Статьи

На данной странице представлен список статей, опубликованных сотрудниками лаборатории.


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Influence of Tungsten Nanoparticles on Microstructure and Mechanical Properties of an Al-5%Mg Alloy Produced by Casting

Khrustalyov A., Kakhidze N., Platov V., Zhukov I., Vorozhtsov A.Influence of Tungsten Nanoparticles on Microstructure and Mechanical Properties of an Al-5%Mg Alloy Produced by Casting // Metals. – Switzerland : MDPI AG, 2022. – Vol. 12. – № 6. – Art. numb. 989. – DOI : 10.3390/met12060989. (Q2)

Phase Composition, Structure and Properties of the Spark Plasma Sintered Ceramics Obtained from the Al12Mg17-B-Si Powder Mixtures

Nikitin P., Zhukov I., Matveev A., Sokolov S., Sachkov V., Vorozhtsov A. Phase Composition, Structure and Properties of the Spark Plasma Sintered Ceramics Obtained from the Al12Mg17-B-Si Powder Mixtures // Nanomaterials. – Switzerland : MDPI, 2022. – Vol. 12. – № 11. – Art. numb. 1895. – DOI : 10.3390/nano12111895. (Q1)

Biocompatibility Assessment of Coatings Obtained in Argon and Nitrogen Atmospheres for TiNi Materials

Marchenko E., Baigonakova G., Kokorev O., Yasenchuk Yu., Vorozhtsov A. Biocompatibility Assessment of Coatings Obtained in Argon and Nitrogen Atmospheres for TiNi Materials // Metals. – Switzerland : MDPI AG, 2022. – Vol. 12. – № 10. – Art. numb. 1603. – DOI : 10.3390/met12101603. (Q2)

A theoretical and experimental investigation on the SHS synthesis of (HfTiCN)-TiB2 high-entropy composite

Evseev N.S., Matveev A.E., Nikitin P.Yu., Abzaev Yu.A., Zhukov I.A.A theoretical and experimental investigation on the SHS synthesis of (HfTiCN)-TiB2 high-entropy composite // Ceramics International. – United Kingdom : Elsevier, 2022. – Vol. 48. – № 11. – pp. 16010–16014. – DOI : 10.1016/j.ceramint.2022.02.144. (Q1)


Effect of the Mass Fraction of NiTi–TiB2 SHS-Particles on the Phase Composition, Structure, and Mechanical Properties of Inconel 625–NiTi–TiB2 Composites Produced by Direct Laser Deposition

Matveev A., Promakhov V., Schulz N., Bakhmat V., Babaev A., Semenov A., Vorozhtsov A. Effect of the Mass Fraction of NiTi–TiB2 SHS-Particles on the Phase Composition, Structure, and Mechanical Properties of Inconel 625–NiTi–TiB2 Composites Produced by Direct Laser Deposition // Materials. – Switzerland : MDPI AG, 2022. – Vol. 15. – № 19. – Art. numb. 6861. – DOI : 10.3390/ma15196861. (Q2)


3D Printing Using Ti-Al Nanopowders: Mechanisms of Structure Formation

Promakhov V., Matveev A., Babaev A., Schulz N., Toropkov N., Vorozhtsov A., Lerner M. 3D Printing Using Ti-Al Nanopowders: Mechanisms of Structure Formation // Metals. – Switzerland : MDPI AG, 2022. – Vol. 12. – № 10. – Art. numb. 1737. – DOI : 10.3390/met12101737. (Q2)


Processes of Physical Treatment of Stainless Steels Obtained by Additive Manufacturing

Babaev A., Promakhov V., Schulz N., Semenov A., Bakhmat V., Vorozhtsov A. Processes of Physical Treatment of Stainless Steels Obtained by Additive Manufacturing // Metals. – Switzerland : MDPI AG, 2022. – Vol. 12. – № 9. – Art. numb. 1449. – DOI : 10.3390/met12091449. (Q2)


Structure, Properties and Phase Composition of Composite Materials Based on the System NiTi-TiB2

