Method for pre-shaping sheet metal, and computer program and device for carrying out the method
20240017314 · 2024-01-18
Assignee
Inventors
Cpc classification
B21C37/0818
PERFORMING OPERATIONS; TRANSPORTING
International classification
B21D5/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The disclosure relates to a method for pre-shaping sheet metal (1) in strip- or panel-form having a flat cross-sectional profile into a circular arc-shaped cross-sectional profile, in a pre-shaping section (3) of a plant for producing open-seam pipes. The circular arc-shaped cross-sectional profile is provided to the sheet metal (1) in the pre-shaping section (3) by means of roll profiling in a plurality of successive bending steps in a transport direction. The cross-sectional profile is created by step-by-step bending of individual circular arc portions (8) from an outer edge of the sheet metal (1) toward a center line (7) such that the individual circular arc portions (8) directly adjoin one another or at least partially overlap. The disclosure further relates to a device for carrying out the method.
Claims
1.-19. (canceled)
20. A method for pre-shaping sheet metal (1) in strip form or panel form having a flat cross-sectional profile into a circular arc-shaped or approximately circular arc-shaped cross-sectional profile in a pre-shaping section (3) of a plant for producing open-seam pipes, the method comprising: roll profiling the sheet metal (1) in the pre-shaping section (3), in a plurality of bending steps following one another in a transport direction, to provide the circular arc-shaped or approximately circular arc-shaped cross-sectional profile, wherein the circular arc-shaped or approximately circular arc-shaped cross-sectional profile is created by step-by-step bending of individual circular arc portions (8) from an outer edge of the sheet metal (1) toward a center line (7) such that the individual circular arc portions (8) directly adjoin one another or at least partially overlap.
21. The method according to claim 20, wherein the individual circular arc portions (8) are generated symmetrically toward the center line (7), starting from both outer edges (6) extending in the transport direction of the sheet metal (1).
22. The method according to claim 20, wherein the circular arc-shaped cross-sectional profile is generated by a plurality of rolls in a plurality of rolling mill stands (5) arranged one behind the other.
23. The method according to claim 20, wherein the circular arc-shaped cross-sectional profile is generated in a continuous pass of the sheet metal (1) through rolling mill stands (5) arranged one behind the other in the pre-shaping section (3).
24. The method according to claim 20, wherein the circular arc portions (8) have the same bending radius.
25. The method according to claim 20, wherein a bending radius of the circular arc portions (8) is selected to be greater than or equal to a desired target radius of the sheet metal (1).
26. The method according to claim 20, wherein a bending radius with respect to a desired target radius is determined using a software-supported springback calculation.
27. The method according to claim 20, wherein the sheet metal (1) is subjected to three-point deformation at each bending step from each outer edge (6) symmetrical to the center line.
28. The method according to claim 27, wherein the three-point deformation is generated with a roll configuration with which a bending radius is generated on an inside of the circular arc portion (8) to be formed with one support and on an outside of the circular arc portion (8) to be formed with two supports.
29. The method according to claim 25, wherein at least one radius and/or one angle of attack of at least one roll and/or at least one roll configuration with respect to a desired target radius is calculated by a computer as a function of a springback calculation and taking into account a height and/or width of a roll gap.
30. The method according to claim 29, wherein at least one roll is selected from a list with a plurality of rolls having different radii in a given gradation as a function of a result of the calculation by a computer program.
31. A computer program comprising instructions that, when the program is executed by a computer, cause the computer to execute the method according to claim 29.
32. A device for pre-shaping sheet metal (1) in strip form or panel form having a flat cross-sectional profile into a circular arc-shaped cross-sectional profile in a plant for producing open-seam pipes, comprising: a plurality of rolling mill stands (5) arranged one behind the other with respect to a pre-shaping section (3), in each case with a roll configuration that is designed in such a manner that a bending radius is provided to the sheet metal (1) in a plurality of profile sequences starting from each outer edge (6), symmetrically with respect to a center line (7) of the pre-shaping section (6).
33. The device according to claim 32, wherein the rolls of at least one rolling mill stand (5) are designed in such a manner that the sheet metal (1) is bent with one support on an inside of a circular arc portion (8) to be formed and with two supports on an outside of the circular arc portion (8) to be formed.
34. The device according to claim 32, wherein the rolls of rolling mill stands (5) arranged one behind the other are arranged differently and/or have different radii and/or different roll profiles.
35. The device according to claim 32, wherein at least one rolling mill stand (5) has at least one top roll (9), one bottom roll (10) and one bending roll (11) on both sides of the center line (7), each forming a three-point support.
36. The device according to claim 32, wherein at least one rolling mill stand (5) comprises at least one top roll (9) and one bending roll (10) on both sides of the center line (7) and a single bottom roll (10) extending on both sides of the center line.
37. The device according to claim 32, wherein at least one rolling mill stand (5) comprises at least one top roll (9) and one bottom roll (12) on both sides of the center line (7), wherein the bottom roll has a roll profile that forms two supports.
38. The device according to claim 32, wherein a distance and/or an angle of attack of the rolls is adjustable with respect to the center line (7).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0034]
[0035]
[0036]
[0037]
[0038]
[0039]
[0040]
[0041]
DETAILED DESCRIPTION
[0042] The illustration in accordance with
[0043] The pre-shaping section 3 comprises a plurality of rolling mill stands 5 arranged one behind the other, in which a circular arc-shaped cross-sectional profile is provided to the sheet metal 1 by roll forming in a plurality of successive bending steps in a transport direction, wherein the cross-sectional profile is generated by gradual bending of individual circular arc portions 8 or profile segments, as the case may be, in each case from an outer edge 6 to a center line 7 of the sheet metal symmetrically with respect to the center line 7 of the sheet metal 1. This procedure is best illustrated by the sequence of bending steps a) to e) shown in
[0044] In the exemplary embodiment described in
[0045] With a variant of the method, it can be provided that the sequence of bending steps a) to e) shown in
[0046] The example of a roll configuration shown in
[0047] A rolling mill stand 5 with a different roll configuration is shown in
[0048] Another possible roll configuration is shown in
[0049] Depending on the size of the contact area between the individual rolls, it may be necessary to provide drivers between the rolling mill stands to transport the sheet metal 1. In principle, individual rolls of the rolling mill stands 5 can also be driven.
[0050]
LIST OF REFERENCE SIGNS
[0051] 1 Sheet metal [0052] 2 Bending stand [0053] 3 Pre-shaping section [0054] 4 Open-seam pipe [0055] 5 Rolling mill stands [0056] 6 Outer edge of the sheet metal [0057] 7 Center line of the sheet metal and center line of the pre-shaping section [0058] 8 Circular arc portions [0059] 9 Top roll [0060] 10 Bottom roll [0061] 11 Bending roll [0062] 12 Combined bending and bottom roll