SHEARING DEVICE AND BRUSH PRODUCTION MACHINE WITH SHEARING DEVICE, AND USE OF A SHEARING DEVICE
20200281348 ยท 2020-09-10
Assignee
Inventors
Cpc classification
B26D7/0666
PERFORMING OPERATIONS; TRANSPORTING
B26D1/03
PERFORMING OPERATIONS; TRANSPORTING
B26D2007/2657
PERFORMING OPERATIONS; TRANSPORTING
B26D7/2628
PERFORMING OPERATIONS; TRANSPORTING
B26D1/38
PERFORMING OPERATIONS; TRANSPORTING
B26D2001/006
PERFORMING OPERATIONS; TRANSPORTING
B26D1/385
PERFORMING OPERATIONS; TRANSPORTING
B26D1/365
PERFORMING OPERATIONS; TRANSPORTING
International classification
B26D1/36
PERFORMING OPERATIONS; TRANSPORTING
B26D7/26
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A shearing device (1) having a blade (2) with at least one blade cutting edge (5) which is helically coiled, and rotatable, about an axis of rotation (R) of the blade (2). The blade cutting edge (5) is assigned a counterpart blade cutting edge (4) of a counterpart blade (3). The shearing movements, by which for example bristle filaments (7) of brushes (8) for machining can be cut to length, are generated by relative rotational movement of the at least one helically coiled blade cutting edge (5) with respect to the preferably static counterpart blade cutting edge (4) of the counterpart blade (3). Since the blade (2) and the counterpart blade (3) can keep their spacing to one another constant during operation, there is a relatively low risk of injury during the use thereof.
Claims
1. A shearing device (1), comprising: a blade (2) having at least one blade cutting edge (5); a counterpart blade (3) assigned to the blade (2); the blade (2) is rotatable about an axis of rotation (R) in order to generate a cutting movement relative to a counterpart blade cutting edge (4) of the counterpart blade (3); the at least one blade cutting edge (5) is helically coiled about the axis of rotation (R); and the counterpart blade cutting edge (4) includes cutting notches (6) to form a notched counterpart blade cutting edge.
2. The shearing device (1) according to claim 1, wherein at least one of: (a) the at least one helically coiled blade cutting edge (5) extends all the way around the axis of rotation (R) of the blade (2) at least once, (b) the blade (2) and the counterpart blade (3) have a spacing of between 0 mm and 0.5 mm to one another, or (c) a spacing between the blade (2) and the counterpart blade (3) is constant during operation of the shearing device (1).
3. The shearing device (1) according to claim 1, wherein the counterpart blade cutting edge (4) has a main extent direction which is at least one of oriented transversely with respect to a main extent direction of the at least one helically coiled blade cutting edge (5), oriented in a direction of the axis of rotation (R), or in a direction parallel to the axis of rotation (R) of the blade (2).
4. The shearing device (1) according to claim 1, wherein the blade (2) has a cylindrical main body (10), on which the at least one helically coiled blade cutting edge (5) is at least one of arranged or formed, or the at least one blade cutting edge (5) comprises two or more helically coiled blade cutting edges (5).
5. The shearing device (1) according to claim 1, further comprising a suction extraction device (11) assigned to the blade (2).
6. The shearing device (1) according to claim 5, further comprising a suction extraction housing (12) which at least partially houses the blade (2).
7. The shearing device (1) according to claim 6, wherein the counterpart blade (3) is at least one of arranged or formed on the suction extraction housing (12).
8. The shearing device (1) according to claim 1, wherein the cutting notches in the counterpart blade (3) are asymmetrical cutting notches (6).
9. The shearing device (1) according to claim 1, wherein the cutting notches (6) in the counterpart blade (3) have an acute opening angle.
10. The shearing device (1) according to claim 1, wherein cutting notches (6) of the counterpart blade (3) have cutting edges (9) which are at least one of shorter than counterpart edges (13) assigned to the cutting edges (9) or have a steeper gradient than the counterpart edges (13) assigned to the cutting edges (9).