Promakhov V., Matveev A., Schulz N., Dronov P., Zhukov A., Vorozhtsov A. Structure, Properties and Phase Composition of Composite Materials Based on the System NiTi-TiB2 // Materials. – Switzerland : MDPI AG, 2022. – Vol. 15. – № 15. – Art. numb. 5327. – DOI : 10.3390/ma15155327. (Q2)


Influence of Wire Geometry on the Mechanical Behavior of the TiNi Design

Baigonakova G., Marchenko E., Kovaleva M., Vorozhtsov A. Influence of Wire Geometry on the Mechanical Behavior of the TiNi Design // Metals. – Switzerland : MDPI AG, 2022. – Vol. 12. – № 7. – Art. numb. 1131. – DOI : 10.3390/met12071131. (Q2)


In Vitro Bio-Testing Comparative Analysis of NiTi Porous Alloys Modified by Heat Treatment

Marchenko E., Baigonakova G.; Dubovikov K., Kokorev O., Yasenchuk Y., Vorozhtsov A.In Vitro Bio-Testing Comparative Analysis of NiTi Porous Alloys Modified by Heat Treatment // Metals. – Switzerland : MDPI AG, 2022. – Vol. 12. – № 6. – Art. numb. 1006. – DOI : 10.3390/met12061006. (Q2)


Microstructural characterization, wettability and cytocompatibility of gradient coatings synthesized by gas nitriding of three-layer Ti/Ni/Ti nanolaminates magnetron sputtered on the TiNi substrate

Baigonakova G.A., Marchenko E.S., Yasenchuk Yu.F., Kokorev O.V., Vorozhtsov A.B., Kulbakin D.E. Microstructural characterization, wettability and cytocompatibility of gradient coatings synthesized by gas nitriding of three-layer Ti/Ni/Ti nanolaminates magnetron sputtered on the TiNi substrate // Surface and Coatings Technology. – Netherlands : Elsevier, 2022. – Vol. 436. – Art. numb. 128291. – 10.1016/j.surfcoat.2022.128291. (Q1)


Effect of Mechanical Activation of Al-Ti-B Powder Mixture on Phase Composition and Structure of Al-TiB2 Composite Materials Obtained by Self-Propagating High-Temperature Synthesis (SHS)

Matveev A., Promakhov V., Nikitin P., Babaev A., Vorozhtsov A.Effect of Mechanical Activation of Al-Ti-B Powder Mixture on Phase Composition and Structure of Al-TiB2 Composite Materials Obtained by Self-Propagating High-Temperature Synthesis (SHS) // Materials. – Switzerland : MDPI AG, 2022. – Vol. 15. – № 7. – Art. numb. 2668. – DOI : 10.3390/ma15072668. (Q2)


Study of Influence of Aluminum Nitride Nanoparticles on the Structure, Phase Composition and Mechanical Properties of AZ91 Alloy

Khrustalyov A., Zhukov I., Nikitin P., Kolarik V., Klein F., Akhmadieva A., Vorozhtsov A. Study of Influence of Aluminum Nitride Nanoparticles on the Structure, Phase Composition and Mechanical Properties of AZ91 Alloy // Metals. – Switzerland : MDPI AG, 2022. – Vol. 12. – № 2. – Art. numb. 277. – DOI : 10.3390/met12020277. (Q2)


Structure and Properties of Metal-Matrix Composites Based on an Inconel 625–TiB2System Fabricated by Additive Manufacturing

Promakhov V., Matveev A., Klimova-Korsmik O., Schulz N., Bakhmat V., Babaev A., Vorozhtsov A. Structure and Properties of Metal-Matrix Composites Based on an Inconel 625–TiB2System Fabricated by Additive Manufacturing // Metals. – Switzerland : MDPI AG, 2022. – Vol. 12. – № 3. – Art. numb. 525. – DOI : 10.3390/met12030525. (Q2)


Light Metals and Their Composites

Vorozhtsov A.Light Metals and Their Composites // Metals. – Switzerland : MDPI AG, 2022. – Vol. 12. – № 3. – Art. numb. 407. – DOI : 10.3390/met12030407. (Q2)


Study of the Effect of Diamond Nanoparticles on the Structure and Mechanical Properties of the Medical Mg–Ca–Zn Magnesium Alloy

