WO2021181373A1 - Reinforced metal slitter body having insert pockets - Google Patents
Reinforced metal slitter body having insert pockets Download PDFInfo
- Publication number
- WO2021181373A1 WO2021181373A1 PCT/IL2021/050178 IL2021050178W WO2021181373A1 WO 2021181373 A1 WO2021181373 A1 WO 2021181373A1 IL 2021050178 W IL2021050178 W IL 2021050178W WO 2021181373 A1 WO2021181373 A1 WO 2021181373A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- slitter
- cutting
- insert
- width
- reinforcement portion
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23C—MILLING
- B23C5/00—Milling-cutters
- B23C5/02—Milling-cutters characterised by the shape of the cutter
- B23C5/08—Disc-type cutters
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23C—MILLING
- B23C5/00—Milling-cutters
- B23C5/006—Details of the milling cutter body
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23C—MILLING
- B23C5/00—Milling-cutters
- B23C5/16—Milling-cutters characterised by physical features other than shape
- B23C5/20—Milling-cutters characterised by physical features other than shape with removable cutter bits or teeth or cutting inserts
- B23C5/22—Securing arrangements for bits or teeth or cutting inserts
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23C—MILLING
- B23C5/00—Milling-cutters
- B23C5/16—Milling-cutters characterised by physical features other than shape
- B23C5/20—Milling-cutters characterised by physical features other than shape with removable cutter bits or teeth or cutting inserts
- B23C5/22—Securing arrangements for bits or teeth or cutting inserts
- B23C5/2239—Securing arrangements for bits or teeth or cutting inserts with cutting inserts clamped by a clamping member acting almost perpendicular on the cutting face
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23C—MILLING
- B23C5/00—Milling-cutters
- B23C5/16—Milling-cutters characterised by physical features other than shape
- B23C5/20—Milling-cutters characterised by physical features other than shape with removable cutter bits or teeth or cutting inserts
- B23C5/22—Securing arrangements for bits or teeth or cutting inserts
- B23C5/2298—Securing arrangements for bits or teeth or cutting inserts secured by resilient/flexible means
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23C—MILLING
- B23C2210/00—Details of milling cutters
- B23C2210/16—Fixation of inserts or cutting bits in the tool
- B23C2210/161—Elastically deformable clamping members
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23C—MILLING
- B23C2210/00—Details of milling cutters
- B23C2210/24—Overall form of the milling cutter
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23C—MILLING
- B23C2210/00—Details of milling cutters
- B23C2210/54—Configuration of the cutting part
Definitions
- the subject matter of the present application relates generally to a slitter designed for a metal-working machine, and in particular to a slitter body of a slitting tool having a reinforced portion.
- Slitting is generally a term used for providing relatively thin slits in a workpiece.
- the slitters relevant to the present application have a metal slitter body and are formed with insert pockets around the periphery thereof for receiving cutting inserts therein.
- the cutting inserts are made of a harder material than the slitter bodies, typically cemented carbide.
- the metal slitter body is extremely thin.
- One solution is to enlarge the slitter body thickness to resist bending.
- this is disadvantageous in that it reduces the cut depth a given slitter can cut and also increase the separation space of adjacent slitter bodies, for example as seen in Fig. 1C of USP 9,216,461.
- the present invention relates to providing a metal slitter body configured for resiliently holding cutting inserts and configured to provide thinner slits than was heretofore known to the applicant.
- a slitting tool can comprise only a slitter body and cutting inserts (i.e. such slitting tool can be devoid of screws).
- the slitter body has a unitary one-piece construction. Since no screws or clamps are used, the insert pockets are configured for resilient clamping of cutting inserts.
- a metal slitter body was provided with a reinforcement portion which extends adjacent the smaller (and hence weaker) clamping jaw of an insert pocket, thereby allowing mounting of a cutting insert in the insert pocket without bending of the clamping jaw.
- Previously known slitter bodies have similar looking reinforcement portions but none are known to extend radially outward until they are adjacent to the insert pocket since this greatly limits the cut depth of the slitter.
- a metal slitter body including a cylindrical body portion and cutting body portions extending outwardly from and integrally formed with the cylindrical body portion.
- the cutting body portions each include an insert pocket having an insert receiving slot, first and second clamping jaws and a slot end.
