EP0358632A2 - Screening device - Google Patents

Screening device Download PDF

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Publication number
EP0358632A2
EP0358632A2 EP89890229A EP89890229A EP0358632A2 EP 0358632 A2 EP0358632 A2 EP 0358632A2 EP 89890229 A EP89890229 A EP 89890229A EP 89890229 A EP89890229 A EP 89890229A EP 0358632 A2 EP0358632 A2 EP 0358632A2
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EP
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Prior art keywords
systems
eccentric shaft
distance
screening device
another
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EP89890229A
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German (de)
French (fr)
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EP0358632A3 (en
EP0358632B1 (en
Inventor
Leander Ing. Ahorner
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IFE Industrie-Einrichtungen Fertigungs-Aktiengesellschaft
IFE GmbH
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IFE Industrie-Einrichtungen Fertigungs-Aktiengesellschaft
IFE GmbH
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Publication of EP0358632A3 publication Critical patent/EP0358632A3/en
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Publication of EP0358632B1 publication Critical patent/EP0358632B1/en
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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
    • B07B1/00Sieving, screening, sifting, or sorting solid materials using networks, gratings, grids, or the like
    • B07B1/42Drive mechanisms, regulating or controlling devices, or balancing devices, specially adapted for screens
    • 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
    • B07B1/00Sieving, screening, sifting, or sorting solid materials using networks, gratings, grids, or the like
    • B07B1/46Constructional details of screens in general; Cleaning or heating of screens
    • B07B1/48Stretching devices for screens
    • B07B1/485Devices for alternately stretching and sagging screening surfaces

Definitions

  • the invention relates to a sieve device with at least two frame systems which can be moved relative to one another, with grate bars assigned to each system, which engage in pairs and are connected by flexible sieve elements which are attached to them and bridge the distance between the bars and which are connected by means of an exclusively to the two systems stored and caused by a drive in rotation eccentric shaft relative movement of the two systems can be tensioned and relaxed.
  • a vibrating sieve has become known in which a box containing at least one sieve bottom and elastically supported at its ends in the area of one of its oscillation centers with a vibrator in the form of a shaft arranged in the longitudinal median plane of the box and provided with an unbalance connected is.
  • the invention aims to provide a screening device which is simple in construction, inexpensive to operate and has a long service life. Above all, however, it should perform well. According to the invention this is achieved in a screening device of the type mentioned in that the eccentric shaft is arranged at one end of the two systems and this at the other end or at a distance therefrom by means of an element which ensures a substantially linear relative movement of the two systems to one another, such as handlebars , Pushing rubber blocks and the like, are connected to one another.
  • the handlebar or handlebar-like connection ensures that the systems initially perform circular vibrations which gradually take the form of ellipses and in the area of the handlebars take the form of a flat circular arc or a straight line.
  • the desired decrease in the vibration effect is achieved in the design according to the invention without further assistance. This also results in the avoidance of unnecessary drive energy, so that a high level of efficiency is achieved.
  • the frame systems on the screen material discharge side again describe elliptical vibrations, which may be desirable for certain screen material.
  • the links or the like are arranged in the region of the acceleration pole of the vibration system.
  • the distance between the eccentric shaft and the handlebars or the like can be about 60-80% of the screen length.
  • the screening device has a first frame system 1, which is supported by spring elements 2 on the foundation or machine frame, not shown.
  • An eccentric shaft 3 is by means of the bearings 4 in the frame system 1 and their Eccentric 5 guided in bearings 6, which are connected to the second frame system 7.
  • the frame system 7 is connected to grate bars 8 which pass through an opening 9 in the frame system 1 and are screwed to the web of the frame 7.
  • the opening 9 is covered on the inside by means of a disk 10 which moves with the system 7.
  • the frame 1 is also screwed to the grate bars 11, the grate bars 8 and 11 alternating.
  • the two systems 1 and 7 are connected to one another by means of spring links 12. Due to the vibration of the two systems to one another caused by the eccentric shaft, the screen elements 13 are alternately tensioned and relaxed between the grate bars 8 and 11. The mutual relative movement in the longitudinal direction of the screen elements 13 is 2e if e is the measure of the eccentricity of the shaft 3.
  • the extent of the oscillating movement of the system 1 in the region of the eccentric shaft can be influenced favorably. For example, can be achieved that the system vibrates almost exclusively parallel to the screen surface, the amplitude being sufficient for self-cleaning of the system 1.
  • the invention can have yet another embodiment, the physical basis of which is explained with reference to FIG. 4.
  • 4 shows a body K whose center of gravity is P o .
  • the force F acts, whereby the body K is given a tangential acceleration a t and an angular acceleration ⁇ around the center of gravity P o .
  • the normal acceleration of the mass points increases with the distance from the center of gravity P o and is perpendicular to the connecting line center of gravity P o - mass point.
  • the mass points which lie in a plane E perpendicular to the force F and passing through the center of gravity P o , it is parallel to the tangential acceleration a t .
  • the normal acceleration is rectified and to the right of it the tangential acceleration.
  • the handlebars 12 or the like are arranged in the region of the acceleration pole, restoring forces acting damping on the drive are eliminated, as a result of which the required drive power is reduced.
  • the system From the feed side of the screen to the acceleration pole, the system has an accelerating effect on the screened material. From the acceleration pole to the end of the sieve there is an increasing delay of the material to be sieved, so that there is a longer dwell time on the sieve for the sieving of the boundary grains and thus a better sieving in this grain size range.
  • the mass of the material to be sieved on the sieve can also be taken into account in the determination of the acceleration pole by including the mass of the material to be sieved in the calculation of the moment of inertia around the common center of gravity.

