BENDING TOOL AND GRIPPING DEVICE FOR MANIPULATING THE BENDING TOOL
20170232493 ยท 2017-08-17
Assignee
Inventors
Cpc classification
Y10T483/1729
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
International classification
Abstract
The invention concerns a bending tool (6) with an actuating element (19) accessible outside the tool receptacle, with coupled to it a locking element (20) with a locking catch (21) for securing the bending tool (6) in the tool receptacle. The first end portion (32) of the actuating element (19) has an actuating face (33) arranged on the end side and the second end portion (34) of the actuating element (19) has an actuating recess (35).
The invention further concerns a gripping device (14) for manipulating a bending tool (6), comprising a first gripping arm (59) and a second gripping arm (60) displaceable relative to the first gripping arm (59) in the clamping direction (64), said gripping arms (59) being formed to engage in a gripping groove (23, 24) of the bending tool (6) and to clamp the bending tool (6). Also formed is an unlocking member (65) for actuating an actuating element (19) of the bending tool (6), said unlocking member (65) being longitudinally displaceable normally to the clamping direction (64) relative to the gripping arms (59, 60).
Claims
1: Bending tool (6) for insertion in a tool receptacle (5), comprising a tool body (15), a locking element (20) with a locking catch (21) for securing the bending tool (6) in the tool receptacle (5) by engaging in a recess (22) arranged in the tool receptacle (5), the locking element (20) being coupled to an actuating element (19) accessible outside the tool receptacle (5), with a base position (27) of the actuating element (19) corresponding to a locked position (28) of the locking element (20) and an actuating position (25) of the actuating element (19) corresponding to an unlocked position (26) of the locking element (20), and with the tool body (15) having a first (23) and a second gripping groove (24) that are arranged opposite to each other on the tool body (15), with a first end portion (32) of the actuating element (19) being accessible in the region of the first gripping groove (23) and a second end portion (34) of the actuating element (19) being accessible in the region of the second gripping groove (24), comprising the first end portion (32) of the actuating element (19) having an actuating face (33) arranged on the end side and the second end portion (34) of the actuating element (19) having an actuating recess (35).
2: Bending tool as in claim 1, comprising the actuating element (19) being rotationally symmetric in the region of the second end portion (34), with the actuating recess (35) configured in the form of a circular groove (36).
3: Bending tool as in claim 1, comprising the actuating element (19) comprising a first actuating component (37) at which the first end portion (32) of the actuating element (19) is arranged and a second actuating component (38) at which the second end portion (34) of the actuating element (19) is arranged, where the first actuating component (37) and the second actuating component (38) are joined together such that the locking element (20) is clamped between the two actuating components (37).
4: Bending tool as in claim 3, comprising the second actuating component (38) having a screw section (39) that is screwed into a threaded hole (40) in the first actuating component (37), with the screw section (39) then having a projection (41) for clamping the locking element (20).
5: Bending tool as in claim 3, comprising the second actuating component (38) having a guide section (44) that is rotationally symmetric and said guide section (44) being received in a through-hole (45) in the tool body (15).
6: Bending tool as in claim 5, comprising the guide section (44) being arranged to connect up to the screw section (39), with the external diameter (46) of the guide section (44) being larger than the external diameter (47) of the screw section (39) and with a circular ring projection (48) being arranged connecting up to the guide section (44).
7: Bending tool as in claim 1, comprising the first (23) and second gripping groove (24) being of a dovetail shape and arranged parallel to each other.
8: Bending tool as in claim 1, comprising a centring recess (57) that widens toward the front being arranged on the tool body (15) in the middle of the first (23) and the second gripping groove (24).
9: Bending tool as in claim 1, comprising a compression spring (29) being arranged in a spring receptacle (30) in the tool body (15) that acts on the back (31) of the locking element (20).
