Микроструктура и механические свойства стабильной аустенитной стали после термомеханической обработки; Перспективы развития фундаментальных наук; Т. 1 : Физика

מידע ביבליוגרפי
Parent link:Перспективы развития фундаментальных наук=Prospects of Fundamental Sciences Development: сборник научных трудов XIV Международной конференции студентов, аспирантов и молодых ученых, г. Томск, 25-28 апреля 2017 г./ Национальный исследовательский Томский политехнический университет (ТПУ) ; под ред. И. А. Курзиной, Г. А. Вороновой.— , 2017
Т. 1 : Физика.— 2017.— [С. 36-38]
מחבר ראשי: Аккузин С. А.
מחברים אחרים: Литовченко И. Ю. (научный руководитель)
סיכום:Заглавие с экрана
The features of microstructure and mechanical properties of stable austenitic steel after thermomechanical treatment consist of low-temperature deformation, warm deformation and subsequent annealing have been investigated. It is shown that under these conditions in the steel direct (γ → α')- and inverse (α' → γ)-martensitic transformations are realized. As a result of the thermomechanical treatment submicrocrystalline structural states with a high density of micro- and nanotwins and localized deformation bands are formed. The yield strength of these structural states more than 3 times increases by the original value.
שפה:רוסית
יצא לאור: 2017
נושאים:
גישה מקוונת:http://earchive.tpu.ru/handle/11683/44155
פורמט: אלקטרוני Book Chapter
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=624330
תיאור
סיכום:Заглавие с экрана
The features of microstructure and mechanical properties of stable austenitic steel after thermomechanical treatment consist of low-temperature deformation, warm deformation and subsequent annealing have been investigated. It is shown that under these conditions in the steel direct (γ → α')- and inverse (α' → γ)-martensitic transformations are realized. As a result of the thermomechanical treatment submicrocrystalline structural states with a high density of micro- and nanotwins and localized deformation bands are formed. The yield strength of these structural states more than 3 times increases by the original value.