EP1761345B1 - Device for impinging the guide surfaces of bearing inserts guided in stand windows of roll stands - Google Patents

Device for impinging the guide surfaces of bearing inserts guided in stand windows of roll stands Download PDF

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Publication number
EP1761345B1
EP1761345B1 EP06754225A EP06754225A EP1761345B1 EP 1761345 B1 EP1761345 B1 EP 1761345B1 EP 06754225 A EP06754225 A EP 06754225A EP 06754225 A EP06754225 A EP 06754225A EP 1761345 B1 EP1761345 B1 EP 1761345B1
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EP
European Patent Office
Prior art keywords
roll
guide surfaces
piston
measuring
bearing
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.)
Active
Application number
EP06754225A
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German (de)
French (fr)
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EP1761345A1 (en
Inventor
Peter Brandenfels
Frank Benfer
Matthias Kipping
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.)
SMS Siemag AG
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SMS Demag AG
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Publication of EP1761345A1 publication Critical patent/EP1761345A1/en
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21BROLLING OF METAL
    • B21B31/00Rolling stand structures; Mounting, adjusting, or interchanging rolls, roll mountings, or stand frames
    • B21B31/02Rolling stand frames or housings; Roll mountings ; Roll chocks
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21BROLLING OF METAL
    • B21B31/00Rolling stand structures; Mounting, adjusting, or interchanging rolls, roll mountings, or stand frames
    • B21B31/16Adjusting or positioning rolls
    • B21B31/20Adjusting or positioning rolls by moving rolls perpendicularly to roll axis
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21BROLLING OF METAL
    • B21B31/00Rolling stand structures; Mounting, adjusting, or interchanging rolls, roll mountings, or stand frames
    • B21B31/16Adjusting or positioning rolls
    • B21B31/20Adjusting or positioning rolls by moving rolls perpendicularly to roll axis
    • B21B31/32Adjusting or positioning rolls by moving rolls perpendicularly to roll axis by liquid pressure, e.g. hydromechanical adjusting
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21BROLLING OF METAL
    • B21B37/00Control devices or methods specially adapted for metal-rolling mills or the work produced thereby
    • B21B37/58Roll-force control; Roll-gap control
    • B21B37/62Roll-force control; Roll-gap control by control of a hydraulic adjusting device
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21BROLLING OF METAL
    • B21B38/00Methods or devices for measuring, detecting or monitoring specially adapted for metal-rolling mills, e.g. position detection, inspection of the product

