TOOL FOR CUTTING A WORKPIECE
20200180049 ยท 2020-06-11
Inventors
Cpc classification
B23D29/00
PERFORMING OPERATIONS; TRANSPORTING
B26D2001/0053
PERFORMING OPERATIONS; TRANSPORTING
B26D2007/013
PERFORMING OPERATIONS; TRANSPORTING
B23D17/00
PERFORMING OPERATIONS; TRANSPORTING
B26D2001/006
PERFORMING OPERATIONS; TRANSPORTING
B26D3/16
PERFORMING OPERATIONS; TRANSPORTING
B23D35/008
PERFORMING OPERATIONS; TRANSPORTING
B23D35/002
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A tool configured to cut a workpiece includes a tool head which has a receiving contour in which the workpiece is received, and a movable cutting edge with a cutting contour. In the course of a cutting process, the cutting edge passes through the receiving contour. The cutting edge is subjected to the effect of an advancement part and can be moved to such an extent in the cutting direction(s) that it can pass all the way through the workpiece. In an embodiment, a position of the cutting edge reached after the cutting edge has passed all the way through the workpiece, the cutting edge, with removal from the advancement part, can be moved out from the cutting direction(s).
Claims
1-15. (canceled)
16. A tool configured to cut a workpiece, comprising: a tool head, which, with respect to an outline, forms a holding frame, which is essentially rectangular with respect to the outer contour, for forming a workspace, which is closed at least in the course of the cutting process, comprising a receiving contour, in which receiving contour the workpiece can be received, wherein the tool head further has a movable cutting edge comprising a cutting contour, wherein the cutting edge passes through the receiving contour in the course of a cutting process, wherein the cutting edge can be acted on by an advancement part, characterized in that a received workpiece can be passed through completely and that, from a position of the cutting edge, which is reached as a result of the complete pass-through, the cutting edge can be moved from the cutting direction(s) by removal from the advancement part, and that the cutting edge is pivotably connected to the advancement part or that the cutting edge can be pivoted relative to the advancement part by a holding part.
17. The tool according to claim 16, wherein the cutting edge can be pivoted relative to the advancement part by an axis, which runs perpendicular to the cutting direction(s).
18. The tool according to claim 16, wherein the cutting edge can be removed from the tool head, from the position, which corresponds to the complete pass-through.
19. The tool according to claim 18, wherein the cutting edge can be pivoted relative to the advancement part by an axis, which runs perpendicular to the cutting direction(s).
20. The tool according to claim 16, wherein the advancement part is connected to the cutting edge by locking in a releasable manner.
21. The tool according to claim 20, wherein the locking connection has a locking arm, which allows for a distancing of the advancement part to the cutting edge without releasing the locking connection.
22. The tool according to claim 16, wherein when the cutting edge is acted on by the advancement part, the force transmission takes place via a stop surface, which is formed separately from the locking arm.
23. The tool according to claim 16, wherein two locking arms are provided, wherein the locking arms are formed so as to be located opposed transversely to the cutting direction(s) with respect to an opening of the receiving contour.
24. The tool according to claim 16, wherein the cutting edge, assigned to a central region, which is present based on a direction transversely to the cutting direction(s), has a guide, which can cooperate with a counter guide of the holding part.
25. The tool according to claim 16, wherein that transversely to the cutting direction(s) and based on a width of the cutting edge also transversely to the width direction (d) of the cutting edge, the cutting edge has a positioner, which can cooperate with a counter positioner of the holding part.
26. The tool according to claim 16, wherein a positioner can be fastened to the holding part for aligning workpieces of smaller diameters.
27. The tool according to claim 16, wherein the advancement part has a fork-shape comprising two fork ends acting on the cutting edge outside of a cutting region of the cutting edge.
28. The tool according to claim 16, wherein the receiving contour is formed on a holding part, which, based on a cross section, is formed in a side-by-side arrangement to the cutting edge.
29. The tool according to claim 28, wherein the holding part forms a traversing surface facing the cutting edge, on which, laterally bearing thereon, the cutting edge moves relative to the holding part.