10: Gripping device (14) for manipulating a bending tool (6) as in claim 1, comprising a first gripping arm (59) and a second gripping arm (60) that is displaceable relative to the first gripping arm (59) in the clamping direction (64), said gripping arms (59) being configured to engage in a gripping groove (23, 24) in the bending tool (6) and to clamp the bending tool (6), characterised by the fact that an unlocking member (65) for actuating an actuating element (19) of the bending tool (6) is further provided, said unlocking member (65) being longitudinally displaceable normally to the clamping direction (64) relative to the gripping arms (59, 60).
11: Gripping device as in claim 10, comprising the unlocking member (65) being mounted on the second gripping arm (60) by a non-turning longitudinal guide (72), through which the unlocking member (65) is positioned longitudinally displaceably on the second gripping arm (60), in particular by at least two guide bolts (74) that act together with a slot (75) on the unlocking member (65).
12: Gripping device as in claim 10, comprising both the first gripping arm (59) and the second gripping arm (60) each having a recess (66) in the centre of a gripping section (67), with two gripping fingers (70) arranged on each gripping arm (59) through said recess (66), with the unlocking member (65) being moveable in the free space within the recesses (66).
13: Gripping device as in claim 10, comprising a centring protrusion (80) being arranged in the gripping section (67) of the first gripping arm (59) that acts together with a centring recess (57) of the bending tool (6).
14: Gripping device as in claim 10, comprising the front end portion (68) of the first gripping arm (59) having a wear protection element (83), with a wearing face (84) of the wear protection element (83) oriented parallel to the clamping direction (64).
15: Gripping device as in claim 10, comprising the second gripping arm (60) being displaceable relative to the first gripping arm (59) by a first actuator (63).
16: Gripping device as in claim 10, comprising the unlocking member (65) being longitudinally displaceable by a second actuator (76).
17: Gripping device as in claim 10, comprising a gripping catch (79) being arranged on the unlocking member (65) for engaging in an actuating recess (35) of the actuating element (19) of the bending tool (6).
18: Gripping device as in claim 10, comprising a manipulation face (77) being arranged on the unlocking member (65) for displacing an actuating face (33) of the actuating element (19) of the bending tool (6).
Description
[0026] Extremely simplified, schematic depictions show the following:
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[0043] In introduction, let it be noted that in the variously described embodiments, identical parts are provided with identical reference signs or identical component names, and that the disclosures contained in the description as a whole can be carried over analogously to identical parts with identical reference signs or identical component names. Likewise, positional information selected in the description, e.g. above, below, on the side, etc. refer to the directly described and depicted figure and if the position is changed, this positional information carries over analogously to the new position.
[0044]
[0045] The bending press 2 comprises a first displaceable pressing beam 4 in which a tool receptacle 5 is formed for receiving a first bending tool 6. The bending press 2 further comprises a second fixed pressing beam 7 in which is also formed a tool receptacle 5 for receiving a bending tool 6.
[0046] The sheet 3 to be bent is inserted between the bending tools 6 of the first 4 and the second pressing beam 7 for the bending process. The bending tool 6 fixed in the first pressing beam 4 or the first displaceable pressing beam 4 is moved by a press drive unit 8 in the vertical direction upwards or downwards. A computer unit 9 is provided to control the press drive unit 8 and can be coupled to an input and/or display unit 10. The first pressing beam 4 can displaced between an upper end position 11 and a lower end position 12 by the press drive unit 8.
[0047] It can further be specified that the processing system 1 include a manipulation device 13 that can automatically manipulate the sheets 3 to be processed. Alternately, it can also be specified that the sheets 3 to be processed be inserted into the bending press 2 manually.
[0048] As depicted in
[0049] It is further visible from
[0050] Alternately, it is also possible for the bending tool 6 to be inserted into the tool receptacle 5 in the vertical insertion direction 17. For this option for placement of the bending tool 6 into the tool receptacle 5, it is necessary for the bending tool 6 to be formed as specified by the invention and as described in more detail in the other figures. The elements described below allow insertion of the bending tool 6 in the vertical insertion direction 17 without any problem. It is possible to manipulate and grip the bending tool 6 appropriately in particular in conjunction with the invented gripping device 14.