Khrustalyov A.P., Akhmadieva A., Monogenov A.N., Zhukov I.A., Marchenko E.S., Vorozhtsov A.B. Study of the Effect of Diamond Nanoparticles on the Structure and Mechanical Properties of the Medical Mg–Ca–Zn Magnesium Alloy // Metals. – Switzerland : MDPI AG, 2022. – Vol. 12. – № 2. – Art. numb. 206. – DOI : 10.3390/met12020206. (Q2)


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Effect of Al3Er Particles on the Structure, Mechanical Properties, and Fracture of AA5056 Alloy After Casting and Deformation Treatment

Khrustalyov A.P., Kozulin A.A., Zhukov I.A., Nikitin P.Yu., Sachkov V.I., Vorozhtsov A.B. Effect of Al3Er Particles on the Structure, Mechanical Properties, and Fracture of AA5056 Alloy After Casting and Deformation Treatment // JOM. – USA : Minerals, Metals and Materials Society, 2021. – Vol. 73. – № 12. – pp. 3858–3865. – DOI : 10.1007/s11837-021-04940-3. (Q1)

Evaluation of the possibility of obtaining welded joints of plates from al-mg-mn aluminum alloys, strengthened by the introduction of tib2 particles

Zhukov I., Kozulin A., Vorozhtsov A., Khrustalyov A., Tkachev D., Platov V., Nikitin P. Evaluation of the possibility of obtaining welded joints of plates from al-mg-mn aluminum alloys, strengthened by the introduction of tib2 particles // Metals. – Switzerland : MDPI AG, 2021. – Vol. 11. – № 10. – Art. numb. 1564. – DOI : 10.3390/met11101564. (Q2)

Review of the problems of additive manufacturing of nanostructured high-energy materials

Kudryashova O., Lerner M., Vorozhtsov A., Sokolov S., Promakhov V. Review of the problems of additive manufacturing of nanostructured high-energy materials // Materials. – Switzerland : MDPI AG, 2021. – Vol. 14. – № 23. – Art. numb. 7394. – DOI : 10.3390/ma14237394. (Q2)

The strength of inconel 625, manufactured by the method of direct laser deposition under sub‐microsecond load duration

Promakhov V., Schulz N., Vorozhtsov A., Savinykh A., Garkushin G., Razorenov S., Klimova‐korsmik O. The strength of inconel 625, manufactured by the method of direct laser deposition under sub‐microsecond load duration // Metals. – Switzerland : MDPI AG, 2021. – Vol. 11. – № 11. – Art. numb. 1796. – DOI : 10.3390/met11111796. (Q2)


On the structure and properties of almgb14-tib2 composites obtained from shs powders by spark plasma sintering

Nikitin P., Zhukov I., Matveev A., Sokolov S., Grigoriev M., Vorozhtsov A. On the structure and properties of almgb14-tib2 composites obtained from shs powders by spark plasma sintering // Materials. – Switzerland : MDPI AG, 2021. – Vol. 14. – № 19. – Art. numb. 5521. – DOI : 10.3390/ma14195521. (Q2)


Aln production in co-flow filtration mode at low pressures

Evseev N., Nikitin P., Ziatdinov M., Zhukov I., Vakutin A. Aln production in co-flow filtration mode at low pressures // Materials. – Switzerland : MDPI AG, 2021. – Vol. 14. – № 19. – Art. numb. 5482. – DOI : 10.3390/ma14195482. (Q2)

Energy-effective AlMgB14 production by self-propagating high-temperature synthesis (SHS) using the chemical furnace as a source of heat energy

Nikitin P.Y., Matveev A.E., Zhukov I.A. Energy-effective AlMgB14 production by self-propagating high-temperature synthesis (SHS) using the chemical furnace as a source of heat energy // Ceramics International. – United Kingdom : Elsevier, 2021. – Vol. 47. – № 15. – pp. 21698–21704. – DOI : 10.1016/j.ceramint.2021.04.183. (Q1)