30. The tool according to claim 16, wherein the cutting edge can be moved relative to the holding part until the one or a plurality of clearances (F) are closed completely.
31. The tool according to claim 16, wherein the holding frame is provided by a holding part, the outline of which is designed in a U-shaped or forked-shaped manner and which is pivotably fastened to base holding parts in the region of a fork end, wherein a corresponding pivot axis (y) runs perpendicular to a central longitudinal axis (x).
32. The tool according to claim 31, wherein a guide part is arranged on one side or on both sides on a traversing surface of the holding part in the width direction on the other side of an outer edge of the cutting edge for the U-shaped enclosure of an edge region of the cutting edge.
33. The tool according to claim 32, wherein the holding part, together with the cutting edge, forms a closed workspace when performing a cutting process.
34. The tool according to claim 32, wherein the holding part can be folded open for receiving a workpiece.
35. The tool according to claim 16, wherein the cutting edge has one or a plurality of cutting edge tips.
36. The tool according to claim 35, wherein the one or plurality of cutting edge tips are designed symmetrically to a traversing line of the cutting edge, which goes through the center of the receiving contour.
37. The tool according to claim 35, wherein in a longitudinal cross section through the cutting edge tip, the cutting edge has a wedge-shaped section, originating from a planar lower surface on one side.
38. The tool according to claim 35, wherein the convex contour (K) is formed as cutting edge.
39. The tool according to claim 35, wherein the protrusion region (V) is formed as cutting edge tip.
40. A tool configured to cut a workpiece, comprising: a tool head having two jaws, of which jaws at least one jaw is a pivot jaw, wherein a first jaw has a concave receiving contour and the second jaw has a convex contour (K) comprising a protrusion region (V), which can be moved into the concave receiving contour, wherein the tool head further has a central longitudinal axis (x), wherein two pivot jaws are formed, that the convex contour of the one pivot jaw is formed as cutting edge, and the protrusion region of the convex contour is formed as cutting edge tip, that, in response to a first contact of the central longitudinal axis (x) by the free end of the concave receiving contour, the region (B), which, when retracting cutting edge tip, comes into contact with the receiving contour, is displaced back with respect to the free end by a backward displacement measure (b), which corresponds to one third or more of the free opening measure (c) of the concave receiving contour, viewed perpendicular to the central longitudinal axis (x), and that the pivotably movable pivot jaws are in each case connected to the piston shaft of a base unit via a control rod, which is eccentrically articulated to the pivot jaws, in the case of essentially symmetrical arrangement of the pivot jaws relative to the central longitudinal axis (x).
41. The tool according to claim 40, wherein a guide part is arranged on one side or on both sides on a traversing surface of the holding part in the width direction on the other side of an outer edge of the cutting edge for the U-shaped enclosure of an edge region of the cutting edge.
42. The tool according to claim 40, wherein the cutting edge has one or a plurality of cutting edge tips.
43. The tool according to claim 42, wherein the one or plurality of cutting edge tips are designed symmetrically to a traversing line of the cutting edge, which goes through the center of the receiving contour.
44. The tool according to claim 42, wherein in a longitudinal cross section through the cutting edge tip, the cutting edge has a wedge-shaped section, originating from a planar lower surface on one side.
45. The tool according to claim 40, wherein the tool head has two pivot jaws.
46. The tool according to claim 45, wherein at least one of the pivot jaws can be moved on a circular arc.
47. The tool according to claim 40, wherein the convex contour (K) is formed as cutting edge.
48. The tool according to claim 40, wherein the protrusion region (V) is formed as cutting edge tip.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0053] The invention is described below by means of the enclosed drawing, which, however, only represents exemplary embodiments. A part, which is only described on the basis of one of the exemplary embodiments and which is not by a different part in the case of a further exemplary embodiment on the basis of the special feature highlighted there, is thus also described as an at least possible available part for this further exemplary embodiment. In the drawing,
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DESCRIPTION OF THE EMBODIMENTS
[0099] What is illustrated and described, initially with reference to
[0100] According to the illustration in
[0101] The base unit 2 can also be formed to receive the tool 1 as hand tool according to the illustration in
[0102] The base unit 2 can also be formed according to the illustration in
[0103] In the base unit 2, oil is pumped from a storage room into the cylinder 9 in response to corresponding actuation, whereby a piston 10 is moved in the direction of its final operating position.
