System and method for cutting to length long rolled products coming from different strands of a rolling mill
10994348 · 2021-05-04
Assignee
Inventors
Cpc classification
Y10T83/4705
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B23D25/12
PERFORMING OPERATIONS; TRANSPORTING
B21B15/0007
PERFORMING OPERATIONS; TRANSPORTING
Y10T83/4714
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T83/2083
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B21B1/16
PERFORMING OPERATIONS; TRANSPORTING
B23D33/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
B21B15/00
PERFORMING OPERATIONS; TRANSPORTING
B23D25/12
PERFORMING OPERATIONS; TRANSPORTING
B21B1/16
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A system for cutting to length at least two strands of long rolled products (3, 5) preferably coming from a hot rolling mill. The system includes shears comprising at least two rotatable drums (4,6), each drum having a cutter (8,8′,10,10′) arranged to cut simultaneously at least two strands of long rolled products into finished segments. The system further includes at least two movable guides (12,14), each including at least two channels, each guide arranged to receive and guide at least one strand (3,5) of long product. The guides are movable between a position wherein, in operation, the strands of long product are located in positions either outside of the trajectory of the cutters in a position wherein the strands cannot be cut or wherein the strands are located on the trajectories of the cutters and can be cut by the cutters.
Claims
1. A system for cutting to length first and second strands of long rolled products coming from a rolling mill, the system comprising: a shear comprising at least two rotatable drums, each drum having a cutting device including a knife, the at least two cutting devices being arranged to simultaneously cut the first and second strands of the long rolled products as they pass the drums, into finished segments; a first moveable strand guide comprising at least two first channels followed by at least two second channels in a second movable strand guide and a space separating an outlet of each of the first channels from a respective inlet of each of the second channels, each of the first channels of the first strand guide communicating with a respective second channel of the second strand guide; each first channel being configured to receive and guide one of the first and second strands of the long rolled products from an inlet of the first channel through the outlet of the first channel, into the inlet of the second channel through an outlet of the second channel; the first and second strand guides being pivotable between a non-cutting position at which the first and second strands are not cut and a cutting position at which the first and second strands are cut, wherein during operation of the system, the first and second strands of long products pass along the first and second guides outside of a trajectory passing the cutting devices in non-cutting positions at which the strands are not cut and when the first and second guides are pivoted into cutting positions, the first and second strands are located on trajectories passing the cutting devices where the strands are cut by the cutting devices; and wherein means for pivoting the first and second guide strands are configured to selectively pivot the first and second strand guides between a first and a second non-cutting position; in the first non-cutting position, the first and the second strands are both outside of the respective trajectories of the first and second cutting devices, wherein the first strand is between the first and the second cutting devices and the second strand is outside the first cutting device and not between the first and second cutting devices; and in the second non-cutting position, the first and second strands are also both outside of the respective trajectories of the first and the second cutting device, wherein the second strand is between the first and the second cutting devices and the first strand is outside the second cutting device and not between the first and second cutting devices; and the first and the second movable strand guides pivot the first and the second strands in a first direction from the first non-cutting position to the second non-cutting position and pivot the first and the second strands in a second direction from the second non-cutting position to the first non-cutting position, where the first direction is opposite the second direction, and wherein the pivoting of the guides between the first and second non-cutting positions places the first and second strands along the trajectories passing the cutting devices to cut the first and second strands of the rolled product.
2. A system according to claim 1, wherein the cutting device of each drum comprises a knife for cutting a respective one of the at least two strands at each drum.
3. A system according to claim 2, wherein the respective knife of each drum has a substantially circular trajectory when rotating with the respective drum, and the knife trajectories are contained in parallel vertical planes.
4. A system according to claim 3, wherein at least one knife of each drum is located such that its circular trajectory is contained in one vertical plane.
5. A system according to claim 1, wherein the first and second guides are supported to be pivotable between the cutting and the non-cutting positions thereof.
6. A system according to claim 1, wherein the first and second guides comprise a spacer extending between the neighboring channels of the respective guide and the spacer horizontally spacing apart each channel relative to the other neighboring channel of the respective guide.
7. A system according to claim 1, wherein each of the at least two drums has a respective axis, and the axes of the drums are located in the same vertical plane and extend parallel to one another.
8. A system according to claim 7, wherein the knife of each drum is aligned on a line parallel to the axis of the drum.
9. A system according to claim 1, wherein the means for pivoting comprises a plurality of pivoting devices, each connected to a respective connector of a guide, each pivoting device comprising a crank and a connecting rod assembly connected to the respective guide and is configured to cyclically translate each corresponding guide in directions between the cutting position and each of the first and second non-cutting position.
10. A system according to claim 1, wherein the first and second strands are supported strands are supported to run spaced apart past the strand guides; the strand guides are located both prior to and after the cutting devices, whereby the strands pass the cutting devices and when the strands are cut, the cut parts of the strands pass the strand guides located after the cutting devices after the strands are cut.
