Method and device for correcting meandering in non-contact conveying apparatus for strip material

US11414288B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11414288-B2
Application numberUS-201816763594-A
CountryUS
Kind codeB2
Filing dateNov 9, 2018
Priority dateNov 16, 2017
Publication dateAug 16, 2022
Grant dateAug 16, 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.

In a method and a device for correcting meandering of a strip material in an apparatus that performs conveyance of the strip material at a non-contact state by floating a continuously traveling strip material by a floater group, the strip material is tilted by forcibly changing a height position in the widthwise direction of the strip material in at least one of a zone between the most upstream floater in the floater group and a conveyance roll located immediately upstream of such a floater, a zone between two adjacent floaters, and a zone between the most downstream floater in the floater group and a conveyance roll located immediately downstream of such a floater, whereby the height position in the widthwise direction of the strip material above the floater is changed and a static pressure applied to the strip material above the floater is changed to correct meandering thereof.

First claim

Opening claim text (preview).

The invention claimed is: 1. A method for correcting meandering of a strip material in an apparatus that performs conveyance of a continuously travelling strip material at a non-contact state while floating the strip material by a floater group comprising one or more floaters arranged in line, characterized in that the strip material is tilted by forcibly changing a height position in the widthwise direction of the strip material in at least one of a zone between the most upstream floater in the floater group and a conveyance roll located immediately upstream of such a floater, a zone between two adjacent floaters, and a zone between the most downstream floater in the floater group and a conveyance roll located immediately downstream of such a floater to change the height position in the widthwise direction of the strip material above the floater, whereby a static pressure applied to the strip material above the floater is changed to correct meandering thereof, wherein a cant roll is arranged in a zone where the strip material is tilted so as to come in contact with the lower face of the travelling strip material and push up the strip material and is tilted with respect to a horizontal surface to change the height position of the cant roll in the widthwise direction of the strip material, whereby the strip material is tilted, and wherein an arrangement distance of the cant roll falls within S/2 from a center of a floater, where S is a distance between a center of the most upstream floater in the floater group and a center of the conveyance roll located immediately upstream of such a floater, a distance between the centers of the two adjacent floaters, or a distance between a center of the most downstream floater in the floater group and a center of the conveyance roll located immediately downstream of such a floater. 2. The method for correcting meandering of a strip material according to claim 1 , wherein a pushing-up amount of the cant roll falls within a range of H/3 to 6H with respect to a pass line of the strip material before the arrangement of the cant roll, where H is an average floating amount of the strip material above the floater. 3. The method for correcting meandering of a strip material according to claim 1 , wherein a tilt angle of the cant roll falls within a range of ±0.3 to 5° with respect to a horizontal surface. 4. The method for correcting meandering of a strip material according to claim 1 , wherein the tilt angle of the cant roll is controlled by feed-back control and/or feed-forward control based on measurement results of a meandering amount of the strip material. 5. The method for correcting meandering of the strip material according to claim 1 , wherein a peripheral speed of the cant roll is controlled within a range of ±4 m/min with respect to a conveyance speed of the strip material. 6. A device for correcting meandering of a strip material in an apparatus that performs conveyance of a continuously travelling strip material at a non-contact state while floating the strip material by a floater group comprising one or more floaters arranged in line, characterized in that the device is provided with a tilting means for correcting meandering of a strip material in at least one of a zone between the most upstream floater in the floater group and a conveyance roll located immediately upstream of the floater, a zone between two adjacent floaters, and a zone between the most downstream floater in the floater group and a conveyance roll located immediately downstream of such a floater and the tilting means forcibly changes the height position in the widthwise direction of the strip material to tilt thereof and change the height position in the widthwise direction of the strip material above the floater, whereby a static pressure applied to the strip material above the floater is changed to correct meandering thereof, wherein the tilting means for correcting meandering of a strip material is provided with a cant roll arranged so as to come in contact with the lower face of the travelling strip material and push up the strip material in the zone where the strip material is tilted and the cant roll is tilted with respect to a horizontal surface to change a height position of the cant roll in the widthwise direction of the strip material, whereby the strip material is tilted, and wherein the cant roll is arranged in a position within S/2 from a center of a floater, where S is a distance between a center of the most upstream floater in the floater group and a center of the conveyance roll located immediately upstream of such a floater, a distance between the centers of the two adjacent floaters, or a distance between a center of the most downstream floater in the floater group and a center of the conveyance roll located immediately downstream of such a floater. 7. The device for correcting meandering of a strip material according to claim 6 , wherein the cant roll can push up the strip material within a range of H/3 to 6H with respect to a pass line of the strip material before the arrangement of the cant roll, where H is an average floating amount of the strip material above the floater. 8. The device for correcting meandering of a strip material according to claim 6 , wherein the tilt angle of the cant roll can be controlled within a range of ±0.3 to 5° with respect to a horizontal surface. 9. The device for correcting meandering of a strip material according to claim 6 , wherein the tilt angle of the cant roll is controlled by feed-back control and/or feed-forward control based on measurement results of a meandering amount of the strip material.

Assignees

Inventors

Classifications

  • rotating, pivoting or oscillating around an axis perpendicular to the roller axis · CPC title

  • B65H23/038Primary

    by rollers · CPC title

  • by direct action on web of moving fluid · CPC title

  • the strip being supported by a cushion of gas · CPC title

  • B65H23/24Primary

    by fluid action, e.g. to retard the running web · CPC title

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What does patent US11414288B2 cover?
In a method and a device for correcting meandering of a strip material in an apparatus that performs conveyance of the strip material at a non-contact state by floating a continuously traveling strip material by a floater group, the strip material is tilted by forcibly changing a height position in the widthwise direction of the strip material in at least one of a zone between the most upstream…
Who is the assignee on this patent?
Jfe Steel Corp
What technology area does this patent fall under?
Primary CPC classification B65H23/038. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Aug 16 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 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).