Digital Twin of a High-Energy System Using Aluminum Hydride as a Fuel

Vorozhtsov A.B., D’yachenko N.N. Digital Twin of a High-Energy System Using Aluminum Hydride as a Fuel // Journal of Engineering Physics and Thermophysics. – Germany : Springer, 2021. – Vol. 94. – № 4. – pp. 972–976. – DOI : 10.1007/s10891-021-02374-x. (Q2)

The use of plastic waste as carbon raw materials to obtain TiC-based powders

Matveev A.E., Nikitin, P. Yu., Zhukov I.A., Zhukov A.S. The use of plastic waste as carbon raw materials to obtain TiC-based powders // Ceramics International. – United Kingdom : Elsevier, 2021. – Vol. 47. – № 15. – pp. 21140–21146. – DOI : 10.1016/j.ceramint.2021.04.117. (Q1)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Matvienko O., Daneyko O., Kovalevskaya T., Khrustalyov A., Zhukov I., Vorozhtsov A. Investigation of stresses induced due to the mismatch of the coefficients of thermal expansion of the matrix and the strengthening particle in aluminum-based composites // Metals. – Switzerland : MDPI AG, 2021. – Vol. 11. – № 2. – pp. 1–20.  – DOI : 10.3390/met11020279. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Aguero S., Megy S., Eremina V.V., Kalashnikov A.I., Krylova S.G., Kulagina D.A., Lopatina K.A., Fournier M. Povetyeva T.N., Vorozhtsov A.B., Sysolyatin S.V., Zhdanov V.V. Discovery of a Novel Non-Narcotic Analgesic Derived from the CL-20 Explosive: Synthesis, Pharmacology, and Target Identification of Thiowurtzine, a Potent Inhibitor of the Opioid Receptors and the Ion Channels // ACS Omega. – USA : American Chemical Society, 2021. – Vol. 6. – № 23. – pp. 15400–15411. – DOI : 10.1021/acsomega.1c01786. (Q1)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Promakhov V., Matveev A., Schulz N., Grigoriev M., Olisov A., Vorozhtsov A., Zhukov A., Klimenko V. High-temperature synthesis of metal–matrix composites (Ni-Ti)-TiB2 // Applied Sciences. – Switzerland : MDPI, 2021. – Vol. 11. – № 5. – Art. numb. 2426. – DOI : 10.3390/app11052426. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Nikitin P.Yu., Zhukov I.A., Vorozhtsov A.B. Decomposition mechanism of AlMgB14during the spark plasma sintering // Journal of Materials Research and Technology. – Brazil : Elsevier Editora Ltda, 2021. – Vol. 11. – pp. 687–692. – DOI : 10.1016/j.jmrt.2021.01.044. (Q1)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Mazalov A., Shmatov D., Zelenina L., Platko D., Promakhov V., Vorozhtsov A., Schulz N. Researching the properties of samples fabricated using selective laser melting from a High-temperature Nickel-based alloy // Applied Sciences. – Switzerland : MDPI, 2021. – Vol. 11. – № 4. – pp. 1–10. – DOI : 10.3390/app11041419. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Khrustalyov A.P., Platov V.V., Kakhidze N.I., Zhukov I.A., Vorozhtsov A.B. Influence of tungsten nanoparticles on the structure and mechanical behavior of the 1550 aluminum alloy under quasi–static loading // Vestnik Tomskogo Gosudarstvennogo Universiteta, Matematika i Mekhanika. – Russian Federation : Tomsk State University, 2021. – Vol. 74. – pp. 141–153. – DOI : 10.17223/19988621/74/14. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Promakhov V.,  Vorozhtsov A., Korobenkov M., Schults N., Bakhmat V.;Dronov., Dronov F. Investigation of the dynamic behaviour ceramic matrix composites obtained by additive technologies // Materials Research Express. – United Kingdom : IOP Publishing Ltd., 2021. – Vol. 8. – № 2. – Art. numb. 026503. – DOI : 10.1088/2053-1591/abde12. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Evseev N.S., Zhukov I.A. Effect of turbulent pulsations on the fractional separation of fine powders of metal nitrides // Vestnik Tomskogo Gosudarstvennogo Universiteta, Matematika i Mekhanika. – Russian Federation : Tomsk State University, 2021. – Vol. 72. – pp. 70–79. – DOI : 10.17223/19988621/72/6. (Q2)