[0051] Multiple bending tools 6 that are formed similarly can be positioned in the tool receptacle 5 and linked together, allowing bending edges 18 of individual bending tools 6 to form one corresponding long processing edge. Another possibility is to position multiple different bending tools 6 in the tool receptacle 5. These different bending tools 6 are then used for different bending processes and can be swapped out individually. If bending tools 6 of different types are used for different work steps, then it is usual for these to be arranged at a certain distance from each other. To provide as flexible a processing system 1 as possible, it is necessary for the bending tools 6 to be braced in the tool receptacle 5 and removed from it again quickly and easily.
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[0054] The locking element 20 has a locking catch 21 that can be moved out if necessary, protruding compared to the tool body 15, by shifting the locking element 20 and can therefore engage in a corresponding recess 22 in the tool receptacle 5 in order to secure the bending tool 6 in the vertical insertion direction 17. It is further also possible to shift the locking element 20 in the tool body 15 in such a way that the locking catch 21 does not engage in the recess 22 in the tool receptacle 5 and thus that the bending tool 6 is freed from the tool receptacle 5 to move in the vertical insertion direction 17.
[0055] It is further visible from
[0056] However, it is not mandatory for the gripping grooves 23, 24 to take the form of a groove, but is conceivable that they might, for example, take the form of simple drilled holes into which a gripping device 14 can engage.
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[0058] In the view in
[0059] In the additional depiction in
[0060] As is visible from viewing
[0061] In order to join and/or attach the two actuating components 37, 38 to each other, it can be specified that the second actuating component 38 have a screw section 39 that acts together with a threaded hole 40 of the first actuating component 37. It can further be specified that a projection 41 be placed at the end of the screw section 39 by means of which the locking element 20 can be clamped between the first actuating component 37 and the second actuating component 38. In particular, it can be specified here that locking element 20 have a through-hole through which the screw section 39 of the second actuating component 38 extends, allowing the locking element 20 to be received between the two actuating components 37, 38.
[0062] In order to screw the second actuating component 38 into the first actuating component 37, it can be specified that a hexagon socket 43 be arranged in the second end portion 34 of the actuating element 19, into which a hexagon socket key can engage in order to turn the second actuating component 38 relative to the first actuating component 37.
[0063] It can further be specified that the second actuating component 38 have a guide section 44 after the screw section 39, also designed to be rotationally symmetric. It can be specified here that a through-hole 45 be provided in the tool body 15 that extends from the first gripping groove 23 to the second gripping groove 24 and into which the actuating element 19 is received. In particular, it can be specified that the guide section 44 be received in the through-hole 45 and thus that the actuating element 19 be moveable back and forth between base position 27 and actuating position 25. A loose fit is preferred between the guide section 44 and the through-hole so that the actuating element 19 can be shifted easily. It can further be specified that a sleeve bearing socket or other material with good sliding properties be integrated into the through-hole 45 or the guide section 44 in order to allow easy movement of the actuating element 19.
[0064] To obtain the projection 41 for clamping the locking element 20 on the actuating element 19, it is necessary for an external diameter 46 of the guide section 44 to be chosen to be greater than an external diameter 47 of the screw section 39. It can further be specified that a ring projection 48 be arranged at the end of the guide section 44 on the second actuating component 38 to limit the displacement of the actuating element 19.
[0065] As is visible from
[0066] The locking element receptacle 49 is arranged in the region of the first gripping groove 23. The actuating element receptacle 51 is arranged in the region of the second gripping groove 24. The spring receptacle 30 is arranged directly on the bottom face 50 of the locking element receptacle 49.
[0067] It can further be specified that at least one clamping recess 53 be arranged in the tool body 15 in which clamping jaws 54 of the tool receptacle 5 can engage and the bending tool 6 can thus be fixed in the tool receptacle 5.
