IP Library Granted Patent US 8,905,686
Granted Patent B2
US 8,905,686 · App. 13/523,962 · Granted Dec 9, 2014

Triangle insert with multiple cutting edges and milling cutter therefor

Inventors: Martin Hausmann (Ratingen, DE); Jürgen Zastrozynski (Düsseldorf, DE); Carsten Schwaner (Mülheim, DE)
Assignee: Kennametal Inc.
B23C5/06B23C5/207B23C2200/0477B23C2200/208
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Quick Facts
Patent No.
US 8,905,686
App. No.
13/523,962
Granted
Dec 9, 2014
Kind
B2
Abstract

An indexable insert has a triangular shape with a top surface and a bottom surface, as well as a circumferential surface that connects said the top and bottom surfaces, and cutting edges around the corners. At least in the region of its edges on the top and bottom surface, the indexable insert is identical such that all six cutting edges can be used for the same rotational cutting direction. The secondary cutting edges adjoin two main cutting edges and extend at different angles with respect to the same. In addition, a surface corner milling cutter with a corresponding indexable insert is described.

Claims (14)

1. A double-sided indexable insert having a triangular shape with three corners, a top surface, a bottom surface and a circumferential surface forming flanks that connects the top surface and the bottom surface, wherein three main cutting edges and three secondary cutting edges are formed at an intersection between the circumferential surface and the top surface, and three main cutting edges and three secondary cutting edges are formed at an intersection between the circumferential surface and the bottom surface for a total of six main cutting edges and six secondary cutting edges, each main cutting edge adjoining an associated secondary cutting edge and a non-associated secondary cutting edge, and a triangular-shaped flank extending from each secondary cutting edge formed at the intersection between the top surface and the circumferential surface toward the bottom surface, and a triangular-shaped flank extending from each secondary cutting edge formed at the intersection between the bottom surface and the circumferential surface toward the top surface, and wherein the triangular-shaped flanks adjacent each other are angled toward each other, wherein the secondary cutting edges are at different angles with respect to the two adjoining main cutting edges.

2. The indexable insert as claimed in claim 1 , wherein said indexable insert is a corner milling cutting insert.

3. The indexable insert as claimed in claim 1 , wherein said indexable insert is a 90° surface corner milling cutting insert.

4. The indexable insert as claimed in claim 2 , wherein the the secondary cutting edges are formed by trimming the corners from the top surface to the bottom surface.

5. The indexable insert as claimed in claim 1 , wherein each main cutting edge and the adjoining, associated secondary cutting edge are formed at an angle of approximately 90° with respect to each other, and wherein each secondary cutting edge and the adjoining, non-associated main cutting edge is formed at an angle of approximately 120° with respect to each other.

6. The indexable insert as claimed in claim 1 , wherein each main cutting edge extends in a linear manner from one secondary cutting edge to another secondary cutting edge.

7. The indexable insert as claimed in claim 1 further comprising a connecting edge extending between the adjacent triangular-shaped flanks.

8. The indexable insert as claimed in claim 7 , wherein the connecting edge is rounded.

9. The indexable insert as claimed in claim 1 , wherein the flanks of the secondary cutting edges extend inclinedly sideways and outward toward the opposite insert surface at an angle of between 2 and 20 ° with respect to a center axis (Y) of the indexable insert.

10. A double-sided indexable insert having a triangular shape with three corners, a top surface, a bottom surface and a circumferential surface forming flanks that connects the top surface and the bottom surface, wherein three main cutting edges and three secondary cutting edges are formed at an intersection between the circumferential surface and the top surface, and three main cutting edges and three secondary cutting edges are formed at an intersection between the circumferential surface, and the bottom surface for a total of six main cutting edges and six secondary cutting edges, each main cutting edge adjoining an associated secondary cutting edge and a non-associated secondary cutting edge, and a triangular-shaped flank extending from each secondary cutting edge formed at the intersection between the top surface and the circumferential surface toward the bottom surface, and a triangular-shaped flank extending from each secondary cutting edge formed at the intersection between the bottom surface and the circumferential surface toward the top surface, and wherein the triangular-shaped flanks adjacent each other are angled toward each other, wherein main cutting edges has its own rake face and each rake face has differently inclined regions.

11. The indexable insert as claimed in claim 10 , wherein the rake face of each main cutting edge is more inclined in the region of its associated secondary cutting edge than in the region remote from the associated secondary cutting edge.

12. The indexable insert as claimed in claim 10 , wherein the differently inclined regions of the rake face merge into each other via an inclined step.

13. The indexable insert as claimed in claim 1 , wherein the flank of each main cutting edge is planar.

14. A surface corner milling cutter having a tool shank and fastened thereon at least one indexable insert as claimed in claim 1 , wherein the indexable insert is fastened to the tool shank such that the flank of the secondary cutting edge in use has a positive clearance angle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2012
From: HAUSMANN, MARTIN; ZASTROZYNSKI, JURGEN; SCHWANER, CARSTEN
To: KENNAMETAL INC.
Reel/Frame 028380/0952 →
Priority Claims (1)
DE 10 2011 105 978 · Jun 29, 2011 · national
Continuity (1)
Related Publication 20130004251A1 · Jan 3, 2013