Abstract

Die Erfindung betrifft eine Siebvorrichtung mit mindestens zwei relativ zueinander bewegbaren Rahmensystemen, mit jedem System zugeordneten Roststäben, die paarweise ineinandergreifen und durch an ihnen befestigte, den Abstand zwischen den Stäben überbrückende flexible Siebelemente verbunden sind, welche durch die mittels einer ausschließlich an den beiden Systemen gelagerten und durch einen Antrieb in Drehung gesetzte Exzenterwelle (3) bewirkten Relativbewegung der beiden Systeme gespannt und entspannt werden. Diese bekannte Bauweise ist erfindungsgemäß dadurch verbessert worden, daß die Exzenterwelle an einem Ende der beiden Systeme (1,7) angeordnet ist und diese am anderen Ende oder in Abstand von diesem mittels eines Elementes (12), das eine im wesentlichen lineare Relativbewegung der beiden Systeme zueinander gewährleistet, miteinander verbunden sind. Vorzugsweise entspricht der genannte Abstand dem Abstand, den der Beschleunigungspol (PB) des schwingenden Systems (1,7) von der Exzenterwelle (3) aufweist.The invention relates to a sieve device with at least two frame systems which can be moved relative to one another, with grate bars assigned to each system, which engage in pairs and are connected by flexible sieve elements which are attached to them and bridge the distance between the bars and which are connected by means of a system mounted exclusively on the two systems and the eccentric shaft (3) set in rotation by a drive causes the relative movement of the two systems to be tensioned and relaxed. This known construction has been improved according to the invention in that the eccentric shaft is arranged at one end of the two systems (1, 7) and this at the other end or at a distance from it by means of an element (12) which has a substantially linear relative movement of the two Systems guaranteed to each other, are interconnected. Said distance preferably corresponds to the distance that the acceleration pole (PB) of the oscillating system (1,7) is from the eccentric shaft (3).

Description

Die Erfindung betrifft eine Siebvorrichtung mit mindestens zwei relativ zueinander bewegbaren Rahmen­systemen, mit jedem System zugeordneten Roststäben, die paarweise ineinandergreifen und durch an ihnen befestigte, den Abstand zwischen den Stäben überbrückende, flexible Siebelemente verbunden sind, welche durch die mittels einer ausschließlich an den beiden Systemen gelagerten und durch einen Antrieb in Drehung gesetzte Exzenter­welle bewirkten Relativbewegung der beiden Systeme ge­spannt und entspannt werden.The invention relates to a sieve device with at least two frame systems which can be moved relative to one another, with grate bars assigned to each system, which engage in pairs and are connected by flexible sieve elements which are attached to them and bridge the distance between the bars and which are connected by means of an exclusively to the two systems stored and caused by a drive in rotation eccentric shaft relative movement of the two systems can be tensioned and relaxed.

