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Название: Grinding Temperature Penetration Depth Study
Авторы: Larshin, Vasily
Ларшин, Василь Петрович
Ларшин, Василий Петрович
Lishchenko, Natalia
Ліщенко, Наталя Володимирівна
Лищенко, Наталия Владимировна
Ключевые слова: Grinding temperature
Temperature penetration
Peclet number
Дата публикации: 2019
Издательство: Springer, Cham
Библиографическое описание: Larshin, V., Lishchenko, N. (2020). Grinding Temperature Penetration Depth Study. Advanced Manufacturing Processes. InterPartner 2019, Lecture Notes in Mechanical Engineering, 168-176.
Larshin, V. Grinding Temperature Penetration Depth Study / V. Larshin, N. Lishchenko // Advanced Manufacturing Processes. InterPartner 2019 : Lecture Notes in Mechanical Engineering. - 2020. - P. 168-176.
Краткий осмотр (реферат): Grinding temperature spreads over the depth of the surface layer and in some cases causes the appearance of grinding burns and micro-cracks. These thermal grinding defects are located at a certain depth from the surface machined during grinding. In several cases, such defects are generally not permissible. In other cases, the possibility of the formation of such a defective surface layer must be provided for in the amount of the grinding stock, based on the obvious condition: the defective layer must be completely removed when the grinding stock is removed. In any case there is a need to determine the depth of the defective layer formed during grinding. The simplest way to solve this problem is the ability to determine the penetration depth of a certain critical temperature, which leads to thermal damage to the surface layer of the workpiece. To determine the depth of such a damaged layer, an approach based on modeling the temperature field in the surface layer is proposed. The possibility of determining in explicit form the depth of penetration of a fixed temperature exceeding a critical value is shown in the paper. A prerequisite for the analytical solution of such a temperature problem was the possibility of replacing the Jaeger fast-moving heat source with the action time of some unmoving heat source.
URI (Унифицированный идентификатор ресурса): https://doi.org/10.1007/978-3-030-40724-7_17
https://link.springer.com/chapter/10.1007%2F978-3-030-40724-7_17
http://dspace.opu.ua/jspui/handle/123456789/11443
Располагается в коллекциях:Статті каф. ТМ ІПТДМ

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