- the slitter body further includes a reinforcement portion which is wider than an outermost part of the first and second clamping jaws and extends radially outward from the cylindrical body past each slot end.
- the slot end is radially inward of the reinforcing portion, and the cut depth does not extend to the slot end in the radially inward direction.
- the metal slitter body comprises: a cylindrical body portion having a rotation axis (AR) extending through a center thereof and defining a direction of rotation (DR) thereabout; a plurality of cutting body portions extending outwardly from the cylindrical body portion; opposing first and second body side surfaces; and a body peripheral surface extending therebetween; the slitter body having a unitary one-piece constmction; a width direction is defined parallel with the rotation axis (AR); an outward radial direction is defined from the rotation axis (AR) towards the body peripheral surface; an inward radial direction is defined opposite to the outward radial direction; a tangential direction extends perpendicular to the inward and outward radial directions; an imaginary bisecting plane (P) is defined as extending perpendicular to the rotation axis (A R ) and through the center of the plurality of cutting body portions; each of the plurality of cutting body portions comprising: a cutting body portion width C
- the slitter body comprises a thinner width at the most radially outward portions of the clamping jaws and a thicker (reinforced portion) more inwardly radial to ensure the clamping jaws do not bend when mounting the cutting insert.
- the reinforcement portion reaches at least the smaller clamping jaw (called the second clamping jaw)
- the reinforcement portion prefferably has a basic disc-shape for ease of production.
- a disc-shape can taper to the thinner clamping jaw at the periphery thereof, i.e., the reinforcement portion can comprise a peripheral chamfer.
- the reinforcement portion While it is feasible for the reinforcement portion to extend symmetrically in the width direction to both sides of the bisecting plane, it is preferred for the reinforcement portion to extend in the width direction from the bisecting plane only in a single direction. This allows less production steps, albeit theoretically being slightly less balanced.
- the insert receiving slot extends in the inward radial direction more than it extends in the tangential direction.
- the cutting insert and accommodating insert pocket in a side view, has a basic straight elongated shape.
- each cutting insert comprises only a single cutting edge. This is so as not to limit the cut depth by the cutting insert geometry itself (in addition to the limitation caused by the reinforcement portion).
- the flexibility grooves preferably extend in the inward radial direction more than they extend in the tangential direction. To provide independence of the cutting portions the flexibility grooves can even extend from a part of the cutting portion which is located further outward of the reinforcement portion in the inward radial direction to a part of the reinforcement portion.
- the slitter body has a cutting body portion width preferably fulfilling the condition: CBW ⁇ 0.70mm, and more preferably CBW ⁇ 0.60mm. It was found that below such widths, the metal slitter body cannot reliably resiliently clamp cutting inserts without a reinforcement portion reaching the smaller jaw. [0024] Nonetheless it is believed the lower thickness range of such slitter bodies fulfill the condition: CBW > 0.30mm and preferably CBW > 0.40mm.
- the reinforcement portion width preferably fulfills the condition: RW > 0.8mm, more preferably RW > 0.9mm. It was found that providing reinforcement of this width makes possible reliable resilient clamping of the cutting inserts. It will be understood that increasing the width increases the constmctional strength, but reduces the proximity to which an adjacent slitter can be provided (in a tool having a gang of parallel slitter bodies), or the proximity to a side wall to which a spindle holding a workpiece is mounted. Accordingly, it is preferred that the reinforcement portion width preferably fulfills the condition: RW ⁇ 1.5mm, and more preferably RW ⁇ 1.1mm.
- the cutting body portion width CBW fulfills the condition: 0.7mm > CBW > 0.3mm; and the reinforcement portion width RW fulfills the condition: 1.5mm > RW > 0.8mm.
- the diameter of the slitter body is between 25mm and 50mm but can be larger.
- the present invention has been implemented on 30mm, 40mm and 50mm slitter bodies with success (noting the widths described above).
- the slitter body is provided with an insert receiving slot having an extended slot portion which extends further in the inward radial direction DI, i.e. beyond a slot relief portion.
- an extended slot portion can allow a relatively smaller second jaw to have a greater jaw thickness T and hence more structural strength.
- the reinforcement portion while still extending further radially outward than an inward-most point of the slot end, extends further in the radially outward direction. This allows the slitter body to provide a larger cut depth.
