Influence of Zr+ Ion Beam Irradiation on Structure and Fatigue Durability of 12Cr1MoV Steel

Dades bibliogràfiques
Parent link:Journal of Yoga & Physical Therapy
Vol. 6, iss. 1.— 2016.— [6: 229]
Autor corporatiu: Национальный исследовательский Томский политехнический университет Институт физики высоких технологий Кафедра материаловедения в машиностроении, Национальный исследовательский Томский политехнический университет Институт физики высоких технологий Кафедра физики высоких технологий в машиностроении
Altres autors: Panin S. V. Sergey Viktorovich, Vlasov I. V. Ilya Viktorovich, Sergeev V. P. Viktor Petrovich, Marushchak P. O. Pavel Orestovich, Ramasubbu S. Sunder, Ovechkin B. B. Boris Borisovich
Sumari:Title screen
Cyclic tension and bending tests of heat-resistant 12Cr1MoV steel specimens in as received state as well as after Zr+ ion beam irradiation were carried out. The differences in patterns of strain induced relief formation, as well cracking of thin modified surface layer were observed and analyzed by means of optical microscopy and interference profilometry. Changes to take place in subsurface layer of 150 ?m thick were characterized by means of microindentation, metallography and scanning electron microscopy. It is shown that mechanical properties of irradiated specimens are mostly influenced due to thermal treatment to take place during irradiation rather than formation of a 2 ?m thin surface layer doped with Zr. The differences in deformation behavior are interpreted in terms of physical mesomechanics concepts.
Publicat: 2016
Matèries:
Accés en línia:http://dx.doi.org/10.4172/2157-7595.1000229
Format: Electrònic Capítol de llibre
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=649652

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330 |a Cyclic tension and bending tests of heat-resistant 12Cr1MoV steel specimens in as received state as well as after Zr+ ion beam irradiation were carried out. The differences in patterns of strain induced relief formation, as well cracking of thin modified surface layer were observed and analyzed by means of optical microscopy and interference profilometry. Changes to take place in subsurface layer of 150 ?m thick were characterized by means of microindentation, metallography and scanning electron microscopy. It is shown that mechanical properties of irradiated specimens are mostly influenced due to thermal treatment to take place during irradiation rather than formation of a 2 ?m thin surface layer doped with Zr. The differences in deformation behavior are interpreted in terms of physical mesomechanics concepts. 
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