Персона: Черных, Полина Олеговна
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General method of research of electrophysical properties of nanostructured composites
2019, Sergeevna, K. A., Konstantinovich, B., Berestov, A. V., Nikolaevich, T. A., Olegovna, C. P., Барышев, Геннадий Константинович, Берестов, Александр Васильевич, Токарев, Антон Николаевич, Черных, Полина Олеговна
© 2019 Trans Tech Publications Ltd, Switzerland.The paper presents an information model and a general methodology for studying the electrophysical properties of materials and products from nanostructured composites. The information model of the original methodology for the standard process of experimental measurement and study of the electrophysical properties of composites comprehensively takes into account the characteristics associated with their industrial production (quality assurance systems, safety, certification, etc.) in order to develop experimental measurement methods and new standards, including standards of enterprises, methodological guidelines, work programs for the development of high-tech production advanced materials and products.
Development of a method for determining corrosion damage of fuel element claddings of a nuclear power unit by using acoustic resonance method in a hot chamber environment
2020, Rodko, I. I., Moshev, A. A., Bozhko, Yu. V., Yudin, I. A., Tokarev, A. N., Biryukov, A. P., Chernykh, P. O., Tolstov, M. S., Родько, Илья Игоревич, Мошев, Александр Александрович, Божко, Юрий Валентинович, Юдин, Игорь Андреевич, Токарев, Антон Николаевич, Бирюков, Александр Павлович, Черных, Полина Олеговна, Толстов, Михаил Сергеевич
© Published under licence by IOP Publishing Ltd.As part of the strategic research program of state corporation Rosatom, carried out by the Technological Platform "Closed Nuclear Fuel Cycle with Fast Neutron Reactors", a research to equip protective cells with original equipment, including ultrasonic flaw detectors for primary post-reactor non-destructive research of the properties of critical materials of fast neutron reactors, is being performed. In this paper, we present a method developed for determining corrosion damage of fuel claddings by the acoustic resonance method in hot chamber conditions, and a description of the experimental installation.