[0104] The tool 1 is arranged on the cylinder 9, which comprises the piston 10, which is provided with a radial seal 11.
[0105] The hydraulic cylinder 9, which is formed essentially in a pot-shaped manner, is formed to be open, facing the tool 1, and serves to guide the piston 10 on the inner wall on the one hand and for connecting the tool 1 on the outer side on the other hand.
[0106] The cylinder 9 comprises a piston shaft 12, which is the support for a cutting edge 13 on the tool side or which, in the case of a two-part design, as will be specified in more detail below, is the support for an advancement part 14 for the cutting edge 13. The tool is connected to the base unit 2 by means of a cylinder section 15. Radially on the inside, the cylinder section 15 forms a stop wall 16, which is permeated by the piston shaft 12. The stop wall 16 serves to support the one end of a cylinder compression spring 17 comprising the piston shaft 12, the other end of which acts on the piston 10.
[0107] In the embodiments illustrated in
[0108] The tool head 18 thereby initially consists essentially of two base holding parts 20, which are secured directly to the cylinder section 15 and which are each preferably designed in a plate-shaped manner, on both sides of a tool center line, which lengthens the central longitudinal axis x in the traversing direction r of the cutting edge 13, and which are arranged evenly spaced apart from this center line. The broadside surfaces of the base holding parts 20 face one another. The clear distance between the base holding parts 20, viewed transversely to the axial direction, is preferably selected to be larger than the thickness of the cutting edge 13 and/or of the advancement part 14, viewed in the same direction.
[0109] The base holding parts 20 are further designed in an essentially fork-shaped manner with reference to the outline, comprising a fork opening facing in the traversing direction r. The fork opening limits the above-described workspace 19 opposite to the traversing direction r.
[0110] A holding part 21, which, in the outline, is designed in an essentially U-shaped or fork-shaped manner, respectively, can further be part of the tool head 18. Said holding part is preferably also designed in a plate-shaped manner. In the case of a design of the tool head 18 as essentially rectangular holding frame, the holding part 21 can be pivotably fastened to the base holding parts 20 as essentially rectangular holding frame in the area of a fork end. The corresponding pivot axis y runs perpendicular to the central longitudinal axis x.
[0111] In a tool head closed position, the holding part 21 can thereby preferably be secured with its other fork end via a displaceable bolt 22 by means of locking.
[0112] To limit the workspace 19 in the traversing direction r, the holding part 21 has a receiving contour 23. Said receiving contour is preferably adapted to the outer contour of a workpiece 24 to be cut, according to the illustration thus in the shape of semicircle, adapted to the outer contour of a pipe to be cut.
[0113] The cutting edge 13 as well as preferably the advancement part 14, which is optionally provided, is designed in a plate-shaped manner, wherein in particular the cutting edge 13 further bears laterally with a broadside surface on a facing traversing surface 25 of the holding part 21. In particular in a cutting position, which is brought forward, the broadside surface of the cutting edge 13 facing away from the holding part 21 is not overlapped by a further region in particular of the tool head 18, can thus essentially be exposed in particular in a position according to the illustration in
[0114] With reference to an outline according to
[0115] In a longitudinal cross section through the cutting edge 13 and in particular in the case at hand through the cutting edge tip 27, the cutting edge 13 has a, for example, planar lower surface 28, via which it glides on the traversing surface 25 of the holding part 21. A wedge-shaped section 29 starts at this lower surface 28. Forming an acute angle of approximately 30 to 45 to the lower surface 28, said wedge-shaped section extends opposite to the traversing direction r. Instead of a preferably continuously planar design, the lower surface 28 can also have one or a plurality of offsets, with which the cutting edge 13 glides on the traversing surface 25.