Eine solche Siebvorrichtung ist in der deutschen Patentschrift Nr. 1 206 372 beschrieben. Die Exzenter­welle ist hiebei in der Mitte der Sieblänge angeordnet und die beiden Systeme sind durch Federn gegeneinander stabilisiert. Diese bekannte Vorrichtung erfüllt jedoch nicht die in sie gesetzten Erwartungen.Such a screening device is described in German Patent No. 1 206 372. The eccentric shaft is arranged in the middle of the screen length and the two systems are stabilized against each other by springs. However, this known device does not meet the expectations placed on it.

Durch die DE-A1 32 14943 ist ein Vibrationssieb bekannt geworden, bei dem ein mindestens einen Sieb­boden enthaltender und an seinen Enden elastisch gela­gerter Kasten im Bereich eines seiner Schwingmittel­punkte mit einem Schwingerreger in Gestalt einer in der Längsmittelebene des Kastens angeordneten und mit einer Unwucht versehenen Welle verbunden ist.From DE-A1 32 14943 a vibrating sieve has become known in which a box containing at least one sieve bottom and elastically supported at its ends in the area of one of its oscillation centers with a vibrator in the form of a shaft arranged in the longitudinal median plane of the box and provided with an unbalance connected is.

Dadurch wird ein ungleichmäßiges Vibrationsfeld sowohl quer als auch der Länge nach geschaffen, das eine intensive Auflockerung der Siebgutschicht bewirkt. Diese Bauart läßt sich jedoch nicht auf die eingangs erwähnte Siebvorrichtung übertragen, bei der zwei gegeneinander schwingende Rahmen vorgesehen sind, deren Roststäbe mittels flexibler Siebelemente miteinander verbunden sind.This creates an uneven vibration field, both across and lengthwise, which causes an intensive loosening of the screenings layer. However, this type of construction cannot be transferred to the screening device mentioned at the outset, in which two frames which oscillate against one another are provided, the grate bars of which are connected to one another by means of flexible screening elements.

Die Erfindung bezweckt die Schaffung einer Siebvor­richtung, die im Aufbau einfach, im Betrieb billig ist und eine hohe Standzeit aufweist. Vor allem soll sie je­doch gute Siebleistungen erbringen. Erfindungsgemäß wird dies bei einer Siebvorrichtung der eingangs erwähnten Art dadurch erreicht, daß die Exzenterwelle an einem Ende der beiden Systeme angeordnet ist und diese am anderen Ende oder im Abstand von diesem mittels eines Elements, das eine im wesentlichen lineare Relativbewegung der beiden Systeme zueinander gewährleistet, wie Lenker, Schubgummi­blöcke und dgl., miteinander verbunden sind.The invention aims to provide a screening device which is simple in construction, inexpensive to operate and has a long service life. Above all, however, it should perform well. According to the invention this is achieved in a screening device of the type mentioned in that the eccentric shaft is arranged at one end of the two systems and this at the other end or at a distance therefrom by means of an element which ensures a substantially linear relative movement of the two systems to one another, such as handlebars , Pushing rubber blocks and the like, are connected to one another.

Wird die Exzenterwelle am siebgutaufgabeseitigen Ende angeordnet, so wird durch die Lenker- bzw. lenkerartige Verbindung erreicht, daß die Systeme am Anfang Kreisschwin­gungen ausführen, die allmählich die Form von Ellipsen und im Bereich der Lenker die Gestalt eines flachen Kreisbogens oder einer Geraden annehmen. Die erwünschte Abnahme der Schwingungswirkung wird bei der erfindungsgemäßen Bauart ohne weiteres Dazutun erreicht. Dadurch ergibt sich auch die Vermeidung überflüssiger Antriebsenergie, so daß ein hoher Leistungswirkungsgrad erreicht wird.If the eccentric shaft is arranged at the end of the material feed side, the handlebar or handlebar-like connection ensures that the systems initially perform circular vibrations which gradually take the form of ellipses and in the area of the handlebars take the form of a flat circular arc or a straight line. The desired decrease in the vibration effect is achieved in the design according to the invention without further assistance. This also results in the avoidance of unnecessary drive energy, so that a high level of efficiency is achieved.

