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dc.contributor.authorÁlvarez Laso, José Alberto*
dc.contributor.authorCicero, Sergio*
dc.date.accessioned2021-02-11T13:59:48Z
dc.date.available2021-02-11T13:59:48Z
dc.date.issued2020*
dc.date.submitted2020-06-09 16:38:57*
dc.identifier46081*
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/47979
dc.description.abstractFracture, fatigue, and other subcritical processes, such as creep crack growth or stress corrosion cracking, present numerous open issues from both scientific and industrial points of view. These phenomena are of special interest in industrial and civil metallic structures, such as pipes, vessels, machinery, aircrafts, ship hulls, and bridges, given that their failure may imply catastrophic consequences for human life, the natural environment, and/or the economy. Moreover, an adequate management of their operational life, defining suitable inspection periods, repairs, or replacements, requires their safety or unsafety conditions to be defined. The analysis of these technological challenges requires accurate comprehensive assessment tools based on solid theoretical foundations as well as structural integrity assessment standards or procedures incorporating such tools into industrial practice.*
dc.languageEnglish*
dc.subjectTA1-2040*
dc.subjectT1-995*
dc.subject.othern/a*
dc.subject.otherreuse*
dc.subject.othermicrostructure*
dc.subject.otherfatigue crack growth*
dc.subject.othermicromechanisms*
dc.subject.otherweld joint*
dc.subject.otherFFM*
dc.subject.otherslow strain rate tensile test*
dc.subject.otherfracture*
dc.subject.otherorthotropic steel bridge deck*
dc.subject.otherfatigue*
dc.subject.otherthree-point bending fatigue*
dc.subject.otherEMC*
dc.subject.othernotch effect*
dc.subject.otherthermal desorption spectroscopy*
dc.subject.othersynchrotron radiation*
dc.subject.othertube specimen with hole*
dc.subject.othercritical distance*
dc.subject.otherInconel 690 tube*
dc.subject.otherfatigue test*
dc.subject.otherfailure assessment diagram (FAD)*
dc.subject.otheralloy steel*
dc.subject.otherX-ray techniques*
dc.subject.otheroverload*
dc.subject.otheraluminium plates*
dc.subject.otherfatigue strength*
dc.subject.otherfastener*
dc.subject.otherhigh strength low alloy steels (HSLA)*
dc.subject.otherinternal fatigue fracture*
dc.subject.other?CT imaging*
dc.subject.otherhydrogen induced cracking (HIC)*
dc.subject.othernotch*
dc.subject.otherrotating bending*
dc.subject.otherlocal strain*
dc.subject.otheraluminum foam sandwich*
dc.subject.otherstructural steel*
dc.subject.othersurface defect*
dc.subject.othercompressive residual stress*
dc.subject.otherblunt V-notches*
dc.subject.othercathodic polarization*
dc.subject.otherneedle peening*
dc.subject.othersemi-elliptical crack*
dc.subject.otherfatigue life*
dc.subject.otherhydrogen-induced delayed fracture*
dc.subject.otherfatigue design curve*
dc.subject.othersubcritical propagation*
dc.subject.othercathodic polarization or cathodic charge (CC)*
dc.subject.otherhydrogen embrittlement*
dc.subject.otheraircraft*
dc.subject.otherfatigue limit*
dc.subject.otherenvironmentally assisted cracking*
dc.subject.otherductile failure*
dc.subject.othermode I loading*
dc.subject.othercathodic protection (CP)*
dc.subject.otherpeel strength*
dc.subject.otherhot-press-formed steel*
dc.subject.othercrack initiation*
dc.subject.otherretardation*
dc.subject.othertheory of critical distances*
dc.subject.otherwelded joint*
dc.titleFracture, Fatigue and Structural Integrity of Metallic Materials*
dc.typebook
oapen.identifier.doi10.3390/books978-3-03928-860-1*
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0*
oapen.relation.isbn9783039288601*
oapen.relation.isbn9783039288595*
oapen.pages170*
oapen.edition1st*


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