- both the slot relief portion of the insert receiving slot and the extended slot portion have basic round shapes. Stated differently, there is a wall projection extending partially between them. The round shape of the relief portion and the wall projection allow a standard ejection tool to eject the cutting insert (by being biased against the wall projection).
- a length LS of the extended slot portion is roughly equivalent to a relief portion length LS2.
- a slitter comprising a slitter body according to either of the embodiments described above and a cutting insert mounted in each of the insert pockets.
- Each cutting insert comprises a cutting edge having a cutting edge width CW which is larger than the cutting body portion width CBW, the cutting edge extending further in the width direction than the cutting body portion on both sides on the bisecting plane.
- the slitter is what is known a fully effective slitter (as opposed to half-effective slitter in which the inserts are arranged in a staggered pattern).
- the first and second clamping jaws, and corresponding cutting insert surfaces are formed with tapered sub-surfaces. While for some machining operations it is sufficient to have a tapered shape on only one side of an insert, for the extremely thin applications under discussion it is incredibly difficult to mount a cutting insert without a tapered construction on both sides of the shank portion thereof to such a thin insert pocket (noting that the invention here relates to clamping jaws having a width of 0.7mm and less).
- a metal slitter body having unitary, one- piece constmction, and comprising: a cylindrical body portion having a rotation axis (AR) extending through a center thereof and defining a direction of rotation (DR) thereabout, the cylindrical body portion comprising: opposing first and second body side surfaces; a body peripheral surface extending between the first and second side surfaces; an outward radial direction (Do) from the rotation axis (AR) towards the body peripheral surface; an inward radial direction (Di) opposite to the outward radial direction (Do); and a tangential direction (DT) extending perpendicular to the inward and outward radial directions; a plurality of cutting body portions extending outwardly from the cylindrical body portion, each cutting body portion having: a cutting body portion width CBW measurable in a width direction (Dw) parallel to the rotation axis (AR), between the first and second body side surfaces; and an insert pocket configured for resilient clamping,
- the slitter body can have an imaginary bisecting plane (P) extends perpendicular to the rotation axis (AR) and through the center of the plurality of cutting body portions; the reinforcement portion is entirely on one side of the imaginary bisector plane (P); a flexibility groove is located between each pair of adjacent cutting body portions; and between each pair of adjacent flexibility grooves, the reinforcement portion extends in the outward radial direction past the inward-most point of the slot end, to both the first clamping jaw and the second clamping jaw belonging to one of the cutting body portions.
- P imaginary bisecting plane
- Fig. 1 is a perspective view of a slitting tool according to the present invention
- Fig. 2A is a top view of a cutting insert of the slitting tool in Fig. 1 ;
- Fig. 2B is a front view of the cutting insert in Fig. 2A;
- Fig. 2C is a side view of the cutting insert in Figs. 2A and 2B;
- Fig. IB is a side view of the slitting tool in Fig. 1A;
- Fig. 3 A is a side view of a slitter body of the slitting tool in Fig. 1 ;
- Fig. 3B is a front view of the slitter body in Fig. 3A;
- Fig. 4A is a side view of the slitting tool in Fig. 1 ;
- Fig. 4B is a front view of the slitter body in Fig. 4A.
- Fig. 5 is a side view of a slitting tool according to another embodiment of the present invention.
- FIG. 1 illustrates a first preferred embodiment of a slitting tool 10.
- the slitting tool 10 comprises a metal slitter body 12, and one or more cutting inserts 14 (all of which are identical in the preferred yet non-limiting example) mounted to the slitter body 12.
- the cutting inserts 14 are typically made of cemented carbide.
- the cutting insert 14 comprises a cutting portion 16 and a shank portion 18 extending therefrom.
- the cutting portion 16 comprises a rake surface 20 (above which chips are intended to flow) and front, first-side and second-side relief surfaces 22A, 22B, 22C tapering inwardly with increasing distance from the rake surface 20.
- the rake surface 20 preferably has a chip-forming arrangement 24.
- a cutting edge 26 extends along the intersection of the rake surface 20 and front, first- side and second-side relief surfaces 22A, 22B, 22C.