Werden die Lenker od. dgl. der Exzenterwelle näher­gerückt, so beschreiben die Rahmensysteme auf der Siebgut­abgabeseite wieder elliptisch verlaufende Schwingungen, was bei bestimmtem Siebgut erwünscht sein kann.If the handlebars or the like are moved closer to the eccentric shaft, the frame systems on the screen material discharge side again describe elliptical vibrations, which may be desirable for certain screen material.

Besonders günstig ist es, wenn die Lenker oder der­gleichen im Bereich des Beschleunigungspols des Schwingungs­systems angeordnet werden. In den meisten Fällen kann der Abstand zwischen Exzenterwelle und den Lenkern oder der­gleichen etwa 60 - 80 % der Sieblänge betragen.It is particularly expedient if the links or the like are arranged in the region of the acceleration pole of the vibration system. In most cases, the distance between the eccentric shaft and the handlebars or the like can be about 60-80% of the screen length.

In der Zeichnung ist der Gegenstand der Erfindung in einer beispielsweisen Ausführungsform dargestellt. Es zeigen

  • Fig. 1 die Siebvorrichtung in Seitenansicht und teil­weise geschnitten,
  • Fig. 2 einen Querschnitt,
  • Fig. 3 einen Schnitt nach der Linie III-III in Fig. 1 und
  • Fig. 4 einen Körper, an den eine Kraft exzentrisch angreift.
In the drawing, the subject matter of the invention is shown in an exemplary embodiment. Show it
  • 1 shows the screening device in a side view and partially in section,
  • 2 shows a cross section,
  • Fig. 3 shows a section along the line III-III in Fig. 1 and
  • Fig. 4 shows a body to which a force acts eccentrically.

Die Siebvorrichtung weist ein erstes Rahmensystem 1 auf, das über Federelemente 2 sich am nicht dargestellten Fundament oder Maschinenrahmen abstützt. Eine Exzenter­welle 3 ist mittels der Lager 4 im Rahmensystem 1 und ihre Exzenter 5 in Lagern 6 geführt, die mit dem zweiten Rahmen­system 7 verbunden sind. Gemäß Fig. 2 ist das Rahmensystem 7 mit Roststäben 8 verbunden, die eine Öffnung 9 im Rahmen­system 1 durchsetzen und am Steg des Rahmens 7 angeschraubt sind. Die Öffnung 9 ist innen mittels einer Scheibe 10, welche sich mit dem System 7 mitbewegt, abgedeckt.The screening device has a first frame system 1, which is supported by spring elements 2 on the foundation or machine frame, not shown. An eccentric shaft 3 is by means of the bearings 4 in the frame system 1 and their Eccentric 5 guided in bearings 6, which are connected to the second frame system 7. 2, the frame system 7 is connected to grate bars 8 which pass through an opening 9 in the frame system 1 and are screwed to the web of the frame 7. The opening 9 is covered on the inside by means of a disk 10 which moves with the system 7.

Wie aus Fig. 2 unten hervorgeht, ist auch der Rahmen 1 mit Roststäben 11 verschraubt, wobei sich die Roststäbe 8 und 11 abwechseln.As can be seen from FIG. 2 below, the frame 1 is also screwed to the grate bars 11, the grate bars 8 and 11 alternating.

Am siebgutabgabeseitigen Ende sind die beiden Systeme 1 und 7 mittels Federlenker 12 miteinander verbunden. Durch die von der Exzenterwelle hervorgerufene Schwingung der beiden Systeme zueinander werden die Siebelemente 13 zwi­schen den Roststäben 8 und 11 abwechselnd gespannt und ent­spannt. Die gegenseitige Relativbewegung in der Längsrich­tung der Siebelemente 13 beträgt 2e, wenn e das Maß der Exzentrizität der Welle 3 ist.At the end of the material discharge side, the two systems 1 and 7 are connected to one another by means of spring links 12. Due to the vibration of the two systems to one another caused by the eccentric shaft, the screen elements 13 are alternately tensioned and relaxed between the grate bars 8 and 11. The mutual relative movement in the longitudinal direction of the screen elements 13 is 2e if e is the measure of the eccentricity of the shaft 3.