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The use of plastic waste as carbon raw materials to obtain TiC-based powders

Vorozhtsov A., Lerner M., Rodkevich N., Sokolov S., Perchatkina E., Paravan C. Preparation and characterization of Al/HTPB composite for high energetic materials // Nanomaterials. – Switzerland : MDPI, 2020. – Vol. 10. – № 11. – pp. 1–11. – DOI : 10.3390/nano10112222. (Q1)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Khmeleva M.G., Zhukov I.A., Garkushin G.V., Savinykh A.S., Khrustalyov A.P., Vorozhtsov A.B. Effects of Vibration and TiB2 Additions to the Melt on the Structure and Strain-Rate Sensitive Deformation Behavior of an A356 Alloy // JOM. – USA : Minerals, Metals and Materials Society, 2020. – Vol. 72. – № 11. – pp. 3787–3797. – DOI : 10.1007/s11837-020-04339-6. (Q1)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Nikitin P.Yu., Zhukov I.A., Matveev A.E., Sokolov S.D., Boldin M.S., Vorozhtsov A.B. AlMgB14–TiB2 composite materials obtained by self-propagating high-temperature synthesis and spark plasma sintering // Ceramics International. – United Kingdom : Elsevier, 2020. – Vol. 46. – № 14. – pp. 22733–22737. – DOI : 10.1016/j.ceramint.2020.06.039. (Q1)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Sokolov S., Vorozhtsov A., Arkhipov V., Zhukov I. The study of HEMs based on the mechanically activated intermetallic Al12Mg17powder // Molecules. – Switzerland : MDPI AG, 2020. – Vol. 25. – № 16. – Art. numb. 3561. – DOI : 10.3390/molecules25163561. (Q1)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Matveev A., Zhukov I., Ziatdinov M., Zhukov A. Planetary milling and self-propagating high-temperature synthesis of Al-TiB2 composites // Materials. – Switzerland : MDPI AG, 2020. – Vol. 13. – № 5. – Art. numb. 1050. – DOI : 10.3390/ma13051050. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Vorozhtsov A. Casting and solidification of light alloys // Metals. – Switzerland : MDPI AG, 2020. – Vol. 10. – №11. – pp. 1–3. – DOI : 10.3390/met10111407. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Lozhkomoev A.S., Rodkevich N.G., Vorozhtsov A.B., Lerner M.I. Oxidation and oxidation products of encapsulated aluminum nanopowders // Journal of Nanoparticle Research. – Netherlands : Springer Netherlands, 2020. – Vol. 22. – № 1. – Art. numb. 19. – DOI – 10.1007/s11051-019-4748-2. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Zhukov I.A., Nikitin, P.Y., Vorozhtsov A.B., Perevislov S.N., Sokolov S.D., Ziatdinov M.H. The use of intermetallic AlxMgy powder to obtain AlMgB14 // Materials Today Communications. – Netherlands : Elsevier, 2020. – Vol. 22. – Art. numb. 100848. – DOI : 10.1016/j.mtcomm.2019.100848. (Q2)


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The use of plastic waste as carbon raw materials to obtain TiC-based powders

