Edger feed rolls
10328471 ยท 2019-06-25
Assignee
Inventors
Cpc classification
B21B39/14
PERFORMING OPERATIONS; TRANSPORTING
International classification
B21B13/06
PERFORMING OPERATIONS; TRANSPORTING
B21B39/14
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A rolling mill edger includes a pair of work rolls (1, 2) and a feed roll assembly. The assembly includes one or more driven feed rolls (23) and a drive for the feed rolls. The feed roll assembly is mounted on a moveable (25) mount such that the feed roll assembly is movable by pivoting the assembly between an operative rolling position (54) in the edger and a roll change position (55) out of the edger.
Claims
1. A rolling mill edger comprising: a pair of edger work rolls located and configured to edge a feed stock fed past the work rolls; a feed roll assembly comprising one or more driven feed rolls located and configured to feed the feed stock to be edged between the edger work rolls; a drive configured for driving the feed rolls, the drive having an input shaft connectable to a motor; and a moveable mount comprising a pivot on which the feed roll assembly is mounted and the mount is configured so that the feed roll assembly is movable between an operative feed stock feeding position in the edger where at least one of the driven feed rolls is positioned between entry into and exit from the edger work rolls and can be operated with the drive to transport the feedstock, and a roll change position in the edger, wherein the roll change position of the feed roll assembly is configured to provide better access to the work rolls in the edger than when the feed roll assembly is in the operative position, and wherein the moveable mount is pivotable about the pivot, and the pivot comprises the input shaft of the drive.
2. An edger according to claim 1, wherein the drive comprises a motor and one of a gearbox, a belt drive and a chain drive for connecting the motor to drive the driven feed rolls.
3. An edger according to claim 2, wherein the input shaft drives the gearbox, the belt drive or the chain drive.
4. An edger according to claim 1, wherein the edger comprises two of the feed roll assemblies and a respective one of the moveable mounts for each of the feed roll assemblies.
5. An edger according to claim 1, further comprising one or more split two part driven ones of the feed rolls, each split at a location along an axis of the split feed roll, and the one or more driven feed rolls of the feed roll assembly are mounted between the two parts of one of the split driven feed rolls.
6. An edger according to claim 5, further comprising a common support supporting the two parts of the split driven feed rolls and the drive.
7. An edger according to claim 1, wherein the drive comprises a motor and a gearbox driven by the motor; one or more two part split driven feed rolls, and the one or more driven feed rolls of the feed roll assembly are mounted between the two parts of one split driven feed roll; and the gearbox has an input shaft coupled to one part of the split driven feed roll and the input shaft is configured to be driven by the one part of the split driven feed roll.
8. An edger according to claim 7, wherein another part of the split driven feed roll is coupled to the input shaft of the gearbox and configured to be driven by the input shaft of the gearbox.
9. An edger according to claim 1, wherein the edger work rolls are spaced axially outward in the axial direction of the driven feed rolls in the operative feed stock feeding position.
10. A method of edger work roll change in a rolling mill edger according to claim 1, the method in sequence comprising: moving at least one of the driven feed rolls of the feed roll assembly away from an operative rolling position; moving at least a first work roll into a location vacated by the moving of the at least one of the driven feed rolls of the feed roll assembly; lifting the first work roll out of the edger; placing a second work roll into the edger to replace the first work roll; moving the second work roll away from the operative rolling position of the driven feed rolls of the feed roll assembly; and moving the at least one of the driven feed rolls of the feed roll assembly back into their operative rolling position.
11. A method according to claim 10, wherein the drive includes a feed roll drive mechanism having a shaft spaced away from the feed rolls and about which the driven feed rolls are pivoted.
12. A method according to claim 10, wherein the second work roll is different from the first work roll.
13. A method of operating an edger according to claim 7, wherein the input shaft of the gearbox is driven by one part of the split driven feed roll.
14. A method according to claim 13, wherein another part of the split driven feed roll is driven via the input shaft of the gearbox.
15. A rolling mill edger comprising: a pair of edger work rolls located and configured to edge a feed stock fed past the work rolls; a feed roll assembly comprising one or more driven feed rolls located and configured to feed the feed stock to be edged between the edger work rolls; a drive configured for driving the feed rolls, the drive having an input shaft connectable to a motor; and a moveable mount on which the feed roll assembly is mounted and the mount is configured so that the feed roll assembly is movable between an operative feed stock feeding position in the edger where at least one of the driven feed rolls is positioned between entry into and exit from the edger work rolls and can be operated with the drive to transport the feedstock, and a roll change position in the edger, wherein the roll change position of the feed roll assembly is configured to provide better access to the work rolls in the edger than when the feed roll assembly is in the operative position, and wherein the moveable mount is pivotable about the pivot, and the pivot comprises the input shaft of the drive.
