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Martensitic stainless steel

A stainless steel and system technology, applied in the field of martensitic stainless steel, can solve problems such as reducing productivity

Inactive Publication Date: 2007-10-24
NIPPON STEEL CORP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Changing the set tempering temperature in this way will reduce the productivity

Method used

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  • Martensitic stainless steel
  • Martensitic stainless steel

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0087] Samples having the chemical components shown in Table 1 were produced, and the tempering temperature range in which the yield stress was 758 to 860 MPa was investigated for each sample. Furthermore, the toughness and corrosion resistance of each sample were investigated.

[0088] serial number

Chemical composition (the unit is in mass%, the rest is Fe and impurities)

F1

F2

C

Sl

mn

P

S

Cu

Cr

Nl

Mo

sol.AL

N

Nb

V

Tl

Zr

Ca

Mg

La

Ce

Book

send

bright

steel

1

0.006

0.14

0.46

0.012

0.0008

0.02

11.79

6.79

2.91

0.020

0.0053

0.002

0.11

0.075

0

0

0

0

0

628.7

0.20

2

0.006

0.14

0.47

0.012

0.0008

0.02

11.75

6.78

2.90

0.027

0.0030

0.0...

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PUM

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Abstract

A martensitic stainless steel which has a chemical composition, in mass %, that C: 0.001 to 0.01 %, Si: 0.5 % or less, Mn: 0.1 to 3.0 %, P: 0.04 % or less, S: 0.01 % or less, Cr: 10 to 15 %, Ni: 4 to 8 %, Mo: 2.8 to 5.0 %, Al: 0.001 to 0.10 %, N: 0.07 % or less, Ti: 0 to 0.25 %, V: 0 to 0.25 %, Nb: 0 to 0.25 %, Zr: 0 to 0.25 %, Cu: 0 to 1.0 %, Ca: 0 to 0.005 %, Mg: 0 to 0.005 %, La: 0 to 0.005 %, Ce: 0 to 0.005 %, and the balance: Fe and impurities, with a proviso that the following formulae (1) and (2) are satisfied, and exhibits a yield stress of 758 to 860 MPa. 922.6 - 554.5C - 50.9Mn +2944.8P + 1.056Cr - 81.1Ni + 95.8Mo - 125.1Ti - 1584.9Al - 376.1N = 600 (1) 30C + 0.5Mn + Ni + 0.5Cu - 1.5Si - Cr - Mo + 7.9 = 0 (2) The above martensitic stainless steel can achieve a yield stress of 758 to 860 MPa with a range of tempering temperature being broader than that in the case of a conventional martensitic stainless steel.

Description

technical field [0001] The present invention relates to martensitic stainless steel, and more specifically, to martensitic stainless steel used in a corrosive environment containing corrosive substances such as hydrogen sulfide, carbon dioxide, and chloride ions. Background technique [0002] With the deepening of oil wells and gas wells, martensitic stainless steel used as steel materials for oil wells such as oil well pipes is required to have high strength and high toughness. For this reason, martensitic stainless steel having a yield stress (0.2% yield strength) of 758 to 860 MPa (hereinafter referred to as 110 ksi grade) and a high-strength martensitic stainless steel of 110 ksi grade or higher are being developed. [0003] Martensitic stainless steel for oil wells also has high corrosion resistance of SCC (stress corrosion cracking) resistance and SSC (sulfurization stress corrosion) resistance. This is because oil wells and gas wells are corrosive environments that c...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22C38/00C22C38/58C21D6/00
CPCC21D2211/008C21D1/25C22C38/02C22C38/04C22C38/44C21D6/004
Inventor 高部秀树
Owner NIPPON STEEL CORP
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