EP1379385A2 - Devices for adjusting the contact pressure of an adjustably mounted cylinder - Google Patents

Devices for adjusting the contact pressure of an adjustably mounted cylinder

Info

Publication number
EP1379385A2
EP1379385A2 EP02708153A EP02708153A EP1379385A2 EP 1379385 A2 EP1379385 A2 EP 1379385A2 EP 02708153 A EP02708153 A EP 02708153A EP 02708153 A EP02708153 A EP 02708153A EP 1379385 A2 EP1379385 A2 EP 1379385A2
Authority
EP
European Patent Office
Prior art keywords
roller
holder
pressure
actuator
frame holder
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.)
Granted
Application number
EP02708153A
Other languages
German (de)
French (fr)
Other versions
EP1379385B1 (en
Inventor
Bernd Klaus Faist
Wolfgang Otto Reder
Georg Schneider
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.)
Koenig and Bauer AG
Original Assignee
Koenig and Bauer 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
Application filed by Koenig and Bauer AG filed Critical Koenig and Bauer AG
Priority to EP03104016A priority Critical patent/EP1393901B1/en
Priority to EP03104011A priority patent/EP1400354B1/en
Priority to EP03104015A priority patent/EP1437221B1/en
Priority to EP03104012A priority patent/EP1400355B1/en
Priority to EP03104013A priority patent/EP1437219B1/en
Priority to EP03104014A priority patent/EP1437220B1/en
Publication of EP1379385A2 publication Critical patent/EP1379385A2/en
Application granted granted Critical
Publication of EP1379385B1 publication Critical patent/EP1379385B1/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F13/00Common details of rotary presses or machines
    • B41F13/08Cylinders
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F13/00Common details of rotary presses or machines
    • B41F13/08Cylinders
    • B41F13/24Cylinder-tripping devices; Cylinder-impression adjustments
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F13/00Common details of rotary presses or machines
    • B41F13/08Cylinders
    • B41F13/24Cylinder-tripping devices; Cylinder-impression adjustments
    • B41F13/34Cylinder lifting or adjusting devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F13/00Common details of rotary presses or machines
    • B41F13/08Cylinders
    • B41F13/24Cylinder-tripping devices; Cylinder-impression adjustments
    • B41F13/34Cylinder lifting or adjusting devices
    • B41F13/40Cylinder lifting or adjusting devices fluid-pressure operated
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F31/00Inking arrangements or devices
    • B41F31/26Construction of inking rollers

Definitions

  • the invention relates to devices for adjusting the contact pressure between an adjustable roller according to the preamble of claims 1, 2, 3, 9 or 12.
  • ink rollers are provided, which are used to transfer the ink from an ink reservoir to the plate cylinder.
  • the ink transferred to the plate cylinder can be dosed by the ink rollers, so that the ink is transferred as a uniform film of a certain thickness. Disruptions such as speed fluctuations and torsional vibrations can be compensated for.
  • dampening unit rollers can be provided in the printing press, which transfer a dampening solution, for example water, to the printing unit.
  • Roll pairs are often formed by mutually engaging rolls in which at least one of the rolls has a cylindrical surface made of elastic material, so that this cylindrical surface can be deformed at least slightly depending on the contact pressure of the opposite roll.
  • the elastic deformation of the roller surface results in a contact region extending in a straight line between the rollers, which is referred to as a contact strip.
  • the width of the contact strip can be varied by creating the contact pressure between the rollers, the width of the contract strip having a considerable influence on the printing result. For example, if the contact strip is too narrow in an inking unit, not enough color is transferred, whereas in the cases where the contact strip is too wide, the elastic roller can be damaged by the flexing work that occurs.
  • a device for the semi-automatic setting of rolls in which the adjustably mounted roll is held in a roll holder, which in turn is mounted on a frame holder arranged fixed to the frame.
  • Roller holder and frame holder can be moved against each other and are connected to each other by resilient means.
  • the resilient means have a certain pretension, so that the roll, which is adjustably mounted on the roll holder, can be pressed against the opposite roll with a certain contact pressure.
  • To lock the roller holder on the frame holder locking bolts are provided, by the delivery of the roller holder on the friction Frame holder can be clamped.
  • DE 42 31 673 A1 describes a device for roller adjustment, in which a roller is first displaced in the radial direction by means of a pressure chamber and is then fixed.
  • the invention has for its object to provide devices for adjusting the contact pressure of an adjustable roller.
  • An advantage of the fixing device is in particular that such a fixing device can be implemented in an extremely compact and thus space-saving manner. This is achieved in that several lamella elements are frictionally clamped to fix the adjustable components relative to each other. By arranging several, in particular a large number, of such lamella elements one behind the other, the frictional force required for fixing is distributed over a large number of friction surfaces between the lamella elements. By clamping the lamella elements arranged one behind the other, the clamping force acts in opposite directions in all friction surfaces.
  • Suitable plate elements are known, for example, from plate clutches, which are used for the frictional connection of rotatably mounted axes.
  • the plates in the fixing device can be moved against one another in at least one direction and can be moved relative to one another within a certain adjustment range and then fixed depending on the play between the components of the fixing device.
  • the actuating movement does not take place in the manner of a swiveling or rotating movement as in the case of a multi-plate clutch, but takes place in the manner of a Translational movement in the plane, which is defined by the alignment of the friction surfaces of the lamellar elements.
  • the clamping device with which the lamellae can be clamped together by applying sufficient contact pressure. It is particularly advantageous if the clamping device is designed in the manner of a prestressed spring element. In the fixed position of the fixing device, the prestressed spring element exerts such a high spring force on the lamella elements that they are reliably fixed to one another in a frictionally locking manner. An unintentional loosening of the fixing device, for example in the event of a power supply failure, as is to be feared with other clamping devices, is thereby excluded.
  • an adjusting element is to be provided on the fixing device in this embodiment, with which the spring element can be compressed to such an extent that the lamella elements can be relaxed and thereby displaced against each other.
  • any drive devices for example electrical, hydraulic or pneumatic systems, can be used to actuate the spring element.
  • the actuating element is designed in the manner of a stamp which is arranged displaceably in a pressure chamber.
  • a pressure medium for example compressed air or hydraulic fluid
  • the roller is attached to a roller holder, which in turn is slidably mounted on a frame holder.
  • the frame holder in turn can be either fixed to the frame attached to the frame of the printing machine, or alternatively be arranged "to at respective actuating devices, which respectively serve, for example the arrival of the stopping mounted in the roller holder roll relative to the opposite roller.
  • a recess is provided on the roller holder or on the frame holder, into which a section of the frame holder or the roller holder engages.
  • the dimensions of the section or of the recess are selected such that a gap is formed between the recess and the section, through which the adjustment range between the roller holder and the frame holder is defined.
  • the roller holder can be displaced relative to the frame holder within this gap.
  • at least one actuator is arranged in the gap, which exerts a tensile and / or compressive force on the roller holder and is supported on the frame holder.
  • the shape of the recess and the section engaging in it is fundamentally arbitrary and can be matched to the respective application. It is conceivable that the recess is rectangular and only has play in one direction with respect to the portion engaging therein, so that the roller holder can only be adjusted in one direction of adjustment. If, on the other hand, an adjustment of the roller holder in different directions is desired, for example because the roller mounted in the roller holder has to be adjusted to several rollers, it is particularly advantageous if the recess and section are each rotationally symmetrical, so that a circumferential gap is formed between them. This can achieved that the roller holder can be adjusted in one setting plane in different adjustment directions relative to the frame holder, the adjustment range of the adjustment movement being limited by the width of the circumferential gap.
  • the roller holder can be adjusted relative to the frame holder in different adjustment directions, for example in an entire adjustment level, several actuators are required to apply the adjustment movement required for this.
  • at least three actuators are therefore arranged in the gap between the roller holder and the frame holder, with which the first roller can be pressed in different directions.
  • the actuators are preferably arranged in a star shape in the gap between the roller holder and the frame holder. If four actuators are arranged opposite each other in the gap, jamming of the actuators can thereby be reliably ruled out, since the respective opposite actuator is compressed by driving an actuator.
  • the type of actuators is basically arbitrary. Of course, electrical or piezoelectric systems are also conceivable. It when the actuator is designed in the manner of a pressure body which can be acted upon by a pressure medium is particularly advantageous. If hydraulic oil is used as the pressure medium, very high pressures with correspondingly large actuating forces can be applied.
  • a prestressed gas in particular compressed air, is used as the pressure medium. Since gases are basically compressible, the use of a prestressed gas as the pressure medium results in an elastic one Cushioning that acts between the frame holder and roller holder. This cushioning can compensate for mechanical disturbances, which can be caused, for example, by unbalance or out-of-roundness. In addition, compressed air is already available as an energy transfer medium in most printing presses.
  • the device for adjusting the contact pressure between the adjustable roller and an opposite roller can of course also be used to turn the adjustable roller on or off the other roller.
