SUPPORTING TABLE FOR BENDING MACHINE
20180111180 ยท 2018-04-26
Assignee
Inventors
Cpc classification
International classification
B21D5/00
PERFORMING OPERATIONS; TRANSPORTING
B21D43/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a bending machine (1) for metal sheets (3). The bending machine (1) comprises a machine frame (4) and a support device (15) which is designed to hold the metal sheet (3) to be bent, a support surface (16) of the support device (15) being arranged in a horizontal plane with the support surface (7) of a clamping base (5). The support device (15) has at least a first support module (17) and a second support module (18) having a first support surface (19) and a second support surface (20). At least one of the support modules (17, 18) is horizontally displaceable in the longitudinal direction (21) of the bending machine (1) and as a result a first gap (22) extending at right angles to the blank-holder edge (12) can be set between the two support modules (17, 18). The support modules (17, 18) each have at least a first support element (24) and a second support element (24, 25) with a second gap (26) located between the support elements (24, 25), which second gap (26) is oriented parallel to the blank-holder edge (12).
Claims
1: A bending machine (1) for metal sheets (3), in particular a pivot bending machine (2), comprising a machine frame (4); a clamping base (5), which is arranged on the machine frame (4), wherein on the clamping base (5) a support surface (7) is formed on which the metal sheet (3) to be bent can be placed for processing; a blank-holder (6), which is arranged to be vertically displaceable on the machine frame (4) and by means of which in cooperation with the clamping base (5) the metal sheet (3) placed on the clamping base (5) can be fixed and which blank-holder (6) on its front side (11) has a blank-holder edge (12) extending in the longitudinal direction (21) of the bending machine (1); a bending tool (13), which is arranged on a front side (11) of the clamping base (5) and the blank-holder (6) and by means of which a metal sheet (3) clamped between the clamping base (5) and blank-holder (6) can be shaped; a support device (15), which is designed for supporting the metal sheet (3) to be bent, wherein a support surface (16) of the support device (15) is arranged in a horizontal plane with the support surface (7) of the clamping base (5), wherein the support device (15) comprises at least one first (17) and one second support module (18) with a first (19) and a second support surface (20), wherein at least one of the support modules (17, 18) can be displaced horizontally in longitudinal direction (21) of the bending machine (1) and in this way a first gap (22) running at right angles to the blank-holder edge (12) can be adjusted between the two support modules (17, 18), and wherein the support modules (17, 18) each have at least one first (24) and one second support element (24, 25) with a second gap (26) between the support elements (24, 25), which second gap (26) is aligned parallel to the blank-holder edge (12), wherein at least one of the support elements (24, 25) can be displaced at right angles to the blank-holder edge (12) so that the second gap (26) can be adjusted in size and/or position.
2: The bending machine as claimed in claim 1, wherein at least one of the two support elements (24, 25) comprises connecting segments (28) guided on the support module (17, 18).
3: The bending machine as claimed in claim 1, wherein for each support module (17, 18) at least one actuator (30), preferably an electric motor drive, is arranged, by means of which at least one of the support elements (24, 25) arranged on a support module (17, 18) can be adjusted.
4: The bending machine as claimed in claim 1, wherein for each support module (17, 18) two actuators (30), preferably electric motor drives, are arranged by means of which the first (24) and the second support element (25) can be adjusted independently of one another.
5: The bending machine as claimed in claim 1, wherein the support elements (24, 25), in particular the individual segments (28), can be rolled onto a storage roll (29).
6: The bending machine as claimed in claim 5, wherein the storage roll (29) is coupled by means of a belt drive (42) to a drive unit (43).
7: The bending machine as claimed in claim 5, wherein the storage rolls (29) are rotationally coupled by at least two of the support modules (17, 18), wherein the rotary movement is transmitted by means of a drive shaft (40) with a polygonal cross-section extending in longitudinal direction (21) and wherein the drive shaft (40) is driven by means of a rotary drive (41) and wherein the storage rolls (29) can be displaced in longitudinal direction (21) of the drive shaft (40).
8: The bending machine as claimed in claim 1, wherein the support modules (17, 18) can be displaced by means of a manipulator (33) in longitudinal direction (21) of the bending machine (1), wherein the manipulator (33) has a coupling element (35) for possibly coupling to the support modules (17, 18).
9: The bending machine as claimed in claim 8, wherein the manipulator (33) comprises a manipulator arm (34) which is designed such that the manipulator (33) can reach different support modules (17, 18).
10: The bending machine as claimed in claim 8, wherein the manipulator (33) comprises a tensioning device (44) with a carrier element (47).
11: The bending machine as claimed in claim 1, wherein each of the support modules (17, 18) has a separate actuator (50) and can be displaced by the latter in longitudinal direction (21) of the bending machine (1).
