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Alexander P. Ilyin 2 Articles
Effect of Electrical Parameters and Surrounding Gas on the Electroexplosive Tungsten Nanopowders Characteristics
Young-Soon Kwon, Jin-Chun Kim, Alexander P. Ilyin, Olga B. Nazarenko, Dmitry V. Tikhonov
J Korean Powder Metall Inst. 2012;19(1):49-54.
DOI: https://doi.org/10.4150/KPMI.2012.19.1.049
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  • 4 Citations
AbstractAbstract PDF
Tungsten nanopowders were produced by the method of wires electrical explosion in the different gases. The study of phase and dispersed composition of the powders was carried out. The influence of electrical parameters such as the value of energy input in wire and the arc stage of the explosion was discussed. The factors that make for decreasing the particles size are the lower pressure of surrounding gas and the use of addition of chemically reactive gas.

Citations

Citations to this article as recorded by  
  • Comparison of different tungsten precursors for preparation of tungsten nanopowder by RF induction thermal plasma
    Dongyoon Shin, Basudev Swain, Chulwoong Han, Yonghwan Kim, Chan-Gi Lee, Kyung-Soo Park
    International Journal of Refractory Metals and Hard Materials.2020; 86: 104995.     CrossRef
  • Facile Synthesis of Single-Phase Alpha-Tungsten Nanopowders from Ammonium Paratungstate by RF Induction Thermal Plasma and Thermochemical Reduction
    Dongyoon Shin, Hyun-Woo Shim, Basudev Swain, Kyung-Soo Park, Chan-Gi Lee
    Korean Journal of Metals and Materials.2020; 58(11): 798.     CrossRef
  • In-situ synthesis of tungsten nanoparticle attached spherical tungsten micro-powder by inductively coupled thermal plasma process
    Chulwoong Han, Hyunwoong Na, Yonghwan Kim, Hanshin Choi
    International Journal of Refractory Metals and Hard Materials.2015; 53: 7.     CrossRef
  • Characterization of aluminum nanopowders after long-term storage
    O.B. Nazarenko, Yu.A. Amelkovich, A.I. Sechin
    Applied Surface Science.2014; 321: 475.     CrossRef
Electroexplosive Technology of Nanopowders Production: Current Status and Future Prospects
Young-Soon Kwon, Jin-Chun Kim, Alexander P. Ilyin, Olga B. Nazarenko, Dmitry V. Tikhonov
J Korean Powder Metall Inst. 2012;19(1):40-48.
DOI: https://doi.org/10.4150/KPMI.2012.19.1.040
  • 37 View
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  • 11 Citations
AbstractAbstract PDF
The current situation of the nanopowders production technology based on the process of electrical explosion of wires is described. The advantages and disadvantages of the electroexplosive technology are indicated. The results of studies characterizing the effect of the electrical explosion conditions on the nanopowders properties are presented, including latest results: conditions of nanopowders passivation, conditions of nanopowders production having narrow size distribution, the methods of nanopowders diagnostic and standartization. In addition, the application and area of future research on this technology are proposed.

