Ezzel az azonosítóval hivatkozhat erre a dokumentumra forrásmegjelölésben vagy hiperhivatkozás esetén: http://elartu.tntu.edu.ua/handle/123456789/1825

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dc.contributor.authorMaruschak, Pavlo Orestovich-
dc.contributor.authorOkipnyi, Igor-
dc.contributor.authorPanin, Sergey-
dc.contributor.authorKonovalenko, Igor Volodimirovich-
dc.contributor.authorМарущак, Павло Орестович-
dc.contributor.authorОкіпний, Ігор-
dc.contributor.authorПанін, Сєргєй-
dc.contributor.authorКоноваленко, Ігор Володимирович-
dc.date.accessioned2012-11-27T07:42:28Z-
dc.date.available2012-11-27T07:42:28Z-
dc.date.issued2012-11-27T07:42:28Z-
dc.identifier.urihttp://elartu.tntu.edu.ua/handle/123456789/1825-
dc.descriptionMaruschak P., Okipnyi I., Panin S., Konovalenko I. Effect of strain localization at the crack tip and material hydrogenation on fracture toughness of heat resistant steel// Multiscaling and Mesomechanics Aspects of Globalization in Science and Culture. – Budapest, Hungary.– 2012.– pp.175-178.uk
dc.description.abstractThe fracture toughness of steel 15Kh2MFA(II) after the PTL was investigated. It was established that the crack start is a multilevel process, in which the defining role is played by the turning modes of deformation. Regardless of the PTL modes in air and in the aggressive medium (electrolytic hydrogen), the resistance to brittle failure of the steel investigated increases as compared to static fracture toughness of the material in the initial state.uk
dc.language.isoenuk
dc.subjectfractureuk
dc.subjectfailureuk
dc.subjectfatigue crackuk
dc.subjectstrain localizationuk
dc.subjecthydrogenationuk
dc.subjectthermomechanical loadinguk
dc.titleEffect of strain localization at the crack tip and material hydrogenation on fracture toughness of heat resistant steeluk
dc.typeArticleuk
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