12: The bending machine as claimed in claim 1, wherein for each support module (17, 18) there is an emergency brake (49), by means of which the support module (17, 18) can be fixed in position.
13: The bending machine as claimed in claim 2, wherein the individual segments (28) of the support elements (24, 25) are coupled to one another by means of an elastic coupling element (51).
14: The bending machine as claimed in claim 1, wherein the individual segments (28) of the support elements (24, 25) each have a roller guide by means of which they are guided in a support module (17, 18).
Description
[0020] For a better understanding of the invention the latter is explained in more detail with reference to the following Figures.
[0021] In a much simplified, schematic view:
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[0033] First of all, it should be noted that in the variously described exemplary embodiments the same parts have been given the same reference numerals and the same component names, whereby the disclosures contained throughout the entire description can be applied to the same parts with the same reference numerals and same component names. Also details relating to position used in the description, such as e.g. top, bottom, side etc. relate to the currently described and represented figure and in case of a change in position should be adjusted to the new position.
[0034]
[0035] As shown clearly in
[0036] The blank-holder 6 can be arranged displaceably on the machine frame 4 in vertical direction by a guide rail system 8 9. On the underside the blank-holder 6 can have a blank-holder surface 10 which is provided for contacting the metal sheet 3.
[0037] On the front side 11 of the blank-holder 6 a blank-holder edge 12 is formed which can be used as a bending edge with the workpiece. The blank-holder surface 10 is delimited on the front side 11 of the blank-holder 6 by the blank-holder edge 12.
[0038] To perform a bending process the metal sheet 3 to be bent is clamped between the clamping base 5 and the blank-holder 6. On the front side 11 of the blank-holder 6 a bending tool 13 is arranged by means of which the clamped metal sheet 3 can be bent.
[0039] On the rear side 14 of the blank-holder 6 or the clamping base 5 a support device 15 is formed which is used for supporting the metal sheet 3. The support device 15 has a support surface 16 on which the metal sheet 3 to be bent is supported or can be mounted. The support surface 16 of the support device 15 is preferably aligned in a plane with the support surface 7 of the clamping base 5, so that a metal sheet 3 placed on the clamping base 5 and the support device 15 lies horizontally on the latter.
[0040] The support device 15 comprises a first support module 17 and a second support module 18, which form a first support surface 19 and a second support surface 20. The support surface 16 of the support device 15 is thus formed in particular by the first support surface 19 and/or the second support surface 20. In other words the first support surface 19 and the second support surface 20 are part of the support surface 16.
[0041] At least one of the two support modules 17, 18 can be displaced horizontally in longitudinal direction 21 of the bending machine 1. The longitudinal direction 21 of the bending machine 1 is aligned to be parallel to the blank-holder edge 12.
[0042] By means of the first support module 17 or the second support module 18, in particular its limited first support surface 19 or second support surface 20, a first gap 22 is formed which is located between the first support module 17 and second support module 18. The first gap 22 is at right angles to the blank-holder edge 12.
[0043] In addition to the first support module 17 or the second support module 18 it is possible for a further support module 23 to be formed which is designed in the same way as the first or second support module 17, 18. Furthermore, a plurality of additional support modules 23 can be arranged on the support device 15.
[0044] Furthermore, it is possible that at least one of the support modules 17, 18, 23 has a first support element 24 and a second support element 25, by means of which in particular the support surfaces 19, 20 are formed. Between the two support elements 24, 25 a second gap 26 is formed which is aligned to be parallel to the blank-holder edge 12. The second gap 26 can be varied by displacing the first support element 24 and/or by displacing the second support element 25 in position and in size.
[0045] By means of the described configuration of the support modules 17, 18, 23 it is possible for the metal sheets 3, which have a prebent tab 27, to be placed flat on the support device 15. This is achieved in particular in that the tab 27 can be mounted in the second gap 26.
[0046] Furthermore, by means of the design of the support device 15 with displaceable support modules 17, 18, 23 it is possible that a tab 27 can also be mounted in the first gap 22 between the individual support modules 17, 18, 23.
[0047] The tab 27 can be arranged by means of the highly variable configuration of the bending machine 1 either parallel to the bending edge of the metal sheet section to be bent, at right angles thereto or at a wider angle therefrom.
[0048] As shown in
[0049] Furthermore, it is possible that for each support module 17, 18, 23 an actuator 30 is provided by means of which at least one of the support elements 24, 25 arranged on a support module 17, 18, 23 can be adjusted. The actuator 30 can be designed as a rotary drive, such as an electric motor rotary drive, e.g. a servomotor. By means of the actuator 30 it is possible for the second gap 26 to be adjusted at least in size or position. In this way a gap width 31 of the second gap 26 can be controlled.