- the shank portion 18 comprises an upper shank surface 28A, a lower shank surface 28B, first and second side shank surfaces 28C, 28D connecting the upper shank surface 28A and lower shank surface 28B, and a rear shank surface 28E connecting the upper, lower, first and second side shank surfaces 28A, 28B, 28C, 28D.
- the overall shape of the cutting insert 14, and particularly the shank portion 18 thereof is a basic straight elongated shape.
- the cutting insert 14 is elongated along an elongation axis AE extending through the rear shank surface and the front relief surface.
- the width of a slit (not shown) cut by the slitting tool 10 (in a workpiece) corresponds to the cutting edge width CW.
- the entire cutting insert 14 can be located within the slit and fully occupies the latter’s width.
- the cutting edge with its cutting edge width CW extends further in the width direction on both sides of the bisector plane P, than the cutting body portion of the metal slitter body 12 with its cutting body portion width CBW (the cutting body portion width CBW is only shown for understanding or comparison in the enlarged view of Fig. 2A, it will be understood it relates to the slitter body 12 and not the cutting insert 14).
- the cutting edge width CW is 0.6mm, which is smaller than is known for slitting tools to the present applicant.
- a maximum length ML of the cutting insert 14, in the top view of 2A, is approximately 6mm. In a slightly rotated view without the rear shank surface being visible the length would be about 5.8mm.
- the cut depth AP of the slitting tool 10 in this example corresponds basically to the maximum length ML.
- the upper shank surface 28A is formed with a tapered sub-surface 30A (Fig. 2A), and the opposite lower shank surface 28B is formed with a tapered sub-surface 30B (Fig. 2B).
- These tapered sub-surfaces 30A, 30B facilitate sliding mounting of the cutting insert 14 on corresponding tapered first and second clamping sub-surfaces 42, 44 (described below) of insert pockets 38 formed on the slitter body 12.
- tapered sub-surfaces are known in the art, but for the present invention it is particularly advantageous for the two opposing surfaces (upper and lower shank surfaces) to be formed with tapered sub-surfaces in view of the particular difficulty with mounting the cutting inserts 14 (noting that there also exists cutting inserts which have only one tapered sub-surface, and are considered more stable since they have a planar sub-surface rather than a second tapered sub-surface).
- the slitter body 12 comprises a cylindrical body portion 32 having a rotation axis A R extending through the center thereof and defining a direction of rotation D R thereabout and a plurality of cutting body portions 34 extending outwardly from the cylindrical body portion 32.
- the slitter body 12 comprises a first body side surface 36A and an opposing second body side surface 36B, and a body peripheral surface 36C extending therebetween.
- a width direction Dw is defined parallel with the rotation axis A R .
- An outward radial direction Do is defined from the rotation axis A R towards the body peripheral surface 36C.
- An inward radial direction Di is defined opposite to the outward radial direction Do.
- a tangential (“circumferential”) direction D T extends perpendicular to the inward and outward radial directions along the outermost portion of the body peripheral surface 36C.
- An imaginary bisecting plane P is defined as extending perpendicular to the rotation axis A R and through the center of the plurality of cutting body portions 34.
- the cutting body portions 34 are identical and hence the arrows designating portions thereof may be directed to different cutting body portions 34 simply for ease of visibility.
- a flexibility groove 35 extends between each of the adjacent cutting body portions 34.
- Each of the plurality of cutting body portions 34 comprises: a cutting body portion width
- the cutting body portion width CBW which is measurable along the width direction Dw and from the first body side surface 36A to the second body side surface 36B. More specifically, the cutting body portion width CBW only applies to those portions of the cutting body portions 34 which are not adjacent to the reinforcement portion. In other words, the cutting body portion width CBW does not include the width of the reinforcement portion.
- Each cutting body portion 34 comprises an insert pocket 38.
- Each insert pocket 38 comprises an insert receiving slot 40; a first clamping jaw 40A, a second clamping jaw 40B and a slot end 40C connecting the first and second clamping jaws 40A, 40B.
- the second clamping jaw 40B is circumferentially forward of the first clamping jaw 40A, in the direction of rotation D R .
- the first clamping jaw 40A has a first clamping sub-surface 42 facing the insert receiving slot 40 and being formed with a tapered shape configured (as known in the art) to engage the tapered sub-surface 30B of the lower shank surface 28B of the cutting insert 14.