  • the setting range between the frame holder and the roller holder must be selected to be large enough to be able to carry out the positioning movement required for parking.
  • the actuator between the frame holder and the roller holder must be suitably selected to carry out such an actuating movement.
  • This parking device can be designed, for example, in the manner of a swivel arm with which the frame holder can be swiveled relative to the frame of the printing presses between an operating position and a parking position.
  • the overall compactness of the device can be further increased by arranging a fixing device in a device for adjusting the contact pressure between two rollers.
  • the fixing device extends coaxially to the longitudinal axis of the roller mounted on the roller holder along the central axis of the device.
  • FIG. 1 shows a schematically illustrated fixing device in cross section.
  • Figure 2 is a schematically illustrated device for adjusting the contact pressure between two rollers with a fixing device in longitudinal section.
  • FIG. 3 shows the device shown schematically in cross section according to FIG. 2 in a basic position
  • FIG. 4 shows the device shown schematically in cross section according to FIG. 2 in a deflected position
  • FIG. 5 shows the device according to FIG. 2 in a perspective view from the front
  • Fig. 6 shows a second embodiment of an actuator for the device in cross section.
  • the fixing device 01 shown in Fig. 1 has a part, for. B. a base body 02, which is formed from a cover 03 and a sleeve 04, and a slidably mounted in the sleeve 04 part, for. B. a bolt 06, on the outside of which a mounting plate 07 is provided.
  • the base body 02 can, for example, be fastened to a frame, whereas, for example, a roller lock for mounting a roller can be screwed onto the fastening plate 07.
  • the bolt 06 has a certain play radially with respect to the sleeve 04, so that the bolt 06 can be displaced relative to the base body 02 in any setting direction 08 in an adjustment plane that extends perpendicular to the plane of the drawing. As a result, the fastening plate 07 can be moved up or down in the direction of the movement arrow 08, for example. Because of the circular symmetry Formation of the fixing device 01 can also be realized in any other directions within the position level.
  • Lamellar elements 09 are attached to the base body 02 at equidistant intervals on the inside of the sleeve 04 and mesh with lamellar elements 11 attached to the bolt 06.
  • the contact surfaces between the lamella elements 09; 11 extend in planes that run parallel to the plane of the possible actuating movements.
  • the lamellar elements 09 slide along the lamellar elements 11, the actuating movement being limited by the play between the bolt 06 and the base body 02.
  • a clamping device 12 is provided with a pressure stamp 15, which is slidably mounted in a pressure cylinder 16.
  • a pressure chamber 14 can be acted upon by a pressure medium, for example a hydraulic oil or compressed air, through the connection 13, so that the pressure ram 15 in the pressure cylinder 16 is pressed in the direction of the lamella elements 09 or 11.
  • a pressure medium for example a hydraulic oil or compressed air
  • FIG. 2 shows a device 20 for adjusting the contact pressure between a first roller 21 and a second roller 22.
  • the roller 21 can be detachably fastened with the ends of its axis 23 to a quick release fastener 24 provided on the device 20.
  • Such quick fasteners 24 are known from the prior art and have a semicircular bearing shell into which the ends of the roller axis 23 can be inserted. By attaching one in Fig. 2 not shown upper bearing shell, the roller axis 23 can then be fixed on the quick release 24.
  • the device 20 is essentially constructed from a frame holder 26 and a roller holder 27, which can be displaced relative to one another in a positioning plane that extends perpendicular to the plane of the drawing.
  • the frame holder 26 is constructed from a base plate 28, which can be pivotably attached to the frame of a printing press, for example by means of a swivel arm, and a sleeve body 29.
  • the sleeve body 29 On the side facing the roller 21, the sleeve body 29 has a recess 31 into which a cylindrical section 32 of the roller holder 27 engages.
  • the inside diameter of the recess 31 or the outside diameter of the section 32 is selected such that a circularly cylindrical gap 33 with a gap width of approximately 1 mm to 10 mm, in particular of 2 mm, is formed in the basic position.
  • the maximum adjustment range for adjusting the roller holder 27 relative to the frame holder 26 is defined by the gap 33.
  • a total of four actuators 34 are distributed in the gap 33 over the circumference only two are shown in section in FIG.
  • the pressure chambers 36 formed by the wall of the actuators 34 can be pressurized via feed lines 48 (not shown in FIG. 5).
  • a resulting force acts on the roller holder 27, so that by appropriately controlling the pressure in the actuators 34, the roller 21 can be pressed against the roller 22 with the desired contact pressure. Since the air cushion under pressure in the actuators 34 is compressible, mechanical disturbances can be absorbed by the resulting spring action.
  • a height h36 of the pressure chamber 36 in the radial direction of the roller 21 is smaller than a width b36 of the pressure chamber 36 in the axial direction of the roller 21 and / or a length I36 of the pressure chamber 36 in the circumferential direction of the roller 21 (see also FIG. 5).
  • the ratio of width b36 and / or length I36 of the pressure chamber 36 to the height h36 of the pressure chamber 36; is greater than 3, in particular greater than 5 (see FIG. 5).
  • lamellar elements 37 are fastened to the roller holder 27 and are arranged in a meshing manner with lamellar elements 38 fastened to the sleeve body 29 to form a lamellar stack.
  • a punch 39 with a T-shaped cross section is provided, the circular stamp head 40 of which comes into contact with an annular flange 41 on the outermost lamellar element 38 of the lamellar pack.
  • a pressure plate 42 is fastened, on which the spring force of a spring element 43 designed in the manner of a plate spring assembly acts.
  • the spring element 43 is preloaded between the pressure plate 42 and the sleeve body 29, so that the lamella elements 37; 38 formed lamella pack by the spring force that from the punch 39 to the lamella elements 37; 38 is transmitted, is stuck.
  • a pressure connection 44 is provided in the base plate 28, through which a pressure chamber 46 between the pressure plate 42 and the base plate 28 can be acted upon by a pressure medium, for example compressed air.
  • the setting of the contact pressure between the rollers 21; 22 is done, for example, in the following manner. Sufficient pressure is first applied to the pressure chamber 46 so that the lamella elements 37; 38 can no longer be clamped. Then the actuators 34 are each subjected to just enough pressure that the desired contact pressure between the rollers 21; 22 or between the roller 21 and other rollers, not shown in FIG. 2, and leads to a contact strip of the desired width. As soon as the correct setting with the desired contact pressure between the rollers 21; 22 is found, the pressure chamber 46 is depressurized, whereby the stamp 39, the lamella elements 37; 38 clamped together so that the roller holder 27 is fixed relative to the frame holder 26 in the desired position. Finally, the actuators 34 are depressurized.
  • FIG. 3 shows the frame holder 26 with the recess 31 and the portion 32 of the roller holder 27 engaging therein.
  • the dimensions are used to form a gap 33 between the frame holder 26 and the portion 32 of the roller holder 27, in which the gap shown in FIG and 4 are arranged only schematically by actuators 34 indicated by force arrows.
  • the possible actuating movements between the frame holder 26 and the roller holder 27 are defined by an actuating plane which extends in the drawing plane in the representation of FIGS. 3 and 4, the actuating range of the actuating movements being limited by the width of the gap 33.
  • the roller holder 27 and, as a result, the roller 21 attached to it is laterally displaced relative to the frame holder 26, which is brought about by a corresponding actuation of the actuators 34 and the consequent force effect on the section 32.
  • the position of the lamella elements 37; 38 or the stamp 39 and the pressure plate 42 formed fixing device are actuated so that the position is permanently fixed and the actuators 34 do not have to be driven any further.
  • FIG. 5 shows the device 20 with the base plate 28, the frame holder 26, the roller holder 27 and the actuators 34 in a perspective view from the front.
  • the four actuators 34 designed in the manner of pressure hoses are arranged, which can be acted upon by compressed air via feed lines 48.
  • the slat elements 37; 38 be relaxed.
  • FIG. 6 shows a second embodiment 50 of an actuator 50 for a device 20 in cross section.
  • the basic structure of the device 20 with frame holder 26, roller holder 27 and a fixing device for fixing the roller holder 27 relative to the roller holder 26 corresponds to the structure described with FIG. 2 and therefore does not need to be explained further.
  • a cylindrical membrane 51 is arranged in the gap 33, the upper and lower edges of which are connected to the inside diameter of the sleeve body 29 (not shown in FIG. 6).
  • the membrane 51 is also connected in four strip-shaped areas 52 to the inside diameter of the sleeve body 29, for example glued, so that as a result, four pressure chambers 53 are created by the sleeve body 29 and the membrane 51 are formed, which are evenly distributed over the circumference of the gap 33.
  • the pressure chambers 53 can each be pressurized with compressed air via pressure inlet openings 54, so that a resultant force acts on the section 32 of the roller holder 27 depending on the respective pressure in the four pressure chambers 53.
  • a height h53 of the pressure chamber 53 of the device (20) in the radial direction of the roller 21 is smaller than a width of the pressure chamber 53 in the axial direction of the roller 21 and / or a length I53 of the pressure chamber 53 in the circumferential direction of the roller 21.
  • the ratio of width b53 and / or length I53 of the pressure chamber 53 to the height h53 of the pressure chamber 53; is greater than 3, in particular greater than 5.
  • roller holder Base plate (26) sleeve body (26) - recess (26) section (27) gap actuator, pressure hose -.
  • Pressure chamber lamellar element (27) lamellar element (26) punch stamp head flange (40) pressure plate spring element pressure connection - pressure chamber fastening screw supply line - actuator membrane fastening section, area pressure chamber pressure inlet opening w36 width (36) h36 height (36)

