IP Library › Granted Patent US 12,605,782
Granted Patent B2
US 12,605,782 · App. 18/284,571 · Granted Apr 21, 2026

Tool and manufacturing method of it

Inventor: Stefan Larsson-Fritz (Fagersta, SE)
Assignee: Seco Tools AB
B23K1/19B23K1/012B23K35/3006B23K35/302C21D1/25C21D1/613C22C38/02C22C38/22C22C38/38B23K2101/20B23K2103/04B23K2103/50
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Quick Facts
Patent No.
US 12,605,782
App. No.
18/284,571
Granted
Apr 21, 2026
Kind
B2
Abstract

A tool includes a cemented carbide part and a steel part joined by brazing, where the steel part has an average hardness of between 390 and 510 HV30. The braze joint includes Ti and a TiC layer, with a thickness of between 0.03 and 5 μm, adjoining to the cemented carbide part. The tool provides a strong braze joint and a steel part that have an even hardness.

Claims (22)

1 . A tool comprising:

a cemented carbide part;

a steel part having a composition of from 0.63 to 0.70 wt % C, from 1.40 to 1.60 wt % Si, from 1.35 to 1.55 wt % Mn, from 1.00 to 1.20 wt % Cr, from 0.23 to 0.27 wt % Mo, less than 0.25 wt % Ni, less than 0.025 wt % P, less than 0.0015 wt % S, and the balance Fe, and an average hardness of between 390 and 510 HV30 with a standard deviation between 0 and 30 HV30; and

a braze joint joining the cemented carbide part and the steel part, wherein the braze joint includes Ti, and wherein the braze joint includes a TiC layer, with a thickness of between 0.03 and 5 μm, adjoining the cemented carbide part.

2 . The tool according to claim 1 , wherein the steel part has an average hardness of between 420 and 480 HV30 with a standard deviation of between 0 and 15 HV1.

3 . The tool according to claim 1 , wherein the braze joint has a thickness of between 20 and 200 μm.

4 . The tool according to claim 1 , wherein the braze joint includes Cu and Ag.

5 . The tool according to claim 1 , wherein the braze joint includes a composition of Ag in an amount of from 30 to 80 wt %, Cu in an amount of 15 to 65 wt %, In in an amount of 0 to 15 wt % and Ti in an amount of 0.3 to 15 wt %.

6 . A method of making a tool according to claim 1 comprising the steps of:

providing a cemented carbide part;

providing a steel part having a composition of from 0.63 to 0.70 wt % C, from 1.40 to 1.60 wt % Si, from 1.35 to 1.55 wt % Mn, from 1.00 to 1.20 wt % Cr, from 0.23 to 0.27 wt % Mo, less than 0.25 wt % Ni, less than 0.025 wt % P, less than 0.0015 wt % S and the balance Fe;

subjecting the cemented carbide part and the steel part with the braze material in between to a brazing step in a furnace at a temperature between 80° and 1100° C., for a time period of between 5 and 60 minutes and wherein the brazing takes place in an inert atmosphere at a pressure of between 10 to 400 mBar;

after the brazing, subjecting the cemented carbide part and the steel part with the braze material in between into a quenching step by allowing an inert gas to flow into the furnace at a pressure of at least 400 mBar until a temperature of below 200° C. is reached; and

subjecting at least the steel part to a tempering step at a temperature of between 300 and 700° C. for between 15 minutes and 3 hours.

7 . The method of making a tool according to claim 6 , wherein the brazing step is performed at a temperature between 850 and 980° C., for a time period of between 15 and 45 minutes.

8 . The method of making a tool according to claim 6 , wherein the inert atmosphere during brazing is Ar and/or N 2 .

9 . The method of making a tool according to claim 6 , wherein the temperature during the quenching is lowered at a rate of at least 30° C./minute.

10 . The method of making a tool according to claim 6 , wherein the inert gas used to flow into the furnace during quenching is one of Ar or N 2 , or a mixture thereof.

11 . The method of making a tool according to claim 6 , wherein the tempering step is performed at a temperature of between 400 and 650° C. for between 15 minutes to 3 hours.

12 . The method of making a tool according to claim 6 , wherein the braze material has a solidus temperature of between 488 and 1123° C. and a liquidus temperature of between 612 and 1180° C. and wherein the braze material, in addition to Ti, further includes one or more elements selected from Zn, Ag, Cu, Sn, In, Zr, Hf and Cr.

13 . The method of making a tool according to claim 6 , wherein the braze material includes Ag in an amount of from 30 to 80 wt %, Cu in an amount of 15 to 65 wt %, In in an amount of 0 to 15 wt %, and Ti in an amount of 0.3 to 15 wt %.

14 . The method of making a tool according to claim 6 , wherein a clamping force of between 0.5 to 10 MPa is applied during the brazing step.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 28, 2023
From: LARSSON-FRITZ, STEFAN
To: SECO TOOLS AB
Reel/Frame 065675/0515 →
Priority Claims (1)
EP 21166490 · Apr 1, 2021 · regional
Continuity (1)
Related Publication 20240173787A1 · May 30, 2024
References Cited (6)
US 12350752B2 · Ulitzka · 2025 [cited by examiner]
US 20230330800A1 · Zheng · 2023 [cited by examiner]
CN 110091023A · 2019 [cited by applicant]
JP 2007090371A · 2007 [cited by applicant]
Jiang Chao et al: “Microstructure and mechanical properties of brazing bonded WC-15Co/35CrMo joint using AgNi/CuZn/AgNi composite interlayers”, International Journal of Refractory Metals and Hard Materials, vol. 70, Sep… [cited by applicant]
Fing et al: “Interface structure and mechanical properties of the brazed joint of Ti C cermet and steel”, Journal of the European Ceramic Society, Elsevier Science Publishers, Barking, Essex. GB. vol. 26, No. 7, Jan. 1,… [cited by applicant]