Durch die Anordnung eines Gewichtes 14 auf der Exzen­terwelle 3 kann das Ausmaß der Schwingbewegung des Systems 1 im Bereich der Exzenterwelle günstig beeinflußt werden. So kann z.B. erreicht werden, daß das System nahezu aus­schließlich parallel zur Siebfläche schwingt, wobei die Amplitude zur Selbstreinigung des Systems 1 hinreicht.By arranging a weight 14 on the eccentric shaft 3, the extent of the oscillating movement of the system 1 in the region of the eccentric shaft can be influenced favorably. For example, can be achieved that the system vibrates almost exclusively parallel to the screen surface, the amplitude being sufficient for self-cleaning of the system 1.

Die Erfindung kann noch eine weitere Ausgestaltung erfahren, deren physikalische Grundlage an Hand der Fig. 4 erläutert wird.
In Fig. 4 ist ein Körper K dargestellt, dessen Schwerpunkt Po ist. An einem Punkt PF greift die Kraft F an, wodurch dem Körper K eine Tangentialbeschleunigung at und eine Winkelbeschleunigung α um den Schwerpunkt Po erteilt wird.
The invention can have yet another embodiment, the physical basis of which is explained with reference to FIG. 4.
4 shows a body K whose center of gravity is P o . At a point P F the force F acts, whereby the body K is given a tangential acceleration a t and an angular acceleration α around the center of gravity P o .

Es ergibt sich folgende Berechnung für die beiden Beschleunigungen in einem beliebigen Massenpunkt P₁:
an = α·r α=

Figure imgb0001
M=F·s

an =
Figure imgb0002
r

at = F m
Figure imgb0003

Hiebei bedeuten:
r = Abstand des Massenpunktes P₁ vom Schwerpunkt Po
M = das von der Kraft F hervorgerufene Drehmoment um den Schwerpunkt Po.
s = Abstand der Kraft F vom Schwerpunkt Po
Jo = Massenträgheitsmoment des Körpers K, bezogen auf den Schwerpunkt Po
m = Masse des Körpers K
Die Tangentialbeschleunigung at ist für alle Massepunkte des Körpers K gleich groß und gleichgerichtet.The following calculation results for the two accelerations at an arbitrary mass point P 1:
a n = α · r α =
Figure imgb0001
M = Fs

a n =
Figure imgb0002
r

a t = F m
Figure imgb0003

Hiebei mean:
r = distance of the mass point P₁ from the center of gravity P o
M = the torque caused by the force F around the center of gravity P o .
s = distance of the force F from the center of gravity P o
J o = mass moment of inertia of the body K, based on the center of gravity P o
m = mass of the body K
The tangential acceleration a t is of the same size and the same direction for all mass points of the body K.

Die Normalbeschleunigung der Massenpunkte wächst mit dem Abstand vom Schwerpunkt Po und steht senkrecht auf die Verbindungslinie Schwerpunkt Po - Massenpunkt. Sie ist für die Massenpunkte, welche in einer zur Kraft F senkrechten und durch den Schwerpunkt Po gehenden Ebene E liegen, parallel zur Tangentialbeschleunigung at. Links vom Schwer­punkt Po ist die Normalbeschleunigung gleichgerichtet und rechts davon entgegengerichtet der Tangentialbeschleunigung.The normal acceleration of the mass points increases with the distance from the center of gravity P o and is perpendicular to the connecting line center of gravity P o - mass point. For the mass points, which lie in a plane E perpendicular to the force F and passing through the center of gravity P o , it is parallel to the tangential acceleration a t . To the left of the center of gravity P o the normal acceleration is rectified and to the right of it the tangential acceleration.

