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<article article-type="research-article" dtd-version="1.3" xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xml:lang="ru"><front><journal-meta><journal-id journal-id-type="publisher-id">blackmet</journal-id><journal-title-group><journal-title xml:lang="ru">Известия высших учебных заведений. Черная Металлургия</journal-title><trans-title-group xml:lang="en"><trans-title>Izvestiya. Ferrous Metallurgy</trans-title></trans-title-group></journal-title-group><issn pub-type="ppub">0368-0797</issn><issn pub-type="epub">2410-2091</issn><publisher><publisher-name>National University of Science and Technology "MISIS"</publisher-name></publisher></journal-meta><article-meta><article-id pub-id-type="doi">10.17073/0368-0797-2020-3-4-231-237</article-id><article-id custom-type="elpub" pub-id-type="custom">blackmet-1866</article-id><article-categories><subj-group subj-group-type="heading"><subject>Research Article</subject></subj-group><subj-group subj-group-type="section-heading" xml:lang="ru"><subject>ФИЗИКО-ХИМИЧЕСКИЕ ОСНОВЫ МЕТАЛЛУРГИЧЕСКИХ ПРОЦЕССОВ</subject></subj-group><subj-group subj-group-type="section-heading" xml:lang="en"><subject>PHYSICO-CHEMICAL BASICS OF METALLURGICAL PROCESSES</subject></subj-group></article-categories><title-group><article-title>Термодинамика растворимости азота в сплавах на базе никеля в условиях плазменно-дугового переплава</article-title><trans-title-group xml:lang="en"><trans-title>Thermodynamics of nitrogen solubility in nickel-based alloys at plasma-arc remelting</trans-title></trans-title-group></title-group><contrib-group><contrib contrib-type="author" corresp="yes"><name-alternatives><name name-style="eastern" xml:lang="ru"><surname>Католиков</surname><given-names>В. Д.</given-names></name><name name-style="western" xml:lang="en"><surname>Katolikov</surname><given-names>V. D.</given-names></name></name-alternatives><bio xml:lang="ru"><p>Аспирант кафедры металлургии стали, новых производственных технологий и защиты металлов.</p><p>119049, Москва, Ленинский пр., 4</p></bio><bio xml:lang="en"><p>Postgraduate of the Chair of Metallurgy of Steel, New Production Technologies and Metal Protection.</p><p>Moscow</p></bio><email xlink:type="simple">vdkatolikov@yandex.ru</email><xref ref-type="aff" rid="aff-1"/></contrib><contrib contrib-type="author" corresp="yes"><name-alternatives><name name-style="eastern" xml:lang="ru"><surname>Логачев</surname><given-names>И. А.</given-names></name><name name-style="western" xml:lang="en"><surname>Logachev</surname><given-names>I. A.</given-names></name></name-alternatives><bio xml:lang="ru"><p>Кандидат технических наук, заместитель начальника отделения «Металлические материалы и металлургические технологии».</p><p>141070, Московская обл., Королев, ул. Пионерская, 4</p></bio><bio xml:lang="en"><p>Cand Sci. (Eng.), Deputy Head of the Department “MetallicMaterials and Metallurgical Technologies”.</p><p>Korolev, Moscow Region</p></bio><email xlink:type="simple">ivan@logachev.biz</email><xref ref-type="aff" rid="aff-2"/></contrib><contrib contrib-type="author" corresp="yes"><name-alternatives><name name-style="eastern" xml:lang="ru"><surname>Щукина</surname><given-names>Л. Е.</given-names></name><name name-style="western" xml:lang="en"><surname>Shchukina</surname><given-names>L. E.</given-names></name></name-alternatives><bio xml:lang="ru"><p>Кандидат технических наук, главный специалист по макропрогнозированию.</p><p>15184, Москва, Озерковская набережная, 28, стр. 2</p></bio><bio xml:lang="en"><p>Cand. Sci. (Eng.), Chief Specialist on Macroforecasting.</p><p>Moscow</p></bio><email xlink:type="simple">ludmilashchukina@yandex.ru</email><xref ref-type="aff" rid="aff-3"/></contrib><contrib contrib-type="author" corresp="yes"><name-alternatives><name name-style="eastern" xml:lang="ru"><surname>Семин</surname><given-names>А. Е.</given-names></name><name name-style="western" xml:lang="en"><surname>Semin</surname><given-names>A. E.</given-names></name></name-alternatives><bio xml:lang="ru"><p>Доктор технических наук, профессор кафедры металлургии стали, новых производственных технологий и защиты металлов.</p><p>119049, Москва, Ленинский пр., 4</p></bio><bio xml:lang="en"><p>Dr. Sci. (Eng.), Professor of the Chair of Metallurgy of Steel, New Production Technologies and Metal Protection.</p><p>Moscow</p></bio><email xlink:type="simple">asemin2007@yandex.ru</email><xref ref-type="aff" rid="aff-1"/></contrib></contrib-group><aff-alternatives id="aff-1"><aff xml:lang="ru"><institution>Национальный исследовательский технологический университет «МИСиС»</institution><country>Россия</country></aff><aff xml:lang="en"><institution>National University of Science and Technology “MISIS” (MISIS)</institution><country>Russian Federation</country></aff></aff-alternatives><aff-alternatives id="aff-2"><aff xml:lang="ru"><institution>Композит, АО</institution><country>Россия</country></aff><aff xml:lang="en"><institution>Kompozit, JSC</institution><country>Russian Federation</country></aff></aff-alternatives><aff-alternatives id="aff-3"><aff xml:lang="ru"><institution>ОМК, АО</institution><country>Россия</country></aff><aff xml:lang="en"><institution>United Metallurgical Company (OMK)</institution><country>Russian Federation</country></aff></aff-alternatives><pub-date pub-type="collection"><year>2020</year></pub-date><pub-date pub-type="epub"><day>25</day><month>05</month><year>2020</year></pub-date><volume>63</volume><issue>3-4</issue><fpage>231</fpage><lpage>237</lpage><permissions><copyright-statement>Copyright &amp;#x00A9; Католиков В.