Cutting tool
US-12403533-B2 · Sep 2, 2025 · US
US9782845B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9782845-B2 |
| Application number | US-201515303643-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 18, 2015 |
| Priority date | Apr 16, 2014 |
| Publication date | Oct 10, 2017 |
| Grant date | Oct 10, 2017 |
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An indexable milling cutting insert includes an opposed outside and inside, a periphery, and a plurality of homologous and alternately individually usable cutting edges, which are equidistantly spaced apart from a center axis, which extends between the outside and inside. The cutting insert includes a plurality of countersunk chip channels, which are delimited by bottoms and tangentially spaced-apart ridges, which individually include a cutting edge formed between a chip surface included in a first chip channel, and a clearance surface, which borders on a second chip channel.
Opening claim text (preview).
The invention claimed is: 1. An indexable milling cutting insert comprising: an opposed outside and inside; a periphery; a plurality of homologous and alternately individually usable cutting edges; and a centre axis, which extends between the outside and inside, wherein the cutting edges are rotationally symmetrically arranged with respect to the centre axis, and wherein the outside side includes a hub portion, which is centred around the centre axis, the outside including a plurality of ridges, which extend from the hub portion toward the periphery; a plurality of chip channels countersunk in the outside, wherein the chip channels are tangentially spaced-apart via the ridges, which individually include one of said cutting edges, each one of said cutting edges being formed between, a chip surface, which is situated in a flank of an appurtenant ridge and which is included in a first chip channel, and a clearance surface, which is situated on a crown of the appurtenant ridge and which adjoins a second chip channel. 2. A cutting insert according to claim 1 , wherein the clearance surface has a convexly arched shape in arbitrary sections transverse to the ridge, and coinciding with a geometrical surface of revolution situated between the hub portion and the periphery. 3. A cutting insert according to claim 1 wherein the individual chip channel has a depth, which is the greatest nearest the chip surface, and which successively decreases toward an end in which the same transforms into a ridge in front. 4. A cutting insert according to claim 1 , wherein a bottom of the chip channel is a concavely double-arched surface. 5. A cutting insert according to claim 1 , wherein a peripherally outer boundary line of the chip channel is concavely curved and spaced apart radially inward from a circumscribed circle, which defines the periphery of the cutting insert. 6. A cutting insert according claim 1 , wherein at least the main part of the main edge of an individual cutting edge, as viewed in plane elevation, is located tangentially behind an imaginary radius between the centre axis of the cutting insert and an end point of the main edge situated nearest the periphery. 7. A cutting insert according claim 1 , wherein the cutting insert is double-sided and invertible by including two identical halves on both sides of a centre plane, which extends perpendicular to the centre axis, the halves being rotationally symmetrical over an axis in the centre plane, which intersects the centre axis. 8. A cutting insert according to claim 7 , wherein the ridges included in the respective halves intersect each other in pairs as viewed in an imaginary, transparent plane elevation.
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