11. A system according to claim 1, wherein the cutting devices on each of the at least two drums are spaced apart leaving a space between the at least two drums and between the cutting devices.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The teachings of the present invention can be readily understood by considering the following non-limiting detailed description in conjunction with the accompanying drawings, in which:
(2)
(3)
(4)
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DETAILED DESCRIPTION OF THE INVENTION
(6) In the embodiment of
(7) As shown in the
(8) The pairs of knives 8/8′ and 10/10′ rotate with their respective drum and are positioned such that two sections from two strands are simultaneously cut. Each upper knife 8, 8′ cooperates with a respective lower knife 10 or 10′ to cut a strand of long product into finished segments. In the embodiment shown in the Figures, an upper knife 8 and a lower knife 10, called here left knives, which are intended to cut one strand of long product, are located at least partially in a first radial plane relative to the axes X,X′. In the same manner, the other upper knife 8′ and lower knife 10′, called here right knives, are located at least partially in a second radial plane relative to the axes X,X′.
(9) The right and left knifes are located to overlap when they reach a point where their circular trajectories are closer (for example the lower point for the upper knives 8,8′ and the upper point for the lower knives 10,10′) in order to cut the strand 3 and 5 of long product in finished segments of rolled long product.
(10) Drums 4 and 6 are connected to one or a plurality of driving mean(s) (not shown) which rotate(s) both drums at the same peripheral speed regardless of drum diameter. As shown on
(11) The system also comprises at least two rotatable guides 12 and 14. Each guide comprises two channels[.] Each channel is configured, intended and arranged to receive and to guide one strand of long product. As can be seen in all the Figures, an entry guide 12 extend horizontally upstream of the shear 7 in the direction of travel of the product and an exit guide 14 extends horizontally downstream of the shear 7.
(12) The channels 12a/12b or 14a/14b of a respective guide 12 or 14 may be spaced apart and linked together by means of at least one spacer 12c or 14c. A rotation rod (or shaft) 12d or 14d extends vertically down from each of the spacers 12c or 14c. Each channel 12a or 12b may comprise an entry section having a conical shape[.] The entry section leads to an exit section having a constant cross-section intended to maintain each strand in the correct position before and after the shearing.
(13) Guides 12 and 14 are spaced apart by a distance sufficient for the knives to cooperate to cut the respective strands and at the same time to allow a correct guiding of the strands and of the segment of strands before and after cutting.
(14) As seen in
(15) Each assembly 20, 22 when activated cyclically translates its corresponding guide 12 or 14 forward and backward. The guides 12 and 14 are in turn rotated about their shaft 12d or 14d, between a non cutting position wherein, in operation, the strands of long products 3 or 5 are located outside of the trajectory of the cutting means in a position wherein the strands cannot be cut and, a cutting position wherein the two strands 3 and 5 are located on the trajectory of the cutting means 8, 8′ and 10, 10′ where the strands can be cut by the cutting means into segments of long product.
(16) To cut both strands 3 and 5 into finished segments, drums 4 and 6 are continuously rotated, in opposite directions. It has to be noted that the two strands of product are continuously moved forward by pinch rolls (not shown) located upstream and/or downstream of the system according to the invention.
(17) In the embodiment shown in
(18) These motions are illustrated by the double arrow labeled A which shows the travel of the center line CL of the guide 12.
(19) In another embodiment, in a first step, guides 12 and 14, each fed with rolled long products by an upstream pinch roll, are driven to position each strand 3 and 5 on the circular trajectory of the right 8′/10′ and left 8/10 pair of knives. Therefore, at the end of this rotation each strand 3 and 5 is respectively located between the knives 8/10 and 8′/10′of the left and right pair of knives.
(20) This motion of the guides is illustrated for example by the double arrow labeled A on
(21) Further rotation of the drums 4 and 6 causes an overlapping of the knives 8′/10′ forming the right pair of knives and also provokes and overlapping of the knives 8/10 forming the left pair of knives and provokes cutting of both strands 3 and 5 simultaneously.
(22) Subsequently, in a second step, each guide 12 or 14 is rotated into a position where the strands 3 and 4 are located outside the circular trajectory of the knives. For example, and as seen on
(23) As above described, the motion of each strand 3 and 5 is limited to the minimum needed to displace each strand from a position where each strand is outside the trajectory of two cutting means to a position where each strand intercepts the trajectory of the two cutting means. For this purpose, the free space between the left and the right knives can be used to position either of strand 3 or strand 5 outside of the cutting trajectories.
(24) This also allows the simultaneous cutting of both strands, which simplifies the subsequent handling of the segments.
(25) Subsequently second and third steps are repeated such that pluralities of segments are cut to length from both strands simultaneously.
(26) Control means (not shown) synchronize the different driving elements of the system according to the invention such that to operate the cut of each strand of long product, for example, by controlling the speeds of the motors 24 and 26, the speed of the motor part of gearbox/motor assembly 28, and the speed of the strands of long products via the speed of the driving pinch rolls. The position of the knives can also be provided to the control means by appropriate sensors, in order to realize the position regulation. The control means also control the above mentioned parameters to obtain the desire length of the long product segments.
(27) It has also to be noted that the driving means can be driven such that both strands of the long product travel cyclically from the right side of the cutting means until the left side of the cutting means. This can be for example the case in an embodiment wherein only one knife is provided per drum for cutting a plurality of strands of long products.
(28) In another embodiment as shown in
(29) As above shown, the invention provides an efficient and compact mean to simultaneously cut a plurality of strands coming from a hot rolling mill.