Definitions

  • the invention relates to a device for acting on the guide surfaces of, guided in the stator windows of rolling stands bearing chocks with auflegbaren on the guide surfaces printing plates, which are acted upon by arranged in the rolling mill stands hydraulic piston-cylinder units.
  • Devices of this kind are for example off EP-A 1 036 605 and EP-A 1 281 449 known, in which the hydraulic piston-cylinder units are arranged in recesses of the roll stand, and the respective cylinder piston carries on its, the stator window and the respective lateral guide surface of the bearing chocks facing end face a pressure plate.
  • the invention has for its object to eliminate this, affecting the rolling process disadvantages.
  • This object is achieved in that the hydraulic cylinders are each assigned control devices which can be controlled by pressure and displacement measuring devices. These arrangements may operate such that the piston, regardless of the force acting on it, maintains a predetermined position or so as to yield at a certain force acting on the piston, and approaches another particular position; they can also work so that the bearing insert is pressed with a certain force to a fixed stand window side.
  • the Weggeber then shows no changes. If the piston of the cylinder is then driven by a predetermined amount in the opposite direction, so there is a defined game of bearing chocks in the stator window.
  • This type of clearance adjustment can compensate for the manufacturing tolerances of the different bearing chocks, the wear and the St Seinschnürung due to the expected rolling forces. By setting an optimal game no pressure forces of the piston and no frictional forces are generated, which negatively affect the controllability of the process.
  • the position of the bearing chocks can be determined to a selected level by pressing and simultaneously measuring the driven piston stroke on the drive side and on the operating side of the rollers. If this distance measurement compared with previously stored distance measurements, then the wear can be determine the stud windows and their components. If the piston is used as described so that there are two pistons per roller and they press over the bearing chocks on a fixed surface, so that the setting of the rollers can be determined. By evaluating the measured values, the position of all rolls can be determined among each other. If a piston is provided for each bearing chock on each side, the inlet and the outlet side and the drive and operating side, the rollers can be selectively interlocked against each other via this path measurement. So z. B.
  • the upper work roll and the upper support roller are placed parallel to each other and compared to the lower work roll and the lower support roller, which are placed parallel to each other are entangled.
  • This setting of the upper rolls to the lower rolls can then be used to influence profile and flatness.
  • the position of the rollers can be precisely positioned.
  • FIG. 1 can be seen in the stator window SF, the bearing chuck LS for the horizontal roller between the two uprights ST1 and ST2 a rolling mill out.
  • the left stand spar ST1 is a piston-cylinder unit which has a guide cylinder FZ with a guided therein piston K with piston rod KS.
  • the piston rod KS carries at one end a guided in the left stand spar ST1 pressure plate DP.
  • Piston K and Piston rod KS have centered on a recess AS, in which a, arranged on the outer rear wall of the guide cylinder FZ odometer WM projects.
  • On both sides of the piston K open into the guide cylinder FZ hydraulic pressure lines HD, which is associated with a pressure measuring device, not shown.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Control Of Metal Rolling (AREA)
  • Force Measurement Appropriate To Specific Purposes (AREA)
  • Rolling Contact Bearings (AREA)
  • Bearings For Parts Moving Linearly (AREA)
  • Rolls And Other Rotary Bodies (AREA)
  • Lining Or Joining Of Plastics Or The Like (AREA)
  • Registering, Tensioning, Guiding Webs, And Rollers Therefor (AREA)
  • Geophysics And Detection Of Objects (AREA)
  • Testing Of Devices, Machine Parts, Or Other Structures Thereof (AREA)

Abstract

A device for loading the guide surfaces of bearing chocks (LS) supported in the housing windows (SF) of rolling stands with pressure plates (DP) that can be placed on the guide surfaces and that can be loaded by a hydraulic piston (K) supported in the rolling stand housings (ST), wherein devices for measuring the pressure and devices (WM) for measuring the displacement of the piston are assigned to the hydraulic piston (K), and wherein the frictional force is eliminated by adjusting well-defined clearances between the bearing chocks (LS) and the guide surfaces.

