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dc.contributor.authorСтрельчук, Р. М.-
dc.contributor.authorШелковий, О. М.-
dc.contributor.authorStrelchuk, R.-
dc.contributor.authorShelkovoy, A.-
dc.date.accessioned2024-10-30T07:52:18Z-
dc.date.available2024-10-30T07:52:18Z-
dc.date.issued2019-
dc.identifier.citationСтрельчук Р. М. Математичне моделювання робочої поверхні круга в умовах електроерозійного алмазного шліфування / Р. М. Стрельчук, О. М. Шелковий // Машинобудування : зб. наук. пр. / Укр. інж.-пед. акад. - Харків, 2019. - № 24. - С. 33-39.uk_UA
dc.identifier.issn2079-1747-
dc.identifier.urihttp://repo.uipa.edu.ua/jspui/handle/123456789/9022-
dc.description.abstractThe paper presents an analysis of formulas for calculating the number of grains of the dia­mond wheel, the distances between them, and their distributions. The results are based on experi­mental studies and calculation methods with simulation of a specific shape of grains. The discrep­ancy in the quantitative data is explained by a different methodological approach - profiling, imprint method, optical, thermocouple method, planimetric, microsections, and others, and in calculation methods - by the difference in the accepted grain shape and initial grain sizes, based on the designa­tion of the grain size of the powder. In addition, in order to establish reliable results, each of the noted methods gives rise to a number of special techniques and original approaches. Profiling of the working surface of the circle can be carried out with a diamond needle, a chisel-like probe, with the recording of profilograms along two auxiliary lines, equidistantly located relative to the controlled one, with an assessment of the relief o f the conductive needle for more distinct recognition of dia­mond grains and protrusions of a metal bond, etc. each method. Moreover, the corresponding dis­tinctive method provides an analysis of the advantages of one and the disadvantages of another ap­proach.The most reliable calculation method can be considered the one in which the results corre­spond to experimental data obtained by piecewise counting the number of grains in one carat and, respectively, per unit volume of the diamondiferous layer. In the calculations, this correspondence made it possible to judge the reliability of the results.The analysis and calculation of grains held on the working surface of the circle at the small­est embedment depth in the bundle was carried out. Many researchers as the determining parameter accept the maximum height of the protrusion of grains above the ligament level. In this regard, we note that the minimum embedment depth is more reliable (stable), physically determined value, at least depending on randomly acting factors. The considered probabilistic-statistical model of the working surface of the grinding wheel allows us to describe the distribution of the ordinates of the points with the total cutting profile, tak­ing into account the characteristics of the diamond-containing layer.uk_UA
dc.language.isoukuk_UA
dc.publisherУІПАuk_UA
dc.relation.ispartofseries№ 24;-
dc.subjectелектроерозшне алмазне шлiфуванняuk_UA
dc.subjectробоча поверхня кругаuk_UA
dc.subjectелементарний рiжучий профільuk_UA
dc.subjecterosion diamond grindinguk_UA
dc.subjectelementary cutting profileuk_UA
dc.subjectworking surface of a circleuk_UA
dc.titleМатематичне моделювання робочої поверхні круга в умовах електроерозійного алмазного шліфуванняuk_UA
dc.title.alternativeMathematical modeling of the working surface of the wheel in the conditions of electroerosive diamond grindinguk_UA
dc.typeArticleuk_UA
Располагается в коллекциях:Машинобудування (Збірник наукових праць)

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