11. The shearing device (1) according to claim 1, wherein cutting notches (6) of the counterpart blade (3) have a notch depth between 0.1 mm and 10 mm.
12. The shearing device (1) according to claim 1, wherein the at least one helically coiled blade cutting edge (5) has a gradient angle between 0.1 and 45.
13. The shearing device (1) according to claim 1, wherein the counterpart blade cutting edge (4) is a profiled counterpart blade cutting edge having at least one of an undulating profile, a convex profile, a concave profile, or a convex-concave profile, and the at least one helically coiled blade cutting edge (5) is a profiled blade cutting edge having at least one of an undulating profile, a convex profile, a concave profile, or a convex-concave profile, or an envelope of the blade (4) has at least one of an undulating profile, a convex profile, a concave profile, or a convex-concave profile.
14. The shearing device (1) according to claim 1, wherein the cutting notches (6) of the counterpart blade cutting edge (4) have a wedge angle of between 45 and 90, and the at least one helically coiled blade cutting edge (5) has a wedge angle of between 10 and 90.
15. The shearing device (1) according to claim 1, wherein the at least one helically coiled blade cutting edge (5) has a clearance angle of between 1 and 30, and the counterpart blade (3) has an acute or an obtuse bevel angle which is enclosed between a bevel (14) adjoining the counterpart blade cutting edge (4) and a longitudinal plane of the counterpart blade (3).
16. The shearing device (1) according to claim 1, wherein a wedge angle of the notches (6) of the counterpart blade cutting edge (4) is greater than or equal to a bevel angle of the counterpart blade (3) which is enclosed between a bevel (14) adjoining the counterpart blade cutting edge (4) and a longitudinal plane of the counterpart blade (3).
17. The shearing device (1) according to claim 1, wherein the at least one helically coiled blade cutting edge (5) is arranged on a web (16) which runs in helically coiled fashion around the axis of rotation (R) of the blade (2), and the web (16) has a web width of 0.3 mm to 5 mm and a web height of 1 mm to 20 mm.
18. The shearing device (1) according to claim 1, wherein the blade (2) has, between the at least one helically coiled blade cutting edge (5) and a flank (17) of the blade cutting edge (5), a transition surface (18) which is parallel to the axis of rotation (R) of the blade (2) and has a width, measurable in a direction of the axis of rotation (R), of between 0.001 mm and 0.3 mm.
19. The shearing device (1) according to claim 1, wherein cutting notches (6) of the counterpart blade (3) have a profile direction which is oriented at right angles or obliquely with respect to a main extent direction of the counterpart blade cutting edge (4).
20. The shearing device (1) according to claim 1, further comprising a holder (19) for a workpiece (8).
21. The shearing device (1) according to claim 1, further comprising a multi-axis robot (20) for at least one of: handling a workpiece (8), feed of the workpiece, or manipulation of the workpiece (8) at the blade (2).
22. The shearing device (1) according to claim 1, further comprising a multi-axis robot (20) on which at least one of the blade (2) or the counterpart blade (3) are arranged.
23. The shearing device (1) according to claim 1, further comprising a bristle displacement device (21).
24. A brush production machine (22) comprising the shearing device (1) according to claim 1.
25. A method of shearing bristle filaments to length, comprising: feeding bristle filaments to the shearing device (1) according to claim 1; and cutting the bristle filaments (7) to length.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0037] The invention will be described in more detail below on the basis of multiple exemplary embodiments. The invention is however not restricted to these exemplary embodiments. Further exemplary embodiments will emerge from combination of the features of individual or several patent claims with one another and/or in the combination of individual or several features of the exemplary embodiments. In the figures, in part in a highly schematic illustration:
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DETAILED DESCRIPTION
[0055] In the following description of various embodiments of the invention, elements which correspond in terms of their function are denoted by corresponding reference designations even in the case of different design or shaping.
