Copper and Hadfield Steel Deformation Structures near the Friction Surface; AIP Conference Proceedings; Vol. 2051 : Advanced Materials with Hierarchical Structure for New Technologies and Reliable Structures 2018 (AMHS’18)

التفاصيل البيبلوغرافية
Parent link:AIP Conference Proceedings
Vol. 2051 : Advanced Materials with Hierarchical Structure for New Technologies and Reliable Structures 2018 (AMHS’18).— 2018.— [020178, 4 p.]
مؤلف مشترك: Национальный исследовательский Томский политехнический университет (ТПУ) Юргинский технологический институт (филиал) (ЮТИ) Отделение промышленных технологий (ОПТ)
مؤلفون آخرون: Lychagin D. V. Dmitry Vasilievich, Chumaevskii A. V., Kalashnikov M. P., Fortuna S. V., Lychagina L. L., Tsvetkov N. A.
الملخص:Title screen
Alteration in the deformation structure of copper single crystals and the Hadfield steel polycrystalline in the cross section depend on the distance from the friction surface. The following sequence of substructure formation has been determined: a mixing zone with nanograins and nanotwins, a fragmented substructure with microbands, microtwins, a cellular and tangled substructures, and a substructure with chaotic dislocation distribution. Hadfield steel has a much greater number of nanotwins in the surface layer than copper and it has a layer of microtwins. Evolution of dislocation structure when approaching the friction area was found to be similar to the evolution of substructures under active plastic deformation.
Режим доступа: по договору с организацией-держателем ресурса
اللغة:الإنجليزية
منشور في: 2018
الموضوعات:
الوصول للمادة أونلاين:https://doi.org/10.1063/1.5083421
التنسيق: MixedMaterials الكتروني فصل الكتاب
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=659190

MARC

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200 1 |a Copper and Hadfield Steel Deformation Structures near the Friction Surface  |f D. V. Lychagin [et al.] 
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330 |a Alteration in the deformation structure of copper single crystals and the Hadfield steel polycrystalline in the cross section depend on the distance from the friction surface. The following sequence of substructure formation has been determined: a mixing zone with nanograins and nanotwins, a fragmented substructure with microbands, microtwins, a cellular and tangled substructures, and a substructure with chaotic dislocation distribution. Hadfield steel has a much greater number of nanotwins in the surface layer than copper and it has a layer of microtwins. Evolution of dislocation structure when approaching the friction area was found to be similar to the evolution of substructures under active plastic deformation. 
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463 0 |0 (RuTPU)RU\TPU\network\27575  |t Vol. 2051 : Advanced Materials with Hierarchical Structure for New Technologies and Reliable Structures 2018 (AMHS’18)  |o Proceedings of the International conference, 1–5 October 2018, Tomsk, Russia  |f National Research Tomsk Polytechnic University (TPU); eds. V. E. Panin, S. G. Psakhie, V. M. Fomin  |v [020178, 4 p.]  |d 2018 
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701 1 |a Lychagin  |b D. V.  |c specialist in the field of mechanical engineering  |c Professor of Yurga technological Institute of Tomsk Polytechnic University, Doctor of physical and mathematical sciences  |f 1957-  |g Dmitry Vasilievich  |2 stltpush  |3 (RuTPU)RU\TPU\pers\31402 
701 1 |a Chumaevskii  |b A. V. 
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