Claims
- 1. A strip rolling mill of cluster type having, on at least one side of a strip path, a work roll, a plurality of intermediate rolls supporting said work roll and a plurality of backing bearing assemblies supporting said intermediate rolls and each assembly comprising a row of backing bearing units extending parallel to a work roll axis, wherein each said backing bearing assembly on said one side of the strip path has shape control means for strip shape control applying a shape control pattern to said work roll, said shape control means consisting of a plurality of shape control devices by which said backing bearing units are individually adjustable relative to the work roll axis to apply shape control to said work roll, and wherein said mill has means for applying different shape control patterns to said work roll by applying different forces to respective different ones of said backing bearing assemblies, said means for applying different patterns including at least two of said shape control means which are independently operable so as to apply respectively different shape control patterns to said work roll.
- 2. A strip rolling mill according to claim 1, wherein said two independently operable shape control means belong to two adjacent ones of said backing bearing assemblies, one of which is more remote from a mill center plane than the other.
- 3. A strip rolling mill according to claim 1, wherein said backing bearing units of two adjacent ones of said backing bearing assemblies are axially staggered relative to each other.
- 4. A strip rolling mill according to claim 1, wherein each said backing bearing assembly further has a rotatable shaft carrying thereon said backing bearing units, at least one of said backing bearing assemblies having position adjustment apparatus for commonly adjusting said backing bearing units carried by said rotatable shaft relative to the work roll axis, and each of said backing bearing assemblies being free of such position adjustment apparatus has braking apparatus for selectively preventing said shaft from rotating by mill rolling forces.
- 5. A strip rolling mill according to claim 1, wherein one of said at least two said shape control means forms one shape control pattern by said backing bearing units of one of said backing bearing assemblies, another of said at least two said shape control means forms another shape control pattern by said backing bearing units of another of said backing bearing assemblies, and said one and another shape control patterns are different from each other and applied to said work roll to provide a roll gap according to a combined shape control pattern.
- 6. A strip rolling mill according to claim 1, wherein at least one of said backing bearing assemblies having said shape control means has a shaft supporting said backing bearing units and a first rotatable toothed sector secured to said shaft, said shaft being selectively braked by a braking apparatus, said braking apparatus comprising said first rotatable toothed sector, a second rotatable toothed sector which is rotatable around an axis thereof being meshed with said first rotatable toothed sector, and a piston-and-cylinder unit having a piston rod pivotally connected to said second rotatable toothed sector, rotation of said shaft being braked by said piston-and-cylinder unit.
- 7. A strip rolling mill according to claim 1, wherein said respective different ones of said backing bearing assemblies engage respective different ones of the intermediate rolls.
- 8. A strip rolling mill according to claim 3, wherein said respective different ones of said backing Rearing assemblies engage respective different ones of the intermediate rolls.
- 9. A strip rolling mill according to claim 4, wherein said braking apparatus comprises a first rotatable toothed element fixed on said shaft, a second rotatable toothed element meshing with said first rotatable toothed element and a piston-and-cylinder unit connected to said second toothed element to selectively resist rotation thereon.
- 10. A strip rolling mill of cluster type having, on at least one side of a strip path, a work roll, a plurality of intermediate rolls supporting said work roll and a plurality of backing bearing assemblies supporting said intermediate rolls and comprising a row of backing bearing units extending parallel to a work roll axis, there being on said one side of the strip path at least three such backing bearing assemblies of which two are remote from a mill center plane on opposite sides thereof and at least one is closer to the mill center plane than said two remote ones, wherein at least one of said two remote backing bearing assemblies and said closer backing bearing assembly have respective shape control means, each including a plurality of shape control devices, by which the backing bearing units thereof are individually adjustable relative to the work roll axis to apply shape control to said work roll, said respective shape control means being independently operable so as to apply different shape control patterns to said work roll by applying different forces to respective different ones of said backing bearing assemblies.
- 11. A strip rolling mill according to claim 10, wherein said backing bearing units of said at least one closer backing bearing assembly are axially staggered relative to said backing bearing units of at least one remote backing bearing assembly.
- 12. A strip rolling mill according to claim 10, wherein said respective different ones of said backing bearing assemblies engage respective different ones of the intermediate rolls.
- 13. A strip rolling mill of cluster type having, on at least one side of a strip path, a work roll, a pair of first intermediate rolls supporting said work roll, three second intermediate rolls supporting said first intermediate rolls and four backing bearing assemblies supporting said second intermediate rolls, said backing bearing assemblies being in two pairs on opposite sides of a mill center plane, each pair having a first said assembly close to said plane and a second said assembly further from said plane than said first assembly, and each comprising a row of backing bearing units extending parallel to a work roll axis, wherein each of said four backing assemblies has strip shape control means consisting of a plurality of strip shape control devices for individually adjusting positions of said backing bearing units thereof relative to the work roll axis to apply shape control to said work roll, said shape control means of said two first backing bearing assemblies being linked so that their backing bearing units are adjusted in conjunction to apply a shape control pattern to said work roll by applying a force to said two first backing bearing assemblies, and said shape control means of said second backing bearing assemblies being operable independently of said shape control means of said first backing bearing assemblies to apply a different shape control pattern to said work roll by applying a different force to said second backing bearing assemblies.
