Research on hydrogen-induced cracking behavior of normalized pipeline steel

Hydrogen sulfide corrosion test was used to test the hydrogen-induced cracking sensitivity of the normalized BNS pipeline steel. The microstructure and morphology of hydrogen induced crack(HIC) of the normalized BNS pipeline steel after hydrogen sulfide corrosion test were observed with optical micr...

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Main Authors: Zhang Hai, Li Shaopo, Ding Wenhua, Hao Ning
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201817501027
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author Zhang Hai
Li Shaopo
Ding Wenhua
Hao Ning
author_facet Zhang Hai
Li Shaopo
Ding Wenhua
Hao Ning
author_sort Zhang Hai
collection DOAJ
description Hydrogen sulfide corrosion test was used to test the hydrogen-induced cracking sensitivity of the normalized BNS pipeline steel. The microstructure and morphology of hydrogen induced crack(HIC) of the normalized BNS pipeline steel after hydrogen sulfide corrosion test were observed with optical microscopy(OM), scanning electron microscopy(SEM). Combined with electron probe microanalyzer(EPMA) and hardness test, the hydrogen-induced cracking behavior of BNS pipeline steel was studied from the aspects of microstructure, crack morphology, center segregation and harness. The results showed that the pearlite band with high hardness caused by center segregation of C and Mn was the main crack initiation and propagation path for the long-size and linear shape hydrogen induced crack at the center of plate thickness, and the type of crack propagation was transgranular. Some tiny hydrogen induced crack nucleated from the small calcium-aluminate inclusion and the tiny hydrogen induced crack would not propagate to form long-size cracks with no suitable propagation path existing around the inclusion.
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spelling doaj.art-76f6eeca2e99444489992a57a24d01892022-12-21T22:23:44ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011750102710.1051/matecconf/201817501027matecconf_ifcae-iot2018_01027Research on hydrogen-induced cracking behavior of normalized pipeline steelZhang HaiLi ShaopoDing WenhuaHao NingHydrogen sulfide corrosion test was used to test the hydrogen-induced cracking sensitivity of the normalized BNS pipeline steel. The microstructure and morphology of hydrogen induced crack(HIC) of the normalized BNS pipeline steel after hydrogen sulfide corrosion test were observed with optical microscopy(OM), scanning electron microscopy(SEM). Combined with electron probe microanalyzer(EPMA) and hardness test, the hydrogen-induced cracking behavior of BNS pipeline steel was studied from the aspects of microstructure, crack morphology, center segregation and harness. The results showed that the pearlite band with high hardness caused by center segregation of C and Mn was the main crack initiation and propagation path for the long-size and linear shape hydrogen induced crack at the center of plate thickness, and the type of crack propagation was transgranular. Some tiny hydrogen induced crack nucleated from the small calcium-aluminate inclusion and the tiny hydrogen induced crack would not propagate to form long-size cracks with no suitable propagation path existing around the inclusion.https://doi.org/10.1051/matecconf/201817501027
spellingShingle Zhang Hai
Li Shaopo
Ding Wenhua
Hao Ning
Research on hydrogen-induced cracking behavior of normalized pipeline steel
MATEC Web of Conferences
title Research on hydrogen-induced cracking behavior of normalized pipeline steel
title_full Research on hydrogen-induced cracking behavior of normalized pipeline steel
title_fullStr Research on hydrogen-induced cracking behavior of normalized pipeline steel
title_full_unstemmed Research on hydrogen-induced cracking behavior of normalized pipeline steel
title_short Research on hydrogen-induced cracking behavior of normalized pipeline steel
title_sort research on hydrogen induced cracking behavior of normalized pipeline steel
url https://doi.org/10.1051/matecconf/201817501027
work_keys_str_mv AT zhanghai researchonhydrogeninducedcrackingbehaviorofnormalizedpipelinesteel
AT lishaopo researchonhydrogeninducedcrackingbehaviorofnormalizedpipelinesteel
AT dingwenhua researchonhydrogeninducedcrackingbehaviorofnormalizedpipelinesteel
AT haoning researchonhydrogeninducedcrackingbehaviorofnormalizedpipelinesteel