[0116] The wedge-shaped section 29 results over the entire knife edge 26, thus on both sides of the cutting edge tip 27.
[0117] In particular the cutting edge 13 experiences a guidance in the traversing direction r as a result of an arrangement of two guide parts 30, which are fastened to the holding part 21 on the traversing surface 25. A guide part 30 of this type is in each case assigned to a fork section of the holding part 21, for the respective cooperation with an outer edge 31 of the cutting edge 13, which runs in the traversing direction r.
[0118] In a cross section according to the illustration in
[0119] To perform a cutting process, the tool head 18 with the workspace 19 thereof can be opened by pivoting away or even completely removing the holding part 21. By catching the workpiece 24, which is to be cut, in the workspace 19, the tool head 18 is subsequently closed by correspondingly pivoting back the holding part 21.
[0120] The workpiece 24 abuts on the receiving contour 23 of the holding part 21 in a supporting manner.
[0121] As a result of hydraulic effect, the cutting edge 13 is displaced via the piston shaft 12 in the traversing direction r and thus in the direction of the workpiece 24, wherein, in the case of the design of the workpiece 24, which preferably has a circular cylindrical cross section, the cutting edge tip 27 first hits the jacket surface of the workpiece 24 (see
[0122] In the course of the further displacement of the cutting edge 13 in the traversing direction r, a preferably even severing of the workpiece 24 occurs, from the traversing line, which is also represented by the central longitudinal axis x, evenly to the outside on both sideswith reference to an outline illustration according to
[0123] In a position according to
[0124] The cutting edge 13 can also be moved in the traversing direction r only indirectly via an advancement part 14 (see
[0125] In the contact position, an opening 32 results due to the two fork-shaped designs, which can be adapted to the receiving contour 23 of the holding part 21 with respect to contour and size, furthermore adapted to the workpiece 24 to be cut. An opening 32 comprising a circular disk-shaped opening surface thus results for cutting a tubular workpiece.
[0126] Due to this design, the cutting edge 13 can be removed from the tool head 18 after completely performed cutting process, because said cutting edge is exposed on the other side of the workpiece 24, optionally also between holding part 21 and guide parts 30 (see
[0127] After returning the advancement part 14, the cutting edge 13 can be used again for a next cutting process.
[0128] The cutting edge 13 can furthermore be connected to the advancement part 14 in a captive manner via a flexible band or chain, wherein the length of the band or of the chain provides for the above-described removal of the cutting edge 13. In this respect, the cutting edge 13 can additionally or alternatively be connected to the advancement part 14 via a joint 40 (see
[0129] As can be seen from the illustration in
[0130] While the tool head 18 is formed in a sliding jaw-like manner in the embodiments illustrated in
[0131] The first pivot jaw 33 and the second pivot jaw 34 can be pivoted about a common pivot axis z, which pivot axis z is aligned transversely to the central longitudinal axis x and intersects the latter.
[0132] The pivotably movable pivot jaws 33 and 34 are in each case connected to the piston shaft 12 of the base unit 2 via a control rod 35, which is eccentrically articulated to the pivot jaws 33 or 34, respectively, in particular in the case of preferably essentially symmetrical arrangement of the pivot jaws 33 and 34 relative to the central longitudinal axis x.
[0133] The geometric pivot axes of the articulated connection of each control rod 35 to the pivot jaw 33, 34, as well as to the piston shaft 12, extends so as to be aligned parallel to the pivot axis z of the two pivot jaws 33 and 34.
[0134] The pivot axis z of the pivot jaws 33 and 34 form a pivot bolt 36, which is supported in the cylinder section 15 of the base unit 2.
[0135] The second pivot jaw 34 has the receiving contour 23, which is also formed as concave depression, in particular approximately semi-circular recess, in this embodiment. In the open position of the tool head 18 according to the illustration in
[0136] Based on the pivot connection of the pivot jaw 34 to the pivot bolt 36, the receiving contour 23 is limited in its extension on both sides by means of an end of the pivot jaw 34 close to the axis, and a radially outer end 37 of the pivot jaw 34 distant from the axis, based on the pivot axis z.
