IP Library › Granted Patent US 12,186,814
Granted Patent B2
US 12,186,814 · App. 17/495,142 · Granted Jan 7, 2025

Milling tool for milling workpieces

Inventor: Stefan Netzer (Wolfegg, DE)
Assignee: HPTEC GmbH
B23C5/10B23C2210/0492B23C2226/27
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Quick Facts
Patent No.
US 12,186,814
App. No.
17/495,142
Granted
Jan 7, 2025
Kind
B2
Abstract

A milling tool for milling workpieces, having a shank which can be rotated about an axis of rotation and at least one milling portion arranged on the shank along the axis of rotation. The milling portion first and second cutters arranged on the circumference and extending substantially over the milling portion in the direction of the axis of rotation and next to one another and/or one behind another as viewed in the direction of rotation/circumferential direction. The first cutter is arranged at a first angle and the second cutter is arranged at a second angle with respect to the axis of rotation. The first angle is not equal to the second angle. A first chip receptacle for receiving a chip of the workpiece that has been cut off is arranged at least between the first and the second cutter.

Claims (26)

1. A milling tool for milling workpieces, comprising:

a shank that is rotatable about an axis of rotation; and

at least one milling portion arranged on the shank along the axis of rotation,

wherein the milling portion comprises at least one first cutter arranged on a circumference of the shank, and at least one second cutter arranged on the circumference of the shank,

wherein the at least one first cutter and the at least one second cutter extend substantially over the milling portion in a direction of the axis of rotation, and are arranged next to one another and/or one behind another as viewed in the direction of the axis of rotation/a circumferential direction,

wherein the at least one first cutter is arranged at a first angle (α) with respect to the axis of rotation, and the at least one second cutter is arranged at a second angle (β) with respect to the axis of rotation,

wherein with respect to the axis of rotation, the first angle (α) is a positive angle, and the second angle (β) is a negative angle,

wherein a numerical size value of the first angle (α) is equal to a numerical size value of the second angle (β),

wherein at least one first chip receptacle, comprising a helical flute for receiving a chip of a workpiece that has been cut off, is arranged at least between the at least one first cutter and the at least one second cutter,

wherein two of the at least one first cutter are provided, and a second chip receptacle is arranged between the two first cutters, and/or wherein two of the at least one second cutter are provided, and a third chip receptacle is arranged between the two second cutters,

wherein at least a first milling segment and a second milling segment are provided in the direction of the axis of rotation/the circumferential direction,

wherein the first milling segment has the two first cutters, and the second milling segment has the two second cutters,

wherein at least one fourth chip receptacle arranged between the first milling segment and the second milling segment,

wherein at least one fifth chip receptacle is provided transversely with respect to the two first cutters and/or the two second cutters, and

wherein the at least one fifth chip receptacle intersects a path of the two first cutters and/or the two second cutters, and/or wherein the fifth chip receptacle constitutes a recess in respective ones of the two first cutters and/or the two second cutters.

2. The milling tool as claimed in claim 1 , wherein the at least one first cutter is a right-handed cutting helix, and the at least one second cutter is a left-handed cutting helix.

3. The milling tool as claimed in claim 1 , wherein with respect to the axis of rotation, the fifth chip receptacle is arranged at a third angle, so that the fifth chip receptacle is aligned in the direction of the axis of rotation from an end region of the milling portion toward the shank when viewed in a direction that is counter to the direction of the axis of rotation.

4. The milling tool as claimed in claim 1 , wherein, with respect to the direction of the axis of rotation, the fourth chip receptacle is arranged at a fourth angle with respect to the direction of the axis of rotation or parallel to the direction of the axis of rotation.

5. The milling tool as claimed in claim 1 , wherein at least the two first cutters have first cutting edges that is are intersected multiple times by the fifth chip receptacle, so that the first cutting edges have a plurality of first edge portions.

6. The milling tool as claimed in claim 1 , wherein at least the two second cutters have second cutting edges that are intersected multiple times by the fifth chip receptacle, so that the second cutting edges have a plurality of second edge portions.

7. The milling tool as claimed in claim 5 , wherein the two first cutters, and/or the first cutting edges, and/or the first edge portions define a section of a helical line.

8. Milling workpieces, comprising at least partially fiber-containing materials, made using the milling tool as claims in claim 1 .

9. The milling tool according to claim 1 , wherein the first and second angles are acute angles.

10. The milling tool according to claim 3 , wherein the third angle is an obtuse angle.

11. The milling tool as claimed in claim 6 , wherein the two second cutters, and/or the second cutting edges, and/or the second edge portions define a section of a helical line.

12. Milling workpieces, comprising carbon-fiber-containing or glass-fiber-containing plastics/composite materials, made using the milling tool as claimed in claim 1 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2021
From: NETZER, STEFAN
To: HPTEC GMBH
Reel/Frame 058112/0049 →
Priority Claims (1)
EP 19168891 · Apr 12, 2019 · regional
Continuity (2)
Continuation PCTEP2020060101 · Apr 8, 2020
Related Publication 20220055126A1 · Feb 24, 2022
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