Description

Die Erfindung betrifft eine Vorrichtung zur Beaufschlagung der Führungsflächen von, in den Ständerfenstern von Walzgerüsten geführten Lagereinbaustücken mit, auf die Führungsflächen auflegbaren Druckplatten, die von in den Walzgerüstständern angeordneten Hydraulik-Kolbenzylinder-Aggregaten beaufschlagt sind. Vorrichtungen dieser Art sind zum Beispiel aus EP-A 1 036 605 und EP-A 1 281 449 bekannt, bei denen die Hydraulik-Kolbenzylinder-Aggregate in Ausnehmungen des Walzgerüstständers angeordnet sind, und der jeweilige Zylinder-Kolben an seiner, dem Ständerfenster und der jeweiligen seitlichen Führungsfläche der Lagereinbaustücke zugewandten Stirnseite eine Druckplatte trägt. Mit dieser Vorrichtung wird die Möglichkeit geschaffen, durch Änderung der hydraulischen Druckbeaufschlagung des Kolbens definierte Anpresskräfte und damit Reibkräfte an den Lagereinbaustücken unter Überbrückung des Betriebsspiels zu erzeugen, d.h. definierte Anpress- und Reibkräfte, unabhängig von den walztechnischen Bedingungen vorzugeben. Wie in der genannten EP-A 1 036 605 beschrieben, entstehen durch die Andruckkräfte Reibkräfte, welche die gleiche Wirklinie wie die Walzkraft aufweisen. Auch wenn diese konstant gehalten werden, ist nicht gewährleistet, dass auch die Reibkräfte konstant bleiben, weil sich der Reibungskoeffizient zwischen den Anlageflächen der Lagereinbaustücke und des Ständerfensters aufgrund von Veränderungen der Oberflächenbeschaffenheit ändert. Die Oberfläche der Anlagenflächen wird durch Korrosion, Kühlwasser oder andere Abrassivstoffe rauer. Der Reibungskoeffizient steigt an und damit auch die Reibkräfte T, die dadurch nur ungenau bestimmbar sind. Unabhängig davon, ob die Reibkräfte bestimmbar sind, oder nicht, beeinträchtigen sie die Steuer- und Regelbarkeit der Walzgerüste. Infolge dessen ist die direkt im Walzspalt wirkende Walzkraft nicht genau bestimmbar. Aber nur aus dieser direkt im Walzspalt wirksamen Kraft kann nach der Dickenregelungsgleichung die aktuelle Banddicke im Walzspalt berechnet werden. Infolge dessen sind die Band-Dicken- und Band-Planheitstoleranzen schwierig einzuhalten. Mit der konstruktiven Lösung nach der genannten Druckschrift lässt sich auch nicht feststellen, wo sich die Mittelebenen der Lagereinbaustücke im Ständerfenster mit Bezug auf eine fixe Ebene befinden und wie sich die Lage der Mittelebenen zu dieser fixen Ebene verändert. Dieser Mangel führt auch dazu, dass ein unbeabsichtigtes Schränken der Walzen gegeneinander nicht feststellt werden kann.The invention relates to a device for acting on the guide surfaces of, guided in the stator windows of rolling stands bearing chocks with auflegbaren on the guide surfaces printing plates, which are acted upon by arranged in the rolling mill stands hydraulic piston-cylinder units. Devices of this kind are for example off EP-A 1 036 605 and EP-A 1 281 449 known, in which the hydraulic piston-cylinder units are arranged in recesses of the roll stand, and the respective cylinder piston carries on its, the stator window and the respective lateral guide surface of the bearing chocks facing end face a pressure plate. With this device, the possibility is created to produce by changing the hydraulic pressure of the piston defined contact forces and thus frictional forces on the bearing chocks while bridging the operating clearance, ie defined Anpress- and friction forces, regardless of the rolling technical conditions. As in the mentioned EP-A 1 036 605 described, caused by the Andruckkräfte frictional forces, which have the same line of action as the rolling force. Even if they are kept constant, it is not guaranteed that the frictional forces remain constant because the coefficient of friction between the bearing surfaces of the bearing chocks and the stator window changes due to changes in the surface condition. The surface of the plant surfaces becomes rougher due to corrosion, cooling water or other abrasive substances. The coefficient of friction increases and thus also the frictional forces T, which are therefore only vaguely determinable. Regardless of whether the friction forces are determinable or not, they affect the controllability of the rolling stands. As a result, the rolling force acting directly in the nip can not be accurately determined. But only from this directly effective in the nip force can according to the thickness control equation the actual strip thickness in the roll gap can be calculated. As a result, the strip thickness and strip flatness tolerances are difficult to maintain. With the constructive solution according to the cited document can also not determine where the center planes of the bearing chocks in the stator window with respect to a fixed plane and how the position of the center planes changed to this fixed plane. This lack also leads to the fact that unintentional locking of the rollers against each other can not be determined.