Zhukov I.A., Kozulin A.A., Khrustalyov A.P., Kahidze N.I., Khmeleva M.G., Moskvichev E.N., Lychagin D.V., Vorozhtsov A.B. Pure aluminum structure and mechanical properties modified by Al2O3 nanoparticles and ultrasonic treatment // Metals. – Switzerland : MDPI AG, 2019. – Vol. 9. – № 11. – Art. numb. 1199. – DOI : 10.3390/met9111199. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Gruznov V.M., Vorozhtsov A.B. Gas-dynamic kinetics of vapour sampling in the detection of explosives // Molecules. – Switzerland : MDPI AG, 2019. – Vol. 24. – № 23. – Art. numb. 4409. – DOI : 10.3390/molecules24234409. (Q1)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Baldin M.N., Bobrovnikov S.M., Vorozhtsov A.B., Gorlov E.V., Gruznov V.M., Zharkov V.I., Panchenko Yu.N., Pryamov M.V., Sakovich G.V. Effectiveness of Combined Laser and Gas Chromatographic Remote Detection of Traces of Explosives // Atmospheric and Oceanic Optics. – USA : Pleiades Publishing, 2019. – Vol. 32. – № 2. – pp. 227–233. – DOI : 10.1134/S1024856019020039. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Khrustalyov A.P., Kozulin A.A., Zhukov I.A., Khmeleva M.G., Vorozhtsov A.B., Eskin D., Chankitmunkong S., Platov V.V., Vasilyev S.V. Influence of titanium diboride particle size on structure and mechanical properties of an Al-Mg alloy // Metals. – Switzerland : MDPI AG, 2019. – Vol. 9. – № 10. – Art. numb. 1030. – DOI : 10.3390/met9101030. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Khrustalyov A.P., Garkushin G.V., Zhukov I.A., Razorenov S.V., Vorozhtsov A.B. Quasi-static and plate impact loading of cast magnesium alloy ml5 reinforced with aluminum nitride nanoparticles // Metals. – Switzerland : MDPI AG, 2019. – Vol. 9. – № 6. – Art. numb. 715. – DOI : 10.3390/met9060715. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Kudryashova O., Khmeleva M., Danilov P., Dammer V., Vorozhtsov A., Eskin D. Optimizing the conditions of metal solidification with vibration // Metals. – Switzerland : MDPI AG, 2019. – Vol. 9. – № 3. – Art. numb. 366. – DOI : 10.3390/met9030366. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Kuzovnikova L.V., Maksimenko E.V., Vorozhtsov A.B., Pavlenko A.A., Didenko A.V., Titov S.S. Detection and Identification of the Traces of Explosives with Using of Active Spectral Imaging // Propellants, Explosives, Pyrotechnics. – Germany : Wiley-VCH Verlag, 2019. – Vol. 44. – № 2. – pp. 181–187. – DOI : 10.1002/prep.201800171. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Promakhov V., Zhukov A., Ziatdinov M., Zhukov I., Schulz N., Kovalchuk S., Dubkova Y., Korsmik R., Klimova-Korsmik O., Turichin G., Perminov A. Inconel 625/TiB2 metal matrix composites by direct laser deposition // Metals. – Switzerland : MDPI AG, 2019. – Vol. 9. – № 2. – Art. numb. 141. – DOI : 10.3390/met9020141. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Promakhov V.V., Khmeleva M.G., Zhukov I.A., Platov V.V., Khrustalyov A.P., Vorozhtsov A.B. Influence of vibration treatment and modification of A356 aluminum alloy on its structure and mechanical properties // Metals. – Switzerland : MDPI AG, 2019. – Vol. 9. – № 1. – Art. numb. 87. – DOI : 10.3390/met9010087. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Zhukov I.A., Kozulin A.A., Khrustalyov A.P., Matveev A.E., Platov V.V., Vorozhtsov A.B., Zhukova T.V., Promakhov V.V. The impact of particle reinforcement with Al2O3, Tib2, and tic and severe plastic deformation treatment on the combination of strength and electrical conductivity of pure aluminum // Metals. – Switzerland : MDPI AG, 2019. – Vol. 9. – № 1. – Art. numb. 65. – DOI : 10.3390/met9010065. (Q2)


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The use of plastic waste as carbon raw materials to obtain TiC-based powders