Es gibt daher in der Ebene E eine Stelle, an der die Tangentialbeschleunigung und die Normalbeschleunigung sich aufheben. An dieser Stelle liegt der Beschleunigungspol PB. Sein Abstand vom Schwerpunkt Po ist X:

Figure imgb0004
X = F m
Figure imgb0005


    X =
Figure imgb0006


Handelt es sich um einen gestreckten Körper mit konstantem Querschnitt und der Länge l, so ist
Jo = m ℓ² 12
Figure imgb0007

Ist der Abstand der Kraft F vom Schwerpunkt Po S = ½ so ist
X = 2 6
Figure imgb0008
There is therefore a point in plane E where the tangential acceleration and the normal acceleration cancel each other out. The acceleration pole P B is located at this point. Its distance from the center of gravity P o is X:

Figure imgb0004
X = F m
Figure imgb0005


X =
Figure imgb0006


If it is an elongated body with a constant cross-section and length l, then
J o = m ℓ² 12
Figure imgb0007

If the distance of the force F from the center of gravity P o S = ½ then
X = 2nd 6
Figure imgb0008

Werden die Lenker 12 oder dergleichen im Bereich des Beschleunigungspols angeordnet, so entfallen auf den An­trieb dämpfend wirkende Rückstellkräfte, wodurch die er­forderliche Antriebsleistung verringert wird. Von der Auf­gabeseite des Siebes bis zum Beschleunigungspol wirkt das System beschleunigend auf das Siebgut. Vom Beschleunigungs­pol bis zum Siebende tritt eine zunehmende Verzögerung des Siebgutes auf, sodaß sich für die Aussiebung der Grenz­körner eine längere Verweilzeit auf dem Sieb und somit eine bessere Aussiebung in diesem Korngrößenbereich ergibt.If the handlebars 12 or the like are arranged in the region of the acceleration pole, restoring forces acting damping on the drive are eliminated, as a result of which the required drive power is reduced. From the feed side of the screen to the acceleration pole, the system has an accelerating effect on the screened material. From the acceleration pole to the end of the sieve there is an increasing delay of the material to be sieved, so that there is a longer dwell time on the sieve for the sieving of the boundary grains and thus a better sieving in this grain size range.

In die Ermittlung des Beschleunigungspoles kann auch die Masse des auf dem Sieb befindlichen Siebgutes berück­sichtigt werden, indem in die Berechnung des Massenträg­heitsmomentes um den gemeinsamen Schwerpunkt die Siebgut­masse einbezogen wird.The mass of the material to be sieved on the sieve can also be taken into account in the determination of the acceleration pole by including the mass of the material to be sieved in the calculation of the moment of inertia around the common center of gravity.

Claims (5)

1. Siebvorrichtung mit mindestens zwei relativ zueinander bewegbaren Rahmensystemen, mit jedem System zugeordneten Roststäben, die paarweise ineinandergreifen und durch an ihnen befestigte, den Abstand zwischen den Stäben überbrückende, flexible Siebelemente verbunden sind, welche durch die mittels einer ausschließlich an den beiden Systemen gelagerten und durch einen Antrieb in Drehung gesetzte Exzenterwelle bewirkten Relativ­bewegung der beiden Systeme gespannt und entspannt werden, dadurch gekennzeichnet, daß die Exzenterwelle (3) an einem Ende der beiden Systeme (1 ,7) angeordnet ist und diese am anderen Ende oder im Abstand von diesem mittels eines Elementes (12), das eine im wesentlichen lineare Relativbewegung der beiden Systeme zueinander gewähr­leistet, wie Lenker, Schubgummiblöcke u.dgl., mit­einander verbunden sind.1.Screening device with at least two frame systems which can be moved relative to one another, with grate bars assigned to each system, which engage in pairs and are connected by flexible screen elements which are attached to them and bridge the distance between the bars and which are connected by means of a means which is mounted exclusively on the two systems and Relative movement of the two systems caused by an eccentric shaft set in rotation can be tensioned and relaxed, characterized in that the eccentric shaft (3) is arranged at one end of the two systems (1, 7) and by means of this at the other end or at a distance from it an element (12) which ensures an essentially linear relative movement of the two systems with respect to one another, such as links, push blocks, and the like, are connected to one another. 2. Siebvorrichtung nach Anspruch 1, dadurch gekenn­zeichnet, daß die Exzenterwelle (3) am siebgutaufgabe­seitigen Ende angeordnet ist.2. Screening device according to claim 1, characterized in that the eccentric shaft (3) is arranged at the end of the material feed side. 3. Siebvorrichtung nach Anspruch 1 oder 2, dadurch gekennzeichnet, daß die Exzenterwelle (3) mit einem Gegengewicht (14) ausgestattet ist.3. Screening device according to claim 1 or 2, characterized in that the eccentric shaft (3) is equipped with a counterweight (14). 4. Siebvorrichtung nach Anspruch 1,2 oder 3, dadurch gekennzeichnet, daß der Abstand zwischen der Exzenter­welle (3) und dem Element (12), das eine im wesentlichen lineare Relativbewegung der beiden schwingenden Systeme (1, 7) zueinander gewährleistet, etwa dem Abstand des Be­schleunigungspols (PB) der Systeme von der Exzenter­welle entspricht.4. Screening device according to claim 1, 2 or 3, characterized in that the distance between the eccentric shaft (3) and the element (12), which ensures a substantially linear relative movement of the two oscillating systems (1, 7) to one another, approximately that Distance of the acceleration pole (P B ) of the systems from the eccentric shaft corresponds. 5 Siebvorrichtung nach Anspruch 4, dadurch gekenn­zeichnet, daß der Abstand um 20% - 40% kleiner ist als die Sieblänge.5 screening device according to claim 4, characterized in that the distance is 20% - 40% smaller than the screen length.
EP89890229A 1988-09-05 1989-09-04 Screening device Expired - Lifetime EP0358632B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
AT0217888A AT390898B (en) 1988-09-05 1988-09-05 SCREEN DEVICE
AT2178/88 1988-09-05