Der Erfindung liegt die Aufgabe zugrunde, diese, den Walzprozeß beeinträchtigenden Nachteile zu beseitigen. Diese Aufgabe wird dadurch gelöst, dass dem Hydraulikzylinder jeweils, von Regeleinrichtungen steuerbare Druck- und Wegmesseinrichtungen zugeordnet werden. Diese Regelungen können derart arbeiten, dass der Kolben unabhängig von der auf ihn wirkenden Kraft eine vorgegebene Position einhält oder so, dass er bei einer bestimmten, auf den Kolben wirkenden Kraft ausweicht, und eine andere bestimmte Position anfährt; sie können auch so arbeiten, dass das Lagereinbaustück mit einer bestimmten Kraft an eine fixe Ständerfensterseite angedrückt wird. Der Weggeber zeigt dann keine Veränderungen mehr an. Wird der Kolben des Zylinders dann um einen vorgegebenen Betrag in die entgegengesetzte Richtung gefahren, so entsteht ein definiertes Spiel der Lagereinbaustücke im Ständerfenster. Diese Art der Spieleinstellung kann die Fertigungstolleranzen der unterschiedlichen Lagereinbaustücke, den Verschleiß und die Ständereinschnürung aufgrund der zu erwartenden Walzkräfte kompensieren. Durch das Einstellen eines optimalen Spiels wirken keine Andruckkräfte des Kolbens und es werden keine Reibkräfte erzeugt, welche die Regelbarkeit des Prozesses negativ beeinflussen.The invention has for its object to eliminate this, affecting the rolling process disadvantages. This object is achieved in that the hydraulic cylinders are each assigned control devices which can be controlled by pressure and displacement measuring devices. These arrangements may operate such that the piston, regardless of the force acting on it, maintains a predetermined position or so as to yield at a certain force acting on the piston, and approaches another particular position; they can also work so that the bearing insert is pressed with a certain force to a fixed stand window side. The Weggeber then shows no changes. If the piston of the cylinder is then driven by a predetermined amount in the opposite direction, so there is a defined game of bearing chocks in the stator window. This type of clearance adjustment can compensate for the manufacturing tolerances of the different bearing chocks, the wear and the Ständereinschnürung due to the expected rolling forces. By setting an optimal game no pressure forces of the piston and no frictional forces are generated, which negatively affect the controllability of the process.

Bei bekannter Lage der Ständerfensterseiten kann durch das Andrücken und das gleichzeitige Messen des gefahrenen Kolbenhubs auf der Antriebsseite sowie auf der Bedienungsseite der Walzen die Lage der Lagereinbaustücke zu einer gewählten Ebene bestimmt werden. Wird diese Wegmessung mit vorher gespeicherten Wegmessungen verglichen, dann lässt sich der Verschleiß an den Ständerfenstern und deren Einbauteilen ermitteln. Wird der Kolben wie beschrieben so eingesetzt, dass pro Walze zwei Kolben vorhanden sind und diese über die Lagereinbaustücke auf eine fixe Fläche drücken, lässt sich damit die Schränkung der Walzen ermitteln. Durch die Auswertung der Messwerte kann dabei die Lage aller Walzen untereinander bestimmt werden. Wenn für jedes Lagereinbaustück auf jeder Seite, der Einlauf- und der Auslaufseite sowie der Antriebs- und Bedienungsseite ein Kolben vorgesehen ist, können über diese Wegemessung die Walzen gezielt gegeneinander verschränkt werden. So können z. B. die obere Arbeitswalze und die obere Stützwalze parallel zueinander gestellt werden und gegenüber der unteren Arbeitswalze und der unteren Stützwalze, die für sich parallel zueinander gestellt sind verschränkt werden. Diese Schränkung der oberen Walzen zu den unteren Walzen kann dann zur Beeinflussung von Profil und Planheit genutzt werden. Mit Hilfe dieser integrierten Wegmessung, die unmittelbar in oder an den bewegten Bauteilen misst, lässt sich die Lage der Walzen genau positionieren.In a known position of the stator window sides, the position of the bearing chocks can be determined to a selected level by pressing and simultaneously measuring the driven piston stroke on the drive side and on the operating side of the rollers. If this distance measurement compared with previously stored distance measurements, then the wear can be determine the stud windows and their components. If the piston is used as described so that there are two pistons per roller and they press over the bearing chocks on a fixed surface, so that the setting of the rollers can be determined. By evaluating the measured values, the position of all rolls can be determined among each other. If a piston is provided for each bearing chock on each side, the inlet and the outlet side and the drive and operating side, the rollers can be selectively interlocked against each other via this path measurement. So z. B. the upper work roll and the upper support roller are placed parallel to each other and compared to the lower work roll and the lower support roller, which are placed parallel to each other are entangled. This setting of the upper rolls to the lower rolls can then be used to influence profile and flatness. With the aid of this integrated displacement measurement, which measures directly in or on the moving components, the position of the rollers can be precisely positioned.