[0056] All of the figures show constituent parts of different embodiments of shearing devices which are denoted as a whole by 1. Unless separately stated, the following description relates to all embodiments of the shearing devices 1.
[0057] The shearing device 1 has a blade 2 and a counterpart blade 3 assigned to the blade 2. The blade 2 is rotatable about an axis of rotation R in order to generate a cutting movement relative to a counterpart blade cutting edge 4 of the counterpart blade 3. The blade 2 of the shearing devices 1 illustrated in the figures has a total of four blade cutting edges 5, which are helically coiled about the axis of rotation R of said blade. It can be clearly seen that each helically coiled blade cutting edge 5 runs all the way around the axis of rotation R of the blade 2 multiple times.
[0058] It is clear from
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[0060] All of the counterpart blades 3 illustrated in the figures are counterpart blade 3 whose counterpart blade cutting edge 4 is a notched counterpart blade cutting edge provided with cutting notches 6.
[0061] Due to the cutting notches 6 of the counterpart blade cutting edge 4, it is possible for bristle filaments 7 of brushes 8 for machining to be held on the counterpart blade 3. By the blade cutting edges 5 rotating about the axis of rotation R, it is then possible for the bristle filaments 7 of the brushes 8 for machining, which bristle filaments are situated in the cutting notches 6, to be reliably severed without the bristle filaments 7 being able to deflect to too great an extent when the rotating blade cutting edges 5, during the cutting movement caused by the rotation about the axis of rotation R of the blade 2, move toward cutting edges 9 of the cutting notches 6.
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[0063] The shearing devices shown in
[0064] In the exemplary embodiment of a shearing device 1 illustrated in
[0065] The enlarged detail views of the counterpart blades 3 (see
[0066] In the exemplary embodiment of the counterpart blade 3 illustrated on an enlarged scale in
[0067] The counterpart edges 13 assigned to the cutting edges 9 enclose an angle of between 30 degrees and 80 degrees with the main extent direction PF.1 of the counterpart blade cutting edge 4, which in the use position of the counterpart blade 3 is oriented parallel to an axis of rotation R of the blade 2, and said counterpart edges are accordingly provided with a shallower gradient than the cutting edges 9.
[0068] The cutting notches 6 of the counterpart blades 3 illustrated in the figures have a notch depth of between 0.1 mm and 10 mm. The notch depths may be selected in a manner dependent on the material that is to be cut by the shearing device 1.
[0069] The helically coiled blade cutting edges 5 of the blades 2 shown in the figures have a gradient angle which may amount to between 0.1 degrees and 45 degrees depending on the usage situation.
[0070]
[0071] The blade cutting edges 5 of the blades 2 are profiled correspondingly to the profile of the counterpart blade cutting edges 4 assigned thereto. Accordingly, the blade 2 illustrated in
[0072] The blade cutting edges 5 shown in the figures are of uninterrupted form. It is however basically possible for the blade cutting edges 5 to be equipped with notches or serrations or recesses. This can expediently influence the cutting behaviour of the shearing device 1 in a manner dependent on the material for cutting.
[0073] The counterpart blade cutting edge 4 and in particular the cutting notches 6 of the counterpart blade cutting edge 4 of the counterpart blade 3 shown in the figures have a wedge angle of between 45 degrees and 90 degrees, in particular between 85 degrees and 90 degrees. Here, a wedge angle may be understood to mean the angle enclosed between the counterpart blade cutting edge 4 and an imaginary longitudinal plane of the counterpart blade 3.
[0074] The helically coiled blade cutting edges 5 have wedge angles between 10 degrees and 90 degrees.
[0075] The helically coiled blade cutting edges 5 furthermore have clearance angles of between 1 degree and 30 degrees. The counterpart blades 3 may have an acute or an obtuse bevel angle, wherein the bevel angle is the angle enclosed between a bevel 14 adjoining the counterpart blade cutting edge 4 and an imaginary longitudinal plane of the counterpart blade 3. The bevel angle of the counterpart blades 3 may amount to between 5 degrees and 45 degrees or else between 45 degrees and 120 degrees.
