Academic literature on the topic 'Copper vacuum condensates'

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Journal articles on the topic "Copper vacuum condensates"

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Zozulya, Eduard, and Igor Kolupaev. "ALUMINUM OXIDE IN VACUUM CONDENSATES BASED ON COPPER." Collection of Scientific Works of the Ukrainian State University of Railway Transport, no. 206 (December 11, 2023): 24–31. http://dx.doi.org/10.18664/1994-7852.206.2023.296687.

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Strengthening of copper and copper alloys with aluminum oxide particles is an important technological technique. Composite materials based on copper strengthened with aluminum oxide particles have a significant operating temperature range and better mechanical properties at elevated temperatures than age-hardening alloys. However, at moderate operating temperatures, the use of age-hardening alloys remains more economically justified. The main direction in the development of composites strengthened with oxide particles is the dispersion of the strengthening phase to sizes of several or one nano
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Riaboshtan, V., A. Zubkov, M. Zhadko, E. Zozulya, and E. Zubarev. "The influence of the condensation rate on the structure of Cu-Mo pseudoalloys." Low Temperature Physics 50, no. 1 (2024): 44–47. http://dx.doi.org/10.1063/10.0023891.

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The structure and microhardness of Cu-0.3 at. % Mo vacuum condensates obtained at different deposition rates, both in the initial state and after isothermal annealings carried out up to 800 °C, were studied in the work. It has been established that molybdenum has a dispersing effect on the grain structure of the copper matrix, which consists of the blocking effect of monoatomic molybdenum adsorption layers formed on the surface of growing copper grains during the condensation of a two-component vapor. The structure of Cu-0.3 at. % Mo condensates demonstrates increased thermal stability, retain
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Glushchenko, M. A., V. V. Belozyorov, O. V. Sobol, V. V. Subbotina, G. I. Zelenskaya, and A. I. Zubkov. "Effect of Tantalum on the Texture of Copper Vacuum Condensates." Journal of Nano- and Electronic Physics 9, no. 2 (2017): 02015–1. http://dx.doi.org/10.21272/jnep.9(2).02015.

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Ustinov, A. I., E. V. Fesyun, T. V. Melnichenko, and Yu A. Khokhlova. "Deformation Behavior Of Vacuum Condensates Of Copper And Nickel In Nanostructured State." Современная электрометаллургия 2016, no. 1 (2016): 51–57. http://dx.doi.org/10.15407/sem2016.01.08.

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Kurochkin, V. D. "Layerwise analysis of vacuum copper-chromium condensates by glow-discharge mass spectrometry." Powder Metallurgy and Metal Ceramics 45, no. 7-8 (2006): 387–94. http://dx.doi.org/10.1007/s11106-006-0094-x.

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Ustinov, A. I., V. S. Skorodzievskii, O. V. Fesiun, T. V. Melnichenko, V. N. Taranenko, and A. A. Nekrasov. "Influence of Fe-additives on the microstructure and mechanical properties of vacuum copper condensates." Materials Science and Engineering: A 528, no. 3 (2011): 1030–36. http://dx.doi.org/10.1016/j.msea.2010.10.067.

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Riaboshtan, Valetyn, and Anatoly Zubkov. "FORMATION AND DECOMPOSITION OF ANOMALOUS SUPERSATURATED MOLYBDENUM SOLUTIONS IN COPPER-BASED CONDENSATES." Bulletin of the National Technical University «KhPI» Series: New solutions in modern technologies, no. 3(17) (September 30, 2023): 63–67. http://dx.doi.org/10.20998/2413-4295.2023.03.09.

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 Cu-Mo condensates in the concentration range of the latter from 0.3 to 1.5 at.%, obtained by simultaneous evaporation in vacuum with subsequent condensation of the resulting vapor mixture on a non-orienting substrate (PVD method), were studied. The components of this system do not form chemical compounds under equilibrium conditions and are mutually insoluble in liquid and solid states. The structure of Cu-Mo condensates was studied by transmission electron microscopy and X-ray diffractometry both in the derivative state and after a series of isothermal anneals in the temperature range
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Volodin, Valeriy, Alina Nitsenko, Xeniya Linnik, and Sergey Trebukhov. "Distribution of Rare Elements in Distillation Processing of Polymetallic Matte." Metals 13, no. 12 (2023): 1934. http://dx.doi.org/10.3390/met13121934.

