IP Library Granted Patent US 8,312,751
Granted Patent B2
US 8,312,751 · App. 13/153,567 · Granted Nov 20, 2012

Method for producing high alloy pipe

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Quick Facts
Patent No.
US 8,312,751
App. No.
13/153,567
Granted
Nov 20, 2012
Kind
B2
Abstract

A method for producing a high alloy pipe having a minimum yield strength of 758.3 to 965.2 MPa, comprising: preparing a high alloy pipe having controlled amounts of C, Si, Mn, Ni, Cr, Mo, Cu, and N, the balance being Fe and impurities by a hot working or further by a solid-solution heat treatment; and then subsequently subjecting the high alloy pipe to a cold rolling. The cold rolling is performed such that the working ratio Rd, in terms of the reduction of area, in the final cold rolling step falls within a range of larger than 30% and equal to or less than 80%, and the following formula is satisfied: Rd(%)>(MYS−520)/3.1−(Cr+6×Mo+300×N) wherein Rd and MYS signify the working ratio (%) in terms of the reduction of area and the targeted yield strength (MPa), respectively, and Cr, Mo and N signify the mass % of the individual elements.

Claims (24)

1. A method for producing a high alloy pipe having a minimum yield strength of 758.3 to 965.2 MPa, comprising:

preparing a high alloy material pipe having a chemical composition consisting, by mass %, of C: 0.03% or less, Si: 1.0% or less, Mn: 0.3 to 5.0%, Ni: 25 to 40%, Cr: 20 to 30%, Mo: 0 to 4%, Cu: 0 to 3% and N: 0.05 to 0.50%, and the balance being Fe and impurities, by a hot working or further by a solid-solution heat treatment; and

producing the high alloy pipe by subsequently subjecting the high alloy material pipe to a cold rolling,

wherein the cold rolling is performed under the conditions that the working ratio Rd, in terms of the reduction of area, in the final cold rolling step falls within a range of larger than 30% and equal to or less than 80%, and the following formula (1) is satisfied:

Rd (%)≧( MYS− 520)/3.1−(Cr+6×Mo+300×N)  (1)

wherein Rd and MYS signify the working ratio (%) in terms of the reduction of area and the targeted yield strength (MPa), respectively, and Cr, Mo and N signify the contents (mass %) of the individual elements, respectively.

2. A method for producing a high alloy pipe having a minimum yield strength of 861.8 to 965.2 MPa, comprising:

preparing a high alloy material pipe having a chemical composition consisting, by mass %, of C: 0.03% or less, Si: 1.0% or less, Mn: 0.3 to 5.0%, Ni: 25 to 40%, Cr: 20 to 30%, Mo: 0 to 4%, Cu: 0 to 3% and N: 0.05 to 0.50%, and the balance being Fe and impurities, by a hot working or further by a solid-solution heat treatment; and

producing the high alloy pipe by subsequently subjecting the high alloy material pipe to a cold rolling,

wherein the cold rolling is performed under the conditions that the working ratio Rd, in terms of the reduction of area, in the final cold rolling step falls within a range from 60 to 80%, and the following formula (1) is satisfied:

Rd (%)≧( MYS− 520)/3.1−(Cr+6×Mo+300×N)  (1)

wherein Rd and MYS signify the working ratio (%) in terms of the reduction of area and the targeted yield strength (MPa), respectively, and Cr, Mo and N signify the contents (mass %) of the individual elements, respectively.

3. A method for producing a high alloy pipe having a minimum yield strength of 861.8 to 965.2 MPa, comprising:

preparing a high alloy material pipe having a chemical composition consisting, by mass %, of C: 0.03% or less, Si: 1.0% or less, Mn: 0.3 to 5.0%, Ni: 25 to 40%, Cr: 20 to 30%, Mo: 0 to 4%, Cu: 0 to 3% and N: 0.16 to 0.50%, and the balance being Fe and impurities, by a hot working or further by a solid-solution heat treatment; and

producing the high alloy pipe by subsequently subjecting the high alloy material pipe to a cold rolling,

wherein the cold rolling is performed under the conditions that the working ratio Rd, in terms of the reduction of area, in the final cold rolling step falls within a range of larger than 30% and equal to or less than 80%, and the following formula (1) is satisfied:

Rd (%)≧( MYS− 520)/3.1−(Cr+6×Mo+300×N)  (1)

wherein Rd and MYS signify the working ratio (%) in terms of the reduction of area and the targeted yield strength (MPa), respectively, and Cr, Mo and N signify the contents (mass %) of the individual elements, respectively.

4. A method for producing a high alloy pipe having a minimum yield strength of 965.2 MPa, comprising:

preparing a high alloy material pipe having a chemical composition consisting, by mass %, of C: 0.03% or less, Si: 1.0% or less, Mn: 0.3 to 5.0%, Ni: 25 to 40%, Cr: 20 to 30%, Mo: 0 to 4%, Cu: 0 to 3% and N: 0.16 to 0.50%, and the balance being Fe and impurities, by a hot working or further by a solid-solution heat treatment; and

producing the high alloy pipe by subsequently subjecting the high alloy material pipe to a cold rolling,

wherein the cold rolling is performed under the conditions that the working ratio Rd, in terms of the reduction of area, in the final cold rolling step falls within a range from 60 to 80%, and the following formula (1) is satisfied:

Rd (%)≧( MYS− 520)/3.1−(Cr+6×Mo+300×N)  (1)

wherein Rd and MYS signify the working ratio (%) in terms of the reduction of area and the targeted yield strength (MPa), respectively, and Cr, Mo and N signify the contents (mass %) of the individual elements, respectively.

Assignments (3)
MERGER Recorded May 14, 2019
From: SUMITOMO METAL INDUSTRIES, LTD.
To: NIPPON STEEL & SUMITOMO METAL CORPORATION
Reel/Frame 049165/0517 →
CHANGE OF NAME Recorded May 14, 2019
From: NIPPON STEEL & SUMITOMO METAL CORPORATION
To: NIPPON STEEL CORPORATION
Reel/Frame 049257/0828 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 7, 2011
From: SUWABE, HITOSHI; ONO, TOSHIHIDE
To: SUMITOMO METAL INDUSTRIES, LTD.
Reel/Frame 026554/0776 →