Lozhkomoev A.S., Lerner M.I., Pervikov A.V., Naidenkin E.V., Mishin I.P., Vorozhtsov A.B., Apkarian A.S., Eskin D.G. The formation of Fe–Cu composite based on bimetallic nanoparticles // Vacuum. – United Kingdom : Elsevier, 2019. – Vol. 159. – pp. 441–446. – DOI : 10.1016/j.vacuum.2018.10.078. (Q1)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Matveev A., Promakhov V., Schultz N., Vorozhtsov A. Synthesis of metal matrix composites based on crxniy-tin for additive technology // Materials. – Switzerland : MDPI AG, 2018. – Vol. 14. – № 20. – Art. numb. 5914. – DOI : 10.3390/ma14205914. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Vorozhtsov A., Sakovich G. Diversity of High-energy Materials and Systems for Civil Applications // Propellants, Explosives, Pyrotechnics. – Germany : Wiley-VCH Verlag, 2018. – Vol. 43. – № 8. – pp. 747–748. – DOI : 10.1002/prep.201880831. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Promakhov V., Zhukov A., Dubkova Y., Zhukov I., Kovalchuk S., Zhukova T., Olisov A. Klimenko V., Savkina N. Structure and properties of ZrO2-20%Al2O3 ceramic composites obtained using additive technologies // Materials. – Switzerland : MDPI AG, 2018. – Vol. 11. – № 12. – Art. numb. 2361. – DOI : 10.3390/ma11122361. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Zhukov I., Promakhov V., Vorozhtsov S., Kozulin A., Khrustalyov A., Vorozhtsov A. Influence of Dispersion Hardening and Severe Plastic Deformation on Structure, Strength and Ductility Behavior of an AA6082 Aluminum Alloy // JOM. – USA : Minerals, Metals and Materials Society, 2018. – Vol. 70. – № 11. – pp. 2731–2738. – DOI : 10.1007/s11837-018-3132-5. (Q1)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Khrustalyov A.P., Garkushin G.V., Zhukov I.A., Razorenov S.V. The Influence of the Structure of a Magnesium–Aluminum Nitride Metal-Matrix Composite on the Resistance to Deformation under Quasi-Static and Dynamic Loading // Technical Physics Letters. – USA : Pleiades Publishing, 2018. – Vol. 44. – № 10. – pp. 912–915. – DOI : 10.1134/S1063785018100255. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Zykova A., Kazantseva L., Popova N., Vorozhtsov A., Kurzina I. Influence of modifying mixtures on Si crystal formation in Al-7%Si alloy // Metals. – Switzerland : MDPI AG, 2018. – Vol. 8. – № 2. – Art. numb. 98. – DOI : 10.3390/met8020098. (Q2)


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The use of plastic waste as carbon raw materials to obtain TiC-based powders

Naydenkin E., Mishin I., Khrustalyov A., Vorozhtsov S., Vorozhtsov A. Influence of combined helical and pass rolling on structure and residual porosity of an AA6082-0.2 wt% Al2O3 composite produced by casting with ultrasonic processing // Metals. – Switzerland : MDPI AG, 2017. – Vol. 7. – №. 12. – Art. numb. 544. – DOI : 10.3390/met7120544. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Vorozhtsov S., Minkov L., Dammer V., Khrustalyov A., Zhukov I., Promakhov V., Vorozhtsov A., Khmeleva M. Ex Situ Introduction and Distribution of Nonmetallic Particles in Aluminum Melt: Modeling and Experiment // JOM. – USA : Minerals, Metals and Materials Society, 2017. – Vol. 69. – № 12. – pp. 2653–2657. – DOI : 10.1007/s11837-017-2594-1. (Q1)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Vorozhtsov S., Vorozhtsov A., Kudryashova O., Zhukov I., Promakhov V. Structural and mechanical properties of aluminium-based composites processed by explosive compaction // Powder Technology. – Netherlands : Elsevier, 2017. – Vol. 313. – pp. 251–259. – DOI : 10.1016/j.powtec.2017.03.027. (Q1)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Vorozhtsov A.B., Zhukov A.S., Ziatdinov M.K., Bondarchuk S.S., Lerner M.I., Rodkevich N.G. Novel Micro- and Nanofuels: Production, Characterization, and Applications for High-Energy Materials // Springer Aerospace Technology. – Switzerland : Springer Nature, 2017. – 235–251. – DOI : 10.1007/978-3-319-27748-6_9. (Q2)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Kudryashova O., Vorozhtsov S., Stepkina M., Khrustalev A. Introduction of Electrostatically Charged Particles into Metal Melts // JOM. – USA : Minerals, Metals and Materials Society, 2017. – Vol. 69. – № 12. – pp. 2524–2528. – DOI : 10.1007/s11837-017-2567-4. (Q1)


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The use of plastic waste as carbon raw materials to obtain TiC-based powders