[0137] The opposite first pivot jaw 33 facing the receiving contour 23, is provided with a convex contour K, which, in the illustrated embodiments, is further formed as cutting edge 13, comprising a protrusion region V, which forms a cutting edge tip 27. In the course of a pivot displacement of the pivot jaw 33, which is effected via the base unit 2, the cutting edge tip 27 moves along a traversing line, which corresponds essentially to a circular arc a, comprising a center in the pivot axis z.
[0138] In the course of the forward displacement of the piston 10 on the unit side, both pivot jaws 33 and 34 are pivotably displaced towards one another simultaneously and evenly via the same circular arc a.
[0139] The second pivot jaw 34 thereby reaches an intermediate position according to the illustration in
[0140] In the contact position of protrusion region V or cutting edge tip 27, respectively, and contact region B of the receiving contour 23 according to the illustration in
[0141] The second pivot jaw 34 has a broadside, which serves as traversing surface 25 for the first pivot jaw 33.
[0142] The backward displacement of the pivot jaws 33 and 34 into the open initial position takes place, as also in the case of the slide jaw solution, by backward displacement of the driving piston 10 by entraining the pivot jaws 33 and 34 via the control rods 35.
[0143] According to the schematic illustration in
[0144] One of the pivot jaws can also be formed as fixed jaw, for example with a receiving contour, while the other jaw is formed as pivot jaw, preferably having a convex contour in the form of a cutting edge comprising a protrusion region, for example in the form of a cutting edge tip.
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[0146] As can be seen, this tool is provided with a handle 42 in the region of the cylinder section 15 for connecting the tool 1 to a base unit 2. A further handle 43 is arranged in the region of the base holding part 20.
[0147] In this embodiment, the base holding part 20 also supports guide parts 30 on both sides of the advancement part 40, which can be displaced in the traversing direction r. With reference to a cross section transversely to the longitudinal extension of the guide parts 30, these guide parts are designed essentially in a U-shaped manner comprising U-openings facing one another. The advancement part 14, which can be displaced via the piston shaft 12, and the cutting edge 13 are guided linearly between these guide parts 30.
[0148] A bracket-like holding part 21, which essentially offers the receiving contour 23, is also arranged here on the end side of the guide parts 30.
[0149] Compared to the base holding part 20 or the guide parts 30, which are firmly arranged on the base holding part 20, respectively, the holding part 21 is held so as to be capable of being pivoted away. In this embodiment, the corresponding pivot axis y also extends transversely to the central longitudinal axis x and perpendicular to the workspace 19, which is spanned between holding part 21 and the guide parts 30.
[0150] The articulation occurs in the region of a free end of a guide part 30, which faces away from the base holding part 20, wherein the pivot connection is provided by means of a correspondingly positioned bolt 44. The pivot connection, which is provided in this way, can preferably not be operationally released.
[0151] Located opposite to the bolt 44, the corresponding end of the holding part 21 can be secured via a further bolt 22 to the free end of the corresponding guide part 30. As can in particular be seen from the sectional illustration in
[0152] The securing position of the holding part 21 illustrated in
[0153] In extension to the guide parts 30 of the base holding part 20, the holding part 21 is essentially provided with guide sections 50, which are preferably also essentially U-shaped in the cross section and which, when the cutting edge 13 is displaced forward in the cutting direction s, receive said cutting edge or accept it from the base holding part 20, which has the guide parts 30, respectively. In the cutting edge end position according to the illustrations in
[0154] In this embodiment, the advancement part 14 also displaces the cutting edge 13 via the front surfaces 38 thereof in the region of the fork ends 41. A complete separation of cutting edge 13 and advancement part 14 is present in this respect. Only the front surfaces 38 and 39 of advancement part 14 and cutting edge 13 abut on one another in particular in the course of the movement in the cutting direction s.