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Rolls And Other Rotary Bodies (AREA)
  • Inking, Control Or Cleaning Of Printing Machines (AREA)
  • Spinning Or Twisting Of Yarns (AREA)
  • Rotary Presses (AREA)
  • Fixing For Electrophotography (AREA)
  • Measuring Fluid Pressure (AREA)
  • Vehicle Body Suspensions (AREA)
  • Advancing Webs (AREA)
  • Forklifts And Lifting Vehicles (AREA)
  • Actuator (AREA)
  • Manufacture Or Reproduction Of Printing Formes (AREA)

Abstract

Device (20) for adjusting a roller (21) arranged in a roller holder (27) positioned on a frame holder (26) comprises at least one actuator (34). The actuator has at least one pressure chamber (36) impinged upon by pressurized material and arranged in a gap (33) between the roller holder and the frame holder. Preferred Features: A height (h36) of the pressure chamber in the radial direction of the roller is shorter than a width (b36) of the pressure chamber in the axial direction of the roller and/or a length of the pressure chamber in the peripheral direction of the roller. The ratio of width and/or length of the pressure chamber to the height of the pressure chamber is greater than 3.

Description

Beschreibungdescription
Vorrichtungen zum Einstellen des Anpressdrucks einer verstellbar gelagerten WalzeDevices for adjusting the contact pressure of an adjustable roller
Die Erfindung betrifft Vorrichtungen zum Einstellen des Anpressdrucks zwischen einer verstellbar gelagerten Walze gemäß dem Oberbegriff der Ansprüche 1 , 2, 3, 9 oder 12.The invention relates to devices for adjusting the contact pressure between an adjustable roller according to the preamble of claims 1, 2, 3, 9 or 12.
In herkömmlichen Druckmaschinen, wie beispielsweise Rollenrotationsdruckmaschinen, sind eine Vielzahl von Walzen vorhanden. Insbesondere sind Farbwalzen vorgesehen, die der Übertragung der Farbe aus einem Farbspeicher auf die Plattenzylinder dienen. Durch die Farbwalzen kann die auf die Plattenzylinder übertragene Farbe dosiert werden, sodass die Farbe als einheitlicher Film bestimmter Dicke übertragen wird. Störungen, wie zum Beispiel Geschwindigkeitsschwankungen und Drehschwingungen können dadurch ausgeglichen werden.In conventional printing presses, such as web-fed rotary printing presses, there are a large number of rollers. In particular, ink rollers are provided, which are used to transfer the ink from an ink reservoir to the plate cylinder. The ink transferred to the plate cylinder can be dosed by the ink rollers, so that the ink is transferred as a uniform film of a certain thickness. Disruptions such as speed fluctuations and torsional vibrations can be compensated for.
Außerdem können in der Druckmaschine auch Feuchtwerkswalzen vorgesehen sein, die ein Feuchtmittel, beispielsweise Wasser, auf das Druckwerk übertragen.In addition, dampening unit rollers can be provided in the printing press, which transfer a dampening solution, for example water, to the printing unit.
Häufig werden Walzenpaare von miteinander in Eingriff stehenden Walzen gebildet, bei denen zumindest eine der Walzen eine Zylinderfläche aus elastischem Material aufweist, sodass diese Zylinderfläche abhängig vom Anpressdruck der gegenüberliegenden Walze zumindest geringfügig verformt werden kann. Im Ergebnis ergibt sich durch die elastische Verformung der Walzenoberfläche ein sich gradlinig zwischen den Walzen erstreckender Kontaktbereich, der als Kontaktstreifen bezeichnet wird. Die Breite des Kontaktstreifens kann durch die Erstellung des Anpressdrucks zwischen den Walzen variiert werden, wobei die Breite des Kontraktstreifens einen erheblichen Einfluss auf das Druckergebnis hat. Ist beispielsweise in einem Farbwerk der Kontaktstreifen zu schmal, so wird nicht genug Farbe übertragen, wohingegen in den Fällen, in denen der Kontaktstreifen zu breit ist, die elastische Walze durch die dabei auftretende Walkarbeit beschädigt werden kann. Um insbesondere die Streifenbreite jeweils abhängig von den Betriebsbedingungen, beispielsweise der Temperatur der Druckmaschinen beziehungsweise deren Verschleißgrad, immer richtig einstellen zu können, ist es erforderlich, die eine Walze verstellbar zu lagern, sodass sie mit einem Aktor mit einer einstellbaren Kraft in Richtung der gegenüberliegenden Walze gedrückt werden kann. Ist dann der richtige Anpressdruck zwischen den beiden Walzen gefunden, wird eine Fixiereinrichtung zum Fixieren der ersten Walze relativ zur zweiten Walze betätigt, um den Anpressdruck dauerhaft aufrecht zu erhalten.Roll pairs are often formed by mutually engaging rolls in which at least one of the rolls has a cylindrical surface made of elastic material, so that this cylindrical surface can be deformed at least slightly depending on the contact pressure of the opposite roll. As a result, the elastic deformation of the roller surface results in a contact region extending in a straight line between the rollers, which is referred to as a contact strip. The width of the contact strip can be varied by creating the contact pressure between the rollers, the width of the contract strip having a considerable influence on the printing result. For example, if the contact strip is too narrow in an inking unit, not enough color is transferred, whereas in the cases where the contact strip is too wide, the elastic roller can be damaged by the flexing work that occurs. In order, in particular, to be able to always correctly set the strip width depending on the operating conditions, for example the temperature of the printing presses or their degree of wear, it is necessary to mount the one roller so that it can be adjusted with an actuator with an adjustable force in the direction of the opposite roller can be pressed. If the correct contact pressure is then found between the two rollers, a fixing device for fixing the first roller relative to the second roller is actuated in order to maintain the contact pressure permanently.
Aus der DE 197 19 305 A 1 ist eine gattungsgemäße Vorrichtung zum Einstellen des Anpressdruckes zwischen zwei Walzen bekannt. Bei der dort beschriebenen Lageranordnung wird die verstellbar gelagerte Walze mit einer Feder, die sich am Gestell der Druckmaschine abstützt, gegen die gegenüberliegende Walze gedrückt. Dadurch stellt sich abhängig von der jeweils gewählten Federkennlinie immer ein bestimmter Anpressdruck zwischen den beiden Walzen aus. Zur Fixierung der Walze in der angepressten Stellung ist ein Klemmmechanismus mit Klemmhebel und Klemmplatte beschrieben, durch den die Walzenachse durch Reibschluss am Gestell der Druckmaschine fixierbar ist.From DE 197 19 305 A 1 a generic device for adjusting the contact pressure between two rollers is known. In the bearing arrangement described there, the adjustably mounted roller is pressed against the opposite roller by a spring, which is supported on the frame of the printing press. As a result, depending on the spring characteristic selected in each case, a certain contact pressure is always established between the two rollers. To fix the roller in the pressed-on position, a clamping mechanism with a clamping lever and clamping plate is described, by means of which the roller axis can be fixed to the frame of the printing press by a frictional connection.
Aus der DE 199 19 733 A 1 ist eine Vorrichtung zum halbautomatischen Einstellen von Walzen bekannt, bei der die verstellbar gelagerte Walze in einem Walzenhalter gehalten wird, der seinerseits an einem gestellfest angeordneten Rahmenhalter gelagert ist. Walzenhalter und Rahmenhalter können dabei gegeneinander verschoben werden und sind durch federelastische Mittel miteinander verbunden. Die federelastischen Mittel weisen dabei eine bestimmte Vorspannung auf, sodass die am Walzenhalter verstellbar gelagerte Walze mit einem bestimmten Anpressdruck gegen die gegenüberliegende Walze gedrückt werden kann. Zur Arretierung des Walzenhalters am Rahmenhalter sind Arretierbolzen vorgesehen, durch deren Zustellung der Walzenhalter reibschlüssig am Rahmenhalter beklemmt werden kann.From DE 199 19 733 A 1 a device for the semi-automatic setting of rolls is known, in which the adjustably mounted roll is held in a roll holder, which in turn is mounted on a frame holder arranged fixed to the frame. Roller holder and frame holder can be moved against each other and are connected to each other by resilient means. The resilient means have a certain pretension, so that the roll, which is adjustably mounted on the roll holder, can be pressed against the opposite roll with a certain contact pressure. To lock the roller holder on the frame holder locking bolts are provided, by the delivery of the roller holder on the friction Frame holder can be clamped.
Die DE 42 31 673 A1 beschreibt eine Vorrichtung zur Walzeneinstellung, bei der eine Walze zuerst in radialer Richtung mittels eines Druckraumes verschoben wird und anschließend fixiert wird.DE 42 31 673 A1 describes a device for roller adjustment, in which a roller is first displaced in the radial direction by means of a pressure chamber and is then fixed.
Der Erfindung liegt die Aufgabe zugrunde, Vorrichtungen zum Einstellen des Anpressdrucks einer verstellbar gelagerten Walze zu schaffen.The invention has for its object to provide devices for adjusting the contact pressure of an adjustable roller.
Die Aufgabe wird erfindungsgemäß durch die Merkmale der Ansprüche 1 , 2, 3, 9 oder 12 gelöst.The object is achieved by the features of claims 1, 2, 3, 9 or 12.
Ein Vorteil der Fixiereinrichtung liegt insbesondere darin, dass eine derartige Fixiereinrichtung außerordentlich kompakt und damit platzsparend realisierbar ist. Dies wird dadurch erreicht, dass zur Fixierung der verstellbaren Bauteile relativ zueinander mehrere Lammellenelemente reibschlüssig beklemmt werden. Durch die Anordnung mehrerer, insbesondere einer Vielzahl, solcher Lammellenelemente hintereinander, wird die zur Fixierung erforderliche Reibkraft auf eine Vielzahl von Reibflächen zwischen den Lammellenelementen verteilt. Durch die Beklemmung der hintereinander angeordneten Lammellenelemente wirkt die Klemmkraft jeweils entgegengesetzt in allen Reibflächen.An advantage of the fixing device is in particular that such a fixing device can be implemented in an extremely compact and thus space-saving manner. This is achieved in that several lamella elements are frictionally clamped to fix the adjustable components relative to each other. By arranging several, in particular a large number, of such lamella elements one behind the other, the frictional force required for fixing is distributed over a large number of friction surfaces between the lamella elements. By clamping the lamella elements arranged one behind the other, the clamping force acts in opposite directions in all friction surfaces.
Geeignete Lammellenelemente sind beispielsweise von Lammellenkupplungen bekannt, die zur reibschlüssigen Verbindung von drehbar gelagerten Achsen eingesetzt werden. Im Unterschied zu den bekannten Lammellenkupplungen sind bei der Fixiereinrichtung die Lammellen in zumindest einer Richtung gegeneinander verschiebbar und können abhängig vom Spiel zwischen den Bauteilen der Fixiereinrichtung innerhalb eines bestimmten Stellbereichs gegeneinander verschoben und anschließend fixiert werden. Die Stellbewegung findet also nicht wie bei einer Lammellenkupplung in der Art einer Schwenk- oder Rotationsbewegung statt, sondern erfolgt in der Art einer Translationsbewegung in der Ebene, die durch die Ausrichtung der Reibflächen der Lammellenelemente definiert wird.Suitable plate elements are known, for example, from plate clutches, which are used for the frictional connection of rotatably mounted axes. In contrast to the known multi-plate clutches, the plates in the fixing device can be moved against one another in at least one direction and can be moved relative to one another within a certain adjustment range and then fixed depending on the play between the components of the fixing device. The actuating movement does not take place in the manner of a swiveling or rotating movement as in the case of a multi-plate clutch, but takes place in the manner of a Translational movement in the plane, which is defined by the alignment of the friction surfaces of the lamellar elements.
Als Klemmeinrichtung können grundsätzlich alle Elemente bzw. Konstruktionen eingesetzt werden, mit denen die Lammellen unter Aufbringung eines ausreichenden Anpressdruckes miteinander beklemmt werden können. Besonders vorteilhaft ist es, wenn die Klemmeinrichtung in der Art eines vorgespannten Federelements ausgebildet ist. In der fixierten Stellung der Fixiereinrichtung wird von dem vorgespannten Federelement eine so hohe Federkraft auf die Lammellenelemente ausgeübt, sodass diese zuverlässig reibschlüssig aneinander fixiert sind. Ein ungewolltes Lösen der Fixiereinrichtung, beispielsweise beim Ausfall der Energieversorgung, wie es bei sonstigen Klemmeinrichtung zu befürchten ist, ist dadurch ausgeschlossen. Um die Klemmeinrichtung zur Verstellung der Bauteile der Fixiereinrichtung lösen zu können, ist bei dieser Ausführungsform ein Stellelement an der Fixiereinrichtung vorzusehen, mit dem das Federelement soweit zusammengedrückt werden kann, dass die Lammellenelemente entspannt und dadurch gegeneinander verschoben werden können.In principle, all elements or constructions can be used as the clamping device with which the lamellae can be clamped together by applying sufficient contact pressure. It is particularly advantageous if the clamping device is designed in the manner of a prestressed spring element. In the fixed position of the fixing device, the prestressed spring element exerts such a high spring force on the lamella elements that they are reliably fixed to one another in a frictionally locking manner. An unintentional loosening of the fixing device, for example in the event of a power supply failure, as is to be feared with other clamping devices, is thereby excluded. In order to be able to release the clamping device for adjusting the components of the fixing device, an adjusting element is to be provided on the fixing device in this embodiment, with which the spring element can be compressed to such an extent that the lamella elements can be relaxed and thereby displaced against each other.