Д., Логачев И.А., Щукина Л.Е., Семин А.Е., 2020</copyright-statement><copyright-year>2020</copyright-year><copyright-holder xml:lang="ru">Католиков В.Д., Логачев И.А., Щукина Л.Е., Семин А.Е.</copyright-holder><copyright-holder xml:lang="en">Katolikov V.D., Logachev I.A., Shchukina L.E., Semin A.E.</copyright-holder><license xml:lang="ru" license-type="creative-commons-attribution" xlink:href="https://creativecommons.org/licenses/by/4.0/" xlink:type="simple"><license-p>Данная работа распространяется под лицензией Creative Commons Attribution 4.0.</license-p></license><license xml:lang="en" license-type="creative-commons-attribution" xlink:href="https://creativecommons.org/licenses/by/4.0/" xlink:type="simple"><license-p>This work is licensed under a Creative Commons Attribution 4.0 License.</license-p></license></permissions><self-uri xlink:href="https://fermet.misis.ru/jour/article/view/1866">https://fermet.misis.ru/jour/article/view/1866</self-uri><abstract><p>Жаропрочные сплавы на базе никеля нашли широкое применение в отечественном авиастроении, ракетостроении и приборостроении. Повышение основных механических и эксплуатационных характеристик металла достигается, в основном, за счет легирования основы различными элементами, такими как рений, рутений, гафний и др. Однако повышения эксплуатационных свойств можно также добиться за счет азотирования металла, в результате которого образуются твердые растворы внедрения (мелкодисперсные нитриды), повышающие прочность сплава. Работа посвящена изучению процесса азотирования сложнолегированных сплавов на никелевой основе. Рассматриваются различные варианты взаимодействия азота с расплавом в условиях проведения открытой плавки и при обработке низкотемпературной азотсодержащей плазмой. Применение плазменно-дугового переплава позволяет получать в плазменном факеле различные формы газа в виде атомов, ионов и молекул. Первые две формы намного активнее молекулярного азота, что приводит к получению в сплаве сверхравновесных концентраций. Проведен термодинамический анализ растворимости азота в расплаве на базе никеля при проведении открытой плавки и в условиях плазменно-дугового переплава. Рассчитана растворимость азота в модельном сплаве ЭП741НП в зависимости от парциального давления азота над поверхностью расплава и в плазмообразующем газе. Показано, что обработка расплава азотосодержащей плазмой позволяет получить в сплаве более высокое содержание азота. Проведена оценка температуры металла в зоне контакта с плазменной дугой с использованием методики, согласно которой испарение компонентов расплава с площади пятна дуги происходит при достижении точки кипения металла.</p></abstract><trans-abstract xml:lang="en"><p>Heat-resistant nickel-based alloys are widely used in the domestic aircraft industry, rocket engineering, and instrument making. Increasing the basic mechanical and operational characteristics of the metal is achieved mainly by alloying the base with various elements such as rhenium, ruthenium, hafnium, etc. However, increasing the operational properties can also be achieved by metal nitriding, as a result of which interstitial solid solutions are formed (finely dispersed nitrides), which increase the strength of the alloy. The work is devoted to the study of nitriding process of nickel-based complex alloys. Various options of the interaction of nitrogen with the melt are considered under conditions of open melting and processing with low-temperature nitrogen-containing plasma. The use of plasma-arc remelting allows one to obtain various types of gas in form of atoms, ions and molecules in plasma. The first two forms are much more active than molecular nitrogen, which leads to super-equilibrium concentrations in the alloy. A thermodynamic analysis of nitrogen solubility in a nickel-based melt was performed during open melting and under plasma-arc remelting. The nitrogen solubility in model EP741NP alloy was calculated depending on the partial pressure of nitrogen above the melt surface and in the plasma-forming gas. It was shown that treatment of the melt with nitrogen-containing plasma makes it possible to obtain higher content of nitrogen in the alloy. In this work, temperature of the metal in the zone of contact with plasma arc was estimated using the technique according to which the evaporation of the melt components from the arc spot area occurs when the metal boiling point is reached.</p></trans-abstract><kwd-group xml:lang="ru"><kwd>азот</kwd><kwd>плазменно-дуговой переплав</kwd><kwd>никелевые расплавы</kwd><kwd>термодинамический анализ.</kwd></kwd-group><kwd-group xml:lang="en"><kwd>nitrogen</kwd><kwd>plasma-arc melting</kwd><kwd>nickel alloys</kwd><kwd>thermodynamic analysis</kwd></kwd-group></article-meta></front><back><ref-list><title>References</title><ref id="cit1"><label>1</label><citation-alternatives><mixed-citation xml:lang="ru">Esmaeili H., Mirsalehi S.E., Farzadi A. Effect of joining atmosphere in transient liquid phase bonding of Inconel 617 superalloy // Metallurgical and Materials Transactions B. 2017. Vol. 48. No. 6. 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