Citations

Citations to this article as recorded by  
  • Characterization of Naturally Aged Iron Nanopowder Produced by Electrical Explosion of Wires
    Olga B. Nazarenko, Alexander I. Sechin, Yuliya A. Amelkovich
    Metals and Materials International.2021; 27(5): 962.     CrossRef
  • Development of Effectual Substrates for SERS by Nanostructures-on flexible surfaces
    Hammad R. Humud, Fatimah Jumaah Moaen
    Journal of Physics: Conference Series.2021; 2114(1): 012084.     CrossRef
  • Influence of Factors Affecting the Parameters of Combustion of Aluminum Nanopowders in the Bulk Layer
    Alexander I. Sechin, Olga B. Nazarenko, Yuliya A. Amelkovich, Andrey A. Sechin
    Materials Science Forum.2019; 970: 257.     CrossRef
  • Effect of electron beam irradiation on thermal and mechanical properties of aluminum based epoxy composites
    P.M. Visakh, O.B. Nazarenko, C. Sarath Chandran, T.V. Melnikova, S.Yu. Nazarenko, J.-C. Kim
    Radiation Physics and Chemistry.2017; 136: 17.     CrossRef
  • Investigation of coatings produced by the electrospark machining method of steel 45 with electrodes based on carbides of tungsten and titanium
    S. V. Nikolenko, N. A. Syui
    Protection of Metals and Physical Chemistry of Surfaces.2017; 53(5): 889.     CrossRef
  • Influence of long-term storage on fire hazard properties of metal nanopowders
    O S Kyrmakova, A I Sechin, O B Nazarenko
    Journal of Physics: Conference Series.2017; 881: 012027.     CrossRef
  • A Study of the Preparation and Properties of Antioxidative Copper Inks with High Electrical Conductivity
    Chia-Yang Tsai, Wei-Chen Chang, Guan-Lin Chen, Cheng-Huan Chung, Jun-Xiang Liang, Wei-Yang Ma, Tsun-Neng Yang
    Nanoscale Research Letters.2015;[Epub]     CrossRef
  • Characterization of copper nanopowders after natural aging
    Yu A Amelkovich, O B Nazarenko, A I Sechin, P M Visakh
    IOP Conference Series: Materials Science and Engineering.2015; 81: 012072.     CrossRef
  • Characterization of aluminum nanopowders after long-term storage
    O.B. Nazarenko, Yu.A. Amelkovich, A.I. Sechin
    Applied Surface Science.2014; 321: 475.     CrossRef
  • Effect of the Gas Composition at the Electrical Explosion of Wires on the Nanopowders Properties
    Olga B. Nazarenko, Alexander P. Ilyin, Dmitry V. Tikhonov
    Advanced Materials Research.2013; 872: 142.     CrossRef
  • Prospects of Using Nanopowders as Flame Retardant Additives
    Olga B. Nazarenko, Yulia A. Amelkovich, Alexander P. Ilyin, Alexander I. Sechin
    Advanced Materials Research.2013; 872: 123.     CrossRef
Alexander P. Ilyin 2 Articles
Morphology, Phase Contents, and Chemical Composition of Nanopowders Produced by the Electrical Explosion of Tin-Lead Alloy Wires
Young-Soon Kwon, Alexander P. Ilyin, Dmitrii V. Tichonov
J Korean Powder Metall Inst. 2003;10(3):157-160.
DOI: https://doi.org/10.4150/KPMI.2003.10.3.157
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AbstractAbstract PDF
Phase contents and elemental composition of ultradispersed powders obtained by the electrical explosion of tin-leadalloy powders are investigated. It is demonstrated that during the explosion and subsequent cooling, surface layers of powder particles are enriched in lead compared to the initial alloy. The thermal stability of powders oxidizing in air is also investigated.
Regulation of the Dispersed Composition of Aluminum Oxide Nanopowders Produced by Electrical Explosion
Young-Soon Kwon, Olga B. Nazarenko, Alexander P. Ilyin
J Korean Powder Metall Inst. 2003;10(3):161-163.
DOI: https://doi.org/10.4150/KPMI.2003.10.3.161
  • 21 View
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  • 1 Citations
AbstractAbstract PDF
The feasibility of obtaining highly dispersed aluminum oxide powders by the electrical explosion of aluminum conductors in an inert gas atmosphere and the subsequent oxidation of aluminum particles by water prior to their contact with air is demonstrated. For a specific surface area of the initial aluminum powder of 6.5m2/g, the corresponding specific surface area of the resultant aluminum oxide nanopowder was as large as 300m2/g.

Citations

Citations to this article as recorded by  
  • Electroexplosive Technology of Nanopowders Production: Current Status and Future Prospects
    Young-Soon Kwon, Jin-Chun Kim, Alexander P. Ilyin, Olga B. Nazarenko, Dmitry V. Tikhonov
    Journal of Korean Powder Metallurgy Institute.2012; 19(1): 40.     CrossRef

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