Zur Betätigung des Federelements können grundsätzlich beliebige Antriebseinrichtungen, beispielsweise elektrische, hydraulische oder pneumatisch wirkende Systeme eingesetzt werden. Besonders vorteilhaft ist es, wenn das Stellelement in der Art eines Stempels ausgebildet ist, der verschiebbar in einer Druckkammer angeordnet wird. Durch Beaufschlagung der Druckkammer mit einem Druckmedium, beispielsweise Druckluft oder Hydraulikflüssigkeit, kann der Stempel gegen die Federkraft des Federelements verschoben werden, sodass im Ergebnis die Lammellenelemente entspannt werden.In principle, any drive devices, for example electrical, hydraulic or pneumatic systems, can be used to actuate the spring element. It is particularly advantageous if the actuating element is designed in the manner of a stamp which is arranged displaceably in a pressure chamber. By applying a pressure medium, for example compressed air or hydraulic fluid, to the pressure chamber, the plunger can be moved against the spring force of the spring element, so that the lamella elements are relaxed as a result.
Die mit der Erfindung erzielbaren Vorteile bestehen insbesondere in der sehr kompakten Bauweise, die durch die vorgeschlagene Konstruktion ermöglicht wird. Wie aus dem Stand der Technik bekannt, wird die Walze an einem Walzenhalter befestigt, der seinerseits verschiebbar an einem Rahmenhalter gelagert ist. Der Rahmenhalter wiederum kann entweder gestellfest am Gestell der Druckmaschine befestigt sein, oder alternativ "dazu an entsprechenden Stelleinrichtungen angeordnet werden, die beispielsweise dem An- beziehungsweise dem Abstellen der im Walzenhalter gelagerten Walze relativ zur gegenüberliegenden Walze dienen.The advantages which can be achieved with the invention consist in particular in the very compact design, which is made possible by the proposed construction. As is known from the prior art, the roller is attached to a roller holder, which in turn is slidably mounted on a frame holder. The frame holder in turn can be either fixed to the frame attached to the frame of the printing machine, or alternatively be arranged "to at respective actuating devices, which respectively serve, for example the arrival of the stopping mounted in the roller holder roll relative to the opposite roller.
Am Walzenhalter bzw. am Rahmenhalter ist eine Ausnehmung vorgesehen, in die ein Abschnitt des Rahmenhalters bzw. des Walzenhalters eingreift. Die Abmessungen des Abschnitts bzw. der Ausnehmung sind dabei so gewählt, dass sich zwischen der Ausnehmung und dem Abschnitt ein Spalt bildet, durch den der Stellbereich zwischen Walzenhalter und Rahmenhalter definiert wird. Innerhalb dieses Spaltes kann der Walzenhalter relativ zum Rahmenhalter verschoben werden. Um die für die Stellbewegung erforderlichen Stellkräfte aufbringen zu können, bzw. um die erste Walze mit einem bestimmten Anpressdruck gegen die gegenüberliegende Walze drücken zu können, ist in dem Spalt zumindest ein Aktor angeordnet, der eine Zug- und/oder Druckkraft auf den Walzenhalter ausübt und sich dabei auf dem Rahmenhalter abstützt. Aufgrund der Anordnung des Aktors im Spalt zwischen Rahmenhalter und Walzenhalter lassen sich außerordentlich kompakte Bauformen realisieren. Dabei ist es selbstverständlich gleichgültig, ob die Ausnehmung am Rahmenhalter oder Walzenhalter vorgesehen ist, sodass grundsätzlich beide Bauformen alternativ denkbar sind.A recess is provided on the roller holder or on the frame holder, into which a section of the frame holder or the roller holder engages. The dimensions of the section or of the recess are selected such that a gap is formed between the recess and the section, through which the adjustment range between the roller holder and the frame holder is defined. The roller holder can be displaced relative to the frame holder within this gap. In order to be able to apply the actuating forces required for the actuating movement, or to be able to press the first roller against the opposite roller with a certain contact pressure, at least one actuator is arranged in the gap, which exerts a tensile and / or compressive force on the roller holder and is supported on the frame holder. Due to the arrangement of the actuator in the gap between the frame holder and roller holder, extremely compact designs can be realized. It is of course irrelevant whether the recess is provided on the frame holder or roller holder, so that in principle both types of construction are alternatively conceivable.
Die Gestalt der Ausnehmung und des darin eingreifenden Abschnitts ist grundsätzlich beliebig und kann auf den jeweiligen Einsatzfall abgestimmt werden. So ist es denkbar, dass die Ausnehmung rechtwinklig ausgebildet ist und lediglich in einer Richtung ein Spiel gegenüber dem darin eingreifenden Abschnitt aufweist, sodass im Ergebnis der Walzenhalter nur in eine Stellrichtung verstellt werden kann. Wird dagegen eine Verstellung des Walzenhalters in verschiedene Richtungen gewünscht, beispielsweise weil die im Walzenhalter gelagerte Walze an mehrere Walzen angestellt werden muss, ist es besonders vorteilhaft, wenn Ausnehmung und Abschnitt jeweils rotationssymmetrisch ausgebildet sind, sodass sich dazwischen ein umlaufender Spalt bildet. Dadurch kann erreicht werden, dass der Walzenhalter in einer Stellebene in verschiedene Stellrichtungen relativ zum Rahmenhalter verstellt werden kann, wobei der Stellbereich der Stellbewegung durch die Breite des umlaufenden Spalts begrenzt wird.The shape of the recess and the section engaging in it is fundamentally arbitrary and can be matched to the respective application. It is conceivable that the recess is rectangular and only has play in one direction with respect to the portion engaging therein, so that the roller holder can only be adjusted in one direction of adjustment. If, on the other hand, an adjustment of the roller holder in different directions is desired, for example because the roller mounted in the roller holder has to be adjusted to several rollers, it is particularly advantageous if the recess and section are each rotationally symmetrical, so that a circumferential gap is formed between them. This can achieved that the roller holder can be adjusted in one setting plane in different adjustment directions relative to the frame holder, the adjustment range of the adjustment movement being limited by the width of the circumferential gap.
Kann der Walzenhalter relativ zum Rahmenhalter in verschiedene Stellrichtungen, beispielsweise in einer gesamten Stellebene, verstellt werden, sind zur Aufbringung der dafür erforderlichen Stellbewegung mehrere Aktoren erforderlich. Nach einer bevorzugten Ausführungsform sind deshalb im Spalt zwischen Walzenhalter und Rahmenhalter zumindest drei Aktoren angeordnet, mit denen die erste Walze in jeweils unterschiedliche Richtungen gedrückt werden kann. Durch entsprechende Wahl der von den jeweiligen Aktoren aufgebrachte Kräfte kann durch kombinierte Ansteuerung der verschiedenen Aktoren eine resultierende Kraft in beliebiger Richtung auf den Walzenhalter und damit auf die im Walzenhalter gelagerte Walze aufgebracht werden. Vorzugsweise werden die Aktoren dabei sternförmig im Spalt zwischen Walzenhalter und Rahmenhalter verteilt angeordnet. Werden vier Aktoren einander jeweils gegenüberliegend im Spalt angeordnet, kann dadurch ein verkanten der Aktoren zuverlässig ausgeschlossen werden, da durch Antrieb eines Aktors der jeweils gegenüberliegende Aktor zusammengedrückt wird.If the roller holder can be adjusted relative to the frame holder in different adjustment directions, for example in an entire adjustment level, several actuators are required to apply the adjustment movement required for this. According to a preferred embodiment, at least three actuators are therefore arranged in the gap between the roller holder and the frame holder, with which the first roller can be pressed in different directions. By appropriate selection of the forces exerted by the respective actuators, a combined force of the various actuators can be used to apply a resultant force in any direction to the roller holder and thus to the roller mounted in the roller holder. The actuators are preferably arranged in a star shape in the gap between the roller holder and the frame holder. If four actuators are arranged opposite each other in the gap, jamming of the actuators can thereby be reliably ruled out, since the respective opposite actuator is compressed by driving an actuator.
In welcher Art die Aktoren ausgebildet sind, ist grundsätzlich beliebig. So sind selbstverständlich elektrisch oder auch piezoelektrisch wirkende Systeme denkbar. Besonders vorteilhaft ist es, wenn der Aktor in der Art eines Druckkörpers ausgebildet ist, der mit einem Druckmedium beaufschlagbar ist. Wird als Druckmedium ein Hydrauliköl benutzt, können dadurch sehr hohe Drücke mit entsprechend großen Stellkräften aufgebracht werden.The type of actuators is basically arbitrary. Of course, electrical or piezoelectric systems are also conceivable. It when the actuator is designed in the manner of a pressure body which can be acted upon by a pressure medium is particularly advantageous. If hydraulic oil is used as the pressure medium, very high pressures with correspondingly large actuating forces can be applied.
Nach einer bevorzugten Ausführungsform wird als Druckmedium ein vorgespanntes Gas, insbesondere Druckluft eingesetzt. Da Gase grundsätzlich kompressibel sind, ergibt sich durch die Benutzung eines vorgespannten Gases als Druckmedium eine elastische Abfederung, die zwischen Rahmenhalter und Walzenhalter wirkt. Durch diese Abfederung können mechanische Störungen, die beispielsweise durch Unwuchten oder Unrundhalten verursacht sein können, ausgeglichen werden. Außerdem steht bei den meisten Druckmaschinen Druckluft als Energieübertragungsmedium bereits zur Verfügung.According to a preferred embodiment, a prestressed gas, in particular compressed air, is used as the pressure medium. Since gases are basically compressible, the use of a prestressed gas as the pressure medium results in an elastic one Cushioning that acts between the frame holder and roller holder. This cushioning can compensate for mechanical disturbances, which can be caused, for example, by unbalance or out-of-roundness. In addition, compressed air is already available as an energy transfer medium in most printing presses.
Die Vorrichtung zum Einstellen des Anpressdruckes zwischen der verstellbar gelagerten Walze und einer gegenüberliegenden Walze kann selbstverständlich auch dazu genutzt werden, die verstellbar gelagerte Walze an die andere Walze an- beziehungsweise abzustellen. Dazu muss allerdings der Stellbereich zwischen Rahmenhalter und Walzenhalter ausreichend groß gewählt werden, um die für das Abstellen erforderliche Stellbewegung ausführen zu können. Außerdem muss der Aktor zwischen Rahmenhalter und Walzenhalter zur Durchführung einer solchen Stellbewegung geeignet gewählt werden. Um das An- beziehungsweise Abstellen unabhängig von der Betätigung der Vorrichtung durchführen zu können, ist es vorteilhaft, wenn die Vorrichtung auf einer zusätzlichen Abstellvorrichtung befestigt ist. Diese Abstellvorrichtung kann beispielsweise in der Art eines Schwenkarms ausgebildet sein, mit dem der Rahmenhalter relativ zum Gestell der Druckmaschinen zwischen einer Anstellposition und einer Abstellposition verschwenkt werden kann.The device for adjusting the contact pressure between the adjustable roller and an opposite roller can of course also be used to turn the adjustable roller on or off the other roller. To do this, however, the setting range between the frame holder and the roller holder must be selected to be large enough to be able to carry out the positioning movement required for parking. In addition, the actuator between the frame holder and the roller holder must be suitably selected to carry out such an actuating movement. In order to be able to carry out the switching on and off independently of the actuation of the device, it is advantageous if the device is attached to an additional parking device. This parking device can be designed, for example, in the manner of a swivel arm with which the frame holder can be swiveled relative to the frame of the printing presses between an operating position and a parking position.
