Marine hydrogen-induced-cracking-resistant X80-grade pipeline steel and manufacturing method thereof
A technology of anti-hydrogen-induced cracking and manufacturing methods, applied in the direction of manufacturing tools, metal rolling, metal rolling, etc., can solve the problems of high hydrogen-induced cracking resistance and deep-sea applications that have not been mentioned, and achieve excellent anti-HIC performance, excellent Effects of resistance to hydrogen-induced cracking, increased resistance to crack growth, and difficulty of grain boundary cracking
Active Publication Date: 2021-12-31
WUHAN UNIV OF SCI & TECH
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Problems solved by technology
[0003] At present, the high hydrogen-induced cracking resistance marine pipeline steels involved in the existing technology are mainly low-grade pipeline steels with low strength, such as X70 and X65 steel grades, etc. There is no technology involving high-steel grade marine pipelines of X80 and above steel; while the X80 pipeline steel technology involving high strength and high toughness pipeline steel does not mention high hydrogen-induced cracking resistance and deep-sea applications
Method used
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Embodiment 1
[0049] Example 1 and Comparative Example 1: After rough rolling, the gas mist was cooled to 960°C, and then slowly cooled to 920°C for heat preservation treatment for 15 minutes, and the total time of slow cooling + heat preservation treatment was 25 minutes;
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Abstract
The invention discloses marine hydrogen-induced-cracking-resistant X80-grade pipeline steel and a manufacturing method of the marine hydrogen-induced-cracking-resistant X80-grade pipeline steel, and relates to the technical field of steel for ocean engineering. According to the chemical components, the marine hydrogen-induced-cracking-resistant X80-grade pipeline steel comprises, by mass percentage, 0.05%-0.07% of C, 0.24%-0.30% of Si, 1.75%-1.95% of Mn, smaller than or equal to 0.003% of S, smaller than or equal to 0.005% of P, 0.20%-0.30% of Cu, 0.25%-0.30% of Ni, 0.22%-0.27% of Mo, 0.03%-0.06% of Ta, 0.005%-0.01% of N and the balance Fe. A manufacturing technology of the pipeline steel comprises the steps of conducting burdening, smelting and casting to form a blank, reheating the casting blank, conducting rough rolling, conducting aerial fog cooling and slow cooling, conducting finish rolling and conducting curling. According to the method, a proper quantity of Ta elements are added, the Ta / N ratio is controlled, fog cooling and slow cooling technologies are adopted after rough rolling is accomplished, and therefore dispersed tantalum carbide precipitated phases can be formed in the steel, a granular bainite matrix is refined, the sigma 3 interface proportion is reduced, and the combination of high strength, high toughness and excellent hydrogen induced cracking resistance is achieved.
Description
technical field [0001] The invention relates to the technical field of steel for marine engineering, in particular to a hydrogen-induced cracking-resistant X80 grade pipeline steel for marine use and a manufacturing method thereof. Background technique [0002] In recent years, my country's marine economy has developed rapidly. With the large-scale exploration and development of deep-water oil and gas fields in the South my country Sea, the application scale of high-strength pipeline steel for deep-sea oil and gas transportation will expand rapidly. my country's development and production of submarine pipeline steel began in 2004. So far, Baosteel, Anshan Iron and Steel, Wuhan Iron and Steel, etc. have developed and produced special submarine pipeline steel of X70 and below grades, which have been applied in shallow sea environments, and X70 and higher grade pipeline steels for deep seas have been developed. still in its infancy; [0003] At present, the high hydrogen-induce...
Claims
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Patent Type & Authority Applications(China)
IPC IPC(8): C22C38/02C22C38/04C22C38/08C22C38/12C22C38/16B21B3/02B21B37/58B21B37/74B21B45/02C21D8/02C22C33/04
CPCC22C38/02C22C38/04C22C38/16C22C38/08C22C38/12C22C38/001C21D8/0205C21D8/0221C22C33/04B21B3/02B21B37/74B21B37/58B21B45/0203C21D2211/002C21D2211/005
Inventor 张施琦刘静黄峰葛锐彭志贤
Owner WUHAN UNIV OF SCI & TECH
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