Obrabotka Metallov 2015 No. 4

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Applied Surface Science , 2014, vol. 308, pp. 184–192. doi: 10.1016/j.apsusc.2014.04.132 6. Makarov A.V., Korshunov L.G., Vykhodets V.B., Kurennykh T.E., Savrai R.A. Vliyanie uprochnyayushchei friktsionnoi obrabotki na khimicheskii sostav, strukturu i tribologicheskie svoistva vysokouglerodistoi stali [Effect of strengthening friction treatment on the chemical composition, structure, and tribological properties of a high- carbon steel]. Fizika metallov i metallovedenie – The Physics of Metals and Metallography , 2010, vol. 110, no. 5, pp. 530–544. (In Russian) 7. Makarov A.V., Savrai R.A., Pozdejeva N.A., Smirnov S.V., Vichuzhanin D.I., Korshunov L.G., Malygina I.Yu. Effect of hardening friction treatment with hard-alloy indenter on microstructure, mechanical properties, and defor- mation and fracture features of constructional steel under static and cyclic tension. Surface and Coatings Technology , 2010, vol. 205, iss. 3, pp. 841–852. doi: 10.1016/j.surfcoat.2010.08.025 8. 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Struktura, mekhanicheskie kharakteristiki, osobennosti deformirovaniya i razrusheniya pri staticheskom i tsiklicheskom nagru- zhenii zakalennoi konstruktsionnoi stali, podvergnutoi kombinirovannoi deformatsionno-termicheskoi nanostruk- turiruyushchei obrabotke [Structure, mechanical characteristics, and deformation and fracture features of quenched structural steel under static and cyclic loading after combined strain-heat nanostructuring treatment]. Fizicheskaya mezomekhanika – Physical Mesomechanics , 2014, vol. 17, no. 1, pp. 5–20. (In Russian) 11. Kuznetsov V.P., Makarov A.V., Osintseva A.L., Yurovskikh A.S., Savrai R.A., Rogovaya S.A., Kiryakov A.E. Uprochnenie i povyshenie kachestva poverkhnosti detalei iz austenitnoi nerzhaveyushchei stali almaznym vy- glazhivaniem na tokarno-frezernom tsentre [The increase of strength and surface quality of austenitic stainless steel parts by diamond burnishing on the turning-milling center]. Uprochnyayushchie tekhnologii i pokrytiya – Strengthen- ing technologies and coatings , 2011, no. 11, pp. 16–26. 12. Kuznetsov V.P., Makarov A.V., Psakh’e S.G., Savrai R.A., Malygina I.Yu., Davydova N.A. Tribologicheskie aspekty nanostrukturiruyushchego vyglazhivaniya konstruktsionnykh stalei [Tribological aspects in nanostructur- ing burnishing of structural steels]. Fizicheskaya mezomekhanika – Physical Mesomechanics , 2014, vol. 17, no. 3, pp. 14–30. (In Russian) 13. Korshunov L.G., Pushin V.G., Chernenko N.L., Makarov V.V. Strukturnye prevrashcheniya, uprochnenie i iznosostoikost’ nikelida titana pri adgezionnom i abrazivnom iznashivanii [Structural transformations, strengthening, and wear resistance of titanium nickelide upon abrasive and adhesive wear]. Fizika metallov i metallovedenie – The Physics of Metals and Metallography , 2010, vol. 110, no. 1, pp. 94–105. (In Russian) 14. Wei X., Hua M., Xue Z., Gao Z., Li J. Evolution of friction-induced microstructure of SUS 304 metasta- ble austenitic stainless steel and its influence on wear behavior. Wear , 2009, vol. 267, iss. 9–10, pp. 1386–1392. doi:10.1016/j.wear.2008.12.068 15. Wang X.Y., Li D.Y. Mechanical, electrochemical and tribological properties of nanocrystalline surface of 304 stainless steel. Wear , 2003, vol. 255, iss. 7–12, pp. 836–845. doi: 10.1016/S0043-1648(03)00055-3 16. Hashemi B., Rezaee Yazdi M., Azar V. The wear and corrosion resistance of shot peened–nitrided 316L aus- tenitic stainless steel. Materials & Design , 2011, vol. 32, iss. 6, pp. 3287–3292. doi: 10.1016/j.matdes.2011.02.037 17. Korshunov L.G. Strukturnye prevrashcheniya pri trenii i iznosostoikost’ austenitnykh stalei [Structural trans- formations in friction and wear resistance of austenitic steels]. Fizika metallov i metallovedenie – The Physics of Metals and Metallography , 1992, no. 8, pp. 3–21. (In Russian)

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