Die Erfindung wird anhand der in der Zeichnung dargestellten Ausführungsbeispielen näher erläutert. In der Zeichnung zeigen:

Figur 1
einen Teilschnitt durch ein Walzgerüst, von der Seite gesehen in schematischer Darstellung und
Figur 2
ein Teilschnitt gemäß Figur 1 durch ein anderes Walzgerüst.
Figur 3
ein Regelschema.
The invention will be explained in more detail with reference to the embodiments illustrated in the drawings. In the drawing show:
FIG. 1
a partial section through a roll stand, seen from the side in a schematic representation and
FIG. 2
a partial section according to FIG. 1 through another rolling stand.
FIG. 3
a rule scheme.

Wie aus Figur 1 zu ersehen, ist im Ständerfenster SF, zwischen den beiden Ständerholmen ST1 und ST2 eines Walzgerüstes das Lagereinbaustück LS für die Horizontalwalze geführt. In dem linken Ständerholm ST1 befindet sich ein Kolbenzylinderaggregat, das einen Führungszylinder FZ mit einem darin geführten Kolben K mit Kolbenstange KS aufweist. Die Kolbenstange KS trägt stimseitig eine, im linken Ständerholm ST1 geführte Druckplatte DP. Kolben K und Kolbenstange KS weisen mittig eine Ausnehmung AS auf, in die ein, an der äußeren Rückwand des Führungszylinders FZ angeordneter Wegmesser WM kragt. Beiderseits des Kolbens K münden in den Führungszylinder FZ hydraulische Druckleitungen HD, denen eine nicht dargestellte Druckmesseinrichtung zugeordnet ist.How out FIG. 1 can be seen in the stator window SF, the bearing chuck LS for the horizontal roller between the two uprights ST1 and ST2 a rolling mill out. In the left stand spar ST1 is a piston-cylinder unit which has a guide cylinder FZ with a guided therein piston K with piston rod KS. The piston rod KS carries at one end a guided in the left stand spar ST1 pressure plate DP. Piston K and Piston rod KS have centered on a recess AS, in which a, arranged on the outer rear wall of the guide cylinder FZ odometer WM projects. On both sides of the piston K open into the guide cylinder FZ hydraulic pressure lines HD, which is associated with a pressure measuring device, not shown.

Bei der Ausbildung nach Figur 2 sind bei einem Vier-Walzengerüst mit horizontalen Stützwalzen SW1 und SW2, diesen zugeordnete Arbeitswalzen AW1 und AW2 beiderseits der Walzen in beiden Ständerholmen ST1 und ST2 Führungszylinder FZ1, FZ2, FZ3, FZ4, FZ5, FZ6, FZ7 und FZ8 angeordnet, deren Ausbildung dem Führungszylinder FZ nach Figur 1 entspricht. Alle diese Führungszylinder weisen Kolben K, Kolbenstangen KS und Wegmesser WM auf und sind über nicht dargestellte Druckleitungen, die den Druckleitungen HD nach Figur 1 entsprechen, druck- und positionsregelbar. Zwischen der Druckplatte DP1 und DP2 und Lagereinbaustück LS1 sowie Druckplatten DP7, DP8 und Lagereinbaustück LS4 ist ein Spielspalt SP vorgesehen.In training after FIG. 2 In a four-roller stand with horizontal support rollers SW1 and SW2, these associated work rolls AW1 and AW2 on both sides of the rollers in two stand spars ST1 and ST2 guide cylinder FZ1, FZ2, FZ3, FZ4, FZ5, FZ6, FZ7 and FZ8 arranged whose training the guide cylinder FC after FIG. 1 equivalent. All of these guide cylinder have piston K, piston rods KS and odometer WM and are not shown pressure lines, the pressure lines HD after FIG. 1 correspond, pressure and position adjustable. Between the pressure plate DP1 and DP2 and bearing chuck LS1 and pressure plates DP7, DP8 and bearing chuck LS4 a clearance gap SP is provided.

