2018
DOI: 10.1155/2018/1604507
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A Comparative Study of Hydrogen-Induced Cracking Resistances of API 5L B and X52MS Carbon Steels

Abstract: Susceptibility to hydrogen-induced cracking of API 5L B and X52MS low-carbon steels in NACE 177-A, 177-B, and 284-B solutions has been investigated by the present work. A metallographic analysis of these steels was performed before and after NACE TM0284 standard testing. Corrosion products were characterized by scanning electron microscopy and X-ray dispersive energy spectrometry, which were subsequently identified by X-ray diffraction. Thus it was found that pH directly affects the solubility of corrosion pro… Show more

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Cited by 9 publications
(5 citation statements)
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“…Moreover, the shape of the non-metallic inclusions is almost impossible to change by subsequent heat treatment. It was established [9][10][11]13] that some sulfide inclusions in carbon and low alloy steels act as initiators of corrosion cracking, while others do not affect this process. The occurrence of cracks is mainly due to the placement of specific non-metallic inclusions, and as the cracks grow, they become inter-granular.…”
Section: Solid State Phenomena Vol 313mentioning
confidence: 99%
“…Moreover, the shape of the non-metallic inclusions is almost impossible to change by subsequent heat treatment. It was established [9][10][11]13] that some sulfide inclusions in carbon and low alloy steels act as initiators of corrosion cracking, while others do not affect this process. The occurrence of cracks is mainly due to the placement of specific non-metallic inclusions, and as the cracks grow, they become inter-granular.…”
Section: Solid State Phenomena Vol 313mentioning
confidence: 99%
“…It is a well-known fact that gases, i.e. hydrogen, influence greatly the mechanical properties of carbon steels [10]. In addition to the negative impact on the viscoplastic properties of steel, hydrogen contributes to the formation of residual defects in the form of pores, microcracks, hot and cold cracks, which reduce inevitably its performance, including resistance against corrosion and mechanical destruction.…”
Section: Introductionmentioning
confidence: 99%
“…Tube corrosion is influenced heavily by hydrogen and sulfur availability in the process medium. It has been identified by [3] that the samples where hydrogen content is 10 ml / 100 g and more experience fragile corrosion with numerous cracks in the fractured zone. Metal hydration plays a special negative role in the functional reliability of oil and gas pipelines operating in the chemically aggressive environments under alternating loads [4].…”
Section: Introductionmentioning
confidence: 99%