- 14. A strip rolling mill of cluster type having, on at least one side of a strip path, a work roll, a pair of first intermediate rolls supporting said work roll, three second intermediate rolls supporting said first intermediate rolls and four backing bearing assemblies supporting said second intermediate rolls, said backing bearing assemblies being in two pairs on opposite sides of a mill center plane, each said pair having a first said assembly close to said plane and a second said assembly further from said plane than said first assembly, and each of said four backing bearing assemblies comprising a row of backing bearing units extending parallel to a work roll axis, wherein each of said four backing bearing assemblies further has strip shape control means consisting of a plurality of shape control devices for individually adjusting positions of the backing bearing units thereof relative to the work roll axis to apply shape control to said work roll, said shape control means of said first and second backing bearing assemblies in each said pair thereof being linked so that their backing bearing units are adjusted in conjunction so as to apply a shape control pattern to said work roll, and said shape control means of the two said pairs being independently operable so as to apply different shape control patterns to said work roll by applying respectively different forces to each of said two pairs of backing bearing assemblies.
- 15. A strip rolling mill according to claim 14, and wherein each of said first and second backing assemblies further has a rotatable shaft carrying thereon backing bearing units, said first backing bearing assemblies having position adjustment apparatus for commonly adjusting said backing bearing units carried by said rotatable shafts relative to the work roll axis, and each said second backing bearing assembly being free of such position adjustment apparatus and having braking apparatus for selectively preventing said shaft from rotating by mill rolling forces.
- 16. A strip rolling mill according to claim 15, wherein said braking apparatus comprises a first rotatable toothed element fixed on said shaft, a second rotatable toothed element meshing with said first rotatable toothed element and a piston-and-cylinder unit connected to said second toothed element to selectively resist rotation thereon.
- 17. A strip rolling mill of cluster type having, on each side of a horizontal path of movement of strip being rolled, a work roll, a pair of first intermediate rolls supporting said work rolls, three second intermediate rolls supporting said first intermediate rolls and four backing bearing assemblies supporting said second intermediate rolls, said backing bearing assemblies on each side of said path of strip movement being in two pairs on opposite sides of a mill center plane, each said pair having a first said assembly close to said plane and a second said assembly further from said plane than said first assembly, and each of said four backing bearing assemblies on each side comprising a row of backing bearing units extending parallel to a work roll axis, wherein each of said four backing bearing assemblies at the side above said path of strip movement and each of two of said second backing assemblies at the side below said path of strip movement has strip shape control means consisting of a plurality of shape control devices for individually adjusting positions of the backing bearing units thereof relative to the work roll axis to apply shape control to said work roll, at least two of said shape control means being independently operable so as to apply respectively different shape control patterns to said work roll by applying different forces to respective different backing bearing assemblies, while two other of said first backing bearing assemblies at the side below said path of movement do not have such strip shape control means.
- 18. A strip rolling mill according to claim 17, wherein said respective different ones of said backing bearing assemblies engage respective different ones of the intermediate rolls.
- 19. A strip rolling mill of cluster type having, on each side of a horizontal path of movement of strip being rolled, a work roll, a pair of first intermediate rolls supporting said work rolls, three second intermediate rolls supporting said first intermediate rolls and four backing bearing assemblies supporting said second intermediate rolls, said backing bearing assemblies on each side of said path of strip movement being in two pairs on opposite sides of a mill center plane, each said pair having a first said assembly close to said plane and a second said assembly further from said plane than said first assembly, and each of said four backing bearing assemblies on each side comprising a row of backing bearing units extending parallel to a work roll axis, wherein each of said four backing bearing assemblies at the side above said path of strip movement and each of two of said first backing assemblies at the side below said path of strip movement has strip shape control means consisting of a plurality of shape control devices for individually adjusting positions of the backing bearing units thereof relative to the work roll axis to apply shape control to said work roll, at least two of said shape control means being independently operable so as to apply respectively different shape control patterns to said work roll by applying different forces to respective different ones of the backing bearing assemblies, while two other of said second backing bearing assemblies at the side below said path of movement do not have such strip shape control means.
- 20. A strip rolling mill according to claim 19, wherein said respective different ones of said backing bearing assemblies engage respective different ones of the intermediate rolls.