Durch Anordnung einer Fixiereinrichtung in einer Vorrichtung zum Einstellen des Anpressdrucks zwischen zwei Walzen kann die Kompaktheit der Vorrichtung insgesamt weiter erhöht werden.The overall compactness of the device can be further increased by arranging a fixing device in a device for adjusting the contact pressure between two rollers.
Dazu ist es besonders vorteilhaft, wenn sich die Fixiereinrichtung koaxial zur Längsachse der am Walzenhalter gelagerten Walze entlang der Mittelachse der Vorrichtung erstreckt.For this purpose, it is particularly advantageous if the fixing device extends coaxially to the longitudinal axis of the roller mounted on the roller holder along the central axis of the device.
Ausführungsbeispiele der Erfindung sind in den Zeichnungen dargestellt und werden im folgenden näher beschrieben. Es zeigen:Embodiments of the invention are shown in the drawings and are described in more detail below. Show it:
Fig. 1 eine schematisch dargestellte Fixiereinrichtung im Querschnitt;1 shows a schematically illustrated fixing device in cross section.
Fig. 2 eine schematisch dargestellte Vorrichtung zum Einstellen des Anpressdrucks zwischen zwei Walzen mit Fixiereinrichtung im Längsschnitt;Figure 2 is a schematically illustrated device for adjusting the contact pressure between two rollers with a fixing device in longitudinal section.
Fig. 3 die schematisch im Querschnitt dargestellte Vorrichtung gemäß Fig. 2 in einer Grundstellung;3 shows the device shown schematically in cross section according to FIG. 2 in a basic position;
Fig. 4 die schematisch im Querschnitt dargestellte Vorrichtung gemäß Fig. 2 in einer ausgelenkten Stellung;FIG. 4 shows the device shown schematically in cross section according to FIG. 2 in a deflected position;
Fig. 5 die Vorrichtung gemäß Fig. 2 in einer perspektivischen Ansicht von vorne;5 shows the device according to FIG. 2 in a perspective view from the front;
Fig. 6 eine zweite Ausführungsform eines Aktors für die Vorrichtung im Querschnitt.Fig. 6 shows a second embodiment of an actuator for the device in cross section.
Die in Fig. 1 dargestellte Fixiereinrichtung 01 weist ein Teil, z. B. einen Grundkörper 02, der aus einem Deckel 03 und einer Hülse 04 gebildet wird, und einen in der Hülse 04 verschiebbar gelagertes Teil, z. B. einen Bolzen 06, an dessen Außenseite eine Befestigungsplatte 07 vorgesehen ist, auf. Der Grundkörper 02 kann beispielsweise an einem Gestell befestigt werden, wohingegen an der Befestigungsplatte 07 beispielsweise ein Walzenschloss zur Lagerung einer Walze angeschraubt werden kann.The fixing device 01 shown in Fig. 1 has a part, for. B. a base body 02, which is formed from a cover 03 and a sleeve 04, and a slidably mounted in the sleeve 04 part, for. B. a bolt 06, on the outside of which a mounting plate 07 is provided. The base body 02 can, for example, be fastened to a frame, whereas, for example, a roller lock for mounting a roller can be screwed onto the fastening plate 07.
Der Bolzen 06 weist radial zur Hülse 04 ein bestimmtes Spiel auf, sodass der Bolzen 06 relativ zum Grundkörper 02 in einer Stellebene, die sich senkrecht zur Zeichenebene erstreckt, in beliebige Stellrichtungen 08 verschoben werden kann. Dadurch kann die Befestigungsplatte 07 beispielsweise in Richtung des Bewegungspfeils 08 nach oben beziehungsweise unten verschoben werden. Aufgrund der kreissymmetrischen Ausbildung der Fixiereinrichtung 01 können aber auch Stellbewegungen in beliebige andere Richtungen innerhalb der Stellebene realisiert werden. Am Grundkörper 02 sind in äquidistanten Abständen Lammellenelemente 09 auf der Innenseite der Hülse 04 befestigt, die mit am Bolzen 06 befestigten Lammellenelementen 11 kämmen. Die Kontaktflächen zwischen den Lammellenelementen 09; 11 erstrecken sich dabei in Ebenen, die parallel zur Stellebene der möglichen Stellbewegungen verläuft. Während der Verstellung des Bolzens 06 relativ zum Grundkörper 02 gleiten die Lammellenelemente 09 entlang der Lammellenelemente 11 , wobei die Stellbewegung durch das Spiel zwischen Bolzen 06 und Grundkörper 02 begrenzt wird.The bolt 06 has a certain play radially with respect to the sleeve 04, so that the bolt 06 can be displaced relative to the base body 02 in any setting direction 08 in an adjustment plane that extends perpendicular to the plane of the drawing. As a result, the fastening plate 07 can be moved up or down in the direction of the movement arrow 08, for example. Because of the circular symmetry Formation of the fixing device 01 can also be realized in any other directions within the position level. Lamellar elements 09 are attached to the base body 02 at equidistant intervals on the inside of the sleeve 04 and mesh with lamellar elements 11 attached to the bolt 06. The contact surfaces between the lamella elements 09; 11 extend in planes that run parallel to the plane of the possible actuating movements. During the adjustment of the bolt 06 relative to the base body 02, the lamellar elements 09 slide along the lamellar elements 11, the actuating movement being limited by the play between the bolt 06 and the base body 02.
Zur Fixierung der Fixiereinrichtung 01 in einer bestimmten Lage ist eine Klemmeinrichtung 12 mit einem Druckstempel 15, der in einem Druckzylinder 16 verschiebbar gelagert ist, vorgesehen. Durch den Anschluss 13 kann eine Druckkammer 14 mit einem Druckmedium, beispielsweise einem Hydrauliköl oder Druckluft, beaufschlagt werden, sodass der Druckstempel 15 im Druckzylinder 16 in Richtung der Lammellenelemente 09 beziehungsweise 11 gedrückt wird. Im Ergebnis werden dadurch die Lammellenelemente 09; 11 zwischen der Klemmeinrichtung 12 und einem an die Hülse 04 angeformten Endanschlag 17 beklemmt. Sobald die Flächenpressung zwischen dem Druckstempel 15 und dem vordersten Lammellenelement 11 einen bestimmten Druck übersteigt, kommen die einzelnen Lammellenelemente 09; 11 unter Ausbildung eines Haftreibungszustandes reibschlüssig aneinander zur Anlage, sodass der Bolzen 06 relativ zum Grundkörper 02 fixiert ist.To fix the fixing device 01 in a certain position, a clamping device 12 is provided with a pressure stamp 15, which is slidably mounted in a pressure cylinder 16. A pressure chamber 14 can be acted upon by a pressure medium, for example a hydraulic oil or compressed air, through the connection 13, so that the pressure ram 15 in the pressure cylinder 16 is pressed in the direction of the lamella elements 09 or 11. As a result, the lamella elements 09; 11 clamped between the clamping device 12 and an end stop 17 molded onto the sleeve 04. As soon as the surface pressure between the plunger 15 and the foremost slat element 11 exceeds a certain pressure, the individual slat elements 09; 11 to form a static frictional friction against one another so that the bolt 06 is fixed relative to the base body 02.
In Fig. 2 ist eine Vorrichtung 20 zum Einstellen des Anpressdruckes zwischen einer ersten Walze 21 und einer zweiten Walze 22 dargestellt. Die Walze 21 kann mit den Enden ihrer Achse 23 lösbar an einem an der Vorrichtung 20 vorgesehenen Schnellverschluss 24 befestigt werden. Derartige Schnellverschlüsse 24 sind aus dem Stand der Technik bekannt und weisen eine halbkreisförmige Lagerschale auf, in die die Enden der Walzenachse 23 eingelegt werden können. Durch Befestigung einer in Fig. 2 nicht dargestellten oberen Lagerschale kann dann die Walzenachse 23 am Schnellverschluss 24 festgelegt werden.2 shows a device 20 for adjusting the contact pressure between a first roller 21 and a second roller 22. The roller 21 can be detachably fastened with the ends of its axis 23 to a quick release fastener 24 provided on the device 20. Such quick fasteners 24 are known from the prior art and have a semicircular bearing shell into which the ends of the roller axis 23 can be inserted. By attaching one in Fig. 2 not shown upper bearing shell, the roller axis 23 can then be fixed on the quick release 24.
Die Vorrichtung 20 ist im wesentlichen aus einem Rahmenhalter 26 und einem Walzenhalter 27 aufgebaut, die relativ zueinander in einer Stellebene, die sich senkrecht zur Zeichenebene erstreckt, gegeneinander verschoben werden können. Der Rahmenhalter 26 ist aus einer Grundplatte 28, die beispielsweise mittels eines Schwenkarms schwenkbar an dem Gestell einer Druckmaschine befestigt werden kann, und einem Hülsenkörper 29 aufgebaut. Auf der zur Walze 21 weisenden Seite weist der Hülsenkörper 29 eine Ausnehmung 31 auf, in die ein zylinderförmiger Abschnitt 32 des Walzenhalters 27 eingreift. Der Innendurchmesser der Ausnehmung 31 beziehungsweise der Außendurchmesser des Abschnitts 32 ist dabei so gewählt, dass sich ein in der Grundstellung kreiszylindrischer Spalt 33 mit einer Spaltbreite von ca. 1 mm bis 10 mm, insbesondere von 2 mm, bildet. Durch den Spalt 33 wird der maximale Stellbereich zur Verstellung des Walzenhalters 27 relativ zum Rahmenhalter 26 definiert.The device 20 is essentially constructed from a frame holder 26 and a roller holder 27, which can be displaced relative to one another in a positioning plane that extends perpendicular to the plane of the drawing. The frame holder 26 is constructed from a base plate 28, which can be pivotably attached to the frame of a printing press, for example by means of a swivel arm, and a sleeve body 29. On the side facing the roller 21, the sleeve body 29 has a recess 31 into which a cylindrical section 32 of the roller holder 27 engages. The inside diameter of the recess 31 or the outside diameter of the section 32 is selected such that a circularly cylindrical gap 33 with a gap width of approximately 1 mm to 10 mm, in particular of 2 mm, is formed in the basic position. The maximum adjustment range for adjusting the roller holder 27 relative to the frame holder 26 is defined by the gap 33.
Um die bei der Einstellung der Walze 21 erforderlichen Stellbewegungen realisieren zu können beziehungsweise den gewünschten Anpressdruck zwischen der Walze 21 und der Walze 22 aufbringen zu können, sind im Spalt 33 über den Umfang verteilt insgesamt vier in der Art von Druckschläuchen ausgebildete Aktoren 34, von denen in Fig. 2 lediglich zwei im Schnitt dargestellt sind, angeordnet. Über in Fig. 2 nicht dargestellte Zuleitungen 48 (siehe Fig. 5) können die von der Wandung der Aktoren 34 gebildete Druckkammern 36 mit Druck beaufschlagt werden. Abhängig von den jeweiligen Druckverhältnissen in den vier Aktoren 34 wirkt auf den Walzenhalter 27 eine resultierende Kraft, sodass durch entsprechende Ansteuerung des Drucks in den Aktoren 34 die Walze 21 mit dem gewünschten Anpressdruck gegen die Walze 22 gedrückt werden kann. Da das in den Aktoren 34 unter Druck stehende Luftpolster kompressibel ist, können mechanische Störungen durch die daraus resultierende Federwirkung abgefangen werden. Bei der Vorrichtung 20 ist eine Höhe h36 der Druckkammer 36 in radialer Richtung der Walze 21 kleiner als eine Breite b36 der Druckkammer 36 in axialer Richtung der Walze 21 und/oder eine Länge I36 der Druckkammer 36 in Umfangrichtung der Walze 21 (siehe auch Fig. 5).In order to be able to implement the adjusting movements required when setting the roller 21 or to be able to apply the desired contact pressure between the roller 21 and the roller 22, a total of four actuators 34, of which pressure hoses are formed, are distributed in the gap 33 over the circumference only two are shown in section in FIG. The pressure chambers 36 formed by the wall of the actuators 34 can be pressurized via feed lines 48 (not shown in FIG. 5). Depending on the respective pressure conditions in the four actuators 34, a resulting force acts on the roller holder 27, so that by appropriately controlling the pressure in the actuators 34, the roller 21 can be pressed against the roller 22 with the desired contact pressure. Since the air cushion under pressure in the actuators 34 is compressible, mechanical disturbances can be absorbed by the resulting spring action. In the device 20, a height h36 of the pressure chamber 36 in the radial direction of the roller 21 is smaller than a width b36 of the pressure chamber 36 in the axial direction of the roller 21 and / or a length I36 of the pressure chamber 36 in the circumferential direction of the roller 21 (see also FIG. 5).
Das Verhältnis von Breite b36 und/oder Länge I36 der Druckkammer 36 zur Höhe h36 der Druckkammer 36; ist größer als 3, insbesondere größer als 5 (siehe Fig. 5).The ratio of width b36 and / or length I36 of the pressure chamber 36 to the height h36 of the pressure chamber 36; is greater than 3, in particular greater than 5 (see FIG. 5).