16. An edger according to claim 15, wherein one of the edger work rolls is supported and configured to be moved between the roll change position where the driven feed rolls are located and the feedstock feeding position away from the roll change position for providing a space between the edger work rolls for the feed stock to be fed past the edger work rollers.
17. An edger according to claim 16, wherein the driven feed rollers occupy an axial space narrower than a space between the edge work rollers in their feeding feed stock positions.
Description
BRIEF DESCRIPTION OF THE INVENTION
(1) An example of a rolling mill edger according to the present invention will now be described with reference to the accompanying drawings in which:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9) 5c shows the operative position from the side;
(10) 5d shows the roll change position from the side.
(11) 5e shows the roll change position with the roll chock moved in between the rolls.
(12) 5f illustrates the roll change position, illustrating slide stops;
(13) 5g shows another view of an example of an edger according to the present invention, seen from above, showing the central rollers in the operative position; and,
(14)
DESCRIPTION OF PRIOR ART
(15) In a plate mill or Steckel mill edger, for example as illustrated in
(16) The fact that these idler rolls 18 are not driven causes problems with the transport of short slabs 19 or ingots through the edger because the slab or ingot can get stuck in a position where it is not being driven by any of the driven feedrollers. This is illustrated in more detail in
(17) To overcome this problem, some edgers use short, driven feed rollers which are gear driven from the center of the innermost full width feed roller. The innermost driven feed roller is divided into two parts and in between the two parts there is a gearbox which drives the small feed rollers which are located between the edger work rolls. Either a single pair of short feed rolls are driven via the gearbox, or two or more short feed rolls are driven from each side, via a train of gears. Although, this design addresses the problem of transporting short slabs through the edger, it introduces another problem.
(18) The edger work rolls need to be changed at regular intervals due to wear. The most common method of changing the roll assemblies is to lift them vertically out of the edger housing as shown in
(19) In order to allow the edger roll assembly to move to this central position the idler rolls 18 which are illustrated in
(20) However, in the case of the gear driven short feed rollers referred to above, this is not possible. The gearboxes and short feed-rollers cannot simply be lifted out for the edger roll change. Consequently, the edger roll change is made more complex because the guides 22 which retain the edger roll assemblies in the edger roll housing 5 have to be unbolted in order to take out the edger rolls 1, 2 in a non-central position.
(21) Thus, the current options are to use an edger with idler rolls, which is better for the edger roll change, but is not very good at transporting short slabs or ingots through the edger, or to use an edger with gear driven short feed rollers, which is better at transporting short slabs or ingots, but makes the roll change more complex.
DESCRIPTION OF AN EMBODIMENT OF THE INVENTION
(22) The present invention addresses the roll change problem associated with the gear driven type short feed rollers.
(23) Instead of the fixed gearbox and short driven rollers used to ensure that a short slab is not stuck on idler rolls, the invention provides an assembly with driven rollers which is moveable between an operative, rolling position and a roll change position. The drive mechanism for the driven rollers may be via a gearbox, a chain drive, or a belt drive. A gearbox is preferred due to high loads, so the examples will be described with reference to a gearbox. However, they should be read as being equally applicable to the case of a chain or belt drive or other similar drive mechanism.
(24) As illustrated by the embodiment of
(25) The moveable assembly comprising the gearbox 24 and short driven feed rollers 23 may be completely separate from the feed rollers 13 and 14, for example the gearbox may be mounted underneath the full width feed roller and have a separate drive shaft to the input shaft 25. Due to the limited space available though, it is preferable to drive the input shaft 25 of the gearbox 24 from a half feed roller 13a as illustrated in
(26) For the edger roll change, the cantilevered gearboxes 24 are moved into the roll change position as illustrated in
(27)
(28) Thus, the edger of the present invention is able to combine driven short feed rolls to make transporting of short slabs and ingots through the edger much easier with a clear central position for edger roll change. Rotation, or pivoting, of the gearbox and short feed roller assemblies about the gear input shaft moves the gearbox and short feed roller assemblies out of the window for roll change and thus allows the edger rolls to be changed in a central position which is much simpler than changing the edger rolls in a non-central position. There is no need to detach the gearbox and feed rolls at any stage in the process.
(29) Latching and movement between the normal operation position of the drive mechanism and feed rolls and the roll change position may be carried out manually, or may be automated and operate under control of a controller (not shown).