Vorozhtsov S., Kudryashova O., Promakhov V., Dammer V., Vorozhtsov A., Theoretical and experimental investigations of the process of vibration treatment of liquid metals containing nanoparticles // JOM. – USA : Minerals, Metals and Materials Society, 2016. – Vol. 68. – №. 12. – pp. 3094-3100. – DOI : 10.1007/s11837-016-2147-z. (Q1)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Kudryashova O., Vorozhtsov S. On the Mechanism of Ultrasound-Driven Deagglomeration of Nanoparticle Agglomerates in Aluminum Melt // JOM. – USA : Minerals, Metals and Materials Society, 2016. – Vol. 68. – № 5. – pp. 1307–1311. – DOI : 10.1007/s11837-016-1851-z. (Q1)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Katsarou L., Mounib M., Lefebvre W., Vorozhtsov S., Pavese M., Badini C., Molina-Aldareguia Jon M., Jimenez C.C., Pérez P., Teresa M., Dieringa H. Microstructure, mechanical properties and creep of magnesium alloy Elektron21 reinforced with AlN nanoparticles by ultrasound-assisted stirring // Materials Science and Engineering A. – Netherlands : Elsevier, 2016. – Vol. 659. – pp. 84–92. – DOI : 10.1016/j.msea.2016.02.042. (Q1)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Abraham A., Nie H., Schoenitz M., Vorozhtsov A.B., Lerner M., Pervikov A., Rodkevich N., Dreizin, E.L. Bimetal Al–Ni nano-powders for energetic formulations // Combustion and Flame. – USA : Elsevier, 2016. – Vol. 173. – pp. 179-186. – DOI : 10.1016/j.combustflame.2016.08.015. (Q1)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Vorozhtsov S., Zhukov I., Promakhov V., Naydenkin E., Khrustalyov A., Vorozhtsov A. The Influence of ScF3 Nanoparticles on the Physical and Mechanical Properties of New Metal Matrix Composites Based on A356 Aluminum Alloy // JOM. – USA : Minerals, Metals and Materials Society, 2016. – Vol. 68. – № 12. – pp. 3101–3106. – DOI : 10.1007/s11837-016-2141-5. (Q1)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Vorozhtsov S., Kolarik V., Promakhov V., Zhukov I., Vorozhtsov A., Kuchenreuther-Hummel V. The Influence of Al4C3 Nanoparticles on the Physical and Mechanical Properties of Metal Matrix Composites at High Temperatures // JOM. – USA : Minerals, Metals and Materials Society, 2016. – Vol. 68. – № 5. – pp. 1312–1316. – DOI : 10.1007/s11837-016-1854-9. (Q1)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Vorozhtsov A.B., Lerner M., Rodkevich N., Nie H., Abraham A., Schoenitz M., Dreizin E.L. Oxidation of nano-sized aluminum powders // Thermochimica Acta. – Netherlands : Elsevier, 2016. – Vol. 636. – pp. 48-56. – DOI : 10.1016/j.tca.2016.05.003. (Q1)


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The use of plastic waste as carbon raw materials to obtain TiC-based powders

Noor F., Vorozhtsov A., Lerner M., Wen D. Exothermic characteristics of aluminum based nanomaterials // Powder Technology. – Netherlands : Elsevier, 2015. – Vol. 282. – pp. 19–24. – DOI : 10.1016/j.powtec.2014.12.058. (Q1)


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Vorozhtsov S., Zhukov I., Vorozhtsov A., Zhukov A., Eskin D., Kvetinskaya A. Synthesis of micro-and nanoparticles of metal oxides and their application for reinforcement of Al-based alloys // Advances in Materials Science and Engineering. – Egypt : Hindawi Publishing Corporation, 2015. – Vol. 2015. – Art. numb. 718207. – DOI : 10.1155/2015/718207. (Q2).


The use of plastic waste as carbon raw materials to obtain TiC-based powders

Noor F., Vorozhtsov A., Lerner M., Bandarra F., Enio P., Wen D. Thermal-Chemical Characteristics of Al-Cu Alloy Nanoparticles // Journal of Physical Chemistry C. – USA : American Chemical Society, 2015. – Vol. 119. – № 25. – pp. 14001–14009. – DOI : 10.1021/acs.jpcc.5b01515. (Q1)