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Energy balance of works at interfering grinding

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dc.contributor.author Uminsky, Sergey
dc.contributor.author Уминський, Сергій
dc.contributor.author Уминский, Сергей
dc.contributor.author Dmitrieva, Svetlana
dc.contributor.author Дмитрiєва, Світлана Юріївна
dc.contributor.author Дмитриева, Светлана Юрьевна
dc.contributor.author Korolkova, Mariya
dc.contributor.author Королькова, Марія Василівна
dc.contributor.author Королькова, Мария Васильевна
dc.date.accessioned 2021-03-11T08:39:04Z
dc.date.available 2021-03-11T08:39:04Z
dc.date.issued 2020
dc.identifier.citation Uminsky, S. Energy balance of works at interfering grinding / S. Uminsky, S. Dmitrieva, М. Korolkova // Modern technologies and design art : series of monographs Faculty of Architecture, Civil Engineering and Applied Arts : monograph 37 / edited by L. Bovnegra ; Katowice School of Technology. - Katowice, 2020. – Р. 2.7. – P. 144–155. – [Текст рос.]. ru
dc.identifier.isbn 978-83-957298-3-6
dc.identifier.uri http://dspace.opu.ua/jspui/handle/123456789/11426
dc.description.abstract A comparative analysis is carried out and analytical dependencies are derived for calculating indicators characterizing the cutting ability of intermittent and continuous grinding wheels. It has been established that the stability of the grinding process in broken circles is determined by the presence of frontal surfaces on the cutting protrusions, the operation of which ensures uniform self-sharpening of abrasive grains along the entire profile of the cutting protrusion, while maintaining the optimal angle of attack to the cutting plane. The stabilization of the grinding process from the standpoint of maximum performance, optimal heat stress and minimal wear is ensured by automatic self-regulation of the angle of attack. en
dc.language.iso ru en
dc.publisher Publishing House of Katowice School of Technology en
dc.title Energy balance of works at interfering grinding en
dc.type Article en
opu.kafedra Кафедра Інформаційних технологій проектування в машинобудуванні uk
opu.citation.journal Modern technologies and design art en
opu.citation.firstpage 144 en
opu.citation.lastpage 155 en
opu.staff.id dmitrieva.s.u@opu.ua en
opu.staff.id korolkova.m.v@opu.ua en


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