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In this article we consider the increase of the resource of wheelsets of cars and locomotives. We give general data on present research in the field of tribotechnical systems, and offer alternative variants of development of domestic tribotechnical systems for railway transportation, which can be useful to replace foreign systems. The systems capable of increasing the reliability of a railway branch are described.
Czasopismo
Rocznik
Tom
Strony
137--146
Opis fizyczny
Bibliogr. 9 poz.
Twórcy
autor
- Rostov State Transport University, 2 Rostovskogo Strelkovogo Polka Narodnogo Opolcheniya Sq., 344038, Rostov-on-Don, Russia
autor
- Rostov State Transport University, 2 Rostovskogo Strelkovogo Polka Narodnogo Opolcheniya Sq., 344038, Rostov-on-Don, Russia
autor
- Rostov State Transport University, 2 Rostovskogo Strelkovogo Polka Narodnogo Opolcheniya Sq., 344038, Rostov-on-Don, Russia
Bibliografia
- 1. Шаповалов, В.В. & Сладковский, A. & Эркенов, А.Ч. Актуальные задачи современной триботехники и пути их решения. Известия высших учебных заведений (сер. Машиностроение). 2015. №1. С. 64-75. [In Russian: Shapovalov, V.V. & Sladkowski, A. & Erkenov, A.Ch. Topical problems of modern tribotechnics and ways of their solution. Journal of Higher Educational Institutions (Machine building). 2015. No. 1. P. 64-75].
- 2. Пат. № 2517946 РФ. Способ динамического мониторинга фрикционных мобильных систем. Шаповалов, В.В. & Озябкин, А.Л. & Харламов, П.В. & и др. № 2517946; заявл. 05.04.2012; опубл. 10.06.2014, Бюл. № 16; приоритет 05.04.2012, № 2012113329/28. [In Russian: Patent № 2517946 of the Russian Federations. A method of dynamic monitoring of frictional mobile systems. Shapovalov, V.V. & Ozjabkin, A.L. & Kharlamov, P.V. & etc. No. 2517946. Appl. 05.04.2012. Publ. 10.06.2014. Bull. No. 16. Priority 05.04.2012. No. 2012113329/28].
- 3. Greenwood, J.A. & Williamson, J.B.P. Contact of Nominally Flat Surfaces. Proc. Roy. Soc. Ser. A. 1966. Vol. 295. No. 1442. P. 300-319.
- 4. Yang, Y.C. & Chu, S.S. & Chang, W.J. & Wu, T.S. Estimation of Heat Flux and Temperature Distributions in a Composite Strip and Homogeneous Foundation. Int. Commun. Heat Mass Tran. 2010 (37). No. 5. P. 495-500.
- 5. Ciavarella, M. & Johansson, L. & Afferrante, L. & Klarbring, A. & Barber, J.R. Interaction of Thermal Contact Resistance and Frictional Heating in Thermoelastic Stability. Int. J. Sol. Struct. 2003. Vol. 40. P. 5583-5597.
- 6. Mao, J.-J. & Ke L.-L. & Wang, Y.-S. Thermoelastic contact instability of a functionally graded layer and a homogeneous half-plane. Int. J. Solids Struct. 2014. Vol. 51. No. 23-24. P. 3962–3972.
- 7. Glaeske, H.-J. & Prudnikov, A.P. & Skórnik, K.A. Operational Calculus and Related Topics. Chapman and Hall/CRC. 2006.
- 8. Afferrante, L. & Ciavarella. M. Thermo-Elastic Dynamic Instability (TEDI)-a review of recent results. J. Eng. Math. 2008. Vol. 61. No. 2. P. 285–300.
- 9. Шаповалов, В.В. & Эркенов, А.Ч. & Щербак, П.Н. & Озябкин, А.Л. & Фейзов, Э.Э. Физико-математическое моделирование нелинейных фрикционных система. Известия высших учебных заведений. Технические науки. 2014. №6. С.77-82. [In Russian: Shapovalov, V.V. & Erkenov, A.Ch. & Scherbak, P.N. & Ozjabkin, A.L. & Fejzov, E.E. Physical and mathematical modelling of nonlinear frictional systems. Proceedings of higher educational institutions. Engineering science. 2014. No. 6. P. 77-82].
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-bcaa2e64-01db-4483-8d13-b5a228f3bd5a