[0076] In the case of the counterpart blades 3 shown in
[0077] The helically coiled blade cutting edges 5 of the blades 2, shown in the figures, of the shearing devices 1 are each arranged on a web 16 which runs in helically coiled encircling fashion around the respective axis of rotation R of the blade 2. The webs 16 have a web width of between 0.3 mm and 5 mm and a web height of 1 mm to 20 mm, and may be produced for example by milling machining of the main body 10.
[0078] The blade 2 shown in
[0079] In
[0080] The rest of the counterpart blades 3 have cutting notches 6, the profile direction of which is oriented obliquely with respect to a main extent direction of the counterpart blade cutting edge 4, and also obliquely with respect to the axis of rotation R of the blade 2, when the counterpart blade 3 is situated in its use position on the shearing device 1. The orientation of the profile directions of the cutting notches 6 may in this case amount to between 10 degrees and 80 degrees. These obliquely oriented cutting notches 6 result in relatively small wedge angles at the cutting edges 9 of the cutting notches 6, which can ultimately promote a finer cutting pattern.
[0081] Each shearing device 1 shown in the figures furthermore has a holder 19 for a workpiece, in this case a brush 8. In the case of the shearing device 1 shown in
[0082] The shearing device 1 shown in
[0083] The shearing device 1 shown in
[0084] The shearing device 1 as per
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[0086] The rotary indexing table 24 is assigned an infeed station 26 and a removal station 27 of the brush production machine 22. By the removal station 27, machined brushes 8 can be removed from the rotary indexing table 24 of the brush production machine 22. By the infeed station 26, brushes 8 that have not yet been machined are fed to the rotary indexing table 24 and via the latter to the shearing device 1 for the machining of the bristle filaments 7 of the brushes 8.
[0087] The shearing device 1 shown in the figures is thus suitable for cutting bristle filaments 7 to length during the machining and production of brushes 8.
[0088] The invention is concerned with improvements in the technical field of shearing devices. For this purpose, inter alia, the shearing device 1 is provided, which has a blade 2 with at least one blade cutting edge 5 which is helically coiled, and rotatable, about an axis of rotation R of the blade 2. The blade cutting edge 5 is assigned a counterpart blade cutting edge 4 of a counterpart blade 3. The shearing movements, by which for example bristle filaments 7 of brushes 8 for machining can be cut to length, are generated by the relative rotational movement of the at least one helically coiled blade cutting edge 5 with respect to the preferably static counterpart blade cutting edge 4 of the counterpart blade 3. Since the blade 2 and the counterpart blade 3 can keep their spacing to one another constant during the operation of the shearing device 1, the shearing device 1 is distinguished by a relatively low risk of injury during the use thereof.
LIST OF REFERENCE DESIGNATIONS
[0089] 1 Shearing device [0090] 2 Blade [0091] 3 Counterpart blade [0092] 4 Counterpart blade cutting edge [0093] 5 Blade cutting edge [0094] 6 Cutting notch [0095] 7 Bristle filament [0096] 8 Brush [0097] 9 Cutting edge in 6 [0098] 10 Main body of 2 [0099] 11 Suction extraction device [0100] 12 Suction extraction housing [0101] 13 Counterpart edge in 6 [0102] 14 Bevel on 3 [0103] 15 Front side of 3 [0104] 16 Web on 2 [0105] 17 Flank on 2 [0106] 18 Transition surface on 2 [0107] 19 Holder [0108] 20 Multi-axis robot [0109] 21 Bristle displacement device [0110] 22 Brush production machine [0111] 23 Control unit [0112] 24 Rotary indexing table [0113] 25 Negative-pressure source of 11 [0114] 26 Infeed station [0115] 27 Removal station