Zur Fixierung des Walzenhalters 27 relativ zum Rahmenhalter 26 sind am Walzenhalter 27 Lammellenelemente 37 befestigt die mit am Hülsenkörper 29 befestigten Lammellenelementen 38 unter Bildung eines Lammellenpakets kämmend angeordnet sind. Zur reibschlüssigen Beklemmung des aus den Lammellenelementen 37 und 38 gebildeten Lammellenpakets ist ein im Querschnitt T-förmiger Stempel 39 vorgesehen, dessen kreisförmiger Stempelkopf 40 mit einem kreisringförmigen Flansch 41 am äußersten Lammellenelement 38 des Lammellenpakets zur Anlage kommt. Am gegenüberliegenden Ende des Stempels 39 ist eine Druckplatte 42 befestigt, auf die die Federkraft eines in der Art eines Tellerfederpakets ausgebildeten Federelements 43 wirkt. Das Federelement 43 wird vorgespannt zwischen die Druckplatte 42 und den Hülsenkörper 29 montiert, sodass das von den Lammellenelementen 37; 38 gebildete Lammellenpaket durch die Federkraft, die vom Stempel 39 auf die Lammellenelemente 37; 38 übertragen wird, beklemmt wird.To fix the roller holder 27 relative to the frame holder 26, lamellar elements 37 are fastened to the roller holder 27 and are arranged in a meshing manner with lamellar elements 38 fastened to the sleeve body 29 to form a lamellar stack. For frictional clamping of the lamella pack formed from the lamellar elements 37 and 38, a punch 39 with a T-shaped cross section is provided, the circular stamp head 40 of which comes into contact with an annular flange 41 on the outermost lamellar element 38 of the lamellar pack. At the opposite end of the plunger 39, a pressure plate 42 is fastened, on which the spring force of a spring element 43 designed in the manner of a plate spring assembly acts. The spring element 43 is preloaded between the pressure plate 42 and the sleeve body 29, so that the lamella elements 37; 38 formed lamella pack by the spring force that from the punch 39 to the lamella elements 37; 38 is transmitted, is stuck.
Zur Verstellung des Walzenhalters 27 relativ zum Rahmenhalter 26, insbesondere beim Einstellen des Anpressdruckes zwischen den Walzen 21 ; 22 muss die von den Lammellenelementen 37; 38 beziehungsweise dem Stempel 39 und der Druckplatte 42 gebildete Fixiereinrichtung gelöst werden. Dazu ist in der Grundplatte 28 ein Druckanschluss 44 vorgesehen, durch den eine Druckkammer 46 zwischen der Druckplatte 42 und der Grundplatte 28 mit einem Druckmedium, beispielsweise Druckluft beaufschlagt werden kann. Sobald der auf die Druckplatte 42 wirkende Luftdruck die Federkraft des Federelements 43 übersteigt, wird der Stempel 39 soweit vom äußersten Lammellenelement 38 abgehoben, dass diese nicht mehr reibschlüssig beklemmt sind und relativ gegeneinander verschoben werden können.To adjust the roller holder 27 relative to the frame holder 26, in particular when adjusting the contact pressure between the rollers 21; 22 must be that of the lamella elements 37; 38 or the stamp 39 and the pressure plate 42 formed fixing device can be solved. For this purpose, a pressure connection 44 is provided in the base plate 28, through which a pressure chamber 46 between the pressure plate 42 and the base plate 28 can be acted upon by a pressure medium, for example compressed air. As soon as the air pressure acting on the pressure plate 42 Exceeding the spring force of the spring element 43, the plunger 39 is lifted from the outermost lamellar element 38 to such an extent that they are no longer frictionally clamped and can be displaced relative to one another.
Die Einstellung des Anpressdrucks zwischen den Walzen 21 ; 22 erfolgt beispielsweise in folgender Weise. Zunächst wird die Druckkammer 46 mit einem ausreichenden Druck beaufschlagt, sodass die Lammellenelemente 37; 38 nicht mehr reibschlüssig beklemmt werden. Anschließend werden die Aktoren 34 jeweils mit gerade soviel Druck beaufschlagt, dass sich der gewünschte Anpressdruck zwischen den Walzen 21 ; 22 beziehungsweise zwischen der Walze 21 und weiteren, in Fig. 2 nicht dargestellten Walzen ausbildet und zu einem Kontaktstreifen der gewünschten Breite führt. Sobald die richtige Einstellung mit dem gewünschten Anpressdruck zwischen den Walzen 21 ; 22 gefunden ist, wird die Druckkammer 46 druckentleert, wodurch der Stempel 39 die Lammellenelemente 37; 38 miteinander beklemmt, sodass der Walzenhalter 27 relativ zum Rahmenhalter 26 in der gewünschten Stellung fixiert ist. Zuletzt werden die Aktoren 34 druckentleert.The setting of the contact pressure between the rollers 21; 22 is done, for example, in the following manner. Sufficient pressure is first applied to the pressure chamber 46 so that the lamella elements 37; 38 can no longer be clamped. Then the actuators 34 are each subjected to just enough pressure that the desired contact pressure between the rollers 21; 22 or between the roller 21 and other rollers, not shown in FIG. 2, and leads to a contact strip of the desired width. As soon as the correct setting with the desired contact pressure between the rollers 21; 22 is found, the pressure chamber 46 is depressurized, whereby the stamp 39, the lamella elements 37; 38 clamped together so that the roller holder 27 is fixed relative to the frame holder 26 in the desired position. Finally, the actuators 34 are depressurized.
In Fig. 3 und 4 ist das Wirkprinzip der Vorrichtung 20 bei der erforderlichen Stellbewegung in schematischer Weise dargestellt. Fig. 3 zeigt den Rahmenhalter 26 mit der Ausnehmung 31 und den darin eingreifenden Abschnitt 32 des Walzenhalters 27. Durch die Wahl der Abmessungen wird zwischen dem Rahmenhalter 26 und dem Abschnitt 32 des Walzenhalters 27 ein Spalt 33 gebildet, in dem die in Fig. 3 und 4 lediglich schematisch durch Kraftpfeile angedeuteten Aktoren 34 angeordnet sind. Die möglichen Stellbewegungen zwischen dem Rahmenhalter 26 und dem Walzenhalter 27 werden durch eine Stellebene, die sich in der Darstellung von Fig. 3 und Fig. 4 in der Zeichenebene erstreckt, definiert, wobei der Stellbereich der Stellbewegungen durch die Breite des Spalts 33 begrenzt ist.3 and 4, the principle of operation of the device 20 in the required actuating movement is shown in a schematic manner. FIG. 3 shows the frame holder 26 with the recess 31 and the portion 32 of the roller holder 27 engaging therein. The dimensions are used to form a gap 33 between the frame holder 26 and the portion 32 of the roller holder 27, in which the gap shown in FIG and 4 are arranged only schematically by actuators 34 indicated by force arrows. The possible actuating movements between the frame holder 26 and the roller holder 27 are defined by an actuating plane which extends in the drawing plane in the representation of FIGS. 3 and 4, the actuating range of the actuating movements being limited by the width of the gap 33.
Wie in Fig. 4 beispielhaft dargestellt, kann der Walzenhalter 27 und damit im Ergebnis die daran befestigte Walze 21 relativ zum Rahmenhalter 26 seitlich versetzt werden, was durch eine entsprechende Ansteuerung der Aktoren 34 und der daraus folgenden Kraftwirkung auf den Abschnitt 32 bewirkt wird. Sobald die gewünschte Stellung des Walzenhalters 27 relativ zum Rahmenhalter 26 gefunden ist, kann die von den Lammellenelementen 37; 38 beziehungsweise dem Stempel 39 und der Druckplatte 42 gebildete Fixiereinrichtung betätigt werden, sodass die Stellung dauerhaft fixiert ist und die Aktoren 34 nicht weiter angetrieben werden müssen.As exemplified in Fig. 4, the roller holder 27 and, as a result, the roller 21 attached to it is laterally displaced relative to the frame holder 26, which is brought about by a corresponding actuation of the actuators 34 and the consequent force effect on the section 32. As soon as the desired position of the roller holder 27 relative to the frame holder 26 has been found, the position of the lamella elements 37; 38 or the stamp 39 and the pressure plate 42 formed fixing device are actuated so that the position is permanently fixed and the actuators 34 do not have to be driven any further.
Fig. 5 zeigt die Vorrichtung 20 mit der Grundplatte 28, dem Rahmenhalter 26, dem Walzenhalter 27 und den Aktoren 34 in perspektivischer Ansicht von vorne. Zwischen dem Hülsenkörper 29 des Rahmenhalters 26 und dem Walzenhalter 27, auf dessen nach vorne gerichteten Seite der halbschalenförmige Schnellverschluss 24 teilweise erkennbar ist, sind die vier in der Art von Druckschläuchen ausgebildeten Aktoren 34 angeordnet, die über Zuleitungen 48 mit Druckluft beaufschlagt werden können. Mittels der Druckplatte 42 können die nicht erkennbaren Lammellenelemente 37; 38 entspannt werden. Man erkennt die außerordentlich kompakte Bauweise der Vorrichtung 20, die aufgrund ihrer insgesamt rotationssymmetrischen Ausbildung (abgesehen von der Grundplatte 28) einen kleineren Durchmesser aufweist, als die Walze 21 selbst (siehe Fig. 2).5 shows the device 20 with the base plate 28, the frame holder 26, the roller holder 27 and the actuators 34 in a perspective view from the front. Between the sleeve body 29 of the frame holder 26 and the roller holder 27, on the forward side of which the half-shell-shaped quick-release fastener 24 is partially recognizable, the four actuators 34 designed in the manner of pressure hoses are arranged, which can be acted upon by compressed air via feed lines 48. The slat elements 37; 38 be relaxed. One recognizes the extremely compact design of the device 20, which due to its overall rotationally symmetrical design (apart from the base plate 28) has a smaller diameter than the roller 21 itself (see FIG. 2).
Fig. 6 zeigt eine zweite Ausführungsform 50 eines Aktors 50 für eine Vorrichtung 20 im Querschnitt. Der grundsätzliche Aufbau der Vorrichtung 20 mit Rahmenhalter 26, Walzenhalter 27 und einer Fixiereinrichtung zur Fixierung des Walzenhalters 27 relativ zum Walzenhalter 26 entspricht dem mit Fig. 2 beschriebenen Aufbau und muss deshalb nicht weiter erläutert werden. Zur Bildung des Aktors 50 wird im Spalt 33 eine zylinderförmige Membran 51, deren oberer und unterer Rand mit dem Innendurchmesser des Hülsenkörpers 29 verbunden ist (in Fig. 6 nicht dargestellt), angeordnet. Die Membran 51 wird in zudem in vier streifenförmigen Bereichen 52 mit dem Innendurchmesser des Hülsenkörpers 29 verbunden, beispielsweise festgeklebt, sodass im Ergebnis durch den Hülsenkörper 29 und die Membran 51 vier Druckkammern 53 gebildet werden, die gleichmäßig über den Umfang des Spalts 33 verteilt sind. Die Druckkammern 53 können jeweils über Druckeinlassöffnungen 54 mit Druckluft beaufschlagt werden, sodass abhängig vom jeweiligen Druck in den vier Druckkammern 53 eine resultierende Kraft auf den Abschnitt 32 des Walzenhalters 27 wirkt.6 shows a second embodiment 50 of an actuator 50 for a device 20 in cross section. The basic structure of the device 20 with frame holder 26, roller holder 27 and a fixing device for fixing the roller holder 27 relative to the roller holder 26 corresponds to the structure described with FIG. 2 and therefore does not need to be explained further. To form the actuator 50, a cylindrical membrane 51 is arranged in the gap 33, the upper and lower edges of which are connected to the inside diameter of the sleeve body 29 (not shown in FIG. 6). The membrane 51 is also connected in four strip-shaped areas 52 to the inside diameter of the sleeve body 29, for example glued, so that as a result, four pressure chambers 53 are created by the sleeve body 29 and the membrane 51 are formed, which are evenly distributed over the circumference of the gap 33. The pressure chambers 53 can each be pressurized with compressed air via pressure inlet openings 54, so that a resultant force acts on the section 32 of the roller holder 27 depending on the respective pressure in the four pressure chambers 53.
Auch hier ist eine Höhe h53 der Druckkammer 53 der Vorrichtung (20) in radialer Richtung der Walze 21 kleiner als eine Breite der Druckkammer 53 in axialer Richtung der Walze 21 und/oder eine Länge I53 der Druckkammer 53 in Umfangrichtung der Walze 21.Here, too, a height h53 of the pressure chamber 53 of the device (20) in the radial direction of the roller 21 is smaller than a width of the pressure chamber 53 in the axial direction of the roller 21 and / or a length I53 of the pressure chamber 53 in the circumferential direction of the roller 21.
Das Verhältnis von Breite b53 und/oder Länge I53 der Druckkammer 53 zur Höhe h53 der Druckkammer 53; ist größer als 3, insbesondere größer als 5. The ratio of width b53 and / or length I53 of the pressure chamber 53 to the height h53 of the pressure chamber 53; is greater than 3, in particular greater than 5.
BezugszeichenlisteLIST OF REFERENCE NUMBERS
01 Fixiereinrichtung01 fixing device
02 Grundkörper, Teil02 body, part
03 Deckel03 lid
04 Hülse04 sleeve
05 -05 -
06 Bolzen, Teil06 bolts, part
07 Befestigungsplatte07 mounting plate
08 Bewegungspfeil, Stelleinrichtung08 movement arrow, adjusting device
09 Lammellenelement (02)09 slat element (02)
10 -10 -
11 Lammellenelement (06)11 slat element (06)
12 Klemmeinrichtung12 clamping device
13 Anschlussöffnung13 connection opening
14 Druckkammer (12)14 pressure chamber (12)
15 Druckstempel (12)15 stamps (12)
16 Druckzylinder (12)16 impression cylinders (12)
17 Endanschlag17 end stop
18 -18 -
19 -19 -
20 Vorrichtung20 device
21 Walze, erste21 roller, first
22 Walze, zweite22 roller, second
23 Achse, Walzenachse23 axis, roller axis
24 Schnellverschluss24 quick release
25 -25 -
26 Rahmenhalter26 frame holder
27 Walzenhalter Grundplatte (26) Hülsenkörper (26) - Ausnehmung (26) Abschnitt (27) Spalt Aktor, Druckschlauch - . Druckkammer Lammellenelement (27) Lammellenelement (26) Stempel Stempelkopf Flansch (40) Druckplatte Federelement Druckanschluss - Druckkammer Befestigungsschraube Zuleitung - Aktor Membran Befestigungsabschnitt, Bereich Druckkammer Druckeinlassöffnung b36 Breite (36) h36 Höhe (36)27 roller holder Base plate (26) sleeve body (26) - recess (26) section (27) gap actuator, pressure hose -. Pressure chamber lamellar element (27) lamellar element (26) punch stamp head flange (40) pressure plate spring element pressure connection - pressure chamber fastening screw supply line - actuator membrane fastening section, area pressure chamber pressure inlet opening w36 width (36) h36 height (36)
I36 Länge (36) h53 Höhe (53)I36 length (36) h53 height (53)
I53 Länge (53) I53 length (53)

