Microstructural mechanism of destruction of metal at frictional loading
Problemy fiziki, matematiki i tehniki, no. 1 (2009), pp. 15-20.

Voir la notice de l'article provenant de la source Math-Net.Ru

This paper analyzes characteristic dislocation mechanisms of metallic (nickel) surface layer destruction under friction. The authors define the effective role of slipping strips of material, doubles, large angle borders of block and crystalline structure disorientation in the formation of uniformity rupture.
Keywords: effective slipping zones (areas), shear deformation, cellular structure
Mots-clés : zone stratification, transcrystalline and intercrystalline destruction.
@article{PFMT_2009_1_a1,
     author = {V. G. Pinchuk and S. V. Korotkevich and S. O. Bobovich},
     title = {Microstructural mechanism of destruction of metal at frictional loading},
     journal = {Problemy fiziki, matematiki i tehniki},
     pages = {15--20},
     publisher = {mathdoc},
     number = {1},
     year = {2009},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/PFMT_2009_1_a1/}
}
TY  - JOUR
AU  - V. G. Pinchuk
AU  - S. V. Korotkevich
AU  - S. O. Bobovich
TI  - Microstructural mechanism of destruction of metal at frictional loading
JO  - Problemy fiziki, matematiki i tehniki
PY  - 2009
SP  - 15
EP  - 20
IS  - 1
PB  - mathdoc
UR  - http://geodesic.mathdoc.fr/item/PFMT_2009_1_a1/
LA  - ru
ID  - PFMT_2009_1_a1
ER  - 
%0 Journal Article
%A V. G. Pinchuk
%A S. V. Korotkevich
%A S. O. Bobovich
%T Microstructural mechanism of destruction of metal at frictional loading
%J Problemy fiziki, matematiki i tehniki
%D 2009
%P 15-20
%N 1
%I mathdoc
%U http://geodesic.mathdoc.fr/item/PFMT_2009_1_a1/
%G ru
%F PFMT_2009_1_a1
V. G. Pinchuk; S. V. Korotkevich; S. O. Bobovich. Microstructural mechanism of destruction of metal at frictional loading. Problemy fiziki, matematiki i tehniki, no. 1 (2009), pp. 15-20. http://geodesic.mathdoc.fr/item/PFMT_2009_1_a1/

[1] V. E. Panin, “Sinergeticheskie printsipy fizicheskoi mezomekhaniki”, Fizicheskaya mezomekhanika, 3:6 (2000), 5–36

[2] A. I. Yurkova, Yu. V. Milman, A. V. Byakova, “Struktura i mekhanicheskie svoistva zheleza posle poverkhnostnoi intensivnoi plasticheskoi deformatsii treniem. I: Osobennosti formirovaniya struktury”, Deformatsiya i razrushenie materialov, 2009, no. 1, 2–11

[3] V. G. Pinchuk, “Kinetika uprochneniya poverkhnostnogo sloya metalla pri trenii”, Trenie i iznos, 10:3 (1989), 401–405 | MR

[4] V. G. Pinchuk, E. G. Shidlovskaya, “Vzaimosvyaz mikrostrukturnykh izmenenii s kinetikoi iznosa poverkhnostnogo sloya metalla pri trenii”, Trenie i iznos, 10:6 (1989), 965–972

[5] V. G. Pinchuk, “Strukturnye osobennosti mikroplasticheskoi deformatsii poverkhnostnykh sloev metalla pri trenii na etape prirabotki poverkhnostei”, Trenie i iznos, 17:4 (1996), 487–490

[6] A. S. Bulatov, V. G. Pinchuk, M. B. Lazareva, “Zavisimost shiriny linii FMR ot plotnosti dislokatsii v nikele”, Fizika metallov i metallovedenie, 34:5 (1972), 1066–1069

[7] R. I. Garber, I. A. Gindin, “Fizika prochnosti kristallicheskikh tel”, Uspekhi fizicheskikh nauk, LXX:1 (1960), 57–110 | MR

[8] C. Holste, “Cyklic plastiticity of nickel, from single crystals to submicrocrystalline pollycrystals”, Phil. Mag., 84:3–5 (2004), 299–315 | DOI

[9] V. I. Vladimirov, Sh. Kh. Khannanov, “Aktualnye zadachi teorii zarozhdeniya dislokatsionnykh treschin”, FMM, 30:3 (1970), 490–510

[10] Yu. A. Fedorov, O. I. Sysoev, “Ispuskanie i pogloschenie dislokatsii granitsami zeren”, Fizika metallov i metallovedenie, 36:5 (1973), 919–924

[11] V. I. Vladimirov, A. N. Orlov, “Energiya aktivatsii zarozhdeniya mikrotreschin v golove skopleniya dislokatsii”, Fizika tverdogo tela, 11:2 (1969), 370–378

[12] A. N. Orlov, “Vzaimodeistvie atomov primesi s peregibami na dvizhuschikhsya dislokatsiyakh”, Fizika tverdogo tela, 22:12 (1980), 3580–3585

[13] V. S. Ivanova, V. F. Terentev, Metallovedenie i termicheskaya obrabotka, Metallurgizdat, M., 1967, 5–62 pp.

[14] P. Neumann, “Coarse slip model of fatigue”, Acta metallurgy, 17:9 (1969), 1219–1225 | DOI

[15] F. E. Fudzita, Razrushenie tverdykh tel, Metallurgizdat, M., 1967, 450 pp.

[16] J. D. Embury et al., “The fracture of mild steel laminates”, Trans. AIME, 239 (1967), 114–118

[17] E. N. Pogrebnoi, K. M. Zhak, “O lokalnykh deformatsiyakh pri vzaimodeistvii polos skolzheniya i dvoinikov s prepyatstviyami”, FMM, 23:1 (1967), 106–112

[18] D. Khol, Razrushenie tverdykh tel, Metallurgiya, M., 1967, 222 pp.