Mit dem Regelschema nach Figur 3 wird jeder Zylinder mit einem Ventil verfahren, bis er den vorgegebenen Positionssollwert erreicht hat. Wird während des Verfahrens das einstellbare Kraftlimit erreicht, wird das Verfahren unterbrochen.With the control scheme FIG. 3 Each cylinder is moved with a valve until it has reached the specified position setpoint. If the adjustable force limit is reached during the procedure, the process is interrupted.

Die Walzgerüstausbildungen nach den beiden Figuren 1 und 2 mit Regelungen nach Figur 3 erlauben es, wie bereits dargelegt über das Andrücken der Druckplatten und Messen des jeweils gefahrenen Hubs in ausgewählten Gerüstabschnitten und Speichervergleich der gewonnenen Messwerte, die Lage aller Walzen des Gerüstes zueinander zu bestimmten und auszuwerten.The rolling mill trainings after the two FIGS. 1 and 2 with regulations FIG. 3 As already explained, it is possible to determine and evaluate the position of all the rolls of the framework relative to each other via the pressing of the printing plates and measuring the stroke traveled in selected scaffold sections and comparison of the stored measured values.

BezugszeichenverzeichnisReference numeral Directory

SFSF
Ständerfensterhousing window
ST1ST1
Ständerholm (links)Stand spar (left)
ST2ST2
Ständerholm (rechts)Stand spar (right)
LSLS
LagereinbaustückBearing chock
HWHW
Horizontalwalzenhorizontal rolls
FZFZ
Führungszylinderguide cylinder
KK
Kolbenpiston
KSKS
Kolbenstangepiston rod
DPDP
Druckplatteprinting plate
ASAS
Ausnehmungrecess
WMWM
Wegmesserodometer
ESIT
einstellbares Spieladjustable game
HDHD
(hydraulische) Druckleitungen(hydraulic) pressure pipes
SW1SW1
Stützwalzesupporting roll
SW2SW2
Stützwalzesupporting roll
AW1AW1
ArbeitswalzeStripper
AW2AW2
ArbeitswalzeStripper
LS1LS1
LagereinbaustückBearing chock
LS2LS2
LagereinbaustückBearing chock
LS3LS3
LagereinbaustückBearing chock
LS4LS4
LagereinbaustückBearing chock
FZ1FZ1
Führungszylinderguide cylinder
FZ2FZ2
Führungszylinderguide cylinder
FZ3FZ3
Führungszylinderguide cylinder
FZ4FZ4
Führungszylinderguide cylinder
FZ5FZ5
Führungszylinderguide cylinder
FZ6FZ6
Führungszylinderguide cylinder
FZ7FZ7
Führungszylinderguide cylinder
FZ8FZ8
Führungszylinderguide cylinder
DP1DP1
Druckplatteprinting plate
DP2DP2
Druckplatteprinting plate
DP3DP3
Druckplatteprinting plate
DP4DP4
Druckplatteprinting plate
DP5DP5
Druckplatteprinting plate
DP6DP6
Druckplatteprinting plate
DP7DP7
Druckplatteprinting plate
DP8DP8
Druckplatteprinting plate
SPSP
Spielspaltgame gap

Claims (4)

