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Название: Research of Thermomechanical Processes When Processing Cylindrical Surfaces with Wear-Resistant Coatings
Авторы: Kunitsyn, Maksym
Usov, Anatoly
Ключевые слова: Durability
Reliability
Wear resistance
Delamination
Thermomechanical processes
Diamond abrasive processing
Tribocorrosion
Дата публикации: 2020
Издательство: Springer
Библиографическое описание: Kunitsyn, M., Usov, A. (2020). Research of Thermomechanical Processes When Processing Cylindrical Surfaces with Wear-Resistant Coatings. Advances in Design, Simulation and Manufacturing, Proceedings of the 3rd International Conference on Design, Simulation, Manufacturing: The Innovation Exchange, DSMIE-2020, June 9–12, 2020, Kharkiv, Ukraine, Vol. 1, Manufacturing and Materials Engineering, p. 390–400.
Kunitsyn, M. Research of Thermomechanical Processes When Processing Cylindrical Surfaces with Wear-Resistant Coatings / M. Kunitsyn, A. Usov // Advances in Design, Simulation and Manufacturing : Proceedings of the 3rd International Conference on Design, Simulation, Manufacturing: The Innovation Exchange, DSMIE-2020, Ukraine, Kharkiv, June 9–12, 2020. – Vol. 1 : Manufacturing and Materials Engineering. – P. 390–400.
Краткий осмотр (реферат): The possibilities of technical support of the quality of finishing processing of the cylinder working surfaces using coatings of wear-resistant materials are considered. For this, a design scheme is proposed for determining the stress-strain state of the cylinder-coating system. The influence of the processing regimes of a cylindrical group with a wear-resistant coating on its physical and mechanical characteristics is determined. The dependence of SIF on the delamination angle a and the roughness of the working area of the cylindrical surface Ra is presented. A design scheme is proposed for studying the mutual influence of exfoliation sections on stress intensity in a wear-resistant coating. The effect of particles on the wear resistance of the coating deposited by the electrochemical method is determined. A study of composite materials based on Ni/Ni-TiO 2 in a scanning electron microscope. The calculated and experimental values of the ultimate dimensions of crack-like defects during grinding of wear-resistant coatings are considered. The dependence of crack formation on the surface of the surface processed by grinding under the cutting depth and tool characteristics is determined.
URI (Унифицированный идентификатор ресурса): http://dspace.opu.ua/jspui/handle/123456789/10735
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