[0155] In the cutting edge end position, the holding part 21 can be pivoted away about the pivot axis y according to the illustrations in
[0156] In view of ease of handling, an automatic entrainment of the cutting edge 13 from the cutting edge end position back into the initial position is more favorable. This entrainment by means of dragging occurs via the advancement part 14, which can be displaced backward, controlled by the unit.
[0157] To prevent damages to the tool 1, in particular to the cutting edge 13, but furthermore also to the workpiece 24, for example in the case of a possible jamming in the region of the cutting edge 13 and of the severed workpiece 24, this entrainment by means of dragging is designed so as to be capable of being disengaged, so that, when exceeding a predetermined force acting on the locking connection, the latter triggers, whereupon the advancement part 14 moves back by releasing the connection to the cutting edge 13, and the cutting edge 13 thus remains in the holding part 21 according to the described exemplary embodiment. As described above, said holding part can then be pivoted away to expose the workpiece 24.
[0158] The locking connection is at hand as a result of the arrangement of a locking arm 52 and of a counter locking means 53.
[0159] In the illustrated exemplary embodiment, a locking arm 51 is in each case connected on both sides of the central longitudinal axis x in the region of the corresponding fork ends 41 of the advancement part 14 with respect to a cross section, in which the central longitudinal axis x is illustrated as a line and the pivot axis y is illustrated as a point. This can be a plastic injection molded part, which is anchored in the advancement part 14. In the alternative, the locking arm 51 can also be made of a spring steel or the like.
[0160] The locking arm 51 protrudes freely beyond the front surface 38 of the assigned fork end 41 and forms a locking protrusion 54 on the end side. In the illustrated exemplary embodiment, the two locking protrusions 54 of both locking arms 51 face in the same direction. In the alternative, both locking protrusions 54 can also be arranged so as to face one another or, as a further alternative, can face away from one another.
[0161] The locking arms 51 in each protrude with their locking protrusions 54 into a pocket-like clearance 55 of the cutting edge 13, which allows for a pivotability of the respective locking arm 51 transversely to its longitudinal extension, further preferably also transversely to the central longitudinal axis x. An evasive movement of this type of the locking arm 15 can be reset elastically due to the selected material of the locking arm 51.
[0162] An aperture 56 for the locking arm 51 is provided in the region of the cutting edge-side front surface 39, which comes to rest on the advancement part-side front surface 38, in the course of the advancement movement in the cutting direction s. Said aperture thus leads into the clearance 55.
[0163] The region in the front surface 39, which remains adjacent to the aperture 56 in the cross section, forms the counter locking means 52.
[0164] As described, a linear backward displacement of the advancement part 14 takes place from the cutting edge end position, for example according to
[0165] As a result of further backward displacement of the advancement part 14, the cutting edge 14 is also entrained via the locking arms 51 and the counter locking means 53, provided that a force retaining the cutting edge 13, for example a jamming in the region of the workpiece 24, is not so large that the locking connection is released. In this case, the locking protrusions 54 glide on and past the counter locking means 53 by correspondingly pivoting out the locking arms 51, whereupon the locking connection is released. The advancement part 14 alone moves back into the initial position in this case, while the cutting edge 13 remains in the holding part 21 for the separate treatment. The holding part 21 can thus be pivoted away with the cutting edge 13.
[0166] In the position, in which the holding part 21 is pivoted away, the cutting edge 13 can moreover be removed from the holding part 21 for cleaning or replacement purposes. The cutting edge 13 can thus be replaced, for example, with a cutting edge without tip or with a cutting edge for in particular cutting plastic pipes or the like.
[0167] The locking position between advancement part 14 and cutting edge 13 can moreover be found automatically. The locking protrusions 54 are suitable to bypass the counter locking means 53 even in the advancement direction and to engage behind them by dipping into the clearance 55.
