The metal-matrix composites reinforced by the fullerenes

The method of the high voltage electric discharge (HVED) treatment in the kerosene (the dispersion, the activation and the synthesis) is proposed to obtain the new anti-friction alloys based on TiC – AlC – and FeC with inclusions of the Cn0 (n=6 or 7) phases which are characterized by the high heat...

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Main Authors: O. Sizonenko, S. Prokhorenko, A. Torpakov, D. Żak, Y. Lypian, R. Wojnarowska-Nowak, J. Polit, E. M. Sheregii
Format: Article
Language:English
Published: AIP Publishing LLC 2018-08-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/1.5031195
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author O. Sizonenko
S. Prokhorenko
A. Torpakov
D. Żak
Y. Lypian
R. Wojnarowska-Nowak
J. Polit
E. M. Sheregii
author_facet O. Sizonenko
S. Prokhorenko
A. Torpakov
D. Żak
Y. Lypian
R. Wojnarowska-Nowak
J. Polit
E. M. Sheregii
author_sort O. Sizonenko
collection DOAJ
description The method of the high voltage electric discharge (HVED) treatment in the kerosene (the dispersion, the activation and the synthesis) is proposed to obtain the new anti-friction alloys based on TiC – AlC – and FeC with inclusions of the Cn0 (n=6 or 7) phases which are characterized by the high heat resistance, the strength and the durability to be used in the aircraft and in the rocket technology. The method is distinguished by the hardening particles, which are not mechanically added to the powder mixture, but instead they are synthesized during the HVED treatment of the “kerosene – Fe (Al) – Ti powder mixture” the disperse system with its simultaneous grinding what enable us to create the composite material with the increased mechanical and performance characteristics. The obtained alloys contain the refractory components (the fullerenes, the carbides), the MAX-phases of the Ti-Al-C system as shown by the micro-Raman data.
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spelling doaj.art-80075a54b8b44071b0eb82e3878591862022-12-21T23:34:37ZengAIP Publishing LLCAIP Advances2158-32262018-08-0188085317085317-710.1063/1.5031195065808ADVThe metal-matrix composites reinforced by the fullerenesO. Sizonenko0S. Prokhorenko1A. Torpakov2D. Żak3Y. Lypian4R. Wojnarowska-Nowak5J. Polit6E. M. Sheregii7Department of Disperse Systems Pulse Treatment, The Institute of Pulse Processes and Technologies, National Academy of Science of Ukraine, Mykolaiv 54018, UkraineCenter of Microelectronics and Nanotechnology, University of Rzeszow, ul. Pigonia 1, 35-959 Rzeszow, PolandDepartment of Disperse Systems Pulse Treatment, The Institute of Pulse Processes and Technologies, National Academy of Science of Ukraine, Mykolaiv 54018, UkraineCenter of Microelectronics and Nanotechnology, University of Rzeszow, ul. Pigonia 1, 35-959 Rzeszow, PolandDepartment of Disperse Systems Pulse Treatment, The Institute of Pulse Processes and Technologies, National Academy of Science of Ukraine, Mykolaiv 54018, UkraineCenter of Microelectronics and Nanotechnology, University of Rzeszow, ul. Pigonia 1, 35-959 Rzeszow, PolandCenter of Microelectronics and Nanotechnology, University of Rzeszow, ul. Pigonia 1, 35-959 Rzeszow, PolandCenter of Microelectronics and Nanotechnology, University of Rzeszow, ul. Pigonia 1, 35-959 Rzeszow, PolandThe method of the high voltage electric discharge (HVED) treatment in the kerosene (the dispersion, the activation and the synthesis) is proposed to obtain the new anti-friction alloys based on TiC – AlC – and FeC with inclusions of the Cn0 (n=6 or 7) phases which are characterized by the high heat resistance, the strength and the durability to be used in the aircraft and in the rocket technology. The method is distinguished by the hardening particles, which are not mechanically added to the powder mixture, but instead they are synthesized during the HVED treatment of the “kerosene – Fe (Al) – Ti powder mixture” the disperse system with its simultaneous grinding what enable us to create the composite material with the increased mechanical and performance characteristics. The obtained alloys contain the refractory components (the fullerenes, the carbides), the MAX-phases of the Ti-Al-C system as shown by the micro-Raman data.http://dx.doi.org/10.1063/1.5031195
spellingShingle O. Sizonenko
S. Prokhorenko
A. Torpakov
D. Żak
Y. Lypian
R. Wojnarowska-Nowak
J. Polit
E. M. Sheregii
The metal-matrix composites reinforced by the fullerenes
AIP Advances
title The metal-matrix composites reinforced by the fullerenes
title_full The metal-matrix composites reinforced by the fullerenes
title_fullStr The metal-matrix composites reinforced by the fullerenes
title_full_unstemmed The metal-matrix composites reinforced by the fullerenes
title_short The metal-matrix composites reinforced by the fullerenes
title_sort metal matrix composites reinforced by the fullerenes
url http://dx.doi.org/10.1063/1.5031195
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