- the second clamping jaw 40B has a second clamping sub-surface 44 opposite the first clamping sub-surface 42, and facing the insert receiving slot 40.
- the second clamping sub surface 44 being formed with a tapered shape configured (as known in the art) to engage the tapered sub-surface 30A of the upper shank surface 28A of the cutting insert 14.
- the slitter body 12 further comprises a reinforcement portion 46 adjoining the cylindrical body portion 32.
- the reinforcement portion 46 extends, in the radially outward direction Do, towards the plurality of cutting body portions 34.
- the second body side surface 36B is formed on the reinforcement portion 46.
- the slitter body 12 is wider at the reinforcement portion 46 than at the extremity of the cutting portion 34 having a cutting body portion width CBW.
- the reinforcement portion 46 has a reinforcement portion width RW.
- the overall width OW of the slitter body 12 (where there is a reinforcement portion 46) is the sum of the cutting body portion width CBW and the reinforcement portion width RW.
- the reinforcement portion 46 can appear circular, and thus have continuous rotational symmetry (i.e., rotational symmetry at all angular displacements) about the rotation axis AR.
- the reinforcement portion 46 may instead have discrete rotational symmetry (i.e., rotational symmetry only at discrete angular displacements).
- the reinforcement portion 46 is formed on only one side of the bisecting plane P.
- One feasible alternative design would be for a reinforcement portion (not shown) to be symmetric about the bisecting plane P., However, such an alternative design would require both sides of the slitter body 12 to be machined, and so is less preferred.
- the reinforcement portion 46 preferably, but optionally, has a basic disc-shape which extends to an inner boundary 48 at which it still has the reinforcement portion width RW.
- the reinforcement portion 46 preferably, but optionally tapers (i.e. has a peripheral chamfer 49) towards the bisecting plane P to the cutting portion 34 at an outer boundary 50.
- the insert receiving slots 40 and the flexibility grooves 35 all straddle the inner and outer boundaries of the reinforcement portion 46.
- the slitting tool 10 cannot enter a workpiece radially inward of the outer boundary 50. This is because the slitter body 12 becomes wider radially inward of the outer boundary 50 where the reinforcement portion 46 commences. And while the cut width CW of the cutting insert 14 is wider than the cutting body portion width CBW, it is not wider than the slitter body 12 where the reinforcement portion 46 is present.
- the cut depth AP (measured to about the outer boundary 50 in the inward direction DI) is about 6mm.
- the diameter D is about 50mm. This means that the unutilized depth UD of the slitting tool 10 is about 44mm or 88%.
- the reinforcement portion 46 extends a first radial length R1 (measurable from the rotation axis AR to the outer boundary 50) which is greater than a second radial length R2 (measurable from the rotation axis AR to the inward-most point 52 of the slot end 40C) the reinforcement portion 46 provides the relatively smaller second clamping jaw 40B with enough constructional strength to consistently clamp the cutting insert 14 thereto.
- the reinforcement portion 46 protects the second clamping jaw 40B, for example from bending forces that may be experienced during mounting of an insert to the insert pocket 38.
- each insert pocket 38 can be associated with an ejection hole 54 used to pry open the resilient insert pocket 38 to remove a cutting insert 14 therefrom.
- the slitting tool 100 comprises a metal slitter body 102, and one or more cutting inserts
- the basic construction of the slitter body 102 is similar to the slitter 12 described above except that an insert receiving slot 104 has an extended slot portion 106 which protmdes in the inward radial direction DI. [0083]
- the extended slot portion 106 allows the relatively smaller second jaw 108 to have a greater jaw thickness T and hence more stmctural strength.
- the reinforcement portion 110 extends further radially outward than an inward-most point 112 of the slot end 114. And again, the reinforcement portion 110 extends to the second clamping jaw 108. [0085] In the non-limiting embodiment shown in Fig. 5, both a relief portion 116 of the insert receiving slot 104 (i.e. the portion of the insert receiving slot 104 still designed to accommodate the cutting insert 14 but leaving a relief space therefor) and the extended slot portion 106 have basic round shapes. As seen in Fig. 5, a wall projection 118 extends partially between the relief potion 116 and the extended slot portion 106.