[0168] A pivoting away of the holding part 21 can also take place from the locking position according to
[0169] In the region of the holding part-side displacement surface 25, a counter guide means 57 in the form of a depression or groove, respectively, can be at hand in the center, for cooperation with a guide means 58 of the cutting edge 13. As can be seen, for example, in
[0170] As illustrated in
[0171] As can further be seen in particular from the illustrations in
[0172] The positioning part 61 can thereby have a plate-shaped base body 62, optionally comprising a section, which is adapted to the receiving contour 23. In a region, the base body can be arranged, for example on the bolt 44, for example by using a further securing ring 63 only for securing the positioning part 61.
[0173] The other end of the positioning part 61 can be secured to the further bolt 22.
[0174] From the section, which is adapted to the receiving contour 23, two positioning arms 64, which are arranged essentially V-shaped to one another and which, in response to corresponding assignment of the positioning part 61, protrude into the projection surface of the opening 32, viewed perpendicular to the width direction d, extend into this section (see
[0175] The above explanations serve to describe the inventions, which are captured as a whole by the application and which further develop the prior art at least by means of the following feature combinations, in each case also independently, wherein two, a plurality of, or all of these feature combinations can also be combined, namely:
[0176] A tool 1, which is characterized in that a received workpiece 24 can be passed through completely and that, from a position of the cutting edge, which is reached as a result of the complete pass-through, the cutting edge can be moved from the cutting direction by removal from the advancement part.
[0177] A tool 1, which is characterized in that, in response to a first contact, which is at hand in a projection, of the cutting edge tip 27 with a concavely curved region of the receiving contour 23, a clearance F remains on one or both sides, based on an extension of the knife edge 26 perpendicular to the displacement direction of the cutting edge 13, between the knife edge 26 and the receiving contour 23.
[0178] A tool 1, which is characterized in that, in response to a first contact of the central longitudinal axis x by the free end of the concave receiving contour 23, the region, which, when moving into the protrusion region, comes into contact with the receiving contour 23, is displaced back with respect to the free end by a backward displacement measure, which corresponds to one third or more of the free opening measure of the concave receiving contour 23, viewed perpendicular to the central longitudinal axis x.
[0179] A tool 1, which is characterized in that the cutting edge 13 can be removed from the tool head 18, from the position, which corresponds to the complete pass-through, and/or that the cutting edge 13 can be pivoted relative to the advancement part 14 by an axis, which runs perpendicular to the cutting direction.
[0180] A tool 1, which is characterized in that the cutting edge 13 is pivotably connected to the advancement part 14.
[0181] A tool 1, which is characterized in that the cutting edge 13 can be pivoted relative to the advancement part 14 by means of a holding part 21.
[0182] A tool 1, which is characterized in that the advancement part 14 is connected to the cutting edge 13 by means of locking in a releasable manner.
[0183] A tool 1, which is characterized in that the locking connection has a locking arm 51, which allows for a distancing of the advancement part 14 to the cutting edge 13 without releasing the locking connection.
[0184] A tool 1, which is characterized in that when the cutting edge 13 is acted on by the advancement part 14, the force transmission takes place via a stop surface, which is formed separately from the locking arm 51, and that two locking arms 51 are provided.
[0185] A tool 1, which is characterized in that the locking arms 51 are formed so as to be located opposed transversely to the cutting direction s with respect to an opening of the receiving contour 23.
[0186] A tool 1, which is characterized in that the cutting edge 13, assigned to a central region, which is present based on a direction transversely to the cutting direction s, has a guide means 58, which can cooperate with a counter guide means 57 of the holding part 21.
[0187] A tool 1, which is characterized in that, transversely to the cutting direction s and based on a width of the cutting edge 13 also transversely to the width direction d of the cutting edge 13, the cutting edge 13 has a positioning means 59, which can cooperate with a counter positioning means 60 of the holding part 21.
[0188] A tool 1, which is characterized in that a positioning means 61 can be fastened to the holding part 21 for aligning workpieces 24, 24 of smaller diameters.
[0189] A tool 1, which is characterized in that the advancement part 14 is designed in a fork-shaped manner, comprising two fork ends acting on the cutting edge 13 outside of a cutting region of the cutting edge 13.
