IP Library › Granted Patent US 12,594,599
Granted Patent B2
US 12,594,599 · App. 18/268,742 · Granted Apr 7, 2026

Cutting tool

Inventors: Jose Luis Garcia (Sandviken, SE); Leif Dahl (Sandviken, SE); Johnny Bruhn (Sandviken, SE); Erik Holmstrom (Sandviken, SE)
Assignee: AB Sandvik Coromant
B22F7/064B23B27/148B23B27/18C04B35/52C04B35/5611C04B35/5831C04B37/005C04B37/006C22C5/08C22C9/00C22C32/0052C04B2235/3843C04B2235/427C04B2237/083C04B2237/124C04B2237/125C04B2237/361C04B2237/363
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Quick Facts
Patent No.
US 12,594,599
App. No.
18/268,742
Granted
Apr 7, 2026
Kind
B2
Abstract

A cutting tool includes a supporting body and a cBN or PCD cutting edge tip attached to the supporting body via a 5-150 μm braze joint. The supporting body is cemented carbide having 3-25 wt % of a metallic binder, optionally up to 25 wt % of carbides or carbonitrides of one or more elements of group 4, 5, or 6, and the rest WC. The metallic binder includes at least 40 wt % Ni, and the braze joint has, in the order from the supporting body, a first layer of TiC situated next thereto, with an average thickness of 10-400 nm, a second layer, with an average thickness of 0.5-8 μm, having in average at least 5 wt % metallic Ni, in average 25-60 wt % metallic Cu and in average 15-45 wt % metallic Ti, and a third layer, with an average thickness of 4-145 μm, having metallic Ag and metallic Cu.

Claims (17)

1 . A cutting tool comprising:

a supporting body; and

a cBN or PCD cutting edge tip, wherein the cBN or PCD cutting edge tip is attached to the supporting body via a 5-150 μm thick braze joint, the supporting body being cemented carbide including 3-25 wt % of a metallic binder, optionally up to 25 wt % of carbides or carbonitrides of one or more elements of group 4, 5, or 6 in the periodic table of elements, and the rest WC, wherein the metallic binder includes at least 40 wt % Ni, and wherein said braze joint includes, in order from the supporting body, a first layer of TiC situated next to the supporting body with an average thickness of 10-400 nm, a second layer, with an average thickness of 0.5-8 μm, including in average at least 5 wt % metallic Ni, in average 25-60 wt % metallic Cu and in average 15-45 wt % metallic Ti, and a third layer, with an average thickness of 4-145 μm, including metallic Ag and metallic Cu.

2 . The cutting tool according to claim 1 , wherein the metallic binder in the cemented carbide of the supporting body includes 50-90 wt % Ni.

3 . The cutting tool according to claim 1 , wherein the metallic binder in the cemented carbide of the supporting body includes 10-20 wt % Fe.

4 . The cutting tool according to claim 1 , wherein the thickness of the braze joint is 10-100 μm.

5 . The cutting tool according to claim 1 , wherein the average thickness of the first layer of TiC is 50-300 nm.

6 . The cutting tool according to claim 1 , wherein the second layer includes in average 10-40 wt % metallic Ni.

7 . The cutting tool according to claim 1 , wherein the second layer includes in average 35-55 wt % metallic Cu.

8 . The cutting tool according to claim 1 , wherein the second layer includes in average 25-40 wt % metallic Ti.

9 . The cutting tool according to claim 1 , wherein the average thickness of the second layer is 1-5 μm.

10 . The cutting tool according to claim 1 , wherein the second layer has a sum of metallic Ni, metallic Cu and metallic Ti of in average 70-100 wt %.

11 . The cutting tool according to claim 1 , wherein the third layer includes metallic In.

12 . The cutting tool according to claim 1 , wherein the third layer has a sum of metallic Cu and metallic Ag of in average 60-100 wt %.

13 . The cutting tool according to claim 1 , wherein the third layer includes in average 60-80 wt % metallic Ag and in average 15-40 wt % metallic Cu.

14 . The cutting tool according to claim 1 , wherein there is a Ni depleted zone in an outermost portion of the supporting body next to the braze joint, the Ni depleted zone having an average thickness of 0.5-5 μm.

15 . The cutting tool according to claim 1 , wherein the tool is a turning insert, a milling insert, or an endmill.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 21, 2023
From: GARCIA, JOSE LUIS; DAHL, LEIF; BRUHN, JOHNNY; HOLMSTROM, ERIK
To: AB SANDVIK COROMANT
Reel/Frame 064644/0543 →
Priority Claims (1)
EP 20216552 · Dec 22, 2020 · regional
Continuity (1)
Related Publication 20240307960A1 · Sep 19, 2024
References Cited (8)
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Yin Zhiyong: “Vacuum Brazing of Diamond to Tungsten Carbide”, Apr. 30, 2016. [[/ 1-124, URL:https://digitalcommons.mtech.edu/cgi/viewcontent.cgi?article=1079&context=grad_rsch. [cited by applicant]