Effects of laser heat treatment on the fracture morphologies of X80 pipeline steel welded joints by stress corrosion

De-jun Kong , Cun-dong Ye

International Journal of Minerals, Metallurgy, and Materials ›› 2014, Vol. 21 ›› Issue (9) : 898 -905.

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International Journal of Minerals, Metallurgy, and Materials ›› 2014, Vol. 21 ›› Issue (9) : 898 -905. DOI: 10.1007/s12613-014-0987-5
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Effects of laser heat treatment on the fracture morphologies of X80 pipeline steel welded joints by stress corrosion

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Abstract

The surfaces of X80 pipeline steel welded joints were processed with a CO2 laser, and the effects of laser heat treatment (LHT) on H2S stress corrosion in the National Association of Corrosion Engineers (NACE) solution were analyzed by a slow strain rate test. The fracture morphologies and chemical components of corrosive products before and after LHT were analyzed by scanning electron microscopy and energy-dispersive spectroscopy, respectively, and the mechanism of LHT on stress corrosion cracking was discussed. Results showed that the fracture for welded joints was brittle in its original state, while it was transformed to a ductile fracture after LHT. The tendencies of hydrogen-induced corrosion were reduced, and the stress corrosion sensitivity index decreased from 35.2% to 25.3%, indicating that the stress corrosion resistance of X80 pipeline steel welded joints has been improved by LHT.

Keywords

pipeline steel / welded joints / laser heating / stress corrosion / fracture morphology

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De-jun Kong, Cun-dong Ye. Effects of laser heat treatment on the fracture morphologies of X80 pipeline steel welded joints by stress corrosion. International Journal of Minerals, Metallurgy, and Materials, 2014, 21(9): 898-905 DOI:10.1007/s12613-014-0987-5

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References

[1]

Zhou JL, Li XG, Du CW, Pan Y, Li T, Liu Q. Passivation process of X80 pipeline steel in bicarbonate solutions. Int. J. Miner. Metall. Mater., 2011, 18(2): 178.

[2]

Dong CF, Xiao K, Liu ZY, Yang WJ, Li XG. Hydrogen induced cracking of X80 pipeline steel. Int. J. Miner. Metall. Mater., 2010, 17(5): 579.

[3]

Xu LY, Jing HY, Cao J, Li CG, Sun YH. H2S stress corrosion investigation of pipeline steel welded joints. Trans. Chin. Weld. Inst., 2010, 31(1): 12

[4]

Liu ZY, Li XG, Du CW, Lu L, Zhang YR, Cheng YF. Effect of inclusions on initiation of stress corrosion cracks in X70 pipeline steel in an acidic soil environment. Corros. Sci., 2009, 51(4): 895.

[5]

Liu ZY, Li XG, Zhang YR, Du CW, Zhai GL. Relationship between electrochemical characteristics and SCC of X70 pipeline steel in an acidic soil simulated solution. Acta Metall. Sin. Engl. Lett., 2009, 22(1): 58.

[6]

Liu ZY, Li XG, Cheng YF. In-situ characterization of the electrochemistry of grain and grain boundary of an X70 steel in a near-neutral pH solution. Electrochem. Commun., 2010, 12(7): 936.

[7]

Kong DJ, Wu YZ, Long D. Stress corrosion of X80 pipeline steel welded joints by slow strain test in NACE H2S solutions. J. Iron Steel Res. Int., 2013, 20(1): 40.

[8]

Liang P, Du CW, Li XG, Chen X, Liang Z. Effect of hydrogen on the stress corrosion cracking behavior of X80 pipeline steel in Ku’erle soil simulated solution. Int. J. Miner. Metall. Mater., 2009, 16(4): 407.

[9]

Zhou MW, Yu H. Effects of precipitates and inclusions on the fracture toughness of hot rolling X70 pipeline steel plates. Int. J. Miner. Metall. Mater., 2012, 19(9): 805.

[10]

Liu ZY, Zhai GL, Du CW, Li XG. Stress corrosion behavior of X70 pipeline steel in simulated solution of acid soil. Acta Metall. Sin., 2008, 44(2): 209

[11]

Goodman LR, Singh PM. Repassivation behavior of X65 pipeline steel in fuel grade ethanol and its implications for the stress corrosion cracking mechanism. Corros. Sci., 2012, 65, 238.

[12]

Zhao AM, Wang Y, Chen YL, Tang D, Gao XT, Zuo BQ. Precipitation behaviors of X80 acicular ferrite pipeline steel. Int. J. Miner. Metall. Mater., 2011, 18(3): 309.

[13]

Zhang K, Zhang MH, Guo ZH, Chen NL, Rong YH. A new effect of retained austenite on ductility enhancement in high-strength quenching-partitioning-tempering martensitic steel. Mater. Sci. Eng. A, 2011, 528(29–30): 8486.

[14]

Kong DJ, Long D, Wu YZ, Zhou CZ. Effects of laser shock processing on stress corrosion of X80 pipeline steel welded joints. J. Build. Mater., 2012, 15(4): 484

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