IP Library › Granted Patent US 10,221,474
Granted Patent B2
US 10,221,474 · App. 15/557,285 · Granted Mar 5, 2019

Method of producing Ni-based superalloy

Inventors: Shinichi Kobayashi (Yasugi, JP); Tomonori Ueno (Yasugi, JP); Takehiro Ohno (Yasugi, JP)
Assignee: HITACHI METALS, LTD.
C22F1/10B21J1/06B21J5/00B21J13/02C22C19/05C22C19/051C22C19/056C22F1/00
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Quick Facts
Patent No.
US 10,221,474
App. No.
15/557,285
Granted
Mar 5, 2019
Kind
B2
Abstract

A method of producing a Ni-based super heat-resistant alloy in which a hot working material is subjected to hot working with a mold is provided. The hot working material consists of, in mass%, 0.001 to 0.050% of C, 1.0% to 4.0% of Al, 3.0% to 7.0% of Ti, 12% to 18% of Cr, 12% to 30% of Co, 1.5% to 5.5% of Mo, 0.5% to 2.5% of W, 0.001% to 0.050% of B, 0.001% to 0.100% of Zr, 0% to 0.01% of Mg, 0% to 5% of Fe, 0% to 3% of Ta, 0% to 3% of Nb, and the remainder of Ni and impurities. The method includes: heating and holding the hot working material in a temperature range of 950° C. to 1150° C. for 1 hour or longer; and performing hot working on the material with the mold that is heated to a temperature range of 800° C. to 1150° C.

Claims (15)

1. A method of producing a Ni-based superalloy in which a hot working material of a Ni-based superalloy is subjected to hot working with a die heated to a temperature, the hot working material having a composition consisting of, in mass%, 0.001 to 0.050% of C, 1.0% to 4.0% of Al, 3.0% to 7.0% of Ti, 12% to 18% of Cr, 12% to 30% of Co, 1.5% to 5.5% of Mo, 0.5% to 2.5% of W, 0.001% to 0.050% of B, 0.001% to 0.100% of Zr, 0% to 0.01% of Mg, 0% to 5% of Fe, 0% to 3% of Ta, 0% to 3% of Nb, and the remainder of Ni and impurities,

the method comprising:

a hot working material heating step of heating and holding the hot working material in a temperature range of 950° C. to 1150° C. for 1 hour or longer; and

a hot working step of performing hot working on the hot working material at a strain rate of 0.005/second to 0.05/second with the die that is heated to the temperature in a range of 800° C. to 1150° C.

2. The method of producing a Ni-based superalloy according to claim 1 ,

wherein, in the hot working step, an atmosphere is in an air and at least a work surface of the die is a Ni-based solid-solution strengthened superalloy.

3. The method of producing a Ni-based superalloy according to claim 1 , wherein the hot working material is produced by a melting method.

4. The method of producing a Ni-based superalloy according to claim 1 ,

wherein, in the hot working step, a surface temperature of the hot working material when hot working is ended is set to be in a range of 0° C. to −200° C. with respect to a heating temperature of the hot working material.

5. The method of producing a Ni-based superalloy according to claim 4 ,

wherein, in the hot working step, an atmosphere is in an air and at least a work surface of the die is a Ni-based solid-solution strengthened superalloy.

6. The method of producing a Ni-based superalloy according to claim 4 ,

wherein, in the hot working step, the surface temperature of the hot working material when hot working is ended is set to be in a range of 0° C. to −100° C. with respect to the heating temperature of the hot working material.

7. The method of producing a Ni-based superalloy according to claim 6 ,

wherein, in the hot working step, an atmosphere is in an air and at least and at least a work surface of the die is a Ni-based solid-solution strengthened superalloy.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 12, 2017
From: KOBAYASHI, SHINICHI; UENO, TOMONORI; OHNO, TAKEHIRO
To: HITACHI METALS, LTD.
Reel/Frame 043554/0721 →
Priority Claims (1)
JP 2015-062842 · Mar 25, 2015 · national
Continuity (1)
Related Publication 20180057921A1 · Mar 1, 2018