- a first radial length LS 1 of the extended slot portion 106 is roughly equivalent to a second radial length LS2 of the relief portion 116 (i.e. the radial length of the space not accommodated by the cutting insert 14).
- providing the extended slot 106 may be one way to increase the depth of cut which in Fig. 5 is designated AP2.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Shearing Machines (AREA)
- Milling Processes (AREA)
Abstract
Description
Claims
Priority Applications (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| KR1020227030917A KR102876022B1 (en) | 2020-03-12 | 2021-02-16 | Reinforced metal slitter body with insert pocket |
| DE112021001584.2T DE112021001584T5 (en) | 2020-03-12 | 2021-02-16 | Reinforced metal slotted cutter body with insert pockets |
| CN202180020115.5A CN115279521A (en) | 2020-03-12 | 2021-02-16 | Reinforced metal kerf body with blade pockets |
| IL295483A IL295483B2 (en) | 2020-03-12 | 2021-02-16 | Reinforced slotted metal cutting body including die mounts |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US202062988675P | 2020-03-12 | 2020-03-12 | |
| US62/988,675 | 2020-03-12 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2021181373A1 true WO2021181373A1 (en) | 2021-09-16 |
Family
ID=74860366
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/IL2021/050178 Ceased WO2021181373A1 (en) | 2020-03-12 | 2021-02-16 | Reinforced metal slitter body having insert pockets |
Country Status (6)
| Country | Link |
|---|---|
| US (1) | US11590590B2 (en) |
| KR (1) | KR102876022B1 (en) |
| CN (1) | CN115279521A (en) |
| DE (1) | DE112021001584T5 (en) |
| IL (1) | IL295483B2 (en) |
| WO (1) | WO2021181373A1 (en) |
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| US20140013916A1 (en) * | 2012-07-12 | 2014-01-16 | Iscar, Ltd. | Slitting Tool Configured For Fine-Tuning |
| US20140056659A1 (en) * | 2012-08-21 | 2014-02-27 | Iscar, Ltd. | Chamfering Cutter and Chamfering Insert Therefor |
| US9216461B2 (en) | 2011-07-19 | 2015-12-22 | Iscar, Ltd. | Cutting body configured for fine-tuning and metal-working machine tool comprising a plurality thereof |
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| US10710174B2 (en) | 2017-11-30 | 2020-07-14 | Iscar, Ltd. | Slitting cutter and tool key in combination therewith |
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2021
- 2021-01-20 US US17/152,936 patent/US11590590B2/en active Active
- 2021-02-16 KR KR1020227030917A patent/KR102876022B1/en active Active
- 2021-02-16 CN CN202180020115.5A patent/CN115279521A/en active Pending
- 2021-02-16 WO PCT/IL2021/050178 patent/WO2021181373A1/en not_active Ceased
- 2021-02-16 IL IL295483A patent/IL295483B2/en unknown
- 2021-02-16 DE DE112021001584.2T patent/DE112021001584T5/en active Pending
Patent Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20090249607A1 (en) * | 2008-04-08 | 2009-10-08 | Iscar Ltd. | Cartridge Adjustment Tool for a Slotting Cutter |
| US9216461B2 (en) | 2011-07-19 | 2015-12-22 | Iscar, Ltd. | Cutting body configured for fine-tuning and metal-working machine tool comprising a plurality thereof |
| US20140013916A1 (en) * | 2012-07-12 | 2014-01-16 | Iscar, Ltd. | Slitting Tool Configured For Fine-Tuning |
| US20140056659A1 (en) * | 2012-08-21 | 2014-02-27 | Iscar, Ltd. | Chamfering Cutter and Chamfering Insert Therefor |
Also Published As
| Publication number | Publication date |
|---|---|
| KR20220148195A (en) | 2022-11-04 |
| CN115279521A (en) | 2022-11-01 |
| IL295483B1 (en) | 2025-08-01 |
| IL295483B2 (en) | 2025-12-01 |
| KR102876022B1 (en) | 2025-10-24 |
| US20210283698A1 (en) | 2021-09-16 |
| DE112021001584T5 (en) | 2023-04-06 |
| IL295483A (en) | 2022-10-01 |
| US11590590B2 (en) | 2023-02-28 |
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