- 21. A strip rolling mill of cluster type having, on at least one side of a strip path, a work roll, a plurality of intermediate rolls supporting said work roll and a plurality of backing bearing assemblies supporting said intermediate rolls and each backing bearing assembly comprising a row of backing bearing units extending parallel to a work roll axis, wherein at least one of said backing bearing assemblies has a rotatable shaft carrying said backing bearing units, at least one support for said shaft, and position adjustment apparatus for said shaft comprising at least one first eccentric ring around said shaft and mounting said shaft, at least one second eccentric ring rotatably disposed between said first eccentric ring and said support, rotating apparatus for rotating said second eccentric ring around said shaft so as to adjust positions of said shaft relative to said support, and braking apparatus for said shaft resisting rotation of said shaft caused by mill rolling forces, said braking apparatus comprising a first rotatable toothed element fixed on said shaft, a second rotatable toothed element meshing with said first rotatable toothed element and a piston-and-cylinder unit connected to said second toothed element to selectively resist rotation thereon.
- 22. A strip rolling mill according to claim 21, wherein said piston-and-cylinder unit has a piston rod pivotably connected to said second toothed element between a toothed portion of said second toothed element and an axis thereof around which said toothed element is turnable.
- 23. A strip rolling mill of cluster type having, on at least one side of a strip path, a work roll, a plurality of intermediate rolls supporting said work roll and a plurality of backing bearing assemblies supporting said intermediate rolls and comprising a row of backing bearing units extending parallel to a work roll axis, wherein at least two adjacent backing bearing assemblies in said one side of the strip path each have shape control means by which said backing bearing units are individually adjustable relative to the work roll axis so that strip shape control can be applied, wherein said shape control means of said two adjacent backing bearing assemblies are independently operable so as to apply respectively different shape control patterns to said work roll by applying different forces to respective different ones of the backing bearing assemblies, said backing bearing units of said two adjacent backing bearing assemblies being staggered relative to each other in an axial direction of said work roll.
- 24. A method of applying shape control in a strip rolling mill of cluster type having, on at least one side of a strip path, a work roll, a plurality of intermediate rolls supporting said work roll, and a plurality of backing bearing assemblies supporting said intermediate rolls and each assembly comprising a row of backing bearing units extending parallel to a work roll axis, said backing bearing units in at least two of said backing bearing assemblies being adjustable relative to the work roll axis so as to apply strip shape control by individually adjusting said backing bearing units, which method comprises simultaneously applying at least two different shape control patterns to said work roll by independently applying different forces to respective different ones of at least two of said backing bearing assemblies.
- 25. A method according to claim 24, comprising independently adjusting two of said backing bearing assemblies of which one is more remote from a mill center plane than the other.
- 26. A method according to claim 24, comprising independently adjusting two of said backing bearing assemblies which are on opposite sides of a mill center plane.
- 27. A method according to claim 24, wherein said respective different ones of said backing bearing assemblies engage respective different ones of the intermediate rolls.
- 28. A strip rolling mill of cluster type having, on at least one side of a strip path, a work roll, a plurality of intermediate rolls supporting said work roll and a plurality of backing bearing assemblies supporting said intermediate rolls and each assembly comprising a row of backing bearing units extending parallel to a work roll axis, wherein each said backing bearing assembly on said one side of the strip path has a plurality of adjustable movable backing members engageable with least one of the intermediate rolls to apply a shape control pattern to said work roll, said backing members being individually adjustable relative to the work roll axis to apply shape control to said work roll, and
- wherein a control system is provided to control movement of the backing members by applying a force to one of said backing bearing assemblies to form a first work roll shape control pattern and to control movement of the backing members by applying a different force to another one of the backing bearing assemblies to form a second work roll shape control pattern that is different from the first work roll shape control pattern.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2-247590 |
Sep 1990 |
JPX |
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Parent Case Info
This is a Continuation application of Ser. No. 07/908,809, filed Jul. 7, 1992 abandoned, which is a Continuation application of Ser. No. 07/758,114, filed on Sep. 12, 1991, now abandoned.
US Referenced Citations (7)
Foreign Referenced Citations (4)
Number |
Date |
Country |
3537153 |
May 1987 |
DEX |
0055111 |
Apr 1983 |
JPX |
0173006 |
Oct 1983 |
JPX |
0108401 |
Apr 1990 |
JPX |
Non-Patent Literature Citations (1)
Entry |
A paper "Lubrication of Sendzimir Mills" by L. R. Seeling, 3rd Annual Meeting of the Lubrication and Wear Group, 1964 (Institution of Mechanical Engineers, London). |
Continuations (2)
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Number |
Date |
Country |
Parent |
908809 |
Jul 1992 |
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Parent |
758114 |
Sep 1991 |
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