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Stress-corrosion cracking of a Monel 400 tube
dc.creator | Katsamas, A. I. | en |
dc.creator | Haidemenopoulos, G. N. | en |
dc.creator | Zervaki, A. D. | en |
dc.creator | Melas, I. | en |
dc.date.accessioned | 2015-11-23T10:34:08Z | |
dc.date.available | 2015-11-23T10:34:08Z | |
dc.date.issued | 2004 | |
dc.identifier | 10.1361/15477020421764 | |
dc.identifier.issn | 15477029 | |
dc.identifier.uri | http://hdl.handle.net/11615/29231 | |
dc.description.abstract | A bent Ni-Cu Monel 400 alloy tube, which operated as part of a pipeline in a petrochemical distillery installation, failed by through-thickness cracking. The pipeline was used to carry a stream of gaseous hydrocarbons containing hydrochloric acid (HCl) into a reaction tower. The tower provided a caustic solution (NaOH) to remove HCl from the stream, before the latter was directed to a burner. Metallographic examination showed that the cracks were intergranular and were frequently branched. Although nominal chemical composition of the component was found within the specified range, electron dispersive analysis by X-ray (EDXA) indicated significant segregation of sulfur and chlorine on grain boundaries. Failure was attributed to hypochlorous-acid (HClO)-induced stress-corrosion cracking (SCC). The HClO was formed by the reaction of HCl with atmospheric O2, and the oxygen entered the tube during shutdowns/ startups of the installation. Residual stresses, originating from the in situ bend forming of the tube during assembly of the line, provided a driving force for crack growth, and the segregation of sulfur on grain boundaries enhanced the susceptibility of the material to cracking. © ASM International. | en |
dc.source | Journal of Failure Analysis and Prevention | en |
dc.source.uri | http://www.scopus.com/inward/record.url?eid=2-s2.0-12344330510&partnerID=40&md5=9b864b936c356a06ed85bcf30cbc56ab | |
dc.subject | Hypochlorous acid | en |
dc.subject | Monel 400 | en |
dc.subject | Petrochemical industry | en |
dc.subject | Stress-corrosion cracking | en |
dc.subject | Composition | en |
dc.subject | Energy dispersive spectroscopy | en |
dc.subject | Grain boundaries | en |
dc.subject | Hydrocarbons | en |
dc.subject | Hydrochloric acid | en |
dc.subject | Petroleum industry | en |
dc.subject | Petroleum pipelines | en |
dc.subject | Segregation (metallography) | en |
dc.subject | Stream flow | en |
dc.subject | Stress corrosion cracking | en |
dc.subject | Towers | en |
dc.subject | Tubes (components) | en |
dc.subject | Alloy tube | en |
dc.subject | Metallographic examination | en |
dc.subject | Reaction tower | en |
dc.subject | Through thickness cracking | en |
dc.subject | Monel metal | en |
dc.title | Stress-corrosion cracking of a Monel 400 tube | en |
dc.type | journalArticle | en |
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