Multiscaling of lattice curvature on friction surfaces of metallic materials as a basis of their wear mechanism; Physical Mesomechanics; Vol. 20, iss. 1

Chi tiết về thư mục
Parent link:Physical Mesomechanics.— , 1998-
Vol. 20, iss. 1.— 2017.— [P. 69-77]
Tác giả của công ty: Национальный исследовательский Томский политехнический университет (ТПУ) Инженерная школа новых производственных технологий (ИШНПТ) Отделение материаловедения (ОМ)
Tác giả khác: Panin V. E. Viktor Evgenyevich, Pinchuk V. G. Vyacheslav Grigorievich, Korotkevich S. V. Sergey Vasiljevich, Panin S. V. Sergey Viktorovich
Tóm tắt:Title screen
A comprehensive structural study has been performed to explore deformation and wear debris formation on friction surfaces of metallic materials. A hierarchy of structural scales of plastic deformation and failure during wear has been established. The nanoscale plays the major role in the hierarchical self-organization of multiscale debris formation processes. On this scale, bifurcational interstitial states arise in zones of local lattice curvature, with plastic distortion and motion of nonequilibrium point defects which determine the nonlinear dynamics of structure formation and wear of surface layers. Nonequilibrium vacancies on lattice sites form microporosity through the coalescence mechanism under plastic distortion. The microporosity is a precursor of meso- and macroscale plastic shearing that defines wear debris formation.
Режим доступа: по договору с организацией-держателем ресурса
Ngôn ngữ:Tiếng Anh
Được phát hành: 2017
Những chủ đề:
Truy cập trực tuyến:https://doi.org/10.1134/S1029959917010064
Định dạng: Điện tử Chương của sách
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=658072

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330 |a A comprehensive structural study has been performed to explore deformation and wear debris formation on friction surfaces of metallic materials. A hierarchy of structural scales of plastic deformation and failure during wear has been established. The nanoscale plays the major role in the hierarchical self-organization of multiscale debris formation processes. On this scale, bifurcational interstitial states arise in zones of local lattice curvature, with plastic distortion and motion of nonequilibrium point defects which determine the nonlinear dynamics of structure formation and wear of surface layers. Nonequilibrium vacancies on lattice sites form microporosity through the coalescence mechanism under plastic distortion. The microporosity is a precursor of meso- and macroscale plastic shearing that defines wear debris formation. 
333 |a Режим доступа: по договору с организацией-держателем ресурса 
461 |t Physical Mesomechanics  |d 1998- 
463 |t Vol. 20, iss. 1  |v [P. 69-77]  |d 2017 
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701 1 |a Korotkevich  |b S. V.  |g Sergey Vasiljevich 
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