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dc.contributor.authorStanovskaya, Iraida-
dc.contributor.authorСтановська, Іраїда Іванівна-
dc.contributor.authorСтановская, Ираида Ивановна-
dc.contributor.authorDuhanets, Vasyl-
dc.contributor.authorДуганець, Василь-
dc.contributor.authorДуханец, Василий-
dc.contributor.authorProkopovych, Lada-
dc.contributor.authorПрокопович, Лада Валеріївна-
dc.contributor.authorПрокопович, Лада Валерьевна-
dc.contributor.authorYakhin, Serhiy-
dc.contributor.authorЯхін, Сергій-
dc.contributor.authorЯхин, Сергей-
dc.date.accessioned2021-04-06T08:51:52Z-
dc.date.available2021-04-06T08:51:52Z-
dc.date.issued2021-
dc.identifier.citationStanovska, I., Duhanets, V., Prokopovych, L., Yakhin, S. (2021). Сlassification rule for determining the temperature regime of induction gray cast iron. EUREKA: Physics and Engineering, 1, 60–66.en
dc.identifier.citationСlassification rule for determining the temperature regime of induction gray cast iron / I. Stanovska, V. Duhanets, L. Prokopovych, S. Yakhin // EUREKA: Physics and Engineering. – 2021. – N 1. – P. 60–66.en
dc.identifier.issn2461-4262 (Online)-
dc.identifier.issn2461-4254 (Print)-
dc.identifier.uriDOI: 10.21303/2461-4262.2021.001604-
dc.identifier.urihttp://journal.eu-jr.eu/engineering/article/view/1604/1484-
dc.identifier.urihttp://dspace.opu.ua/jspui/handle/123456789/11503-
dc.description.abstractThe complexity of using instruments for measuring the technological parameters of induction melting in a continuous mode, and sometimes the impossibility of this, requires the creation of reliable indirect methods for assessing the numerical values of these parameters. This is especially important for quality control of control systems that ensure a given melting temperature regime. The paper proposes a classification rule based on parametric classification methods, which makes it possible to determine the temperature regime of induction melting based on the SiO2 content in the slag and the distribution coefficient Kd = SiO2 (FeO+MnO). Checking the classifying ability of the obtained rule showed that it is high, since for all the numerical data of the factor-signs, both the high-temperature and low-temperature modes were classified correctly. The restrictions on the application of the classification rule are shown, among them: the restrictions imposed by the range of variation of the values of the attribute factors, and the restrictions imposed by the small sample of the initial data, as well as the arbitrary area of their distribution in the space of the factor-attributes. The rule is presented in a normalized form, and also converted to natural form for ease of practical use. Application of the rule can be recommended to technologists of metallurgical production of foundries to check the compliance of the technological process operations with the specified melting regulations. It can also be used to diagnose processes or temperature control systems that determine the quality of the resulting cast iron. To do this, it is enough to substitute the actual values of SiO2, and Kd into the classification rule. The value of the distribution coefficient Kd is calculated according to the actual data on the content of FeO and MnO in the slag.en
dc.language.isoen_USen
dc.subjectinduction meltingen
dc.subjectclassifying ruleen
dc.subjecthigh-temperature regimeen
dc.subjectfactor-signsen
dc.subjectlow-temperature regimeen
dc.subjecttemperature controlen
dc.subjectslagen
dc.titleClassification rule for determining the temperature regime of induction gray cast ironen
dc.typeArticle in Scopusen
opu.kafedraКафедра вищої математики та моделювання системuk
opu.citation.journalEUREKA: Physics and Engineeringen
opu.citation.firstpage60en
opu.citation.lastpage66en
opu.citation.issue1en
opu.staff.idstanovska@opu.uaen
opu.staff.idprokopovich.lada@opu.uaen
Располагается в коллекциях:Статті каф. ВММС

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