Rolling mill and rolling mill adjustment method

US11247253B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11247253-B2
Application numberUS-201615766091-A
CountryUS
Kind codeB2
Filing dateNov 7, 2016
Priority dateNov 7, 2016
Publication dateFeb 15, 2022
Grant dateFeb 15, 2022

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

There are provided a work-side position measurement device and a drive-side position measurement device for directly measuring positions of roll chocks in a rolling direction, and positions of upper and lower working rolls and upper and lower backup rolls in the rolling direction are adjusted to zero point or predetermined positions. Alternatively, a change caused in the strip wedge due to a minute crossing of the axes of working rolls and backup rolls is calculated, and the quantities of leveling of a work-side rolling reduction cylinder device and a drive-side rolling reduction cylinder device are adjusted to make the strip edge equal to or smaller than a predetermined value. Accordingly, the bilateral asymmetry (strip wedge) of the thickness distribution of a rolled material is easily adjusted even in the event that the positions of the roll chocks in the rolling direction are changed due to wear on various components.

First claim

Opening claim text (preview).

The invention claimed is: 1. A rolling mill comprising: a work-side housing and a drive-side housing; a pair of upper and lower working rolls each supported rotatably by the work-side and drive-side housings via a work-side roll chock and a drive-side roll chock; a plurality of pressing devices respectively arranged on the pair of upper and lower working rolls at positions between an input side in a rolling direction of the work-side housing and the work-side roll chock, between an output side in the rolling direction of the work-side housing and the work-side roll chock, between an input side in the rolling direction of the drive-side housing and the drive-side roll chock and between an output side in the rolling direction of the drive-side housing and the drive-side roll chock, for pressing corresponding ones of the work-side and drive-side roll chocks at each of the positions in the rolling direction or an anti-rolling direction; liners each provided at contact portions of the plurality of pressing devices and the corresponding ones of the work-side and drive-side roll chocks; position control devices arranged on each roll of the pair of upper and lower working rolls at two positions: at one of positions between the input side of the work-side housing and the work-side roll chock and between the output side of the work-side housing and the work-side roll chock, and at one of positions between the input side of the drive-side housing and the drive-side roll chock and between the output side of the drive-side housing and the drive-side roll chock; each of the position control devices being equipped with at least a part of a corresponding pressing device of the plurality of pressing devices as a drive section and being equipped with a measurement device that measures an operation amount of the corresponding pressing device, to perform positional control on the corresponding pressing device; a work-side position measurement device, including a first reference member provided on the work-side roll chock and having a first reference surface, and a second reference member provided on the work-side housing and having a second reference surface capable of coming into contact with the first reference surface; the work-side position measurement device being configured to: set a work-side reference position during pressing of a first surface of the work-side roll chock opposite to a second surface of the work-side roll chock on which the first reference member is provided by a pressing device of the plurality of pressing devices so that the first reference surface of the first reference member contacts the second reference surface of the second reference member, and measure a position of the work-side roll chock at the work-side reference position by the measurement device of a work-side position control device of the position control devices in a rolling direction of the work-side roll chock between the work side roll chock and the work side housing, including a wear of a work-side liner of the liners with reference to a position that is not affected by the wear of the work-side liner; and a drive-side position measurement device including a first reference member provided on the drive-side roll chocks and having a first reference surface, and a second reference member provided on the drive-side housings and having a second reference surface capable of coming into contact with the first reference surface; the drive-side position measurement device being configured to: set a drive-side reference position during pressing of a first surface of the drive-side roll chock opposite to a second surface of the drive-side roll chock on which the first reference member is provided by a pressing device of the plurality of pressing devices so that the first reference surface of the first reference member contacts the second reference surface of the second reference member, and measure a position of the drive-side roll chock at the drive-side reference position by the measurement device of a drive-side position control device of the position control devices in a rolling direction of the drive-side roll chock between the drive-side roll chock and the drive-side housing, including a wear of the drive-side liner of the liners with reference to a position that is not affected by the wear of the drive-side liner. 2. A rolling mill, comprising: a work-side housing and a drive-side housing; a pair of upper and lower working rolls each supported rotatably by the work-side and drive-side housings via a work-side roll chock and a drive-side roll chock; a pair of upper and lower backup rolls each supported rotatably by the work-side and drive-side housings via a work-side roll chock and a drive-side roll chock and each supporting the pair of upper and lower working rolls; a plurality of pressing devices respectively arranged on the pair of upper and lower working rolls and the pair of upper and lower backup rolls at positions between an input side in a rolling direction of the work-side housing and the work-side roll chock, between an output side in the rolling direction of the work-side housing and the work-side roll chock, between an input side in the rolling direction of the drive-side housing and the drive-side roll chock and between an output side in the rolling direction of the drive-side housing and the drive-side roll chock, for pressing corresponding ones of the work-side and drive-side roll chocks at each of the positions in the rolling direction or an anti-rolling direction; liners each provided at contact portions of the plurality of pressing devices and the corresponding ones of the work-side and drive-side roll chocks; position control devices arranged on each roll of the pair of upper and lower working rolls and on each roll of the pair of upper and lower backup rolls at two positions: at one of positions between the input side of the work-side housing and the work-side roll chock and between the output side of the work-side housing and the work-side roll chock, and at one of positions between the input side of the drive-side housing and the drive-side roll chock and between the output side of the drive-side housing and the drive-side roll chock; each of the position control devices being equipped with at least a part of a corresponding pressing device of the plurality of pressing devices as a drive section and being equipped with a measurement device that measures an operation amount of the corresponding pressing device, to perform positional control on the corresponding pressing device; a work-side position measurement device, including a first reference member provided on the work-side roll chock and having a first reference surface, and a second reference member provided on the work-side housing and having a second reference surface capable of coming into contact with the first reference surface; the work-side position measurement device being configured to: set a work-side reference position during pressing of a first surface of the work-side roll chock opposite to a second surface of the work-side roll chock on which the first reference member is provided by a pressing device of the plurality of pressing devices so that the first reference surface of the first reference member contacts the second reference surface of the second reference member, and measure a position of the work-side roll chock at the work-side reference position by the measurement device of a work-side position control device of the position control devices in a rolling direction of the work-side roll chock between the work side roll chock and the work side housing, including a wear of a work-side liner of the liners with reference to a position that is not affected by the wear of the work-side liner; and a drive-side position measurement device including a first reference member provided on the drive-si

Assignees

Inventors

Classifications

  • B21B37/62Primary

    by control of a hydraulic adjusting device · CPC title

  • B21B37/18Primary

    Automatic gauge control · CPC title

  • by liquid pressure {, e.g. hydromechanical adjusting} · CPC title

  • Methods or devices for measuring, {detecting or monitoring} specially adapted for metal-rolling mills, e.g. position detection, inspection of the product {(control devices or methods B21B37/00)} · CPC title

  • by moving rolls perpendicularly to roll axis · CPC title

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What does patent US11247253B2 cover?
There are provided a work-side position measurement device and a drive-side position measurement device for directly measuring positions of roll chocks in a rolling direction, and positions of upper and lower working rolls and upper and lower backup rolls in the rolling direction are adjusted to zero point or predetermined positions. Alternatively, a change caused in the strip wedge due to a mi…
Who is the assignee on this patent?
Primetals Tech Japan Ltd
What technology area does this patent fall under?
Primary CPC classification B21B37/62. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Feb 15 2022 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).