[0068] It can further be specified that the locking element 20, especially on its locking catch 21, have a bevel 55 that is slanted in the direction of the receptacle section 56 of the bending tool 6. This makes it possible to insert the bending tool 6 into the tool receptacle 5 in the vertical insertion direction 17 from below without the actuating element 19 having to be actuated by the gripping device 14, as the bevel 55 and, correspondingly, the tool receptacle 5 press the locking element 20 out of its locked position 28 into its unlocked position 26.
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[0074] The construction of the gripping device 14 is explained/illustrated by viewing together
[0075] As is visible from
[0076] It is further specified that the gripping device 14 have an unlocking member 65 that is received between the two gripping arms 59, 60. It can be specified here that a recess 66 be formed at both the first gripping arm 59 and at the second gripping arm 60, with the unlocking member 65 being moveable in the free space created by the recess 66. The recess 66 can extend from a gripping section 67 or a front end portion 68 to a back gripping arm area 69.
[0077] In particular, it can be specified that the recess 66 in the gripping arms 59, 60 form two gripping fingers 70 at the gripping section 67. As is particularly visible in
[0078] It can further be specified that the unlocking member 65 be arranged on the second gripping arm 60 using a non-turning longitudinal guide 72 such that it can be displaced in the direction of movement 73 relative to the first gripping arm 59 and/or to the second gripping arm 60. The non-turning longitudinal guide 72 can be realised by means of two guide bolts 74 that extend crossways through the second gripping arm 60 and act together with a slot 75 in the unlocking member 65. It can additionally be specified that the gripping device 14 comprise a second actuator 76 by which the unlocking member 65 can be moved in the direction of movement 73 relative to the second gripping arm 60.
[0079] Both the first actuator 63 and the second actuator 76 can, for example, be realised in the form of a pneumatic or hydraulic cylinder. Alternately, it is for example also conceivable for an electric centring actuator or a linear motor to be used as actuator.
[0080] The unlocking member 65 is formed in order to be able to actuate the actuating element 19 of the bending tool 6 and so be able to displace the locking element 20 between its unlocked position 26 and its locked position 28. In this way, the bending tool 6 can be inserted into and removed from the tool receptacle 5.
[0081] The unlocking member 65 has a manipulation face 77 that can act together with the actuating face 33 of the actuating element 19 and thereby move it. During actuation, the manipulation face 77 acts as a pressure element on the actuating face 33. It can further be specified that the unlocking member 65 be arranged in a front end portion 78 in which the manipulation face 77 is also arranged, have a gripping catch 79 that can engage in the actuating recess 35 of the actuating element 19, and can therefore displace the actuating element 19 out of its base position 27 into its actuating position 25 through a pulling motion. It is preferable for the gripping catch 79 to be semi-circular so that the actuating recess 35, which is formed as a circular groove 36 on the rotationally symmetric second actuating component 38, can be gripped well by the gripping catch 79.
[0082] As is particularly well-visible in
[0083] It is further possible for the gripping device 14 to include a wear protection element 83 arranged in the front end portion 68 of the first gripping arm 59. The wear protection element 83 has a wearing face 84. It can further be specified that the wear protection element 83 be affixed to the first gripping arm 59 by a fastener 85.
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[0086] The second actuator 76 for moving the unlocking member 65 is depicted schematically in
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[0088] In a first process step, the gripping device 14 is moved to the bending tool 6 such that the gripping fingers 70 of the first and/or second gripping arms 59, 60 are positioned within the second gripping groove 24. The gripping device 14 is thereby displaced downwards by the manipulating device 13 in a subsequent process step such that the gripping fingers 70 of the first gripping arm 59 engage with the second gripping groove 24 and touch each other.
[0089] Subsequently, in another process step depicted in
[0090] In another process step as per
[0091] Now the bending tool 6 can be moved freely out of the tool receptacle 5 or inserted into it.
[0092] To take out the bending tool 6, the actuating element 19 can now in reverse order be brought back to its base position 27 and the gripping device 14 disengaged from the bending tool 6.
