewing zone.

Claims (11)

Vorrichtung zur Materialdispergierung, insbesondere für Streusichter, mit einer oberen Materialzuführeinrichtung und einer weitgehend koaxial zur Achse des Streusichters ausgelegten Materialaufgabefläche, über deren Randbereich das verteilte Material dem Sichtraum zuführbar ist,
dadurch gekennzeichnet,
daß die Materialaufgabefläche als siebartige Fläche (12) einer Gas- oder Luftrinne (10) ausgebildet ist.
Device for dispersing material, in particular for spreading classifiers, with an upper material feed device and a material feed surface which is largely coaxial to the axis of the spreading classifier and over the edge region of which the distributed material can be fed to the classifying area,
characterized by
that the material feed surface is designed as a sieve-like surface (12) of a gas or air channel (10).
Vorrichtung nach Anspruch 1,
dadurch gekennzeichnet,
daß zwischen der Bodenfläche (14) und der siebartigen Fläche (12) der Materialaufgabefläche ein Fluidraum (18) gebildet ist.
Device according to claim 1,
characterized by
that a fluid space (18) is formed between the bottom surface (14) and the sieve-like surface (12) of the material feed surface.
Vorrichtung nach einem der Ansprüche 1 oder 2,
dadurch gekennzeichnet,
daß die Luftrinne (10) teilring- oder ringförmig mit oberer Freifläche (13) gestaltet ist.
Device according to one of claims 1 or 2,
characterized by
that the air channel (10) is partially ring-shaped or annular with an upper free surface (13).
Vorrichtung nach einem der Ansprüche 1 bis 3,
dadurch gekennzeichnet,
daß die Luftrinne (10) horizontal oder in Achsrichtung des Streusichters (1) spiralförmig angeordnet ist.
Device according to one of claims 1 to 3,
characterized by
that the air channel (10) is arranged horizontally or spirally in the axial direction of the scattering classifier (1).
Vorrichtung nach einem der Ansprüche 1 bis 4,
dadurch gekennzeichnet,
daß die Luftrinne (10) etwa U-Kontur aufweist und die Sieb- oder Lochfläche (12) etwa in halber Höhe der Luftrinne (10) vorgesehen ist.
Device according to one of claims 1 to 4,
characterized by
that the air channel (10) has approximately a U-contour and the screen or perforated surface (12) is provided approximately halfway up the air channel (10).
Vorrichtung nach einem der Ansprüche 1 bis 5,
dadurch gekennzeichnet,
daß in die Luftrinne (10), insbesondere am Boden (14) der Luftrinne, Zuführungen (17) für Druckluft mit tangentialer bis rotativer Einströmrichtung und aufsteigender Luftströmung vorgesehen sind.
Device according to one of claims 1 to 5,
characterized by
that in the air channel (10), in particular on the bottom (14) of the air channel, feeds (17) for compressed air with a tangential to rotary direction of inflow and ascending air flow are provided.
Vorrichtung nach einem der Ansprüche 1 bis 6,
dadurch gekennzeichnet,
daß die Luftrinne (10) und die Luftströmung mit relativer Rotationsbewegung zueinander angeordnet sind.
Device according to one of claims 1 to 6,
characterized by
that the air channel (10) and the air flow are arranged with a relative rotational movement to each other.
Vorrichtung nach einem der Ansprüche 1 bis 7,
dadurch gekennzeichnet,
daß über den Umfang der Luftrinne (10), insbesondere gleichmäßig verteilt, mehrere Zuführungen (17) für die Luftströmung und/oder mehrere Materialzuführungen (11) vorgesehen sind.
Device according to one of claims 1 to 7,
characterized by
that over the circumference of the air channel (10), in particular evenly distributed, several inlets (17) for the air flow and / or several material inlets (11) are provided.
Vorrichtung nach einem der Ansprüche 1 bis 8,
dadurch gekennzeichnet,
daß die Luftrinne (10) und/oder die Sieb- oder Lochfläche (12) eine Neigung in Richtung des radial äusseren Dispergierungsrandes (19) aufweist.
Device according to one of claims 1 to 8,
characterized by
that the air channel (10) and / or the screen or perforated surface (12) has an inclination in the direction of the radially outer dispersion edge (19).
Vorrichtung nach einem der Ansprüche 1 bis 9,
dadurch gekennzeichnet,
daß der Luftrinnen-Dispergierung rotierende Beschleunigungsflügel (22), insbesondere oberhalb eines Sichterkorbes (4) zugeordnet sind.
Device according to one of claims 1 to 9,
characterized by
that the accelerator blades (22) are assigned to the air gutter dispersion, in particular above a sifter basket (4).
Vorrichtung nach einem der Ansprüche 1 bis 10,
dadurch gekennzeichnet,
daß der Außendurchmesser der Luftrinne (10) etwa dem Außendurchmesser des nachgeordneten Sichterkorbes (4) entspricht oder etwas größer ist.
Device according to one of claims 1 to 10,
characterized by
that the outer diameter of the air channel (10) corresponds approximately to the outer diameter of the downstream sifter basket (4) or is slightly larger.
EP91118189A 1990-11-08 1991-10-24 Apparatus for dispersing materials Expired - Lifetime EP0484758B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE9015363U DE9015363U1 (en) 1990-11-08 1990-11-08
DE9015363U 1990-11-08

Publications (3)

Publication Number Publication Date
EP0484758A2 true EP0484758A2 (en) 1992-05-13
EP0484758A3 EP0484758A3 (en) 1992-09-23
EP0484758B1 EP0484758B1 (en) 1995-07-19

