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  1. National Taiwan Ocean University Research Hub
  2. 電機資訊學院
  3. 光電與材料科技學系
請用此 Handle URI 來引用此文件: http://scholars.ntou.edu.tw/handle/123456789/19926
DC 欄位值語言
dc.contributor.authorL.W. Tsayen_US
dc.contributor.authorY.C. Liuen_US
dc.contributor.authorM.C. Youngen_US
dc.contributor.authorD.-Y. Linen_US
dc.date.accessioned2022-01-18T01:52:50Z-
dc.date.available2022-01-18T01:52:50Z-
dc.date.issued2004-06-
dc.identifier.urihttp://scholars.ntou.edu.tw/handle/123456789/19926-
dc.description.abstractFatigue crack growth behavior of AISI 304 stainless steel plate and its plasma weld was evaluated in laboratory air and gaseous hydrogen. Observed variation in crack growth characteristics are explained based on the martensitic transformations near the crack tip due to mechanical loading and environmental action. The microstructures of fusion zone consisted of lacy ferrites in the columnar grain and subgrain boundaries within the austenite matrix, versus equiaxial austenite grains with some twins inside the parent metal. The threshold ΔK of the as-welded (AW) specimen required to initiate crack growth was clearly higher than that of the other specimens, regardless of testing environments. The considerable retardation of crack growth vanished for welds subjected to stress-relief treatment. In addition, all specimens tested in gaseous hydrogen exhibited enhanced crack growth. The fatigue-fractured surface of welds was found to be very rough suggesting a zig-zag crack path, unlike the straight path in the base metal. The lack of twin boundary failures in addition to the irregular solidified microstructure could be the causes for the improved resistance to fatigue crack growth in case of the stress-relieved weld. Moreover, the thin martensite layer formed on the cracked surface was correlated with the hydrogen-enhanced crack growth, resulting in inducing extensive quasi-cleavage (QC) fracture for the specimens tested in hydrogen.en_US
dc.language.isoenen_US
dc.subjectFatigue crack growthen_US
dc.subjectAISI 304 stainless steelen_US
dc.subjectPlasma welden_US
dc.subjectStress-relieved treatmenten_US
dc.subjectStrain-induced martensiteen_US
dc.subjectQuasi-cleavage fractureen_US
dc.titleFatigue crack growth of AISI 304 stainless steel welds in air and hydrogenen_US
dc.typejournal articleen_US
dc.identifier.doi10.1016/j.msea.2004.02.018-
dc.relation.journalvolume374en_US
dc.relation.journalissue1-2en_US
dc.relation.pages204-210en_US
item.openairetypejournal article-
item.fulltextno fulltext-
item.openairecristypehttp://purl.org/coar/resource_type/c_6501-
item.grantfulltextnone-
item.cerifentitytypePublications-
item.languageiso639-1en-
crisitem.author.deptCollege of Electrical Engineering and Computer Science-
crisitem.author.deptDepartment of Optoelectronics and Materials Technology-
crisitem.author.deptNational Taiwan Ocean University,NTOU-
crisitem.author.deptCenter of Excellence for Ocean Engineering-
crisitem.author.orcid0000-0003-1644-9745-
crisitem.author.parentorgNational Taiwan Ocean University,NTOU-
crisitem.author.parentorgCollege of Electrical Engineering and Computer Science-
crisitem.author.parentorgNational Taiwan Ocean University,NTOU-
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