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EP0358632A2 true EP0358632A2 (en) 1990-03-14
EP0358632A3 EP0358632A3 (en) 1991-01-02
EP0358632B1 EP0358632B1 (en) 1993-04-21

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EP89890229A Expired - Lifetime EP0358632B1 (en) 1988-09-05 1989-09-04 Screening device

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US (1) US5051170A (en)
EP (1) EP0358632B1 (en)
AT (1) AT390898B (en)
CA (1) CA1327957C (en)
CS (1) CS277461B6 (en)
DE (1) DE58904135D1 (en)
ES (1) ES2040504T3 (en)
FI (1) FI91488C (en)
HU (1) HU206465B (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AT5816U3 (en) * 2002-09-19 2003-05-26 Binder Co Ag screening device
AT411336B (en) * 2002-01-30 2003-12-29 Peytec Aschauer & Peyfuss Oeg ROCKING DEVICE

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US6000554A (en) * 1996-05-13 1999-12-14 Comcorp, Inc. Reciprocating screening conveyor
US7344032B2 (en) * 2004-06-14 2008-03-18 Action Equipment Company, Inc. Flexible sieve mat screening apparatus
US7654394B2 (en) * 2004-06-14 2010-02-02 Action Equipment Company, Inc. Flexible mat screening or conveying apparatus
US8757392B2 (en) 2011-11-23 2014-06-24 Action Vibratory Equipment, Inc. Flexible mat screening apparatus with offset supports
CN104624488B (en) * 2015-02-02 2016-01-20 江苏鹏飞集团股份有限公司 Straight line flip flop screen
CN107537767B (en) * 2017-09-19 2023-09-15 安徽理工大学 Two-degree-of-freedom oscillating screen

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AT411336B (en) * 2002-01-30 2003-12-29 Peytec Aschauer & Peyfuss Oeg ROCKING DEVICE
AT5816U3 (en) * 2002-09-19 2003-05-26 Binder Co Ag screening device

Also Published As

Publication number Publication date
FI91488C (en) 1994-07-11
EP0358632A3 (en) 1991-01-02
FI91488B (en) 1994-03-31
FI894093A0 (en) 1989-08-31
FI894093A (en) 1990-03-06
HU206465B (en) 1992-11-30
HUT54928A (en) 1991-04-29
CS510789A3 (en) 1992-10-14
CA1327957C (en) 1994-03-22
DE58904135D1 (en) 1993-05-27
AT390898B (en) 1990-07-10
US5051170A (en) 1991-09-24
ATA217888A (en) 1990-01-15
EP0358632B1 (en) 1993-04-21
ES2040504T3 (en) 1993-10-16
CS277461B6 (en) 1993-03-17

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