Claims

Ansprüche Expectations
1. Vorrichtung (20) zum Einstellen einer Walze (21 ) mit mindestens einem Aktor (34; 50), wobei der Aktor (34; 50) mindestens eine mit Druckmittel beaufschlagbare Druckkammer (36) aufweist, dadurch gekennzeichnet, dass in Umfangsrichtung der Walze (21) mehrere Druckkammern (36; 53) angeordnet sind.1. Device (20) for adjusting a roller (21) with at least one actuator (34; 50), the actuator (34; 50) having at least one pressure chamber (36) which can be pressurized with pressure medium, characterized in that in the circumferential direction of the roller (21) a plurality of pressure chambers (36; 53) are arranged.
2. Vorrichtung (20) zum Einstellen einer Walze (21 ) mit mindestens einem Aktor (34; 50), wobei der Aktor (34; 50) mindestens eine mit Druckmittel beaufschlagbare Druckkammer (36) aufweist, dadurch gekennzeichnet, dass der Aktor (50) zusammen von einer druckfesten Membran (51), die im Spalt an der Bauteilwandung des Walzenhalters (27) anliegt, und der Bauteilwandung des Rahmenhalters (26) dadurch gebildet wird, dass die Bauteilwandung des Rahmenhalters (26) und die Membran (51 ) unter Bildung zumindest einer Druckkammer (53) in Befestigungsabschnitten (52) druckfest miteinander verbunden sind.2. Device (20) for adjusting a roller (21) with at least one actuator (34; 50), wherein the actuator (34; 50) has at least one pressure chamber (36) that can be pressurized with pressure medium, characterized in that the actuator (50 ) together from a pressure-resistant membrane (51), which rests in the gap on the component wall of the roller holder (27), and the component wall of the frame holder (26) is formed in that the component wall of the frame holder (26) and the membrane (51) underneath Formation of at least one pressure chamber (53) in fastening sections (52) are connected to one another in a pressure-tight manner.
3. Vorrichtung (20) zum Einstellen einer Walze (21 ) mit mindestens einem Aktor (34; 50), wobei der Aktor (34; 50) mindestens eine mit Druckmittel beaufschlag bare Druckkammer (36) aufweist, dadurch gekennzeichnet, dass der Aktor (34) in der Art eines Druckschlauchs ausgebildet ist, dessen Wandung unter Bildung einer Druckkammer (36) im Spalt (33) zwischen Walzenhalter (27) und Rahmenhalter (26) angeordnet ist.3. Device (20) for adjusting a roller (21) with at least one actuator (34; 50), the actuator (34; 50) having at least one pressure chamber (36) that can be pressurized with pressure medium, characterized in that the actuator ( 34) is designed in the manner of a pressure hose, the wall of which is arranged in the gap (33) between the roller holder (27) and frame holder (26), forming a pressure chamber (36).
4. Vorrichtung (20) nach Anspruch 1 , 2 oder 3, dadurch gekennzeichnet, dass eine Höhe (h36; h53) der Druckkammer (36; 53) in radialer Richtung der Walze (21) kleiner ist als eine Breite (b36) der Druckkammer (36; 53) in axialer Richtung der Walze (21) und/oder eine Länge (I36; I53) der Druckkammer (36; 53) in Umfangsrichtung der Walze (21) ist. 4. The device (20) according to claim 1, 2 or 3, characterized in that a height (h36; h53) of the pressure chamber (36; 53) in the radial direction of the roller (21) is smaller than a width (b36) of the pressure chamber (36; 53) in the axial direction of the roller (21) and / or a length (I36; I53) of the pressure chamber (36; 53) in the circumferential direction of the roller (21).
5. Vorrichtung nach Anspruch 1 , 2 oder 3, dadurch gekennzeichnet, dass mindestens zwei Druckkammern unabhängig voneinander betätigbar sind.5. The device according to claim 1, 2 or 3, characterized in that at least two pressure chambers can be actuated independently of one another.
6. Vorrichtung nach Anspruch 1 , dadurch gekennzeichnet, dass die Walze (21) in einem Walzenhalter (27) angeordnet ist und dieser Walzenhalter (27) an einem Rahmenhalter (26) gelagert und diese Druckkammer (36) in einem Spalt (33) zwischen Walzenhalter (27) und Rahmenhalter (26) angeordnet ist.6. The device according to claim 1, characterized in that the roller (21) is arranged in a roller holder (27) and this roller holder (27) is mounted on a frame holder (26) and this pressure chamber (36) in a gap (33) between Roller holder (27) and frame holder (26) is arranged.
7. Vorrichtung (20) nach Anspruch 1 , 2 oder 3, dadurch gekennzeichnet, dass ein Verhältnis von Breite (b36) und/oder Länge (I36; I53) der Druckkammer (36; 53) zur Höhe (h36; h53) der Druckkammer (36; 53) größer als 3 ist.7. The device (20) according to claim 1, 2 or 3, characterized in that a ratio of width (b36) and / or length (I36; I53) of the pressure chamber (36; 53) to the height (h36; h53) of the pressure chamber (36; 53) is greater than 3.
8. Vorrichtung (20) nach Anspruch 1, 2 oder 3, dadurch gekennzeichnet, dass in Umfangsrichtung der Walze (21) mehrere in unterschiedliche Richtung wirkende Druckkammern (36; 53) angeordnet sind.8. The device (20) according to claim 1, 2 or 3, characterized in that a plurality of pressure chambers (36; 53) acting in different directions are arranged in the circumferential direction of the roller (21).
9. Vorrichtung (20) zum Einstellen einer Walze (21 ) mit mindestens einem Aktor (34; 50) und einer Fixiereinrichtung (01), dadurch gekennzeichnet, dass die Fixiereinrichtung (01) die Walze (21) in radialer Richtung fixierende Lamellenelemente (09; 11 ) aufweist.9. Device (20) for adjusting a roller (21) with at least one actuator (34; 50) and a fixing device (01), characterized in that the fixing device (01) fixes the roller (21) in the radial direction of lamella elements (09 ; 11) has.
10. Vorrichtung (20) nach Anspruch 9, dadurch gekennzeichnet, dass Reibflächen der Lamellenelemente (09; 11 ) im wesentlichen senkrecht zur Rotationsachse der Walze (21) angeordnet sind.10. The device (20) according to claim 9, characterized in that the friction surfaces of the lamella elements (09; 11) are arranged substantially perpendicular to the axis of rotation of the roller (21).
11. Vorrichtung (20) nach Anspruch 9, dadurch gekennzeichnet, dass die Fixiereinrichtung (01) sich in der Vorrichtung koaxial zur Längsachse der ersten Walze (21) erstreckt und entlang der Mittelachse der Vorrichtung verlaufend angeordnet ist. 11. The device (20) according to claim 9, characterized in that the fixing device (01) extends in the device coaxially to the longitudinal axis of the first roller (21) and is arranged running along the central axis of the device.
12. Vorrichtung (20) zum Einstellen des Anpreßdrucks zwischen einer verstellbar gelagerten ersten Walze (21) und zumindest einer zweiten Walze (22) in einer Druckmaschine, insbesondere in einer Rollenrotationsdruckmaschine, mit zumindest einem Aktor (34; 50), mit dem die erste Walze (21) mit einer einstellbaren Kraft in Richtung der zweiten Walze (22) gedrückt werden kann und einer Fixiereinrichtung (37, 38, 39, 40, 42, 43) zum Fixieren der ersten Walze (21) relativ zur zweiten Walze (22), wobei die erste Walze (21) in einem Walzenhalter (27) gehalten wird, der seinerseits verstellbar an einem Rahmenhalter (26) gelagert ist, dadurch gekennzeichnet, dass der Walzenhalter (27) einen Abschnitt (32) aufweist, der derart mit einer Ausnehmung (31) im Rahmenhalter (26) in Eingriff steht, dass zwischen der Ausnehmung (31 ) und dem Abschnitt (32) zumindest ein Spalt (33) gebildet wird, in dem der Aktor (34; 50) angeordnet ist, oder umgekehrt dass die Ausnehmung im Rahmenhalter und der darin eingreifende Abschnitt (31 ) am Walzenhalter (27) vorgesehen ist.12. Device (20) for adjusting the contact pressure between an adjustably mounted first roller (21) and at least one second roller (22) in a printing press, in particular in a web-fed rotary printing press, with at least one actuator (34; 50) with which the first Roller (21) can be pressed with an adjustable force in the direction of the second roller (22) and a fixing device (37, 38, 39, 40, 42, 43) for fixing the first roller (21) relative to the second roller (22) , The first roller (21) being held in a roller holder (27), which in turn is adjustably mounted on a frame holder (26), characterized in that the roller holder (27) has a section (32) which has a recess in this way (31) in the frame holder (26) is engaged so that at least one gap (33) is formed between the recess (31) and the section (32), in which the actuator (34; 50) is arranged, or vice versa that the Recess in the frame holder and the e engaging section (31) is provided on the roller holder (27).
13. Vorrichtung (20) nach Anspruch 12, dadurch gekennzeichnet, dass die Ausnehmung (31) und der darin eingreifende Abschnitt (32) am Walzenhalter (27) bzw. Rahmenhalter (26) jeweils rotationssymmetrisch ausgebildet sind und dazwischen ein umlaufender Spalt (33) gebildet wird.13. The device (20) according to claim 12, characterized in that the recess (31) and the portion (32) engaging therein on the roller holder (27) or frame holder (26) are each rotationally symmetrical and in between a circumferential gap (33) is formed.
14. Vorrichtung (20) nach Anspruch 12 oder 13, dadurch gekennzeichnet, dass sich die Ausnehmung (31 ) und der darin eingreifende Abschnitt (32) am Walzenhalter (27) bzw. Rahmenhalter (26) jeweils im wesentlichen koaxial entlang der Längsachse der ersten Walze (21) erstrecken.14. The device (20) according to claim 12 or 13, characterized in that the recess (31) and the portion (32) engaging therein on the roller holder (27) or frame holder (26) each essentially coaxially along the longitudinal axis of the first Extend roller (21).
15. Vorrichtung (20) nach einem der Ansprüche 12 bis 14, dadurch gekennzeichnet, dass der Spalt (33) zwischen Walzenhalter (27) und Rahmenhalter (26) bei koaxialer Ausrichtung von Walzenhalter (27) und Rahmenhalter (26) eine umlaufende Breite von circa 1mm bis 10mm, insbesondere von ca. 2mm, aufweist.15. The device (20) according to any one of claims 12 to 14, characterized in that the gap (33) between the roller holder (27) and frame holder (26) with coaxial Alignment of roller holder (27) and frame holder (26) has a circumferential width of approximately 1 mm to 10 mm, in particular of approximately 2 mm.
16. Vorrichtung (20) nach einem der Ansprüche 12 bis 15, dadurch gekennzeichnet, dass der größte Außendurchmesser des Walzenhalters (27) bzw. Rahmenhalters (26) zumindest geringfügig kleiner ist als der Außendurchmesser der ersten Walze (21).16. The device (20) according to any one of claims 12 to 15, characterized in that the largest outer diameter of the roller holder (27) or frame holder (26) is at least slightly smaller than the outer diameter of the first roller (21).
17. Vorrichtung (20) nach einem der Ansprüche 12 bis 16, dadurch gekennzeichnet, dass im Spalt (33) zwischen Walzenhalter (27) und Rahmenhalter (26) zumindest drei, insbesondere vier, Aktoren (34; 50) angeordnet sind, mit denen die erste Walze (21) in jeweils unterschiedliche Richtungen gedrückt werden kann.17. The device (20) according to any one of claims 12 to 16, characterized in that in the gap (33) between the roller holder (27) and frame holder (26) at least three, in particular four, actuators (34; 50) are arranged with which the first roller (21) can be pressed in different directions.
18. Vorrichtung (20) nach einem der Ansprüche 12 bis 17, dadurch gekennzeichnet, dass der Aktor (34; 50) in der Art zumindest eines mit einem Druckmedium beaufschlagbaren Druckkörpers ausgebildet ist.18. Device (20) according to one of claims 12 to 17, characterized in that the actuator (34; 50) is designed in the manner of at least one pressure body which can be acted upon with a pressure medium.
19. Vorrichtung (20) nach Anspruch 18, dadurch gekennzeichnet, dass als Druckmedium ein vorgespanntes Gas, insbesondere Druckluft, eingesetzt wird.19. The device (20) according to claim 18, characterized in that a prestressed gas, in particular compressed air, is used as the pressure medium.
20. Vorrichtung (20) nach Anspruch 18 oder 19, dadurch gekennzeichnet, dass der Aktor (34) in der Art eines Druckschlauchs ausgebildet ist, dessen Wandung unter Bildung einer Druckkammer (36) im Spalt (33) zwischen Walzenhalter (27) und Rahmenhalter (26) angeordnet ist.20. The device (20) according to claim 18 or 19, characterized in that the actuator (34) is designed in the manner of a pressure hose, the wall of which forms a pressure chamber (36) in the gap (33) between the roller holder (27) and frame holder (26) is arranged.
21. Vorrichtung (20) nach Anspruch 20, dadurch gekennzeichnet, dass vier Druckschläuche (34) mit jeweils gleichen Abstand zueinander über den Umfang des Spalts (33) zwischen Walzenhalter (27) und Rahmenhalter (26) verteilt angeordnet sind. 21. The device (20) according to claim 20, characterized in that four pressure hoses (34) with the same distance from one another are arranged distributed over the circumference of the gap (33) between the roller holder (27) and frame holder (26).
22. Vorrichtung (20) nach Anspruch 18 oder 19, dadurch gekennzeichnet, dass der Aktor (50) zusammen von einer druckfesten Membran (51), die im Spalt an der Bauteilwandung des Walzenhalters (27) anliegt, und der Bauteilwandung des Rahmenhalters (26) dadurch gebildet wird, dass die Bauteilwandung des Rahmenhalters (26) und die Membran (51) unter Bildung zumindest einer Druckkammer (53) in Befestigungsabschnitten (52) druckfest miteinander verbunden, beispielsweise verklebt, sind, wobei in der Bauteilwandung des Rahmenhalters (26) zumindest eine Druckeinlassöffnung (54) vorgesehen ist, oder umgekehrt das die Druckkammer von der Membran (51) und der Bauteilwandung des Rahmenhalters (26) gebildet wird.22. The device (20) according to claim 18 or 19, characterized in that the actuator (50) together of a pressure-resistant membrane (51), which rests in the gap on the component wall of the roller holder (27), and the component wall of the frame holder (26 ) is formed in that the component wall of the frame holder (26) and the membrane (51) are pressure-tightly connected to one another, for example glued, to form at least one pressure chamber (53) in fastening sections (52), wherein in the component wall of the frame holder (26) at least one pressure inlet opening (54) is provided, or vice versa that the pressure chamber is formed by the membrane (51) and the component wall of the frame holder (26).
23. Vorrichtung (20) nach Anspruch 22, dadurch gekennzeichnet, dass die Membran (51) im Spalt (33) umlaufend angeordnet und unter Bildung mehrerer, insbesondere von vier, Druckkammern (53) mit der Bauteilwandung des Rahmenhalters (26) oder des Walzenhalters verbunden ist.23. The device (20) according to claim 22, characterized in that the membrane (51) is arranged circumferentially in the gap (33) and with the formation of several, in particular four, pressure chambers (53) with the component wall of the frame holder (26) or the roller holder connected is.
24. Vorrichtung (20) nach einem der Ansprüche 12 bis 23, dadurch gekennzeichnet, dass am Walzenhalter (27) ein Schnellverschluss (24) zur lösbaren Befestigung der ersten Walze (21 ) vorgesehen ist.24. The device (20) according to any one of claims 12 to 23, characterized in that a quick-release fastener (24) is provided on the roller holder (27) for releasably fastening the first roller (21).
25. Vorrichtung (20) nach einem der Ansprüche 12 bis 24, dadurch gekennzeichnet, dass der Aktor (34; 50) von einem Leitstand ferneinstellbar und/oder an der Vorrichtung (20) einzeleinstellbar ist.25. The device (20) according to one of claims 12 to 24, characterized in that the actuator (34; 50) is remotely adjustable from a control station and / or individually adjustable on the device (20).
26. Vorrichtung (20) nach einem der Ansprüche 12 bis 25, dadurch gekennzeichnet, dass der Rahmenhalter (26) auf einer relativ zur zweiten Walze (22) verstellbaren An- bzw. Abstellvorrichtung befestigt ist. 26. The device (20) according to any one of claims 12 to 25, characterized in that the frame holder (26) is fastened on a positioning device which is adjustable relative to the second roller (22).
27. Vorrichtung (20) nach einem der Ansprüche 12 bis 25, dadurch gekennzeichnet, dass eine Fixiereinrichtung (01) vorgesehen ist.27. The device (20) according to any one of claims 12 to 25, characterized in that a fixing device (01) is provided.
28. Vorrichtung (20) nach Anspruch 27, dadurch gekennzeichnet, dass die Fixiereinrichtung (01) sich in der Vorrichtung koaxial zur Längsachse der ersten Walze (21 ) erstreckt und entlang der Mittelachse der Vorrichtung verlaufend angeordnet ist.28. The device (20) according to claim 27, characterized in that the fixing device (01) in the device extends coaxially to the longitudinal axis of the first roller (21) and is arranged running along the central axis of the device.
29. Vorrichtung (20) nach Anspruch 27, dadurch gekennzeichnet, dass die Fixiereinrichtung (01) zumindest drei hintereinander angeordnete Lamellenelemente (09; 11) aufweist, dass Reibflächen der Lamellenelemente (09; 11) im wesentlichen senkrecht zur Rotationsachse der Walze (21) angeordnet sind. 29. The device (20) according to claim 27, characterized in that the fixing device (01) has at least three lamella elements (09; 11) arranged one behind the other, that friction surfaces of the lamella elements (09; 11) are substantially perpendicular to the axis of rotation of the roller (21). are arranged.
EP02708153A 2001-03-20 2002-01-19 Devices for adjusting the contact pressure of an adjustably mounted cylinder Expired - Lifetime EP1379385B1 (en)