[0190] A tool 1, which is characterized in that the receiving contour 23 is formed on a holding part 21, which, based on a cross section, is formed in a side-by-side arrangement to the cutting edge 13.
[0191] A tool 1, which is characterized in that the holding part 21 forms a traversing surface 25 facing the cutting edge 13, on which, laterally bearing thereon, the cutting edge 13 moves relative to the holding part 21.
[0192] A tool 1, which is characterized in that the cutting edge 13 can be moved relative to the holding part 21 until the clearance or the clearances F are closed completely.
[0193] A tool 1, which is characterized in that the cutting edge 13 has one or a plurality of cutting edge tips 27.
[0194] A tool 1, which is characterized in that the one or plurality of cutting edge tips 27 are designed symmetrically to a traversing line of the cutting edge 13, which goes through the center of the receiving contour 23.
[0195] A tool 1, which is characterized in that in a longitudinal cross section through the cutting edge tip 27, the cutting edge 13 has a wedge-shaped section 29, originating from a planar lower surface 28 on one side.
[0196] A tool 1, which is characterized in that a guide part 20 is arranged on one side or on both sides on the traversing surface 25 of the holding part 21 in the width direction on the other side of an outer edge of the cutting edge 13 for the U-shaped enclosure of an edge region of the cutting edge 13.
[0197] A tool 1, which is characterized in that the holding part 21, together with the cutting edge 13, forms a closed workspace 19 when performing a cutting process.
[0198] A tool 1, which is characterized in that the holding part 21 can be folded open for receiving a workpiece 24.
[0199] A tool 1, which is characterized in that the tool head 18 has two pivot jaws.
[0200] A tool 1, which is characterized in that a pivot jaw can be moved on a circular arc.
[0201] A tool 1, which is characterized in that in the case of two pivot jaws, both pivot jaws can be moved on a common circular arc.
[0202] A tool 1, which is characterized in that the convex contour is formed as cutting edge 13.
[0203] A tool 1, which is characterized in that the protrusion region is formed as cutting edge tip 27.
[0204] All of the disclosed features (alone, but also in combination with one another) are essential for the invention. The disclosure content of the corresponding/enclosed priority documents (copy of the prior application) is hereby also included in its entirety into the disclosure of the application, also for the purpose of adding features of these documents into claims of the present application. With their features, the subclaims, also without the features of a referenced claim, characterize independent inventive further developments of the prior art, in particular to file divisional applications on the basis of these claims. The invention specified in each claim can additionally have one or more of the features specified in the above description, in particular provided with reference numerals and/or specified in the list of reference numerals. The invention also relates to designs, in the case of which individual features, which are mentioned in the above description, are not realized, in particular insofar as they are discernibly expendable for the respective intended purpose or can be replaced by other technically identical means.
TABLE-US-00001 List of Reference Numerals 1 tool 2 base unit 3 accumulator 4 button 5 handle 6 handle 7 drive unit 8 hydraulic hose 9 cylinder 10 piston 11 radial seal 12 piston shaft 13 cutting edge 14 advancement part 15 cylinder section 16 stop wall 17 compression spring 18 tool head 19 workspace 20 base holding part 21 holding part 22 bolt 23 receiving contour 24 workpiece .sup.24 workpiece 25 traversing surface 26 knife edge 27 cutting edge tip 28 lower surface 29 section 30 guide part 31 outer edge 32 opening 33 pivot jaw 34 pivot jaw 35 control rod 36 pivot bolt 37 end 38 front surface 39 front surface 40 joint 41 fork end 42 handle 43 handle 44 bolt 45 bore 46 bore 47 annular groove 48 spring 49 locking protrusion 50 guide section 51 stop rib 52 locking arm 53 counter locking means 54 locking protrusion 55 clearance 56 aperture 57 counter guide means 58 guide means 59 positioning means 60 counter positioning means 61 positioning part 62 base body 63 securing ring 64 positioning arm a circular arc b backward displacement measure c opening measure d width direction r traversing direction s cutting direction x central longitudinal axis y pivot axis z pivot axis B contact region F clearance K convex contour V protrusion region