[0050] According to a first embodiment variant it is possible for two actuators 30 to be provided for each support module 17, 18, 23, by means of which the first 24 and the second support element 25 can be adjusted independently of one another. In this way the position or the gap width 31 of the second gaps 26 can be varied freely.
[0051] In a further embodiment variant it is possible for the first support element 24 and the second support element 25 to be coupled to one another by a connecting element 32 and thus be adjustable by a common actuator 30. In this case the gap width 31 can be adjusted in advance and during the automatic operation of the support device 15 by means of one actuator 30 only the position of the second gap 26 can be varied and the gap width 31 remains constant.
[0052] According to another alternative variant the support elements 24, 25 cannot be adjusted by an actuator 30 but the latter can be adjusted manually.
[0053] The actuator 30 can be torque-coupled to the storage roll 29 by various different connecting means. Different connecting means are explained in more detail in the following in the individual
[0054] To displace the individual support modules 17, 28, 23 in longitudinal direction 21 a manipulator 33 can be provided which can be controlled by the machine control. The manipulator 33 can have a manipulator arm 34 on which a coupling element 35 can be formed which is used for coupling the manipulator arm 34 to the individual support modules 17, 18, 23. The manipulator 33 can be used to adjust the gap width 36 of the first gap 22.
[0055] Furthermore, the manipulator arm 34 can be designed for manipulating metal sheets 3. In a further alternative variant the support elements 24, 25 can be adjusted by the manipulator arm 34 and thus the second gap 26 and the second gap width 31 can be adjusted.
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[0058] In the embodiment in
[0059] Alternatively to the embodiment variant with a guide roller system 38 a sliding guide can be formed, wherein a sliding element can engage in the guide rail 37. The sliding element can be designed for example as a sliding block which is mounted in the guide rail 37.
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[0062] In the embodiment according to
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[0071] Both in the embodiment according to
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[0073] In this embodiment for each support module 17, 18, 23 an actuator 50 is provided which is used for adjusting the support modules. In this way the support modules 17, 18, 23 can be adjusted at the same time and independently of one another in longitudinal direction 21.
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[0075] In this embodiment the individual segments 28 of the first support element 24 and/or the second support element 25 are coupled to one another by means of an elastic coupling element 51. The elastic coupling element 51 can be formed for example by a rubber element.
[0076] The control of the drive units for the individual driving moments for controlling the gap width 36 of the first gap 22 and/or the gap width 31 of the second gap 26 can be performed by a central computer unit which is also used for controlling the bending process of the bending machine 1.
[0077] The embodiments show possible embodiment variants of the bending machine 1, wherein it should be noted at this point that the invention is not restricted to the specifically shown embodiment variants thereof, but rather various different combinations of the individual embodiment variants are possible and this variability due to the teaching on technical procedure of the present invention is within the skillset of an expert in this technical field.
[0078] Furthermore, also individual features and combinations of features of the various different shown and described embodiments can in themselves represent independent solutions according to the invention.
[0079] The problem addressed by the independent solutions according to the invention can be taken from the description.
[0080] All of the details relating to value ranges in the present description are defined such that the latter include any and all part ranges, e.g. a range of 1 to 10 means that all part ranges, starting from the lower limit of 1 to the upper limit 10 are included, i.e. the whole part range beginning with a lower limit of 1 or above and ending at an upper limit of 10 or less, e.g. 1 to 1.7, or 3.2 to 8.1 or 5.5 to 10.
[0081] Mainly the individual embodiments shown in
[0082] Finally, as a point of formality, it should be noted that for a better understanding of the structure of the bending machine 1 the latter and its components have not been represented to scale in part and/or have been enlarged and/or reduced in size.
TABLE-US-00001 List of reference numerals 1 bending machine 2 pivot bending machine 3 metal sheet 4 machine frame 5 clamping base 6 blank-holder 7 support surface of clamping base 8 guide rail system 9 vertical direction 10 blank-holder surface 11 front side 12 blank-holder edge 13 bending tool 14 rear side 15 support device 16 support surface of the support device 17 first support module 18 second support module 19 support surface of first support module 20 support surface of second support module 21 longitudinal direction 22 first gap 23 additional support module 24 first support element 25 second support element 26 second gap 27 tab 28 segment 29 storage roll 30 actuator 31 gap width of second gap 32 connecting element 33 manipulator 34 manipulator arm 35 coupling element 36 gap width of first gap 37 guide rail 38 guide roller system 39 axle pin 40 drive shaft 41 rotary drive 42 belt drive 43 drive unit 44 tensioning device 45 drive roller 46 reversing roller 47 carrier element 48 gear rack 49 emergency brake 50 actuator 51 elastic coupling element