Priority Applications (6)

Application Number Priority Date Filing Date Title
EP03104016A EP1393901B1 (en) 2001-03-20 2002-01-19 Device for adjusting the contact pressure of an adjustably mounted cylinder
EP03104011A EP1400354B1 (en) 2001-03-20 2002-01-19 Devices for adjusting the contact pressure of an adjustably mounted cylinder
EP03104015A EP1437221B1 (en) 2001-03-20 2002-01-19 Device for adjusting the contact pressure of an adjustably mounted cylinder
EP03104012A EP1400355B1 (en) 2001-03-20 2002-01-19 Devices for adjusting the contact pressure of an adjustably mounted cylinder
EP03104013A EP1437219B1 (en) 2001-03-20 2002-01-19 Devices for adjusting the contact pressure of an adjustably mounted cylinder
EP03104014A EP1437220B1 (en) 2001-03-20 2002-01-19 Device for adjusting the contact pressure of an adjustably mounted cylinder

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
DE10113313 2001-03-20
DE10113313A DE10113313C2 (en) 2001-03-20 2001-03-20 Device for adjusting the contact pressure of an adjustable roller
PCT/DE2002/000167 WO2002074542A2 (en) 2001-03-20 2002-01-19 Devices for adjusting the contact pressure of an adjustably mounted cylinder

Related Child Applications (6)

Application Number Title Priority Date Filing Date
EP03104012A Division EP1400355B1 (en) 2001-03-20 2002-01-19 Devices for adjusting the contact pressure of an adjustably mounted cylinder
EP03104013A Division EP1437219B1 (en) 2001-03-20 2002-01-19 Devices for adjusting the contact pressure of an adjustably mounted cylinder
EP03104011A Division EP1400354B1 (en) 2001-03-20 2002-01-19 Devices for adjusting the contact pressure of an adjustably mounted cylinder
EP03104014A Division EP1437220B1 (en) 2001-03-20 2002-01-19 Device for adjusting the contact pressure of an adjustably mounted cylinder
EP03104015A Division EP1437221B1 (en) 2001-03-20 2002-01-19 Device for adjusting the contact pressure of an adjustably mounted cylinder
EP03104016A Division EP1393901B1 (en) 2001-03-20 2002-01-19 Device for adjusting the contact pressure of an adjustably mounted cylinder

Publications (2)

Publication Number Publication Date
EP1379385A2 true EP1379385A2 (en) 2004-01-14
EP1379385B1 EP1379385B1 (en) 2008-10-29

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EP03104012A Expired - Lifetime EP1400355B1 (en) 2001-03-20 2002-01-19 Devices for adjusting the contact pressure of an adjustably mounted cylinder
EP02708153A Expired - Lifetime EP1379385B1 (en) 2001-03-20 2002-01-19 Devices for adjusting the contact pressure of an adjustably mounted cylinder
EP03104013A Expired - Lifetime EP1437219B1 (en) 2001-03-20 2002-01-19 Devices for adjusting the contact pressure of an adjustably mounted cylinder
EP03104014A Expired - Lifetime EP1437220B1 (en) 2001-03-20 2002-01-19 Device for adjusting the contact pressure of an adjustably mounted cylinder
EP03104015A Expired - Lifetime EP1437221B1 (en) 2001-03-20 2002-01-19 Device for adjusting the contact pressure of an adjustably mounted cylinder
EP03104016A Expired - Lifetime EP1393901B1 (en) 2001-03-20 2002-01-19 Device for adjusting the contact pressure of an adjustably mounted cylinder
EP03104011A Expired - Lifetime EP1400354B1 (en) 2001-03-20 2002-01-19 Devices for adjusting the contact pressure of an adjustably mounted cylinder

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EP03104013A Expired - Lifetime EP1437219B1 (en) 2001-03-20 2002-01-19 Devices for adjusting the contact pressure of an adjustably mounted cylinder
EP03104014A Expired - Lifetime EP1437220B1 (en) 2001-03-20 2002-01-19 Device for adjusting the contact pressure of an adjustably mounted cylinder
EP03104015A Expired - Lifetime EP1437221B1 (en) 2001-03-20 2002-01-19 Device for adjusting the contact pressure of an adjustably mounted cylinder
EP03104016A Expired - Lifetime EP1393901B1 (en) 2001-03-20 2002-01-19 Device for adjusting the contact pressure of an adjustably mounted cylinder
EP03104011A Expired - Lifetime EP1400354B1 (en) 2001-03-20 2002-01-19 Devices for adjusting the contact pressure of an adjustably mounted cylinder

Country Status (14)

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US (2) US7021209B2 (en)
EP (7) EP1400355B1 (en)
JP (2) JP4005509B2 (en)
CN (3) CN1817644A (en)
AT (7) ATE415278T1 (en)
BR (1) BR0208189B1 (en)
CA (2) CA2533229C (en)
DE (8) DE10113313C2 (en)
DK (3) DK1379385T3 (en)
ES (5) ES2315459T3 (en)
HK (1) HK1061827A1 (en)
PT (3) PT1379385E (en)
RU (1) RU2263582C2 (en)
WO (1) WO2002074542A2 (en)

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ES2360609T3 (en) 2011-06-07
EP1437221A3 (en) 2007-05-09
EP1393901B1 (en) 2011-04-20
EP1437219B1 (en) 2011-04-20
CN1498165A (en) 2004-05-19
ES2315459T3 (en) 2009-04-01
DE10152020A1 (en) 2002-10-17
EP1437221A2 (en) 2004-07-14
ATE508868T1 (en) 2011-05-15
BR0208189B1 (en) 2011-05-31
HK1061827A1 (en) 2004-10-08
ATE413966T1 (en) 2008-11-15
DK1379385T3 (en) 2009-01-26
CN1817644A (en) 2006-08-16
CA2533229A1 (en) 2002-09-26
DE50213009D1 (en) 2008-12-24
CN1820945A (en) 2006-08-23
DE50213065D1 (en) 2009-01-08
WO2002074542A2 (en) 2002-09-26
ATE509765T1 (en) 2011-06-15
ES2315460T3 (en) 2009-04-01
DE50212961D1 (en) 2008-12-11
DE50215012D1 (en) 2011-06-01
US7021209B2 (en) 2006-04-04
EP1400354A2 (en) 2004-03-24
EP1437219A3 (en) 2007-05-02
DE10113313C2 (en) 2003-06-05
CA2533229C (en) 2009-04-14
CN1238188C (en) 2006-01-25
DE10152021A1 (en) 2002-10-17
PT1437221E (en) 2008-12-18
DE50215014D1 (en) 2011-06-01
EP1400354B1 (en) 2008-11-12
ATE506188T1 (en) 2011-05-15
EP1437220A2 (en) 2004-07-14
BR0208189A (en) 2004-03-02
WO2002074542A3 (en) 2003-01-03
PT1400354E (en) 2008-12-26
DE10113313A1 (en) 2002-09-26
EP1400355A2 (en) 2004-03-24
RU2003130958A (en) 2005-04-27
PT1379385E (en) 2008-11-14
CA2441848C (en) 2007-05-22
EP1437221B1 (en) 2008-11-26
ES2362088T3 (en) 2011-06-28
EP1400355B1 (en) 2011-05-18
ES2312548T3 (en) 2009-03-01
CN100484761C (en) 2009-05-06
EP1437220B1 (en) 2011-05-11
US20040112232A1 (en) 2004-06-17
CA2441848A1 (en) 2002-09-26
WO2002074542B1 (en) 2003-03-06
EP1379385B1 (en) 2008-10-29
ATE415278T1 (en) 2008-12-15
EP1400355A3 (en) 2007-05-23
EP1437220A3 (en) 2007-05-02
JP2006214591A (en) 2006-08-17
EP1393901A2 (en) 2004-03-03
EP1437219A2 (en) 2004-07-14
ATE506187T1 (en) 2011-05-15
US7258065B2 (en) 2007-08-21
DK1400354T3 (en) 2009-02-23
DK1437221T3 (en) 2009-03-16
EP1393901A3 (en) 2007-05-02
DE10152020C2 (en) 2003-05-08
DE10152021C2 (en) 2003-05-08
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JP4005509B2 (en) 2007-11-07
US20050263019A1 (en) 2005-12-01
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ATE412515T1 (en) 2008-11-15
JP2004523393A (en) 2004-08-05

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