Family

ID=6859178

Family Applications (1)

Application Number Title Priority Date Filing Date
EP91118189A Expired - Lifetime EP0484758B1 (en) 1990-11-08 1991-10-24 Apparatus for dispersing materials

Country Status (6)

Country Link
US (1) US5232096A (en)
EP (1) EP0484758B1 (en)
AT (1) ATE125176T1 (en)
CA (1) CA2055124C (en)
DE (2) DE9015363U1 (en)
ES (1) ES2078411T3 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107803339A (en) * 2017-10-14 2018-03-16 胡振锋 A kind of high-efficient powder concentrator

Families Citing this family (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AT401741B (en) * 1993-08-19 1996-11-25 Thaler Horst Dipl Ing WINDSIGHTER
FR2720666B1 (en) * 1994-06-01 1996-08-23 Laurent Durst Device and method for separating particles forming a granular product.
JPH08281213A (en) * 1995-04-14 1996-10-29 Ishikawajima Harima Heavy Ind Co Ltd Classifier
DE19854855C2 (en) * 1998-11-27 2002-01-17 Hosokawa Alpine Ag & Co air classifier
EP1561519A1 (en) * 2004-02-04 2005-08-10 Magotteaux International S.A. Particle classifier
FR2941389B1 (en) * 2009-01-29 2011-10-14 Fives Fcb SELECTIVE GRANULOMETRIC SEPARATION DEVICE FOR SOLID PULVERULENT MATERIALS WITH CENTRIFUGAL ACTION AND METHOD OF USING SUCH A DEVICE
CN103480576A (en) * 2013-09-29 2014-01-01 河南嘉和节能科技有限公司 Powder concentrator with feed inlet provided with air intake homogenizing device
CN105396783B (en) * 2015-12-01 2018-11-23 东阳市启创知识产权运营有限公司 A kind of separator
CN112387417B (en) * 2020-10-27 2023-03-28 佛山市南海华昊华丰淀粉有限公司 Iron and dust removing device and method in flour processing process

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR88297E (en) * 1965-07-09 1967-01-06 Polysius Gmbh Air separator with vertically mounted spreading device and product feed to be separated in the middle from above
DD111159A1 (en) * 1974-05-03 1975-02-05
DE3310709A1 (en) * 1982-06-22 1983-12-22 VEB Schwermaschinenbau-Kombinat "Ernst Thälmann" Magdeburg, DDR 3011 Magdeburg Sifter for classifying bulk material
DE3515026C1 (en) * 1985-04-25 1986-09-18 Fa. Christian Pfeiffer, 4720 Beckum Rotary air centrifuge classifier
EP0250747A2 (en) * 1986-06-25 1988-01-07 Christian Pfeiffer Maschinenfabrik GmbH & Co. Kommanditgesellschaft Method of and device for air sifting

Family Cites Families (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US530445A (en) * 1894-12-04 Purifier and aerator
US1962455A (en) * 1931-01-30 1934-06-12 Henry S Montgomery Air separator
US3474903A (en) * 1968-10-22 1969-10-28 Harry S Ausherman Grain drying and debris separation device
US3620370A (en) * 1969-06-02 1971-11-16 Rue E Swayze Ore concentrator
DE2364568A1 (en) * 1973-12-24 1975-06-26 Kloeckner Humboldt Deutz Ag CIRCULAR SEALER WITH ROTARY DISTRIBUTOR
JPS51147059A (en) * 1975-06-13 1976-12-17 Nobuo Yoshimori Apparatus for classification
US4551241A (en) * 1984-02-08 1985-11-05 Sturtevant, Inc. Particle classifier
DE3545691C1 (en) * 1985-12-21 1987-01-29 Orenstein & Koppel Ag Device for classifying dusty bulk goods
SU1316717A1 (en) * 1985-12-27 1987-06-15 Алтайский политехнический институт им.И.И.Ползунова Vibrating air classifier for loose materials
DE3622413C2 (en) * 1986-07-03 1995-08-03 Krupp Polysius Ag Classifier
DE3843338A1 (en) * 1988-12-22 1990-06-28 Krupp Polysius Ag SAFE

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR88297E (en) * 1965-07-09 1967-01-06 Polysius Gmbh Air separator with vertically mounted spreading device and product feed to be separated in the middle from above
DD111159A1 (en) * 1974-05-03 1975-02-05
DE3310709A1 (en) * 1982-06-22 1983-12-22 VEB Schwermaschinenbau-Kombinat "Ernst Thälmann" Magdeburg, DDR 3011 Magdeburg Sifter for classifying bulk material
DE3515026C1 (en) * 1985-04-25 1986-09-18 Fa. Christian Pfeiffer, 4720 Beckum Rotary air centrifuge classifier
EP0250747A2 (en) * 1986-06-25 1988-01-07 Christian Pfeiffer Maschinenfabrik GmbH & Co. Kommanditgesellschaft Method of and device for air sifting

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107803339A (en) * 2017-10-14 2018-03-16 胡振锋 A kind of high-efficient powder concentrator

Also Published As

Publication number Publication date
CA2055124A1 (en) 1992-05-09
ATE125176T1 (en) 1995-08-15
EP0484758A3 (en) 1992-09-23
EP0484758B1 (en) 1995-07-19
ES2078411T3 (en) 1995-12-16
DE59106024D1 (en) 1995-08-24
CA2055124C (en) 1996-04-23
DE9015363U1 (en) 1991-01-17
US5232096A (en) 1993-08-03

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