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The results of studies on the distribution of rare elements among the products of distillation processing of polymetallic mattes are present in this article. Schemes of the developed technological equipment for the implementation of the extraction processes of rare elements via the vacuum distillation of mattes are presented. Technological tests were performed with a matte of lead, copper, and antimony plants at 1100–1250 °C and a pressure of up to 700 Pa. It was established that As, Cd, Bi, In, and Ge, by more than 90% in total, are extracted into condensate and dust in the distillation proce
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Pletneva, Inna V., and Yuriy A. Gavrilov. "HIGHLY ACTIVE CATALYSTS FOR OXIDATION OF THIOLS." IZVESTIYA VYSSHIKH UCHEBNYKH ZAVEDENIY KHIMIYA KHIMICHESKAYA TEKHNOLOGIYA 60, no. 8 (2017): 70. http://dx.doi.org/10.6060/tcct.2017608.5648.

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The problem of disposal of toxic and corrosion-active sulfhydryl substances (deodorization), natural hydrocarbons is relevant to operational and environmental aspects. One method of removing these impurities is catalytic oxidation to non-toxic disulfide form. The message shows the results of a comparative study of the oxidation reaction of thiols by oxygen to disulfides in hydrocarbon media, catalyzed by complexes of copper salts (I, II) with various nitrogen-containing bases. As nitrogen-containing ligands, mono - and diethanolamine with different C4-C18 hydrocarbon radicals were used. It is
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Ustinov, A. I., L. O. Olikhovska, S. O. Demchenkov, V. S. Skorodzievskii, S. S. Polishchuk, and T. V. Melnychenko. "Origin of the formation of isostructural bcc-Fe+bcc-Cu nanocomposites in Fe–Cu alloy via vacuum co-deposition." AIP Advances 15, no. 1 (2025). https://doi.org/10.1063/5.0244668.

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This study examined the influence of substrate temperature and the ratio of iron and copper vapor flow on the structural state of Fe–Cu vacuum condensates. XRD patterns of the condensates deposited under specific electron beam physical vapor deposition process parameters revealed peaks corresponding to either bcc or bcc+fcc phases. Analysis of the lattice parameter of the single bcc structure indicates that only a portion of the copper atoms dissolve in the bcc-Fe lattice, while undissolved copper atoms form bcc-Cu inclusions that are coherent with the bcc-Fe lattice. A model for the formation
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Dissertations / Theses on the topic "Copper vacuum condensates"

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Зубков, Анатолий Иванович, Евгений Валентинович Луценко та Галина Ивановна Зеленская. "Прочность и электропроводность вакуумных псевдосплавов Cu-Ta". Thesis, Тамбовский государственный университет им. Г. Р. Державина, 2013. http://repository.kpi.kharkov.ua/handle/KhPI-Press/14808.

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Исследованы прочность и электропроводность вакуумных псевдосплавов Cu-Ta, полученных в разных технологических условиях и после термической обработки. Показано, что вакуумные псевдосплавы Cu-Ta по сочетанию прочности и электропроводности превосходят существующие сплавы и композиционные материалы на основе меди.<br>Durability and conductivity of vacuum pseudo-alloys of Cu-Ta received in different technological conditions and after heat treatment are investigated. It is shown that vacuum pseudo-alloys of Cu-Ta out-perform existing alloys and composite materials in a combination of durability and
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Book chapters on the topic "Copper vacuum condensates"

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Zhadko, Maria, and Anatoly Zubkov. "Effect of Molybdenum on the Structure and Strength of Copper Vacuum Condensates." In Lecture Notes in Mechanical Engineering. Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-40724-7_49.

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Zubkov, Anatoly Ivanovich, Maria Aleksandrovna Zhadko, Oleg Valentinovich Sobol, Alexander Vladimirovich Subbotin, and Galina Ivanovna Zelenskaya. "On the condition of the grain boundary segregation of molybdenum atoms in copper vacuum condensates." In Application to Journal. Tambov University Reports. Series: Natural and Technical Sciences. Publishing House “Derzhavinskiy”, 2018. http://dx.doi.org/10.20310/1810-0198-2018-23-122p-104-106.

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Conference papers on the topic "Copper vacuum condensates"

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Glushchenko, M. A., O. V. Sobol, and A. I. Zubkov. "On the increase in the recrystallization temperature of nanostructured vacuum copper based condensates." In 2017 IEEE 7th International Conference "Nanomaterials: Application & Properties" (NAP). IEEE, 2017. http://dx.doi.org/10.1109/nap.2017.8190203.

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