  1. Device for loading guide surfaces of bearing chocks (LS, LS1, LS2, LS3, LS4), which are guided in the housing apertures (SF) of roll stands, with pressure plates (DP) which can be placed on the guide surfaces and loaded by hydraulic pistons (K) guided in the roll stand housings (ST1, ST2), characterised by pressure-measuring and travel-measuring devices (WM) associated with the hydraulic piston (K), the travel-measuring device detecting the travel of the piston.
  2. Working method for operating the device according to claim 1, characterised in that the friction force is eliminated by setting defined plays between the bearing chocks (LS, LS1, LS2, LS3, LS4) and the guide surfaces.
  3. Working method for operating the device according to claim 1, wherein the device comprises a roll (AW1, AW2, SW1, SW2), characterised in that through pressing on the pressure plates (DP) and measuring the piston stroke towards the bearing chocks (LS, LS1, LS2, LS3, LS4) on the control side and the drive side of the roll the position thereof is ascertained, stored and subsequently determined by comparison of the values with previously stored values of the wear at the housing apertures (SF) of the roll stand.
  4. Working method for operating the device according to claim 1, wherein the device comprises a roll (AW1, AW2, SW1, SW2), characterised in that through controlled pressing-on of the pressure plates (DP) towards the bearing chocks (LS) on the control side and the drive side of the roll a skew position is produced or changed and the values are compared with previously stored values.
EP06754225A 2005-06-08 2006-06-08 Device for impinging the guide surfaces of bearing inserts guided in stand windows of roll stands Active EP1761345B1 (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
DE102005026257 2005-06-08
DE102005042168A DE102005042168A1 (en) 2005-06-08 2005-09-06 Device for acting on the guide surfaces of guided in the stator windows of rolling stands bearing chocks
PCT/EP2006/005485 WO2006131361A1 (en) 2005-06-08 2006-06-08 Device for impinging the guide surfaces of bearing inserts guided in stand windows of roll stands

Publications (2)

Publication Number Publication Date
EP1761345A1 EP1761345A1 (en) 2007-03-14
EP1761345B1 true EP1761345B1 (en) 2008-11-26

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EP06754225A Active EP1761345B1 (en) 2005-06-08 2006-06-08 Device for impinging the guide surfaces of bearing inserts guided in stand windows of roll stands

Country Status (11)

Country Link
US (1) US7426844B2 (en)
EP (1) EP1761345B1 (en)
JP (1) JP4263758B2 (en)
AT (1) ATE415212T1 (en)
BR (1) BRPI0605634A (en)
CA (1) CA2575328C (en)
DE (2) DE102005042168A1 (en)
ES (1) ES2314916T3 (en)
RU (1) RU2345856C2 (en)
TW (1) TWI352631B (en)
WO (1) WO2006131361A1 (en)

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DE102008009902A1 (en) 2008-02-19 2009-08-27 Sms Demag Ag Rolling device, in particular push roll stand
JP5737617B2 (en) * 2011-04-01 2015-06-17 株式会社Ihi Apparatus and method for continuous compression of electrode strip
EP2664968A1 (en) * 2012-05-16 2013-11-20 Siemens Aktiengesellschaft Control device for a hydraulic cylinder unit with single valve control
KR101639145B1 (en) * 2012-06-26 2016-07-12 신닛테츠스미킨 카부시키카이샤 Sheet metal rolling dece
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JP2008501530A (en) 2008-01-24
DE502006002173D1 (en) 2009-01-08
DE102005042168A1 (en) 2006-12-14
RU2345856C2 (en) 2009-02-10
BRPI0605634A (en) 2007-12-18
EP1761345A1 (en) 2007-03-14
TW200642774A (en) 2006-12-16
US20070245794A1 (en) 2007-10-25
ES2314916T3 (en) 2009-03-16
WO2006131361A1 (en) 2006-12-14
CA2575328C (en) 2012-08-07
CA2575328A1 (en) 2006-12-14
JP4263758B2 (en) 2009-05-13
US7426844B2 (en) 2008-09-23
TWI352631B (en) 2011-11-21
ATE415212T1 (en) 2008-12-15
RU2006144854A (en) 2008-06-20

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