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[0094] In a first process step, the gripping device 14 is moved to the bending tool 6 such that the gripping fingers 70 of the first and/or second gripping arms 59, 60 are positioned within the first gripping groove 23. The gripping device 14 is thereby displaced downwards by the manipulating device 13 in a subsequent process step such that the gripping fingers 70 of the first gripping arm 59 engage with the first gripping groove 23 and touch each other.
[0095] Subsequently, in another process step depicted in
[0096] In another process step as per
[0097] Now the bending tool 6 can be moved freely out of the tool receptacle 5 or inserted into it.
[0098] To take out the bending tool 6, the actuating element 19 can now in reverse order be brought back to its base position 27 and the gripping device 14 disengaged from the bending tool 6.
[0099] The example embodiments show possible variations of the bending tool 6 and the gripping device 14; let it be noted at this juncture that the invention is not limited to the specially portrayed variations of embodiments themselves, but that diverse combinations of the individual variations of embodiments are possible and that this possibility of variation falls within the competence of a person active in this technical field based on the teaching regarding technical action provided by this invention.
[0100] Furthermore, individual characteristics or combinations of characteristics from the depicted and described various example embodiments can constitute independent inventive or invented solutions.
[0101] The aim underlying the independent invented solutions can be taken from the description.
[0102] All information regarding ranges of values in this description should be understood to mean that these include any and all partial ranges, e.g. the statement 1 to 10 should be understood to mean that all partial ranges starting from the lower threshold 1 and the upper threshold 10 are included, i.e. all partial ranges begin with a lower threshold of 1 or larger and with an upper threshold of 10 or less, e.g. 1 to 1.7 or 3.2 to 8.1 or 5.5 to 10.
[0103] Above all, the individual embodiments shown in
[0104] As a matter of form, let it be noted that, to facilitate a better understanding of the design of the bending tool 6 and the gripping device 14, these and their components have in places been portrayed not to scale and/or enlarged and/or scaled-down.
TABLE-US-00001 List of reference signs 1 Processing system 2 Bending press 3 Sheet metal 4 First pressing beam 5 Tool receptacle 6 Bending tool 7 Second pressing beam 8 Press drive unit 9 Computer unit 10 Input/display unit 11 Upper end position 12 Lower end position 13 Manipulating device 14 Gripping device 15 Tool body 16 Horizontal displacement direction 17 Vertical insertion direction 18 Bending edge 19 Actuating element 20 Locking element 21 Locking catch 22 Recess in tool receptacle 23 First gripping groove 24 Second gripping groove 25 Actuating position of actuating element 26 Unlocked position of locking element 27 Base position of actuating element 28 Locked position of locking element 29 Spring 30 Spring receptacle 31 Back side of locking element 32 First end portion of actuating element 33 Actuating face 34 Second end portion of actuating element 35 Actuating recess 36 Circular groove 37 First actuating component 38 Second actuating component 39 Screw section 40 Threaded hole 41 Projection 42 Locking element through-hole 43 Hexagon socket 44 Guide section 45 Tool body through-hole 46 Guide section external diameter 47 Screw section external diameter 48 Ring projection 49 Locking element receptacle 50 Bottom surface of locking element receptacle 51 Actuating element receptacle 52 Bottom surface of actuating element receptacle 53 Clamp recess 54 Clamping jaws 55 Bevel 56 Receptacle section 57 Centring recess 58 Axis of symmetry 59 First gripping arm 60 Second gripping arm 61 First gripping arm receptacle 62 Second gripping arm receptacle 63 First actuator 64 Clamping direction 65 Unlocking member 66 Gripping arm recess 67 Gripping section 68 Front end portion of gripping arm 69 Back gripping arm area 70 Gripping finger 71 Centre plane 72 Non-turning longitudinal guide 73 Direction of movement 74 Guide bolt 75 Slotted hole 76 Second actuator 77 Manipulation face 78 Front end portion of unlocking member 79 Gripping catch 80 Centring protrusion 81 Bevel 82 Fastener 83 Wear protection element 84 Wearing face 85 Fastener